Keysight (Agilent) DSO91204A DSA/DSO 90000A Series Data Sheet

Superior signal integrity
Deep application analysis
Better insight
Agilent Infiniium DSA/DSO90000A Series
Data Sheet
13 GHz bandwidth 40 GSa/s sampling rate 1 Gpts deep memory 3-stage sequence trigger
Infiniium 90000A Series: Highlights
Superior signal integrity, deep application analysis, better insight
The Agilent Infiniium 90000A oscilloscope helps us capture large amounts of data and process that data record in a much shorter time. This improves our development time and shortens our time to market.
Bill Simms, Mixed Signal Design Validation manager, NVIDIA Corp
The last time you purchased a high-performance real-time scope, what trade-offs did you make? To
analyze and debug next-generation, high-speed digital and RF designs, you wanted the lowest noise floor, the longest capture time, and the deepest analysis capabilities. But you couldn't find that all in one instrument – so you compromised.
This time, you won't have to make trade-offs. The all-new Infiniium
DSA/DSO90000A Series scopes deliver superior signal integrity, barrier-breaking memory depth, and unmatched signal analysis and debugging. So you enjoy better insight than ever into high-speed digital and RF designs.
Each scope in the Infiniium 90000A Series scopes gives you all the industry-leading capabilities you're looking for. You want the industry's
lowest noise floor? Superior signal integrity is a must to make highly accurate, repeatable measurements you feel confident in. The 90000A Series scopes deliver: The 12 GHz model, for example, provides an industry-leading low noise floor of 435 µVrms at 5 mV per division. The longest capture time? These are the first high-performance scopes that can acquire one billion samples (1 Gpts). That means you can capture a long 25 ms record of your signal at 40 GSa/s.
You want the deepest analysis capabilities? Debug and
characterization speeds along with the new InfiniiScan Plus event identification system, based on a world-class hardware trigger system that can detect glitches as low as 125 ps. And if you work on high-speed video interfaces, such as HDMI (high-definition multimedia interface) and DisplayPort, you'll appreciate the standard analog HDTV triggers.
Do you just need to capture a signal of interest? Take advantage of the
industry's only three-stage sequence trigger system. Combining A-B hardware triggers with InfiniiScan software to enable triggering flexible enough to handle almost any debug situation.
You also get other features that make your job quicker and easier. Trigger
with the TIE (time interval error) jitter value lets you investigate complex
jitter phenomena with a simultaneous analysis and debugging tool that displays eye pattern analysis, protocol decoding information, jitter trend, and histogram analysis all on one screen, for a time-correlated view. And high-speed offload via gigabit Ethernet and a USB 2.0 device port transfers data at industry-leading rates for rapid offline analysis.
Welcome to the world of ultra-performance. With the new
Infiniium DSA/DSO90000A Series scopes, you finally get the tool you've always wanted for next-generation high-speed digital and RF designs.
• Low noise: Industry’s lowest noise floor for both oscilloscopes and probes
• 1 Gpts: Industry-leading MegaZoom ultra-deep memory at 40 GSa/s on all four channels
• Advanced triggering: Industry’s only three-stage sequence triggering with InfiniiScan Plus trigger system
• 13 GHz and 40 GSa/s: Up to 13 GHz bandwidth, up to 40 GSa/s sample rate on four channels
• 22 MSa/s: Industry-leading data transfer rate from the oscilloscope
• 122,000 measurements per sec: Amazing measurement update throughput
• –55 to 150 °C: Industry’s only environmental chamber probing solution
• 2.5 µs: Industry-leading segment memory speed
• Flatness: Industry’s flattest frequency response
• Upgrade: Industry’s only bandwidth-upgradeable series from
2.5 GHz to 13 GHz
• Share: Industry’s only server-based oscilloscope application software license solution
• Applications: Industry’s largest selection of application software packages
• 12.1 inch screen: Large display size with XGA resolution
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Infiniium 90000A Series: Design Concept
Superior signal integrity, deep application analysis, better insight
The design concept
Evaluate signal integrity. Validate compliance. Debug and analyze designs.
