Tektronix SG503 Specifications Sheet

Page 1
Tektronix,
Ρ.Ο.Box500
eaverton,
B
ο7
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MANUAL
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1974
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Page 3
SECTION
P
age
1
O
PER
ATINGINSTRUCTIONS
1-1
SECTION2
THEFOLLOWING
ONLY.TOAVOID
THAT
CONTAINEDINOPERATING
SECTION SECTION4
E
CTION5 CIRCU
S SE
CTION6
SECTION7
SE
CTION8
SE
CTION9
CHANG
3
EINFORM
SPECIFICATIONAND
PERFORMANCECHECK
WARNING
SERVICING
PER
SONA
INSTRUCTIONS A
LINJUR
Y,
DO
NOT
INSTRUCTIONS
AD
JUSTMENT
M
AINTENANC
IT OPTIONS REPL
ACEABLEELECTRICALP
DIAGRAMANDCIRCUITBOARDILLUSTRATION REPL
ACEA
EXPLODEDVIE
ATIO
N
EANDINTERFACINGINFORMATIO
DESCRIPTION
ARTS
BLE
MECHANICALPARTS
W
AND
RE
FORUSE
PERFORM
UNLE
2-1
BY
QUALIFIED
ANY
SERVICING
SS
YOUAREQUALIFIEDΤ0DO
3-1
N
4-1 5-1
6-1 7-1
8-1
9-1
OT
PER
HER
SO
NNEL
THAN
SO
.
REV
.
C,
OCT
1977
Page 4
F
ig.1-1.SG
SG
503
503Leveled SineWave
Generator
plug-in
.
REV,Β,
OCT
1977
Page 5
I
N
Descriptio
T
heSG
regulated,con into
α 50-ohmload.TheSG
u
sed bandwidt used
development.
N
from250kilohertzto250 range
Α
panelLEDreadoutisused
n
503LeveledSine-WaveGen
stant-amplitude
as an
oscilloscope
h supto
as α
signal
ine
overlappingranges
reserved
digital
250
source
for
counter
megahertz.The
for
α 50 k
withautomatic
U
versus
503
isprimarily
calibration
general
coverthe
megahertz,
ilohertz
for
reference
freque
N
eratorprovides
fre
quencyoutp
intendedtobe
device
for
SG
503can
electronics
fre
quen
wit
h an additional
frequency
rangi
ng andα
ncyind
measuring
also
design
ication.
ut
be
and
nd
.
front
Installation
α
guidesofthe
a
ndpress
connectingjack.
andRemoval
Tu
rn
thep
owermodule
in;otherwise, circuitry SG module
R
barriersont power
theSG503
AligntheSG
.Becauseofthe high
503,itis
beturned
eferto
Fig.1-2.Checktoseeth
module
circuit
selectedcompartment.Pushth
firmlytoseatthe
CAUTIO
off
d
amage
alsorecommended
he
interconnecting compartment
503chassis
may
off
before
boardedge
n
Sectio
N
beforein
wit
circuit
sertingthe plug-
occ
urto theplug-in
currentdrawnbythe
thatth
removingtheSG503
at theplastic
k
ofthe
jac
matc
hthe
cut-outs
connector
hthe
upper
board
.
emod
inthei
1--SG
e p
ower
selected
and
lower ule
n
in
503
.
n
i
ter-
REV
.C,OCT
1977
Fig.
1-2
.Plug-i
nin
stallatio
n
and
removal
.
Page 6
O
per
LED
Instructions-SG
ating
Display
T
hr
ee-
digitreadou
Indicates quency
FREQ
UEN
Selectsoutputfr
quencywithi siredfrequ
outpu
CYVARIA
nthe de-
encyran
t fre-
BLE
e-
ge
503
FREQUEN
CY
MHz
t
ι
A
MPL
ITUD
FREQUEN
V
ARIA
BLE
CY
MULTIPLIER
T
A
MPLITU D
MULTIPLIER
E
switchto un
atte
u
ate Outputamp PUTAMPLITUDEVOL
Ρ-Ρcontrolsetti
the
factorindicate
A
MPLITUD
PL
I
ER
E
ositionleve
allowch
n
uated oratten-
oiceο1
doutputamplitude
lit
ud
eisOU
ng times
d byth
E
MUL
switchp
TI-
n
r
.
T-
TS
e
OUTPUT
A
MPL
VOLTSΡ-Ρ
Determi
nest
to-
peak amplit
hepeak-
udeinto theattenuator(A T
UDE
MULTIPLIER)
ITUDE
MPL
FREQUEN
CY
R
A
N
G
E
(MHz)
Selects
f r
r
1D0
CALIBRATED
WITH
CA
250
ΡΝ
012-
INTO
UTPUT
O
0482
500
BLE
00
I-
equencyran
indicate
O
UTPU
BN termi nal. coaxial
on
f rontpanel
τεκτιιοηιχ
®SG
503
LEVELEDSINEWAVEGENER
2ο
=
5012
ATO
R
d
T
C
conn
cableas
t
he
d
ge
ecto
routpu
U
se prope
i
nd
esired
icate
as
t
r
d
1622-03
Fig.
1-3.SG
503
n
trols
and
conn
ectors
co
.
REV.Β
,
OCT
1977
Page 7
Operating
Instructions-SG
503
removeth
To
inthelower
d
isengagesandthe
P
ower three-digitLED(Light-E lighted. betweenthedeten
d
isplay)
thedesiredrange. allequipment
Overheati
temperature op
m
o
p nal thermal m tion.
ControlsandConnectors
calibrated thecontrols attemptingtouseit.PresstheOUTP
p
owertotheSG
Tur
.Resetthe
The
SG
eratingseveralpower
odule,
erating
temperature
cutoutinthe
odulein
R
efer to
Ifth
e
instrument
or
beyondα
flas
h α
unleveled outputamp
OPERATING
Int r
oductio
T
he
SG
h
ighqu
ality
oper
ate
as α
α 50-o hmload. acrosstheloa
N
umber
012-0482-00
equ
ipment equipment impedance
ohmterminationshou ial
cable
andtheequ
ty
pebetwee
b
eingtested
outputamp
e
SG
left
corner,
applicationtothe
nthe F
FREQ
Allow15to
before
ng
503isdesigned
from
esp
eciallyatlow output
close
tooth
may
struction
Fig.1-3.Eventh
an d
readyto use,thefun
and co nn
503
bandrange,the
blin
king
ρυΙΙont
503,
untilthe
SG
503
mitti REQUENCYRANGE(MHz) tpositionstotesttheLED's
UENCYRANGE(MHz)con
usingtheSG
0°Cto
su pp
erheat-producing
exceedsafe
powermod
manual
ectorsshoul
.
CAUTION
isoperatedatthe
indication,
litude
h
will
slide out.
SG
503isindicatedbyt
ng Diode)display
20 min
toop
+50'C
liesinαmulti-plug-in
ule
for
more
oug
hthe
front-paneldisplay
alertingthe condition
CONSID
n
503has b
coaxial
closely
under is
muchgreaterthan 50 ohms,anaccurate 50-
nthe 50-ohmterminatio
willproduce
litudeathigherfrequencies
eendesigned
cable(P
matc
SeeFig.1-4Α.
d
d
irectly
is
should be
testifthe
50 ohms.For
ipment.Teeconnectorsorwireofany
hed
b
e
ld
somevar
artNumber
systemwhen
The
relate
dtoitsimped connected input
eq u
ipment
connecte
e
release
interconnectingjack
utes
503
erateatan ambient
limits
.Refer tothe
ctions
d be reviewedbefore
c
and
d
n andthe equipmen
iatio
latchlocated
being
control
(888
t rolto
warmuptimefor
.
.However,when
power
voltages,orw
equipment,
andactuate α
complete
SG
503isfully
an d
UT
buttontoapply
extreme
userto
.
calibratedwit
012-0482-00)
terminated
absolute
d irectly
impedance
wit
h an
etweenthe
b
ninthe
.
hen
inter-
power
informa-
actionsof
limit
of,
may
an
N
S
h α
into
amplit
ude
ance.P
tothe
ofthe
input
coax-
calibrated
he
to
art
Coaxial cables
or sh
orterthanPartNumber
theoutputamp ap p
licable.Cablesthatare2feet
tha
n P
artNumber
variationsthatare
(respectively)when
amplitu
the range.Forexample;whenan peak-to-peakis
trol
i
toanexternaldo higherdo
b
co nsiderthetotal outputamp
Open-Circuit
greaterth minated circuit timesthe amplitudein
ade
b
oftheSG
pedanceofα 50-ohmcoaxialcable.The
tio
minatedendofthe cable
existinthe
Capacitive
affectthe bandwidth.Theequivalent 1-4Βand Fig. ch
i
b
is
b
may SwitchtheAMPLITUDEMULTIPLIER
p
may SG
S andtheload
t
amplitude(Χ switch) .
desat250
Optimumperformanceisobtainedwhe nthesetting
OUTPUT
to5.0
n
steadof0.5
Th
e
sine-waveou
locking
andsbecausethesteadystate
anges
npu
andwidth
usuallyspecified
ands
ositio
WR,α3-decibel
capacitor.Wh
When
t
heSG
an 50ohms,
output
conditions,th
Open-circuit
quate
formany
n keepstheoutput
Theinputcap
causedbyr
t
cap
acitance
Wh
en operatingthe
wit
h
flash, indicatinganun
n andifthedisplay
be
relatedtoan
503
and
of lesser
lit
flatness
ud
e
012-0482-00 as
muc
compared
megahertz
A
MPLITUD
desired,
A
MPL
an d
andΧ1
offset
lit
ude
503
coaxialcable.
Loads
1-4C
of
an
no
output
t
h
e
may
1positionoftheA
ITUDEMULTIPLIERswitc
.
tput
levelth
levels,
couple
en operatingthe
loadimpedanceand
.
Operatio
503isoperating
up
amplitude
e
actual
dicate
amplitude
applicationsint
reverse-terminatesthe ch
amplitu
eventh
acita
nceoftheeq
are
usefulin
eactive
i
n
creases,ba
oscilloscope
using
SG
attenuation,thefront-pan
extreme mismatc
Ifth
load
.
atte
nuator
im p
rovetheoperationat
quality
or cab
lesthatarelon
012-0482-00
specifications
h as 4ο/οlow
.
E con
trolisinthe1.0to5
outputamp
set
OUTPUT
from
theSG503
atdoes
t h
n
intoanimpedance
to
twicethe
can be
outp
ut
d bythefro
flatnessisnot
50-ohmoutputimp
de constantattheunter-
oughstanding
estimatingthe
loads.Noteth
n
dwidthd
wit
h αhighinput impeda
an eq
uivalent
503onthehigher
leveledoutput
flashingceases,the p
eSG503isop
inserted
MPLITUDEMULTIPLIER
canbeused,but
are no
longeror2
can
cause
tothe
litudeof0.5volt
A
MPLITUDE
maybe
not
exceed11
e outputthroug hαdo
SG
its
effectont
maximum
obtai
ned
.
amplitude
ntpanel
specified,
he lower
aracteristic
reverse
uipmentun
circuitsshownin
ecreases.T
25-ohmsource
controltotheΧ
h b
eratinginto
betwee
longer
feetshorter
amplitude
or2ο / οhig
calibrate
co n
htoΧ
applie
volt.At
503
always
muc
Und
eropen
willbetwo
controls
but
frequency
eda
termina-
waves
der
test
amplitude
at as
system
frequency
eldisplay
amplitude
roblem
etwee
n
α high
nthe outp
fulloutput
ger
he
ter-
nce
im-
may
will
Fig
he
nce
h
t
h d
of
.0
-
.1
d
h
­.
is
.
.
.
.1
e
ut
R
EV.Β,OCT
1977
Page 8
I
nstr
Operating
uctions---SG
503
(A)
Matched
50
Q
W----,a
500
AAN-S-----(
I
:~PN
I
PN
012-0482-00
012-0482-00
--
---------
-
FEEDTHROUGH
TERMINATION
50
Q
OSCILLOSCOPE
W
ITH50 INPUT IMPEDANCE
0
Oscilloscope
(B)
with
25
-AV\IV---
high
input
Vg%
cqj)
Q
impedance
ι
vv-\
VC
TV"
V
c
co-3dBcutoff
2xRC
frequency
(C)
Capacitive
load
F
ig.14.Equivalent
circuits
forSG503,50ohm
coaxial
cable
and
various
terminations
.
REV.E,
OCT
1977
Page 9
Section
2----SG
503
P
erformance
'The
electricalcharacteristics
SG
503has
between-i temper
ature
n
oted
.
TheSG
coaxial ReplaceableMechanicalParts
α 50-ohmload.
