Tektronix 7S11 Instruction Manual

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Tektro
COMMITTED
1X
TOEXCELLE
NC
@
E
97077
"
Tektronix,
Ρ.Ο.Box
B
eaverton,
070-0985-00
Inc
500
.
Orego
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ECHECK
THE
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ANUAL
.
N
7S11
SAMPLING
UNIT
INSTRUCTION
n
SerialNumber
MANUAL
F
irstPrintingFEB
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1970
JUN1981
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in
.
IP-
TABLE
OF
CONTENTS
SECTION
SECTION
SECTION
1
2
3
SPECIFICATION
General
Electrical Environmental
Physical
OPERATING
General
Installation
Mating
First-Time
Basic Basic
BASIC
Information
Characteristics
Characteristics
INSTRUCTIONS
Information
Operation
Equivalent-Time
Controls
and
Connectors Operating Information Applications
SAMPLING
Sampling
PRINCIPLES
Operation
Page
1-1 1-1 1-2 1-2
2-1 2-1 2-1 2-2 2-2 2-2 2-2 2-9
SECTION
Introduction
Basic
Sampling
Effective Traveling Dot
Response
Smoothing SmoothingofRandom Tangential Display DC
Offset
Real-Time Sweep
4
CIRCUIT
Introduction Block
Diagram
Feedback
Vertical
Techniques
Sampling
Wave
Noise
Sensitivity-Deflection
Sampling
Rates
DESCRIPTION
Loop
Output
Time
Sampling
(Loop
Gain)
and
Pulse
Amplifier
Gate
Noise
Amplifier
Factor
Chain
3-1 3-1
3-4 3-5
3-5 3-5 3-6 3-7 3-7 3-7 3-8 3-8
4-1 4-1 4-1 4-1
TA
BLE
Swee
R
ea
d
Circuit
TriggerLogic
P
ostAmp
M
emory Output R
eal Gate Read P
ower
O
F
CO
pUnit outLogic
Description
Time
Generator
outLogic
Drive
lifier
Amplifier
Oscillator
Distribution
NTEN
and
Attenuators
and
TS
Decoupling
(cont)
4-1 4-3 4-3
4-3 4-3 4-5 4-8
4-8
4-9
4-11 4-11
SECTIO
SECTIO
N
5
N
6
M
AINTENAN
Introduction P
reventiveMaintenance
General Cleaning
L
ubrication V
isual Calibration P
artsId
P
artsRe
Troubles
Intro
duction
Troubles Troubles Transistor
Diode
F
iel
d
Repackaging
PERFORMANCE
CE
Inspection
entification
lacement
p
h
ooting
hootingAid hooting
C
heck
Check
s
E
ffect
Transistors
forShipment
CHECK
5-1 5-1
5-1 5-1 5-1 5-1 5-1 5-1 5-2 5-4
5-4
s Techniques 5-5 s
(FE
T) 5-6
/CALIBRATIO
N
5-4
5-5 5-5
5-7
Introduction TestEquip ShortFormProcedure
P
reliminaryProcedure
C
heck
C
heck
C
hec djustMemory
A
M
emory
mentReq
-12 Interdot
k
DotRes
.2-Volt
B
lanking
ponse and
GateWidth(13460)
Gain
(C275)WithN
uire
d
P
owerSupp
ly
Smoothing
ormalizerHead
6-1
6-1 6-2 6-3 6-5 6-6 6-7
and
6-7
REV.Β,JULY,1977
SECTION
TABLE
7
CONTENTS
OF
Adjust
Adjust
Check
Check Check
Check Check Check
Check/Adjust Check Check
ELECTRICAL
Abbreviations Parts
IndexofElectrical Electrical
Memory
Memory
Variable
Smoothing
Deflection
Variable
Memory Vertical Vertical
Memory
Delay
DC
Offset
Real-Time
Ordering
Parts
Gate Width
Gain
Balance
Balance
Control
Overdrive
Signal
Gain
Slash
Real
PARTS
Symbols
and
Information
List
(R460)
(C275)
and
Trigger
Parts
With
(13305)
(13245)
Factor
Accuracies,
Range
Time
and
Recovery
Out
ChangeinSMOOTH
Sampling
Adjust
Amplifier
LIST
List
(cont)
and
Sampling
and
Adjust
Position (13325)
Head
GAIN
(13415)
Output
6-8 6-9
6-10 6-11 6-11 6-11 6-11 6-12
6-12 6-12 6-14
SECTION
SECTION
CHANGE
8
9
INFORMATION
Abbreviations
taken Units", industry.Change this
DIAGRAMS
Diagrams Mechanical
Repackaging
MECHANICAL
Mechanical
IndexofMechanical Mechanical
Accessories
and
directly
MIL-STD-12B
manual
.
AND
MECHANICAL
Illustrations
Parts
Instructions
PARTS
List
Parts
List
Parts
symbols
from
IEEE
information,ifany,
used
Standard
and
other
LIST
Information
Parts
Illustrations
in this
manual
"Standard
260
standards
is
PARTS
of
locatedatthe
ILLUSTRATIONS
are
basedonor
Symbols
the
electronics
rear
for
of
Fig.1-1.7511
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.
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angeinfor
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he
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hroug
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aracteristic
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CHARACTERISTICS
50,000
characteristics
oscilloscope
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manual
same
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meters
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and
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Finish Weight
Net
Front
panelisanodized
About2pounds(0.9
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kilogram)
.
.
Dimensions
Height
Width
Length
Approximate
tors
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PHYSICAL
dimensions
CHARACTERISTICS
5
inches
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3
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14
1/2
including
centimeters)
inches
(37
centimeters)
knobs
and
connec-
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Standard
the
last optional see
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About grams)
STANDARD
accessories
pageofthe
accessories available
Tektronix,
supplied
Mechanical
Inc.catalog
3
1/4
.
ACCESSORIES
with
the
Parts
for
use
with
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pounds(1.46
7511
are
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List
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on
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OPERATING
General
functionof front p ation a with Tektronix section.
sampling Oscilloscope real-time The
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Information
This
sectiondiscusses
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time
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ating
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he 7511Vertical
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Installing the
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eer or
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Fig.2-1
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Equiv
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system
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Operating
Instructions-7Sl1
FIRST-TIME
Equivalent-Time
Eq
uivale
nt time
p
rovidedby α
the
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t
h
e7Τ11Sampling
F
ig.2-1
t
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e
sampling
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Set the
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any
desiredposition.
Set
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A
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O
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Set
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ariable Time/Div Swee
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erticalModeswitchtoRight,
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idrange
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ine
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ully
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ep
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ATIO
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ead
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ust
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ives
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ivision.Verti-
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sarily
3-
the
Inreal-time
the
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relatedto
8
Sampling
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are
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of
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unit.Thus,
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the
in
put
F
ig.3-7
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ates
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7511
Introduction
This
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manual
Refer
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Fig.
fied
Un
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3,Basic
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themanualdur 4-1and blockofαtypical
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Sampling
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the
aspartofα
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R
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DIAGRAM
complete
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kdiagram
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3
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ofthe
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ot
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ulseisamplified
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again amplifiesth
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ansferredtothefeedbac
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he
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thefollowingdescribes
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ifference of small stretches signal
k Loop
Fig
.
4-1
signal
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signal
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anging.T
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oug
last
To
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outofth
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betweenthe
hePostAmp
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hthe
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ulse
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eMemory
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ust
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ain
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k(F ig
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4-1)isthe
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put an
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:
per
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ifference
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time-
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lify
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Sig-
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Vertical
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plifier d
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he
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u
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t
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Α
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ogic
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provi
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Output
The
I
NVER
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Drive
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he andsnap-off
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Sampling
unitwhen used
F
or dual-channel operati
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sweep
lug-ins
These
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circuits
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trigger
Amplifier
switc
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UP
oscilloscope
timi
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acent
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ofthetwo
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andtheMemory
thefreerunning
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h α
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p
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ertical
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7511mustbe
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Q
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Circuit
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p
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ual-channel
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and
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real
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op
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R
eadoutLogic
TheRead time-slot indicator control
N
ormal/Uncal,
The ScaleFactor
differences
lainedin
out
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the
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Readoutop
the
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O
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time op
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rovided
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Operating
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erate
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the
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The
diagrams
circuit d
in
Section9.
TriggerLogic
The
TriggerLogic
uators
circuitdiagram) associatedcom wardbias trigger
the timing
of
ispassedfrom
(seeFig.4-2Α) .
ger switch
grounds
collectorofQ108
biasedby
current
circuit
consistsofQ108, Q113,
onents.The
p
the
The
Internal
the
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through
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b
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7511issu R
115
sets
Setting removes clamps
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the ground
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reverse
at
clamps
Q116
TRIG
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C
the
lamp,
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two
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7511provides
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and
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DESCRIPTION
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unit
samplingheadto
R102
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R
116
for
with
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through
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7511isused
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Time
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Time
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Section2.
the
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7511
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and
Atten-
Q116
the
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is
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than
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115
are
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indicating
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unit to
ΕΧΤ
113
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reverse from
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7511
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the emitter, +15.6volts
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R109
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the
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Operationofthe
E
xternal
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ation
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Switching
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The
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the
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7511
ΙΝΤ
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Post
Amplifier
The
Post thePost Offset,
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ThePost
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F
orwar
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Out
N
ORMAL/SMOOTH
theForward
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trigger
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Selectionofthe
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the timing
p
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triggerisap
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unitprovides
multivibrator
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p ositive
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pliedto
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current
.Pushing the
triggeronQ108
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Q108
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7511isthe
withαsingle
7511
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unit
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in
trigger
same
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7511
Internal triggeroper-
switchtoone
the
R109
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stateinwhichitwas
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stateinwhichitwas
placedat
button
andAttenuators
d and
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F
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.
diagram
Atenuators,
.
isαtwo-stage
AC
coupledcomplementary
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an
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Ω,whichproperly
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Total
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signal
unity
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amplifier
emitter
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d
AmplifierisAC
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artoftheUnits/Div
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p
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currenttothe
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transistors,
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Circuit
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R142
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for
time constant
switch
output
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andamplitudeconsi
DOT
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introduces
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loop
gain
500Ωload
Fig.4-2.Trigger
consistsofthe
control, nits/Div
the
U
R
141inseries
reducing
in
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theNORMAL
the
on
erations
d
loop
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Logic
circuit
.
TheForward
through
d
riving changedbythe seven
R145G,
side.The
forwardattenuator
steps.Sixofthe connectiontoground, signaltothe across
AC
the
forwardattenuator
ground)doesnot
tionischanged.Attenuation
.
currentdrive
into
Attenuator,
presentsαconstant
input
ma
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resistancetothe
from
seven
resistors
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seventh
of
resistorsR145A
500Ωload
AC
1kΩto100kΩ
are
always
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Amplifier input.Signalpulse
input
resistance
change
the
when
theUnits/Div
occurs
becauseofαchanging
low
impedanceoftheoperational
to the
Amplifier
in
inparallel
withthe
amplitude
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switchposi-
AC
is
Circuit
Description-7511
S
W
141
B
S
M
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H
S
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ACAmp
Input
Terminal
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Imp
Zero
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4-3
F
F
ig
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Amplifier wor
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R
145.Thegain
200
is
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ORMAL/SMOOT trolch gain
ted
b
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The Feedbac
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p
laces output groundasslig ation
p
asstot
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tothe
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resistor
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k and
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T
he Forward
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.Fig
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app
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he Sampling
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arallel
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Amplifier input terminal
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gainiscontrolledbythe ges
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the
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very
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resistorsinseries
heothersix
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2000Ω.Maximum
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B
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.Minimum
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R149
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ere
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emory
attenuator
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M
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ator
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emory
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bythe
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or
its/DivForwardAttenuatorisactuallytheACAmp
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ator
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TheDC
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ensurethattheloop
:100
he U
nits/Div switchrange)
Circuitisα lowerthatconverts OFFSETcontroltoα Q163
emitter DCOFFSET 22
.4kΩ ance,R165 ator.Thusthe
voltage
control,
resistive
(19
.1
k
DC
load,
Ω)and
velopsαfixedvoltage
Ω
regardless
M
emory
oftheUnits/Div
Thememorydiagram
M
emory
Gate,
and
theMemory
p
The
AC
t
he F
orwardAttenuation
tional
amplifier followersatthe Q208
emitter
signal,
and
lifier
Am
with
outp
follower
Q212-Q214providethevery
ance.
