For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
RF MEASUREMENT CHART
• The first three columns are conversion tables for return loss,
reflection coefficient, and SWR.
• The last four columns are values for interactions of a small phasor X
with a large phasor (unity reference) expressed in dB related to reference.
The RF Measurement Chart can be used to determine the uncertainty due to
bridge/autotester VNA directivity. The “X dB Below Reference” column
represents the difference between the directivity and the measured reflection
(return loss). The “ref + X dB” and “ref – X dB” values are the algebraic sum
of the error signal and the measured reflected signal as their phase
relationship varies over 360˚. Therefore, the peak-to-peak ripple (1 ± X)
is the total measurement uncertainty caused by the error signal.
For example, if a 30 dB return loss is measured with a 40 dB directivity
autotester, the X dB Below Reference value is 10 dB. Ref + X dB is 2.3866
dB and ref – X dB is 3.3018 dB. The actual return loss is between 27.6134
dB (– 30 + 2.3866) and 33.3018 dB (– 30 – 3.3018). The peak to peak ripple
on a swept measurement will be 5.6884 dB. If the error and directivity
signals are equal, ref +X dB equals 6 dB (voltage doubled causes 6 dB
change) and ref – X dB becomes infinite, since the two signals are equal in
amplitude and 180
° out of phase (zero voltage).
Above ANSI Standard tolerance applies to all components unless otherwise noted.
ANSI Standard
X mm
±5 mm
X.X mm
±0.5 mm
X.XX mm
±0.15 mm
X.XXX mm
±0.05 mm
Relative to Unity Reference
SWRReflection CoefficientReturn Loss (dB)X dB Below ReferenceRef +X (dB)Ref –X (dB)Ref ±X (dB)
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1
Page 4
OUTLINE OF PRECISION MEASUREMENT COMPONENTS
Precision Components-Precision
Measurements
Anritsu is a leader in the design and production of precision
microwave components.
• Precision Coaxial Connector Systems to 65 GHz
• Precision Coaxial and Waveguide to Coax Adapters
• High Directivity SWR Autotesters and Bridges
• RF Detectors
• Precision Terminations and Air lines
• Precision Fixed Attenuators
• Precision Step Attenuators
• Precision Power Dividers and Splitters
• Precision Bias Tees
• Broadband Microwave Limiters
Connector Design Leadership
Anritsu is the leader of high frequency microwave connector
technology and is driven by an ongoing commitment to exceed
customer needs. Anritsu created and trademarked the K Connector
coverage to 40 GHz, along with a complete family of 40 GHz
with
test equipment. It was an immediate success and today is used
on many commercial components, test fixtures, and military systems.
®
The V Connector
1.85 mm geometry endorsed by the International Electrotechnical
Commission (IEC). It mates with commercially available 2.4 mm
connectors.
Anritsu continues its leadership role with the introduction
Integrated V
the
of
with V Connectors with easy installation and consistent
excellent performance.
™
The VP
performance to 65 GHz.
The W1 Connector
uses a 1.00 mm coaxial connector front side interface.
Connector delivers push-on simplicity with excellent
offers coaxial coverage to 65 GHz and uses a
Connector, which combines compatibility
™
provides mode-free performance to 110 GHz and
®
Coaxial and Waveguide to Coax Adapters
A series of precision measurement adapters are available to adapt one
connector type to another. Poor adapter VSWR (or poor return loss)
can be a major source of measurement error and, therefore adapters,
must be carefully selected. Anritsu precision adapters typically have
6-12 dB better return loss than competitive units. Waveguide-to-Coax
Adapters are available to 65 GHz.
ecision Terminations and Air Lines
Pr
Anritsu is recognized as the leader in the field of impedance standards.
Anritsu air lines and terminations are unsurpassed for accuracy and
impedance match. Not only do these products increase measurement
accuracy, they also provide the only method of certifying the performance
of SWR Autotesters, bridges, directional couplers, and other devices.
Precision Fixed Attenuators
Anritsu attenuators offer superior performance in a low cost package.
The low VSWR (excellent return loss) minimizes signal reflections and
simultaneously reduces ripple effects in the output frequency response.
This assures flat, consistent attenuation characteristics regardless of
other devices reflection characteristics. One of the simplest ways to
improve impedance match is to insert a precision attenuator between
The 41K and 41V
the device under test and the source or RF detector
Series attenuators are specifically designed for such applications
where accuracy is a basic requirement.
In addition to being available as individual units of 3, 6, 10, or 20 dB,
the 41K and 41V
with certified calibration data. Available frequency ranges cover DC to
26.5 GHz, 40 GHz, or 65 GHz.
Many other attenuator applications have as their principal objective
the reduction of power
measurement point, the measurement precision discussed earlier is not
required. In such a power-reducing system application, attenuators are
often required in large quantities, making price an important consideration.
The 43K Series includes models covering DC to 26.5
40 GHz.
have the Anritsu K Connectors and are compatible with SMAconnectors.
All are available with 3, 6, 10, or 20
Series Fixed
Attenuators are also available in sets
. Since the attenuator might not be inserted at a
.
GHz, and DC to
attenuation values.
dB
All
2
Whatever your fixed attenuator needs might be, Anritsu provides
solution.
the
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F
Page 5
Precision Step Attenuators
Anritsu offers low loss, high precision step attenuators. These
programmable step attenuators are available with 10 dB steps from
0 to 70 dB or 0 to 110 dB ranges. DC to 40 GHz frequency range
ensures the broadest attenuation and frequency coverage available.
Contact Anritsu for needs above 40 GHz.
Precision Power Dividers and Splitters
Anritsu produces precision V Connector®dividers and splitters
to 65 GHz and precision K Connector
to 40 GHz.
All Anritsu power dividers are 3-resistor symmetrical designs
with excellent amplitude and phase tracking. Anritsu power
splitters are 2-resistor designs, used to accurately split signals
for ratio measurements.
®
dividers and splitters
Precision Bias Tees
Anritsu Bias Tees are used to combine DC and RF for active device
measurements. Low RF throughline loss and low SWR ensure
negligible effect on measurements from 50 kHz to 60 GHz.
Broadband Microwave Limiters
Anritsu broadband microwave limiters provide the widest frequency
range available in a limiter. Designed to protect sensitive microwave
equipment, these limiters incorporate unique single-side limiting to
provide soft limiting characteristics over 10 MHz to 26.5 GHz.
The directivity of the SWR Autotester or bridge is the measure of how
well the incident and reflected signals can be separated. For example,
40 dB directivity means that the error signal in the output is 40 dB
below the reflected signal to be measured.
Anritsu’s high directivity bridges and autotesters set the standards for
reflection measurements. High directivity translates to accurate
measurements. Anritsu high directivity bridges are available for
GPC-7, 50 Ω and 75Ω Type N. High directivity autotesters
are available with GPC-7, Type N, and SMA, 3.5, K Connectors
and V Connectors®.
®,
RF Detectors
Just as directivity is the principal error contributor in reflection
measurements, the impedance match of the signal source and RF
detector is a significant error contributor in
transmission measurements.
Anritsu offers a complete line of coaxial RF detectors covering from
100 kHz to 50 GHz with the lowest SWR available. The excellent
impedance match of the detectors, along with that of the test port
on the SWR Autotesters and bridges, minimize errors when making
simultaneous transmission and measurements.
Calibration and Verification Kits
Anritsu offers calibration kits which contain all the precision
components and tools required to calibrate an Anritsu VNA in a
connector style of your choice.
High Directivity SWR Autotesters
and Bridges
SWR Autotesters and SWR Bridges are directional measurement
devices that separate the incident and the reflected signals of a
under test.
incident signal to determine the difference between the device’s
impedance and its characteristic impedance.
An SWR bridge has a precision termination inside the bridge,
eliminating the need for an external reference. An autotester further
simplifies the user interface by incorporating a detector into the RF
output that provides a DC output proportional to the DUT mismatch.
The reflected component can then be compared to the
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F
device
Specials
Anritsu also manufactures assemblies and components to meet
specific customer requirements in both coaxial and waveguide
structures. These include such components as Connectors, Bias Tee,
Step Attenuator, Detector, Power Sensors, Waveguide, Coaxial
Adapters, and RF
When requesting quotations on special assemblies, as a minimum
please provide this information: frequency range, electrical
characteristics, mechanical details and outline dimensions if any.
Cables etc.
3
Page 6
The K Connector®is a precision coaxial connector system that
operates up to 40 GHz. It is compatible with SMA, WSMA, and
3.5 mm connectors. It is well suited to applications in components,
systems, or instrumentation.
K Connector®features
• Excellent performance up to 40 GHz
• Performance exceeding SMA below 18 GHz
• Superior reliability
• Compatibility with SMA, WSMA, and 3.5 mm
• Complete testability on existing network analyzers
Exceptional reliability and repeatability
Microwave connector reliability is affected by insertion force,
outer conductor strength, stress relief while mating, and mating
alignment. The K Connector exhibits exceptional performance
in all of these areas.
For proper seating, a standard SMA or 3.5 mm connector can
require in excess of 27N* of insertion force, In contrast, the
K Connector requires only 2.3N*. The reduced wear on the
female center conductor improves reliability. In addition, the
K Connectors outer conductor is four times thicker than that
of SMA. Taken together, the lower insertion force and the thicker
wall offer more reliable connections than available from an SMA
connector. Life tests show that the K Connector makes greater
than 10,000 connections with negligible change in electrical
characteristics.
*Force is measured in Newtons (N).
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
4
K CONNECTOR
®
DC to 40 GHz
All K Connectors, including the cable connectors, incorporate
a feature that eliminates a major cause of connector failure;
misalignment of the male pin with respect to the female contacts.
To solve the problems the K Connector male pin is deliberately
made shorter than the SMA or 3.5 mm pin. With this arrangement,
the outer housing is properly aligned prior to the mating of the
center conductors. Thus a proper, non-destructive alignment before
mating is ensured.
The effect of pin gap on a connection is often overlooked, but is the
dominant source of error in many connection systems. Pin gap is
the short length of smaller diameter caused when a connector pair
is mated. Pin gap causes a discontinuity at the connector interface.
The K Connector has considerably less susceptibility to pin gap than
either SMA or 3.5 mm connectors.
Many connector manufacturers specify connector performance
assuming no pin gap, an unrealistic assumption. K Connectors
are specified assuming pin gap to be at its maximum tolerance,
to provide you the assurance of real-world specifications.
Compatibility
The K Connector interfaces electrically and mechanically
with 3.5 mm connectors, including SMA and 3.5 mm without
degradation in performance.
Launcher design
At the heart of the K Connector product line are the launchers.
As their name implies, the launchers “launch” (make the transition)
from a microwave circuit (microstrip,suspended substrate, stripline,
or coplanar waveguide) to a coaxial connector and an outside
transmission line. The key to making the transition without
compromising electrical and mechanical objectives is the glass
bead in the launcher assembly.
Shortened Male Pin Eliminates Damage to Female K Connector
Effect of Pin Gap
Pin Gap
Male
Center
Pin
-10
-20
-30
-40
Pin Gap Return Loss (dB)
0
SMA
3.5
K
20
Frequency (GHz)
30
Female
Center
40
Pin
SMA/APC-3.5
K Connector
Page 7
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
5
K CONNECTOR
®
DC to 40 GHz
Low-reflection bead
The K Connector®’s standard glass bead has a 0.30 mm center
conductor and readily connects to fragile devices. The bead is
appropriate for most applications employing Duroid
®
and ceramic
(Alumina) microstrip, such as the 0.25 mm wide transmission line
on a 0.25 mm thick Alumina substrate. Applications using suspended
substrate geometry are equally well satisfied. The bead is
constructed of Corning 7070 glass and has a gold-plated center
conductor and a gold-plated Kovar
®
collar.
The outstanding design of the bead is largely accountable for the
excellent performance of the K Connector launchers. Because the
small 0.30 mm pin introduces minimal discontinuity, return loss is
typically better than 20 dB at 40 GHz and better than 25 dB below
18 GHz. In addition, the design provides for soldering the bead to
achieve a hermetic seal. 310°C max. soldering temperature
is recommended.
Both the sparkplug (screw-in) and the flange-mount K Connector
launchers offer an additional advantage over existing designs. These
launchers do not use an epoxy pin to secure the center conductor, as
used in some SMA designs. Withoutan epoxy pin, the outer
conductor remains solid, and thereby eliminates the leakage path
common to pin-captivated designs. Furthermore, K launchers have a
wall thickness that is four times that of typical launchers (0.8 vs.
0.2 mm). The heavier wall results in superior resistance to overtorquing. Finally, the K Connector launcher can be removed for
repair without removal of the glass bead. This ensures that during
removal the critical microcircuit-to-glass bead interface is not
disturbed, hermeticity is preserved, and the micro-circuit will not be
subjected to the additional stress caused by heating to soldering
temperature. Hardware locking compound such as “Removable
Loctite
®
” should be used to further secure the screw-in launcher in
its housing.
Complete family
Virtually every interface need can be satisfied by one or more of
the K Connector items offered. There are six different models of
K Connector launchers. Two sparkplug (screw-in) launchers are
available, the K102F female version and the K102M male version.
Both screw into the housing that encloses the microwave circuit,
and, like all Anritsu launchers, they can be easily removed for
replacement or repair without unsoldering the glass bead and its
interface to the microwave circuit.
When the housing that encloses the microwave circuit is not thick
enough to support a threaded, screw-in launcher, flush-mounted
(flange) launchers are required. Models with two mounting holes are
available in both male and female versions, K103M and K103F. Two
other models, the K104F and K104M, have four mounting holes.
Mounting hole spacing is identical to that of similar SMA flange
launchers. The glass bead interface, of course, is the same design
used for the sparkplug launcher.
Cable connectors
Both male and female cable connectors are available. The cable
connectors, K101M and K101F, use gold-plated, berylliumcopper center conductors for optimum performance and wear
characteristics, Typical return loss at 40 GHz for finished cables
exceeds 16 dB (1.35 SWR).
K Connector®interface dimensions in metric measurements
Return Loss Characteristics
Transition from Microcircuit to External Transmission Line
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
6
K CONNECTOR
®
DC to 40 GHz
Evaluation kit
01-101A
Evaluation Kit
Kit contains one K120 25 cm Male/Male Cable
Assembly, two K102F Female Sparkplug
Launcher Connector Assemblies, two K104F
Female Flange Launcher Connector Assemblies,
five K100 Glass Beads, one 01-102A Test Fixture,
one 01-104 Drill and Tap Set, five K110-1
Microstrip Sliding Contacts, and all other
parts and fixtures required to assemble launchers
with or without sliding contacts.
01-104
Drill and Tap Set
for precision machining of concentric holes for
mounting K Connector®in microwave housing.
(Drill Part No. B14094) (Tap Part No. 783-255)
01-105A
Male and Female Sparkplug Torquing Kit
01-106
K Soldering Fixture for flange launcher
glass bead, package of 5.
01-107M or 01-107F
Cable Sleeve Soldering Fixture for K101M Male
and K101F Female Cable Connectors,
package of 10.
01-108
Drill and Tap Set
For precision machining of concentric holes for
mounting K Connector
®
in microwave housing in
applications where stress relief contacts are used.
(Drill Part No. B16526) (Tap Part No. 783-255)
K118
Semi-rigid Coaxial Cable
1.5m length of 3.00 mm semi-rigid cable
for K101 series connector
Semi-rigid coaxial cable
Tools and fixtures
01-103
Soldering Fixture forsparkplug
launcher glass beads, package of 10
Type
Semi-rigid coaxial, tin-plated copper
outer conductor, silver-plated copper
center conductor.
Impedance
50 ± 2 Ω
Dielectric type
Microporous Teflon, 0.24 cm diameter
Dielectric constant
1.687
Relative velocity
0.77
Outside diameter
3.00 mm
Center conductor diameter
0.81 mm
Minimum bend radius
0.65 cm
Attenuation
1.6 dB/m at 10 GHz
2.3 dB/m at 20 GHz
3.3 dB/m at 30 GHz
4.7 dB/m at 40 GHz
Anritsu provides two connector tools that
make connecting and disconnecting tiny
connectors more easily and surely
accomplished. These tools are featured
below.
Features
• 01-201 Torque wrench: 0.9 N-M (8 in-lb) for standardSMA and
3.5 mm connectors, and for the Anritsu K Connector
®
and
V Connector
®
.
• 01-204 Handy stainless steel connector wrench for standard SMA,
3.5 mm, and 2.4 mm connectors, and for the Anristu K Connector
®
and V Connector®.
01-201
01-204
01-118
K Connector®Cable Assembling Fixture Kit for
K118 semi-rigid coaxial cable.
Dimensions in millimeters
3.00
0.81
Page 9
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7
K CONNECTOR
®
DC to 40 GHz
7.9 HEX
11.0
8.4
Ø4.06 for K101M
Ø3.05 for K101M-085
Ø3.02 for K101M
Ø2.26 for K101M-085
Dimensions in millimeters
K101M
➃➅
K Male In-Line Cable
Connector, DC-40 GHz
for 3 mm cable
K101M-085
➃
for 2.16 mm cable
12.9
5.3
.5
Ø4.65
Ø3.04
1/4-36 UNS-2A
7.9 HEX
Dimensions in millimeters
K101F
➄➅
K Female In-Line Cable
Connector, DC-40 GHz for
3 mm cable
16.2
8.4
.13
.28
Ø4.65
1/4-36 UNS-2A
7.1 FLATS
7.9 HEX
Dimensions in millimeters
K102M
➂
K Male Sparkplug
Launcher Connector,
DC-40 GHz
10.4
Ø5.33
.15
.30
Ø4.65
Ø5.33
1/4-36 UNS-2A
Dimensions in millimeters
K102F
➂
K Female Sparkplug
Launcher Connector,
DC-40 GHz
K103F
K Female Flange
Launcher, two-hole,
DC-40 GHz
Launchers and cable connectors
K103M
K Male Flange Launcher,
two-hole, DC-40 GHz
Coupling nut tightening torque
1.36 N-m max
Material
Passivated stainless steel with heat-treated beryllium
copper center conductors
Pin depth
0.000 to -0.13 mm for male and
female connectors
Temperature range
-55°C to +125°C
(200°C available; contact factory)
➀ Use with 01-104 or 01-108 Drill and Tap Sets
➁ Use with 01-103 or 01-106 Soldering Fixtures
➂ Use with 01-105A Male and Female Sparkplug
Torquing Kit
➃ Use with 01-107M Cable Sleeve Fixture
➄ Use with 01-107F Cable Sleeve Fixture
➅ Use with 01-118 Cable Assembly Fixture Kit
9.6
5.1
.05
.20
Ø5.3
1/4-36 UNS-2A
1.7
Ø4.1
8.6
4X Ø2.6 THRU
8.6
Ø15.9
12.7 SQ.
Dimensions in millimeters
K104F
K Female Flange Launcher,
four-hole, DC-40 GHz
14.7
8.4
.05
.20
7.92 HEX
1.7
Ø4.1
8.6
4X Ø2.6 THRU
8.6
12.7
Ø15.9
Dimensions in millimeters
K104M
K Male Flange Launcher,
four-hole, DC-40 GHz
7.9 HEX
13.1
8.4
Ø4.14
1.7
.05
.20
2X Ø2.6
6.60
1.8
12.2 15.9
Dimensions in millimeters
Ø5.3
1/4-36 UNS-2A
9.6
5.1
1.7
5.7
2.8
Dimensions in millimeters
Ø4.1
.05
.20
2X Ø2.6 THRU
15.9
12.2
Page 10
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8
K CONNECTOR
®
DC to 40 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
01-101AK Connector®(evaluation kit)
01-103Soldering fixture for sparkplug launcher glass bead
01-104Drill and tap set
01-105AMale and female sparkplug torquing kit
01-106Soldering fixture for flange launcher glass bead
01-107FCable sleeve soldering fixture, female connector
01-107MCable sleeve soldering fixture, male connector
01-108Drill and tap set
01-118Cable assembling fixture for K118 semi-rigid coax cable
01-201Torque wrench, for SMA, 3.5mm, and K Connector and V Connector
01-204Anritsu stainless steel connector wrench
K110-1Microstrip stress relief contact
K110-2Stripline stress relief contact
K110-3Microstrip stress relief contact
K101MK(m) in-line cable connector, DC to 40 GHz for K118 cable
K101M-085K(m) in-line cable connector, DC to 40 GHz for V085 cable
K101FK(f) in-line cable connector, DC to 40 GHz
K102MK(m) sparkplug launcher connector, DC to 40 GHz
K102FK(f) sparkplug launcher connector, DC to 40 GHz
K103M
K(m) flange launcher connector, DC to 40 GHz,
2 mounting holes
K103FK(f) flange launcher connector, DC to 40 GHz, 2 mounting holes
K104M
K(m) flange launcher connector, DC to 40 GHz,
4 mounting holes
K104FK(f) flange launcher connector, DC to 40 GHz, 4 mounting holes
K118
Coaxial cable, 1.5m of 3.00 mm semi-rigid cable for
K101 series connector
S110-1
Microstrip and coplaner waveguide stress relief contact for
0.38 mm glass feedthru center conductor
S110-3
Microstrip and coplaner waveguide stress relief contact for
0.38 mm glass feedthru center conductor
Stress relief contacts
Stress Relief Contacts provide an elegant yet simple solution
to relieving stress at the interface of the microcircuit and its
connecting coaxial conductor. These contacts simply slide onto
the standard K100 and K100B glass bead pins.
K110-1
➀
Microstrip and Coplaner
Waveguide
K110-3
➀
Microstrip
K110-2
➀
Stripline
Frequency range
DC to 40 GHz
Material
0.025 mm heat-treated BeCu
Plating
Bondable gold over nickel
➀ Use with 01-108 Drill and Tap Set
3.18
0.74
1.40
1.93
0.305 DIA.
Dimensions in millimeters
3.18
0.74
1.40
1.93
0.305 DIA.
Dimensions in millimeters
K100
➀➁
Glass Beads for K102, K103,
and K104 connectors
Note: Glass Beads can be
purchased through recommended
vendors. For more information
visit www.anritsu.com.
K100B
➀➁
High Hermeticity* Glass Beads for
K102, K103, and K104 connectors
Note: Glass Beads can be
purchased through recommended
vendors. For more information
visit www.anritsu.com.
*Glass Bead Hermeticity Spec: Hermetic to 1 x 10-8std cc He/sec at 1 atm differential
S110-1 Microstrip and Coplaner
Waveguide for 0.38 mm glass
feedthru center conductor
S110-3 Microstrip and Coplaner
Waveguide for 0.38 mm glass
feedthru center conductor
.711
.711
Dimensions in millimeters
.711
.305
.305
.152
Dimensions in millimeters
.038
.406
.038
.711
.410
.038
.711
.203 .305
.229
.406
Dimensions in millimete
.152
Dimensions in millimeters
.038
.038
.203
.305
Dimensions in millimeters
Page 11
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9
V CONNECTOR
®
DC to 65 GHz
The V Connector®is a reliable 1.85 mm device that operates up
to 65 GHz. It is compatible with 2.4 mm connectors and is
assembled using procedures that are similar to those used on
K Connectors. It is well suited to applications in components,
systems, or instrumentation.
V Connector®features
• Excellent performance up to 65 GHz
• Low VSWR
• Superior reliability
• Low Loss
Exceptional reliability and repeatability
Microwave connector reliability is affected by insertion force, outer
conductor strength, stress relief while mating, and mating
alignment. The V Connector exhibits exceptional performance in all
of these areas.
For proper seating, the V Connector requires only 1/2 the insertion
force of a 2.4 mm connector. The reduced wear on the center
conductor equates to greater reliability. All V Connectors, including
the cable connectors, incorporate another feature that eliminates a
major cause of connector failure; misalignment of the male pin with
respect to the female. To solve the problem, the V Connector male
pin is deliberately made sufficiently short to prevent damage to the
female connector by misalignment. With this arrangement,the outer
housing must be properly aligned prior to the mating of the center
conductors. Thus a proper, non-destructive alignment before mating
is ensured.
The effect of pin gap on a connection is often overlooked, but is
the dominant source of error in many connection systems. Pin gap is
the short length of smaller diameter created when a connector pair
is mated. Pin gap causes a discontinuity at the connector interface.
The V Connector has considerably less susceptibility to pin gap
than 2.4 mm connectors.
Many connector manufacturers specify connector performance
assuming no pin gap, an unrealistic assumption. V Connectors
are specified assuming pin gap to be at its maximum tolerance, to
provide you the assurance of real-world specifications.
Effect of Pin Gap
Shortened Male Pin Eliminates Damage to Female V Connector
Launcher design
At the heart of the V Connector product line are the launchers.
As their name implies, the launchers “launch” (make the transition)
from a microwave circuit (microstrip,suspended substrate, stripline,
or coplanar waveguide) to a coaxial connector and an outside
transmission line. The key to making the transition without
compromising electrical and mechanical objectives is the glass
bead in the launcher assembly.
Low-reflection glass bead
The V Connector’s standard glass bead has a unique 0.24 mm center
conductor and readily connects to fragile devices. The bead is
appropriate for most applications employing Duroid and ceramic
(Alumina) microstrip, such as the 0.25 mm wide center conductor
on a 0.25 mm thick Alumina substrate. Applications using
suspended substrate geometry are equally well satisfied. The bead is
constructed of Corning 7070 glass and has a gold-plated center
conductor and a gold-plated Kovar
®
collar.