Fr
eq uen
cy
R
ange
been
20°Cand
503
cable
Char
Conditions
calibratedatanambient
+30°Candis
between
accessory
acteristics
calibrated
is
0°C
and
(See
are
validonlyift
temperature
operating
+50°C
foruse
Standard
list
250kHzto250MHz,plus
un
wit
section)
ambient
at
an
less otherwise
h α
furnis
Accessoriesin
terminatedin
E
LECTR
P
ICA
erformanceReq
CΙFΙCΑT
he
ofthe E t
hed
to
Table
LCHAR
he P
Supplemental man
h
c
2-1
ACTERISTICS
ui
rem
50 kHzrefere
Ι
Ν
Items
listedinth
lectricalCh
erformanceCheckinth
ual;they are
aracteristics
ents
nce
ePerformanceReq
aracteristics
I
n
formatio
either
forwhich no
n
column
explan
pp
Su
verifie
are
manual.Items
is
are not
atory
notes or
limits
are sp
lemental
uirements
d by
completi listedinthe
verifiedinthis
performance
ecified.
Information
column
ng
Accuracy
Am
p
R
Accuracy
litude
ange
F
latness
correctionsofTektronix
(
Peak
-to-Peak)
Within
-i-0.7ofone significant d
icatedfreque
5mVto5.5V
d
ecaderan
50-Ωload At 50kHz
3ο/οof 4ο/οonΧ.1
valid standards.NBS
dis
gesand terminated
.
reference
indicatedamplitudeonΧ1ran
range,
only
when
countofthe
played
digitfor thein-
ncy
.
peak
-to-pea
frequency;withi
and5ο/οonΧ.01range.
precision
uncertainties
k overth
ΝΟΤΕ
coaxial
least
ree
into
α
n
ge,
cableisused.Flatness
not
included
.
Accuracy onΧ1range and checkedtobewithi
2.Οο/οonΧ.1an
mustbesettowithin0.3ο/ο
dΧ.01ran
referenced
ges
toNBS
.
n
REV.Β,oc-Γ
197
7
Page 10
Sp
ecificatio
Flatness(Peak
AmplitudeMultiplier Setting:Χ1,Χ.1,Χ.01
AmplitudeMultiplier Setting:Χ1
AmplitudeMu Setting:X.1
H
armonicCon
nandPerformanceCheck
Characteristics
-to-Peak)
andX.01
tent
ltiplier
--SG
503
Table
2-1
ELE
CTRICA
ηΟ
F
rom
250 willnot at50kHz. tude
at50kHz. 50MHzto100MHzrange;
will at
50 willnot
--1
H
mental:Seco
down.Third
least40dBdown
vary
variationiswithin3ο/οoft
not
vary
50 kHz.
MHz
to
vary
.0%ofthe
armonic
LCHAR
Performance
kHzto50MHz
morethan1ο/οof
F
rom
100
moretha
100MHzrange;
morethan-f1.5%
valueat50kHz
su pp
ressionrelativetofunda-
nd h
armonicatleast
and
allhigherharmonics
.
ACTERISTICS
R
equirements
MHz
n 1 ο/οofthevalue
(cont)
output
amplitude
t
hevalue
250MHzamp
to
he value
output
output
and
.
amplitude
amplitude
35dB
at
li-
Supp
lementalIn
formation
Altitude
Operati
V
ibratio
n Operatingand operating
ng
Non-
E
NVIRONMEN
Τ
`Perfor
-40'C
To tem from 5000
W
op
from10to55to
sweep.Vibrate threemajoraxesat0
d
major Total
to
15,000
eraturedecrease
p
it
hthe
instrument
erating,
isplacement
resonance, or
time,
manceReq
4-75'C
.
maximum
feet
15000
to
vibration
10 Hzat1
15 minutesineachof
.Hold
75 minutes
Table
2-2
TA
LCHAR
d by
feet
.
completean
frequencyswept
.015
10 mi n
in
non
.
ACTERISTICS
uirements
operati
ng
1°C/1000
mi nuteper
inchtotal
utesatany
e,at55Hz
d
feet
t
he
.
pplemental
Su
Informatio
n
Shock
O
operating
2-2
p
erati
ng and
Non-
30
g's
1/2
sine,11ms
in
eachd
irection
α
totalof18 shocks
d
uration,3shock
along 3majoraxes,
.
for
s
R
SV.C,APR.
197
8
Page 11
Table
2-3
Specificatio
nand P
erformanceCheck
----SG
503
YSICAL
PH
r
C
haracte
Overall
N
Dimensions
H
eight
W
idt
h
Length
etWeight
(Instru
(measuredatmaximum
ment
Only)
Με4Ν
Introductio
Th
theSG503
manual.Ifthe instrumentfailstomeettherequirements
give
ninth
proced
be used acceptability ofperformance
n
is
procedure checks
thatap
pearinthe
isperforma
uresh
ouldbeperformed.Thisprocedurecan
by anin
cominginspection
istics
points)
C
CHECK
the
electricalcharacteristics
Specification
nce ch eck,thecalibration
.
sectionofthis
facility
also
todetermine
CHARACTERISTICS
Tolerancesthataresp
p
roced
ure
incl
u
de
testeq
of
TestEquipmen
The
testequipment
required mentcharacteristics verifytheperforma
Substitute requireme operating
to
nts. withi
5
.0
12.7cen
2.6inc
6.6cen
12.2i
applytothein
uipment
tRequired
listedin
erformth
p
equip
n
e performa
listed
nce
me
n t
must meet
All
testequipmentisassumedto
tolerance
i
nches
timeter
hes
timeter
nches
ecifie
din this
strument
error
arethemin
oftheequipment
.
under
.
Table
2-4,orequivalent,
nce check.Testequ
or
performance
testanddonot
imum
require
under
excee
dthe
check
ip-
d
test
state
be
is
to
.
d
The
iftheSG
+20°Cto
of
0°C
ambient
electricalch
503iscalibratedatan
-+30°Cand
to
-+50°C.F
temperature
aracteristicsinSection2arevali
operatedatanamb
orced
above
ambient
air
circulationisrequiredfor
4_40°
C
.
temperature
ient
temperature
d
only
of
Special facilitatetheprocedure Tektronix,Inc.andcanbeorderedthroughyour TektronixField
testdevices are
.Mostoft
Officeorrepresentative
usedwh
hese
ere are
available
.
necessary
to from local
REV.Β,OCT
197
7
2-3
Page 12
Specification
Description
Oscilloscope
Digital
Voltmeter
Calibration
Spectrum
Analyzer
and
Performance
Generator
Check.--SG
UST
503
OFTEST
EQUIPMENTREQUIREMENTS
Performance
Requirements
Banclv~icltlh,dcto
minimum 1
mV/div;sweep
accuracy,
I
Range,0to50V;accuracy,
Amplitude
deflection
within3%.
calibration,5mV
100
factor,
rate,
MHz
to5V;accuracy,±0.25%
into1MO;output,
square
waveatapproximately1kHz
Rοngo
.100kHzo
calibrated steps from
impedance, linear
display, within10%
σδ
00
MHz
levelsindecade
-45
dB
to
-35dB;
50D
;
accuracy,
TaW
;
.
e2-4
Used ure
toprovide
Application
throughout
proced-
display
TEKTRONIX
.
Oscilloscope
TEKTRONIX
Kηuhimoteι
ΤEKΤROΝ!XΤ
TEKTRONIX
Generator
Example
7603,
System
DM
501
"
K4503orΤKη504
PG
506
.'
7A13,71370
.
Digital
.
Calibration
.
;
TEKTRONIX Analyzer
71-12
Spectrum
.
Peak-to-Pealk
Detector
Coaxial cable
Patch
cord(2required)
Coaxial cable(2required)
Α
uonu
ο
tor,
2X
(2
Tee
required)
connector
.
Adapter
Termination
Resistor
Frequency 500
MHz;requires
input Impedance,
36
inches;connectors,
(precision
Βnε
18
inch
42
inches;connectors,
Impedance,
GR
to
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coaxial
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Tektronix Calibration
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.
REV.C,
APR.197
8
Page 13
P
reliminaryProcedure
1.E
nsure
that
all
2.Ensure
test
are
3.Install
applicable,
into
the
4.Connect
equipment equipment equipmenttowarm
Initial
Set the
AMPLITUDE FREQUENCY
FREQUENCY OUTPUT
that
suitably
the
install
power
toαsuitable on
Control
following
MULTIPLIER
V
AMPLITUDE
all
adaptedtothe
SG
module
the
and
Settings
ARIABLE
R
ANGE
power
switches
test
equipment
503
into
all
otherTM500-series
.
ment
equi
p
line
allowatleast20minutes
up
and
stabilize
controlsduring
SG
503
(MHz)
are
an
d
line
voltagetobe
thepower
under
voltage
.
warm-up
Χ
1
M
idrange
R
EF-.05
5
.0
t
he
test
source.T
off
.
SG
module, test
and
503
under
applied.
and
equipment
the
test
urn
for
the
time
:
if
all
Specification
PERF
TheSG503
ohm
termination
in errors of1ο/ο.Forexample, causes an
k
ilohertz
1.Check megahertz
α
.
Connect
the
calibration
the
-i­cable.Connectα42-inch the
time-base
b.Connect
SG
503)totheSG503
c.Connect
of
theprecision
the
50-ohm
comparator
RίVIANC
mustbeterminated fo
load
to
thetermination(1ohm)will
amplitude
.
Reference
.
a1k
generator,
inputofthe
unit
the
α
terminationtothe
.
andPerformance
E
r
all
determinepercentoferror.Α2ο/οerror
ilohertz,5volt
differential
external
precision
50-ohm
50-ohm
K
CHEC
ΝΟΤΕ
checks
r
erro
Amplitude
throughαbnc
comparator,
cable
trigger
50-ohm
OUTPUT
terminationtothe
cable;connect
PROCEDURE
into
.Measure
cause
α 51-ohm
t
h
at
is
Accuracy
square-wave
from
the
input
cable
connector
---
input
Check---SG
accurate
an
t
h
termination
1
ο/οh
tee
connector,
using α
tee
connector
.
(supplie
.
remaining
the
thedifferential
of
50-
e 50-oh
amplitude
ighat
at0.05
signal
42-inch
d
other
end
503
m
50
from
to to
with
end
of
Intensity,Focus
V
olts/Div
V
ariable
+
Input
--Input B
andwidth
Time/Div
V
ariable
Triggering
-t
-Slope M Coupling Source
P
osition
M
agnifier
Limit
ode
Oscilloscope
Differential
TimeBase
Set
for
well-defined
and
normal
Comparator
.1
V
fully
clockwise ac ac 5
MHz
Plug-in
.2
ms
(cal
in)
selected
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hfr
ac
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Ext Set so
trace
sideofgraticule
Χ
1
trace
brightness
startsatleft
.
(cal)
.
d.Set
display;α
e.Check---that
are divisions.Disregard
the
crtdisplay
aligned as
time-base
illustratedinFig.
triggering
similartoF
cornersofthe
the
waveform
ig.2-1
tilt
controls
idealized
2-1,
.
for
obtained
is
waveform
within1.5
α
stable
.
vertical
REV
.
Β,OCT
197
ig
.
.Representationofcomplex
F
2-1
volt
reference
7
amplitudeat0
.05
MHz,
waveform
properly
(idealized)
set
.
with
2-5
5
Page 14
ecificationandPerfor
S
p
man
ce
Check
--SG
503
f.Setthe
setthe
square-wave
SG
503OUTPUTA
calibrationgenerator
signal
.
MPLITUDEcontrolto0.5;
for
α 0
.5 volt,1k
g.Setthedifferential-comparatordeflection
10mV
/div
.
h
.
C
heck
---thatthewaveformissimilarasillustrate
Fig.2-2,
i .
Disco
(within1.5
nnect
all
vertical
ca b
les
divisions)
.
.
ilohertz
factor
for
din
Fig.2-3.Dis
It
willbenecessary input reasonable
t
h
e
baseline
attenuation
displayonscreen,
p
layof100MHz
to
change
(sensitivity)tomaintain a
noise
level
signaland harmo
NO
Ϊ'Ε
the
withharmonics
and
within
n
ics
.
spectrumanalyzer
above
t
h
e
gratίcule
area
.
Fig.
2-2
.
r
eferenceamp
Displayofcomplex
litudeof0
2.CheckHarmon
α.ConnecttheSG
input,
usingt
heprecision
SG
503)
.
b.SettheSG
and
theAMPLITU
n
p
ositio
c.SettheSG
t
he
to
100-250range.
d.P
ositio
graticule See
Fig.2-3
.
line
503OUTPUTAMPLITUDEcontrol
503FREQ
nthefundamental
wit
hth
for
refere
.05
MHz,properly
icSupp
503
DE
MULTIPL
e
spectrum
n
ce
waveform
ression
outputtot h
50-ohmcable
IER
UEN
CYRANGE(MHz)
analyzer
.