Theamplifier theamp the ch switch.
lifierDCo
anges
Q204base
operationalamp
inputisAC
p
made
lifier.Asαsignal
.
single
transistor
the
fairlyhighresistance
fairly
low
resistanceatt
followsthe
offsetby-0
consisting
2000Ωof ETvoltageatQ163
OFFS
acrossthe F
voltageoft
volt.Q163
.6
Q163
of
t
heF
ee
dback
switchsetting
includesthe
Amplifier
(wh
ose
gainisdescribedabove
N
AC
ut
adds
etwork)
cou
.
Q204
current
p
ledcom
coup
isaninvertingop
plementary
isthe
gaintoQ204
ledby
eratingvoltagestobe
ininput
the
is
resistancebyth
summing
inputterminaloft
arrives
gainisnot
emitter
ofthe
he
he
arm
output
ee
dback
emitter
Attenuator
.
AC
Amplifier,
.
voltageamp
low
outp
C201
topermit
in
de
p
endent
eUnits/Div
d
ch
angesthe
an
lifier
altered
fol-
DC
emitter
.
of the
drives
α
resist-
Attenu-
de-
2000
the
wit
h
era-
emitte
r
lifier, collector utresist-
of he
4-5
Circ
u
it
Description-7511
Fig.4-4
AC
.Basic
A
mp
Memory
lifie
r
Gate
circuit
between
Memory
Gate
AmplifierandMemoryAmp
AC
M
emory
C275-C276
F
eedback
lifier.(Detailed
block
of
M
emory
diagram
.)
base
voltage,
d
irectionand
p olarity
and
feedback
base
voltage
to
the limits not
receiveαsignificant
p
ulseamp
CR201
removedfrom
are
through
Memory
the
signal
litude.
almost
an
the
Q208 signal
d
removed,andC siticsupp an
that
except sample.During
low imped charge
ressing resistors
dR214
TheM
.
emory
ensuresαvery
for
ance
into
theMemory
about
Fig.4-4isα
Memorydiagram
coil
resistor, α valueofthe four
gatingdiodes equivalent when
thereisno
Looking
the
four
andαrelay
four
circuit
from
gating
collector R209
constant
Gate by
outp
voltage
emitter
back
currents
Q212,
current,
ut
charge
changesintheopp
d
rives
current
the
Q204
to
nearlyequal,keeping
are
.
The
output
Q214andR
ensuring
for
output
CR206provideprotection
their
sockets
R206
cond
Gateisαsp
h
igh
.15
0
the
conduction
that allows
CR201
.
uctsifQ204isremoved.Para-
R
include
206,R207,R211,R213
ecialpulse-drivendiodegate
input
resistancetothe
to0.20μs
time,
at
theMemory
theACamplifier
.
etailedblock diagramofthe
d
.
The
shows
error
the
dio
Memory
biasing
are
that
signal at
Memory
desare
switch.The normally
Gateisre
resistors
the
Memory
sample
Gate output
normally
resistor
which
not cond
time
reverse
of the
opposite
base.Theinp
signaliscoupled
219-C219
that
signals
when
.R219
C219does
ofhigh
transistors
conductsifQ208
Memory
the
time
of
Gateisα
introduce α
to
circuitsonthe
resente
is
the
ucting
zero
is
d by
parallel
that
.
p
ensure
input
.
towarditsinp
biase
d by the
osite
ut
the
is
eac
h
the
This
volts
ut,
voltageofZenerdio provideveryhigh
t
heydon't turn
the
endofthe
h
igh
resistance ancedto rests at+2.5 C221
ensures
d
both
si
The
Τ
230atthe timeofeach
from
the
formersp coupling
only
oneend
The
magnetic
Thus,
thedrivepulse
to
ensure
atelydivi
j
unction
lie
d from
app
limitingdiodes
d
iscussedin CR232 self-inductance
α
ends
.
T
he
amplifier
putcircuit.The itors,
making
nalhigh
ground
voltsand
es of
the
gate
diodes
Memory
ecially
to
the
that
es the 5
d
of
CR237-CR239
the
are
shunt,dam
M
emory
with
gain
ensures
e
VR221.(Two
d
reverse
off gating
when
by
very
reverse
d
biase
fast.The
ulse,
p
biased) .
R
224
andR226soCR236
CR238
that
the
AC
Amplifier
memory
are
gatediodes
forward
sample
Gate
Driver
woundto
two
connectedp
toroi
d
outp
the
the
AC
balancecap
secondary
rovides coreprovides is
convertedtoid
utjunctionofthe
volts
of
VR
at
ground
Amplifier
CR224-CR226 Memorydescription
ing loadstoΤ
p
ringing
when
amplifierisan
s
p
ecial
low
leakage
input
and
feedback
input
α
very
impedance
low
the
AC
es
dio
d
although
at
fast
leakage
other
of
the
four
resistance,
two
turn
off
althoughtheydon'tprovide
VR221
voltageisbal-
cathod
anode
rests at-2.5
output
signal
volts
drives
.
biasedinto
conduction by
duetothedrivepulse
.Τ230
isαtoroidal
acitiveandind
windings.The
thecap
acitive
theind
entical d
fourdiodes
221-C221
.
This
whennoerror
The
functionsofthe
.
and
the
Memory
next
.R229,
230
which
the
memory
gate
integratingop
(highDCresistance)
com
ponents
very
output
resistance;so
uctive
low.The
winding
balance balance
rive
places
signal
Gate
R 231
minimize
rivepulse
d
erational
are
trans-
uctive
with
signals
accur-
the
two
are
an
in-
capac-
inter-
that
e
.
. .
is
d
as
4-
6
longasthereisno c
voltage
DC
M
remains
connection
emory
Gate
conducts
TheMemory
p
owersupplies
can
requireαcurrent
h
output
R
261-C261
and
M
emory
angeatsample
c
and
fee
dback
output
Theinductor
h
ave
toprovi
t
he outputsignal
de
.Theinp
stable
to
ground
lifier
am
p
because
p
R267-C267
lead
presents
forhighfrequency
ensuresthatt
h
ighcurrenttotheoutput
response,
blanked.
Α
dualjunction
biased
for
essentially stagehashig Any
voltage
and
appliedtothe
h
change
FET(Q242)isthe
no
voltage
gainatthein-phase
at
invertingamp
circuitappliesproper complementary storestheDC
left
sideofQ242)isalso
tor
t
he
Q262-Q266
and
rangeof+10to-10
B
ecauseoft
fierdoes
h
ave.The
t
hantheMemory
gate lead accepts
fier,
stores
en
loses
t
h
Α
cycleofoperation
sequence
α.T
he
same
time TheCRTis delayth
roug short.(Thefact at
zero
volts,
volts,
prevents
emitter
level
negatively soαzero
output
hehighopen-loop
nothavethefast
AC
Amplifier
Amplifier
some
untiltheMemory
it
e c
t
h
h
arge
again
:
emory
M
the
Gate d plingBridgeisstrobedinto
Sam
kedduringthissame
blan
hethree
h
t
heMemory
that
t
h
d
any
t
e
M
falsech
an
Therefore,thereisnc ch
p
ut
voltageduringthe
ah
eadofthe
b.TheAC
R
219-C219
input.C239
begins
ktotheinputth
bac
arrivalofthe
Amplifierappliesαpulse
h
eMemory
and
t
p
ts
acce
to
respond,drivinganeq
someoft
roug
h
ange
attheinput,the outputDC
ut
lea
k
low
age
exceptduringthe timethe
.
is
specially
the outputstage
ulseasgreatas30
time.T
.L268inthe
decoupledfromthe
(Q262
mA
hedecoupling
VERTSIGOU
αhighimpedance
(fastch
he outputamplifierdoes
load.L268
butatα timewhentheCRT
input
leakageattheinput
outputdrain
the
left
Q242
gate
leadisamplifie
lifier
Q256.Q256
oth
bias
to
follower
b
pair,
basesofthe
Q262-Q266
input
zero
outputsignal.Q256
α
leadoperate
volts
.
gain,the
linearlyth
M
risetimethattheprior
output
pulsedurationiss
risetime.C239
ch
arge
ofthe
d
uetofeedback
at
sample
rive
pulse
fromtheACAmpli-
amplifier
can
current
timetakesthefollowing
arrivesatessentiallyth
time
AC
coupledamplifiers
amplifier
emory
Gateisbalance
in
anges
angeinthe
time
the
AC
Amplifier
Gatetot
he ch
hthefeedback
C275-C276ch
M
emory
M
emory
output
heMemory
arge
until
ual
andopposite
capacitors
circuithas
and
forα20
networks
no
Q266)
volt
are
tothe
ange)
signals
not
slows
stage.It
gate,
an
d
t
he
lead.
collector
outp
ut
and
re-
signal
(atthe
collec-
roug
emory
Ampli-
amplifiers
h
orter
Q242input
at
respond,
an
.
conduction
.Propagation
isquite
inputisalways
d around
zero
arge
amplifier
Gate
signal)
signalth
out-
conducts
.
roug
amplifier
theamp
lifier
current
.
Circuit
T
.
ε.Since
M
emory
receivesab theMemory fier of
C219
ch
arges
Ifthe
full
ing
en
d
ing
rocess
p
the
AC
Amplifier
out
10%ofthe
Gate
stops
Amplifier
"virtual
out
pu
signal
total
error
conducting.Thus,astheACAmpli-
outputreturnstoitsquiescent
overshoots.The743Ωofth
C219
wellinadvanceoft
7511
isdisplaying
graticule
at
the upp
wit
retrace.Such
sam
p
ling)
hth
er
large
apply α
edisplay right,the
error
he next
single
α
startingatthelower
error
signals
significantch
signal
t
ground"input,
voltage,the
transition stepoverth
signalisvery
(even
arge to case,theovershootatthe endofthe large
is
conduct fee
diod
is
CR greatαcharge thuspreventing
d
d
o
removed theMemory
h
p
roper
M
turnedto the
be
d
Any
d
ifferencesinconductionoft
enoughto
andremove
dback
ca
esprevent suchundesiredremovalofmemorych
224
d
an
not
conductatanyothertime
d
.
Asth
by
amplitude
emory
next
Gate
sam
Theactual
p recisely
deviation
cause
one
some
p
acitors.Two
C
R
226helptodischarge
normally
duringtheMemory
falseamp
litu
sideof
of
de d
theMemory
the
intendedch
non-conducting
C219ifit
Gate
isplays.These
.
eMemory
the
Gatedrive
M
emoryamp
p
ulse
lifier
feedback.This
outputvoltagetocontinuechanging
for
α sh
ort periodoftime
stops
cond
ucting.Assoon
normal,theoutput
p
le
.
resting
voltageatthe
zero,
but
it is
from
zero
voltage
withinαfew
can be d
left
ue to
heMemory
slightdifferencesinresistanceofthe
e
.
biasing eachsample is
range theright
adj
M
resistors;some
time
even
Q242
right
zero
.
to
allowth
Q242
gate
e above-normal
gate
voltageiscalled
ustment,becauseitis
emory
amplifier
outputwhentheforwardattenuation
small error
whenthe
voltage
signalbeing
samplingheadinput
d
is
a
variations
the
setsothereisno change
changed.Theforwardattenuationischanged eitherthe NORMALorSMOOTHswitch.Whatever zero-input
h
.
as
c
h
arge
amplitudeofthe
voltage
toequalthe signal,
h
SMOOT
M
setbytwodiodes
error
average
an
.Chan
zero
andthe
H
switchispushed
emory
signal
may
valuethatwill
gingtheforward
residual
error
value.Therefore,
average
voltage
tracedoes
not
.
output
voltage
inparallel
existinthesystem,italways
not
alterthe
attenuationch
signal,
Q242
gate
zero
valueoftheresidual
movewhent
limitsofabout
wit
hthe
feedback
Description-7511
is
app
liedtothe
C219
signalcharge
before
output
eMemory
error
Gatedis-
signal
.
leftand
largedur-
during random
C219.In
signal
pulse
error
Gate
argeint
clamp
arge
receives
conduction
time,
twodiodes
en
d
C239ch
s,
arge causes
toward
afterthe
as
C239isre-
remains
Q242
fixeduntil
gate
may
millivoltsofzero
severalth
fourMemory
ings:slight
Gating d
iodes
Gate
generatedat
signal
j
ustedoverαsmall
ustme
h
ing
ntof
Balance
.