The outstanding design of the bead is largely accountable for the
excellent performance of the V Connector launchers. In addition,
the design provides for soldering the bead to achieve a hermetic
seal. 310°C max. soldering temperature is recommended. The
V Connector
®
launchers can be removed for repair without
removal of the glass bead. This ensures that during removal the
critical microcircuit-to-glass bead interface is not disturbed, that
hermeticity is preserved, and that the microcircuit will not be
subjected to the additional stress caused by heating to soldering
temperature. Hardware locking compound such as “Removable
Loctite
®
” should be used to further secure the launcher in
its housing.
Pin Gap
V Connector
Male
Center
Pin
-10
-20
-30
Pin Gap Return Loss (dB)
-40
1020
2.4 mm
V
3040506070
Frequency (GHz)
Female
Center
Pin
Page 12
Complete family
Anritsu’s family of V Connector®products is large and growing.
Virtually every interface need can be satisfied by one or more of the
items offered. As a convenience to the design engineer, each item is
completely specified with both guaranteed and typical performance.
There are four different models of V Connector launchers. Two
types of sparkplug (screw-in) launchers are available; the V102F
female version and the V102M male version. Both screw into the
housing that encloses the microwave circuit. And, like all Anritsu
launchers, they can be easily removed for replacement or repair
without unsoldering the glass bead and its interface to
the microwave circuit.
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
10
V CONNECTOR
®
DC to 65 GHz
Transition from Microcircuit to Outside Transmission Line
V Connector interface dimensions
Evaluation kit
01-301
V Connector Evaluation Kit contains
one V120MM - 25CM Male/Male
Cable Assembly, two V102F Female
Sparkplug Launcher Connector
Assemblies, two V103F Female Flange
Launcher Connector Assemblies, two
V101M Male In-line Cable Connector
Assemblies, five V100 Glass Beads,
one 01-304 Drill and Tap Set, one
01-302 T est Fixture, two 01-303
Soldering Fixtures.
Tools and fixtures
01-303
Soldering Fixture forsparkplug launcher
glass beads, package of 10.
01-304
Drill and Tap Set for precision machining of
concentric holes for mounting V Connector
in microwave housing. (Drill Part No. 783-568)
(Tap Part No. 783-569)
When the housing that encloses the microwave circuit is not thick
enough to support a threaded, screw-in launcher, flush-mounted
(flange) launchers are required. Models with two mounting holes
are available in both male and female versions, V103M and V103F.
The mounting hole spacing is identical to that of similar SMA
flange launchers. The glass bead interface, of course, is the same
design used for the sparkplug launcher.
Cable connectors
To complement high performance V085 cable, both male and female
cable connectors are available. Typical return loss at 65 GHz for
finished cables exceeds 16 dB (1.35 SWR).
The V Connector
®
coaxial cable connectors use a 2.16 mm cable
with a microporous Teflon dielectric and a copper center conductor.
The cable assemblies use the center conductor of the coax as the
male pin. This is similar to the UT-141 SMA-type assembly and
2.4 mm cable assemblies. The microporous Teflon dielectric has
maximum phase stability and minimum insertion loss. This type
of cable assembly allows for easy assembly and maximum RF
performance; however, since the male pin is copper, the cable
assemblies are not suitable for repeated connections. In applications
where the cable will be subject to more than 100 connections,
we recommend that a connector saver be used.
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
11
V CONNECTOR
®
DC to 65 GHz
01-105A
K and V Connector®Male and Female
Sparkplug T orquing Kit.
Semi-rigid coaxial cable
Launchers and cable connectors
V085
semirigid coaxial cable
1.5m length of 2.16 mm semirigid cable forV101 series connector
01-309
V Connector Cable Assembling Fixture
for V085 semi-rigid cable.
01-306
Soldering Fixture for flange launcher glass
bead, package of 5.
01-308
Drill and Tap set for precision machining of
concentric holes for mounting V Connector in
microwave housing in applications where
stress-relief contacts are used.
(Drill Part No. 55300) (Tap Part No. 783-569)
01-307M or 01-307F
Cable Sleeve Soldering Fixture for V101M
Male and V101F Female Cable Connectors,
package of 10.
Stress relief contacts
Stress Relief Contacts provide an elegant yet simple solution
to relieving stress at the interface of the microcircuit and its
connecting coaxial conductor. These contacts simply slide onto the
standard glass bead pins and can be soldered, bonded or parallel-gap
welded to a circuit trace.
V110-1
Microstrip and Coplanar Waveguide
when using the V110-1, use 01-308
Drill and Tap set to make the
required concentric holes.
Frequency range
DC to 67 GHz
Material
0.025 mm heat-treated BeCu
Plating
Bondable gold
Packaging
Lots of 25
Return loss (launchers only)
15 dB up to 65 GHz
Coupling nut tightening torque
1.36 N-m max
Material
Passivated stainless steel with heat-treated
beryllium copper center conductors
Pin depth
0.000 to -0.130 mm for male and
female connectors
Temperature range
-55°C to +125°C
Type
Semi-rigid coaxial, tin-plated copper
outer conductor, silver-plated copper
center conductor.
Impedance
50 ± 2 Ω
Dielectric type
Microporous Teflon, 0.14 cm diameter
Dielectric constant
1.687
Relative velocity
0.77
Outside diameter
2.16 mm
Center conductor diameter
0.51 mm
Minimum bend radius
0.65 cm
Attenuation
2.3 dB/m at 10 GHz
3.6 dB/m at 20 GHz
4.3 dB/m at 30 GHz
5.2 dB/m at 40 GHz
7.2 dB/m at 60 GHz
Anritsu provides two connector tools that
make connecting and disconnecting tiny
connectors more easily and surely
accomplished. These tools are featured
below.
Features
• 01-201 Torque wrench: 0.9 N-M (8 in-lb) for standardSMA and
3.5 mm connectors, and for the Anritsu K Connector
®
and
V Connector
®
.
• 01-204 Handy stainless steel connector wrench for standard SMA,
3.5 mm, and 2.4 mm connectors, and for the Anristu K Connector
®
and V Connector®.
01-201
01-204
0.51
Dimensions in millimeters
2.16
.038 ±.008
.165
Dimensions in millimeters
.254.635
Page 14
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
12
V CONNECTOR
®
DC to 65 GHz
V103F
V Female Flange
Launcher, two-hole,
DC-65 GHz
V101M
➁➃
V Male In-Line Cable
Connector, DC-65 GHz
for V085 cable
V102M
➀
V Male Sparkplug
Launcher
Connector,
DC-65 GHz
V102F
➀
V Female Sparkplug
Launcher Connector,
DC-65 GHz
V101F
➂➃
V Female In-Line Cable
Connector, DC-65 GHz
for V085 cable
V103M
V Male Flange Launcher,
two-hole, DC-65 GHz
➀ Use with 01-105A Male and Female Sparkplug Torquing Kit
➁ Use with 01-307M Cable Sleeve Fixture
➂ Use with 01-307F Cable Sleeve Fixture
➃ Use with 01-309 Cable Assembling Fixture
V103M-012
V Male Flange Launcher,
two-hole for 0.30 mm
glass bead pin,
DC-65 GHz
V103F-012
V Female Flange
Launcher, two-hole for
0.30 mm glass bead pin,
DC-65 GHz
M7 X 0.75-6G
Ø5.8
8.9
12.4
11.4
M7 X 0.75-6G
Dimensions in millimeters
1.6
2X Ø2.6
Ø3.18
.19
Dimensions in millimeters
Ø2.26
Ø3.18
7.9 HEX
15.9
12.2
5.7
M7 X 0.75-6G
Ø5.8
M6 X 0.75-6G
10.9
15.3
11.5
Ø3.18
4.4
Dimensions in millimeters
1.6
Ø3.18
.19
Dimensions in millimeters
7.12
7.9 HEX
2X Ø2.6
15.9
12.2
5.69
11.3
Ø2.26
Ø4.06
8.76
Dimensions in millimeters
7.9 HEX
Ø5.8
M6 X 0.75-6G
Ø3.18
Ø4.83 ±.05
4.9
11.5
.19
Dimensions in millimeters
Ø7.00
7.9 HEX
2X Ø2.6
5.7
12.2
Dimensions in millimeters
15.9
7.9 HEX
1.6
Ø3.18
12.2
.19
M7 X 0.75-6G
11.3
Ø3.18
.19
1.6
2X Ø2.6
5.7
15.9
12.2
Dimensions in millimeters
Page 15
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
13
V CONNECTOR
®
DC to 65 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
01-105AMale and female sparkplug torquing kit
01-201Torque wrench, for SMA, 3.5mm, and K Connector and V Connector
01-204Anritsu stainless steel connector wrench
01-301V Connector® (evaluation kit)
01-303Soldering fixture for sparkplug launcher glass bead
01-304Drill and tap set
01-306Soldering fixture for flange launcher glass bead
01-307M Cable sleeve soldering fixture, male connector
V085Coaxial cable, 152 cm (5 feet) length of 2.16 mm semi-rigid cable
V101MV(m) in-line cable connector, DC to 65 GHz
V101FV(f) in-line cable connector, DC to 65 GHz
V102MV(m) sparkplug launcher connector, DC to 65 GHz
V102FV(f) sparkplug launcher connector, DC to 65 GHz
V103MV(m) flange launcher connector, DC to 65 GHz, 2 mounting holes
V103M-012
V(m) flange launcher, 2 mounting holes for 0.30 mm glass bead pin,
DC to 65 GHz
V103F-012
V(f) flange launcher, 2 mounting holes for 0.30 mm glass bead pin,
DC to 65 GHz
V103FV(f) flange launcher connector, DC to 65 GHz, 2 mounting holes
V110-1Microstrip stress relief contact
➀ Use with 01-303 or 01-306 Soldering Fixtures
➁ Use with 01-304 or 01-308 Drill and Tap Sets
2.79 ± 0.18
0.66 ± 0.10
1.73 ± 0.05
1.40 ± 0.05
Ø 0.24 ± 0.03
Dimensions in millimeters
2.79 ± 0.18
0.66 ± 0.10
1.73 ± 0.05
1.40 ± 0.05
Ø 0.24 ± 0.03
Dimensions in millimeters
V100
➀➁
Glass Beads for V102,
and V103 connectors
(package of 5)
Note: Glass Beads can be
purchased through recommended
vendors. For more information
visit www.anritsu.com.
V100B
➀➁
High Hermeticity* Glass Beads for
V102, and V103 connectors
(package of 5)
Note: Glass Beads can be
purchased through recommended
vendors. For more information visit
www.anritsu.com.
*Glass Bead Hermeticity Spec: Hermetic to 1 x 10-8std cc He/sec at 1 atm differential
Environmental information
Tests are performed per MIL-STD-202F.
Operating Temperature
Range
–55°C to +125°
Temperature Shock
–55°C to +150°
Humidity
95% at 40°C, 96 hours, Test 103B, Condition B
Shock
100 G peak sawtooth, method 213, Test condition 1
Vibration
Sinewave: 10 Hz to 2000 Hz, 0.06” DA, method 204,
test condition D
Random: 50 Hz to 2000 Hz, 11.6 Grms, Power Spectral Density
0.1 Grms 2 Hz, Method 214, Test Condition 1, Letter D
Salt Spray
5% concentration for 48 hours, Method 101D, Condition B
Voltage withstanding
500 Vac RMS, 60 seconds, method 301
Page 16
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
14
INTEGRATED V CONNECTORS
DC to 65 GHz
The Integrated V Connector®family is a group of female
connectors which have the launcher and the glass bead integrated
into one piece. All compensation steps for matching to Microstrip
or Coplanar Waveguide (CPW) are included in the solder-in
hermetic* connectors, ensuring that they deliver excellent
performance. The integrated V connectors come in two easy-to-
V115FMS75
Integrated V F emale solder-in
connector, with ground lip, DC
to 65 GHz. Designed for
Microstrip. For use with 0.19
mm (7.5 mil) substrates.
V115FMS75* outline
V115FCPW
Integrated V F emale solder-in
connector, with ground lip,
DC to 65 GHz. Designed for
Coplanar W ave guide.
V115FCPW* outline
V115FMS10
Integrated V F emale solder-in
connector, with ground lip,
DC to 65 GHz. Designed for
Microstrip. For use with 0.25
mm (10 mil) substrates.
V115FMS10* outline
V116F
Integrated V F emale Sparkplug
(screw-in) connector,
DC to 65 GHz.
V116F* outline
* Hermeticity specification: 1 x10-8std cc He/sec at 1 atm differential.
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
V115FMS10
Integrated V(f) solder-in connector for use with 0.25 mm
(10 mil) substrates
V115FMS75
Integrated V(f) solder-in connector for use with 0.19 mm
(7.5 mil) substrates
V115FCPWIntegrated V(f) solder-in connector for Coplanar Waveguide
V116FIntegrated V(f) sparkplug connector
install styles: the solder-in version, which is the V115F group, and the
V116F screw-in version, which allows more versatility of microcircuit
launch design. In addition, the V116F can be soldered in for
hermeticity. These connectors, except for the CPW version, are
designed to be used with the V110-1 Stress Relief Contacts. The
Integrated V connectors are compatible with otherV Connectors.
Environmental information
Tests are performed per MIL-STD-202F.
Operating Temperature
Range
–55°C to +125°
Temperature Shock
–55°C to +150°
Humidity
95% at 40°C, 96 hours, Test 103B, Condition B
Shock
100 G peak sawtooth, method 213, Condition B, Test condition 1
Vibration
Sinewave: 10 Hz to 2000 Hz, 0.06” DA, method 204,
test condition D
Random: 50 Hz to 2000 Hz, 11.6 Grms, Power Spectral Density
0.1 Grms 2 Hz, Method 214, Test Condition 1, Letter D
Salt Spray
5% concentration for 48 hours, Method 101D, Condition B
Voltage withstanding
500 Vac RMS, 60 seconds, method 301
M7 x 0.75 - 6G
Ø5.84
6.41
7.42
(10.66)
Ø2.948 ±.025
2.74
.51
R3.94
Dimensions in millimeters
Ø4.10 ±.025
6.400 ±.025
.597 ±.025
M7 x .75 - 6G
Ø4.27 ±.03
M5 x .5 - 6G
2.92
6.54
(9.46)
Dimensions in millimeters
Ø5.84 ±.03
5.78
Ø5.84
6.41 ±.05
7.42 ±.05
6.41 ±.05
7.42 ±.05
(10.66)
M7 x 0.75 - 6G
2.54
(10.33)
M7.0 x 0.75 - 6G
2.74
.38
R3.94
Dimensions in millimeters
R3.94
.51
.419 ±.025
Ø4.19 ±.03
Dimensions in millimeters
Ø4.19 ±.03
.02 ±.05
6.400 ±.025
6.400 ±.025
Page 17
VP™ CONNECTOR
Ø4.06
3.62
4.94
1.72
Ø3.18
.76
.02
2X Ø.51
1.53
.38
Dimensions in millimeters
4.15
.57
3.57 ACROSS FLTS
Ø4.02
Ø4.02
Ø.24
Dimensions in millimeters
DC to 65 GHz
The VP Connector family, with shrouds and adapters, is well
suited for applications in components, systems and
instrumentation to 65 GHz. Anritsu’s family of VP Connectors
satisfies virtually every interface and provides excellent and
reliable performance.
he VP Shrouds, except for the CPW version, are designed
T
to be used with the Anritsu V110-1 Stress Relief Contact
sliding contact). The CPW Shrouds backside interface is a
(
pin overlap design, so the center pin is directly connected to
the transmission line and the substrate ground is directly
attached to the ground lip.
Cable Connector
The VP Cable connector uses standard semi-rigid 2.16 mm
cable just like the V cable Connectors. One can install a
standard V Cable connector on the opposite end which makes
the testing of modules much easier. The VP cable connector
has a flange to ensure a rigid connection to the module. The
cable connectors can also be utilized for connecting two
modules back to back.
VP-VF Adapters
VP-VF Adapters are specifically designed for testing the
modules using the Precision
can be replaced with a VP Bullet or VP Cable Connector.
V Connector. The VP-VF Adapter
VP™Connector features
• Superior RF Performance to 65 GHz
• Hermetic Connection
• Sliding Contact Connection to Microstrip
• Ground lip for handling substrates on carriers
• Testing capabilities using VP-VF Adapter
• Auto alignment capabilities on VP-VF Adapters
VP Bullet
The VP Bullet is a VP-VP adapter, designed to connect two
modules with shrouds, back to back. The VP Bullet exhibits
exceptional performance due to it’s unique design concept.
The VP Bullet is designed with six slots in the outer conductor
and four slots in the center conductor. The increase in the
number of slots in the outer conductor reduces the insertion and
extraction force to less than one half of the
force required for
conventional SMP connectors and thus reduces wear and tear.
In the lab VP Bullets have been tested to 1000 insertions with no
degradation in performance.
Anritsu guarantees at least 500
connections. In addition, the VP Bullet provides a positive
stop so that fingers can not be damaged during insertion.
VP Shroud Design
Shrouds are based on the design concept first used
Anritsu
in Anritsu’s Integrated V Connector
standard V Glass bead and the critical compensation steps
required to install the glass bead in the housing are a
the hermetic shroud design. Since Anritsu controls the critical
internal dimensions, consistent performance is assured.
VP
®
. VP Shrouds use the
part of
01-501
Bullet Insertion and Removal Tool
VP100BCPW
Solder-in CPW hermetic shroud
VP100B
Screw-in hermetic shroud
01-502
Torque screwdriver adapter
Additionally, the ground lip allows the substrate ground to
be attached directly to the connector, eliminating the long
ground path common to other connector families. This short
ground path improves return loss performance, especially
at the high end of the frequency range.
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
15
Page 18
VP™ CONNECTOR
3.62
Ø4.06
.42
Ø3.18
1.72
5.26
.51
0.24
Dimensions in millimeters
1.24
10.11
2X R6.35
5.1
2X Ø1.60
Ø3.00
Ø5.33
5.18
10.24
1.6
6.35
Dimensions in millimeters
2.62
6.50
Ø3.05
Ø1.93
Ø1.51
Dimensions in millimeters
4.75
1.02
Ø4.06
Ø3.18
Ø
.63
Dimensions in millimeters
5.1
10.24
1.24
11.84
1.6
6.65
10.11
3
.33
2
X Ø1.60 THRU
Ø5.84
Ø5.33
M
7 X .75
Dimensions in millimeters
SMPM FEMALE
CONNECTOR
2.60
6.9
2.66
Ø3.30
VP FEMALE
CONNECTOR
Dimensions in millimeters
3
.62
Ø4.06
Ø
3.18
1.72
5.26
2
X Ø.50
1.6
.58
.51
Dimensions in millimeters
DC to 65 GHz
VP100BMS75
Solder-in
7.5 mil Microstrip
hermetic shroud
VP101F
VP cable adapter
VP100BMS10
Solder-in
10 mil Microstrip
hermetic shroud
VP100BNL
No lip hermetic
shroud
16
VP102F
VP Bullet
VP103F
VP-VF Adapter
VP104F
VP to SMPM Bullet
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
Page 19
VP™ CONNECTOR
DC to 65 GHz
Materials:
VP100B Shroud
Outer conductor: Brass, gold plated over nickel per
Mil-G-45204C
Bead body: Kovar, gold plated over nickel per
Mil-G-45204C
C
enter pin: Kovar, gold plated over nickel per
Mil-G-45204C
Bead dielectric: Corning 7070 glass
Typical High Frequency Return-Loss measured on VP102F over the range
of 40 MHz to 65 GHz.
Specifications:
Impedance
Frequency
Insertion Loss
VSWR: VP102F
Insulation Resistance
Center conductor
contact resistance
Force to engage
Force to disengage
Center contact
Retention
Radial Misalignment
Axial Misalignment
Hermeticity
50 Ω
DC to 65 GHz
0.05 √ f (GHz)
1.43 typical
> 1200 MΩ
6 mΩ typical
4.2 N typical (1 lbf typical)
7 N typical. (1.5 lbf typical)
83 N typical. (18 lbf typical)
0.25 mm (0.010*) for VP102F
0-0.15 mm (0 to 0.006*) for VP102F
1 x10-8std cc He/sec at 1
atmosphere differential for all shrouds
VP100BCPW,
VP100BMS10, VP100BNL
Shrouds
VP101F VP Cable adapter
VP102F VP Bullet, VP104F
VP to SMPM Bullet
VP103F, VP-VF adapter
Outer conductor: Steel, gold plated over nickel per
Mil-G-45204C
Center pin: Kovar, gold plated over nickel per
Mil-G-45204C
Bead dielectric: Corning 7070 glass
Beryllium-copper, gold plated over nickel per
Mil-G-45204C
Heat treated Beryllium-copper,
gold plated over nickel per Mil-G-45204C
Dielectric: Polyphenylene Oxide Noryl (PPO)
Body: Passivated stainless steel
Bead: Polyphenylene Oxide Noryl (PPO)
Center conductor: Beryllium-copper,
gold plated over nickel per Mil-G-45204C
Environmental Information:
Tests are performed per MIL-STD-202F
Operating
Temperature Range
Temperature Shock
Humidity
Shock
Vibration
Salt Spray
Voltage withstanding
–54° to +125°C
25° C to –55° C and 25° C to +200° C, method 107G, Condition
B for shrouds to +125°C for bullet
and cable adapter
95% at 40°C, 96 hours, Test 103B, Condition B
100 G peak sawtooth, method 213, test condition 1
Sinewave: 10 Hz to 2000 Hz, 0.06* DA, method 204,
test condition D
Random: 50 Hz to 2000 Hz, 11.6 Grms, Power Spectral Density
0.1 Grms2/Hz,
Method 214, Test Condition I, Letter D
5% concentration for 48 hours,
Method 101D, Condition B
ac RMS, 60 seconds, method 301
500 V
Ordering information
Please specify model/order number
Model/Order No.Name
VP100BCPWSolder-in CPW hermetic shroud
VP100BMS10Solder
VP100BNLNo lip hermetic shroud
VP100BScrew-in hermetic shroud
VP101FVP cable adapter
VP102FVP bullet
VP103FVP-VF adapter
VP104FVP to SMPM bullet
01-501Bullet insertion and removal tool
01-502V100B Torque tool adapter
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
-in 10 mil microstrip hermetic shroud
, name, and quantity when
ordering.
17
Page 20
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
18
W1 CONNECTOR
®
DC to 110 GHz
The W1 Connector®Family is a complete coaxial connector system
with mode-free performance to 110 GHz. Based on the 1.00 mm
coaxial connector front side interface as specified by IEEE Std 287,
the W1 Connector is well suited for high frequency applications
ranging from components to systems and instrumentation.
W1 Connector®features
• Excellent RF Performance to 110 GHz
• 50
Ω
Impedance
• Low VSWR
• Standard 1 mm Interface
• Accurate Testing Capability
• Broadband Load for Instrument and Device Under Test
Connector Launchers
The W1 Connector®launcher family includes both male and female
W1 Connectors. The W1 Connector
®
has an air dielectric interface
similar to K and V connectors. The center conductor is supported by
Anritsu’s proprietary low-loss high temperature support bead on one
end and a glass bead (W1-102F and W1-102M ) or a Teflon bead
(W1-105F and W1-105M) on the other end. The use of the high
temperature support bead allows the connector to be subjected to
temperature ranges up to 200°C for a short period. The center
conductor extends outside of the connector and allows the user to
make a direct pin overlap connection to the microwave circuit. The
threads on the backside of the W1 Connector
®
allow the user to
install the W1 Connector
®
by screwing it into the housing wall.
Since Anritsu’s proprietary low-loss high temperature plastic bead is
used, the user can solder the connector which has the glass bead into
the housing to achieve a hermetic connection.
Flange Mount Connector
W1 two-hole Flange Mount female Connector is also available. The
center conductor of the connector is supported by a PPO
®
bead on
the front-end and by a Teflon bead on the back end. The center
conductor extends outside the connector, allowing for a direct pin
overlap connection to the microwave circuit.
Cable Connector
Both the male and female cable connectors are available. Typical
return loss at 110 GHz for finished cables exceeds 16 dB (1.35 SWR).