When we developed the Infiniium 90000A Series, we took a close look at the key tasks that engineers of high-speed digital and RF designs perform. Then we created a series of scopes that could help you manage each of these tasks quickly and easily. We tapped the expertise we've acquired during 50+ years spent advancing scope technology. So you can finally work with an ultra-performance scope that keeps up with you and your leading-edge designs.
Signal
Debug
Integrity
AnalysisCompliance
Infiniium multi-chip module isolates EMI.
To enable our scopes to operate at high frequencies with minimal electromagnetic interference (EMI), we relied on our expertise in radio frequency (RF) technology. Instead of implementing each component of a digital circuit in a separate circuit block, we created a multi-chip module that uses a “Faraday Cage” to isolate EMI. The result? High-bandwidth scopes with the lowest noise floor in the industry.
Infiniium hardware sequence trigger chip. This chip enables
the new world of three stage triggering available on the 90000A Series scopes.
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Infiniium 90000A Series: Selection Guide
Superior signal integrity, deep application analysis, better insight
90000A Series Infiniium oscilloscopes
Real-time
Model
91304A 13 GHz 40 GSa/s on 4 ch 10 Mpts on 4 ch 1 Gpts on 4 ch 3.37 mVrms
91204A 12 GHz 40 GSa/s on 4 ch 10 Mpts on 4 ch 1 Gpts on 4 ch 2.80 mVrms
90804A 8 GHz 40 GSa/s on 4 ch 10 Mpts on 4 ch 1 Gpts on 4 ch 2.22 mVrms
90604A 6 GHz 20 GSa/s on 4 ch 10 Mpts on 4 ch 1 Gpts on 4 ch 1.92 mVrms
90404A 4 GHz 20 GSa/s on 4 ch 10 Mpts on 4 ch 1 Gpts on 4 ch 1.56 mVrms
90254A 2.5 GHz 20 GSa/s on 4 ch 10 Mpts on 4 ch 1 Gpts on 4 ch 1.27 mVrms
bandwidth on 4 ch
Maximum sampling rate on 4 ch Standard memory Maximum memory
Noise floor at 100 mV/div
How much time span can I capture?
10 Mpts of
Sampling rate
40 GSa/s 250 μs 500 μs 1.25 ms 2.5 ms 5.0 ms 12.5 ms 25.0 ms
20 GSa/s 500 μs 1 ms 2.5 ms 5.0 ms 10.0 ms 25.0 ms 50.0 ms
memory
20 Mpts of memory
50 Mpts of memory
100 Mpts of memory
200 Mpts of memory
500 Mpts of memory
1 Gpts of memory
Note: time span capture = memory depth x 1/sampling rate
®
Acquiring 25 ms of PCI EXPRESS chance of capturing your signal of interest.
Gen 2 data at 40 GS/s using 1 Gpts of memory will provide you the highest
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Infiniium 90000A Series: Selection Guide
Superior signal integrity, deep application analysis, better insight
How much bandwidth do I need to measure a given rise/fall time accurately?