Smoot
Adj
by push
small
memory
store
angesthepea
but not
voltageisadju
its
average
sted
error
he NORMAL
+10
and
-10
capacitors
side
e
this
is to he
.
too
is
not
. ;
in
is
ing
d
k
or
are
.
4-
7
CircuitDescri
The d
iodes,CR272
volts
each.Iftheout
a
b
out
+10
reducingthe
tion-7511
p
volts,
amplifier outputtriestogo CR272 than1. tors
thus at
from
ensure
t
henext
conducts,
The
clam
saturatingatthe
fast
sample
and
CR
274,
put
triestogo
274
CR
reducing
p
transition
conducts(9+0.6
gain to
more
muchlessthan1.Ifthe
negativethan about
theamplifier
i
ngdiodespreventthe
time
of an
away
fromthe clamped
.
more
biased
p
are
reverse
= 9
gainto
amplifier
overdrive signal,
ositive
volts)
.6
-10 muchless
transis­voltage
by
9
than
volts,
and
common adjustmentch
push-pull the mum emitters.T the under
emitter
circuit
stage
is
gainoccurs
heVa
base of
Q334sot
no-signal
circuit
angesthecurrent
forαcenter-screen
controlledbytheVARIA
with
r
iableBalance adjustment
conditions.This groundreferencesh controlisturned
.
of
Q314
minimum
h
atnocurrent
ift
of the
and
Q334.ThePosition
t
h
h each
roug
outputvoltage.Gain
BLE
resista
nce
betweenthetwo
setsthe
flowsbetween
t
ensures
hatthere
tracewhen the
sideofthe
control
V
ARIA
of
.Maxi-
level
on
emitters
is
no
BLE
CR242 socketwhilethe thesource compensation
by
the
C
R
259.Q252isan causesthe twicethesignal
Q252 two th
eir change.CR257 coefficients tions,
T outputjac ofthe VERTSIGOUT,0 signalisthe 3,
andis0.5
V
ertical
TheM
equals
when of
designed
on-screen
and
accurate
even
the
Output
TheOutputAmp
p
ut
T
I
NVER
conducts
onlywhen
powerison,th
leadswhenQ242
ofthe
amplifierisaccomplis
source-coupledFETi
active
signal
currenttot
current
also
servestospeedupthecircuit
identicalhalvesofQ242
d
an
oes
d
C
R
total
current similartoQ262
us
andth
heMemory
memory
stabilizetheoutput
amplifierdrivesthe
kth
roughα
resistive
signalth
.2V/DIV,
standar
d
d
eflection
volt/CRTdivision.TheMemorydrives
Outputth
emory
40
operating
OFFSET
DC
DC
though
CRT
roug
output
CRT
divisionsofdisplay
athigh
.
The
for
full
response
displayshave
offset
reference.Such
signalsatthe
much
.
htheInver t
Amplifier
lifier
andthe
he V
ertical
T/+UPwhic
Real
Trigger
Time
putamplifier
Out
h
sets
circuit.TheVerticalOu
b
stage
V
ARIA
push-pull
BLE
alancedcircuit.The
gain
control
Q242
uskeeping
ispluggedin
nputamp
loadfor
he b
aseofQ256
Q242.This
outofthe
p
com
notch
ange with
259
have
j
unction-drop
andQ266
circuit
attenuator
roug
h 10 k
10kΩ.The
signal
switch.
ΝΟΤΕ
limitsof±10
sensitivity
whole
pulse
and
fast
accurate
front
panelVert
of
the
signalisnot
diagram
includesth
.
followstheIn
thesignal
tputamp
pathfromtheMemory
lifier
andthePosition
removedfromthe
is
-50 Temperature
.
effectively
hed
lifier
an
d
C
active
to
of
Q242
drain
response
ensate
eac
h otherso temperature temperature
base-emitterjunc-
.
frontpanel
d
elivers
that
Ω
.
e
T
h
j
ackis la
memory
mentio
nedin
voltsata5
required
area,
and
many
divisions
amplifier c
recovery
deflection
operation
so that
provides
Output displayed
eVertical
vert
consistsofα
first
stage
includes
adju
stment
volts
off
R
257
an
load
be
about
right
time.The
vertical
40%
b
ele
output
Section
the
Vldiv
hain
is
factors
ack,
j
on
Out-
switch,
two-
the
i
nth
Thesecond cludesthe generationofQ344 appliedtothe
d
source
.
stageoft
GAI
N
oscilloscope
he V
a
d
ju
stment,which
and
Q354.Thepush-pulloutputs
ertical
vertical
Output
amplifier
variestheemitterde-
amplifierasα
current
in-
are
.
d
e
T
he R
eal
Time
b
alancedcircuit
t
he V
ertical
signals
are
scope
interface
Gate
Generator
T
he Gate
Oscillator
fromthe
p
ulse
t
heinitial
Delay
circuit.T
proper the Time
time-positioningoft
error
Oscillator sampling unit
.
T
heMemory
lator
(Q430an
the
risetime
ling
sam
p
occurs,
Q430iscut
arriving p
normal
amplifier,
viaCR430
rentth
roughΤ
generate
d
wit
Output
appliedtothe
.
Generator d
M
emory
an
d
sampling
sweep
heMemory
signals
oscillatesatabout 47.5kHzto
process
Gate
d
associated
damp
an
sweep.Un
ulse
causesth
quickly
430
i
nthe reverse-biasingofCR cut
offwhenthesam
TheMemory
current
amplifier
Trigger
trigger
are
w
butthe
secondaryofΤ
Gate
(Q452)
am
h
push-pull
amplifier.Positive
timing
iagram
Gate
sweep
eve
n
Gate
h
datthecorrect
gate
hen
drive
Driverisprece
components)wh
litudeofthesam
tilthe
off
and
its
transistortostart
e
regenerative
Q430
drives
hesα
reac
.
Q430
430
ling
drivepulse
p
Driver
a n
(Q456-Q464).Atquiescence,
AY
(determi and+15 whichis
nedbytheD
volts.The
current throughQ542isabout
insufficienttoforward-bias
holds thebaseofQ456
EL
con
at
-15.6volts
lifier
p
input
unitth
includestheReal
Driver.Thesampling
unit
t
and
further
Driver
eMemory
n byαnon-sampling
ded by α
ositive
p
collectorisat
into
steady
value,the cou
430isstop
remainsinsaturation
circuit
α
monostable
d
thebase trol
and
(Q362
fromthe
Q366)isα
first
andnegative
roug
hthe
slewedin
is
time
delayedinth
circuit
providesth
Gate
pulsesothat
time.T
start
b
k
ing
loc
h
standardizes
ic
ling
pulse
+15
fromthe
drive
volts.Th
p
sampling
conductionasα
feedbackfrom
saturation.Asthe
ter-
n
ped by
ends.
consistsofα
multivibrator
voltageofQ452
setting)
isbetween
Q456.Dio
ensure
to
d
eCR
stage
of
trigger
oscillo-
Time
d
rive
from
heReal
t
he
swee
oscil-
pulse
Τ
430 cur-
EMF
t
h
n
til
u
low-
+11
mA,
1
455
thatthe
e
e
p
e
e
4-8
M
emory
Gate
Driver
outputdoesnot
controlischanged.Q464isreverse­throug
h R
461,R460(M
CR
462andR462,
voltsby CR
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repairable
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Rotary
of rotary switches
ityofreplacement
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Switches
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lectrical
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U
se
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it
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itches
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ormal
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erly
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heatthe
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cut theleadssot
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small
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leads
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are switches.Remove
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xcess
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Incandescent
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M
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rating
Observethefollowingpr
:
1 .Applyonly
.
2.Apply solder
nand α
an
d
t
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erheat
sink.
area
aroun
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b
ulbsfor
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tothe
the
als,potentiometers, etc
n
withα1/8
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enoughsolder to
only
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small
firm
solderj
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solderjoi
circuit
screws
nt with α p
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hesolderedconn
removeinformation
lightingthe
board
and
inchwi
ecau
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amount of solder toth
oint.Toprotectheat-
leadbetweenthe
airoflong-nose
environmental
pus
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on
the pushbutton
covertoexposethebulbs
metal
terminals
.),
ordinary
ironsh
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de ch
isel-s
haped
tionswhensoldering
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ection
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ave α40-
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ead metalchassis therear shaft control cuit atpinsΑ,
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eadconnector, Pull ingthewires hang-up onthenotches, outsidet
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assembletheVARIA tightenthe
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TheInterface
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andliftthesh
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k
connections
wire
the
assembly
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Interface
watc
final
location.Installand
connectthe
an
allthe
screwsgradually,
turnat
loosen
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Βand
for
boa
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screws.Solderthe
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set
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assemblyboar
(or
remove)thephillipshead
fixe
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the
Removethe
connector
g r
identification.
gently
connectedtothemovableshoefor
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wires.Installthe
n
stall
screw
guide
in).T
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removedfor
ound.
.Unsolderthe
liftingthemaway
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fromthe
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r
eplacement
lacingthewires
connector
the
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BLE
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ten
all
screws
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thenremove
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andplacingthem
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removal
Disconnect
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samplingheadconnectorpins
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Inter-Cha
ofpin
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for
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finger-tight.
removed
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ly
board to the
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set
screw
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shaft
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nel
Control
conn
pin-a
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from
the board
sothey be
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terference
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tightenth
connectorin
board.Re-
coupling
(asinthe
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as
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illips
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to
the cir-
ections
tape
d-connec-
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to
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Ifαwire extendsbeyon
3
.
excess
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4.Cleanthe
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aged all number pletelywir
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hesprings.Chec ment.Replace theholes screwstoovercomespr
solvent
Circuit
d
cannotberepaired,theentire
an
soldered-on
given
Replace
withattentiontothescrewswhich
r
ews
are gradually
oes
notspr
over
flux
.
Board
R
eplacement.Ifαcircuitboard
componentsshouldberep
intheMechan
edboard.
h
eVertical
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the
centercir
loosenedsothecir
ingupat
oneturnatα
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the
circuit
the p
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fromthe
and
one
withpressureonthearea
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assembly
icalPartsListisforαcom-
Inter-Chan
cuitboard.Becertainthatthe
end and
timetoequalize
board
resista
nel
cuitboar
cause d
are
straight
withcareful
nce
forthe
clipoffth
with α
laced.Thepart
Control
amage
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initial
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Introduction
The troubleshootingof othersections shoul
informationtoaid
understa
locating
operationofα
Troubleshooting
Diagrams.Completecir
out p
agesinthe
and
electrical
areshownonthe
y
seriesofcomponent cuitsinthe
assigned to shownonthe
e
circuit
on
TRO
UBLE
SHOOTI
followinginformation
the 7511.Informatio
used
d be
inlocatingthe
n
ding
of thecir
b
les.Seethe
trou
particular
Diagrams
valueofeachcomponentinthisinstrument
7511
each.Important
diagrams.T
boards are
cuitoperationisveryhelpfulin
Circuit
circuitisnot
Aids
cuitdiagrams section.Thecomponent
diagrams
.Eachmain
numbers.Table
andthe
enclose
seriesofcomponent
voltagesand
he p
ortions
d with αblue
NG
isprovidedto
n
along
withthe
defective Descriptionsectionifthe
com
clear
.
are
givenonfold-
circuitisassigne
5-1
lists
waveforms
circuit
ofthe
line
facilitate
contained
followi
ponent.An
number
t
hemain
n
umbers
are
mounte
.
in
ng
d α
cir-
also
d
5-
4
Ο
M
aintenance-7511
Component
Com
ponent
numbers
on
diagrams
101-149
201-299 301-399 401-499
501-549 601-649
n
g
Troubleshooti
troubleshooting
This
hch
ensure
ecks
with
whic ceeding
checks Ifthetrouble steps
aidin defective lowingthe
1.Chec
com
replacementprocedures
k indicateαtrou rect gain,
op
or
setting
of
etc.Ifth
erationofany
sectionofthis
2.Chec
with
ment
k
troubleshooting
usedwith thesignal connecting source
3
instrume
cables
.