01-504,W1-6 mm
T or que Wr ench
01-506,W1-7 mm
T or que Wr ench
Tools
W1-101M
W1 Male In-line Cable
Connector, DC-110 GHz
W1-102M,W1-105M
W1 Male Sparkplug
Connector, DC-110 GHz
W1-101F
W1 Female In-line Cable
Connector, DC-110 GHz
Connectors
01-505,W1-6-7 mm
Open end Wrench
4.8 HEX
13.5
3.6
Dimensions in millimeters
2.4
6.0 HEX
4.8 HEX
13.6
3.9
3.6
Dimensions in millimeters
6.0 HEX
M4 X 0.7-6G
1.57
6.00 HEX
Dimensions in millimeters
13.67
5.57
1.9
Ø.127
.33
M7 X 0.75-6g
Ø4.48
7.00
Ø2.45
Page 21
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19
W1 CONNECTOR
®
DC to 110 GHz
W047-2
Semi-rigid coaxial cable,
1.52 m length of 1.19
mm semi-rigid cable for
W1-101 series connector
Impedance
50 Ω
Frequency
DC to 110 GHz
Insertion Los
0.70 dB typical
Return Loss
1.38 to 110 GHz typical
1.24 to 110 GHz typical (W1-101F, W1-101M)
Insulation Resistance
>1200 MΩ
Center Conductor Contact
Resistance
6 mΩ typical
Maximum Power CW
6 W
Frontside Pin Depth
0 to 0.076 mm maximum
Backside Pin Protrusion
0.33 mm typical for W1-102F, W1-102M, W1-105F,
W1-105M, 0.61 mm typical for W1-103F
Torque Coupling Nut
4 in-lb maximum
Torque W1 Connector
Installation
5 in-lb maximum
Hermeticity (W1-102F,
W1-102M)
1 x 10-8std cc He/sec at atmosphere differential
Environmental information
Tests are performed per MIL-STD-202F.
Operating Temperature
Range
0° to +85°C
Storage Temperature
Range
-54° to +125°C for W1-102F, W1-102M, W1-105F, W1-105M
-54° to +85°C for W1-103F
Humidity
25° to -40° and 25° to 125°C, method 107G, condition B
Shock
100G peak sawtooth, method 213, test condition 1
Vibration
Sinewave: 10 Hz to 2000 Hz, 0.06” DA, method 204,
test condition D
Random: 50 Hz to 2000 Hz, 11.6 Grams, Power Spectral Density
0.1 Grams
2
/Hz, Method 214, Test Condition 1, Letter D
Salt Spray
5% concentration for 48 hours, Method 101D, Condition B
Dielectric Withstanding
Voltage
500 Vac RMS, 60 seconds, method 301
Specifications
W-101F
W1-101M
Outer Conductor: Passivated Stainless Steel
Center Conductor: Beryllium-copper, gold plated over nickel per Mil-G-45204C
Coupling Nut: Passivated Stainless Steel
Sleeve: Beryllium-copper, gold plated over nickel per Mil-G-45204C
Lock Screw: Passivated Stainless Steel
W1-102F
W1-102M
Outer Conductor: Beryllium-copper, gold plated over nickel per Mil-G-45204C
Center Conductor: Beryllium-copper, gold plated over nickel per Mil-G-45204C
Coupling Nut: Passivated Stainless Steel
Glass Bead Center Pin: Kovar, gold pated over nickel per Mil-G-45204C
Glass Bead Outer Conductor: Kovar, gold pated over nickel per Mil-G-45204C
Glass Bead Dielectric: Corning 7070 Glass
Plastic Bead Dielectric: Proprietary
W1-103F
Outer Conductor: Passivated stainless steel
Center Conductor: Beryllium-copper, gold plated over nickel per Mil-G-45204C
Coupling Nut: Passivated Stainless Steel
Plastic Support Bead Dielectric: Polyphenylene Oxide Noryl
W1-105F
W1-105M
Outer Conductor: Passivated stainless steel
Center Conductor: Beryllium-copper, gold plated over nickel per Mil-G-45204C
Coupling Nut: Passivated Stainless Steel
Glass Bead Center Pin: Kovar, gold pated over nickel per Mil-G-45204C
Glass Bead Outer Conductor: Kovar, gold pated over nickel per Mil-G-45204C
Glass Bead Dielectric: Corning 7070 Glass
Plastic Support Bead Dielectric: Proprietary
Materials
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
W1-101FW1 Male In-line Cable Connector, DC-110 GHz
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
RF CABLES
K120, V120 DC to 65 GHz
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
Cable, semi-rigid
N120-6001 to 18 GHz, 50 Ω, 15 cm, N(m) to N(m)
NS120MF-60.01 to 18 GHz, 50 Ω, 15 cm, N(m) to SMA(f)
K120MM-5CMDC to 40 GHz, 50 Ω, 5 cm, K(m) to K(m)
K120MM-10CMDC to 40 GHz, 50 Ω, 10 cm, K(m) to K(m)
K120MM-15CMDC to 40 GHz, 50 Ω, 15 cm, K(m) to K(m)
K120MM-20CMDC to 40 GHz, 50 Ω, 20 cm, K(m) to K(m)
K120MM-25CMDC to 40 GHz, 50 Ω, 25 cm, K(m) to K(m)
K120MM-30CMDC to 40 GHz, 50 Ω, 30 cm, K(m) to K(m)
K120MM-35CMDC to 40 GHz, 50 Ω, 35 cm, K(m) to K(m)
K120MM-40CMDC to 40 GHz, 50 Ω, 40 cm, K(m) to K(m)
K120MM-45CMDC to 40 GHz, 50 Ω, 45 cm, K(m) to K(m)
K120MM-50CMDC to 40 GHz, 50 Ω, 50 cm, K(m) to K(m)
K120MM-60CMDC to 40 GHz, 50 Ω, 60 cm, K(m) to K(m)
K120MM-70CMDC to 40 GHz, 50 Ω, 70 cm, K(m) to K(m)
K120MM-80CMDC to 40 GHz, 50 Ω, 80 cm, K(m) to K(m)
K120MM-90CMDC to 40 GHz, 50 Ω, 90 cm, K(m) to K(m)
K120MM-100CMDC to 40 GHz, 50 Ω, 100 cm, K(m) to K(m)
K120MM-125CMDC to 40 GHz, 50 Ω, 125 cm, K(m) to K(m)
K120MM-150CMDC to 40 GHz, 50 Ω, 150 cm, K(m) to K(m)
K120MF-5CMDC to 40 GHz, 50 Ω, 5 cm, K(m) to K(f)
K120MF-10CMDC to 40 GHz, 50 Ω, 10 cm, K(m) to K(f)
K120MF-15CM DC to 40 GHz, 50 Ω, 15 cm, K(m) to K(f)
K120MF-20CM DC to 40 GHz, 50 Ω, 20 cm, K(m) to K(f)
K120MF-25CMDC to 40 GHz, 50 Ω, 25 cm, K(m) to K(f)
K120MF-30CMDC to 40 GHz, 50 Ω, 30 cm, K(m) to K(f)
K120MF-35CMDC to 40 GHz, 50 Ω, 35 cm, K(m) to K(f)
K120MF-40CMDC to 40 GHz, 50 Ω, 40 cm, K(m) to K(f)
K120MF-45CMDC to 40 GHz, 50 Ω, 45 cm, K(m) to K(f)
K120MF-50CMDC to 40 GHz, 50 Ω, 50 cm, K(m) to K(f)
K120MF-60CMDC to 40 GHz, 50 Ω, 60 cm, K(m) to K(f)
K120MF-70CMDC to 40 GHz, 50 Ω, 70 cm, K(m) to K(f)
K120MF-80CMDC to 40 GHz, 50 Ω, 80 cm, K(m) to K(f)
K120MF-90CMDC to 40 GHz, 50 Ω, 90 cm, K(m) to K(f)
K120MF-100CMDC to 40 GHz, 50 Ω, 100 cm, K(m) to K(f)
K120MF-125CMDC to 40 GHz, 50 Ω, 125 cm, K(m) to K(f)
K120MF-150CMDC to 40 GHz, 50 Ω, 150 cm, K(m) to K(f)
K120FF-5CMDC to 40 GHz, 50 Ω, 5 cm, K(f) to K(f)
K120FF-10CMDC to 40 GHz, 50 Ω, 10 cm, K(f) to K(f)
K120FF-15CMDC to 40 GHz, 50 Ω, 15 cm, K(f) to K(f)
K120FF-20CMDC to 40 GHz, 50 Ω, 20 cm, K(f) to K(f)
K120FF-25CMDC to 40 GHz, 50 Ω, 25 cm, K(f) to K(f)
K120FF-30CMDC to 40 GHz, 50 Ω, 30 cm, K(f) to K(f)
K120FF-35CMDC to 40 GHz, 50 Ω, 35 cm, K(f) to K(f)
K120FF-40CMDC to 40 GHz, 50 Ω, 40 cm, K(f) to K(f)
K120FF-45CMDC to 40 GHz, 50 Ω, 45 cm, K(f) to K(f)
K120FF-50CMDC to 40 GHz, 50 Ω, 50 cm, K(f) to K(f)
K120FF-60CMDC to 40 GHz, 50 Ω, 60 cm, K(f) to K(f)
K120FF-70CMDC to 40 GHz, 50 Ω, 70 cm, K(f) to K(f)
K120FF-80CMDC to 40 GHz, 50 Ω, 80 cm, K(f) to K(f)
K120FF-90CMDC to 40 GHz, 50 Ω, 90 cm, K(f) to K(f)
K120FF-100CMDC to 40 GHz, 50 Ω, 100 cm, K(f) to K(f)
K120FF-125CMDC to 40 GHz, 50 Ω, 125 cm, K(f) to K(f)
K120FF-150CMDC to 40 GHz, 50 Ω, 150 cm, K(f) to K(f)
Model/Order No.Name
Cable, semi-rigid
V120MM-5CMDC to 65 GHz, 50 Ω, 5 cm, V(m) to V(m)
V120MM-10CMDC to 65 GHz, 50 Ω, 10 cm, V(m) to V(m)
V120MM-15CMDC to 65 GHz, 50 Ω, 15 cm, V(m) to V(m)
V120MM-20CMDC to 65 GHz, 50 Ω, 20 cm, V(m) to V(m)
V120MM-25CMDC to 65 GHz, 50 Ω, 25 cm, V(m) to V(m)
V120MM-30CMDC to 65 GHz, 50 Ω, 30 cm, V(m) to V(m)
V120MM-35CMDC to 65 GHz, 50 Ω, 35 cm, V(m) to V(m)
V120MM-40CMDC to 65 GHz, 50 Ω, 40 cm, V(m) to V(m)
V120MM-45CMDC to 65 GHz, 50 Ω, 45 cm, V(m) to V(m)
V120MM-50CMDC to 65 GHz, 50 Ω, 50 cm, V(m) to V(m)
V120MM-60CM DC to 65 GHz, 50 Ω, 60 cm, V(m) to V(m)
V120MM-70CM DC to 65 GHz, 50 Ω, 70 cm, V(m) to V(m)
V120MM-80CM DC to 65 GHz, 50 Ω, 80 cm, V(m) to V(m)
V120MM-90CM DC to 65 GHz, 50 Ω, 90 cm, V(m) to V(m)
V120MM-100CM DC to 65 GHz, 50 Ω, 100 cm, V(m) to V(m)
V120MM-125CM DC to 65 GHz, 50 Ω, 125 cm, V(m) to V(m)
V120MM-150CM DC to 65 GHz, 50 Ω, 150 cm, V(m) to V(m)
V120MF-5CMDC to 65 GHz, 50 Ω, 5 cm, V(m) to V(f)
V120MF-10CMDC to 65 GHz, 50 Ω, 10 cm, V(m) to V(f)
V120MF-15CM DC to 65 GHz, 50 Ω, 15 cm, V(m) to V(f)
V120MF-20CM DC to 65 GHz, 50 Ω, 20 cm, V(m) to V(f)
V120MF-25CM DC to 65 GHz, 50 Ω, 25 cm, V(m) to V(f)
V120MF-30CM DC to 65 GHz, 50 Ω, 30 cm, V(m) to V(f)
V120MF-35CM DC to 65 GHz, 50 Ω, 35 cm, V(m) to V(f)
V120MF-40CM DC to 65 GHz, 50 Ω, 40 cm, V(m) to V(f)
V120MF-45CM DC to 65 GHz, 50 Ω, 45 cm, V(m) to V(f)
V120MF-50CM DC to 65 GHz, 50 Ω, 50 cm, V(m) to V(f)
V120MF-60CM DC to 65 GHz, 50 Ω, 60 cm, V(m) to V(f)
V120MF-70CM DC to 65 GHz, 50 Ω, 70 cm, V(m) to V(f)
V120MF-80CMDC to 65 GHz, 50 Ω, 80 cm, V(m) to V(f)
V120MF-90CM DC to 65 GHz, 50 Ω, 90 cm, V(m) to V(f)
V120MF-100CM DC to 65 GHz, 50 Ω, 100 cm, V(m) to V(f)
V120MF-125CM DC to 65 GHz, 50 Ω, 125 cm, V(m) to V(f)
V120MF-150CM DC to 65 GHz, 50 Ω, 150 cm, V(m) to V(f)
V120FF-5CMDC to 65 GHz, 50 Ω, 5 cm, V(f) to V(f)
V120FF-10CMDC to 65 GHz, 50 Ω, 10 cm, V(f) to V(f)
V120FF-15CMDC to 65 GHz, 50 Ω, 15 cm, V(f) to V(f)
V120FF-20CMDC to 65 GHz, 50 Ω, 20 cm, V(f) to V(f)
V120FF-25CMDC to 65 GHz, 50 Ω, 25 cm, V(f) to V(f)
V120FF-30CMDC to 65 GHz, 50 Ω, 30 cm, V(f) to V(f)
V120FF-35CMDC to 65 GHz, 50 Ω, 35 cm, V(f) to V(f)
V120FF-40CMDC to 65 GHz, 50 Ω, 40 cm, V(f) to V(f)
V120FF-45CMDC to 65 GHz, 50 Ω, 45 cm, V(f) to V(f)
V120FF-50CMDC to 65 GHz, 50 Ω, 50 cm, V(f) to V(f)
V120FF-60CMDC to 65 GHz, 50 Ω, 60 cm, V(f) to V(f)
V120FF-70CMDC to 65 GHz, 50 Ω, 70 cm, V(f) to V(f)
V120FF-80CMDC to 65 GHz, 50 Ω, 80 cm, V(f) to V(f)
V120FF-90CMDC to 65 GHz, 50 Ω, 90 cm, V(f) to V(f)
V120FF-100CMDC to 65 GHz, 50 Ω, 100 cm, V(f) to V(f)
V120FF-125CMDC to 65 GHz, 50 Ω, 125 cm, V(f) to V(f)
V120FF-150CMDC to 65 GHz, 50 Ω, 150 cm, V(f) to V(f)
22
Page 25
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
23
ARMORED SEMI-RIGID TEST PORT CABLES
3670 Series DC to 65 GHz
3670K50
The 3670 series cables are laboratory quality cables that contain
General Precision Connectors. These cables are used to connect
VNA Test Sets to the device under test (DUT). They are also used
to connect to a 3680 Universal Test Fixture or other test interface
devices.
Features:
• Up to 65 GHz frequency range
• Type GPC-7, N, K Connector
®
, and V Connector
®
Precision Connectors
• Excellent return loss performance to 65 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Specifications
Model/Order No.Name
3670A50-1GPC-7, 1 Foot
3670A50-2GPC-7, 2 Foot
3670N50-1N(m) - N(f), 1 Foot
3670N50-2N(m) - N(f), 2 Foot
3670NN50-1N(m)-N(m), 1 Foot
3670NN50-2N(m)-N(m, 2 Foot
3670K50-1K(m)-K(f), 1 Foot
3670K50-2K(m)-K(f), 2 Foot
3670KF50-1K(f) - K (f) Cable, 1 Foot
3670KF50-2K(f) - K (f) Cable, 2 Foot
3670V50-1V(m)-V(f), 1 Foot
3670V50-2V(m)-V(f), 2 Foot
Model
Frequency
Range
(GHz)
Impedance
Connector
Types
Length
(Feet)
Return
Loss
3670A50-1DC to 1850GPC-71
17 dB
3670A50-2DC to 1850GPC-72
3670N50-1DC to 18 50N(m)-N(f)1
17 dB
3670N50-2DC to 1850N(m)-N(f)2
3670NN50-1DC to 1850N(m)-N(m)1
17 dB
3670NN50-2DC to 1850N(m)-N(m)2
3670K50-1DC to 4050K(m)-K(f)1
16 dB
3670K50-2DC to 4050K(m)-K(f)2
3670KF50-1DC to 4050K(f)-K(f)1
16 dB
3670KF50-2DC to 4050K(f)-K(f)2
3670V50-1DC to 6550V(m)-V(f)1
16 dB
3670V50-2DC to 6550V(m)-V(f)2
Page 26
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
24
COAXIAL ADAPTERS
K, V, K to V DC to 65 GHz
K230B
V230
K222B
K224B
The K220 and 34V Series of precision adapters enable accurate
measurements with K or V connectors. Every adapter is fully
specified and 100% tested to ensure low reflections and optimum
performance over the DC to 65 GHz range.
Precision K and V adapter features
• K Connector®DC to 40 GHz frequency range
• V Connector
®
DC to 65 GHz frequency range
• Low SWR and insertion loss
K220B outline
Specifications
K222B outline
K224B outline
34VK50 outline
34VFKF50 outline
34VV50 outline
34VFVF50 outline
34VVF50 outline
34VKF50 outline
34VFK50 outline
Temperature range: –55°C to +125°C
ModelFrequency range (GHz)ConnectorsSWR
K220B
K222B
K224B
DC to 40
K(m) to K(m)
K(f) to K(f)
K(f) to K(m)
1.12
34VK50
34VKF50
DC to 40
V(m) to K(m)
V(m) to K(f)
1.3
34VFK50
34VFKF50
DC to 40
V(f) to K(m)
V(f) to K(f)
1.3
34VV50
34VFVF50
34VVF50
DC to 65
V(m) to V(m)
V(f) to V(f)
V(m) to V(f)
1.5
7.93 HEX
6.35 DIA.
7.0
Dimensions in Millimeters
5.33 ACROSS FLATS
K220B
5.84
20.6
6.35 DIA.
7.0
Dimensions in Millimeters
5.33 ACROSS FLATS
K222B
5.84
19.1
7.93 HEX
K MALE CONN.
(1/4 - 36 UNS - 2B)
6.35 DIA.
7.0
Dimensions in Millimeters
5.33 ACROSS FLATS
K224B
5.84
19.8
V-MALE
CONNECTOR
M7.0 X .75 6H
7.92 DIA
34VK50
8.6411
31.7
Dimensions in Millimeters
K MALE CONNECTOR
(1/4 - 36 UNS - 2B) 2X
K FEMALE CONNECTOR
(1/4 - 36 UNS - 2A) 2X
K FEMALE CONNECTOR
(1/4 - 36 UNS - 2A)
K-MALE
CONNECTOR
(1/4 -36 UNS-2B)
V-MALE
CONNECTOR
M7.0 X .75 - 6G
VF-FEMALE
CONNECTOR
(M7.0 X .75-6G)
VF-FEMALE
CONNECTOR
(M7.0 X .75-6G)
V MALE CONNECTOR
M7.0 X .75-6H
7.92 DIA
34VKF50
8.6411
28.5
Dimensions in Millimeters
7.92 DIA
34VFK50
8.64
7
27.8
Dimensions in Millimeters
7.92 DIA
34VFKF50
8.64
7
24.4
Dimensions in Millimeters
34VV50
11
8.64
31.4
Dimensions in Millimeters
7.92 DIA
34VFVF50
8.64
7
23.6
Dimensions in Millimeter
34VVF50
8.6411
27.5
Dimensions in Millimeters
7.92 DIA
7.92 DIA
K-FEMALE
CONNECTOR
(1/4-36 UNS-2A)
K-MALE
CONNECTOR
(1/4 -36 UNS-2B)
KF-FEMALE
CONNECTOR
(1/4-36 UNS-2A)
V MALE
CONNECTOR
M7.0 X .75-6H 2X
V FEMALE
CONNECTOR
M7.0 X .75-6G 2X
V FEMALE
CONNECTOR
M7.0 X .75-6G
Page 27
COAXIAL ADAPTERS
K, V, K to V DC to 65 GHz
K230B outline
K232B outline
K234B outline
The K230 Series is the panel-mount version of the K220 Series
Adapters. These units mount in a standard 9.5 mm “D” hole.
K and V panel adapter features
• Precision, panel-mounted feedthru adapter
• Broad, DC to 65 GHz frequency range
K panel adapter specifications
Ordering information
Please specify model/order number, name and quantity when ordering.
V230 outline
V232 outline
V234 outline
ModelFrequency range (GHz)ConnectorsSWR
K230B
DC to 40
K(m) to K(m)
1.12K232BK(f) to K(f)
K234BK(f) to K(m)
ModelFrequency range (GHz)ConnectorsSWR
V230
DC to 65
V(m) to V(m)
1.5V232V(f) to V(f)
V234V(f) to V(m)
Model/Order No.Name
Precision adapter
K220BDC to 40 GHz, 50 Ω, K(m)-K(m)
K222BDC to 40 GHz, 50 Ω, K(f)-K(f)
K224BDC to 40 GHz, 50 Ω, K(m)-K(f)
K230BDC to 40 GHz, 50 Ω, K(m)-K(m)
K232BDC to 40 GHz, 50 Ω, K(f)-K(f)
K234BDC to 40 GHz, 50 Ω, K(f)-K(m)
34VK50DC to 46.5 GHz, 50 Ω, V(m)-K(m)
34VKF50DC to 40 GHz, 50 Ω, V(m)-K(f)
34VFK50DC to 40 GHz, 50 Ω, V(f)-K(m)
34VFKF50DC to 40 GHz, 50 Ω, V(f)-K(f)
34VV50DC to 65 GHz, 50 Ω, V(m)-V(m)
34VVF50DC to 65 GHz, 50 Ω, V(m)-V(f)
34VFVF50DC to 65 GHz, 50 Ω, V(f)-V(f)
V230DC to 65 GHz, 50 Ω, V(m)-V(m)
V232DC to 65 GHz, 50 Ω, V(f)-V(f)
V234DC to 65 GHz, 50 Ω, V(f)-V(m)
V panel adapter specifications
For further information about these products and more, contact us at 1-800-Anritsu or visit www.us.anritsu.com
25
8.64 ACROSS FLAT
K-MALE CONNECTOR
(1/4 - 36 UNS - 2B) 2X
8.76
9.5 mm
CLEAR
MOUNTING HOLE
6.60 ±0.50
Dimensions in Millimeters
8.64 ACROSS FLAT
K FEMALE CONNECTOR
1/4 - 36 UNS-2A 2X
8.76
9.5 mm
CLEAR
MOUNTING HOLE
6.67 ±0.50
Dimensions in Millimeters
8.64 ACROSS FLAT
K-MALE CONNECTOR
(1/4 - 36 UNS - 2B)
9.5 mm
CLEAR
MOUNTING HOLE
7.92 HEX
8.76
1.02
7.5
Dimensions in Millimeters
20.6
5.84
5.84
5.84
19.1
19.6
3/8 - 32 UNEF - 2A
1.02
3/8 - 32 UNEF-2A
1.02
3/8 - 32 UNEF - 2A
12.7 DIA.
12.7 DIA.
K FEMALE CONNECTOR
1/4 - 36 UNS-2A
12.7 DIA.
11.56
8.76
9.5 mm
CLEAR
MOUNTING HOLE
V MALE CONNECTOR
M7.0 X .75-6G
Dimensions in Millimeters
3/8-32 UNS-2A
8.64
31.7
1.02
V MALE CONNECTOR
M7.0 X .75-6H
12.7 DIA.
17.1
22.9
8.76
9.5 mm
CLEAR
MOUNTING HOLE
V FEMALE CONNECTOR
M7.0 X .75-6G
7.148.64
3/8-32 UNS-2A
Dimensions in Millimeters
1.02
17.1
12.7 DIA.
V FEMALE CONNECTOR
M7.0 X .75-6H
27.3
1.02
V MALE CONNECTOR
M7.0 X .75-6H
17.1
12.7 DIA.
8.76
9.5 mm
CLEAR
MOUNTING HOLE
V FEMALE CONNECTOR
M7.0 X .75-6G
7.148.64
3/8-32 UNS-2A
Dimensions in Millimeters
Page 28
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
26
CALIBRATION GRADE ADAPTERS
33 Series DC to 110 GHz
The 33 Series of precision adapters enable accurate measurements
with Anritsu V Connector
®
, K Connector®, W1 Connector®, WSMA,
and Type N interfaces. Every adapter is fully specified and 100%
tested to ensure low reflections and optimum phase performance
over a broad frequency range.