Rise/fall time (20 - 80%) 3% accuracy 10% accuracy 20% accuracy
100 ps 5.6 GHz 4.8 GHz 4.0 GHz
75 ps 7.5 GHz 6.4 GHz 5.3 GHz
60 ps 9.3 GHz 8.0 GHz 6.7 GHz
50 ps 11.2 GHz 9.6 GHz 8.0 GHz
40 ps 14.0 GHz 12.0 GHz 10.0 GHz
30 ps 18.7 GHz 16.0 GHz 13.3 GHz
Notes: Maximum signal frequency content = 0.4/rise time (20 - 80%) Scope bandwidth required = 1.4 x maximum signal frequency for 3% measurement accuracy Scope bandwidth required = 1.2 x maximum signal frequency for 10% measurement accuracy Scope bandwidth required = 1.0 x maximum signal frequency for 20% measurement accuracy
Choose the probes you need for your application
InfiniiMax II Series probe amplifiers
Model Bandwidth Description
1169A 12 GHz (spec) 13 GHz (typical) InfiniiMax II probe amplifier – order one or more probe heads
1168A 10 GHz InfiniiMax II probe amplifier – order one or more probe heads
InfiniiMax II probe amplifier specifications: Dynamic range = 3.3 V, DC offset range = ± 16 V, maximum voltage = ± 30 V
InfiniiMax I Series probe amplifiers
Model Bandwidth Description
1134A 7 GHz InfiniiMax I probe amplifier – order one or more probe heads
1132A 5 GHz InfiniiMax I probe amplifier – order one or more probe heads
1131A 3.5 GHz InfiniiMax I probe amplifier – order one or more probe heads
1130A 1.5 GHz InfiniiMax I probe amplifier – order one or more probe heads
InfiniiMax I probe amplifier specifications: Dynamic range = 5 V, DC offset range = ± 12 V, maximum voltage = ± 30 V
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Infiniium 90000A Series: Selection Guide
Superior signal integrity, deep application analysis, better insight
InfiniiMax II Series probe heads
InfiniiMax II Series probe heads are recommended for 1169A/68A probe amplifiers. The typical performance when used with a DSA/DSO91304A is shown below.
Differential measurement
Probe head Model number
High-Bandwidth differential SMA N5380A 12.5 GHz 12.5 GHz
High-Bandwidth differential solder-in
High-Bandwidth differential browser
High-Bandwidth differential replaceable ZIF solder-in*
High-Bandwidth differential replaceable long wire ZIF solder-in*
N5381A 13 GHz, 0.21 pF, 50 kΩ 13 GHz, 0.35 pF, 25 kΩ
N5382A 13 GHz, 0.21 pF, 50 kΩ 13 GHz, 0.35 pF, 25 kΩ
N5425A/N5426A (requires both N5425A and N5426A)
N5451A (requires N5425A) 9 GHz at 7 mm wire 5 GHz at 11 mm wire
(Bandwidth, input C, input R)
13 GHz, 0.33 pF, 50 kΩ 13 GHz, 0.53 pF, 25 kΩ
Single-ended measurement (Bandwidth, input C,input R)
InfiniiMax I Series probe heads (can be used with 1169A/68A probe amplifiers with limitations)
Probe head Model number
High-bandwidth differential replaceable ZIF solder-in*
N5425A/N5426A (requires both N5425A and N5426A)
Differential measurement (Bandwidth, input C, input R)
12 GHz, 0.33 pF, 50 kΩ 12 GHz, 0.53 pF, 25 kΩ
Single-ended measurement (Bandwidth, input C, input R)
High-bandwidth differential replaceable long-wire ZIF solder-in*
Differential solder-in (Higher loading, high-frequency response variation)
Differential socket (Higher loading)
Differential browser – wide span E2675A 6 GHz, 0.32 pF, 50 kΩ 6 GHz, 0.57 pF, 25 kΩ
Differential SMA E2695A 8 GHz 8 GHz
Single-ended solder-in (must bandlimit input to ≤ 6 GHz)
Single-ended browser E2676A N/A 6 GHz, 0.67 pF, 25 kΩ
Differential kit E2669A (includes E2675A, E2677A and E2678A)