(idealized)
set
.
andLeveling
espectru
(suppliedwit
switc
htot
display
to
position
with0.5volt
manalyz
er
h
to5.5
heΧ
1
switch
thetop
con
trol
to
ranges,
45 dis
.
e.SlowlyadjusttheSG
control
distance tal thetopsofthe 4 Span/Div
d
over
itsentirerangeand checkthatt
(suppression)
and
seco
n
dharmonic
remaining
.0divisio
n
s.(Adjustthesp
control
isplayonscreen.)
f.Setthe
t h
e 50-100
g
.Repeat
SG
503FREQUENCYRANGE(MHz)
range
part
eofthis
usingTable
decibels
p
lay
All mi
ηί
associated Check
blink
FREQ
over
down
.)
coil
adjustments
mum
harmonic
ran
ge
th
t
at
h
e output
if
unleveledcondition
UEN
CYVAR
its
associate
503FREQUEN
CY
betweenthetopofthefun
displayisat
h
armonics
ectrum
as
necessarytomain
See
Fig.2-3
least3.5
are
separatedatleast
analyzerFreque
tai
.
nthe h
.
stepforthe
2-5asreference.(Supp
remaining
ressionlimit
correspondsto4.5divisions
ΝΟΤΕ
h
ave
been
a
dj
usted
amplitude
(worst
IA
BLE
d
f
r
eque
remains
at
t
h
e h
caseharmonic
levele
occurs)
controlisslowly
n
cy
range
.
ighendoft
conditions)
d
(display
as
t
h
e
VAR
IA
BLE
h
e
vertical
damen-
divisio
ncy
armonic
switc
frequency
on
the
fo
r
he
.
will
SG
503
rotate
d
n
s
;
h
of
2-6
REV.Α
,APR.197
8
Page 15
2-5
Table
SG
503
FREQUENCY
(RANGE
(MHz)
100-250
_
SG
FREQUENCY
V
ARIABLE Typical Count
(Frequency
97
.5-260
__
503__
Displayed
50-100 25-50
10-25
5-10
2
.5-5
1-2
.5
.25-
.5
_
R
EF~
.05
'The
minimum
vary
slightly
h
.
3.Check R
egulation)
α.Set
R
ANGE
AMPLITUDE
b.Connect
voltmeter
female-to-GRadapterto
b
nc
detector connect
floating correct voltmeter
c.Slowly
V
OLTSΡ-Ρcontrol
indicatesχ_
and
b
etween
Disconnect
F
the
SG
(MHz)
MULTIPLIER
α 2.4megohm,5ο/ο
floating
.Use
two
the outputofthepeak-to-peak
input
terminalsonthe
polarity,
the20voltsdorange
to
adjust
.000.Output
.240-_
.5_20
_
.
.,
Ο
49-
.051
maximum
the
latness
503
switchtoREF
displayed
instruments
cable
.
from
countoneach
the
(Peak-to-Peak
controlsasfollows:FREQUENCY
-
switchtoΧ1.
resistor
input terminals
.
the
inputofthe
Connect
bnctobanana-plug-jack
digital
HI to+and
LO
.
the
SG
503
OUTPUT
until
the
digital
amplitude from shouldbeabout1.1to1.2volts;this reference
settingat.050
megahertz
Typical H
Suppression
(2nd
h
igher
relative
fund
>,40dBdown
40
,>
_-
>40 ,>45dBdown
>-45
_>45 >45
_>45
_>45
__._._~45
spectrum
.05
position,
across
detectortothe
voltmeter
Set the d
to-.
voltmeter
establishes
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armonic
and
all
harmonics,
to
amental)
dBdown dB
dowc
dBdown dBdown dB
down
dBdown dBdown
-
dBdown-._~-
range
will
analyzer
A
m
plitude
andthe
the
digital
theSG503
peak-to-peak
patch
cords
maintain
;
igital
AMPLITUDE
display
the
SG
503
α Ο.Οο/ο
..._
~
via
to megahertz.The must
tionfactor
readingof- χ -
to+0.8
resultsinα
._
:
-_
.
100 megahertz.The
thisdeviation
.
to megahertz.The thisdeviation step
output theSG503 cable
p
artcof
of
to
the check SG this
pecification
S
e.Check-the 50 megahertz,
flatnessdeviation
must
total
includethe
ο/ο
deviation
f.Check--the
megahertz,
digital
ofthepeak-to-pea
.008
voltonthe d
Applyingαcorrection
.
p
ercentage
total
flatnessdeviation
must
same
reading as
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totalpercentagedeviation
specification
andΧ.01
positions
g.Check----the
250
megahertz,
when
A
MPL
.
flatness
mustbewithin3ο/οofthe
same
reading asdescribed
.
h
.
checkthe
To
from
theSG503,
flatnessdeviationatαhigher
andthepeak-to-peak
this
steptoobtain
about4.7
i
.After
digital
volts
outp
obtaining
the
voltmeter,repeatpartseandfof
flatnessdeviation
503.Tolerance step
.
j.Disconnect
limits
all
cables
and
Performance
within
be
percentage
voltmeter
k
igital
1 ο/
reading
d
etector
voltmeterisequivalent
Check-SG
from0.25
οofthe
deviation
andthe
.For
megahertz
valueat.050
calculation
factorof-0.3ο/
deviationof40.5ο/ο
from50megahertz
be
within1ο/οofthe valueat.050
calculation
describedinpart
mustbeconsidered
eofthis
ΝΟΤΕ
ensuresflatness
theSG503
ITU
D
E
deviation
operatingattheX.
is
MULTIPL
ER
I
from100
megahertz
valueat.050
calculation
insert
mustbeconsidered
in
parteandfof this
Χ
attenuators
two
2
detector
.0%
another0
from
ut
newΟ.Οο/ο
theSG503
reference
reference
.
indication
this
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for
about4.7
are
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same
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output
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SG
503
.
calibra
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step
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.Repeat
reading
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to
for
.
1
h
for
on
to
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of
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.
Slowly
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,APR.1978
adjust
its
entire
FREQUENCY
theSG503
rangeateach
FREQUENCY
the
of
R
ANGE
V
frequency
(MHz)
switch
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This
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theSG503Leveled
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Sine
erformance
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W
ave
Check
Generator
procedure
.
of
2-7
Page 16
Page 17
Sectio
n
3-SG
503
Int roduction
hisadjustment
T
SG
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ment meetthePerforma
Characteristics Per
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Completionofalladj
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requireme
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theinstrument
at
ntsliste
ensure
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nceReq
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Page 18
Adjustment--SG
Description
503
LIST
OF
P
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R
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Table
3-1 (cont)
TEST
EQUIPMENTREQUIREMEN
Application
TS
E
xample
Peak-to-Peak Detector
Autotran ac
Coaxial
P
atc
Coaxial
Attenuator,2Χ (2
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Ada Terminatio
sformer
voltmeter
cable
h cord
cable
required)
connector
p
ter
wit
(2 required)
(2 required)
n
F
requencyran
500
MHz;requires1.2Vρ-ρ
input
voltage
h
Capableofsu pplyinganou put voltage
120
ac
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pper
limit
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36
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Tektronix CalibrationFixture
GeneralRadioW10MTR3 V
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TektronixPartNo.
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(handle)
sert)
REV.C,
-----------
OCT
197
.
-
7
Page 19
Set
Pr
eparation
α
.Removethe
gainaccesstothe
Pullthe
theinstrument(thecoversnaps
compartment,orifapprop
p
app variable
the off
SG
source
minutes
I
n
AMPLITUDEMULTIPLIER
FREQUENCYVARIA FREQUENCYRANGE(MHz)REF-.05
O
Intensity,Focus
V
V
+Inpu
-Input
B
rear
b
. InstalltheSG
owermod
c.Setthepower
lied
(seepowermod
autotransformer;connectthe
line
voltage
.
d
.
Installthe
into
503
e.Connect
.
f.'Turn
forthe equip
itial
Control
Setthe
TAMPL
UTPU
olts/div ariable
t
an
dwidth L
leftand
en doftheside
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source
TM
thepowermod
all
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on
all
Settings
followingcontrols
ITUDE
Differential
imit
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component
cover
503
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module
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menttowarm
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and
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503
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1
Mid
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5
.0
pe
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.1
V
fully
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MHz
warm-up
well-defined
ormal
the
of
SG
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circuit
boards
fromthe
ower
allowatleast
.
extender
switchis
cludingth
stabilize
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ness
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:
trace
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e
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e
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.
.
.
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ariable
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ode
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ositio
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ag n
ifier
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V V
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cy
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reeRun
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TheSG503
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e
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.
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e
rror
rors of
ilohertz
be
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in
termination(1ohm)
ses an
.
.2
ms
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ac hfre E
xt
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Χ
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Analyzer
selected 0000
midrange
selecte selected
selected
midrange
-i-
50
(on
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L
CA SPECT
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ccw
kH
30 on
(up)
100
MHz Cal midrange
PROCEDUR
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z
selected
MHz
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startsatleft
.Measure
percent
will
r
t
hatis1ο
503
.
50-
of
cause
/ο
Page 20
Adjustment---SG
503
σ
υ
υ
υc
T
υσυο
E
+5.2ν
ST
POINT
-22
V
T
EST
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=
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R
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_
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3
01
1.Adjust-α
α.Connect
-22Volt the
pointontheMain Fig.
3-1 for
voltage
b.Check-for
millivolts
volts
low
r
eading
the
.
c.Adjust---
.
See
d.Adjust
---22
Fig.3-1 foradjustment
the
autotransformer
limittothehigh
should not
autotransformertothe
e.Disconnect
Fig.3-1
Power
digital
circuit
testpoint
α
meter
V
adj,R694,
Supply
voltmeter
board,
location
reading
forαmeterreadingof---22
limitasindicatedin
vary
more
than
nominal
the d
igital
voltmeter
.Locationoftestpoints,L100,
between
and
chassis
the
--22Vtest
ground.See
.
of --22
location
output voltage
±-50
line
volts,
.
from
Table
3-2
millivolts
voltage
setting
+50
.Meter
.Return
.
the
.
and--β2volt
adjustment
.
Table
P
OWER
Line
M
ODULE
UNIVERSAL
R
egulatingRanges
Selector
Block
Position110-VoltsNominal
L
Μ
90Vacto110 99Vacto121Vac
108Vacto132Vac
Line F
use
Data
2.Check
α.Connect
point
on theMain
Fig.
3-1
b.Check--for
for
+5.2V
voltage
1.6Α
slow-blow
olt
Supply
thedigital
circuit
test
meter
voltmeter
board,
point
readingof-+5.0to+5.4
3-2
T
RANSFOR
220-VoltsNominal
Vac
180Vacto220 198Vacto242Vac 216Vact_0264Vac
0.8A.slow-blow_.-
betweenthe+5.2Vtest
andchassis
location
.
M
ER
V
ac
ground.See
volts
.
-
.
_
Page 21
A
dju
stment-SG
503
Fig.
3-2.L
c.Disconnectth
3.Adjust.5VΡ-Ρand5VΡ
α.Connectα1kilohertz,5voltsq
t
hecalibration +inputofth cable.Connectα42-inchcable thetime-base
b.Connecttheprecision50-ohmcable(su
SG
503)tothe
ε
.Conn
ectα50-ohmterminationtothe remainingen
ofthe
precision the50-ohm comparator
d
.
display;α c
.
Setthetime-b
r tdisplaysim
edigital
generator,throug h α
edifferen
external
SG
503OUTPUTconnecto
50-ohm
terminationtothe-
ase
voltmete
tial
compar
trigger
cable;connecttheotherendof
triggeringcontrols ilartoFig.3-3isobtained
r
Amplitude
uare-wave
teeconn
ator,
fromthe
input
.
inputofthedifferential
ocatio
.
n
signalfrom
ector,tot
using α
tee
conn
pplie
r
.
forαstable
ofL143,0.5
Set
he 42-inch ectorto
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h
d
d
.
V Ρ
-
a
nd5VΡ-ΡAmp
P,
f.A
dju
st-5.0Ρ-ΡAmp
oftheid
3-3.SeeFig.3-2
set square-wave
10mV/div
Fig.
of 3-3.See
ealizedwaveformarealig
g.Set
theSG503
the
calibratio
h
.
Setthedifferentialcomp
.
i .Check-thatthewaveformissimilarasillustrate
3-3
.
j.A
dju
st-0.5VΡ-ΡAmplitude
t
hei
d
ealize
Fig.
lit
ude
foradj
OUTPU
ngenerato
.
signal
waveform
d
3-2
foradjustment
Set
.
litude
Set,R255,sot
ned as
illustratedin Fig.
ustment
location.
TA
MPL
ITUDE
rforα0.5volt,1k
aratordeflectionfactorfo
Set,R255,sothecorners
alig
n
are
locatio
illustratedinFig
ed as
n
.
he corners
con
trolto0.5;
ilohertz
r
din
.
e.C
are
alig
tilt
.
REV.Α
heck-thatthecornersoftheid
ned as
,APR.1978
illustratedinFig.3-3.Disregardwaveform
ealizedwaveform
k.Interaction-rep cornersoftheidealized voltand5.0 volt settings
eatpartsethroughjofthis
waveformare
.
alig
nedatt he0
step
un
3-
til
.5
5
Page 22
A
dj
ustment---SG
4
.
MH
andtheAMPLITU position
.050
square-wave
are n
Fig.3-3
k
Chec
z
α.SettheSG503
.
b.Setthecalibration
ε
.Ch
Am
plitudeMultiplier
.