Features
• Low SWR and insertion loss
• DC to 110 GHz, with W1 Connector
®
interface
• DC to 65 GHz, with V Connector
®
interface
• DC to 40 GHz, with K Connector
®
interface
• 50 Ω impedance
33VV50B
33KK50B
33VFVF50B
33KFKF50B
33KKF50B
33VVF50B
33SSF50 outline
33SFSF50 outline
33NN50B outline
33SS50 outline
33NFNF50B outline
33NNF50B outline
33SS50
19.0
5/8-24 UNEF-2A
Ø22.2
Ø15.7
15.7
12.7
18.5
72.6
65.9
18.5
27.3
20.6
12.7
5/8-24 UNEF-2B
2X
5/8-24 UNEF-2A
12.7
Ø22.2
Ø15.7
18.520.1
59.3
12.7
2X
5/8-24 UNEF-2B
19.0
2X
1/4-36 UNX-2B
7.9
7.92 DIA
9.9
26.7
7.9
1/4-36 UNS-2A
9.9
25.7
7.92 DIA
1/4-36 UNX-2B
8.4
2X
7.1
1/4-36 UNS-2A
7.92 DIA
9.9
24.8
Page 29
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27
CALIBRATION GRADE ADAPTERS
33 Series DC to 110 GHz
33KFKF50B outline
33VV50B outline
33VVF50B outline
33VFVF50B outline
33KKF50B outline
33KK50B outline
33WW50
Precision W1 Male to W1 Male Adapter,
DC to 110 GHz
33WWF50
Precision W1 Male to W1 Female Adapter,
DC to 110 GHz
33WFWF50
Precision W1 Female to W1 Female dapter,
DC to 110 GHz
K-FEMALE CONNECTOR
(1/4-36 UNS-2A)
2X
6.35 DIA
K-MALE CONNECTOR
(1/4-36 UNS-2B)
33KFKF50B
7.0
5.84
19.1
Dimensions in Millimeters
20.8
7.5
5.80
33KK50B
Ø 6.35
Dimensions in Millimeter
6.35 DIA
33KKF50B
7.55.84
20.0
Dimensions in Millimeters
K-MALE
CONNECTOR
(1/4-36 UNS-2B)
2X
7.90 HEX
2X
K-FEMALE CONNECTOR
(1/4-36 UNS-2A)
Ø8.00
6.00
7.00
6.663.24
16.60
16.71
2.21
6.70
6.00
Ø8.00
2.8
7.00
V-MALE CONNECTOR
M7.0 X .75-6H 2X
V-FEMALE CONNECTOR
M7.0 X .75-6G 2X
33VFVF50B
16.0
27.5
Dimensions in Millimeters
7.87 DIA
33VV50B
15.3
26.0
Dimensions in Millimeters
V-FEMALE CONNECTOR
M7.0 X .750-6G
7.87 DIA
33VVF50B
7.87 DIA
V MALE CONNECTOR
M7 X .75-6H
Ø7.00
Ø7.00
16.82
2.21
2.8
6.00
7.00
Ø8.00
2.8
16.0
26.9
Dimensions in Millimeters
Page 30
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28
CALIBRATION GRADE ADAPTERS
33 Series DC to 110 GHz
Temperature range: –55°C to +125°C
Model
Frequency
range
(GHz)
Impedance
(Ω)
ConnectorsSWR
33NN50BDC to 18 50N(m)-N(m)1.09
33NNF50BDC to 18 50N(m)-N(f)1.09
33NFNF50BDC to 18 50N(f)-N(f)1.09
33SS50DC to 26.550
WSMA(m)-
WSMA(m)
1.08 to 18 GHz
1.12 to 26.5 GHz
33SSF50DC to 26.550
WSMA(m)-
WSMA(f)
1.08 to 18 GHz
1.12 to 26.5 GHz
33SFSF50DC to 26.550
WSMA(f)-
WSMA(f)
1.08 to 18 GHz
1.12 to 26.5 GHz
33KK50BDC to 4050K(m)-K(m)1.1
33KKF50BDC to 4050K(m)-K(f)1.1
33KFKF50BDC to 4050K(f)-K(f)1.1
33VV50BDC to 6550V(m)-V(m)1.22
33VVF50BDC to 6550V(m)-V(f)1.33
33VFVF50BDC to 6550V(f)-V(f)1.33
33WW50DC to 11050W1(m)-W1(m)
1.17 to 40 GHz
1.29 to 65 GHz
1.38 to 110 GHz
33WWF50DC to 11050W1(m)-W1(f)
1.17 to 40 GHz
1.29 to 65 GHz
1.38 to 110 GHz
33WFWF50DC to 11050W1(f)-W1(f)
1.17 to 40 GHz
1.29 to 65 GHz
1.38 to 110 GHz
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
Calibration grade adapter
33NN50BDC to 18 GHz, 50 Ω, N(m)-N(m)
33NNF50BDC to 18 GHz, 50 Ω, N(m)-N(f)
33NFNF50BDC to 18 GHz, 50 Ω, N(f)-N(f)
33SS50DC to 26.5 GHz, 50 Ω, WSMA(m)-WSMA(m)
33SSF50DC to 26.5 GHz, 50 Ω, WSMA(m)-WSMA(f)
33SFSF50DC to 26.5 GHz, 50 Ω, WSMA(f)-WSMA(f)
33KFKF50BDC to 40 GHz, 50 Ω, K(f)-K(f)
33KK50BDC to 40 GHz, 50 Ω, K(m)-K(m)
33KKF50BDC to 40 GHz, 50 Ω, K(m)-K(f)
33VFVF50BDC to 65 GHz, 50 Ω, V(f)-V(f)
33VV50BDC to 65 GHz, 50 Ω, V(m)-V(m)
33VVF50BDC to 65 GHz, 50 Ω, V(m)-V(f)
33WW50DC to 110 GHz, 50 Ω, W1(m)-W1(m)
33WWF50DC to 110 GHz, 50 Ω, W1(m)-W1(f)
33WFWF50DC to 110 GHz, 50 Ω, W1(f)-W1(f)
Specifications
Page 31
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29
INSTRUMENTATION GRADE ADAPTERS
34 Series DC to 60 GHz
The 34 Series of precision adapters enable accurate measurements
with GPC-7, Type N, or WSMA interfaces. Every adapter is fully
specified and 100% tested to ensure low reflections and optimum
phase performance over a broad frequency range.
Precision adapter features
• Low SWR and insertion loss
• GPC-7, Type N, and WSMA connectors
• Convenient transition with minimal effect on signal
• 50 Ω or 75 Ω impedance
Specifications
The 34R Series precision adapters provide a rugged,
rigid connection between Anritsu instruments with WSMA,
K Connector
®
, or V Connector®outputs and Anritsu SWR
Autotesters and SWR Bridges or other instruments.
The adapters have an outside diameter equal to that of a
Type N connector, adding mechanical strength to the test
setup and making installation convenient and fast.
Ruggedized adapter features
• Enhance reliability of microwave test setup
• Easy-to-grasp Type N outside diameter
• Rigid test connections for improved
test data repeatability
34RSN50
34RKRK50
34ASF50
34NN50A
Model
Frequency
range
(GHz)
Impedance
(Ω)
ConnectorsSWR
Dimensions
L(cm) x dia(cm)
34NN75B
34NFNF75B
DC to 375
N(m) to N(m)
N(f) to N(f)
1.1
6.0 x 2.2
4.7 x 1.6
34AN50
34ANF50
DC to 1850
GPC-7 to N(m)
GPC-7 to N(f)
1.02
4.2 x 2.2
4.2 x 2.2
34AS50
34ASF50
DC to 1850
GPC-7 to
WSMA(m)
GPC-7 to
WSMA(f)
1.033
3.8 x 2.2
3.8 x 2.2
34NN50A
34NFNF50
DC to 1850
N(m) to N(m)
N(f) to N(f)
1.1
6.0 x 2.2
4.7 x 1.6
34NK50
34NKF50
34NFK50
34NFKF50
DC to 1850
N(m) to K(m)
N(m) to K(f)
N(f) to K(m)
N(f) to K(f)
1.12
3.8 x 2.2
3.8 x 2.2
3.8 x 1.6
3.8 x 1.6
34SFSF50DC to 26.550
WSMA(f) to
WSMA(f)
1.11 to
18.5 GHz
1.18 to
26.5 GHz
1.6 x 0.8
Model
Frequency
range
(GHz)
ConnectorsSWR
Dimensions
L(cm) x dia(cm)
34RSN50DC to 18RS(m) to N(m)1.405.1 x 2.2
34RKNF50DC to 18RK(m) to N(f)1.405.1 x 1.7
34RVNF50DC to 18RV(m) to N(f)1.405.1 x 1.7
34RKRK50DC to 40RK(m) to RK(m)2.005.8 x 1.7
34RVRK50DC to 40RV(m) to RK(m)2.005.8 x 1.7
34RVRV50DC to 60RV(m) to RV(m)2.305.8 x 1.7
Impedance: 50 Ω
Temperature range: 0°C to +75°C
34R Series Adapter
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No. Name
Precision adapter
34NN75BDC to 3 GHz, 75 Ω, N(m)-N(m)
34NFNF75B DC to 3 GHz, 75 Ω, N(f)-N(f)
34AN50DC to 18 GHz, 50 Ω, GPC-7-N(m)
34ANF50DC to 18 GHz, 50 Ω, GPC-7-N(f)
34AS50DC to 18 GHz, 50 Ω, GPC-7-WSMA(m)
34ASF50DC to 18 GHz, 50 Ω, GPC-7-WSMA(f)
34NN50ADC to 18 GHz, 50 Ω, N(m)-N(m)
34NFNF50DC to 18 GHz, 50 Ω, N (f)-N(f)
34NK50DC to 18 GHz, 50 Ω, N (m)-K(m)
34NKF50DC to 18 GHz, 50 Ω, N(m)-K(f)
34NFK50DC to 18 GHz, 50 Ω, N (f)-K(m)
34NFKF50DC to 18 GHz, 50 Ω, N(f)-K(f)
34SFSF50DC to 26.5 GHz, 50 Ω, WSMA(f)-WSMA(f)
34RSN50DC to 18 GHz, 50 Ω, RS(m) to N(m)
34RKNF50DC to 18 GHz, 50 Ω, RK(m) to N(f)
34RVNF50DC to 18 GHz, 50 Ω, RV(m) to N(f)
34RKRK50DC to 40 GHz, 50 Ω, RK(m) to RK(m)
34RVRK50DC to 40 GHz, 50 Ω, RV(m) to RK(m)
34RVRV50DC to 60 GHz, 50 Ω, RV(m) to RV(m)
Specifications
Anritsu
Instrument
Connector
Page 32
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30
INSTRUMENTATION GRADE ADAPTERS
34 Series W to V DC to 65 GHz
34WVF50
34WFVF50
These 34 Series of precision adapter enable accurate measurement
with W1 Connector
®
and V Connector®interfaces.
Precision adapter features
• Low SWR and insertion loss
• W1 and V Connectors®
• 50
Ω
Impedance
Specifications
Ordering information
Please specify model/order number, name, and quantity when ordering.
34WV50 outline
34WFV50 outline
34WVF50 outline
34WFVF50 outline
Model
Frequency
Range
(GHz)
Impedance Connectors
Insertion
Loss
SWR
34WV50DC to 65 GHz50W1(m) to V(m)0.5 dB1.22
34WFV50DC to 65 GHz50W1(f) to V(m)0.5 dB1.22
34WVF50DC to 65 GHz50W1(m) to V(f)0.5 dB1.22
34WFVF50DC to 65 GHz50W1(f) to V(f)0.5 dB1.22
Model/Order No.Name
Precision adapter
34WV50
DC to 65 GHz, 50 Ω, W1(m) to V(m)
34WFV50
DC to 65 GHz, 50 Ω, W1(f) to V(m)
34WVF50
DC to 65 GHz, 50 Ω, W1(m) to V(f)
34WFVF50
DC to 65 GHz, 50 Ω, W1(f) to V(f)
11.69
23.98
6.96
7.92 HEX
21.88
11.70
7.92 HEX
7.62
M7 X .75-6G
7.92 HEX
7.634.85
M7 X .75-6G
7.92 HEX
6.00 HEX
Dimensions in millimeters
4.85
M4 X .7-6G
Dimensions in millimeters
19.90
6.94
6.00 HEX
Dimensions in millimeters
17.82
M4 X .7-6G
Dimensions in millimeters
Page 33
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31
INSTRUMENTATION GRADE WAVEGUIDE ADAPTERS
35WR Series 18 to 110 GHz
35WR42K
35WR19K
35WR22V
35WR19V
The 35 Series precision adapters transform standard or doubleridge waveguide to coaxial K Connector
®
and V Connector®,
and W1 Connector
®
, interfaces, thus enabling convenient
millimeter wave coaxial measurements.
Features
• 18 to 65 GHz frequency coverage
• K Connector
®
compatibility with SMA and 3.5 mm
• V Connector
®
compatibility with 2.4 mm
• W1 Connector
®
compatibility with 1.0 mm
• Standard and double-ridge designs
Specifications
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model
Frequency
range (GHz)
ConnectorsW/G flangeSWR
35WRD180K
35WRD180KF
18 to 40
WRD180 to K(m)
WRD180 to K(f)
N/A1.25
35WR42K
35WR42KF
18 to 26.5
WR42 to K(m)
WR42 to K(f)
5951.25
35WR28K
35WR28KF
26.5 to 40
WR28 to K(m)
WR28 to K(f)
5991.25
35WR22K
35WR22KF
33 to 50
WR22 to K(m)
WR22 to K(f)
3831.30
35WR22V
35WR22VF
33 to 50
WR22 to V(m)
WR22 to V(f)
3831.30
35WR19K
35WR19KF
40 to 50
Usable to 54
WR19 to K(m)
WR19 to K(f)
3831.30
35WR19V
35WR19VF
40 to 60
WR19 to V(m)
WR19 to V(f)
3831.30
35WR15V
35WR15VF
50 to 65
WR15 to V(m)
WR15 to V(f)
3851.30
35WR10W
35WR10WF
75 to 110
WR10 to W(m)
WR10 to W(f)
3871.38
Model/Order No.Name
Precision waveguide to coax adapter
35WRD180K18 to 40 GHz, WRD180 (double ridge waveguide) to K(m)
35WRD180KF18 to 40 GHz, WRD180 (double ridge waveguide) to K(f)
35WR42K18 to 26.5 GHz, WR42-K(m)
35WR42KF18 to 26.5 GHz, WR42-K(f)
35WR28K26.5 to 40 GHz, WR28-K(m)
35WR28KF26.5 to 40 GHz, WR28-K(f)
35WR22K33 to 50 GHz, WR22-K(m)
35WR22KF33 to 50 GHz, WR22-K(f)
35WR22V33 to 50 GHz, WR22-V(m)
35WR22VF33 to 50 GHz, WR22-V(f)
35WR19K40 to 50 GHz (usable to 54 GHz), WR19-K(m)
35WR19KF40 to 50 GHz (usable to 54 GHz), WR19-K(f)
35WR19V40 to 60 GHz, WR19-V(m)
35WR19VF40 to 60 GHz, WR19-V(f)
35WR15V50 to 65 GHz (usable to 67 GHz), WR15-V(m)
35WR15VF50 to 65 GHz (usable to 67 GHz), WR15-V(f)
35WR10W75 to 110, WR10 to W(m)
35WR10WF75 to 110, WR10 to W(f)
Outline drawings for the 35 Series Waveguide-to-Coaxial Adapters,
18 to 110 GHz, are shown on the following three pages.
Impedance: 50 Ω
Temperature range: –55°C to +125°C
35WR10W
35WR10WF
Page 34
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36
INSTRUMENTATION GRADE WAVEGUIDE ADAPTERS
35U, 35C Series 3.3 to 26.5 GHz
35UM40N outline
35UM70N outline
35UM120N outline
35UA229N outline
35UM48N outline
35UM84N outline
35UM140N outline
35UA187N outline
35UM58N outline
35UM100N outline
35UM220K outline
35UA159N outline
Outline Drawings
CONNECTOR
43.7
39.6
CONNECTOR
36.8
CONNECTOR
4.76 DIA.
2 PLACES
+0.01
–0.00
34.5
36.52 ± 0.05
Dimensions in millimeters
30.5
55.88 ± 0.76
76.2 ± 0.76
82.30 ± 0.05
35UM40N
Dimensions in millimeters
CONNECTOR
50.8 ± 0.76
67.31 ± 0.76
3.19 DIA. +0.01
2 PLACES –0.00
M5
4 PLACES
35UM70N
CONNECTOR
M5
2 PLACES
M6
4 PLACES
46.43 ± 0.05
Dimensions in millimeters
32.0
37.43 ±0.05
Dimensions in millimeters
29.7
59.69 ± 0.76
76.2 ± 0.76
35UM48N
CONNECTOR
45.72 ± 0.76
63.5 ± 0.76
35UM84N
CONNECTOR
4.76 DIA.
2 PLACES
M5
4 PLACES
M6
4 PLACES
3.19 DIA. +0.01
2 PLACES –0.00
M4
6 PLACES
+0.01
–0.00
71.12 ± 0.76
69.85 ± 0.05
35UM58N
Dimensions in millimeters
CONNECTOR
30.7
43.18 ± 0.76
55.88 ± 0.76
32.5 ± 0.05
35UM100N
Dimensions in millimeters
CONNECTOR
19.8
57.15 ± 0.76
4.76 DIA.
2 PLACES
3.19 DIA. +0.01
2 PLACES –0.00
M6
4 PLACES
M4
6 PLACES
+0.01
–0.00
M5
2 PLACES
55.88 ± 0.76
35UM120N
Dimensions in millimeters
CONNECTOR
43.7
76.2 ± 0.76
82.29 ± 0.05
35UA229N
Dimensions in millimeters
43.18 ± 0.76
M4
4 PLACES
55.88 ± 0.76
3.19 DIA.
2 PLACES
+0.01
–0.00
28.50 ± 0.05
#1/4-20
4 PLACES
4.76 DIA. +0.01
2 PLACES −0.00
Dimensions in millimeters
39.6
4.76 DIA.
+0.01
2 PLACES
–0.00
50.8 ± 0.05
Dimensions in millimeters
43.18 ± 0.76
55.88 ± 0.76
35UM140N
CONNECTOR
59.69 ± 0.76
76.2 ± 0.76
35UA187N
3.19 DIA.
2 PLACES
M4
2 PLACES
+0.01
–0.00
24.28 ± 0.05
#1/4-20
8 PLACES
36.8
30.48 ± 0.76
38.1 ± 0.76
35UM220K
Dimensions in millimeters
CONNECTOR
71.12 ± 0.76
35UA159N
Dimensions in millimeters
2.37 DIA.
2 PLACES
57.15 ± 0.76
17.01 ± 0.05
M3
2 PLACES
4.76 DIA. +0.01
2 PLACES−0.00
#1/4-20
4 PLACES
+0.01
–0.00
44.45 ± 0.05
Page 39
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37
INSTRUMENTATION GRADE WAVEGUIDE ADAPTERS
35U, 35C Series 3.3 to 26.5 GHz
35UA137N outline
35UA75N outline
35CMR229N outline
35CMR137N outline
35UA112N outline
35UA62N outline
35CMR187N outline
35CMR112N outline
35UA90N outline
35UA42K outline
35CMR159N outline
35CMR90N outline
Outline Drawings
CONNECTOR
34.5
32.0
CONNECTOR
30.7
CONNECTOR
67.31± 0.76
4.76 DIA. +0.01
2 PLACES −0.00
36.52 ± 0.05
Dimensions in millimeters
30.5
3.19 DIA. +0.01
2 PLACES −0.00
28.50 ± 0.05
Dimensions in millimeters
43.7
50.8 ± 0.76
35UA137N
CONNECTOR
43.18 ± 0.76
55.88 ± 0.76
35UA75N
CONNECTOR
#10-32
6 PLACES
#6-32
2 PLACES
45.72 ± 0.76
63.5 ± 0.76
3.19 DIA. +0.01
2 PLACES −0.00
37.44 ± 0.05
35UA112N
Dimensions in millimeters
29.7
43.18 ± 0.76
55.88 ± 0.76
3.19 DIA. +0.01
2 PLACES −0.00
24.28 ± 0.05
35UA62N
Dimensions in millimeters
39.6
CONNECTOR
CONNECTOR
#8-32
6 PLACES
#6-32
2 PLACES
3.19 DIA. +0.01
2 PLACES −0.00
32.51 ± 0.05
Dimensions in millimeters
19.8
2.37 DIA. +0.00
2 PLACES −0.00
17.01 ± 0.05
Dimensions in millimeters
36.8
43.18 ± 0.76
55.88 ± 0.76
35UA90N
CONNECTOR
30.48 ±0.76
38.1 ± 0.76
35UA42K
CONNECTOR
#8-32
6 PLACES
#4-40
2 PLACES
59.69 ± 0.76
76.2 ± 0.76
35CMR187N
Dimensions in millimeters
CONNECTOR
45.72 ± 0.76
63.5 ± 0.76
35CMR112N
Dimensions in millimeters
#6-32
4 PLACES
#6-32
4 PLACES
4.76 DIA. +0.01
2 PLACES −0.00
42.87 ±0.05
76.2 ± 0.76
35CMR229N
Dimensions in millimeters
34.5
3.19 DIA. +0.01
2 PLACES −0.00
29.97 ± 0.05
67.31 ± 0.76
35CMR137N
Dimensions in millimeters
55.88 ± 0.76
CONNECTOR
50.8 ± 0.76
#6-32
4 PLACES
#6-32
4 PLACES
4.76 DIA. +0.01
2 PLACES −0.00
36.32 ± 0.05
32.0
3.19 DIA. +0.01
2 PLACES −0.00
26.26 ± 0.05
4.76 DIA. +0.01
2 PLACES −0.00
33.68 ± 0.05
71.12 ± 0.76
35CMR159N
Dimensions in millimeters
30.7
3.19 DIA. +0.01
2 PLACES −0.00
23.11 ± 0.05
55.88 ± 0.76
35CMR90N
Dimensions in millimeters
57.15 ± 0.76
CONNECTOR
43.18 ± 0.76
#6-32
4 PLACES
#6-32
4 PLACES
Page 40
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38
INSTRUMENTATION GRADE WAVEGUIDE ADAPTERS
35U, 35C Series 3.3 to 26.5 GHz
Outline Drawings
35UER40N outline
35UER70N outline
35UER48N outline
35UER84N outline
35UER58N outline
35UER100N outline
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
Coaxial adapter
35UM40N N(m), metric, 3.30 to 4.90 GHz
35UM48NN(m), metric, 3.95 to 5.85 GHz
35UM58NN(m), metric, 4.90 to 7.05 GHz
35UM70NN(m), metric, 5.85 to 8.20 GHz
35UM84NN(m), metric, 7.05 to 10.00 GHz
35UM100NN(m), metric, 8.20 to 12.40 GHz
35UM120NN(m), metric, 10.00 to 15.00 GHz
35UM140NN(m), metric, 12.40 to 18.0 GHz
35UM220KK(m), metric, 17.00 to 26.5 GHz
35UA229NN(m), US, 3.30 to 4.90 GHz
35UA187NN(m), US, 3.95 to 5.85 GHz
35UA159NN(m), US, 4.90 to 7.05 GHz
35UA137NN(m), US, 5.85 to 8.20 GHz
35UA112NN(m), US, 7.05 to 10.00 GHz
35UA90NN(m), US, 8.20 to 12.40 GHz
35UA75NN(m), US, 10.00 to 15.00 GHz
35UA62NN(m), US, 12.40 to 18.0 GHz
35UA42KK(m), US, 17.00 to 26.5 GHz
Model/Order No.Name
Coaxial adapter
35CMR229NN(m), CMR, 3.30 to 4.90 GHz
35CMR187NN(m), CMR, 3.95 to 5.85 GHz
35CMR159NN(m), CMR, 4.90 to 7.05 GHz
35CMR137NN(m), CMR, 5.85 to 8.20 GHz
35CMR112NN(m), CMR, 7.05 to 10.00 GHz
35CMR90NN(m), CMR, 8.20 to 12.40 GHz
35UER40NN(m), UER, 3.30 to 4.90 GHz
35UER48NN(m), UER, 3.95 to 5.85 GHz
35UER58NN(m), UER, 4.90 to 7.05 GHz
35UER70NN(m), UER, 5.85 to 8.20 GHz
35UER84NN(m), UER, 7.05 to 10.00 GHz
35UER100NN(m), UER, 8.20 to 12.40 GHz
CONNECTOR
43.7
55.88 ± 0.76
76.2 ± 0.76
4.76 DIA. +0.01
2 PLACES −0.00
42.87 ± 0.05
35UER40N
Dimensions in millimeters
CONNECTOR
34.5
50.8 ± 0.76
67.31 ± 0.76
3.19 DIA. +0.01
2 PLACES –0.00
29.97 ± 0.05
M4 DIA.
8 PLACES
39.6
36.32 ± 0.05
32.0
26.26 ± 0.05
CONNECTOR
59.69 ± 0.76
76.2 ± 0.76
35UER48N
Dimensions in millimeters
CONNECTOR
45.72 ± 0.76
63.5 ± 0.76
4.76 DIA . +0.01
2 PLACES −0.00
M4 DIA.
8 PLACES
3.19 DIA. +0.01
2 PLACES –0.00
36.8
33.68 ± .0.05
30.7
23.11 ± 0.05
CONNECTOR
57.15 ± 0.76
71.12 ± 0.76
4.76 DIA. +0.01
2 PLACES –0.00
35UER58N
Dimensions in millimeters
CONNECTOR
43.18 ± 0.76
55.88 ± 0.76
M4 DIA.
8 PLACES
3.19 DIA. +0.01
2 PLACES −0.00
35UER70N
Dimensions in millimeters
M4 DIA.
8 PLACES
35UER84N
Dimensions in millimeters
M4
6 PLACES
Dimensions in millimeters
35UER100N
M4 DIA.
8 PLACES
Page 41
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39
COAXIAL TERMINATIONS
28, 29 Series DC to 110 GHz
29A50-20
28KF50
28N50-2
28V50B
28K50
28W50
These precision, metrology-grade terminations are used in
measurement systems that need to achieve the smallest possible
reflections. Their excellent match makes them ideal as a reference
for fault location measurements on scalar network analyzers.