Single-ended kit E2668A (includes E2676A, E2679A and E2678A)
High-impedance adapter E2697A (includes 500 MHz passive probe)
* Number of insertions supported: 20 cycles (50 cycles (typical))
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N5451A (requires N5425A) 9 GHz at 7 mm wire 5 GHz at 11 mm wire
E2677A 12 GHz, 0.27 pF, 50 kΩ 12 GHz, 0.44 pF, 25 kΩ
E2678A 12 GHz, 0.34 pF, 50 kΩ 12 GHz, 0.56 pF, 25 kΩ
E2679A N/A 6 GHz, 0.50 pF, 25 kΩ
Infiniium 90000A Series: Selection Guide
Superior signal integrity, deep application analysis, better insight
Recommended bandwidth and Infiniium 90000A Series support for popular bus standards
Serial data analysis (E2688A)
Jitter
1
analysis
Bus standard Bit rate
Recommended bandwidth
Ethernet 250 Mbs 2 GHz Yes Yes N/A Yes N5392A N5395B
USB 2.0 up to 480 Mbs 2 GHz Yes Yes N/A Yes N5416A E2649A
DDR1 up to 400 MTs 2 GHz Yes N/A N/A No U7233A No
DDR2 up to 800 MTs 4 GHz Yes N/A N/A No N5413A W2631A
DDR3 up to 1.6 GTs 6 GHz Yes N/A N/A No U7231A W2635A
SATA 1.5 Gbps 1.5 Gbps 6 GHz Yes Yes Yes Yes N5411A COMAX
SAS 150 1.5 Gbps 6 GHz Yes Yes Yes Yes N5412A N5421A
Fibre Channel 2.125 Gbps 4 GHz Yes Yes Yes Yes N5410A No
HDMI 1.3a/b up to 3.4 Gbps 8 GHz Yes Yes Yes Yes N5399A N1080A
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SW clock recovery
8b/10b decode
Mask testing
Compliance testing Test fixtures
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3
3
W2641A
®
PCI-SIG
PCMCIA.org
DisplayPort 1.1 2.7 Gbps 8 GHz Yes Yes Yes Yes U7232A
PCI EXPRESS I 2.5 Gbps 6 GHz Yes Yes Yes Yes N5393B
ExpressCard 2.5 Gbps 6 GHz Yes Yes Yes Yes N5393B
InfiniBand 2.5 Gbps 6 GHz Yes Yes Yes Yes No Fujikura
Advanced TCA 2.5 Gbps 6 GHz Yes Yes Yes Yes No No
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SATA 3 Gbps 3.0 Gbps 10 GHz Yes Yes Yes Yes N5411A
SAS 300 3.0 Gbps 10 GHz Yes Yes Yes Yes N5412A
COMAX
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N5421A
10G Ethernet 3.125 Gbps 8 GHz Yes Yes N/A Yes No No
XAUI 3.125 Gbps 8 GHz Yes Yes Yes Yes N5431A No
Serial Rapid IO up to 3.125 Gbps 8 GHz Yes Yes Yes Yes N5431A No
FireWire up to 3.2 Gbps 8 GHz Yes Yes N/A N/A Yes - QP Quantum Para.
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4
No
N4235A/36/38A
Fibre Channel 4.25 Gbps 10 GHz Yes Yes Yes Yes N5410A
FBD I up to 4.8 Gbps 12 GHz Yes Yes N/A Yes N5409A
PCI EXPRESS II 5.0 Gbps 13 GHz Yes Yes Yes Yes N5393B No
SATA 6 Gbps 6.0 Gbps 13 GHz Yes Yes Yes No No No
SAS 600 6.0 Gbps 13 GHz Yes Yes Yes No No No
Fibre Channel 8.5 Gbps 13 GHz Yes Yes Yes No No No
1 Recommended bandwidth is derived from a combination of data rate and edge speed 2 Jitter analysis solutions: EZJIT (E2681A), EZJIT Plus (N5400A), oscilloscope tools (E2690B) 3 Requires E2688A serial data analysis 4 Requires E2688A serial data analysis and N5400A EZJIT Plus jitter analysis
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Infiniium 90000A Series
Superior signal integrity, deep application analysis, better insight
40-GSa/s sample rate on each of four channels provides ultra-low noise
13 GHz full real-time bandwidth of the
oscilloscope simultaneously.
See your signal more clearly with a 12.1-inch XGA (1024 x 768)
high-resolution touch screen color display. Infiniium’s bright TFT display.