Note
thattheFR
output
eck
---thatthe corners
ot
separate
for
d bymorethan1.5vertical
waveformillustration
503
OUTPUT
DE
signal
AMPLITUDE
MUL
TIPLIER
EQUEN
generator
.
of
Accuracy
switchto
CY
MHzdisplay
for
α0.5
theid
.
controlto5
volt,
ealized
divisions.
at 0
t heΧ
rea
1 k
ilohertz
waveform
.05
See
ds
.0 .1
b.SettheSG503FREQUEN
tothe
100-250
control
c.P
ositio graticule SeeFig.3-5
.
d
P
ositio
wit
hth
e sp
Fig.
3-5
ra
nge;adjustthe FREQUEN
for
αdisplay
nthe 0Hz
line
wit
hthe sp
for
reference
nthe
fundamentaltothe
ectrumanalyzer
for
refere
nce
of
.
CYRANGE(MHz)
100
megahertz
marker
ectruman
.
d
alyzerp
verticalposition
CYVARIABLE
.
isplaytothe
ositio
top
graticuleline
control
switc
center
n control
.
See
h
.
Fig.
3-3.Displayofcomplex
theamplitude
d
.
SettheSG
t
heΧ
.01
A
MPL
e.Set the
k
ilohertz square-wave
set
contr
503AMPLITUDEMUL
position.Donotdisturbth
IT
UDE
co n
calibrationgenerator
waveform
olsareproperlyadj
trol
setting.
output
signal
(idealized)
ustedat0
TIP
e
SG
forα50
.
obtai
n
edwhen
.05
MHz
L
IER
switchto
503OUTPU
millivolt,
e.Slowlyadj
con
trol
overthe0.5
a
nd c heck
betwee
nthetopofthefundame secondharmonic forharmonic
It
willbenecessarytoch input attenuation reasonabledisplay thebaseline
f.Adjust---CurrentAdj,R175,
vertical andtheto
.
ofthisstep.
3-5for
T
ment sep secondharmonicisat
1
remainin
reference
g
.Rep
ofR175
aration
sep
gharmonics
usttheSG
voltto5.5voltrangein
foratleast
display
refere
nce
noise
leveland
aration
poft
SeeFig
eatpartseandfofthis
betwee
betwee
h
e
secon
.
.
resultsin
nthe
3-4 foradju
least3.5division, aresep
503
3.5divisionvertical (35
decibels
.
ΝΟΤΕ
angethesp
(sensitivity)tomaintain
on
screen,
withinthegraticule
nthetopofthe
d h
armonicdisplay
acrt
displaythatsh
top
of
aratedat
OUTPUTAMPL
both
n
tal
andthe topoft
d
n).
ow
ectrum
withhar
stment
monics
foratleast
fundamental
.Rep
location,and
ste
pun
tilfin
owsthe
the
fundamentaland andt
h
least4.0division.
ITUD
directio
separation
SeeFig.3-5
analyzer
a
above
area
.
3
.5
divisio
eat
part
Fig
aladj
ust-
vertical
etopsofth
n he
E
s
n e
.
e
f.Setthedifferentialcomp
millivolt/division
g.C
heck
arenotsep
Fig.
3-3
for
h
.
Disco
5.Adj
i
SG
3-6
ust
α.ConnecttheSG
nput,usingtheprecision
503)
.
.
----thatthe
arate
d bymorethan
waveform
nnect
all
cablesand
OutputBuffer
503
arator
deflectionfactorfor
corn
ersoftheidealizedwaveform
1
.5
verticaldivisions.
illustration.
termination.
Current
output
totheSpectrum
50-ohmcable
(supp
Analyzer
liedwit
See
hth
1
50-100position; control
6.Check/AdjustHarmonic
e
a
ndtheAMPL
p
osition
h
.
Setth
for
i .Re
p
eatparts
α.Setthe
.
e F
REQUEN
αdisplay
SG
ITUDE
CY
RA
NG
E
adjusttheFREQUEN
of
100
megahertz.
dthroughgofthis
Su
p
pression
503OUTPUTAMPLITUDEco ntrolto5.5
MULTIPLIER
switc
(MHz)
CYVARIA
step
.
switchtotheΧ1
REV.Α,APR.1978
h
tothe
BLE
Page 23
NO
ΤΕ
A
djustment-SG
503
Fig.
3-4.L
ocation
ofR175
Current
Set
adjustment
Adjustmentο1 sectionsisnotrecomme
pr
oven
f r
eque
n
as
listedinTable morethanmarginaldeviations harmonic harmonic typicalfrequency
possible
before
proceedingfurther.
c.P
osition
withthe
Fig.
3-5
spectrum
for
Interactio
.
occur
with decreasingthesecon increase attemptshouldbemadetoadjust
i
d
eal
harmonicdisplay
cente
r f requ
achieve over
-lapping
any
coil
associated
nd
ed
unlessitis
that
theSG
cyand
503
harmonic
3-1.No
doesnot suppression coil
shouldbe adjustedfo
in
suppression.Thegeneration
amplitudesorlar
r a
ngelistedinTable 3-1
circuit
faults,
t
he
fundamentaltothe topgraticule
analyzer
reference
n
.
oftheharmonic
adjustment
the
amplitudeofthe
gedeviationsfromthe
whichmust
vertical
NO
ΤΕ
amplitudedisplay
of
any
coil.Forexample,
d
harmonic
third
(downwardslo
ency);instead,
supp
r
essionrequirements
r
ange
.
coiladjustments
with
the
oscillator
definitely
m
eet
the
requirements
frequency
range
of
indicate
be correcte
position
control.See
amplitude
harmonic.No
coilstoobtain
pe
f
r
ove
r theentir
typical
large
will will
an
omthe
sh
o
uld
r
or
d
line
e
to
b.Set
the
Fig.
Displayof100
3-5
.
theSG503
100-250range
MHz
FREQUENCY .
signal
R
ANGE
and
harmonics
(MHz)
switch
Slowly
d
.
control
d
istance
tal
and andthe topsofthe least4.0division.(Adjust
span/div displayonscreen
e.Adjust-1-143,
suppression
.
SeeFig.3-2
f.Set the
to
the
adjust
theSG503
over
its
entire
range
(suppression)betweenthe
second
harmonicdisplayisat
remainingharmonics
the
controlasn
ecessarytomaintainthe h
.)
(physically
requirementasgiven
for
a
djustment
SG
503
FREQUENCY
50-100range
.
FREQUENCY
andcheckthat the
topofthe
least3.5
are separated
spectrumanalyzer
moving
location
in
R
part
.
ANGE
coil),tom
dofthis
(MHz)
VARIABLE
vertical
fundamen-
division,
frequency
armonic
eet
the
step
switch
at
.
REV.Α
,APR.1978
3-7
Page 24
t-SG
Adjustmen
g.Rep
eat
r
anges,
45 display.)SeeFig.3-6
usingTab
decibeldown
503
partdofthisstep
le
correspondsto4.5divisionsonthe
foradj
refere
ΝΟΤΕ
forth
e
nce.(Suppr
ustment
r
emainingfrequen
essionlimitof
locationof
coils
cy
.
All
coiladju harmonic ciatedr
Checkthat blinkifunleveled FREQUEN
r
ove
FREQUEN
RANGE
stmentsshouldbead
amplitude
(worst
ange
th
e output
CY
VA
its
associated
SG
503
CY
(MHz)
100-250
50-100 25-50
10-25 9
5-10
2
.5-5
1-2
.5
.5-1
.25-
.5
REF~
.05
stedforminimum
ju
t
hehighendofth
at
case
harmonic
remainsleveled(display
condition
RIABLEcontrolisslowly
frequencyrange
occurs)astheSG503
FREQUEN
Typical
Count (Frequency
conditions)
.
SG
503
CYVARIABLE
Displaye
R
ange)'
97
.5-260
41
.0-109
23
.7-52
.5
.09-27
.3
4
.70-11
.1
2
.30-5
.50
.950-2
.55
.480-1
.05
.240-
.520
.049-
.051
e asso-
will
r
otate
d
.
d
Table
3-3
TypicalHarmonicSuppr
(2ndandallhig
h
armonics,relative
fundame >40dBdown
>40 >40 >45dB ~_>45
>45 >45dB >45dBdown >45dBdown >45
n
dBdow dBdow
dow
dBdow dBdow
dow
dBdown
Fig.
her
tal)'
n n
n n n n
3-6.L
ession
to
ocatio
oscillatorcoils
n ο
1
L
143,aircor
L
100,
slugtun
L
110,
slug
L
112,
slug
L
114,slugtun
L
116,
slugtune
L
118,pot
L
120,
pot
L
122,
pot
L
124,pot
SG
A
503
dju
core, core, core, core,
stme
e
ed tuned tuned
ed
.
Co
n
d
fixed fixed fixe fixe
i l
t
d d
'T
heminimumand
"Seco
nd harmon
h
.
Disconnectthecablefromthe sp
7
.Check F
R
egulation)
α.SettheSG
R
AN
GE(MHz)
A
MPLITUDEMULTIPLIER
b.Connect voltmeterfloatinginput terminals.Con bncfemale-to-GRadap
detector.Use co
nnecttheoutputofthepeak
floatinginputterminalsonthedigital cor
r
ectpola
voltmete
r
rtot
maximumdisplaye
icminimumis35dBdown;typ
latness(Peak
503
controlsasfollows:FREQUEN
switchto
α 2.4mego
twobnctobanana-p
ity,
HI
h
e 20
hm, 5ο/οresistoracr
tertothe
to+andLOto-.
voltsdo
-to-Pea
-
REF
switc
.05position,andth
htoΧ1.
inputofthe
lug-jackp
-to-peakdetectortothe
.
range
d count
on eachran
ically38dB down
ectrumanalyzer
k
Amplitu
ossthedigital
necttheSG
voltmeter;maintai
Setthedigital
503
peak-to-pea
atchcords
de
CY
via
to
ge
vary
will
.
e
k
n
slightlybetwee
.
c.Slowlyadj
VOLTSΡ-Ρ indicates±.000.Outputamp
shouldbe
reference
d.Slowly a
co ntrolove
p
ositionsofthe
e.C to50megahertz,mu megahertz.Thetotal mustincl tionfactorof
r
dingof+
ea
to+0.8 resultsinαtotalpercentage
control
about1.1to1.2volts;this
settingat
dju
r
itsentirerangeateachofthefrequencyran
FREQUEN
heck-theflatness
udethedigital
t
h
e
.008
/
οdeviation.App
ο
nInstruments.
ustthe
st
voltont
SG
503OUT
n
tilth
u
.050
t
h
e
stbe
peak-to-
edigital
litudefromthe
megahertz
503
SG
percentagedeviation
voltmeterreadingandthecalibra-
FREQUEN
CYRANGE(MHz)
deviatio
within1ο/οofthevalueat.050
ea
k
p
d
etector
hedigital lying αcorr
deviationof+0.5
TAMPLITUD
PU
voltmeterdisplay
establishes
.
nfrom0.25megahertz
.For
voltmeterisequivalent
ect
factorof-0.3ο/ο
SG
α Ο.Οο
CYVARIA
switch
calcuation
example,
ο/ο
.
E
503
/ο
BLE
ge
.
α
3-
8
REVΒ,SEPT1978
Page 25
f.Check---t
100
megahertz,
m
egahertz
deviatio
this
flatnessdeviationfrom50megahertz to
he
must
be
within1
Thesame
.
n reading asdescribed
calculation
ΝΟΤΕ
ο/οofthe
mustbeco
inparteofthisstep.
at
value
n
sideredfor
.050
h
.
To
checkthe
output
betwee
R
readingforapp
SG
epeat p
503
fromtheSG
ntheSG503
artcofthisstepto
.
flatnessdeviationat
503,in
cable and
roximately
sert
t
hepea
obtain
4.7volts
A
dj
ustment---SG
h
igher
α
2Χattenuators
two
k-to-peakd
anotherΟ.Οο/οreference
output
503
voltage
etector
fromthe
.
Α1ο/ο performance
operating
MULTIPLIER
g.C
heck
to
250
mega
h
ertz.Thesame
mega
deviation
this
p
total
attheΧ.1
---t h
ertz,
reading as
ercentage
requirement
switch
he
flatnessdeviationfrom
mustbewithin3ο/ο
deviation
h
w
andΧ
positions
calculationm
described
ensures
entheSG
.01
A
.
t
he valueat.050
of
ust
be
np
arteofthisstep.
i
flatness
503
is
MPLITUDE
megahertz
100
consideredfor
i .AfterobtainingthenewΟ.Οο/οrefere
t
he d
igital
voltmeter,rep ch eckflat fromtheSG e andfofthisstep
SG
nessdeviationforapp
503.Tolerance
j.Disconnect
Thiscompletesthe
503LeveledSin
all
eatpartseandfofthisstepto
roximately4.7
limits
.
cables
fromtheSG503
Adj
ustmentprocedure
eWaveGen
erator.
nce
arethesame
indication
voltsou
in
parts
as
.
ofthe
on
tput
REV.Α,APR.1978
3-
9
Page 26
P
reventiveMainte
Th
ere are
p
roceduresthatapplytothe
module maintenance
CorrectiveMaintenance
general tions
Syste
p
ower
troubleshooting
p
rocedures,parts
edtouseαsuctionty replacingparts
replacing
(Q190)
OscillatorMaintenance
dentoftheleveling Q300and the
instruction
R
efertothepower
corrective
.
mMaintenance
System
In
The
socketpinsforthe
maintenance
module
certai
n areasinthisinstrument,itisnot
oscillator coilsortheOutputBufferAmplifier
.
oscillator
connectingα
nan
no
sp
manual
proceduresand
maintenance
man
ual; i.e.,
aids,parts
orderinginformation,
pedesoldering
.