V
isualCheck
.
ntinwhichth
Techniques
the simpletrouble
extensive
p
roper
connection,
is
not
locatedbythese
locatingth
ponent
Control
Settings.Incorrect blethatdoes not t
heVA
ereisany
control,
.
manual
Associate
he
7511isoperatingcorrectly
t
roperly
is
p
are
.Visually
canbelocatedbyvisual nections, components,
brokenwires,
etc
.
BLE
TA
5-1
N
umbers
Diagram
number
1 2
3 4 5 7
procedure
is
possibilities
h
troubles
ooting.Thefirst
operation
edefective
is
located,its
com
h
given
exist
RIA
BLE
control
q
uestion
dEq
ofth
aboutthe
seethe
Operating
uipment.Before
e 7511, check
connected
not
defective.Also,chec
checktheportion of
troubleislocated.
e
indications
d
amagedcircuit
suchas
Circuit
P
ost
Amp
&
Attenuators
emory
M
Output
Amplifier
Gate Generator
R
eadoutLogic
Power
Distribution
Decoupling
&
arrangedin
beforepro-
andcalibration
checks,the
ponent
ouldberep
remaining
.Whenthe
laced,
inthissection
control
F
.
appears
or
example,
settings as
correct
Instructions
p
hatt
he equip-
t
.Chec
andth
the
at
t
k
Many
unsolderedcon-
boards,
an order
few
fol-
.
can
incor-
incorrect
function
roceeding
kth
at
inter-
h
epower
the
troubles
amage
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Transistor
Transistors
allydefective thetransistor leakage.Tocheck α useαtransistor tronix checkeris found by by
measuringthe
p
roperohmmeter
tution
met
t
heparts
Tocheck emitter-to-base mineift ances
and
configuration
lead
.
Wh
en checking thevoltages makingt out
firstcheck
immediately
DiodeCheck
dio
Α
tion
by
mmeter
o
h
volts,theresistancesh and
very
d
Checks
not
be
should
Transistordefects
.
opening,sh
transistor
curve
Type576
not
or
readily
signal-tracing,byma
transistor
resistance
hod.Thelocation of
location
figures
transistors
and
emitter-to-collector voltages
e
voltages
h
currentsinthecircuit
inFig.5-4
transistors
supplied
substitution.Ifαtransistorissubstitutedwith-
he
out
ing
be
d
amagedbysomedefectinthe
replacedunlessthey
usuallytakethe form
orting,
dis
p
575
.However,ifα
available,
forth
lay
instrument
α
k
ing
d
ordeveloping
ese
andoth
efective
in-circuit
forward-to-backresistance
ranges,orby
transistorsisshown
all
this
section
later in
usingαvoltmeter,
are
consistent
hthenormal
wit
F
(see
ig.5-3)
.
substitution,
by
thetransistor
to
t h e
circuit,thenew
are
erdefects,
suchasαTek
goodtransistor
transistor
voltagechecks,
using thesubsti-
.
measurethe
.
be sureth
normal transistor
circuit
s
de
bechecked
can
foranopenor
measuringtheresistance
scalehavinganinternal
ould
be
the
leads
lowwh
en
are
between
veryhighin reversed.
shortedcond
terminals
sourceofabout1.5
one
are
actu-
excessive
can be
using
and
deter­resist-
Note
before
may
.
.Withan direction
of
-
in
t
he
at
i-
4.CheckInstrument oftheinstrument, existsinone resultofmisadj Complete of
this
5.Isolate
α
circuit,
identifiesthe
trouble
circuit
ustment
instructions
manual
.
the
Troubletoα
notethe
circuit
symptomsapp
affectedcircuitsbyta
Calibration.Chec
orthe .The
trouble
affectedcircuitifthe
indicated
or
maybecorrectedby
are
giveninthe
symptom.The
Circuit.To
kthe
trouble
Calibration
isolate
calibration
may
calibration
symptom
inwhichthetroubleislocated.
earinmorethan
k
ing
voltage
and
one
circuit,ch
waveforms
trouble
onlybea
section
trouble
often
Wh
en
ec
ings
rea
d
to
.
k
Fig.5-3.In-circuit
.
voltagechec
ksΝΡΝorΡΝΡ
transistors
.
5-5
M
aintenance-7511
not
d
E
ffect
M
emory
d not
the
180°and
either
good.
Actual
useanohmmeter
.High
tunnel
tester
Curve
currents
(such
may
diodes
as
Tracer)
Transistors(FE
Amplifier
be
ualFET,
d
re-insert
teste
d with
it.Theleads
field
pull
unit tobeinstalledwit
or
forward
backwar
both
sectionsofthe
conditionofeit
withanohmmeter,-useαdy­Tektronix
.
t h e
Do
current measure namic
Transistor
F
iel
h
oul
s suspect it topermitthe ing circuitoperation, ably
checkedusingαTektronix Tracer.T Collector, sistor atthecurve
he Gate
an
d Source
correspondstotheBase,
totheEmitter ofanor
tracer
soc
scale
thathasαhigh
damage
the
Type
diode.Do
576
T)
effect
transistorsinthe7511
anoh
mmeter
unit
outofthe
are
d
.Ift
h
erhalfofαdualFET
Type
.Rather,ifyou
socket,
arrangedinαmanner
hthe
guidepin
h
ere
isnoch
FETarepr
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Transistor
576
Draintot
k
ets
.
internal
not
or
575
ange
can be
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inary
rotate point-
in
ob-
Curve
he
tran-
t
heType576
Set V
ertical
Current/Div
Display
Offset
CenterlineValue
Display
Invert Zero Cal
H
orizontalVolts/Div
MaxPeakV
W
P
olarity
M
o
de
N
umberofSteps
olts
atts
OffsetMult
Step/Offset Offset
Amplitu
Zero Steps StepFamilyRe
R
ateNorm
M
ult1Χ
Ste
p
Step/OffsetPolarity V
ariable
Collector
E
mitter
Groun
Install
TestFixture
FETTestFixtureinthe
the
d
an
Curve
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controls
1
mA 0 Div
elease
R R
elease
R
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1
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15
0
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orm
10
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Supply
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e
Invert
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P
resse
P
ressed
R
elease
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resse 0 StepGen
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t
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:
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F
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)
ig.5-4.Lead
P
ressthe Step letion
De
p
E
h
ancement
n
Turn
family
d d d
d
d
switchforαmaximum lessthanthemaximumpower
Increasethe
(1)
SettheVariable terclockwise
(2)
Install
Stan
F
dard
ixture
.
(3)
Set
576
Test
range
configurationfortran
GeneratorPolarity
modeofop
modeofoperation
theAmplitude
of curves
isdisplayed.
collector
;
rotective
the
p
the
Max
P
eakVolts
;
sistorsused
erationorrelease
.
switchcounterclockwise
Setthe PeakPower
collector
su
ratingoft
ly
su
pp
voltage
Collector
box
Supply
and
closethelid
switchto tothedesired
i
nthe7511
Invert
the
plypower
p
he
as
follows
controlfu
.
button button
forthe forthe
until
W
atts
output
of
FETundertest
:
lly
coun-
;
voltage
α
.
TurntheV
until
about
5-6
ariable
voltsisdisplayedhorizontally
10
Collector
Su pplycontrol
k
wise
cloc
.
(4)
TurntheV untilthe
ariable
Collector
desiredcollector
Supply
su
pp
control
ly
voltageisobtained.
clockwise
Turn
the
Amplitu
h ig herd
Small-signalgm switchsetting (note tical
separation
M
ajor
Theremainderofthis sectionsofthe components circuitnumbers.All by
pin
the g
Circuit
letters
rain
current
divided
m
PER
two
of
andPartsLocation
7511
mounted
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switch
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.
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of t
by
V
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curvesoft hedisplayedfamily
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.Major
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circuitboar
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TisequaltotheVertical
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circuit
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connections
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den
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If Service owner firm number
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ainte
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ktronix
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instrument
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instrument
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The
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instrumentis200
poun
s
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.
REV
Y,
,
JUL
1977
.
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5-7
Maintenance-7S11
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Page
6-5
.
Page
6-6
satt
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to un
Page
Pageδ-8
ampli-
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121
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6-7
6-7
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Page6-10
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Installthe
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Connectthe7511 extender,theninstallthe compartment
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Turnonthe p
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ode
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samplingheadconnector,
The
-122-Volt tolerance are correctin specifications without ment
testedinthis
strument
loss
meets
.2-Volt
are
controlsasgiven
and
pe
switchto
α 1
Power
not
applicabletot
begin
uiredissh
re
q
V
erticalModeswitchtoLeft
Β
.
Χprobe
seeFig.6-4
power
typical
operation
Actual
.
of
t
h
procedure
values
measurement
e
specifications
Suppl
y
HECK
underPreli
theperformance
NL
O
h
e
owninFig.
fromthe+Input to
.
NOTE
supply
values
.
provided
and
mayex
accuracy
givenin
voltage
are
not
ceedth
Υ
performance m
inary
Con-
checkwit
6-3.Set
and H
PinΑat
ripple
and
as
guides
r
ument
inst
values
ese
ί
nstru-
if the
Section
1,
to
as
h
t
ori-
the
he
6-
5
to
P
erformance
Α.-12.2volt
ΙΕ
Check/Cali
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b
rightside.
~
ration-7511
Ή
2.Chec
controls as
testpoint
ALT.Setthe Time/Div
fully straight
kIn
terdot
α
.Changet
V
olts/Div
+Inp
b.Connectthe 10Χp
ε.Setthe7504
cloc
he 7Α13 probe
follows
ut
a
ndthe probetiptopin
switchto5μ
wiseandthe
k
up)
.
B
lanking
from1Χto10Χand
:
10mV
AC
gro
und
robe
OscilloscopeVerticalMode
SweepRange
7T11
s .
Setthe7Τ11
TrigLevel
cliptoα
AC,
seeFig.6-5Α.
switchto0.5msan
controlatmid
7511
switchto
Stability
range
set
the
Groun
h
d
t
control
(dot
d
e
NOMMEMEN
~
NEENEEMMM EMENEEMEN
β.Oscilloscopedisplay
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F
ig.6-4
Ch
ε
.
peak.
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supply checks
P
ower
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the
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of
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ri
p
p
V
.
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center
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50
InputtoGND
V
mV
an
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and
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and
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6-6
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+I
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.196
.
removeth
to
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ig.6-5.Interdotblanki
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R
E
andbelow
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N
O
.
V.1975
d
.
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L
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SNΒ
101608
up)asshown
3.CheckDotResponse
α.Connect
Sampling
cableand
nector
ad
ap
te
b
.
Set
zontalMode
R
ight
.
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switch.Ob fully needed.Center graticule
71350
Time/Div
control
h
ec
kthe b
C
Head
theTr
thro
ugh α 50ΩcoaxialcableandBNCto3
r
.
t
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switchto2μs.Pushin
tainαstabledisplay
counterclockwise
withthe
forαstabledis
lanked below(7μsto9.5μs,
and
F
ig.6-5Β.
in
the50Ω
switch.toΑ,andΑTriggersource
the
Amplit
input
connector
iggerOu
VerticalMode
7T11
SweepRangeswitchto50μsand
positive
Time
Positioncontrol
switchto1μsandadjustthe
p
lay
similartoFig.6-5Β.
trace
(7511)
for0.75μsto2μs,
SNΒ
101609and
andSmoothing
ude
CalibratorOutputtot
thro
ugh α
50
tputtothe
with
andthe
levelofthe
7T11TrigI
switc
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Ext50Ω2V
the Stabilitycon
TrigLevel
uare
waveonthe
s
q
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control
Ω
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coaxial
con-
mm
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the
Max
trol
as
Performance
4.Adj
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H
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N
067-0572-01
ustMemory
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PERFORMAN
Steps4,5and6
k.Setcontr
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Steps4and5
t
heNormalizerH
can be
α:Remove
ormalize
.
disregarded.
the
rHead,
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Gate
Gain
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accomplis
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Type
Te
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S-1
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-7511
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ation
F
Ο
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ixture
Set the
d
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displayamp
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tive
levelasthe
clockwiseand
that
the
below the
f.Set
thefir
st
square
g.Push the S
dot on
divisions
playamp loop
gain).SeeFig.6-6
h
.