Precision termination features
• Accurate reference for SWR measurements
• Precise termination for test instrument or device under test
Precision termination specifications
Ordering information
Please specify model/order number, name, and quantity when ordering.
Offset termination specifications
Temperature range: +25°C ±5°C
Model
Frequency
range
(GHz)
Test port
connector
Input
impedance
(Ω)
SWR
(F in GHz)
Dimensions
L(cm) x
dia(cm)
28A50-1DC to 18GPC-7501.02 Max.5.2 x 2.2
28N50-2
28NF50-2
DC to 18
N(m)
N(f)
501.02 Max.
5.2 x 2.2
4.8 x 1.6
28N50-3
28NF50-3
DC to 8
N(m)
N(f)
501.03 Max.
5.2 x 2.2
4.8 x 1.6
28S50-1
28SF50-1
DC to 26.5
WSMA(m)
WSMA(f)
50
1.020 to 18.5 GHz
1.153 to 26.5 GHz
3.7 x 1.2
3.7 x 1.2
28K50
28KF50
DC to 40
K(m)
K(f)
50
1.040 to 18.5 GHz
1.070 to 26.5 GHz
1.135 to 40 GHz
3.7 x 1.2
3.7 x 1.2
28V50B
28VF50B
DC to 67
V(m)
V(f)
50
1.018 to 6 GHz
1.058 to 26.5 GHz
1.074 to 40 GHz
1.12 to 60 GHz
1.25 to 67 GHz
3.7 x 1.2
3.7 x 1.2
28W50DC to 110W1(m)50
1.0458 to 20 GHz
1.058 to 65 GHz
1.33 to 110 GHz
2.5 x 0.8
28WF50DC to 110W1(f)50
1.0515 to 20 GHz
1.0653 to 65 GHz
1.50 to 110 GHz
2.5 x 0.8
Model
Frequency
range
(GHz)
Test port
connector
Return loss
(dB)
Dimensions
L(cm) x
dia(cm)
29A50-20DC to 18GPC-7
20 ±0.5 to 1 GHz
20 ±1.0 to 4 GHz
20 ±1.5 to 18 GHz
5.2 x 2.2
29S50-20DC to 26.5WSMA(m)
20 ±1.5 to 18.5 GHz
20 ±2.5 to 26.5 GHz
3.7 x 1.2
29SF50-20DC to 26.5WSMA(f)
20 ±1.5 to 18.5 GHz
20 ±2.5 to 26.5 GHz
3.7 x 1.2
29K50-15DC to 40K(m)
15 ±1.5 to 18.5 GHz
15 ±2.5 to 26.5 GHz
15 ±3.5 to 40 GHz
3.7 x 1.2
29KF50-15DC to 40K(f)
15 ±1.5 to 18.5 GHz
15 ±2.5 to 26.5 GHz
15 ±3.5 to 40 GHz
3.7 x 1.2
Model/Order No.Name
Precision termination
28A50-1DC to 18 GHz, 50 Ω, GPC-7, Max. SWR=1.02
28N50-2DC to 18 GHz, 40 dB, 50 Ω, N(m)
28NF50-2DC to 18 GHz, 40 dB, 50 Ω, N(f)
28N50-3DC to 8.6 GHz, 50 Ω, N(m)
28NF50-3DC to 8.6 GHz, 50 Ω, N(f)
28S50-1DC to 26.5 GHz, 50 Ω, WSMA(m) (selected for higher accuracy)
28SF50-1DC to 26.5 GHz, 50 Ω, WSMA(f) (selected for higher accuracy)
28K50DC to 40 GHz, 50 Ω, K(m)
28KF50DC to 40 GHz, 50 Ω, K(f)
28V50BDC to 65 GHz, V(m)
28VF50BDC to 65 GHz, V(f)
28W50DC to 110 GHz, 50 Ω, W1(m)
28WF50DC to 110 GHz, 50 Ω, W1(f)
Offset termination
29A50-20DC to 18 GHz, 50 Ω, GPC-7, 20 dB return loss
29S50-20DC to 26.5 GHz, 50 Ω, WSMA(m), 20 dB return loss
29SF50-20DC to 26.5 GHz, 50 Ω, WSMA(f), 20 dB return loss
29K50-15DC to 40 GHz, 50 Ω, K(m), 15 dB return loss
29KF50-15DC to 40 GHz, 50 Ω, K(f), 15 dB return loss
Maximum Input Power: 0.5 W
When used with Anritsu airlines, the 29 Series Offset Terminations
permit measurements down to 1.006 SWR to 18 GHz, 1.01 SWR
to 26.5 GHz, and 1.02 SWR to 40 GHz.
Offset termination features
• 50 Ω Offset Terminations for precise measurement
of low SWR or high directivity
• Measurements down to 1.006 SWR to 18 GHz,
1.01 SWR to 26.5 GHz, and 1.02 SWR to 40 GHz
Page 42
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40
COAXIAL TERMINATIONS
K210, V210 DC to 65 GHz
K210
V210
Coaxial Termination features
• Accurate reference for SWR measurements
• Precise termination for test instrument or device under test
Specifications
Ordering information
Please specify model/order number, name, and quantity when ordering.
Maximum Input Power: 0.5W
Model
Frequency
Range
(GHz)
Test
Port
Connector
Input
Impedance
(Ω)
SWR
K210 DC to 40 K(m) 50
1.106 to 18 GHz
1.253 to 40 GHz
V210 DC to 65 V(m) 50
1.12 to 18 GHz
1.22 to 18-26.5 GHz
1.29 to 26.5-40 GHz
1.38 to 40-65 GHz
Model/Order No.Name
K210Coaxial Termination, DC to 40 GHz, K(m)
V210Coaxial Termination, DC to 65 GHz, V(m)
Page 43
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41
FIXED ATTENUATORS
41, 43 Series DC to 65 GHz
Anritsu offers two series of fixed attenuators:
• The Gold Line (Series 41) for precision measurement
applications covering DC to 65 GHz
• The Silver Line (Series 43) for use in systems and OEM
equipment covering DC to 40 GHz
Both series offer fixed attenuation values of 3, 6, 10, or 20 dB
with models that span frequency range of DC to 26.5 GHz, 40 GHz,
or 65 GHz
Features
• 3, 6, 10, or 20 dB Attenuation up to 65 GHz
• Low SWR, 1.28 Up to 40 GHz
• SMA, 3.5 mm, and 2.4 mm compatibility
• Rugged and reliable K Connector
®
and V Connector
®
Advanced performance and reliability
Anritsu attenuators define the standard for fixed attenuator
performance and reliability. Performance, however, is not their only
distinguishing feature. Attenuators that use the K Connector
®
offer a
vast improvement in reliability, compared to attenuators with SMA
connectors. Attenuators that use the V Connector® can be connected
directly to 2.4 mm devices.
For applications in metrology and calibration laboratories where
precise characterization is essential, the Gold Line models are
available in sets consisting of 3, 6, 10, and 20 dB units. Each is
provided with attenuation and SWR calibration data. Calibration
data is also optionally available for individual units,each of which is
serialized.
The reliability of the attenuator connectors is affected by insertion
force, outer conductor mating area, and mating alignment. The
K Connector
®
is used because it has excellent performance in all
of these areas. For example, a typical female SMA, 3.5 mm center
conductor requires up to 27N* of insertion force compared to
2.2N* for the K Connector
®
. In addition, the K Connector®outer
conductor is four times thicker than SMA, resulting in a
conservative order-of-magnitude improvement in the number of
reliable connections.
To avoid a major cause of connector failure, the K Connector
®
male pin is deliberately made shorter than the SMA pin. Therefore,
the outer housing is properly aligned prior to center conductor
mating, preventing destructive alignment.
Gold Line - improved measurement accuracy
Adding Gold Line attenuators to your attenuation measurement
setup will improve your measurement accuracy. In the test setup
shown, the insertion loss of an air line was measured, first without
and then with matching 6 dB pads. The difference in the accuracy
of the two measurements is striking. By attenuating reflections and
re-reflections that occur at the input and output of the air line, the
pads reduce mismatch errors and allow the system to measure more
accurately the actual insertion loss.
Silver Line - improved system reliability
Fixed attenuators used in systems or OEM equipment must be small,
lightweight, economical, and reliable under severe environmental
conditions. The Silver Line meets these requirements. K Connectors
ensure well-seated, low-reflection connections that provide
consistent operation year after year.
The Series 43 (Silver Line) attenuator’s small size, 8 mm dia. x 28.8 mm
length, and light weight, 8g make them an attractive choicefor
miniaturized, lightweight systems.
* Force is measured in Newtons (N).
Improved Measured Accuracy
41V-1043KC-10
41V-2043KC-20
Lightning VNA
37269C
Port 1Port 2
6 dB
Pad
0
0.5
1.0
Insertion loss
(dB)
1.5
DC1530456065
0
0.5
1.0
Insertion loss
(dB)
1.5
DC1530456065
Air line
under test
Frequency (GHz)
Frequency (GHz)
6 dB
Pad
Without pads
With pads
Page 44
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42
FIXED ATTENUATORS
41, 43 Series DC to 65 GHz
➀ For traceability, all Gold Line attenuators are serialized.
➁ ±1 dB from DC to 26.5 GHz; ±1.3 dB from >26.5 to 40 GHz, including frequency response and DC offset.
Ordering information
Please specify model/order number, name, and quantity when ordering.
Single fixed attenuators may be ordered from the table above.
* A set of 3, 6, 10, and 20 dB Gold line (Series 41).Attenuators are supplied in a
handsome hardwood case. Calibration data are included for each unit.
** Attenuation and SWR test data are provided for input and output ports at
500 MHz frequency intervals.
Common specifications
Specifications
Impedance
50 Ω
Power rating (average)
2W at 20°C; 1W at 85°C
Temperature coefficient
0.001 dB/dB/°C
Connectors
V Connector
®
Male and female compatible with 2.4 mm
K Connector
®
Male and female, compatible with SMA and 3.5 mm
Material
Passivated stainless steel housing
Size
Length
28.8 mm ±0.5 mm
Diameter
8 mm
Weight
8g
Temperature range
Operating
–55°C to +85°C
Nonoperating
–55°C to +125°C
Model/Order No.Name
Precision Fixed Attenuator
41KB-3, 6, 10, or 203 dB, 6 dB, 10 dB, 20 dB, DC to 26.5 GHz, 50 Ω, K(m)-K(f)
41KC-3, 6, 10, or 203 dB, 6 dB, 10 dB, 20 dB, DC to 40 GHz, 50 Ω, K(m)-K(f)
41V-3, 6, 10, or 203 dB, 6 dB, 10 dB, 20 dB, DC to 65 GHz, 50 Ω, V(m)-V(f)
Precision Fixed Attenuator Set
41KB-S*41KB Series
41KC-S*41KC Series
41V-S*41V Series
Fixed Attenuator
43KB-3, 6, 10, or 203 dB, 6 dB, 10 dB, 20 dB, DC to 26.5 GHz, 50 Ω, K(m)-K(f)
43KC-3, 6, 10, or 203 dB, 6 dB, 10 dB, 20 dB, DC to 40 GHz, 50 Ω, K(m)-K(f)
Sinewave: 10 Hz to 2000 Hz, 0.06” DA, method 204,
test condition D
Random: 50 Hz to 2000 Hz, 11.6 Grms, Power Spectral Density
0.1 Grms 2 Hz, Method 214, Test Condition 1, Letter D
Salt Spray
5% concentration for 48 hours, Method 101D, Condition B
Voltage withstanding
500 Vac RMS, 60 seconds, method 301
Page 45
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43
STEP ATTENUATORS
4400, 4500, 4600 Series DC to 40 GHz
Anritsu programmable step attenuators bring a substantial increase
in the frequency and attenuation range available in one small
package. Using the latest technology, these units offer superior
performance, reliability, and ease of use to 40 GHz. All are plugcompatible with competitive units.
Features
• DC-20 GHz, DC-26.5 GHz, DC-40 GHz
• 70 dB and 110 dB attenuation ranges
• Lowest insertion loss
• Precise repeatability
• Life of 5 million operations
• Small, rugged, light weight
Advanced technology-advanced
performance
Anritsu has lowered throughline loss by designing the first 40 dB
attenuator sections to operate above 18 GHz. Compared with
designs that use 30 dB sections, these attenuators have a shorter thru
path and fewer switching contacts. As a result, insertion loss is as
much as 1.7 dB less than that of units made by other companies. RF
input power requirements for systems that use these attenuators can
be reduced, saving money, space, and weight.
Integrated switching structure
The push rods that switch in the attenuator modules and thrulines are
driven by a solenoid actuator. By designing the solenoid as an
integral part of the attenuator assembly, switching speeds of 20 ms
(including settling time) are achieved. Upon completion of the
switching operation, the solenoid is magnetically latched to
withstand severe shock and vibration. At the same time, the solenoid
current is automatically turned off to save power and to minimize
temperature rise.
Also integrated in the design is solid state dc switching circuitry that
avoids the relatively high failure rate of mechanical DC switches.
Each attenuator section is controlled by its own driver circuit, which
requires 24V, 125 mA. A typical external driver circuit for one
section is shown in the figure below.
4400, 4500, and 4600 series outline
4622K
4612K
Power+24 V
Control
Line
Control
Line
TTL
Input
11
9
10
75LS0475LS04
7
+5 V
8
1
+5 V
2
6
7
6
14
75451
3
4
5
1N4446
Female
17.8
Connector
7.0
7.1
25.4
5.7
2 Places
102.9 4422K, 4522K, 4622K
90.2 4412K, 4512K, 4612K
SN XXXXX
XXXX K STEP ATTENUATOR
117 4422K, 4522K, 4622K
76.2 4412K, 4512K, 4612K
MAX POWER
1 WATT CW
4-40 UNC-2B
Female
Connector
410
17.8
Dimensions in millimeters
24.4
7.1
44.5
14 Pin Dip
Page 46
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44
STEP ATTENUATORS
4400, 4500, 4600 Series DC to 40 GHz
Accuracy enhancing calibration data
Attenuation accuracy can be improved by using optional calibration
data taken on an Anritsu vector network analyzer. The calibration
data can be used to normalize the effect of frequency response and
reflections. The calibration data is traceable to NIST.
Specifications
Frequency and attenuation ranges
Insertion loss (maximum)
Attenuator accuracy (± dB)
Impedance match
Mechanical
Electrical
Ordering information
Please specify model/order number, name, and quantity when ordering.
*Calibration data is taken every 100 MHz from DC to 900 MHz and every 500 MHz
from 1 GHz to 40 GHz.
Environment
ModelFrequency range
Attenuation range
in 10 dB steps
Connectors
4412K
4422K
DC to 20 GHz
0 to 70 dB
0 to 110 dB
K(f)
4512K
4522K
DC to 26.5 GHz
0 to 70 dB
0 to 110 dB
K(f)
4612K
4622K
DC to 40 GHz
0 to 70 dB
0 to 110 dB
K(f)
Frequency
(GHz)
Attenuation (dB)
1020304050607080-110
DC to 80.30.50.60.70.81.01.11.4
>8 to 120.40.50.70.91.01.31.52.0
>12 to 200.50.60.81.11.21.41.72.2
>20 to 26.50.70.81.01.51.61.92.32.8
>26.5 to 400.91.01.21.71.92.32.63.2
Switching speed (maximum)
20 ms
Operating voltage
20 to 30 Volts
Switching control current
125 mA at 24V nominal per section
3 sections in 4412K, 4512K, 4612K
4 sections in 4422K, 4522K, 4622K
Solenoid coil impedance
190 Ω
Solenoid coil inductance
65 mH
RF input power (maximum)
1W average, 100W peak for 10 µs
RF power sensitivity
0.001 dB/W
Life (minimum operations
per section)
5 million
Repeatability (typical after
1 million operations)
±0.03 dB to 18 GHz
±0.05 dB to 26.5 GHz
±0.08 dB to 40 GHz
The 87 Series SWR Bridges are precision, high directivity
measurement components, ideal for SWR and return loss
measurements. Models include a built-in termination, and they are
provided with an overall accuracy equation.
These SWR bridges
can be used for making very low-level SWR measurements by
amplifying the RF output prior to detection. Since both the phase
and amplitude of the reflected signal are preserved in the RF output,
these components can also be used to make accurate phase
comparisons in a network analyzer system.
Features
• Broadband 2 to 18 GHz frequency range
• High 38 dB directivity
• Precise GPC-7 test port connector
• Built-in reference termination
Frequency range
Insertion loss
Maximum input power
Test port connector
Input and output connector
Dimensions
Weight
À Where ρ is the measured reflection coefficient.
Á Typically 9 dB at 18 GHz from input to test port.
2 to 18 GHz
6
.5 dB nominal
0.5W
G
PC-7
Type N(f)
7.3 x 5.2 x 2.9 cm plus connectors
340g
Á
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
87A50SWR Bridge, 2 to 18 GHz, GPC-7, 35 dB directivity
87A50-1SWR Bridge, 2 to 18 GHz, GPC-7, 38 dB directivity
Temperature range: +25°C ±5°C
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F
45
Page 48
560-97N50
➀Where ρ is the reflection coefficient being measured. Accuracy includes the effects of test port reflections and directivity.
➁ Input Connector: Type N Female
➂ Plus connectors and cable
Temperature range: +25°C ±5°C
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46
SWR AUTOTESTERS
97 Series and 560-97, 560-98 Series 10 MHz to 50 GHz
97A50
560-97A50
The Series 97, 560-97 and 560-98 SWR Autotesters integrate a high
directivity bridge, a detector, a low reflection test port, and a
precision reference termination. The 560-97 and -98 Series units are
broadband microwave measurement components that are used with
the Model 56100A Scalar Network Analyzer and with Series
54100A Scalar Measurement System for making fixed-frequency
and swept-frequency return loss (SWR) measurements. Return loss
measurements are used over a wide range of radio and microwave
frequencies to check the performance of systems, subsystems, and
microwave components such as amplifiers, directional couplers,
attenuators, filters, splitters, and terminations.
560-97, 98 Series SWR autotester features
• Up to 40 dB directivity
• 10 MHz to 50 GHz range
• Test port connectors to fit most measurement applications;
avoids use of adapters
97 Series SWR autotester features
• High 40 dB directivity
• Low test port reflections
• Broadband 10 MHz to 18 GHz frequency range
• Small package including bridges, termination, and detector
• Selection of GPC-7,WSMA, or Type N test port connectors
Specifications
Continued on next page
ModelsDirectivity (dB)
Accuracy
➀
Frequency
Sensitivity (dB)
Test Port ConnectionPhysical
97 Series SWR Autotesters, 10 MHz to 18 GHz
➁
97A5036
10 MHz-8 GHz
0.016 ±0.06ρ
2
8-18 GHz
0.016 ±0.10ρ
2
±1.5 max.GPC-7
Dimensions
➂
7.6 x 5 x 2.8 cm
plus connectors
Weight:340 g
560-97 Series SWR Autotesters, 10 MHz to 18 GHz
➁
560-97A5036
0.01-8 GHz
0.013 ±0.08ρ
2
8-18 GHz
0.016 ±0.10ρ
2
±1.2GPC-7
560-97A50-140
0.010 ±0.06ρ
2
0.010 ±0.10ρ
2
±1.2GPC-7
560-97N50
560-97NF50
35
0.018 ±0.08ρ
2
0.018 ±0.12ρ
2
±1.5
Type N (m)
Type N (f)
560-97N50-1
560-97NF50-1
38
0.013 ±0.08ρ
2
0.013 ±0.12ρ
2
±1.5
Type N (m)
Type N (f)
Page 49
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47
SWR AUTOTESTERS
97 Series and 560-97, 560-98 Series 10 MHz to 50 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
All Models:
Input Port Impedance: 50ΩDetector Output Polarity: NegativeMaximum Power Input: 0.5 watts (+27 dBm) (560-98C50A:+24 dBm)
Insertion Loss (from input to test port): 6.5 dB nominalOutput Time Constant:2 msCable Length: 122 cm (4 ft.)
➀Where ρ is the reflection coefficient being measured.Accuracy includes the effects of test port reflections and directivity.
➁ Input Connector: Ruggedized Type K Female
➂ Input Connector: Ruggedized Type V Female
➃ Plus connectors and cable
➄When used with 18A50 Airline
➅When used with 19K50 Airline
ModelsDirectivity (dB)
Accuracy
➀
Freq. Sensitivity
(dB)
Test Port
Connection
Physical
560-98 Series SWR Autotesters, 10 MHz to 40 GHz
➁
560-98S50
560-98SF50
37
36
0.01-8 GHz8-18 GHz
0.014 ±0.01ρ
2
18-26.5 GHz
0.016 ±0.13ρ
2
26.5-40 GHz
±2.0
WSMA (m)
WSMA (f)
Dimensions➃:
1.9 x 3.8 x 2.9 cm
Weight: 198 g
560-98S50-1
560-98SF50-1
40
38
0.010 ±0.07ρ
2
0.010 ±0.01ρ
2
0.013 ±0.13ρ
2
±2.0
WSMA (m)
WSMA (f)
560-98K50
560-98KF50
35
32
30
0.018 ±0.07ρ
2
0.018 ±0.07ρ
2
0.026 ±0.15ρ
2
0.032 ±0.18ρ
2
±3.0
Type K (m)
Type K (f)
560-98 Series SWR Autotesters, 10 MHz to 50 GHz
➂
560-98VA50
560-98VFA50
30
0.01-50 GHz
0.032 ±0.11ρ
2
±4.0
Type V (m)
Type V (f)
Dimensions➃:
2.2 x 6.6 x 5.3 cm
Weight: 198 g
560-97, 560-98 Offset SWR autotesters, 10 Mhz to 40 GHz
560-97A50-2020
500 MHz-18 GHz
➄
0.0015
±2.5
GPC-7
Dimensions➃:
7.6 x 5.1 x 2.8 cm
Weight: 340 g
560-98KF50-1515
800 MHz-40 GHz
➅
0.0100
±4.0Type K (m)
Dimensions➃:
2.2 x 6.6 x 5.3 cm
Weight: 198 g
Model/Order No.Name
SWR Autotester
97A5010 MHz to 18 GHz, GPC-7, 36 dB directivity
560-97A5010 MHz to 18 GHz, GPC-7, 50 Ω, 36 dB directivity
560-97A50-110 MHz to 18 GHz, GPC-7, 50 Ω, 40 dB directivity
560-97N5010 MHz to 18 GHz, N(m), 50 Ω, 35 dB directivity
560-97N50-110 MHz to 18 GHz, N(m), 50 Ω, 38 dB directivity
560-97NF5010 MHz to 18 GHz, N(f), 50 Ω, 35 dB directivity
560-97NF50-110 MHz to 18 GHz, N(f), 50 Ω, 38 dB directivity
Model/Order No.Name
SWR Autotester
560-98S50
10 MHz-26.5 GHz, WSMA(m), 50 Ω, directivity = 37 dB (<18 GHz),
36 dB (18 GHz)
560-98S50-1
10 MHz-26.5 GHz, WSMA(m), 50 Ω, directivity = 40 dB (<18 GHz),
38 dB (18 GHz)
560-98SF50
10 MHz-26.5 GHz, WSMA(f), 50 Ω, directivity = 37 dB (< 18 GHz),
36 dB (18 GHz)
560-98SF50-1
10 MHz-26.5 GHz, WSMA(f), 50 Ω, directivity = 40 dB (< 18 GHz),
38 dB (18 GHz)
560-98K50
10 MHz-40 GHz, K(m), 50 Ω, directivity = 35 dB (<18 GHz),
32 dB (18 to 26.5 GHz), 30 dB (26.5 GHz)
560-98KF50
10 MHz-40 GHz, K(f), 50 Ω, directivity = 35 dB (<18 GHz),
32 dB (18 to 26.5 GHz), 30 dB (26.5 GHz)
560-98VA50
10 MHz-50 GHz, V(m), 50 Ω, directivity = 36 dB (<20 GHz),
30 dB (20 GHz)
560-98VFA50
10 MHz-50 GHz, V(m), 50 Ω, directivity = 36 dB (<20 GHz),
30 dB (20 GHz)
Offset SWR Autotester
560-97A50-2010 MHz to 18 GHz, GPC-7, 20 dB offset reference in bridge
560-98KF50-1510 MHz to 40 GHz, K(f), 15 dB offset reference in bridge
Page 50
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48
SWR AUTOTESTERS
5400-6 Series 1 MHz to 3000 MHz
5400-6N50
5400-6NF50
The 5400-6 Series SWR Autotesters integrate a high directivity
bridge, a detector, a low reflection test port, a precision reference
termination, and a connecting cable. They are used with the
Model 56100A Scalar Network Analyzers and with Series 54100A
Scalar Measurement Systems for making fixed-frequency and
swept-frequency return loss (SWR) measurements. Return loss
measurements are used over a wide range of radio and microwave
frequencies to check the performance of systems, subsystems, and
microwave components such as amplifiers, directional couplers,
attenuators, filters, splitters, and terminations.
All Models:
Input Port Impedance: 50Ω (Except as Noted)Detector Output Polarity: Negative Maximum Power Input:0.5 watts (+27 dBm)
Insertion Loss (from input to test port): 6.5 dB nominalOutput Time Constant:2 msCable Length: 122 cm (4 ft.)