Use
α
solderi
sectio
ns canbecheck
circuitry
collector
ce ecial
preventive
SG
503.R
for
general
instructions
d
ule
mo
procedures
500-ohmpoten
instructionmanual
proceduresandin
are providedint
preventive
removal
ng wickwhenremoving
(feed
and
w
tool
back
loop)byremoving
tiometer
and
emitter
maintenan
efer tothe
.
etc
henrepairi
edoutindepen
power
preventive
struc-
mai
ntenance,
replacement
.
recommend-
ng
between
.
ce
for
he
or or
R
eplacing
The
contain
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fumes and of instrument
TheOutputBuffer
canbereplacedwit
B
uffer
and leadsofthe
n
oteofthepositionofthe Corning4 transistor
Use
compoundonthe Orientthe Seatthe onthe
maximum
-
and1/2inch
i
n
stallatio
tra
n
sisto
of
solderwhichmay
Output
ceramic
BERYL
Oxide
orheating
or
fine
subsequent
any
hazard.Nohazardis
operationormaintenance
Amplifier
removing α 5/16
new
siliconecompoundont and
α
very
small
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mounting
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uefor
-po
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r
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uffer
B
'
.!EARN
portionsofp
L
IUMOXID
heat
only h
f
ine
or
particles.Avoidanceofsuchactio
inhalation
houtremovingtheAttenuator-O
circuit
nutonthe
transistortot
about
twothreads
amount
transistor
leadtowardthe
stud.For
first
un dsand 5inch-poundsforrepeate
he same
flowth
Sectio
n 4---SG
Amplifier
ING
ower
transistorQ190
E as α
m
ajor
ingredient
sin
ks
a
resafe
azardis
particles
above
Amplifier
boardbyun
that
are 1800°Fcanproduce
will
assurethe
power
mounting
heproperlength
collectorlead.
he undersurface
of
and
avoid p
leadsoronthe
and
efficie
timerep
transistor.Whenresolderingthe
circuit
board,avoidlarge
roug
hthe
u
n
dermost
toxic
effect
α
inhaled.Grinding,
ntin
prese
.
transistor
solderi
themountingstud
lacingsilicone
rearofthe instrument
tighte
ntheatsinking,t
lacement
circuitboardholes
may
absence
normal
(0190)
ngthe
stud.Cutthe
,keeping
Apply
of
ceramic
n
t h
e
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shouldbe 6
amounts
503
.
n
utp lea
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ds
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. .
.
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d
.
Whenreplacing
be
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nthatt
layout
aspossible andQ140, originallyin case).Donot
the ch surrou nd 100-250
T
sh
ouldnotneed adjustmentorrepair.If itbecomes
n
ecessarytoperformαrepairinthisarea, cautionanddonot breakordamagethe50 nan capacitorthatgrou ndsoneendofthe capacitor
shouldbe0.2i
assis.Distri
ings
megahertz
h
e
air-core
.
componentsforthe
hey areas closetothe
.Leadlength
nch.R
stalled(flushwit
allow
anyheatsinktotouch
buted capacity
determinestheupperfrequency
range
forth
coil
hthetopofthetransistor
.
e
100-250
oscillator
original
forthe
eplacethe heatsinks as
transistors,
from
Q140heat sinksto
mega
coiltot
mechanical
any
other part or
limito
h
ertz
use
ofaraddisc
he variable
sectio
extreme
ns
Q130
nthe
range
R
emoval
Buffer Circuit B
R
circuit screwsholdthiscircuit counter-sunkscrewshol
h
eatsink brack
ofthisboard,itmaybenecessarytoloosenthescrews
h
oldingthe
t
heheat-sinkbracketcanbe
emove
board
an
dReplacementofAttenuator-Output
oar
d
metalsh
maincircuit
ield
isheldinplacebysix
boardtot
et totheside
boardtothesame
forthe
cover
screws
he main
dthe
OutputBufferAmp
railoft
he ch
withdrawn.
attenuators.The
.Four
boardand
assis
.For
removal
side
railsothat
corn
two
lifier
er
Page 27
M
aintenance
and
Interfacing
Information--SG
503
ΝΟΤΕ
Do
not
brack
et tothecircuit toremove important
plastic
undersideofthe Whenrep
board,ensurethatallpin
circuit six screws
b
oardare
screws,
onthe ch ordertoensure Tightenthemain
t
h
efourAttenuator-OutputBuffer
screws
last
Alignmentof
Ifitbecomes
front
p
anel,orif itbecomes looseontheshaftoft h
freque
ncy accomplis megahertz w
he nthethree
first
openwhenrotatingtheshaft
the
three
n
uts
thathol
this
heat
toreinstallthet
insulation
betweenthe h
board.Ifit
sink
fromthe
hree
becomes 35-mil
board.
lacingthe
but donot
efficient
Attenuator-OutputBuffer
co nn
ections
alig
ned a
n
d seated properly
tighten.Thetwocounter-sun
assisside
circuit
rail
mustbetig
heat
transferandmin
boar
d screws, an dthen
Amplifier
.Replace
FRE
metal sh
E
Q
U
ield.
N
CYRANGE
necessarytoremovethisknobfromth
cam
switch,
hed by
range.T
alignment
settingth
h
is
positio
e
cam
n can be
upon switchonthe
switchcontactsont
cloc
d
th
circuit
washersand
eat
sinkandthe
fromthe
(MHz)
reinstallation
noted
hemain
kwise
eh
eat
sin
k
necessary
boardit
is
circuit
main
.
Installthe
htenedfirsti
imum
stress
tighten
circuit
board
Control
ehig
50-100 by observing circuit
boar
.
'troubleshooti
and
eventofequipment
P usefulin
F
identifies
k
family.Inserta. power
n
.
plug-ins
p
rotectstheplu
made sectionof tion.
e
be
h
4-1.The
is
tions. co for
d
U
se
t
he P
erformance
Circuit
erforma
Descriptio
nceC
heck and Adju
troubles
unctions
Α
slot
between
AvailableatR
theSG
barrierinthe
module
from
tothatcompartment
t
he
power
Signaloutp
madetothe
uts,
rearin
instrumentisnotsu
If
you
wishtowirethemtoth
nsu
lt
your
localTek
furt
h
erin
formation.
ng
Check,
n asaid
failure.Thetest
h
ootingtheSG
pins
23 and24on
503
as α
jacktopreventotherth
being
u
sedinthat
g-insh
ould sp
.
module
AdjustmentProced
s to locate
equipment
stment
ear
P
rocedure will
503
.
Connector
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nding
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ecializedconnections
Consultt
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he B
uildingASystem
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or otherspecializedconnectio
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signal
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further
informa-
ns,may
ownin Fig.
eseconn
connector,
u
prove
source
h
b
ec-
re,
he
e
is
e
28
27 26
25 24
23
22
21 20
19
18
17
16
15
14
P
i
n#Left(Β
Α
Α Α
Α Α
Α
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Α Α
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Α
Α
Α
Α
Α
28
27 26
25 24
Signalinput
23
DecimalΧΧ.Χ(10') F
22
Amplitude
21
REM
20
No
19
No
18
No
17
No
16
No
15
No
14
No
side)
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loatingground
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ΧΧΧ
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OTE
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Β
Fig.4-1.Input/Outputassignments
R
T
Β
at
r
earcon
ight (Αside)
SINEOU Floating
R
eference Ground
Output
L
SD,BCD,
M
SD,BCD,(1Α)(1)
M
SD,BCD,
M
SD,BCD
MSD,
MID,
MD,B MD,B MD,B L
SD,BCD(3Α)(1)
L
SD,BCD(3Β)(2)
L
SD,
T
gro
und
(3D)
(1B)
(11C)
B
CD,
(11D)
BCD
(2A) CD(2Β)(2) CD
(2C) CD
(2D)
B
CD
(3C)
nector.
for
(8)
(4)
(1)
(4) (8)
(4)
SINEOU
forBCD
(2)
(8)
T
and
(1430)1622-14
Decimal
4-2
Page 28
R
E
PAC
IftheTektronix Tektronix sh
owing:owner
individual
m
co the
plete
service
Service
at
instrument
required
K
AGI
instrument
Center
(withaddress)
firm
your
serialnum
.
NG
FOR
istobe s
for
serviceorrepair,
that
can
berandαdescription
SHIPMENT
andthe
be
contacted
hipped
attac
name
.
to
h αtag
of
Inclu
an d
of
M
aintenance
Surroun
p
corrugate
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and
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rotectthe
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aving
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and
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h
e
instrument
nter
n
g
faci
withpolyet
finishoftheinstrument.
correct
insi
dedimensionsofno
Information--SG
h
ylenesheeting
Obtain α
lessthan
carton
carton
strengt
sixinches
503
to
of
h
morethantheinstrumentdimensions.Cushionthe instrumentbytightly
or
e
urethane sides.Seal stapler
foam
carton
.
packing
between
wit
t
i
nch
h
ree
carton
and
instrument,
esofdunnage
hshippingtape orindustrial
on
all
Saveand
re-usethe
packageinwhichyour wasshipped.Iftheoriginalpackagingisunfit not
available,
repackagethe instrument as
follows
instrument
for
use
or
:
Thecarton
pounds
test
strengthfor
your
instrument
is
200
.
Page 29
Sectio
n 5---SG
503
Introductio
This circuitry Individualdescriptions
p
arts:Oscillator
F
ilter,Leveling
h
m
O Diagrams1and
accordingtocircuitfu
pondtoth
appropriatediagramsinthe
manualwh
Oscillator
B
othoscillator
base H (tappedcoils
trol
is Q300op collector
amplifier0280
The
andthecollectorcurrent pu
lsesatt containαlargenum reso
nanttankcircuitisrequire wave operatingQfactoratα given basebreakdown oscillations
collector
For
determinesth (leakageind
circuit.Alloftheabove frequency availableou
OutputBuffer
Signals
100oh
feeds α a
bout
n
sectionoftheman
usedintheSG503LeveledSineWave
Circuits,
Circuitry,
Wid
eban
d Attenu
2
ose
listedinth
ile
readingthecircuitdescription.
Circuits
sections,
artley
accomplished by
oscillatorsoperateinα
output.Thetappedcoils
those
m
300
configurations
for
eachfre
erates
striplinetothebaseofQ190.Theoutput of
low-pass
asαvariable
current
leadfor
con
.
h
e
operatingfreque
areredu
eachtransistor
coilsth
e inductan
uctance) a
range,har
tput
amplitude.
Amplifie
fromtheoscillator
filterwhic
megahertz
ualcon
are
DisplayFlashM
ators,andPower
are
segmentedwithgray-tint
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quencyrange).Amplitudecon
varyingt
trolledbythe outputofop
for
ber
ofharmonicsandαhighQ
ratingforthetransistors
ced bythe L/R
athave tuning
ce, couplingbetweenwi
ndtheQ
factors
m
onicsupp
randFilte
.
tai
n
sα
descriptionofth
Generator
separated
OutputBufferAmp
.
Circuit
eBlockDiagram.R
Diagrams
Q130
withinductive feedbac
currentsou
non-linearmode
Q130
ncy.This
allowthehigh
supply
combinetodeterminethe
sections
h has α
intoth
e
ultivibrator,
blocktitles
sectionofth
and
he do
or
d
to
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.
slugs,the
factor forthe
ressio
are
Q140,
emitter
rce,
Q140isα
series of
obtainαgoodsine
estpossible
.
combinationsinth
slug
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n and
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r
are appliedvia
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Supplies
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currents.
withits
erational
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series of
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parallel
Sp
urious
positio
ndings
Q190
ncy
H
circuitsand frequencies,theOutputBuffer
i
d
ealand
h
ig
her
m
ore oper theoscillator signalisfairly distortionwill
collector bytheadj
de
pende ntonthe d ofR175 amplituderangefrom0.5 collector
110
L
eveli
The voltagedivider, temperature error
Themajor
d
etector(U
associated ingcap
to-pea C225 voltageattheleveli R
225A)
Toaidinund
d
etector,
t
h
e
levelingpoint
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thelevelingpoint.T C225B, capacitor sinewaveatt at
--5 ideal C225Bis
leveli
ng 50
n
C)
of
e
.
.
to
is
-
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α
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atingpoint
should
milliamp
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levelingcircuitry
amplifierU280
acitor
kdetectorproduces
Bthatis
.
nn
ected.
nce
C225Bandcouplingcapacitor
--10
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diodes,thepoten ng p
cies
for
0190
beduetothe
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current operating
Circuitry
assumeperfectdiodes,10volts
--5
voltage
C225C
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C225A
equalto
of rive
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.