Pushinthe NORMAL
controltoabout9
serve
b
firstdot
positive
the
dot
wave
the
fromthe
litude,
7511
litude.
the
fully
DOT
isatthe
.
risi
GAINcontrolfor
first
dotatthe
DOT
RESPONSE
countercloc
more
moves
level
.
RESPONSE
same
level as
M
OOTHswitchin
ng p
ortionofthe
negative
i.e.,
o'clock
loop
Β
.
.
gainisredu
exactly
frontcor
controlistur
k
wise,
seeFig.6-6Α.Check
1divisio
than
controlatunity
thepositive
andcheckthat
waveformisless
level(0.3
switch.
of the
cedto0.3
Set the
6 d
ivisionsof
neroft
he p
ned
nab
ove
loop
gain,
level
of the
the
than1.8
6divisiondis-
ofunity
7T11
Scan
osi-
fully
and
first
Α.DOT
loop
Β
Fig.6-6.Dotresponseandsm
RE
SPONSEcontrol
gainlessthan un
.Sm
ootheddisplay
ity
.
.
f u
oot
lly
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co un
terclockwise,
operatio
ncheck
.
REV.Β
,
OCT.1975,
6-7
k
P
erformance
Set the
b
.
malizer
switch
Time/Div clockwise
play
maximum for
range;turn turn
Average the RESPONSE shouldbeat12o'clock
vertical
Head
toVolts
c.Set the
switchto5
an
.
d
.
Adjust
vertical
control
e.Set
f.AdjustMemory
location
the
control
separation
/Calibration-7511
Chec
7511
Units/Div
.
7T11
Swee
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t
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TrigLevel
theMemory
separation
.
DOT
the
control
fully
counterclockwise
two
notedseparations
for
the
between
Units/Div
M
ultipliertoΧ1an
p R
ange
ms.Set the
GateWidth
RESPONSE
fully
average
setting
control
Gain
traces
switch to
control
between
control
clockwise,
separation.(The
.)
.
100.Set
switchto50msan
Stability
forαfree-running
control,
traces.SeeFig.6-7
at electrical
note
and
note
and
C275
for
theNor-
d
t
heUnits
d
control
set
5divisions
fully
8460,
mid­separation, separation
DOT
the
knob
t
he
dis-
for
d
ot
of
the7504Vertical
M
ode
switch
V
.
ert
e.Connect
M
emory
Gate
f.Obtainαstabledisplay Checkthat wideat
6-7,
.
the
P
lead(TektronixPartNo.
Set
g.Adjust
for
50%
h
.
Connect
ost
Am
the7Α
the
αMemory
amplitudelevel
p
M
ode
toΒ,
and
the7Α
Driver,
seeFig.6-7
emory
the
M
level,
50%
the
lifier
13Volts/Div
seeFig.6-8Β.
M
emory
Gate
the7Α
Input, seeFig.6-7,
switchtoLeft,
theΒTrigger
13 10
Χ
Gateisbetween
GateWidth
between
.
13 10
Χprobetotestpoint
175-0249-00)tominimize
switchto10
probe
.
and
160
Source
to
testpoint
center
160nsand
controlR460, Fig.
ns and180nswide
and
use
mV
.
the H
switch
the
α s
hort
orizontal
toLeft
230,
waveform
180
121,
ground
ringing
the
.
ns
at
the
.
g.Remove
lingHead.
Sam
p
5.AdjustMemory
d
M
emory
an
H
ea
d
α.Connect
SamplingHeadinput
coaxial cable
to1.2
.
b.Set the
Sweep
Rangeto5
Stability
free-running
for
α
ε.Set
tudeof5divisions.Turning the appearsasextra SPONSE fully
clockwise,
turn
control
Average
d
otsatthe
control.(Either
if
the
extra noting the extra
lines
age
.)
theNormalizerHead.
GateWidth
Gain
(C275)With
the50Ω
connector through α
and
variable
7511Units/Div
ms, the
fully
control
the
variable
control
the
two average
lines
maximum
from
fully
clockwise
display
attenuator
lines, at electrical
note
separationofthe
counterclockwise
noted
separation
the top
exceed
one
trace
Amplitude
attenuator.Set
switchto100.Set the
Time/Div
.
seeFig.6-8Α.
separations
orbottom
the
graticule
above
andbelow
andsetting
Install
(R460)
ling
Sam
p
Calibrator
switchto0.5ms, the
an
d
t
for
an a
DOT
midrange
and
withthe
trace
Out
50
theVolts
he
TrigLevel
plied
p
RESPONSE
the
Set
turn
;
extra
andnote
set
the DOT can
areainseparation
movement
the
lines
the
Type
S-1
Ο
to
the
p
ut
ΩGR
874
switch
control
signal
ampli-
control
DOT
RE-
the
control
linesofdots,
aration
se
p
lines
extra
RESPONSE
be
usedalone
of the
the
at
aver-
of
by
7T11
.
i .
Connectα1
nectortotest
.
switch
j .
R
emove
d
ouble-triggere
two,
most
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input mV
r
inging,
tu
F
ig.6-8C
H
orizontalModeswitch
are
for similar
as
k
.
Set connector
peak
an
e,
about
d
.
Ι .
Set
5 d
ivisionsapart
m.Adjust
divisions
5
toFig.6-8Α.
frequencybyadjustingR415
to
the
Χ
p
oint
Q404,
d
displayinsuchαmanner
d
efined,
shown
the
variable
for
peak
d
useαvertical 80 nsto100nsfrom
7504VerticalMo
theMemory
separation
probe
from
230
andpush
seeFig.6-7,
waveform
inFig.6-8C.If
attenuatoratthe
αdisplay
if
not α
Type graticule
Α
.Checkthat
to
.
Gain
(2 .5divisions
the
71350Ext
theExt Triggering
andobtain
that
traces,
not,
400
S-1
e
d
control
positive
one
change
.
Sam mVpeak SamplingHead),
linetocheckthe
the
start
of
switch toRight
the
C275, if
n6t α
TrigIncon-
Source
α
stable,
there
and
one
the
real-time
lingHea
p
to
peak (200
ignore
p
am
ringing
.
See
an
d
t
bright traces
seeFig.6-7,
TypeS-1),
are
d
li-
he
d.Set the7Α
switch
6-
to
8
13
F
ull.Set the
olts/Div
V
switchto100
71350
Time/Div
mV
andthe
switch0.1μs.Set
BW
η
R415
R
emove
.
adjustment
the
probes and
.
install
Q404.See
Step13for
P
erformanceCheck
/Calibration-7511
6.Adjust m
oot
R
α
.
b
.Releaseth
he con
m
ovesnom
hin
emove
trol
S
groundwit
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V
ariable Balan ce
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Q262and
h α p
atch cord.SeeFig.6-7
throughout
ore
RIABL
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than0.2
(13245)
Q266,
itsrange.Chec
d
ivision
Fig.
(13305)and
thensh
ort
.
EUnits/Div
vertically
6-7.Testpoints
nt264
testpoi
control
and
rotate
kthatthetrace
.
ndadjustments,
a
Ο
to
shiftast range.SeeFig.6-7
tion.Remo an
d
movement
steps4through13
c.Adju
stVariable
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urntheVARIABLE
d
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R
et
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Q266
.
e.PushtheS
.
.
ΒαΙ
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for
locationof
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M
OOTHswitchinandcheck
co
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.
t h eCAL
to
transistors
m
trace
roug
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Q262
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ooth
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switch.
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Disconnect
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7.Check
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ariable
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Calibratortothesampling
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100
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emory
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oved,
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Record tolerance, within
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switchto
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one
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200andthe 50ΩAmpli-
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at
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P
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200
Set
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/Cali
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oltage
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etur
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8.Ch
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lines,
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ity
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Observe
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indicating
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Overdrive
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art
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Set
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put
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ecome
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at
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Ignore
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If
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600
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Change
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the50
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Check
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the
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is
9.C
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ertical
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orizon
switchto5ms.Set
ComparisonVoltage +
Input
olts/Div
V
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d.Set
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the7504VerticalModeswitc
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T SIG
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Α13Comp
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graticule
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Signal
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oltage so
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emory
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Procedure only
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Gate
the
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230,Memory
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71350
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7511
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Disconnectthe p
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10
μ
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.
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thesquarewave
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the
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checkthatthe
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Turn
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15.Chec
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.
b.Turnthe
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c.Setthe50Ω
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.
Setthe7504VerticalModeswitchto
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.Measure
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kReal-Time
Ω
50
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the
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roug
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switchto20.
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litudeat
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addthe
lifier
p
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hα50
.
V
olts
L
1ΜΩ.
to
twoamp
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Ω
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centering
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24546 27014
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M
SANGAMOELECTRIC ALLEN-BRADLEY TEXAS
INSTRUMENTS,INC.,SEMICOND
R
OUP
G
GENERAL
PRODUCTS
M
OTOROLA, V FAIRCHILDSEMICONDUCTOR,
FAIRCHILDCAMERAAND INSTRU GENERAL LAMP
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CLAROSTAT MICROSEM
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PRODUCTS
ΚΕΕΝΕ,INC
ICONDUCTORCORP
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ENGINEERING
ELECTRICCO.
CANNON
TECHNOLOGICAL
INSTRUMENTS,
INDUSTRIES,INC
MATERIALSCOMPANY,
AND
ELECTRONICS,
u
anufact
INC.,SEMICONDUCTOR
MFG.CO.,INC
ELECTRONICS,
CORP
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CO.,S.CAROLINADIV
COMPANY
COMPANY,
INC
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CO.,MINIATURE
DEPARTMENT
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ELECTRONIC
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DIV.OF
PRODUCTS,
INC.,HELIPOT
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DIVISION
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INC
COMPANY,
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SEMI-CONDUCTOR
PROD.DIV.5005
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TOMANUFACTURER
Address
Ρ 0
BOX
128
2NDSTREETSOUTH
1201
Ρ 0 EXPRESSWAY
ELECTRONICS
21001
464 NELAPARK
3230
L
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2830FFAIRVIE
550
2900 SEMICONDUCTORDR.
1200 2820ΕCOLLEGE 87 666Ε.DYE
Ρ 0 644 2500
S.MAINST. Ρ 0
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AV . .
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BOX
ΕMCDOWELL
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12TH
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ΒΑΥΝMAWR
609
BOX
20923
State,
WI
TX
75222
NY
AZ
TH,CA
OH
03820
PA
CA
CA
16512
CA
LAKE,
OR
IL
Zip
29671
53204
13201
85036
44112
CA
92704
16701
CA
92507
MA
92702
IA
92634 IL
60646
91311
93446
95051
PA
01247
50501
60014
97077
16801
City,
PIC
KEN
S, SC
MILWAUKEE,
DALLAS, SYRACUSE,
PHOENIX,
C
HATS
WOR
MOUNTAINVIEW,CA94042
C
LEVELAND, PASOROBLES, DOVER, SANTA
BRADFORD, SANTA
RI
S N
SANTA
F
ERIE,
F
C BEA
C
COLUMBUS,NE68601 MAMARONECK,NY10544
NH
ΑΝΑ,CA
LARA,
C
ERSIDE,
V
TATECOLLEGE,
ORTH
ADAMS, ANA,
ORT
DODGE,
PA ULLERTON, RYSTAL
VER
TON,
HICAGO,
7-
2
REVΗ,JAN1981
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P
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Serial/Model
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No
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N
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C104
C115 C120 C127
C134 C139
C149 C159 C160
C161 C166
C201
C216 C219 C221 C234
C239 C245
C256 C261 C267 C269 C272 C272
C274 C274
C275
C276 C341 C406
C411
C414 C418 C423 C427 C431
C432 C434 C444
C447 C449
670-1088-00 670-1088-01 670-1089-00
670-1089-01
670-1089-02
670-1089-03
670-1089-04
670-1090-00
670-1090-01
670-1090-02
670-1090-03
670-1090-04
670-1148-00
670-1148-01
670-1149-00 670-1149-01 670-1165-00 670-1166-00
283-0003-00 283-0072-01 283-0059-00 283-0051-00
283-0059-00 283-0000-00
283-0103-00 283-0026-00 283-0026-00 283-0059-00 283-0000-00
283-0059-00
283-0059-00 283-0032-00 283-0059-00 283-0059-00 283-0549-00
283-0023-00
281-0579-00
283-0059-00 283-0059-00 283-0103-00 283-0026-00 283-0110-00
283-0026-00 283-0110-00 281-0092-00
283-0600-00 283-0060-00 283-0059-00
283-0065-00 283-0081-00 283-0054-00 283-0060-00 283-0060-00 283-0032-00
283-0175-00
.