➀Where ρ is the reflection coefficient being measured. Accuracy includes the effects of test port reflections and directivity.
➁ Input Connector: BNC Female
➂ Input Connector: Type N Female
➃ Plus connectors and cable
➄ Impedance 75Ω
Temperature range: +25°C ±5°C
Ordering information
Please specify model/order number, name, and quantity when ordering.
Features
• 40 dB directivity.
• 1 MHz to 3000 MHz range
• F, N, or BNC type test port connectors
Specifications
ModelsDirectivity (dB)
Accuracy
➀
Test Port ConnectionPhysical
5400-67FF75
➁➄
40
10-1000 MHz
0.010 ±0.01ρ
2
F (f)
5400-6B50B
➂
5400-6BF50B
➂
40
1-1500 MHz
0.010 ±0.01ρ
2
BNC (m)
BNC (f)
Dimensions➃:
2.5 x 5.1 x 7.0 cm
Weight: 255 g
5400-6B75B
➂➄
5400-6BF75B
➂➄
40
0.010 ±0.10ρ
2
BNC (m)
BNC (f)
5400-6N50
➂
5400-6NF50
➂
40
1-1000 MHz
0.010 ±0.05ρ
2
1000-3000 MHz
0.010 ±0.05ρ
2
2000-3000 MHz
0.010 ±0.05ρ
2
Type N (m)
Type N (f)
5400-6N75
➂➄
5400-6NF75
➂➄
40
0.010 ±0.05ρ
2
0.010 ±0.05ρ
2
0.010 ±0.05ρ
2
Type N (m)
Type N (f)
Model/Order No.Name
SWR Autotester
5400-6N501 to 3000 MHz, Type N(m), 50 Ω40 dB Directivity
5400-6N751 to 3000 MHz, Type N(m), 75 Ω
5400-6NF501 to 3000 MHz, Type N(f), 50 Ω
5400-6NF751 to 3000 MHz, Type N(f), 75 Ω
Page 51
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49
CONVERTIBLE SWR AUTOTESTER
560-98C50A and Test Port Heads 10 MHz to 40 GHz
560-98C50A
Test Port Heads
A test port adapter on a standard
SWR Autotester or RF Bridge
creates an error vector Ea in
addition to directivity, Ed.
The directivity response of a
Convertible SWR Autotester is
tuned to cancel the vector reflection
response of the phase matched test
port heads.
Convertible SWR Autotesters reduce capital equipment and
maintenance costs. A single Convertible SWR Autotester accurately
measures the Return Loss or SWR of devices with SMA, 3.5 mm, or
K Connector
®
. Six interchangeable test port heads (male and female
for each connector standard) are precision tuned to the Convertible
SWR Autotester’s internal bridge circuit.
The inexpensive test port heads save repair and calibration costs,
because they are interchangeable. Repetitive connect/disconnect
cycles will eventually wear out test port connectors — especially
when excess torque is applied or the connector’s mating surfaces
are rotated against each other.
It is common practice today to avoid the subsequent maintenance
cost by using adapters or “Connector Savers” on the test port of the
directional device (RF Bridge, SWR Autotester, or Directional
Coupler). Unfortunately, the adapters attached to a standard RF
Bridge cause accuracy problems. Directional devices are tuned for
optimum directivity at a specific phase reference point – this
position is called the reference plane. Any test port adapter will
degrade the effective directivity. The Convertible SWR Autotester’s
interchangable test port heads eliminate the accuracy problem.
Adapter errors
In a standard RF bridge, measurement error increases when adapters
or connector savers are used 1) to change the connector’s sex and/or
2) to protect the test port from physical wear. The error effect is
represented as a reduction to directivity. Effective Directivity is
a measurement error term consisting of the directional device’s
directivity plus the SWR response of the test port adapter/
connector saver.
Effective-Directivity is illustrated in the following illustration.
The Directivity Error, E
d
, is caused by deviations from ideal
within the directional device. The adapter’s SWR is represented
by E
a
. Both Edand Eacause errors in the measurement of
DUT’s return loss, E
x
. This error problem is compounded by
production practices which use poor quality adapters and neglect
calibration/verification cycles.
Accuracy improvement
The Convertible SWR Autotester improves the accuracy of SMA
device tests. It is common practice to test SMA devices with
either 3.5 mm or K test ports.The 3.5 mm and K Connector
®
standards offer rugged,instrument grade connections, but they
are not designed for proper impedance match to a device that
has SMA connectors. SMA,K, and 3.5 mm connectors are
mechanically compatible,but lack electrical compatibility.The
resulting connector mismatch causes a 10 to 15 dB degradation
in measurement directivity.
The above graph illustrates the degradation to directivity when
a K Connector
®
test port is used to measure a precision SMA device.
A 3.5 mm interface causes similar errors. The directivity was
measured using the precision return loss mode on a 54100A Series
Network Analyzer.
The Directivity of a K - K connector interface is far
superior to a mismatched K - SMA connection
INPUT
INPUT
STANDARD RF BRIDGE
SWR AUTOTESTOR
d
DETECTOR
CABLE TO
ANALYZER
CONVERTIBLE
SWR AUTOTESTOR
DETECTOR
CABLE TO
ANALYZER
TEST PORT
DUT
Z
x
EaE
ADAPTER
x
TEST PORT
E
TEST PORT
E
a
PHASE MATCHED
E
E
d
x
TEST PORT HEAD
1: K-K CONNECTN(B) 10.0 dB/DIV OFFSET 0.0 dB
2: K-SMA CONNEC(B) 10.0 dB/DIV OFFSET 0.0 dB
K - K
K-SMA
Model: 54169A
CURSOR
1: -38.89 dB
2: -29.51 dB
17.6286 GHz
2
1
5 GHz/DIV
STOP: 40.0000 GHz
LEVEL: 0.0 dBm
START: 0.5000 GHz
401pts
Page 52
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50
CONVERTIBLE SWR AUTOTESTER
560-98C50A and Test Port Heads 10 MHz to 40 GHz
K - SMA or 3.5 mm - SMA interfaces.
Electrically, the convertible SWR Autotester provides a nearly
perfect 50 Ω interface when connected to SMA devices – resulting in
a typical 10 dB improvement in effective directivity performance as
compared to other SMA compatible connectors.
The Convertible SWR Autotester with SMA Test Port Head provides
significantly better directivity performance than test components
with either K (2.92 mm) or 3.5 mm test port connectors.
SMA connections to either K (2.92 mm) or 3.5 mm connectors are
inherently capacitive. Both K and 3.5 mm connectors use air
dielectric. The Teflon
®
or foam polyethylene dielectric common
to SMA connectors have different dielectric constants than air.
Thus, the coaxial dimensions of the center and outer conductors
must also be different to maintain a 50 Ω transmission line
impedance. Since the K and 3.5 mm connector standards specify
flush pin depths, a non-50 Ω capacitance develops between their
relatively thick outer conductors to the center pin of an SMA
connected device.
Anritsu’s 25S50 and 25SF50 SMA Test Port Heads include an
inductive connection to SMA connectors by virtue of a slight air gap
at the center pin interface. The air gap negates excess capacitance
caused by the 50 Ω dimensional transition from the test port head's
air dielectric to the SMA connector's Teflon
®
dielectric.
SMA connectors are not used as a precision instrumentation
connector for three important reasons. First, the dielectric tends to
expand and contract slightly with temperature and humidity
conditions; thus, it is difficult to adhere to dimensional standards
traceability (typically, precision air lines are used as primary or
secondary reference standards) over a reasonable range of
manufacturing floor conditions. Second, as an inexpensive connector
type, many manufacturers have taken liberties in the specification of
dimensions, tolerances, dielectric types and metallurgic content. A
precision standard for SMA connector design is not recognized by
the microwave industry. Finally, SMA designs suffer from reliability
problems when subjected to multiple connections. Center pins can
back out easily and the thin outer conductor wall is easily crushed
when subjected to excessive torque.
* The Convertible SWR Autotester must be used with a test head.
Ordering information
Please specify model/order number, name, and quantity when ordering.
The Convertible SWR Autotester solves these problems. Air
dielectric is used to eliminate the temperature and humidity
variations suffered by Teflon
®
and other dielectrics. Dimensional
tolerances and metallic composition are clearly specified in the
product design and center pin dimensions are phase matched. Air
dielectric also allows use of thicker outer conductors, drastically
decreasing potential deformation from excessive torque.
The Convertible SWR Autotester reduces maintenance costs without
using error prone test port adapters or connector savers.
Accuracy for SMA device test is also improved because the test port
head is properly compensated for operation with standard SMA
connector dimensions.
Specifications
Temperature range: +25°C ±5°C
Frequency Range
0.01 to 40 GHz
Directivity
> 34 dB 0.01 to 20 GHz
> 32 dB 20.0 to 26.5 GHz
> 29 dB 26.5 to 40.0 GHz
Test Port Match
> 21 dB 0.01 to 20.0 GHz
> 18 dB 20.0 to 40.0 GHz
Maximum Input Power
+ 27 dBm
Source Input to
Test Port Isolation
7.0 dB to 9.0 dB nominal insertion loss,
frequency dependent.
Impedance
50 Ω
Input Connector
K(f), 2.92 mm with ruggedized threads
Compatibility
The 560-98C50 is compatible with the 560, 560A, 561,
5400A, 56100A, 562, 54100A and 54000A analyzers.
Dimensions
Autotester: 7.3 cm x 5.3 cm x 2.3 cm
Test Port Heads: 16 mm(L) x 9 mm (dia.)
Model/Order No.Name
560-98C50A*Convertible SWR Autotester
Open/Shorts
22K50Male Open/Short, (Included with 560-98C50A purchase.)
22KF50Female Open/Short, (Not included with 560-98C50A purchase.)
Test Port Heads
25S50Precision Matched WSMA male
25SF50Precision Matched WSMA female
25L50Precision Matched 3.5 mm male
25LF50Precision Matched 3.5 mm female
25K50Precision Matched K male
25KF50Precision Matched K female
25SKF50Precision Matched Set, WSMA male & female, K male & female
25SLF50
Precision Matched Set, WSMA male & female,
3.5 mm male & female, K Connctor male & female
0
-10
-20
K (2.92 mm) to SMA
-30
-40
Connector Interface Return Loss, dB
-50
-60
0.01
Interface
102030
Frequency, GHz
SMA to SMA
Interface
3.5 mm to SMA
Interface
Page 53
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51
AIRLINES
18, 19 Series 2 to 40 GHz
The 18 and 19 Series Precision Airlines are the most accurate
impedance standards available today, and they are the recognized
traceability path for impedance at high frequencies. Anritsu airlines
are a critical component when measuring accurate impedances,
enabling measurements down to 1.006 SWR to 18 GHz,1.01 SWR
to 26.5 GHz, and 1.02 SWR to 40 GHz.
A beadless connector is used at the measurement end to provide a
minimum reflection connection. The other end is beaded to keep the
center conductor captive, thus fixing the reference plane at the
beadless end.
Features
• Plating is gold over nickel
• Provide impedance traceability to NIST
• Enable measurements down to 1.006 SWR to 18 GHz,
1.01 SWR to 26.5 GHz, and 1.02 SWR to 40 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Specifications
18N50
18A50
19S50
Temperature range: +25°C ±5°C
Model
Frequency
range (GHz)
Test port
connector
Beaded
port
connector
SWR
(test port)
Dimensions
L(cm) x
dia(cm)
18A500.5 to 18GPC-7GPC-71.00330 x 0.7
18N50
18NF50
0.5 to 18
N(m)
N(f)
GPC-71.00630 x 0.7
19S50
19SF50
0.8 to 26.5
WSMA(m)
WSMA(f)
WSMA(m)
1.006 to 18 GHz
1.010 to 26.5 GHz
25 x 0.35
19K50
19KF50
0.8 to 40
K(m)
K(f)
K(m)1.02015 x 0.29
Model/Order No.Name
Precision Air Line
18A50 0.5 to 18 GHz, 50 Ω, GPC-7
18N500.5 to 18 GHz, 50 Ω, N (m)
18NF500.5 to 18 GHz, 50 Ω, N (f)
19K500.8 to 40 GHz, 50 Ω, K(m)
19KF500.8 to 40 GHz, 50 Ω, K(f)
19S500.8 to 26.5 GHz, 50 Ω
19SF500.8 to 26.5 GHz, 50 Ω
Page 54
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52
OPEN/SHORTS
22 Series DC to 50 GHz
22K50
22KF50
The 22 Series Open/Shorts are used on the test port of an SWR
Autotester or SWR bridge to establish a full reflection reference
for accurate SWR measurements. When used with scalar network
analyzers, the open and short reflections over a swept frequency
range can be automatically averaged to enhance measurement
accuracy. All models consist of an open on one end and a short
on the other.
Features
• Single Gold Plated Component providing full open and short
reflections for accurate SWR measurements
• DC to 50 GHz frequency coverage
• GPC-7, Type N,WSMA, K Connectors
®
and V Connectors
®
• 50 Ωor 75 Ω impedance
Specifications
Ordering information
Please specify model/order number, name, and quantity when ordering.
Temperature range: +25°C ±5°C
Model
Frequency
range
(GHz)
Test port
connector
Characteristic
impedance
(Ω)
Dimensions
L(cm) x dia(cm)
22N75
22NF75
DC to 2
N(m)
N(f)
75
6.3 x 1.8
4.9 x 1.6
22N50
22NF50
DC to 18
N(m)
N(f)
50
6.3 x 1.8
4.9 x 1.6
22A50DC to 18GPC-7503.8 x 1.6
22S50
22SF50
DC to 26.5
WSMA(m)
WSMA(f)
50
4.2 x 0.8
3.5 x 0.8
22K50
22KF50
DC to 40
K(m)
K(f)
50
4.2 x 0.8
3.5 x 0.8
22V50
22VF50
DC to 50
V(m)
V(f)
50
3.6 x 0.8
2.8 x 0.8
Model/Order No.Name
Open/Short
22N50DC to 18 GHz, N(m), 50 Ω
22NF50DC to 18 GHz, N(f), 50 Ω
22N75DC to 3 GHz, N(m), 75 Ω
22NF75DC to 3 GHz, N(f), 75 Ω
22A50DC to 18 GHz, GPC-7 connector, 50 Ω
22K50DC to 40 GHz, K(m), 50 Ω
22KF50DC to 40 GHz, K(f), 50 Ω
22S50DC to 26.5 GHz, WSMA(m), 50 Ω
22SF50DC to 26.5 GHz, WSMA(f), 50 Ω
22V50DC to 50 GHz, V(m), 50 Ω
22VF50DC to 50 GHz, V(f), 50 Ω
Page 55
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53
OPEN/SHORTS/LOADS
OSL Series DC to 4 GHz
OSLN50LF
The OSL series open/short/load are used on the test port of the
Site Master
™
Series of handheld instruments to establish a reference
for accurate measurement. When used with a Site Master,the
open/short and load reflection over a swept frequency range can be
automatically averaged to enhance measurement accuracy. OSL
series Open/short/load comes in both N(Male) and N (Female)
connector configuration and consist open on one end, short
on other and Load on the tee section.
Features
• Single Nickel Plated Component providing full open, short
and load reflections for accurate measurements.
• DC to 4 GHz frequency coverage
• Type N(Male) and N(Female) connector configuration
• 50 ΩImpedence
Ordering information
Please specify model/order number, name, and quantity when ordering.
Specifications
Temperature range: +25°C ±5°C
Model/Order No.Name
Open/Short/Load
OSLN50LFDC to 4 GHz, N(m), 50 Ω
OSLNF50LFDC to 4 GHz, N(f), 50 Ω
Model
Frequency
range (GHz)
Test port
connector
Characteristic impedance
(Ω)
OSLN50LFDC to 4N(m)50
OSLNF50LFDC to 4N(f)50
Page 56
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54
MICROWAVE DETECTORS
70, 75 Series 100 kHz to 50 GHz
Within the 70 or 75 Series product lines, you will find a model
that matches your needs for instrumentation, system, or OEM
applications. By using the latest design and microelectronics
production technologies, Anritsu low-barrier Schottky-diode
detectors outperform others and offer significant cost savings.
Input connector types include Type N, and K Connector
®
(compatible with SMA and 3.5 mm), and V Connector
®
(compatible with 2.4 mm). In addition to frequency coverage
and price, these detectors are distinguished by their low SWR,
flat frequency response, and close output-voltage tracking over
a wide dynamic range.
Features
• Broadband coverage,10 MHz to 50 GHz with a Single Detector
• K Connector
®
compatible with SMA and 3.5 mm
• V Connector
®
compatible with 2.4 mm
• Lowest SWR: 1.33 to 20 GHz, 1.5 to 40 GHz
• Flat Response: ±0.5 dB to 20 GHz ±1.5 dB to 40 GHz
• Best Value for Instrumentation, system, and OEM applications
• Low price and availability from stock
Typical sensitivity
Typical sensitivity change
75N50B
70KA50
1000
R
= 50 k
L
100
10
Output voltage (mV)
1
0.1
= 1 k
R
L
–10–20–30–40
Input power (dBm)
+1
= 5 k
R
0
–1
–2
Change in sensitivity (dB)
–3
–4
–100+10 +20 +30 +40 +50 +60 +70 +80
Temperature (
L
C)
˚
= 50
R
L
= 200
R
L
RL= Load resistance
0+10
= 1 k
R
L
R
= 40 k
R
L
RL= Load resistance
= 10 k
L
+20
Page 57
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55
MICROWAVE DETECTORS
70, 75 Series 100 kHz to 50 GHz
DimensionsOrdering information
Please specify model/order number, name, and quantity when ordering.
* Upper frequency limit (GHz): ≤8,≤12.4, ≤18, ≤26.5,≤40
** Frequency response tracking (dB): ±0.2, ±0.3,±0.6, ±0.8, ±1.2
Option 2 (75KC50)Matching frequency response of two detectors
Option 3 (75KC50)Matching frequency response of three detectors
Page 58
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56
FIELD REPLACEMENT DIODE MODULE
A16176
Typical sensitivity
Typical sensitivity change
Field replaceable diode modules provide field replacements for
damaged diodes, virtually eliminating down time. To avoid all
degradation in performance when a diode is replaced in the field,
all replacement modules include the thin-film matching circuit.
Performance after replacement cannot be distinguished from that
of a new detector.
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
Diode module
10-10871 & 73 Series
10-7575A50
A1617670K Series (>=20 GHz) and 75K Series (>=20 GHz)
A1617770K Series (<=20 GHz) and 75K Series (<=20 GHz)
A1873574N50B
B1613275N50B
1000
100
10
Output voltage (mV)
1
0.1
+1
0
–1
RL= 50 k
= 50
R
L
R
= 1 k
L
= 200
R
L
RL= Load resistance
–10–20–30–40
Input power (dBm)
0+10
+20
R
= 1 k
= 5 k
R
L
L
–2
Change in sensitivity (dB)
–3
–4
–100+10 +20 +30 +40 +50 +60 +70 +80
Temperature (
= 40 k
R
L
RL= Load resistance
C)
˚
R
= 10 k
L
Page 59
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57
MICROWAVE DETECTORS
5400-71, 560-7 Series 1 MHz to 50 GHz
The Anritsu 560-7 and 5400-71 Series RF Detectors are used
with the Model 56100A Scalar Network Analyzer and with
Series 54100A Scalar Measurement System for making coaxial
transmission loss or gain and power measurements. They are also
used with the Site Master
®
and Cable Mate®Series Personal
SWR/RL and Fault Location Testers for making
power measurements.
Features
• Zero-biased Schottky diodes
• –55 dBm to +16 dBm range
Specifications
*
* The maximum input power is + 20 dBm for all microwave detectors with the exception of 5400-71N75L.
** The input of the 5400-71N75L is designed to extend the damage level to 1W (+30 dBm).
Compression begins at 10 dBm <0.05 GHz, 15 dBm <1 GHz, or 20 dBm <1.2 GHz.
Ordering information
Please specify model/order number, name, and quantity when ordering.
5400-71N50
Temperature range: 0°C to +70°C
Model/Order No.Name
Microwave Detector
5400-71N501 to 3000 MHz, N(m), 50 Ω
5400-71N751 MHz to 3 GHz, N(m), 75 Ω
5400-71N75L0.005 to 1.2 GHz, N(m), 75 Ω
560-7A5010 MHz to 18 GHz, GPC-7, 50 Ω
560-7K5010 MHz to 40 GHz, K(m), 50 Ω
560-7N50B10 MHz to 20 GHz, N(m), 50 Ω
560-7S50-210 MHz to 26.5 GHz, WSMA(m), 50 Ω
560-7S50B10 MHz to 20 GHz, WSMA(m), 50 Ω
560-7VA5010 MHz to 50 GHz, V(m), 50 Ω
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
58
POWER SENSORS
MA2400A/D Series 10 MHz to 50 GHz
Fast thermal sensors
Anritsu’s thermal sensors provide excellent power measurement
accuracy over 50 dB of dynamic range with more speed than any
other thermal sensor available (see fig. 1). Thermal sensors use
Seebeck elements where the combined effect of a thermal gradient
and charge migration between dissimilar metals gives a true reading
of average power on an y incident waveform. Anritsu thermal sensors
have class-leading SWR and built in EEPROM with calibration
factor and linearity correction data. This results in assured accuracy
when measuring any signal. Anritsu’s fast thermal power sensors
improve sensor rise time and fall time to less than 4.0ms– an order
of magnitude faster than previous thermal sensors. Settled power
measurements are now 10 times faster; that means reduced test time.
The MA24XXA/D Series Power Sensors consist of MA247XD Series
Power Sensors, MA246XD Series Power Sensors, MA248XD
Series Universal Power Sensors, MA242XD Series Thermal Power
Sensors, MA244XD Series High Accuracy Power Sensors, MA249XA
Series Wideband Power Sensors, and MA2411A Pulse Power Sensor.
These units are broadband microwave measurement components. All
models except the MA246XD Series, MA249XA Series, and
MA2411A Power Sensors, are used with the ML2430A Series Power
Meters. The MA246XD Series Power Sensors are used with the
ML2400A Series Power Meters only. The MA249XA and MA2411A
Power Sensors are used with the ML2480A Series Power Meters only.
Features
• 10 MHz to 50 GHz range
• N, K, and V type RF connectors
• 90 dB dynamic range provides stable power r eadings to –70 dBm
• MA244XD Series High Accuracy Power Sensors contain an
additional matching circuit to improve return loss performance .
• MA242XD Series Thermal Power Sensors provide measuring
speeds to 4 ms rise and fall times in addition to exceptional
return loss performance
• MA246XD power sensors have fast 1 milli second rise and fall
times needed for CDMA measurements
• MA248XD Universal sensors measure average power of
modulated signals such as W-CDMA, multitone, etc.
• All MA2481D Series Power Sensors contain internal
EEPROMs for storage of calibration data as a function of
frequency, power, and temperature. This allows the power
meter to interpolate and correct readings automatically
• MA2411A Pulse Power Sensor has a rise time of <18ns
needed for pulse radar measurements
• MA249XA Series Wideband Power Sensors have a video
bandwidth of 20 MHz for accurate Peak Measurement on
Radar and WLAN. These are also is ideal for Multi Pulse
Radar or GPRS measurements.
MA2472A
MA2475A
Fig. 2 Standard Diode Sensors
Fig. 1 Fast Thermal Sensors
Standard diode sensors
Diode sensors have greater speed, sensitivity and dynamic range
than thermal sensors (see fig. 2). All Anritsu diode sensors use a
dual diode architecture that gives improved sensitivity and dynamic
range over single diode architectures. The MA2470D Series Power
Sensors 90 dB dynamic range is both fast and accurate. Linearity is
better than 1.8%, typically < 1.0% through 18 GHz.
MA2470D power sensors offer an ideal combination of speed and
dynamic range for general purpose power measurements. A single
sensor replaces the two sensors that were previously required with
sensors limited to 50 dB dynamic range.
1000
-30
Pin
MA242XA Series
Thermal Sensors
Traditional
Thermal Sensor
-20
-10
0
10
20
100
10
Rdgs/sec
1
0.1
-70
-60
-50
-40
100000
10000
1000
100
Rdgs/sec
10
0.1
MA2470A, Sampling Rate
MA2470A, Reading Rate
MA2470A, GPIB Continuous
Auto-Averaged Readings
Traditional
-50
Diode Sensor
-40
1
-70
-60
-30
Pin
-20
Traditional
Thermal Sensor
0
-10
10
20
Page 61
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59
POWER SENSORS
MA2400A/D Series 10 MHz to 50 GHz
can now be made without the need for special power meters.
Universal sensors are also ideal for power measurements on other
digitally modulated carriers such as HDTV, DAB or QAM
modulated radio links.
Universal power sensors are also ideal for applications where
multiple signals are present, such as intermodulation measurements
and satellite multi carrier power loading measurements.
A unique additional capability of the Anritsu Uni v ersal power sensor is
the ability to use it as a standard diode sensor for CW measurements.
In this mode the fast response of diode sensors is maintained across
the full dynamic range of the sensor, meaning that for the majority
of users it is the only sensor that they will ever need – a truly
Universal Power Sensor.