α h
com
pen
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C225Cand
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andtherefere
C225A
volts
do andC225
level
(series
onehalf
h
ere
volts
do across
will
hejun
ctio
.Foranactual
ualtothepeak-to-pea
.
generate
OutputBuffer
distortionincreasesand
onthe
.
c
h
By
clean,
OutputBuffer
R
175
.
Distortionisalso
level
to
nim u
voltto5.5volts,
pointwhich
0
is
composed
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associate
nen
ts ofthe hyb
225AandCR
output
α do output across
ngpoint ( junction
ng operationofth
woul
dcharge by
setbyR
opposing)
t hepeak-to-peakamplitude
will
now
be ch
arged
nofthetwo
complete
tialdiffere
d
inthe Amplifier
Amplifierispractically
collector
oosing
Q190
C225Aand C225B,cou
resistorR225A.Thepeak-
nce
260is--10
α
frequencywh
mostoft
for
minimumdistortion
.Thefinaladj
mdistortio
dcomponents
rid
t
h
al to
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B
to
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t
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C225C
be zero
C225A,andcoupling
to
---5
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nce
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kamplitudeatt
oscillator
.Atlow
.However,
becomes
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he
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somewhat
ustment
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C225A
C225C
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e
full
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e
on
at
d
he
Page 30
Circuit
p
any beapp
generator volt systemisstabilized
sectionch indetectorou terminal current restorethe
p
tablis C225C
t
reverse
w
R
w
DisplayFlashMultivibrator
m
aslong asthesine-wave output
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the
h
pins
binary turns frontpanelLED
50OhmW
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labeledonthecircuit
switch,U245dividesth
Description--SG
B
ecausethe
eak-to-peakdetector
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IntheΧ1positionoftheAMPLITUDE
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- .
Χ
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10,
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t
h
202,VR200 and
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positionoftheAMPLITUDE
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occurforthe 50 k frequenciesuptoandin
thegenerators
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p
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circuitry
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ilohertz
MPLITUDEMULTIPL
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ighgainintwo
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342
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q
uency
megahertz
IER
t h
.
large
C350
are
ng
or
en
de
. .
.
is
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ut
8
.
8
B
e
.
Page 31
Circu
it
Α
self-biasi
e
nsurethattheinputbias
inthehysteresiswindow.The
tary
outputsonpins2an
ofR396andR
R
365
to
temperaturedrift
F
our
the
counting
displayedont
d
ecode
U
430
frequencydividesthein
u
sedtoround
allowingαmore
The1MHz
wit
hin
verterU460D,
functions.Freq
b
y
sion
microsecon 2
microseconds
ng
arrangement
d 3isob
398
and
fedbacktopin 7th
automatically
.
counters,U430,U435,U436andU
process,
hefront
d byt
hebcd -to-Seven
offthecou
reference
uency
2 prod u
ds on
on
cesαclocksignal
bu
panel
ntheldinthe
accurateth
clockcircuit,U460A
drivesU465,whichproduces
divisionby16
pin11an d α
pin12.
isprovide
levelonpin7is
averageofthecomplemen-
tainedfromthejunctio
com
pen
sate
t
onlyth
ree
afterthebcd datahas
Segment put by 10 andits
ree-digit
clocksignal
d
always
roughL
for
437
d
ecimal Decoder
remaining
display
and
fre
wit
h α
withα
forU
any
are
.
andU460
quency periodof 16
390
centered
365
and
internal
usedfor
digits
are
been
Drivers
output
counters,
B
two
divi-
periodof
Description--SG
to
is
U
450B, settoαHIlevelbytheQ 2000
microsecondclocksignal
n
an
d U
485A
(Refer toFig
i
n
volved
circuitry and7
ofU490, by5frompin1to11 topin12.Thisfreque
.
periodof10
α
periodof20m
signal waveform counter
,
th
U
gatingsignalthatallowsthecounters
thetotalperio
(50
Thesquare-wave
roug
hin
425A
wit
a
U
reset
n
450C
wit
isop
hthepositivehalfoft
d U
450D
topin1ofU490
.
5-1
hth
e State
erati
ng p
allowingittocount.
an d
ncydivisionproducesαsignal
milliseco
ο/οduty cycle)
forth
verterU432A
d (10
nds
illiseco
ecou
time
.
signalonpi
millisecondsfor
.Withpins
terminals
.
for
waveform
Generatorcircuits
roperly,αHI
frequency
atpin11and α
nds
atpin12.The square
onpin
nting
topin2of positiveNANDgate
10,9and13 ofU485
445A
of
U
is
gatedthr
time
.) Ifthe
levelissetonpi
U
fre
490
quencydivides
divi
d
by2from
es
square
12
isthereference
p
eriod,display
n 12
ofU490isapplie
h
e
square
50 k
wave
to
co
ilohertz
andU445B,
oughU
relationshi
untfor
cou
503
485
ps
leveling
ns 6
p
i
n 14
wit
h α
wave
wit
wave
time
and
actingasα
50ο/ο
nting).
B
α
B
h
d
of
,
U
455
B
U
455C,
gates.Thelogic
U
460Cdeterminewhetherαclocksignal
16
microsecondsor2 ofU455D level
REF~.05position, held L an d U pin8of on
ΑLO
microsecond allowsthe 2 output ofU455D
t
h
roughVR
d
ivideby8
signalisthen
positive-going
significant
pi
n 2
.Th
ese
positiveNANDgateU455C
of
Wh
entheFREQ
O
0)bythe
445B,
settingbothQ
445B)toα
U
pi
n
and 10
s 9
onpi
n 5
microsecondclockto
TheHI
level
475,
signal
to
ofU425AisHI
455D,
U
levelsatpin5ofU455Ban d pin 10
logic
UEN
ofU455C,
ofU455Bloc
period,wh
.
onpi
reverse
processe edge
un
ting
co
an dU460C
microsecon
levels
CYRANGE(MHz)
i
p
n1ofU445A
closureofS100-2
1)
HI
iletheΗΙ
n 10
biasingCR410anddisablingthe
prescaling
d byQ410
ofthe
operatio
(gating
ds
aredeterminedbyt
and
terminals
level.ΑHIlevel
setting
ks outthe
its
level
be gated
ofU460Cisalso
circuitry.The50k
signalatpin1
n onlyduringth
signal)
are
positiveNA
wit
h
α p
eriodof
appearsatt andin
pin13ofU445Bare
.ThisclearsU445A
n 6
(pi outputto
clocksignal
onpin10
andQ420
.
he outp he output
verterU
controlisinthe
t
455A
ofU445Aand isestablished
α LOlevel
withα
ofU460C
h
roughto
transmitte
ilohertz
wit
ofU425A
etimethat
ND
of ut
16
t
he
hthe
.
.
d
Ifthesine
leveled,pi
proximately panel
supplie
U
530)
second.
Τhe
c
hanget
to
U
450Dattheproper
p
roper
forthe
Only
1
.00
megahertz)
similar
U
440Adetectswhenitis
p
ointasfrequency
w
henitisnecessarytosh
isdecreased.
U
445AandU445Boperate
(memory).E
control
rightorleft
speedin
wave
outputamplitu
ns 6and 7
α 2hertz
display
dtopin
causesth
AutoRangingcircuitsop
locatio counting,
foroth
becauseU490isclearedto
t h
10
of
em
to
h
e
output
n andto
d isplay,
one
decimal
will
erdecimal
xclusive--ORgates U
d
evices
todeterminewhetherthe
toproducetheproper output
gupthe
AutoRanging
de from
ofU490
rate.Theresultisα
e Display
blan
levels
timetosetthedecimal p
selectt
pointsh
b
ediscussedastheoperationis
is
increased,wh
iftthedecimal
Drivers
kth
edisplay
eratewhen
ofU455C,
he prop
and
reset
ift
(from
p
ointshifts.Overflow
necessary
as α
process
theSG
goesnegativeatap-
(U510,U520,
U45013,
ergate
process
.999
tosh
ileU440
pointasfre
4-bitshift
438A
andU438Bact
.
503isn
blinkingfront-
zero.Zeros
forabout
S100-2isop
U450C,
ointinits
time
intervals
.
megahertz to
Detector
iftthe
decimal
B
detects
quen
register
registershifts
data,th
and
0
.25
en
and
cy
ereby
ot
as
For50 k
(anodeofVR clocksignalisfreque ClockDividersU480,U481,
gatesU475A,
L
O
levels
ilohertz
set
counting,th
475)isalways
U
475Ban
at
the
ncy d
dU475D
outp
ut of
e10-'d
ecimal
source
andth
HI
ividedby1000byGate
an
d
inverting
are
e2microsecond
U
482.P
ositiveNAND
locked
out
input
duetot
AND
point Time
he
gates
Frequen
.999
megahertzdonot
andU
445
B
level
ofU455C gating k
signalatpin
ilohertzcoun
cies
from
tochange
remains
ting
.250
megahertz
ca uset
12
.
he ou
state.Conse
L
O
forth
ofU490isthesame
ese
up
to
tput
data
quen
tly,the output
fre
q
ue n
an
d
i
n
cluding
fromU445A
ciesandt
as
for
5-
he 50
3
Page 32
Circuit
Description---SG
ΡΙΝ
4
U
4321i
503
DISPLAY
COUNT
ΙΙ
ι
F
ig.5-1.State
Generator
waveform
timerelationship
1622-15
.
Page 33
Circuit
Description-SG 503
WhenU
decimal
U
436togonegative 440Bto
U
bin
arydata
toU435
U
440A
transitionpoint
U
440Ban
Α
andαLOonpin
U
438AandU438B)in αHI(=_=1)beingtransferredtoth
i
nput
input
R
ange
actionofU425D
Onthe
ofU425BgoesLO
b
othU
terminalstotheQ
445A
U U
445Bwill
logic
U
450D
selecttheproper
Divi
Forthe signalislocked clock fre
que ncy
gatedthroughU475Dand U
U
490
a
nd
newgate
waveform
lustrate
Duetothec theoutput
terval.The
i
n
wasresetbythe
time.This locks
U
445A
U
445Bwill
b
ecomesnecessarytochangeth
Fort henextdecimal
megahertzto10.0megahertz),the events sensingtheprevious properbinarycodeisthensetattheoutputs U
445B(whentriggeredbythe
toshiftthe decimal
436
andU437con
99,th
enextinputcount
and
αHI(==1).WhenU
equivalentto
causes
to
HI
on
terminal(pin2) terminal
ClockE
445Aand U
will
levels
toshiftth
d
ers,
signalisgatedthroug htothe
.U475D
all
ot
din
outthe
andU
occur
pin
11 ofU437togonegativeand
forcepi
dU440Ahave
p
nextAu
be LO(=--=0)andpi be αLO
and
divisionby
herd
timein
time
resultsinαLO
n 13
from
i
n
440Balongwit
9
of
U
9 ofU445Bresults(th
(pin
12)
na b
le)
.
toRangeClocksignal
andth
445B,
terminals.After
(=-=0)and
are
decodedby U
edecimal gating
enables
logic
levels
out
fromU460C
enable
is
ecodi
ng gate output
tervals
relatio
Fig.5-1
level
output
not cha
.
han
ge
of
ofU440AisnowatαΗΙ
clearpulse AutoRanging
445Bfrombei
ngetheiroutputdataunlessitagai
withE
xclusive-ORgatesU438A
tainbi
triggersU440
435,U436andU437con
decimal
ofU440A
.999
megahertz to1.00
beentriggered
ofU445Aand
ofU445B.Pi
has
also
isnegative
transferringthe
pointone placetot heright,
signal
thesignal
given,the 2
100,α1600
d
because
are
selectedfor
nships remain the
fro
m
α HI
438Bgoes
U
and
level
pointsh
output
dataofthe4-
point
on e
nary data eq
toU435
999,th
bee
n 5
will
pin8will
455C,U450B,U450C
fromthe
prescaling
andthe 16microsecon
485A
t
heoutput
to
αLO
not
at
cloc
ng
edecimal point
ift
AutoRanging
more
causes
Btoforce pin 9
enextinputcount
to
α LO(-=-0).Att
and
set
h
onpin 6
α
HI
roug
h the
αLO
(==
n 5
ofU425B(Auto
n settoαHIthroug
fromU450A,pi
transition
data
n
data
be αHI(Τ1)
outputofU455D.After microsecond
to
levels
HIduringthe
triggered
pin
k
triggered.U445A
(for
sfer, pin6
tra
be aHI(=1).These
GateTime
circuitry
microseco
ap pear
U
of
areLO.Althoug
AutoRanging,th
same
onpi
n 6
levelbecause
during
U
425B,which
5
of
signal,preventi
example,
sameseq
it
register.The
b
of
cloc
placetotheright
uivalent to
megahertz
.
of
actionof
0) tothe
fromthe D
nd cloc
at
450Bis
ofU445A,
from9.99
uence
445Aand
U
pin
11
of of
tai
triggers
he
445A
U
eD
hthe
n 6
triggers
;pin9of
and
Cloc
.
sig
n
al is
in1
p
HI
as
count count
ng
and
location
438
k
signal)
U
475Aisenab
and α 160
1
n
D
of
k
k
d
of
h e
il-
it
n
.
of
B
ofU490
P
ower
The--22Vs refere regulatorU R
698.Thevoltagedivi
R
695
U
695
on
pin4wit
t
he qu thequiescent t r
ansistor
---22
sen T
hisvoltagecha
follower sistor, and
loadcurrent sensing
The-i-5Vsupplyisreferencedtothe---22Vsupply
t
he referencevoltagepoint
voltage
--5
is
also
p ositive,
whichamplifies
ch
angeatthe levelshifter.Α causesthe i
nthepower
t
hroug htheload,
Q620isfor exceeds
eleme goes change transistor.The non-polarized C619
level,
d
ow
CR640preventsthe
n
egativethanabout theloadfrom theΝΡΝ exceedsabout6.2
R
SC Q640,
.
ledbythe
microsecondclocksignalisgatedthrough
.