283-0109-00 283-0032-00
283-0115-00 283-0059-00
Β
010100Β109999
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100000Β119999 120000
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100000
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039999
109999
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CAP.,FXD,CERDI CAP.,FXD,CERDI:1 CAP.,FXD,CERDI:0.0033UF,5%,100
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FXD,CER FXD,CER FXD,CERDI:lO0PF,5%,200
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ERTICAL ERTICAL
ASSY:INTER-CHANNELCONTR
ASSY:INTER-CHANNEL ASSY:INTERFACE
ASSY:INTERF
:
INTERFACE INTERFACE
:
ASSY:+UP/INVERT
:+UP/
ASSY ASSY:N
ORMAL/S ORMAL/S
ASSY
:COM :COMM
:O .O
ER DI:0.2UF,
DI
:1UF,
DI:470PF DI
:1UF,+8Ο-20%,25
ER
:25PF,10%
:O :21PF,5%,500
lUF,+80-20 :lUF, :180PF,5%, 5OOV
DI :0.2UF
DI :O
:9-35
CA D
:43PF,5%,500
DI :O.lUF DI:150
DI:47oPF
ER DI
:27PF,5%,100o
DI
:47PF,5%,200
NNELCONT
-CHA
-CHANNEL
-CH
ANNEL
E
AC
INVERT 80009 670-1148-01
ΜΟΟΤΗ-ΙΝΤTRI ΜΟΟΤΗ-ΙΝΤTRI
MUT
ATORSWMO
UTATORSW FIXED
UF,+80-20
1 lUF,+80-20
UF,+80-20%,25
+80
-
20%,25
.OO
lUF,+100-0
,5%,500
+80-20%,25 +80
-
20%,25
+80
- 20
%,25
,
+100-0
+80-20
%,25
+80-20
%,25
,5%,500
- 20
+80-20
+80
,
-
+80
+80-20%,25
+80-20
PF,200
+80
-20%,25
+80-20%,25
, ,5%,200
,5%,200 ,5%,500
,5%,
5
%,25
V %,25 %,25
20%,25
- 20
V
V
V
OO
V
UF,+80-20
.
IUF,+80
.005UF,
.OO5UF,
.o01UF,5%,lOO
PF
00PF
CO CONT
CO
%,150 %,200
V
V
%,12
V
V V
V V
V V
NTR
NTROL
VIN
V
V
V
%,500
V V
ν
%,500
V
V V
V
V V
%,150
%,150
V V
V
V
V
V
V
ROL
OL OL
ROL
80009 80009 670-1088-01 80009 670-1089-00 80009 670-1089-01
GGER GGER
G
V V
V
ν
V
V
670-1088-00
80009 80009
80009 80009 80009 670-1090-01 80009 80009 80009
80009
80009 80009 80009
80009
670-1089-02 670-1089-03
670-1089-04 670-1090-00
670-1090-02 670-1090-03 670-1090-04
670-1148-00
670-1149-00 670-1149-01 670-1165-00
670-1166-00
72982
855
51642S­72982 72982
72982 72982
56289 40C638 56289 274C3 56289 72982 72982 72982
72982 72982 72982
72982 72982
91418
72982 72982
72982 56289 40C638 56289 274C3 56289
56289 274C3 56289 72982
00853D105E430J0 72982 72982
72982 56289 36C600 72982 72982 72982 72982
72982 56289 20C376
72982
72982
72982
-558Z5U-103
300
-200Ζ5ν103
N
031
8131 8131N1450000332
8131N031Z5U01052 831
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274C3
8131ΝΟ31Ζ5υ0105
831
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031
8131
8131Ν031Ζ5υ0105
0831085Z5E
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Ν
8131Ν031Ζ5υ 65403818Α0250
ΜΧ
0104Ζ1205Α5
301
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8131Ν031Ζ5υ0105 8131N031z5U
19C242
B
19C242
B
538-011D9-35 855
-535U2J1o1
8131Ν031Ζ5υ0105 805-518-Z5D0102
855
-535U2J
855
-535U2J
855
-535U2J
0831085Z5E 8101B210c0001O0
0831085Z5E00471 805-519
8131N031
-COF0470
Z5UO1O5
Ρ
Ρ
Z5U0105
00471
0105
0105
151 101 101
00471
Z 5U0105
Ζ
Μ
Z J
Ζ
Z
Ζ
J
Ζ Ζ
Κ
J
Ζ
Z
J
Ζ
J
J J J
J
J
J
J
Z
REV,
JUL
1981
Τ
3
Code
R
eplaceableElectrical
TektronixSerial/ModelNo.
k
tNo.
C
C451 C457
C460 C471 C471 C476
C479 C602 C603 C604
C605 C606
C607 C608 C609 C621 C629 C631
C632 C634
C635 C636 C637 C638
C639 CR
108
CR
113
C
R115
C
R116
CR128 CR201
CR206 CR224 CR
226
CR
232
CR
236
CR
237
CR238 152-0141-02 CR239 152-0323-00 CR242 152-0141-02
C
R257
C
R259
CR
272
CR
274
C
R401
CR402 152-0141-02 CR403 152-0141-02 Cκ410
C
R411
CR
413
CR
414 CR425 152-0141-02 CR
429 CR430
CR434 152-0141-02
CR
444
Part
No
283-0032-00 283-0103-00
283-0109-00 281-0579-00 283-0605-00 283-0060-00
283-0060-00 283-0004-00 290-0134-00 290-0134-00
283-0059-00 283-0059-00
290-0134-00 290-0134-00 283-0059-00
283-0059-00 290-0134-00 290-0327-00
290-0134-00 283-0059-00
283-0059-00 283-0059-00
283-0059-00 283-0059-00
290-0327-00 152-0141-02
152-0141-02 152-0141-02
152-0153-00 152-0141-02 152-0141-02
152-0141-02 152-0141-02 152-0141-02 152-0141-02
152-0141-02 152-0323-00
152-0141-02 152-0141-02
152-0323-00
152-0323-00 152-0141-02
152-0141-02 152-0141-02
152-0141-02 152-0141-02
152-0141-02 152-0141-02
152-0141-02
P
arts-7511
M
fr
b
VO203Z
5
10 5Z
0
15B2
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Ζ 5υ0105
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Β
010100Β099999
Β
100000
Β
010100Β099999ΧCAP
Β
010100Β099999
Dscont
CAP
.,FXD,CER
CAP
.,FXD,CERDI CAP.,FXD,CER CAP.,FXD,CER CAP.,FXD,MICAD:678PF,17,,300V
.,FXD,CERDI
CAP
.,FXD,CER
Χ
CAP
.,FXD,CE 0AP
.,FXD,ELCTLT 0AP.,FXD,ELCTLT
CAP
.,FXD,CERDI CAP
.,FXD,CERDI
.,FXD,ELCTLT
0
AP
0AP.,FXD,ELCTLT
.,FXD,CERDI
CAP CAP.,FXD,CER
0AP.,FXD,ELCTLT CAP.,FXD,ELCTLT
CAP.,FXD,ELCTLT CAP
.,FXD,CER
CAP.,FXD,CERDI CAP
.,FXD,CER
CAP.,FXD,CERD I CAP
.,FXD,CER
CAP
.,FXD,ELCTLT
S
EMICOND
S
EMICONDDEV
S
EMICOND
S
EMICOND
S
EMICOND
S
EMICOND
S
EMICOND EMICONDDEVICE
S S
EMICONDDEV
S
EMICONDDEV
S
EMICOND EMICONDDEV
S
S
EMICOND
S
EMICONDDEVICE
S
EMICONDDEV
S
EMICONDDEV
S
EMICONDDEV
S
EMICONDDEV
S
EMICONDDEV SEMICONDDEVICE S
EMICOND S
EMICONDDEV S
EMICONDDEV SEMICONDDEV
S
EMICONDDEVICE
S
EMICONDDEV S
EMICONDDEV S
EMICONDDEV SEMICONDDEV S
EMICOND SEMICONDDEV
N
ame&Descriptio
DI
:470PF,5%,500V :180PF,5%,500
DI
:27PF,5%,1000
DI
:21PF,5%,500 :l00PF,5%,200
DI
:lO0PF,5%,200
R D1:0
.02UF,
:22 U
F,20%,15
:22 U
F,20%,15
+80
:1UF,
+80
:1UF,
:22UF,20%,15 :22UF,20%,15 :lUF,
+80-20%,25
DI
D1:lUF,
DI DI
DEVICE:SILICON,30
ICE DEVICE DEVICE DEVICE DEVICE
DEVICE
ICE
ICE
DEVICE
ICE
DEVICE:SILICON,30V,150MA
ICE
ICE
ICE
ICE
ICE
DEVICE
ICE ICE
ICE
ICE ICE
ICE ICE
DEVICE
ICE
+80
:1UF, :22υF,20%,15 :0
.56UF,20%,100
:22UF,20%,15V
+80
:1UF,
+80-20%,25 +80
:lUF,
+80
:lUF,
+80
:lUF,
:0
.56UF,20%,100V
:SILICON,30V,150MA :SILICON,30 :SILICON,15V,50MA :SILICON,30V,150MA :SILICON,30V,150MA
:SILICON,30V,150MA :SILICON,30V,150MA :SILICON,30V,150MA :SILICON,30V,150MA :SILICON,30V,150MA :SILICON,35V,O
:SILICON,35V,O :SILICON,30V,150MA :SILICON,30V,150
:SILICON,30V,150 :SILICON,35
:SILICON,35V,O :SILICON,30V,150MA :SILICON,30V,150MA :SILICON,30V,150MA :SILICON,30V,15oMA :SILICON,30V,150MA
:SILICON,30 :SILICON,30V,150
:SILICON,30V,150 :SILICON,30V,150MA
:SILICON,30V,150MA :SIL1CON,30V,150MA
:SILICΠN,30V,150MA
n
V V
V
V
V
+80
-20%,150V V V
-20%,25
-20%,25
-20%,25
-
-20%,25V
-
-20%,25V
V V
V V
ν
V
V
V
20%,25
ν
V V
20%,25
V
,150MA 012951N4152
V
,150MA 01295
.lA
.lA
MA MA
V,O.lA
.lA
V
,150MA
MA MA
72982 56289 40C638
56289
72982 00853D153F6780FO 72982
72982 72982
56289
56289
72982 72982
56289 56289 72982 72982
56289 56289
56289 72982 72982 72982 72982 72982
56289
01295
07263 FD7003 01295 012951N4152
01295 01295 012951N4152 01295 01295 80009
012951N4152R 80009 012951N4152 01295 01295 80009
80009 012951N4152 01295 01295 012951N4152
012951N4152
01295 01295 012951N4152 012951N4152R 01295 01295
012951N4152
M
frPartNum
0831085Z5E00471J 20C376
301-05
000G0210J
855
-535U2J1o1J
855
-535U2J101J
855
-558Z
150D226X001582 150D226X0015B2
8131N031Z5UO 8131Ν031Ζ5υ0105
150D226X001582 150D226XO
8131Ν031Ζ5υΟ105 8131N031Z5U
150D226XO015B2 150D564XO100A2
150D226X0015B2 8131Ν031 8131Ν031Ζ5υ 8131Ν031 8131N031Z5UOlO5Z
8131N031ZSUOlO5Z
150D564XO100A2
R IN4152R IN4152R
IN4152R
R
IN4152R IN4152R
R
1N4152R
1
N4152
R 152-0323-00
152-0323-00
R IN4152R IN4152R 152-0323-00
152-0323-00
R
1
N4152
R
IN4152R
R
R
1N4152R
N4152
R
1
R
IN4152R
1N4152R
R
REV
7_
4
G,
1980
S
EP
bleE
lectricalParts-7511
M
fr
Code
01295 01295
01295 012951Ν 012951N
01295
01295
012951Ν 01295
012951N
01295
76854 08806
76854 08806
76854
08806
71468 98291
98291 51-051-0049 05574
98291 98291
98291 98291
80009 80009 80009 80009
80009 120-0382-00 80009
80009
M
frPartNum
IN4152R 1Ν4152
Α
IN4152R
Α
4152 4152
R
IN4152R IN4152R
4152
Α
IN4152R
4152
R
IN4152R
17AS15 683AS15
A
S15
17
683AS15
17AS15 683AS15
DM
53741-5001
51-051-0049
000221-0355 016-8010-00-0208
016-8010-00-0208
016-8010-00-0208 51-051-0049
120-0402-00
120-0382-00
120-0382-00
120-0382-00
120-0382-00
80009 120-0382-00
04713SP 04713SP 03508 04713SP 04713
07263
04713 07263 07263
07263
04713
120-0382-00
S6868 S6868
X32D6191
S8801
S
P
S6868
S032677
S6868
SP
S032677
S032677
07263
80009 80009 151-0261-00 04713
07263 04713SP 04713
04713 04713 04713
S032677 S032677 SP
151-1037-00
S
S032677
SP
SP SP
SP
04713SP
S6868
P
S6868
S6868 S8801
S8801 S8803
S8803 S8803
S8803
b
er
K
K
K
K
K
K
K
C
ktNo
CR455 CR
462
CR
464
CR
471 CR474 CR476
CR
479 CR
506
CR
528
CR
624
C
R
625
D
S116
D
S116
D
S141
D
S141
D
S302
D
S302
J
100
J
101
J
114
J
120
J
165
J
166
J
269
J
449
L
268
L
603
L
604
L
607
L
608
L
631
L
632
L
639
Q108 Q113 Q116 Q123 Q128 Q133
Q136
Q163 Q204 Q208 Q212 Q214
Q242A, Q252
Q256 Q262 Q266 Q314
Q334 Q344
Q354 Q362 Q366
.