Identify anomalies easily with a 256-level intensity-graded or
color-graded-persistence display that
provides a three dimensional view of your signals.
Live indicator shows when the scope
is running a long operation.
Remote access through 10/100/1000
BaseT LAN interface with
Web-enabled connectivity using
ultra-responsive Ultra VNC.
GPIB over LAN provides remote
measurement. Optional Infiniium application remote program interface
allows application/compliance software automation. LXI class C compliant.
Capture your longest signal with
up to 25 ms data using 1 G point of acquisition at 40 GSa/s.
Removable hard disk drive option is
available for added data security.
Optional USB external DVD-RW drive
allows you to install your favorite third-party software conveniently and can be used to back up your critical measurement data.
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Install third-party software packages on Windows XP Pro operating system
such as Excel, LabVIEW, Agilent VEE, MATLAB®, anti-virus software, and more, to perform customized processing and automation of your oscilloscope or to make the scope compliant to the network environment of your company.
Infiniium Series oscilloscope: Award-winning Infiniium scopes have received ten industry awards to date, including EDN’s “Innovation of the Year” award (twice) and T&M World’s “Best in Test.” Agilent is committed to breaking new ground and providing tools that bring unique value to our customers.
Simply press the horizontal delay knob to set the delay value to zero. A zoom button provides quick access to two screen zoom mode.
10-MHz reference clock can be input
to or output from the scope to allow precise timebase synchronization with RF instruments or logic analyzers.
Dedicated single acquisition button provide better control to capture an unique event.
Customizable Multipurpose key gives you any five automated measurements with a push of a button. You can also configure this key to execute a script, print/save screen shots, save waveforms, or load a favorite setup.
Measure section including a toggling
marker button and a dedicated marker
knob provides quick access to your
marker control.
Quick access to fine/vernier control
by pressing the horizontal and vertical sensitivity knobs.
Starting with an 18-GHz, BNC-compatible connector, an ultra-low noise floor front end design using Faraday cage technology ensures high signal integrity in its signal path.
AutoProbe interface completely configures your scope for use with the InfiniiMax probing system and previous-generation Agilent active probes.
Increase your productivity with
a familiar Infiniium graphical user interface, like your favorite drag-and-drop measurement icons. Infiniium’s analog-like front panel has a full set of controls color coded to the waveforms and measurements, making your tasks simple.
Three front panel USB 2.0 host ports
will suite perfectly for your USB keyboard, mouse, and USB memory drive connection for saving setup files, data files, and screen shots.
Four more USB 2.0 host ports and a
USB 2.0 device port on the back panel.
Perfect for extra connectivity including an optical drive. A USB 2.0 device port lets you control the scope and transfer data via a USB 2.0 480-Mbpts connection.
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InfiniiMax II: The World’s best high-speed probing system just keeps getting better
InfiniiMax offers you the highest performance available for measuring
differential and single-ended signals, with flexible connectivity solutions for today’s high-density ICs and circuit boards.
InfiniiMax probes have fully characterized performance for all
of their various probe heads. This includes:
• Swept frequency response plot
• Common mode rejection versus frequency plot
• Impedance versus frequency plot
• Time-domain probe loading plot
• Time-domain probe tracking plot
One-year standard warranty on active
probes and a variety of Agilent support options to choose from.
Controlled impedance transmission lines in every probe head deliver full
performance versus the performance limitations introduced by traditional wire accessories.
Probe interface software allows you
to save the calibration information for up to 10 different probe heads per channel and will automatically retrieve calibration data for a probe amplifier as it is attached to the scope.
E2677A 12-GHz solder-in differential probe head can be attached to very-small-geometry
circuits for measuring both single-ended and differential signals. External mini-coaxial resistors facilitate wider span but have increased high-frequency response variation relative to N5381A.
E2679A 6-GHz extremely small single-ended, solder-in probe heads for probing even the
hardest-to-reach single-ended signals.