Supplies
upp
nce
voltagepoint
695bythe
establis
regulates
volt
sed
returntheoutputlevelto---22
volts.In
integrateT2Lspi
p
n the
gating
hesα voltage sensing pointatpin4ofU695
itsoutpu
h an
internal
iescent
causingitto
about-5volts.Ifthe-Ι-5voltou
n ttotur
p ositive,
clampingthe
levelatthebaseofQ685which
current
locatedinthepower
output
atpin4
0685
element
dividerR610-R612.This
about1.8amp
at pi
reventingthemfromtu
series-pass
level
ofU695
to
limiter
.
α
quiesce
t
he voltage change app
and
baseof0610.VR
positive
baseofthe
module
current
nonQ620.If
turning
n 2
ofU610
p
ower
su p
over-voltage
sig
nalacrossR640
output
Ο
ly is
establishe voltagedivider der
tby
refere
levelthroug htheΡΝΡ
startstogo
an dpin9
nge
is
t
he baseoftheΡΝΡ
increase
withR
n
t
state,
invertsthe
voltagech
ΝΡΝ
mainframetodecrease
returningtheoutputlevelto+5
over-loa
s,R624
onCR
keswhich
ply
during
+5Vsupply
---0.7voltifF620 transistorshorted.Ifthe
volts,VR640condu
output
level ofU450C
referencedtoground
d onpi
composed
comparingthevoltage
nce
.R694
module
positive,thischange
ofU695
transmitted
conductio
volts.Q690op
680
acting
establis
d p
turnsoffthe
cond
hed
reference
t
hevoltageonpin2
ears signaltoapply 610
operates
angeatthebaseof0600
series-passtran
rotection
actsasα
Q620
tur
612.Αpositive
connectionsforC620
may
rningonQ620
current
opens.Q640protects
itionsthatcould
T
hisgating
.
level to
about+0.2
going
topi
wit
n 5ofvoltage actionofR697and ofR693,R694
(--22VADJ)
, inturn,
series-pass
mainframe.If
goes
negative
h
throug
series-pass
n th
asthe curren
atpi
tput
level
atpin2
.Ift
current
ns on,
ΝΡΝ
occuronthe
surges
from
cts,
emitter-
roug
h the
erates
n 3
ofU610
levelisabout
ofU610
goes
ofU610
αnegative
onlyasa
sistor
located
conductio
volts
heloa
dcurren
sensing
its
collector
voltage
series-pass
-f-5
h
utti
and
s
.
goingmore
occur
output
developing
signal
turnson
volt
.
tran-
more
HI
n
h α
nd
a
level
sets sets
the
is
load
as a
wit
h
by
dc
n
and volt
ng
if
level
α
.
.
t
.
t
Page 34
(No
options
are available
at this
time
.)
Page 35
Replacementpartsare
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159-0021-00 131-1003-00
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120-0934-00
120-0933-00
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108-0472-00 108-0606-00
276-0569-00 276-0569-00
108-0317-00 108-0795-00
108-0578-00 108-0578-00 1
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SFORMER,RF:1-2
ORME
NSFORMER,RF:250-500
IL,RF:3TURN
R
OID
E,TOROID:
F
:15U
,R
IL,RF:2.5MH
:45 :80N
,RF
:80N
R
OID:0
TOROID:0.375 TOROID:0.375OD Χ 0
ID
IL,RF:113N
50NH
IL,RF:113N
ILICON
ILICON
CON,30V,150M
ILICON ILICON
ILICON
:S :S
ILICON
CE
ICE:SILICON ICE:SILICON
:SILICON,400V,750M
ILICON
CON,30V,150
ILI
,5MA,2.OV ,7-
SEQ
UEN
UT:REDSINGLE
SEQ
UEN
EDS
INGL
UEN
Y, :C
KTCDΜΤ,3
-100
:25-50
ΜΗΖ ΜΗΖ
:10-25
0MHZ
ΜΗΖ
.2-5
.5
R,RF:0.5-1
UH
:
H
H
NH
H
H
:0
H
H
ΜΗΖ ΜΗΖ
,#18AWG
.285ODΧ0
O
DΧ0
.375OD Χ 0 .375OD Χ 0
A
CE
CE
CE
p tio n
V,H
OT
,rv15 ,15
,400 ,30V,150M
,30V,150M ,15V,HOTCARRI ,30V,150
,30V,150M
,400
EDIG
LE DIGIT
ΜΗΖ
ΚΗΖ
.150 ID .125ID Χ 0 .125ID Χ 0 .125 ID .125
V,H
OTCARRIER
PIV
,200M
V
,750M
GIT
DI
IT
ONG
PR
ID
CARRIER A
A
A
MA
A
MA
Χ 0
Χ 0 Χ 0
A
A
R
eplaceable
A
E
W
.280 .125
.125 .125
.125
P
E
lectrical
M
fr
Co
d e
J
ω
~Τn
R
28480 28480
07910 07910 07910
079101Ν 28480 079101Ν 07910 80009
80009 07910
08806 50347 31718 07263
31718FND70
07263END
31718
07263
71400
80009 131-1003-00 24931
80009 80009 80009 80009 80009
80009 80009 80009 80009
8
0009
80009 80009
80009 80009
32159
80009 80009
80009 80009
80009 108-0552-00
78488 78488 78488 78488 78488
80009 80009 80009
arts---SG
M
frPartNumber
5082-2672 5082-2672
Ν
4152
1 CD
12676
1Ν
4152
4152
5082-2672
4152
1Ν
4152
152-0066-00 152-0066-00
1Ν
4152
SSL-12 LLL-7Α
F
ND
70
END
357
357
ΕΝD70
END357
AGC
2
235-1
28J
R
120-0939-00 120-0938-00 120-0937-00 120-0936-00 120-0935-00
120-0934-00 120-0933-00 120-0932-00 120-0931-00
108-0794-00
108-0472-00 108-0606-00 276-0569-00 276-0569-00 71501
Μ
108-0795-00 108-0578-00
108-0578-00 108-0552-00
57-0126 57-0047 57-0047 57-0047 57-0047
108-0733-00 108-0606-00 108-0733-00
503
Page 40
Rep
Ckt
L
365
L
630
L
660
L
670
L
655
L
R
LR
L
R
L
R
LR LR
LR
LR150
LR
Q130 Q130 Q140 Q160 Q180
Q190 Q190 Q290 Q296 Q300
Q320 Q320
Q330 Q340
Q350
Q360 Q410
Q420 Q600 Q610
Q620 Q640 Q685 9690
R
116
R
118
R
134
R
138
R
140
R
145
R1
.46
R
150 R160 R162
R164
R
λ
R
174
R175
R
176
110 112 114 130 135
140 142
190
66
laceable
No
.
Elect
Tektro
P
art
No
108-0509-00
108-0795-00 108-0472-00
108-0205-00 120-0342-00
108-0408-00 108-0271-00 108-0333-00 108-0595-00 108-0797-00
108-0796-00 108-0271-00 108-0271-00 108-0797-00
151-0451-00 151-0211-01
151-0451-00 151-0188-00 151-0188-00
151-0474-00 151-0614-00 151-0302-00 151-0302-00 151-0302-00
151-0367-00 151-0402-00 151-0402-00
151-0402-00 151-0402-00
151-0402-00 151-0367-00 151-0221-00
151-0301-00 151-0302-00
151-0301-00 151-0515-01
151-0301-00 151-0301-00
315-0471-00 315-0471-00 317-0131-00 317-0510-00 301-0750-00
317-0510-00 317-0510-00
317-0510-00 315-0181-00 321-0207-00
321-0319-00 315-0392-00 315-0182-00 311-1563-00 315-0123-00
r
icalParts---SG
n
ix
Serial/Model
.
E
ff
Β Β
Β Β
Β
Β ΧΒ ΧΒ
ΧΒ
ΧΒ
ΧΒ ΧΒ
503
No
Dscont
"
010100Β039999 040000
010100 051230
010100Β059999 060000 060000 060000
060000
060000
040000 031350
Β
051229
.
0OIL,R CO
0OIL,RF:160 COI
X
0O CO COIL,R COIL,RF:64 COIL,R
COIL,RF:20NH COIL,R COIL,R
0OIL,R
TRANSISTOR TRANSISTOR:SILI T T T
T TRANSI TRANSI TRANSI TRANSI
TRANSISTOR:S T
TR TRANSISTO
TRANSI
T
TRANSI
T T
TRANSISTO
T TRANSI
TRANSIS'ΓO TRANSI
RES RES
R R
R R
R RE
RE
RE RES.,FXD,FILM
RES
RES
RES.,VAR,N
RE
N
ame&Descriptio
F:2.5UH
IL ,RF:2
.5M
H
UH
L ,RF
:
IL ,R
F
IL ,RF :0
F :0
:
ΙΜΗ
l
00N
.025U .9U
:10TURNS
H
H
H
INGLE
S
FMR,TOROID
NH
F :2 .5 NH
F :0
.025
F :0 F
RANSISTOR:SILI RANSISTOR:SILI
RANSISTOR:SILI
RANSISTO
STO STO STOR:SILICO
STOR:SILICON,
RA
NSISTOR:S ILICON,NPN,SEL FROM
ANSI
STO
STO
RANSISTO
STOR:SILICON,N
RANSISTOR:SILICON,PN
RA
N
SISTOR:SILI
UH
.025
UH
:2
.SN
H
:S
ILICON,NPN
CO CO CO CO
R :S
ILICON,NPN
R :SILI
CO
R :SILICON,NPN
ILICON,NPN
R
:S ILI
CON,N
R
:S
ILICON,NPN ,S
R:S
ILICON,NPN
R:SILICON,NPN
CON,PN
N,NPN N ,N
PN
N,PNP N,PNP
N
,NP
N
N,NPN
NPN
,SELFROM3571
PN ,SEL
,SELFROM
,S
PN
,S
P P
EL
EL EL
R :SILICON,NPN
R
ANSI
STOR:S
ILICON,PNP
STO
R
:50V
,8A
R
:S
ILICON,PNP
STO
R:S ILICON,PNP
.,FXD,CMPSN:470 .,FXD,CMPSN:470
E
S
.,FXD,CMPSN:130
E
S
.,FXD,CM
E
S
.,FXD,CM
E
S
.,F
XD,CMPSN
E
S
.,F
XD,CM
S
.,FX
D ,C
S S
S
MP
.,FXD,CM .,FXD,FIL
.,FXD,C
MPSN
.,FXD,CMPS
ON
FXD
.,
,CMPSN:12
PS PSN
PSN
SN
P
SN
M
WIR :IKOHM
OH
M ,5% ,0
O
HM ,5% ,0
OHM,58,0
N
:51
OHM,5 % ,0
:75
OHM,5%,0.50
:51
ΟΗΜ ΟΗΜ
OH
ΟΗΜ
.5K
K
OHM ,5% ,0
,5$,0 ,5$,0
M ,5% ,0
,5 % ,0
OHM,1+h,0
,5%,0
,20
:51 :51 :180
:1 .4ΚOHM,1 % ,0 :20
:3 .9KOHM,58,0
N:1 .SKOHM
% ,O
FROM
FROM
FROM
R
F
.25 .25
.125
.125W
.125 .125 .125W
.25 .125
.125 .25
.25 .SOW
.25
n
3571 3571 357111 3571'
3571
OM3571
W W
W
W
W W
ω
W
W
W W
W
M
fr
Code
80009 80009 80009 76493 80009
80009 80009 80009 80009 80009
80009 80009 80009 80009
80009 02735 80009 01295 012952Ν
04713 80009 047132Ν
04713
04713
ΤΡ ΤΡ
ΤΥ
Υ
ΓΡ
ΤΡ ΤΥ
80009 80009 80009 80009
80009
80009 80009 80009 047132Ν 047132Ν
047132Ν
047132Ν 047132Ν
04713
01121 01121 01121 01121 01121
01121 01121 01121 01121 91637
91637 01121
01121 73138 01121
M
fr
108-0509-00 108-0795-00 108-0472-00 8209 120-0342-00
108-0408-00 108-0271-00
108-0333-00 108-0595-00
108-0797-00
108-0796-00
108-0271-00 108-0271-00 108-0797-00
151-0451-00 60794
151-0451-00 2
Ν
3906 3906
MRF
511
151-0614-00
2222
2Ν
2222
2Ν
2222
151-0367-00
151-0402-00 151-0402-00 151-0402-00 151-0402-00
151-0402-00 151-0367-00 151-0221-00
2907
Α
2222
Α
2907
Α
4441
2907
Α
2Ν
2907
Α
CB4715
C
B
4715
ΒΒ
1315
ΒΒ
5105
ΕΒ
7505
ΒΒ5105 ΒΒ5105 ΒΒ5105
CB1815
M
FF
1816G14000
M
FF
1816G20501
CB
3925
CB
1825
91ΑR1
K
CB
1235
umber
Α Α Α
F F
Page 41
R
C
R
Α
R184
R
R192
Α
R
R197 R204 R212
R2
Α Α
R257 R260
Α
R265 R270
Α
R274
Σ
R277 R278
R280 R284
Α
R292 R294 R296
R R
R
Α
R R
Α
R R
R
Α
R R
R R R
R350
R
Α Α Α
R
Α
R
250 255
262
272
276
290
300
302 315
320 322 323
324 326 328 332 334
335 338
340
342 345
351 352 352 355
358 360 361
k
t
No
177
μ--Τ-Τ=SΕLΣ
180
190
195 197
.16
Tektro
P
.