B
A,B
_
Tektronix
P
artNo.
152-0141-02 152-0141-02
152-0141-02 152-0141-02 152-0141-02
152-0141-02
152-0141-02 152-0141-02 152-0141-02
152-0141-02 152-0141-02
150-0057-01 150-0048-01
150-0057-01 150-0048-01
150-0057-01 150-0048-01
131-0410-00 131-0391-00 131-0391-00 131-0581-00 131-0779-00 131-0779-00
131-0779-00 131-0391-00
120-0402-00
120-0382-00
120-0382-00 120-0382-00 120-0382-00 120-0382-00
120-0382-00 120-0382-00
151-0188-00
151-0188-00 151-0207-00 151-0192-00 151-0188-00 151-0190-00
151-0188-00 151-0190-00 151-0190-00 151-0190-00 151-0190-00 151-0188-00
151-1037-00 151-0261-00 151-0188-00 151-0190-00 151-0188-00
151-0192-00
151-0192-00 151-0216-00 151-0216-00 151-0216-00
151-0216-00
Serial/Model
E
ff
100000
ΧΒ
Β
010100Β099999
ΧΒ
040000
Β
010100Β019999
020000
Β
010100Β019999
Β Β
020000
Β
010100Β019999
Β
020000
ΧΒ
080000
No
.
Dscont
N
ame
S
EMI
COND
DEVICE
S
EMI
COND
S
EMICOND
S
EMI
COND
S
EMICOND
Χ S
ND
EMI
CO
S
EMI
COND
S
EMI
COND
S
EMI
COND
S
EMI
COND
EMICOND DEVICE:SILICON
S
LAMP,IN LAMP,IN LAMP,INCAND
L
LAMP,INCAND
CAND:5V,0.115A,W
AND:5V,0.06A,S
C
AMP,
INCAND:5
L
A
MP,INCAND
CO
NN,RCPT,ELEC:
CO
NNECTOR,RCPT,:50OHM
CO
NNECTOR,RCPT,:50OHM
CO
NNE
CTOR,RCPT, JACK,TIP:FOR 0 JACK,TIP
JACK,TIP:FO CO
NNE
CTOR,RCPT,
X
FMR,T
OROID:3TURN
XFMR,TORO
XFMR,
TOROID:14
XFMR,
TOROID:14
X
FMR,T
OROID:14
X X
XFMR,T
TRANSI
ROID:14
FMR,T
O
FMR,TOROID:14
OROID:14
STOR:S TRANSISTOR:SILI TRANSISTOR:SILI TRANSISTOR:SILI TRANSI
TRANS IS
TRAN TRAN TRAN TR
TRANSISTOR:SILICON,NPN T
TRANSISTOR:SILICON,PNP,DUAL
TOR:SILICON,PNP
S
TOR:SILICON,NPN
S ISTOR:S S ISTO
TOR:SILICON,NPN
S IS
ANSISTOR:SILICON,NPN
I
STOR:SILICON,PNP
RANS
TRANSISTOR:SILI
TRAN
SI S TRANSIS TRAN TR
TRANSIST TRAN
TRAN TR
TRANSI
TO TO
TOR:SILICON,PNP
SI S
AN
S ISTOR:S
S IS
TOR:SILICON,PNP
S I
STOR
ANSISTOR:SILICON,PNP
STO
:S
DEVICE:S
E:SILICON
DEVI
C
E:SILICON
DEVI
C
E:SILICON
DEVI
C
DEVICE:S
DEVICE:S DEVICE:SILI DEVICE:SILICON
E:SILICON
DEVI
C
V,0.115A,WIRELD,S
:5
V,0.06A,S :5V,0.115A,WIRELD,S :5V,0.06A,S
:12FEMALE
.08
:FO
R 0
.08INCH
R 0
.08INCHDIATEST
:50
:14TURN
ID
TURN TURN TURN
TURN
TURN TURN
ILI
CO CO CO CO
ILICON,PNP
R:SILICON,NPN
CO
R:SILICON,PNP R:SILICON,NPN
ILICON,NPN
OR:SILICON,NPN,SELFROM
ILICON,PNP
:S
R :S
ILI
CO
Description
&
ILICON
,30V,150MA
ILICON
,30V,150M
,30V,150M ,30V,150 ,30V,150M
ILICON
,30V,150M
ILICON
,30V,150MA
N
,30V,150
CO
,30V,150MA ,30V,150 ,30
IRELD,S
EL
EL
EL
,COAX,SNAP-ONMALE
,COAX,SNAP-ON
INCH
DIATESTPOINT DIA
OHM,COAX,S
S SING
LE S,SING S,SING
G
S,S
IN
G
S,S
IN
S,SING
S,SING
G
S,S
IN
N,PNP N,PNP N,NPN N,NPN,SELFROMMPS6521
N,FET,N-CHA
EL FROMMP
,S
N,PNP
,150M
V
CO
NTACTS
TE
ST
NAP-ONMALE
LE LE
LE LE LE
LE LE
NNEL
A A
MA
A A
MA
MA
A
EL EL
EL
POINT
POINT
S6521
S6521 04713SP
MP
Rep
MALE
lacea
REV,
JUL
1981
7
-5
R
eplacea
C
ktNo
b
le E
Tektronix
.
P
artNo.
lectricalParts-7511
Serial/Model
E
ff
No
.
Dscont
N
ame &
Description
M
fr
Code
M
frPartNumber
Q404 Q408
Q410 Q422 Q430 Q430
Q430 Q452
Q456 Q464 Q474 Q476
Q477 Q478 Q502 Q506 Q508 Q512
Q516 Q518 Q624A,B151-0261-00 Q626
Α
101
Α
102
Α
104
R
106
R
107
Α
108
Α
109
R
111
R
113
Α
114
R
115
R
116
Α
121
Α
123
Α
125
Α
127
R
129
R
130
R
133
R
134
R
135
Α
136
R
137
Α
138
R141
Α
142
Α
143
R
145A
R
145
R
145C
R
145
R
145
R
145
R
145G
R
147A
B
D E
F
151-0190-00 151-0190-00
151-0190-00 151-0188-00 151-0190-00
151-0269-00
151-0441-00 151-0188-00 151-0190-00 151-0188-00
151-0190-00 151-0190-00
151-0301-00 151-0190-00 151-0188-00 151-0190-00 151-0188-00
151-0188-00
151-0281-00
151-0281-00
151-0134-00
317-0124-00 317-0244-00
317-0153-00 317-0153-00
317-0151-00 317-0302-00
317-0152-00 315-0203-00 315-0122-00 321-0206-00
317-0431-00 315-0390-00
321-0093-00 315-0183-00 315-0752-00 321-0154-00 315-0512-00 315-0101-00
315-0101-00 315-0153-00 315-0153-00 315-0101-00 315-0101-00
321-0263-00
317-0222-00 317-0681-00
311-0095-00 321-0193-00 321-0231-00 321-0260-00
321-0289-00 321-0327-00
321-0356-00 321-0385-00 32 Ι
-0450-01
ΧΒ
ΧΒ
ΧΒ
Β
010100
Β
050000
Β
100000
100000
100000
030000
Β
049999
Β
099999
TRAN
S ISTOR:S
TRAN
S ISTOR:S
TR
AN
S IS
TR
AN
S ISTOR:S
TRAN
S IS
TRAN
S IS
T
RANS IS
TRAN
S IS
T
RANSIS
TRAN
S IS
T
RANSIS
TRAN
S IS
TRAN
S IS
T
RANSIS
TRAN
SI S
TRAN
SI S
T
RANSIS
TRANSISTOR:SILICON,PNP
TRANSISTOR:SILICON,NPN
T
RANS
ISTOR:SILICON,NPN
TRANSISTOR:SILI
T
RANS
IS
RES.,FXD,CMPSN RES
.,FXD,CMPSN
R
ES
.,FXD ,CMPSN:15KΟΗΜ
RES
.,FXD ,CMPSN:15KΟΗΜ
RE S.,FXD,CMPSN:150
RES
.,FXD,CMPSN:3KΟΗΜ
RES
.,FXD,CMPSN:1 .5KΟΗΜ
RES
.,FXD ,CMPSN:20KΟΗΜ
RES.,FXD ,CMPSN:1 RES
.,FXD,FILM:1.37KΟΗΜ
RES.,
FXD,CMPSN
RES
.,FXD,CMPSN:39
RES
.,FXD,FILM
RES
.,FXD,CMPSN:18KΟΗΜ
RES
.,FXD,CMPSN:7 .SKOHM,5%,0
RES
.,FXD,FILM
RES
.,FXD,CMPSN:5 .1KOHM,5%,0
RES.,
FXD,CMPSN
R
ES.,FXD,CMPSN ES
.,FXD
R R
ES
.,FXD,CMPSN:15KOHM,5%,0
R
E
S
.,FX
RES.,
F
RES
.,FXD,
ES.,
FXD
R
RES.,FXD,CMPSN:680OHM,5Y,,0 RES.,VAR,NONWIR RES
.,FXD,FILM:IK
R
ES
.,FXD,FILM:2.49KΟΗΜ
RES.,FXD,FILM:4.99KΟΗΜ
RES
.,FXD,FILM:lOKΟΗΜ
R
ES
.,FXD,FILM
RES.,FXD,FIL
RES
.,FXD,FILM:l00KΟΗΜ
R
ES
.,FXD,FILM:475KΟΗΜ,0.5%,0
ILICON,NPN ILICON,NPN
R
:S
TO TOR:SILICON,NPN 07263
TOR:SILICON,NPN,SELFROM5Ε
TOR TOR:SILICON,PNP 04713SP TOR:S TOR:SILICON,PNP 04713SP
TOR:SILICON,NPN TOR:SILI
TOR:SILICON,PNP TOR:SILICON,NPN 07263 TOR:SILICON,PNP TOR:SILICON,NPN TOR:SILICON,PNP 04713SP
TOR:SILICON,PNP
,CMPS
D
,CMPS
XD,CMP
FILM:5.36KΟΗΜ
,CMPSN:2 .2KΟΗΜ
N,NPN
ILI
CO
ILICON,PNP
:SI
LICO
N,NPN 04713SRF N,NPN
ILI
CO
CON,
NPN
N,PNP,DU
CO
:120KΟΗΜ :240KΟΗΜ
:430
:90.9ΟΗΜ,1Ζ,0.125
:392
:100
:100
N
:15KOHM,5%,0
N
:100
SN:100
:500
:24.9K
M
:49.9K
ΟΗΜ,5Υ
K
.2
ΟΗΜ
OHM,5%,0
ΟΗΜ
OHM,5%,0
OHM,5%,0
OHM,5%,0 OHM,5%,0
ΟΗΜ
,5%,0 ,5%,0.125W
,5%,0
,5%,0
ΟΗΜ
,5%,0
,5%,0
,1%,0
ΟΗΜ
,1%,0
,1%,0.125W
ΟΗΜ ΟΗΜ
,1%,0
,5%,0 ,5%,0..125
<,0
,5%,0 ,5%,0
,1%,0
,1%,0 ,5%,0
,10%
,1%,0 ,1%,0
,1%,0 ,1%,0
3005
A
L
.125
W
W
.125
W
.125
W
.125
W
.125
W
.25W
.25W .125
W
.125
W
.25W
W
.25
ω
.25W
.125
ω
.25W
.25W
.25W .25W .25W .25W
.25W
.125
W
.125W 01121
.125
W
.125W
.125
W
.125
W
.125
W
.125
W
.125W
.125
W
07263 07263 07263 04713
07263
07263
07263 07263
270142Ν
04713SP 07263θ032677
04713SP
03508Χ16Ρ4039 03508Χ16Ρ4039 80009 80009
01121 01121 01121 01121
01121 01121
01121 01121 01121
91637 01121 01121
91637 01121CB 01121CB 91637 01121 01121
01121 01121
01121 01121CB
01121CB 91637
01121 11237 91637 91637 91637
91637 91637 91637 91637
24546
S032677 S032677 S032677
SP
S6868
S032677
ΣΜΤ
5092
501
S6868
S032677
S6868 S032677 S032677
2907 S032677
S6868
S6868
S6868
151-0261-00 151-0134-00
ΒΒ1245 ΒΒ2445 ΒΒ1535 ΒΒ1535 ΒΒ1515 ΒΒ
3025
ΒΒ
1525
B
C
2035
B
C
1225
MFF
1816G13700
ΒΒ
4315
CB
3905
MFF
1816G90R90
1835
7525
MFF
1816G392ROF
CB
5125
CB
1015
C
B
1015
CB
1535
C
B
1535
1015
1015
MFF
1816G53600
ΒΒ2225 ΒΒ6815
41022 MFF
1816G10000
MFF
1816G24900
MFF
1816G49900
MFF
1816G10001
MFF
1816G24901
MFF
1816G49901
MFF
1816G10002
N
A55D4753D
K
K
K
Α
K
K K
F
F
F
F F F
F F F
F
7-
6
REVΗ,JAN
1981
R
ep
Tektronix
C
ktNo
.