Wideband sensors
The new MA2490A and MA2491A sensors from Anritsu have rise
time of 18 ns and are ideal for Radar,WLAN, Edge, and WCDMA
applications. MA2490A and MA2491A are 8 GHz and 18 GHz
sensors with 20 MHz video bandwidth. The sensor is equipped with
a chopper circuit that allows it to measure CW/average power as low
as -60 dBm. Both the sensors must be used with ML2487/88A
Power Meters, specially designed to handle high-speed sampling
rates up to 64MS/s.
Pulse sensor
The wideband sensor MA2411 is a 40 GHz diode sensor with 50 MHz
video bandwidth. This sensor is not fitted with chopper circuit, and
therefore mainly is a pulse-profiling sensor. A rise time of 7 nS
along with 50 MHz video bandwidth, makes this sensor ideal for
Radar applications. MA2411A Power Sensor can be used with
ML2480 series Power Meters. However, the bandwidth of the sensor
is limited only to 20 MHz, when using with ML2480 series power
meter.
High accuracy diode sensors
The Anritsu MA2440D series high-accuracy diode sensors have
a built in 3 dB attenuator to minimize input SWR. They are used
where the best measurement accuracy is required over a large
dynamic range, for example when measuring amplifiers. High
accuracy diode sensors have a dynamic range of 87 dB compared
to the 90 dB of standard diode sensors.
Fast diode sensors
The MA2460D fast diode sensors from Anritsu have a rise
time of 0.6 µs. This, together with a sensor video bandwidth of
1.25 MHz, makes them the ideal solution for power measurements
on N-CDMA (IS-95) signals. The MA2460 sensors must be used
with the ML2407/08A power meter. This combination of meter and
sensor provides fast signal processing and sampling speeds. Average
power, peak power and crest factor on N-CDMA signals can be
measured and displayed. The MA2460 are dual diode sensors that
deliver a greater-than 80 dB dynamic range, which makes them
suitable for both open- and closed-loop power-control testing. The
sensors internal AC detection circuitry gives a guaranteed noise
floor of –60 dBm with typical performance to –70 dBm, even when
measuring CDMA signals.
Pulses down to 1 µs can also be captured and displayed, thanks to
the sensor rise time of 0.6 µs. In profile mode the ML2407A
meter can be used to measure average power across narrow pulses,
an increasingly common test method for amplifiers in digitally
modulated systems.
Universal power sensors
The new MA2480D series Universal Power Sensors will measure
any modulated or multi-tone signal, thanks to a patented sensor
architecture with three diode pairs (see fig. 3). Universal power
sensors deliver over 80 dB of dynamic range with speed and
accuracy. Average power measurements on WCDMA signals
Fig. 3 Universal Power Sensor
Detector
‘C’
RF
INPUT
6dB
Power
Divider
11dB
Pad
DET C +ve
DET C -ve
6dB
Power
Divider
Detector
‘B’
17dB
Pad
DET B +ve
DET B -ve
Detector
‘A
DET A +ve
DET A -ve
Page 62
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60
POWER SENSORS
MA2400A/D Series 10 MHz to 50 GHz
Specifications
➀ 0.0 dBm, room temperature.
➁ Each MA24XXA/D series sensor incorporates precision RF connectors with hexagon coupling nut for attachment by industry standard torque wrench.
➂ MA2460D Fast Diode Sensors must be used with ML2407/08A Power Meters for NCDMA and Fast Pulse measurements.
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61
POWER SENSORS
MA2400A/D Series 10 MHz to 50 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
Thermal Sensor
MA2421D0.1 MHz to 18 GHz
MA2422D10 MHz to 18 GHz
MA2423D10 MHz to 32 GHz
MA2424D10 MHz to 40 GHz
MA2425D
10 MHz to 50 GHz
High Accuracy Sensor
MA2442D10 MHz to 18 GHz
MA2444D10 MHz to 40 GHz
MA2445D10 MHz to 50 GHz
Fast Diode Sensor
MA2468D10 MHz to 6 GHz
MA2469D10 MHz to 18 GHz
Model/Order No.Name
Power Sensor
MA2472D10 MHz to 18 GHz
MA2473D10 MHz to 32 GHz
MA2474D10 MHz to 40 GHz
MA2475D10 MHz to 50 GHz
MA2481DUniversal Power Sensor, 10 MHz to 6 GHz
MA2482DUniversal Power Sensor, 10 MHz to 18 GHz
MA2480/01Option 1, Universal Power Sensor CW Option
MA2400/98Z540/Guide 25 Calibration
MA2400/99Premium Calibration
MA2497AAgilent (HP) Sensor adapter
MA2499BAnritsu Sensor 10 to 12 pin Adapter
Wideband Sensor
MA2490A50 MHz to 8 GHz
MA2491A50 MHz to 18 GHz
Pulse Sensor
MA2411A300 MHz to 40 GHz
Page 64
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62
POWER DIVIDERS
11 Series DC to 3000 MHz
These RF power dividers are symmetrical, three-resistor tee designs
that can be used in applications where signals from DC to 3000 MHz
must be accurately divided. They are available in 50 Ω and provide
excellent amplitude and phase tracking.
Features
• DC to 3000 MHz frequency range
• Excellent amplitude and phase tracking
• 50 Ω
Specifications
11N50B
Insertion loss (typical) /return loss (typical)
11N50B outline
Ordering information
Please specify model/order number, name, and quantity when ordering.
Maximum Input Power: 1 Watt
Temperature range: 0°C to +70°C
Model
Frequency
range
(MHz)
SWR
Insertion
loss
(dB, max.)
Impedance
(Ω)
Connectors
InputOutput
11N50BDC to 3000<1.25750N(f)N(f)
Model/Order No.Name
11N50BPower Divider, 1 MHz to 3 GHz, 50 Ω
0
2
4
6
8
10
Typical Insertion Loss (dB)
12
0
Insertion loss
Return loss
Frequency (GHz)
Typical Return Loss (dB)
0
10
20
30
40
50
60
3
17.78
(TYP.)
40.64
(MAX)
31.75
(MAX)
Dimensions in millimeters
31.75
(MAX)
Page 65
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63
POWER DIVIDERS
K240, V240 Series DC to 65 GHz
Insertion loss (typical) /return loss (typical) for V240C
K240B, K240C outline
V240C outline
Ordering information
Please specify model/order number, name, and quantity when ordering.
These microwave power dividers are symmetrical, three-resistor tee
designs that can be used in applications where signals from DC to
65 GHz must be accurately divided or combined. K Connector
®
is
compatible with 3.5 mm and SMA; V Connector
®
is compatible
with 2.4 mm. All models have exceptional amplitude and phase
tracking characteristics.
Features
• DC to 65 GHz frequency range
• K Connector
®
compatibility with SMA/3.5 mm
• V Connector
®
compatibility with 2.4 mm
• Excellent amplitude and phase trac king
Specifications
V240C
Maximum Input Power: 1W
Temperature range: 0°C to +70°C
Weight: 43g
Model/Order No.Name
K240BPrecision Power Divider, DC to 26.5 GHz
K240CPrecision Power Divider, DC to 40 GHz
V240CPrecision Power Divider, DC to 65 GHz
Model
Frequency
range (GHz)
Impedance
(Ω)
Connectors
K240BDC to 26.550K(f)
K240CDC to 4050K(f)
V240CDC to 6550V(f)
Frequency
range (GHz)
Tracking of outputs
Insertion loss
(dB max.)
SWR
AmplitudePhase
DC to 6 ±0.3 dB±2°71.22
6 to 18 ±0.3 dB±3°7.51.44
18 to 26.5±0.6 dB±4°81.58
26.5 to 40±0.6 dB±6°8.51.79
40 to 65±1.8 dB±18°103.11
0
2
4
Insertion loss
6
8
10
Typical Insertion Loss (dB)
12
0
Return loss
Frequency (GHz)
Typical Return Loss (dB)
0
5
10
15
20
25
30
67
6.6 mm TYP.
14.7 mm
10.2 mm
7.4 mm
K240C
POWER
DIVIDER
10.2 mm
14.7 mm
K CONNECTOR FEMALE
1/4 - 36 UNS - 2A, 3X
3
GHz
DC-40
2
Ø 2.6 mm
2X
1
7.4 mm
2-56 UNC-2B, 2X
Dimensions in Millimeters
4.6 mm
7.4 mm
9.1 mm
10.2 mm
14.7 mm
3
V240C
2
V CONNECTOR FEMALE
THREAD M7.0 X .75-6G,2X
1
DC-65 GHz
POWER DIVIDER
11.4 mm
Ø 2.6 mm 2X
Dimensions in Millimeters
4.6 mm
7.4 mm
9.1 mm
6.1 mm
14.7 mm
2-56 UNC-2B, 2X
7.4 mm
10.2 mm
Page 66
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64
POWER SPLITTERS
K241, V241 Series, DC to 65 GHz
K241C
V241C
K241B, K241C outline
V241C outline
These microwave power splitters are symmetrical, two-resistor
designs that can be used in applications where signals from DC to
65 GHz must be accurately divided for ratio measurements. They
provide excellent flatness and effective output SWR. K Connectors
®
are compatible with 3.5 mm and SMA; V Connectors®are
compatible with 2.4 mm.
Features
• DC to 65 GHz frequency range
• K Connector
®
compatibility with SMA/3.5 mm
• V Connector
®
compatibility with 2.4 mm
• Excellent flatness and effective output SWR
Specifications
Ordering information
Please specify model/order number, name, and quantity when ordering.
Maximum Input Power: 1W
Temperature range: 0°C to +70°C
Weight: 43g
Model/Order No.Name
K241BPrecision Power Splitter, DC to 26.5 GHz
K241CPrecision Power Splitter, DC to 40 GHz
V241CPrecision Power Splitter, DC to 65 GHz
Model
Frequency
range (GHz)
Impedance
(Ω)
Connectors
InputOutput
K241BDC to 26.550K(m)K(f)
K241CDC to 4050K(m)K(f)
V241CDC to 6550V(m)V(f)
Model
Frequency
range
(GHz)
Flatness
(dB)
Input
SWR
Effective
output
SWR
Insertion
loss
(dB)
K241BDC to 26.52.01.451.457.5
K241C
DC to 26.52.01.451.457.5
26.5 to 402.01.931.708.5
V241C
DC to 182.02.112.008.5
18 to 402.02.332.309.5
40 to 652.02.622.6010.5
6.1
(TYP)
14.7
K Female Connector
1/4 - 36 UNS - 2A, 2X
2.28
OUTPUT
10.16
OUTPUT
2.28
10.16
14.8
(MAX)
11.5
(TYP)
2.64 2X
INPUT
2-56 UNC-2B, 2X
9.2
4.57
Dimensions in millimeters
K Male Connector
1/2 - 36 UNS - 2B
V CONNECTOR FEMALE
7.4 mm
THREAD M7.0 X .75-6G,2X
9.1 mm
V CONNECTOR MALE
THREAD M7.0 X .75-6H
7.4 mm
Dimensions in Millimeters
6.1 mm
10.2 mm
14.7 mm
2-56 UNC-2B, 2X
10.2 mm
14.7 mm
OUT
V241C
DC-65GHz
POWER DIVIDER
OUT
11.4 mm
IN
Ø 2.6 mm 2X
4.6 mm
Page 67
POWER SPLITTERS
N241 Series, DC to 3000 MHz
These RF power splitters are symmetrical, two resistor designs that
can be used in applications where signals from DC to 3000 MHz must
be accurately divided for ratio measurements. They are available in
50 Ω and provide excellent flatness and effective output SWR.
Ordering information
Please specify model/order number, name, and quantity when ordering.
N241A50 outline
N241A50
Maximum Input Power: 1 W
Temperature range: 0°C to +70°C
Model/Order No.Name
N241A50Power Splitter, DC to 3000 MHz, 50 Ω
Model
Frequency
range
Input SWR
Effective output
SWR
Insertion lossFlatnessImpedanceConnectors
N241A50
DC to
3000 MHz
1.31.37.5 dB±1.5 dB
50 Ω
Input: N(f)
Output: N(f)
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65
Specifications
Features
• DC to 3000 MHz frequency range
• Excellent flatness and effective output SWR
• 50
Ω Impedance
17.78
(TYP.)
40.64
(MAX)
31.8
(MAX)
Dimensions in millimeters
31.8
(MAX)
Page 68
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66
SPDT SWITCH
DC to 65 GHz
SC4734, SC6135 outline
Coaxial 65 GHz microwave SPDT switch
Short voltage pulse driven.
Features
• Switching Speed: 20 msec max
• Operating Voltage: 20 to 30V
• Duty Cycle: 20 msec min
Ordering information
Please specify model/order number, name, and quantity when ordering.
Temperature range: 0°C to +70°C
*Call 1-800-ANRITSU for detailed information
Specifications
*
Model
Frequency
range
Connectors
Insertion
loss (dB)
Return
loss (dB)
Isolation
(dB)
inout
SC4734 DC to 60 GHzV(f) V(f), V(f)
1.5 ≤40 GHz
3.0 >40 GHz
10 ≤40 GHz
6 >40 GHz
29 ≤40 GHz
26 >40 GHz
SC6135 DC to 65 GHzV(f) V(f), V(f)
1.5 ≤40 GHz
3.0 >40 GHz
10 ≤40 GHz
6 >40 GHz
29 ≤40 GHz
26 >40 GHz
Model/Order No.Name
SC4734SPDT Switch, DC to 60 GHz
SC6135SPDT Switch, DC to 65 GHz
45.5
33.90
BIAS
40.6
17.8
8.88
2.54
Dimensions in millimeters
28.70
2 X 4-40
UNC-2B
Page 69
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67
BIAS TERMINATION
DBT60, DBTCPW 50 kHz to 65 GHz
The Bias Termination is designed to meet the stringent electrical
performance requirements and small size of passive components in
optical communication networks. A broad bandwidth of 50 kHz to
65 GHz, with very good return loss, makes it ideal to provide DC
Bias in 40 Gbps optical modulators. In addition, the small size of
the Bias terminations makes integration of the Biasing network
easier.
The two different models available are DBT60 and DBT60CPW.
Depending on the type of substrate configuration used within an
Optical Modulator, one can use the DBT60 for 0.25 mm thick
Microstrip or DBT60CPW for 0.25 mm thick CPW substrate. Bias
Terminations can be customized to meet customer requirements for
different substrate types, substrate thickness, frequency ranges etc.
Features
• Low SWR
• Broad Frequency Performance
• High Voltage Capacity
• Small Form Size
DBT60
DBT60CPW
DBT60CPW outline
DBT60 outline
Model/Order No.Name
DBT60Bias Termination, 0.25 mm Microstrip
DBT60CPWBias Termination, 0.25 mm CPW Substrate
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model
Number
Frequency
Range
Return
Loss
DC
Voltage
DC
Current
Operating
Temperature
DBT6050 kHz to 60 GHz ≥18 dB typical16V200 mA0°C to 70°C
DBT60CPW
50 kHz to 50 GHz
50 GHz to 60 GHz
≥17 dB typical
≥14 dB typical
16V200 mA0°C to 70°C
Specifications
5.00
5.00
5.00
DC BIAS IN
RF IN
5.00
DC BIAS IN
1.5
MAX
1.5
MAX
.25
.25
RF IN
Page 70
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68
BIAS TEE
K250 100 MHz to 40 GHz, V250 100 MHz to 60 GHz
These bias tees are designed for applications where both DC and RF
signals must be applied to a device under test. They are particularly
suited for active device measurements. DC voltages of up to 30 volts
at 0.5 amps may be applied to test devices with negligible effect on
RF performance. Low RF throughline loss (<1 dB) and low return
loss ensure negligible effect on measurements up to 60 GHz. An RF
input DC block isolates the input port from the applied bias voltage.
Features
• Broadband, 0.1 to 60 GHz coverage
• Low SWR, low insertion loss
• K Connector
®
and V Connector®availability
Specifications
Outline (K and V models)
Schematic diagram (K and V models)
Ordering information
Please specify model/order number, name, and quantity when ordering.
Specifications
K250
➀ Usable between 0.04 and 0.1 GHz with degraded performance.
Temperature range: 0°C to +70°C
Model/Order No.Name
K250Precision Bias Tee, 100 MHz to 40 GHz
V250Precision Bias Tee, 100 MHz to 60 GHz
Temperature
0 to 60°C
Mounting position
Any
Weight
57g
Model
Frequency
range
Insertion
loss
Return loss
RF power
DC voltage
DC current DC port isolation RF connectors
DC connectors
K250
0.1 to 40 GHz
➀
1.2 dB typ.
15 dB min. to 20 GHz
10 dB min. to 40 GHz
1W max.
30V max.
0.5A
20 dB at 0.1 GHz
40 dB above 0.5 GHz
Input: K(m)
Output: K(f)
SMC(m)
V250
0.1 to 60 GHz
➀
2.2 dB typ.
13 dB min. to 20 GHz
9 dB min. to 40 GHz
8 dB min. to 60 GHz
1W max.
30V max.
0.5A
20 dB at 0.1 GHz
40 dB above 0.5 GHz
Input: V(m)
Output: V(f)
SMC(m)
12.7 NOM
29.2 NOM
K FEMALE
.25-36 UNS-2A
7.87 NOM
OUT
BIAS TEE K250
RF IN
6.35 NOM
Ø 2.69 THRU
2.54 NOM
DC
IN
K MALE
.25-36 UNS-2B
DIMENSIONS IN MILLIMETERS
DC
12.7 NOM
SMC MALE CONNECTOR
6.35 NOM
6.35 NOM
IN
RF
IN
RF
OUT
Page 71
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69
ULTRA-WIDEBAND BIAS TEES
K251 50 kHz to 40 GHz, V251 100 kHz to 65 GHz
These ultra-wide bandwidth bias tees have been optimized for
optical communications and other high-speed pulse, data or
microwave applications. Designed to simultaneously apply both
DC and RF drive signals to a device via a single input port, these
bias tees feature fast rise times, excellent low frequency response,
minimum insertion loss and flat group delay. Precision
K Connector
®
and V Connector®interfaces assure excellent
impedance match across the wide bandwidths available. A one year
warranty is provided. Adapters are available to convert between
K and V Connectors - See page 21 of this catalog for details.
Specifications apply over the full DC Bias current range and over the temperature range of 0°C to +70°C.
K251 outline
V251 outline
K251
V251
Model
Frequency
range
3dB BW
Insertion lossReturn lossRise timeGroup delay
Max
DC current
Max
DC voltage
Max
RF power
Connectors
K251
50 kHz to
40 GHz
<2 dB typicalSee Plot< 7 ps typical
110 ± 2 ps
typical
100 mA16VDC1 W
RF In: K(m)
RF Out: K(f)
Bias: SMC(m)
V251
100 kHz to
65 GHz
< 2.5 dB typicalSee Plot< 5 ps typical
113 ± 2 ps
typical
100 mA16VDC1 W
RF In: V(m)
RF Out: V(f)
Bias: SMC(m)
K MALE CONNECTOR
1/4-36 UNS-2B
MOUNTING HOLE
2X Ø.104 THRU
11.8
33.4
8.89
RF IN
15.44
K251 BIAS TEE
S/N XXXXXX
OUT
K FEMALE CONNECTOR
1/4-36 UNS-2A
7.1
4.45
31.8 (MAX)
2.03
TYP
DC
IN
39.5
Dimensions in millimeters
2.03
TYP
SMC MALE CONNECTOR
7.72
4.45
V MALE CONNECTOR
M7.0 X .75-6H
MOUNTING HOLE
2X Ø.104 THRU
11.0
15.44
4.45
RF IN
OUT
7.11
V251 BIAS TEE
S/N XXXXXX
V FEMALE CONNECTOR
M7.0 X .75-6G
31.75
33.7
8.89
2.03
TYP
DC
IN
39.5
Dimensions in millimeters
2.03
TYP
4.45
SMC MALE CONNECTOR
7.72
Page 72
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70
ULTRA-WIDEBAND BIAS TEES
K251 50 kHz to 40 GHz, V251 100 kHz to 65 GHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Typical Low Frequency Insertion Loss measured on V251
over the range of 1 kHz to 1 MHz.
Insertion Loss and Return Loss measured on V251 over the range
of 40 MHz to 65 GHz.
Typical Uncorrected Pulse Response for V251. Absolute risetime for the Bias
Tee is derived from this measured data by applying the RSS method to
compensate for the risetime of the input pulse.
T meas.= uncorrected risetime
TBT= absolute Bias Tee risetime
TPG= risetime of input pulse
T
BT
2
+ T
PG
2
= T meas.
Typical Low Frequency Insertion Loss and Return Loss
measured on K251 over the range of 1kHz to 1 MHz.
Typical Frequency Insertion Loss and Return Loss
measured on K251 over the range of 40 MHz to 40 GHz.
Model/Order No.Name
K251Precision Bias Tee, 50 kHz to 40 GHz
V251Precision Bias Tee, 100 kHz to 65 GHz
Page 73
KELVIN CONNECTION BIAS TEE
K252, V252 DC to 65 GHz
K252
Kelvin Connection Bias Tee is designed for applications where both
DC and RF signals are applied to the Device under Test (DUT) and
precision DC measurements are required. A high resistance of the
DC Coil results in a voltage drop that leads to a DC Biasing voltage
rror in the measurements. A Kelvin connection bias tee is used to
e
eliminate DC Biasing errors as the sense coil allows accurate
measurement of the DC Voltage applied across the DUT. Both 40
GHz and 65 GHz models are available with precision K connectors®
and V Connectors® respectively. A male connector for the RF input
and a female connector for the output is the standard interface for
K252 and V252 Bias Tees. A SMC connector is standard for DC
Bias and Sense connections. Other connector types with different
connector configurations can be ordered through factory.
Features
• Broadband 0.1 to 65 GHz frequency coverage
• 50 V and 500 mA Current capability
• Low Insertion and SWR performance
Model
K252100 MHz to 40 GHz<2.5 dB typical11 dB500 mA50 VDC1 W
V252100 MHz to 65 GHz<3.7 dB typical
Frequency
Range
3dB BW
Insertion LossReturn Loss
10 dB to 60 GHz
8 dB to 65 GHz
Max DC
Current
500 mA50 VDC1 W
Max DC
Voltage
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
K252Kelvin Bias Tee, 0.1 to 40 GHz
V252Kelvin Bias Tee, 0.1 to 65 GHz
Max RF PowerConnectorsInductance
RF In: K(m)
RF Out: K(f)
Bias: SMC(m)
Sense: SMC(m)
RF In: V(m)
RF Out: V(f)
Bias: SMC(m)
Sense: SMC(m)
Bias: 6 mH
Sense: 8 mH
Bias: 6 mH
Sense: 8 mH
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
71
Page 74
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
72
ULTRA-WIDEBAND BIAS TEES
V255 50 kHz to 65 GHz
V255 outline
V255
The V255 Gen II Ultra Wideband Bias Tee is designed to meet the
high electrical performance requirement of passive components in
optical communication networks. Given a broader bandwidth of
50 kHz to 65 GHz, with low insertion losses and very good return
loss, makes it ideal to use in 40 Gbps systems to bias optical
modulators and broad band data drivers. It's fast rise time and flat
group delay performance allows extremely accurate measurements
within a laboratory environment. The V255 Bias Tee comes with a
standard V Connector
®
that assures excellent impedance match
across the available wide bandwidth. The DC signal can be
applied or extracted from the bias tee through an SMC connector
at the third port. As with our other bias tees, the V255 also has a
one-year warranty.
Specifications
Features
• Ideal for Optical Communication applications.
• Very low Insertion Loss
• Rise Time 3 ps typical
• High Current Capacity
• High Isolation between Input Port and DC Port
ModelFrequency range Insertion lossReturn lossRise timeGroup delay
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
73
ULTRA-WIDEBAND BIAS TEES
V255 50 kHz to 65 GHz
Typical Group Delay Performance measured on V255 using
Anritsu 37397C VNA
Typical High Frequency Insertion Loss and Return Loss measured on V255
over the range of 40 MHz to 65 GHz using Anritsu 37397C VNA
Typical Isolation between Data I/P and DC Port using
Anritsu 37397C VNA
Typical Low Frequency Insertion Loss and Return Loss
measured on V255 Bias Tee over the range of 10 kHz to 300 kHz
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
V255Gen II Wideband Bias Tee, 50 kHz to 65 GHz
Input Test Signal to V255 2.0 V NRZ Input Signal using
Anritsu 43G ME7750A BERT
V255 Output Response to 2.0V NRZ Input Signal using
Anritsu 43G ME7750A BERT
Page 76
PRECISION DC BLOCKS
3
.96
1
5.44
9.53
4.78
7.92
K261
1/4-36 UNS-2B
1
/4-36 UNS-2A
1
1.8
33.5
K MALE CONNECTOR
K FEMALE CONNECTOR
D
imensions in millimeters
3
.96
34.0
15.44
1
1.5
9.53
4.78
7.92
V261
M
7.0 X .75-6H
M
7.0 X .75-6G
V MALE CONNECTOR
V
FEMALE CONNECTOR
Dimensions in millimeters
K261, 10 kHz to 40 GHz, V261 50 kHz to 65 GHz
V261
K261
These ultra-wide bandwidth DC Blocks have been optimized
optical communications and other high-speed pulse, data or
for
microwave applications. Designed to apply AC drive signals to a
device while eliminating any DC components, these DC Blocks
feature wide bandwidth, excellent low frequency response,
minimum insertion loss and flat group delay. Precision
K Connector
impedance match across the wide bandwidths available. Aone
year warranty is provided.