art
315-0272-00
317-0151-00 301-0560-00 301-0560-00
315-0471-00 315-0471-00 315-0102-00 317-0181-00 315-0103-00
315-0911-00 315-0275-00
311-1223-00 321-0224-00 311-1531-00
321-0114-00
311-1221-00 315-0204-00 315-0103-00
31
.5-0103-00
315-0103-00 315-0102-00 315-0513-00 315-0103-00 315-0123-00
315-0102-00
315-0562-00 315-0512-00
315-0102-00 315-0103-00
315-0471-00 315-0391-00 315-0181-00 315-0510-00 315-0750-00
315-0272-00 315-0471-00
315-0471-00 317-0821-00 317-0821-00
315-0182-00 315-0471-00
315-0332-00 315-0162-00 315-0102-00
315-0181-00 317-0821-00
315-0221-00 321-0132-00 315-0181-00
315-0101-00 315-0510-00 317-0821-00
n ixSerial/
No
.
E
ff
CT
ED
-
---+Χβ063389
ΧΒ
ΧΒ ΧΒ
ΧΒ
Β
ΧΒ
M
odelNo.
Dscont
Β
010100Β039999 030000
Β
060000
060000 060000
8010100
Β
010100Β059999
Β
010100Β059999
060000
Β
010100
Β
060000
010100Β059999 060000
Β
059999
Β
059999
RΕS
.,FX
R RE RE
RE
R RES
D ,CMPSN
E
S
.,F
XD,CM
S
.,F
XD,CMPSN:56
S
.,F
XD,CMPSN:56
S
.,FXD,CMPSN:470
ES
.,FXD,CMPSN:470
.,FXD,CMPSN:1
RES.,FXD,CMPSN
R
FXD
ES
.,
,CMPSN
R
ES.,FXD
R
ES
R
ES
R
ES .,FXD,FILM
R
ES .,VAR,W
RES.,F R
E RES ., FXD RES RES
RES RES
R
E
R
ES .,FXD,CMPSN
RES RE
R
E
R
E
R
E
RES.,FXD
RES
RES RES
RES RES
RE
R
E
R
E
RES
RE R
ES
ΧRES Χ RES.,FXD,CMPS
RES.,FXD
Χ RES
RE
S
R
E
S
R
E
S
RES R
E
S
R
E
S
Χ ΑES
R
E
S
,CMPSN:910
.,FXD,CMPSN .,VAR,NONWIR
W
X
S
.,V
AR,NONWIR
,CMPSN:200KOHM,5%,0
.,FXD,
04PSN:
.,FXD,CMPSN:lOKOHM,5
.,FXD,CMPSN:lOKOH .,FXD,C
.MPSN:IKΟΗΜ,5%,0.25
D
,C
S
.,FX
MPSN
.,FXD
,CMPS
S
.,FXD,CM
S
.,FXD,CM
S
.,FXD,CM
S
.,F
XD,CM
,CM
.,FXD,CMPSN:470 .,FXD,CMPSN:390 .,FXD,CMPSN:180
.,FXD,CM .,FXD,CM
S
.,FXD,CM
S
.,FXD,CM
S
.,F
XD,CM
.,F
X
D ,C
S
MP
.,F
XD,CM
.,F
XD,CMPS
.,FXD,CMPS
,CM
.,FXD,CM
.,FXD,CM .,FXD,CM .,FXD,CM
PSN PSN PSN
.,FXD,FILM
.,FXD,CM
.,F .,FX
.,FXD,CMPSN
XD,CM
D ,C
PSN PSN
MPSN
N
ame&Description
:2 .7
PSN
K OHM,5%,0
:150
OHM,5%,0.
ΟΗΜ
OHM,5
OHM,5%,0 OH
M ,5% ,0
KOHM
:180
OHM,5+h,0
:lO
K OHM ,5%,0
OHM,5%,0
:2 .7MOH
:250
OHM,10+k,0
:2 .1K
KOHM
:150
:50
10
ΟΗΜ
,5%,1.5
OH
M ,1% ,0
OHM,20+k,0
K O
HM
:2
M ,5% ,0
:S1KOHM,5 % ,0
:l
OK
ΟΗΜ
N
:12KOHM,5 % ,0
P
SN :1
K OHM,5%,0
PS
N
:5
.6K
PSN PSN PSN
P
SN:51
P
SN:75
P
S
PSN PSN
SN
PSN
Ν
OHM,5 % ,0
:S
.1
KOHM
:1KΟΗΜ
,5$,0
:lOKOHM ,5
OHM,5%,0 OHM,5%,0 OHM,5%,0
OHM,58,0 OHM,5% ,0
:2
.7xΟΗΜ
:470
OHM,5%,0.25W
:470
OHM,5
:820
OHM,5+k,0
:820
OHM,5%,0
N:I.BKOHM N
:470
OHM,5+s,0
N:3 .3K O
PSN PSN:1K
:232
:100
:820
HM
:1 .6K
OHM,5%,0.25W
ΟΗΜ
,5$,0
:180 OH
M
:820
ΟΗΜ
:220 OHM,5%,0
ΟΗΜ
51
,1%,0.1
ΟΗΜ
OHM,5%,0
OHM,58,0
:180 OHM,5%,0
:
eplaceableElect
.25W
% ,0
.125W 01121
W
50
,5%,0.50
,5%,0
M ,5% ,0
,1$,0
W
.25W .25
W
.25
W
.125W 01121 .25
W
.25
W
.25
W
.50W
.125W
W
.125W 91637
.50
W
.25W
,5% ,0
.25W
% ,0
.25W .25W
ω
.25 .25W .25W
.25W
.25
,0
.25
%
.25W .25W
.25W
.25 .25W
.25
%,0.25W
.125W .125W
.25W
.25
.25
.25
.25W
.25
25
.25W
.25W
.25W
.125
.25 .25
W
W
W
W W
W
W
W
W
W
W
W
W
,5$,0
,5 % ,0
,5$,0
,5%,0
,5%,0
,5 % ,0 ,5$,0.125W
,5%,0
01121 01121 01121 01121
01121
0112.1βΒ 01121 91637 0112
01121 01121
01121
r
ical P
M
fr
Code
01121
01121Σ:Β5605 01121
01121 01121
01121
01121 01121
01121 32997
91637 01121
32997 011
01121 01121
01121 01121 01121
01.121 01121 CB1235
01121 01121
01121 01121 011
01121 01121 01121 01121
01121
01121 01121 01121 01121 01121
01121
MfrPart
CB
ΒΒ1515
ΕΒ
CB4715 CB4715
C
B
ΒΒ
.CB1035
CB
CB
3386F-Τ04-251
MFF1816G21000
535-9504
F
M
3386F-
.21
C
B
C
B
CB CB
CB
C
B
CB1035
CΒ
CB
CB5125 CB1025
.21
CB1035
CB4715
CB
3915
CB
1815
CB
5105
CB
7505
CB
2725
C
4715
B
CB
4715
ΒΒ8215 ΒΒ
8215
CB
1825
4715
C
B
CB3325 CB1625
C
B
1025
CB1815
8215
CB
2215
MF
F1816G232RO
.1CB1815
C
B
1015
CB5105
ΒΒ
8215
1025 1815
9115 2755
F1816G150R
2045
1035 1035
1035 1025 5135
1025 5625
2725
5605
arts--SG
Number
Τ04-500
503
F
O
F
F
Page 42
R
Α
R R
R R
R R R
400
R R
R R
R R
R
420
R R R R
R R
R R R R
R
R51
R R
R514
R
Α
R R
R R
Ν Α
R
R526
R
R528 R530
R
R533
R
R R
R R
R R
Α
e
Ckt 362
365 376 395 396
397 398
402 404
410 411 412
416
422 448
460 465
468
470 475 477 480 481
495 512
513
515 516 517 518 520
522 523 524 525
527
532
534 535
536 537 538
600 600 601
placeable
No
.
.0
E
lectricalParts---SG
Te
ktro
n
ix
P
art
No
.
315-0101-00
31
.5-0181-00
315-0471-00 315-0391-00
321-0126-00 315-0391-00
321-0126-00
315-0271-00
315-0271-00 315-0271-00
315-0103-00 315-0103-00
315-0271-00 315-0101-00
315-0150-00
315-0131-00 315-0391-00 315-0222-00 315-0222-00 315-0301-00
315-0511-00 315-0111-00 315-0561-00 315-0561-00 315-0561-00
315-0161-00 315-0391-00 315-0271-00 315-0271-00 315-0271-00
315-0271-00 315-0271-00 315-0271-00 315-0271-00 315-0391-00
315-0271-00 315-0271-00 315-0271-00 315-0271-00 315-0271-00
315-0271-00 315-0271-00 315-0391-00 315-0271-00 315-0271-00
315-0271-00 315-0271-00 315-0271-00 315-0271-00 315-0271-00
315-0472-00 315-0301-00 301-0220-00
Serial/Model
E
ff
Β
010100Β051229
Η
051
.230
ΧΒ
040000
503
No
Dscont
.
RES.,FXD RES.,FXD,CMPSN
RES
RES
RES .,FXD,FILM RES.,FXD
RES ., FXD
RES R
R RES.,F
RES.,F
RES ., FXD
RES
RES .,F R
RES .,F R
RES .,F RES ., FXD
R R
RE
R R
RE RE
R R
RE
ΑΕ
RE RE
R
RE
R R
RE RE
R
RE RE
R R R
Α
RE
R
RE
RES
RES
R
RES
,CMPSN:100
.,FXD,CMPSN:470 .,FXD,CMPSN:390
,CMPSN:390
,FILM:200
.,FXD,CM
ES.,FXD ES.,FXD
.,F
E
S ., F
E
S ., F
ES ., FXD E
S
.,
S
.,FXD,CM
E
S
.,FXD,CM
E
S
.,F
S
.,FXD,CM
S
.,FXD,CM
E
S
.,F
E
S
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Page 68
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__
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1_41
-42
-43
-44
-45
-46
-47
-48
-49
-50
-51
-52
-53
-54
-55
-56
-57
-58
-59
-60
-61
-62
-63
-64
-65
-66
-67
-68
-69
-70
-71
-72
-73
-74
-75
-76
-77
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220-0555-00
210-0224-00 210-0804-00 342-0265-00
131-1003-00 136-0252-01
131-1030-00 131-1031-00 210-0779-00
136-0327-01 136-0263-04 131-0589-00 214-2132-00
210-0406-00
210-0054-00 210-0956-00
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214-1797-00 344-0248-00
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210-0405-00 211-0180-00
337-2017-00 672-0447-00
213-0146-00 210-0261-00
263-1082-00
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1-79
_179_..
-80
-81
-82
-83
-84
-85
-86
-87
-88
-89
-90
-91
-92
-93
-94
-95
-96
-97
-98
-99
-100
-101
-102
-103
-104
-105
-106
-107
-108
-109
-110
-111
-112
-113
-114
-115
-116
-117
-118
-119
-120
-121
-122
-123
-124
-125
-126
-127
-128
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401-0113-01
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129-0455-00 131-0566-00 131-0589-00
131-0608-00 131-1030-00 131-1031-00 210-0779-00 136-0252-04 136-0252-04
136-0514-00 136°0260-02 136-0269-02 376-0011-01 213-0048-00 376-0172-00
213-0075-00
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214-1292-00
344-0154-00
337-2264-00 214-1061-00 426-0725-05
386-3657-00 210-1270-00
426-0724-08 210-0774-00 210-0775-00
352-0161-03
352-0162-01
352-0162-06
352-0163-01 131-0707-00
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ACCESSORIES
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OCT
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Page 75
Ε
FFSNΒ064290
C
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