N5381A 13-GHz high-bandwidth solder-in differential probe head
provides maximum bandwidth and minimizes capacitive loading to ≤ 210 fF. Variable spacing from
0.2 to 3.3 mm (8 to 130 mills).
E2677A
E2679A
N5381A
N5425A
High-input impedance active probes
minimize loading, support differential measurements and DC offset, and can compensate for cable loss.
Probe calibration software delivers the
most accurate probe measurements and linear phase response and allows various probe combinations to be deskewed to the same reference time.
A flat frequency response over the
entire probe bandwidth eliminates the distortion and frequency-dependent loading effects that are present in probes that have an in-band resonance.
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N5425A 13-GHz high-bandwidth solder-in differential ZIF probe head and N5426A ZIF tip provides
maximum bandwidth with industry’s first lead-free solder-in probe solution in an economical replaceable tip form factor.
N5451A 9-GHz/5-GHz long-wire ZIF tip provides
high-bandwidth economical replaceable solder-in tip with extra reach (9 GHz with 7 mm and 5 GHz with 11 mm wire).
N5426A
N5451A
E2695A
E2695A 8-GHz differential SMA probe head
allows you to connect two SMA cables to make a differential measurement on a single scope channel.
Six different InfiniiMax probe amplifiers from 1.5 GHz to 13 GHz are available for matching your probing solution to your performance and budget requirements. The 1168/69A InfiniiMax II amplifiers offer the highest bandwidth and the lowest noise floors. The 1134/32/31/30A offer a more cost effective solution and wider dynamic range.
N5382A 13-GHz high-bandwidth differential browser
N5382A
provides maximum bandwidth for hand-held or probe
holder use. Variable spacing from 0.2 to 3.3 mm (8 to
130 mills).
E2675A 6-GHz differential browser is the best choice
for general-purpose trouble shooting of differential
or single-ended signals with z-axis compliance and variable spacing from 0.25 - 5.80 mm (10 - 230 mills).
E2675A
N5450A
N5450A InfiniiMax extreme temperature extension cable provides extra
reach into environmental chambers.
N5380A
E2676A 6-GHz single-ended browser is the best
choice for general-purpose probing of single-ended
E2676A
signals when small size of the probe head is the
primary consideration.
E2678A
E2678A 12-GHz differential socket probe head
can be used to measure either differential or
single-ended signals via a plug-on socket connection.
N5380A 13-GHz high-bandwidth differential SMA probe head
provides maximum bandwidth for SMA-fixtured differential pairs.
Probe performance plots available
The InfiniiMax II probe manuals contain an extensive set of performance plots (bandwidth, probe tracking, CMRR, step response, impedance) for various probe configurations. See the following Web site for this information
http://cp.literature.agilent.com/litweb/pdf/01169-97005.pdf
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Deep Application Analysis
InfiniiScan Plus: Industry’s first three-stage sequence trigger system
One of the keys to a “deep application analysis” is to have a superior triggering system that combines the stability of a hardware trigger and the flexibility of a software trigger. The InfiniiScan Plus trigger system provides the world’s first three-stage sequence trigger.*
Available hardware trigger selections for first stage:
• Edge
• Edge transition
• Edge then edge
• Glitch
• Pulse width
• Pattern/state
• Runt
• Setup and hold
• Timeout
• Video including HDTV trigger, (available only for first stage)
• Window
First stage: hardware trigger (Find event (A))
Delay and reset conditions
Second stage: hardware trigger (Find event (B))
Third stage: software trigger (InfiniiScan)
Available hardware trigger selections for second stage:
• Edge
• Edge transition
• Glitch
• Pulse width
• Pattern/state
• Runt
• Setup and hold
• Timeout
• Window
Available software trigger selection for third stage:
• Measurement
• Zone qualify
• Generic serial
• Non-monotonic edge
• Runt
InfiniiScan Plus trigger setup
InfiniiScan software trigger setup screen
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