®
and V Connector®interfaces assure excellent
K261 outline
Features
• Ideal for Optical Communications and
high speed Pulse Applications
• <1.0 dB Insertion Loss (K261)
• Risetime: <5 ps (V261), <7 ps (K261)
Specifications
Model
K261
V261
Specifications apply over the temperature range of 0°C to +70°C.
Frequency range
3 dB BW
10 kHz to
40 GHz
50 kHz to
65 GHz
Insertion lossReturn lossRise timeGroup delay
<1.0 dB typicalSee Plot< 7 ps typical110
< 2.0 dB typicalSee Plot< 5 ps typical113 ±1 ps typical16VDC1 W
1 ps typical
±
V261 outline
Max
DC voltage
16VDC1 W
Max
RF power
Connectors
RF In: K(m)
RF Out: K(f)
RF In: V(m)
RF Out: V(f)
74
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Page 77
PRECISION DC BLOCKS
K261, 10 kHz to 40 GHz, V261 50 kHz to 65 GHz
Typical Low Frequency Insertion Loss measured on K261 over
the range of 1 kHz to 1 MHz.
Typical Low Frequency Insertion Loss measured on V261 over
the range of 1 kHz to 1 MHz.
Insertion Loss and Return Loss measured on K261 over the range
Insertion Loss and Return Loss measured on V261 over the range
of 40 MHz to 40 GHz.
of 40 MHz to 65 GHz.
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
K261Precision DC Block, 50 kHz to 40 GHz
V261Precision DC Block, 100 kHz to 65 GHz
Typical Uncorrected Pulse Response for V261. Absolute risetime for the DC
Blocks is derived fr
om this measured data by applying the RSS method to
compensate for the risetime of the input pulse.
2
2
T
T
+
BT
T meas. = uncorrected risetime
T
= absolute Bias Tee risetime
BT
= r
T
PG
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
T meas.
=
PG
isetime of input pulse
75
Page 78
DC BLOCKS
V265
1
1.5
8.6
27.8
V MALE CONNECTOR
M
7.0 X .75-6H
V FEMALE
CONNECTOR
M7.0 X .75-6G
7.1
ACROSS FLATS
7
.9
7
.9
Dimensions in millimeters
V265, 50 kHz to 65 GHz
V265
V265 outline
The V265 DC Block has been designed and optimized for optical
communications and other high speed pulse, data or microwave
applications. Based on the coaxial resilient connection – which is
the same as on our V255 Gen II Bias Tee – it provides excellent low
frequency response with very low losses and flat group delay over
the temperature of operation. Designed to apply AC drive signals to
a device while eliminating any DC voltage or current components,
the V265 DC Block can be used in isolating DC leakage between
two electrical components. The DC block comes with a standard
V Connector
®
and assures excellent impedance match across the
wide bandwidth available. A one-year warranty is provided.
Specifications
Model
V265
Frequency
range
50 kHz to 65 GHz
30 kHz to 65 GHz
typical
Insertion lossReturn lossRise timeGroup delay
<0.7 dB to 65 GHz
typical
–15 dB to 65 GHz
typical
3 ps typical84 ±2 ps typical16 VDC1 W
Features
• Ideal for Optical Communication applications.
• Low Insertion Loss
• Rise Time 3 ps typical
Max
DC voltage
Max
RF power
Connectors
RF In: V(f)
RF Out: V(m)
Operating
temperature
0˚C to 80˚C
76
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
Page 79
PRECISION DC BLOCKS
V265, 50 kHz to 65 GHz
Typical High Frequency Insertion Loss and Return Loss measured on V265
over the range of 40 MHz to 65GHz using Anritsu 37397C VNA
Input Test Signal to V265 2.0 V NRZ Input Signal using
Anritsu 43G ME7750A BERT
Typical Group Delay Performance measured on V265 using
Anritsu 37397C VNA
Typical Low Frequency Insertion Loss and Return Loss measured on V265 Bias
Tee over the range of 10 kHz to 300 kHz using
Anritsu MS4630B Network Analyzer
V265 Output Response to 2.0V NRZ Input Signal using
Anritsu 43G ME7750A
BER
T
Ordering information
Please specify model/order number, name, and quantity when ordering.
Model/Order No.Name
V265DC Block, 50 kHz to 65 GHz
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
77
Page 80
UNIVERSAL TEST FIXTURES
3680 Series DC to 60 GHz
The 3680 series provide an accurate, repeatable solution for
measuring microstrip and Coplanar substrate devices. Input and
output connections are made to the substrate device by two springloaded jaws that include coax-to-microstrip/Coplanar launchers.
The jaws accommodate substrates from 0.13 to 1.9 mm in thickness.
No center section is required. One jaw is movable in two dimensions
to accommodate substrates up to 50 mm long (100 mm for 3680-20)
and substrates with line offsets of up to 12.7 mm (25 mm for
3680-20). The 3680 series includes three models: the 3680-20
covers DC to 20 GHz with APC-3.5
DC to 40 GHz with Anritsu's K Connector
covers DC to 60 GHz with Anritsu's VConnector
Features
• DC to 60 GHz coverage
• Microstrip and coplanar measurement capability
• Accommodates offset and right-angle test devices
• Calibration/verification kits (optional)
• Substrate measurement capability
Substrate Measurement Capability
Providing substrate measurement capability for your microstrip or
coplanar waveguide designs, the 3680 Series Universal Test Fixtures
allow accurate, repeatable transitions from coax to microstrip or
coax to coplanar waveguide (CPW). Complete substrate
measurement systems comprised of a Universal Test Fixture, a
vector or scalar network analyzer
can fulfill your microstrip or CPW test needs. Anritsu provides the
complete measurement solution, the test fixtures, the calibration kits,
and the test equipment for measurements on substrate devices. Our
total system responsibility ensures compatible system components,
designed to work together properly. Guaranteed system specs
provide assurance that your test results are accurate and verifiable.
™
connectors, the 3680K covers
®
, and the 3680V
®
.
, and a "substrate" Calibration Kit
Universal Test Fixtures
The most critical part of any substrate measurement system is the
launching fixture. It must be simple yet flexible, easy to use, and
most of all provide accurate, repeatable measurements. Our
niversal Test Fixtures are designed to meet these requirements.
U
Three versions of the Universal Test Fixture are available: the 368020, DC to 20 GHz; the 3680K, DC to 40 GHz; and the 3680V, DC
to 60 GHz. The fixture consists of a fixed connector and a movable
onnector that can be positioned for substrates up to 2 inches long.
c
o center section is required. The substrate is held in place between
N
springloaded jaws. This allows the fixture to accommodate different
devices without requiring a custom center section for each different
length. The unique jaw action ensures solid, repeatable electrical
contact. The jaw tension is defined by the force of a spring,
independent of human judgment errors. This means the tension will
always be the same, providing more repeatable measurements.
Dielectric rods behind the jaws accurately position the substrate
away from the
launch to reduce
fringing capacitance
and contribute to the
fixture’s excellent
repeatability. With a
Universal Test
Fixture you can be
sure your
measurements are
both accurate and
repeatable.
Microstrip or Coplanar Waveguide
Measurements
The unique design of
the 3680 provides
measurement
capability for either
microstrip or
coplanar waveguide
(CPW) designs.
that is required is a
simple jaw change.
The 3680 does the
job of two fixtures,
saving you time and
money. A substrate
measurement system
with the 37xxx series
is the only measurement system capable of directly providing
VNA
microstrip dispersion compensation. Microstrip is a dispersive
media - phase shift is not linear with respect to frequency. Our
ector Network
V
can dramatically improve vector measurement accuracy and provide
you with the most accurate vector measurements possible.
All
Analyzer’s ability to compensate for this dispersion
78
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or fur
F
oducts and mor
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,
e
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Page 81
UNIVERSAL TEST FIXTURES
3680 Series DC to 60 GHz
Offset Measurements
With a 3680-based
substrate measurement
system, there is no need
o force your designs
t
into a straight line or
leave your designs
untested. The 3680 has
he ability to offset lines
t
y as much as ±_ inch.
b
Many designs, such as
filters, require parallel
traces that are offset. In
the past, designers were forced to add extra line lengths, create oneof-a-kind custom fixtures, or worse, not test offset designs. With the
flexibility of the 3680, you can test offset or in-line designs with one
setup. Formerly-untestable designs can now be tested with ease.
Right-Angle Measurements
Testing designs with right-angle connections is made easy. The
optional rightangle launcher adds a connection at 90° to the fixture.
This lets you test devices with right-angle connections with
precision and repeatability corresponding to an in-line
measurement. The fixture is designed to fit your device; you don’t
have to design your device to fit the fixture. The right-angle
launcher also provides another benefit - the ability to test multiport
devices. With the addition of right-angle launchers, the 3680 can
become a three port, or even four port launching fixture. A37xxx
series VNA-based microstrip measurement system with optional
dual source control can interdependently control up to two sources
and a receiver, for testing mixers or other frequency conversion
devices. Now a microstrip or CPW mixer, converter, or other device
can be tested, with the same convenience as a packaged device.
60 GHz Measurements
Anritsu was the first manufacturer to offer a coaxial VNAwith
continuous 0.04 GHz to 60 GHz measurement capability. With the
3680 Series Universal Test Fixtures, that measurement capability is
extended onto the substrate.
measurement system is capable of measurements from 0.04 GHz to
60 GHz in one setup. And the optional 60 GHz time domain
capability provides time or distance measurements with unsurpassed
resolution. Discontinuities as close as 1.2 mm on alumina can be
resolved. You can measure devices whose performance could
previously only be theorized. The 3680V, has excellent return loss
and insertion loss from DC to 60 GHz. In a substrate measurement
system, that translates to improved accuracy and repeatability, for
more accurate characterization of your microstrip or CPW designs.
An Anritsu
VNA-based substrate
Bias Capability
For active device measurements, the 3680 has bias capability either
through the RF connection or through a bias probe. With optional
multiple bias probes, you can inject bias into any point on your
evice under test. The bias probe provides infinite placement
d
resolution and eliminates the need for external bias hardware.
Alternately, if your active device is biased through an RF
connection, bias tees
an be used to combine
c
ias and RF at any
b
launch point. The
3680’s flexible bias
injection eliminates the
need for multiple
fixtures, saving you
time and money. Up to
four bias probes can be
accommodated.
MMIC Measurements
With the optional MMIC attachment, you can test MMIC’s and very
small components as conveniently as other devices. AMMIC
attachment consists of a center carrier, with microstrip lines for
launching, and cam-operated pressure rods. The MMIC component
is placed on the center carrier between microstrip lines. (Machinable
center carrier blocks are available for your custom designs.) Contact
with the component is made with spring tabs, for reliability and
damage protection. The unique design of the MMIC attachment
assures solid, repeatable measurements on any small device. An
Anritsu substrate measurement system can fulfill all your substrate
measurement needs including, with a MMIC attachment, very small
substrates and MMICs.
Calibration/Verification Kits
A full complement of calibration kits for microstrip or coplanar
waveguide are available. Standard Open Short Load (OSL) and
Line Reflect Line (LRL) calibration components are included. The
substrates for these cal kits are carefully selected for proper
impedance and consistency
measurements possible. Included with every cal kit is a Beatty
standard (standard mismatch) and a 20 dB offset termination. Now
you can verify, in the fixture, the quality of your calibrations. This
verification, available only from Anritsu, ensures the validity of
your device measurements.
, to provide the most accurate
ther information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
or fur
F
79
Page 82
UNIVERSAL TEST FIXTURES
3680 Series DC to 60 GHz
Specifications
Substrate types supportedMicrostrip or coplanar waveguide
Overall size10 x 12.7 x 6.4 cm
Substrate length
M
aximum substrate width
Substrate thickness
Maximum line offset
Input and output connectors
3680 series Universal Test Fixture
Substrate thickness0.0 cm, 0.038 cm, 0.064 cm
Minimum test substrate length1.5 mm
Maximum test substrate length1.17 cm with standard block
Attachment
36802 MMIC
Maximum line offset±1.2 cm
Distance from in-line connector, axial
Angle
Distance from in-line connector, offset
Launcher
36801 Right
Electrical
Model
Frequency
range (GHz)
Return loss (dB)
DC to 20 GHz
20 to 40 GHz
40 to 60 GHz
Repeatability (dB)
DC to 20 GHz
20 to 40 GHz
40 to 60 GHz
Temperature range: –20° to 70°C
Universal
Test Fixture
3680-20 3680K3680V 36801K 36801V36802
DC to 20 DC to 40 DC to 60DC to 30 DC to 50DC to 60
0.10
>17
>14
<±0.10
<±0.20
>17
<±
0.5 cm min.
5 cm max.
[
10 cm with 3680-20]
N
o limit
0.012 cm min.
0.19 cm max.
±1.2 cm
[±2.5 cm with 3680-20]
3680-20: APC-3.5™ female
3680K: K Connector
3680V: V Connector
Minimum: 1 cm
Maximum: 4 cm
Minimum: 0.0 cm
Maximum: 2 cm
>17
>14
>8
<±0.10
<±0.20
<±0.30
<±0.15
<±0.25
Right-Angle
Launcher
>16
>12
<±0.15
<±0.25
<±0.40
>16
>12
>7
®
®
female
female
MMIC
Attachment
>12
>8
>6
<±0.20
<±0.40
<±0.60
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
Main frame
3680-20Universal Test Fixture (20 GHz)
3680KUniversal Test Fixture (40 GHz)
3680VUniversal Test Fixture (60 GHz)
Accessories
36801KRight-Angle Launcher (30 GHz)
36801VRight-Angle Launcher (50 GHz)
36802MMIC Attachment
36803Bias Probe
36805-10M
36805-15M
36805-25M
10 mil launchers
15 mil launchers
2
5 mil launchers
Calibration/verification kits
36804B-10M10 mil microstrip cal/verif. kit, DC to 50 GHz
36804B-15M15 mil microstrip cal/verif. kit, DC to 30 GHz
36804B-25M25 mil microstrip cal/verif. kit, DC to 15 GHz
36804B-25C25 mil coplanar waveguide cal/verif. kit, DC to 20 GHz
6805 series includes (4) substrate launchers for the 36802 MMIC attachment
À 3
À
À
À
80
ther information about these pr
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oducts and mor
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,
e
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Page 83
LIMITERS
Dimensions in millimeters
30
25
25
N
Connector Male
N
Connector Female
LIMITERS
MODEL
1N75B
FREQUENCY RANGE
1MHz - 3000 MHz
M
AXIMUM
I
NPUTS
RF LIMITERS
N Connector Male
N
Connector Female
95
3
2.3
13
2
1 Dia.
1
5.7 Dia.
Dimensions in millimeters
MAXIMUM
INPUTS
RF LIMITERS
17.413
40
17.4 Dia.
K Connector Male
K Connector Female
Dimensions in millimeters
1 Series 1 MHz to 26.5 GHz
1N50C
1N50B and 1N75B Limiters outline
1K50B
Broadband microwave limiter features
1N50C and 1N75C Limiters outline
• High power protection: Up to 5 Watts
• Very fast turn-on time: 10 ns max.
• Broad frequency range: 0.001 to 26.5 GHz
• Low insertion loss: 2.7 dB to 20 GHz
• Excellent return loss: 11 dB at 20 GHz
• Single side limiting
Specifications
1K50A and 1K50B Limiters outline
Model
1K50B0.01 to 26.5 GHz3 Watts10 dB3.9 dB10 nsK(m)K(f)DC
Limiting Level: Limiter begins compressing at approximately +10 dBm. In compression, output level increases by 0.25 to 0.5 dB for each 1 dB increase at the input.Output power at
5W input at 500 MHz is 21 dBm max.
Dimensions: 1N50B and 1N75B 3.8 cm x 2.5 cm x 2.5 cm
emperature range:0°C to +70°C
T
Frequency
range
Max.
input power
atts
Min.
return loss
(at 0 dBm input)
14 dB, ≤12 GHz
11 dB, >12 GHz
14 dB, ≤12 GHz
11 dB, >12 GHz
19 dB1.3 dB10 nsN(m)N(f)AC
Max.
insertion loss
(at 0 dBm input)
2.7 dB10 nsK(m)K(f)DC
2.9 dB10 nsN(m)N(f)DC
Max.
turn-on time
Input
connector
Output
connector
Input/output
coupling
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
Limiter
1N50BN(m) to N(f), 50 Ω, 1 MHz to 3 GHz
1N75BN(m) to N(f), 75 Ω, 1 MHz to 3 GHz
1N50CN(m) to N(f), 50 Ω, 10 MHz to 18 GHz
1N75CN(m) to N(f), 75 Ω, 10 MHz to 3 GHz
1K50AK(m) to K(f), 50
1K50BK(m) to K(f), 50
or further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
F
Ω, 10 MHz to 20 GHz
, 10 MHz to 26.5 GHz
Ω
81
Page 84
MATCHING PADS
12 Series DC to 3000 MHz
Specifications
Model
12N50-75BDC to 30001.257.5 max.
12N75BDC to 30001.253.0 max.
Temperature range: 0°C to +70°C
Dimensions: 3.8 cm x 2.5 cm x 2.5 cm
Frequency
range (MHz)
SWR
Insertion loss
(dB)
Connectors
N(m) 50 Ω to
N(f) 75 Ω
N(m) 50 Ω to
N
(m) 75 Ω
12N50-75B
RF matching pad and impedance
adapter features
• DC to 3000 MHz frequency range
• Matching pad matches 50 Ω to 75 Ω or 75 Ω to 50 Ω circuits
• Impedance adapter converts 50 Ω to 75 Ω with <3 dB loss
The 12N50-75B matching pad is a two-resistor design that matches
50 Ω to 75 Ω or 75 Ω to 50 Ω circuits.
The 12N75B impedance adapter is a one-resistor design that
with less than 3 dB loss.
converts 50 Ω
to 75 Ω
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
12N50-75BMatching Pad, DC to 3000 MHz
12N75BImpedance Adapter, DC to 3000 MHz
82
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
Page 85
VNA AND VNMS CALIBRATION KITS
3753LF
The Anritsu Calibration Kits contain all the precision components
and tools required to calibrate your VNA or VNMS for 12-term
error-corrected measurements in the connector style of your choice.
Components are included for calibrating male and female test ports
as required. The kits support calibration with opens, shorts, and
broadband loads. Option 1 adds sliding terminations and a pin depth
gauge where required.
The following kits are for use with 37XXX Lightning VNAs.
3650 SMA/3.5 mm Calibration Kit consisting of:
• 34ASF50-2 Female Adapter (2)
• 33SFSF50 Female-Female Adapter (2)*
• 33SS50 Male-Male Adapter*
• 28S50-2 Broadband Male Termination (2)
• 28SF50-2 Broadband Female Termination (2)
• 33SSF50 Male-Female Adapter (2)*
• 24S50 Male Open
• 24SF50 Female Open
• 23S50 Male Short
• 23SF50 Female Short
• 34AS50-2 Male
• Connector
• 01-201 Torque Wrench
• 01-210 Reference Flat
• 01-222 Pin Depth Gauge
• 01-223 Pin Depth Gauge
• Calibration coefficients diskette
Adapter (2)
Thumb Wheel (4)
Option 1
Adds the following:
• 01-212 Female Flush Short
• 01-211 Male Flush Short
• 17SF50 Female Sliding Termination
• 17S50 Male Sliding Termination
3651 GPC-7 Calibration Kit consisting of:
• 28A50-2 Broadband Termination (2)
• 24A50 Open
• 23A50 Short
• 01-200 Torque Wrench
• 01-221 Collet Extractor Tool and 4 Collets
• Calibration coefficients diskette
3651, Option 1
Option 1
Adds the following:
• 17A50 Sliding Termination
• 01-210 Reference Flat
• 01-220 Pin Depth Gauge
3652 K Connector®Calibration Kit consisting of:
• 34AKF50 Female Adapter (2)
• 33KFKF50B Female-Female Adapter (2)*
• 33KK50B Male-Male Adapter*
• 28K50 Broadband Male Termination (2)
• 28KF50 Broadband Female termination (2)
• 33KKF50B Male-Female Adapter (2)*
• 24K50 Male Open
• 24KF50 Female Open
• 23K50 Male Short
• 23KF50 Female Short
• 34AK50 Male Adapter (2)
• 01-201 Torque Wrench
• 01-210 Reference Flat
• 01-222 Pin Depth Gauge
• 01-223 Pin Depth Gauge
• Calibration coef
• Connector thumb wheel (4)
ficients diskette
Option 1
Adds the following:
• 17KF50 Female Sliding Termination
• 17K50 Male Sliding Termination
• 01-212 Female Flush Short
• 01-211 Male Flush Short
3653 Type N Calibration Kit consisting of:
• 23NF50 Female Short
• 23N50 Male Short
• 24NF50 Female Open
• 24N50 Male Open
• 28N50-2 Broadband Male Termination (2)
• 28NF50-2 Broadband Female Termination (2)
• 34AN50-2 Male Adapter (2)
• 34ANF50-2 Female Adapter (2)
• 01-213 Reference Gauge
• 01-224 Pin Depth Gauge
• Calibration coefficients diskette
or further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com
F
83
Page 86
VNA AND VNMS CALIBRATION KITS
654B V Connector
3
®
alibration Kit consisting of:
C
• 23V50B-5.1 Male Short 5.1mm
• 23VF50B-5.1 Female Short 5.1mm
• 24V50B Male Open
• 24VF50B Female Open
• 28V50B Male Broadband Termination (2)
• 28VF50B Female Broadband Termination (2)
• 17VF50B Female Sliding Termination
• 17V50B Male Sliding Termination
• 33VV50B Male-Male Adapter*
• 33VFVF50B Female-Female Adapter (2)*
• 33VVF50B Male-Female Adapter (2)*
• Calibration coefficients diskette
• Connector thumb wheel (4)
• 01-201 Torque Wrench
• 01-210 Reference Flat
• 01-322 Pin Depth Gauge
• 01-323 Female Adapter for pin gauge
• 01-204 Adapter Wrench
• 01-312 Male Flush Short
• 01-311 Female Flush Short
3655 Series Waveguide Calibration Kit
The 3655 Series Calibration Kit contains all of the precision
components and tools required to calibrate your VNA for 12-term
error-corrected measurements of test devices with the appropriate
waveguide designation. Components are included for calibrating
both module ports. The kit supports calibration with offset shorts
and broadband loads. Option 1 adds a sliding termination.
The
with characteristics that are traceable to NIST. Used primarily by the
metrology laboratory, these components provide the most dependable
means of determining the system accuracy of your VNA. Adisk
containing factory measured test data for all components is supplied
for comparison with customer-measured data.
The following kits are for use with 37XXX Lightning VNAs.
3663 Type N Verification Kit consisting of:
• 42N-50, 50 dB Attenuator
• 18N50-10, 10 cm Airline
• 42N20, 20 dB Attenuator
• 18N50-10B, 10 cm Stepped Impedance Airline (Beatty standard)
• Verification kit disks
3665 Waveguide Verification Kit consisting of:
• Straight section
• Pin set
• Mismatch section
• Ball driver
• 50 dB Attenuator
• 20 dB Attenuator
• Verification kit disks
3666 SMA/3.5 mm Verification Kit consisting of:
• 19S50-7, 7.5 cm Airline
• 19SF50-7B, 7.5 cm Stepped Impedance Airline (Beatty standard)
• 42S-50, 50 dB Attenuator
• 42S-20, 20 dB Attenuator
• Verification kit disks
• 19V50-5, 5 cm Airline
• 18V50-5B, 5 cm Stepped Impedance Airline (Beatty standard)
• Verification kit disks
The following kits are for use with MS462XX Scorpion VNAs.
3663R Type N 9 GHz Verification Kit consisting of:
• 42N-50, 50 dB Attenuator
• 42N20, 20 dB Attenuator
• 42NOP-20 N Mismatch attenuator
• Verification kit disks
3666R SMA/3.5 mm 9 GHz Verification Kit consisting of:
• 42L-50, 50 dB Attenuator
• 42L-20, 20 dB Attenuator
• 42LOP-20 SMA/3.5 mm Mismatch Attenuator
• Verification kit disks
3667R GPC-7 9 GHz Verification Kit consisting of:
• 42A-50, 50 dB Attenuator
• 42A-20, 20 dB Attenuator
• 42AOP-20 GPC-7 Mismatch Attenuator
• Verification kit disks
Ordering information
Please specify model/order number, name and quantity when ordering.
Model/Order No.Name
3663Type N verification kit
3665Waveguide verification kit
3666SMA/3.5 mm verification kit
3667GPC-7 verification kit
3668K Connector®verification kit
3669BV Connector®verification kit
3663RT
3666RSMA/3.5 mm 9 GHz verification kit
3667RGPC-7 9 GHz verification kit
Verification kits
ype N 9 GHz verification kit
For further information about these products and more, contact us at 1-800-ANRITSU or visit www.us.anritsu.com