P
artNo.
R
147B
R147C R147D
R
147E
R
147F
R147G 321-0258-01 R
149
R
151
χ
151
Α
151
R
153
R
154
R
156
Α
157
R
157
R
157
R158
R
159
Α
161
R
162
R
163
Α
165
Α
166
R
202
R
204
R
206
R
207
Α
208
R
209
R
211
R
213
R
214
R
216
R
218
Α
219
R
221
R
222
R
224
R
226
R229 R
231
R
234
Α
239
R
242
R
244
Α
245
R
245
R
246
R
248
R
253
R
257
321-0760-π1 321-0759-Λ1 321-0354-Λ1 321-0757-Λ1
321-0758-Π1
321-0354-01 311-0965-00
-----
-----
311-1162-00
-----
------
311-1591-00
-----
-----
315-0273-00 315-0273-00
315-0101-00 311-0965-
-----
-----
311-1162-00
-----
-----
311-1591-00
-----
----­315-0821-00 315-0101-00 315-0101-00 315-0101-00
315-0123­321-0316-00 321-0289-00 321-0391-00 315-0183-()0 315-0122-ΛΟ
315-0101­315-0512-00
321-0306­315-0101-00 315-0101-00
315-0220-00
315-0752-ύ0 315-0752
315-0101-00 321-0245-00 321-0245-00 321-0231-ΠΟ
321-0231-00 315-0102-00
315-0102-00 315-0100-00 317-0510-00
321-0328-00
321-0432-00 311-0732-00 311-1263-00
315-0432-00 315-0106-00
315-0101-00 315-0241-00
Serial/
M
odelNo.
E
ff
Β
010100
Β
060000
Β
090000
00
Β
010100Β059999
Β
060000Β089999
Β
090000
π 0
0
0
00
- Π
Ο RES.,FXD,CMPSN:7.SKOHM,5%,0
χΒ
110000
Β
010100Β060969
Β
060970
Dsco
Β
059999
Β089999
n t
RES
.,FXD,FILM
RES
.,FXD,FILM
R
ES
.,FXD,FILM
RES
.,FXD,FILM
RES
.,FXD,FILM
R
ES
.,FXD,FILM:4.75K
RES
.,FXD,FILM
RES
.,VAR,NONWIR:2Χ10Κ
(FURNISHED
ΑΕS.,
VΑR,ΝοΝωτΑ:2χ 1οΚΟΗΜ (FURNISHED RES
.,VAR,NONWIR:PNL,2ΧΙΟΚ
(FURNISHEDΑ5
RES
.,FXD,CMPSN
RES
.,FXD,CMPSN
R
ES
.,FXD,CMPSN
R
ES
.,VAR,NONWI
(F
U
RNISHED
RES
.,VAR,NON
(FURNISHED
RES
.,VAR,NONWI R
(FURNISHEDΑ5
RES
.,FXD,CMPSN
R
ES
.,FXD,CMPSN:100 RES.,FXD,CMPSN RES
.,FXD,CMPSN RES
.,FXD,CMPSN RES
.,FXD,FILM RES
.,FXD,FILM:lOKΟΗΜ
R
ES
.,FXD,FILM RES
.,FXD,CMPSN
R
.,FXD,CMPSN
ES
RES.,FXD,CMPSN RES
.,FXD,CMPSN:5.1K RES
.,FXD,FILM RES.,FXD,CMPSN
RES.,FXD,CMPSN
RES
.,FXD,CMPSN
R
ES
.,FXD,CMPSN:7.SK
RES
.,FXD,CMPSN
RES
.,FXD,FILM:3.48K
RES
.,FXD,FILM:3
RES.,FXD,FILM:2.49K
RES
.,FXD,FILM:2.49KΟΗΜ
R
ES
.,FXD,CMPSN
RES
.,FXD,CMPSN
R
ES
.,FXD,CMPSN
RES.,FXD,CMPSN RES.,FXD,FILM
RES.,FXD,FILM
R
ES.,VAR
RES.,VAR,NONWIR:IKΟΗΜ
R
ES
.,FXD,CMPSN:4.3K
RES
.,FXD,CMPSN
RES.,FXD,CMPSN RES.,FXD,CMPSN
N
ame&Descri
:189
.9K
ΟΗΜ
:95K :47
.SKΟΗΜ,0.5%,0
:18
.99K
ΟΗΜ
:9
.SK
:47.5KΟΗΜ,0.5%,0
ASΑU
NITWITHR157)
ASΑU
NITWITHΑ157)
ΑUNITWITH
:27K
OHM,5%,0 :27KOHM,5%,0 :100
OHM,5%,0
R :2X10ΚΟΗΜ
Α
AS
U
NITWITHR151)
W
IR :2Χ10ΚΟΗ4,10%,1
ASΑUNITWITH
:PNL,2ΧΙΟΚ
Α U
NITWITH
:820
OHM,5%,0 OHM,5%,0
:100
OHM,5%,0
:100
OHM,5%,0
:12K
OHM,5%,0
:19
.IK
ΟΗΜ
:115K
ΟΗΜ,Ι
:18K
OHM,5%,0
:1
.2K
OHM,5%,0
:100
OHM,5%,0
OHM,5%,0
ΟΗΜ
:15K
:100
OHM,5%,0
:100
OHM,5%,0
:22
OHM,5%,0
ΟΗΜ
:100
OHM,5%,0
ΟΗΜ
.48K
OHM,IY,,0
ΟΗΜ
:IK
OHM,5%,0
:IK
OHM,5%,0
:10
OHM,5%,0
:51
ΟΗΜ
:25.5KΟΗΜ
:309K
:lOM :100
:240
ΟΗΜ
OHM,5%,0
OHM,5%,0 OHM,5%,0
OHM,5%,0
,NONWIR:TRMR,IKOHM,0
p
tion
O
HM,O
.SY,,0
,0
.5%,0.125W
ΟΗΜ,0.5%,0
,0
.5%,0
ΟΗΜ,0.5%,0
ΟΗΜ
,1%,0
,1%,0
%,0
,1%,0
,5%,0
,1%,0
,1%,0
,1%,0
,5%,0
,1%,0
,1%,0
,10%,0
.125W
.125W 91637
.125W
.125
W
.125W
.125
W
,10%,10W
,10%,1
W
OHM,1
R157)
Α
R151)
.125W 91637
.125W 91637
.25W
.25W .25W .25W .125W 01121
W
.25W
.25W .25W ,10%,10W
W
151) OHM,1
W
.25W .25W .25W .25W
.25W
.125W 91637
.125
Κ
.25W
.25W
.25W
.25W
.25W
.25W
.25W .25W
.25W
.125
W
.125
W
.125
W
.125
W
.125W 91637
.125
W
.5
W
.50
W
.25W
.25W .25W
.25W
laceableElectrical
M
fr
Code
24546 24546
24546 24546 24546NA55D4751D
91637MFF1816G47501D 80009
12697
12697
01121CB2735 01121CB2735 01121CB1015 80009
12697
12697
01121CB8215 01121CB1015 01121CB1015 01121CB1015
01121CB1235
MFF1816G19101F MFF1816G10001F
91637
MFF1816G11502F 01121CB1835 01121CB1225
01121CB1015 01121CB5125
01121CB1015 01121CB1015
01121CB2205
01121CB7525 01121CB7525 01121CB1015 91637
91637 91637
91637 01121CB1025 01121CB1025
01121CB1005
91637 01121SV
32997 01121CB4325
01121CB1065 01121CB1015
01121CB2415
MFF1816G15001F
MFF1816G34800F
MFF1816G34800F MFF1816G24900F
MFF1816G24900F
ΒΒ5105
MFF1816G25501F
MFF1816G30902F
3329Ρ-L58-102
Pa
r
M
frPartNumber
NA55D18992D NA55D9502D
MFF1816G47501D NASSD18991D NASSD9501D
311-0965-00
381
-CM39691
381
-CM40266
311-0965-
381
381-CM
1021
00
-CM39691
40266
ts-7511
REV1,SEP1980
7-7
r
Rep
C
R
258
R
259
R
261
R
264
R
266
Α
267
R
268
R
269
R
271
R
272
R
274
Α
275
R301
R R
Α
R
R311
χ
R
R316
R
κ
R
R R
R325 R
κ
R334
Α
R337
Α κ
R344
R
R346 R R356
R R
R365 R366
R368 R401
κ
R404 R410
R411 R414
R
χ
R
ktNo
302 303 304 305
312
314
317 319 320
321 322
326 332
336
339
κ
R423 R427
laceable
343
345
353
362 363
402
415 415 418
422
Te
.
P
artNo.
315-0241-00 315-0243-00
315-0101-00 315-0101-00 315-0101-00 315-0101-00
321-0745-03 321-1310-03 321-0360-00 321-0283-00 321-0283-00 321-0360-00
315-0105-00 315-0512-00 315-0512-00 315-0105-00
311-0831-00 321-0207-00
321-0234-00 321-0194-00 321-0371-00 321-0372-00
315-0243-00 311-0585-00
----------
321-0251-00 321-0191-00
311-0883-00 321-0191-00 315-0684-00 321-0194-00
321-0371-00 321-0372-00 315-0243-00 321-0238-00 321-0146-00 311-0258-00
321-0209-00 321-0238-00 321-0209-00 321-0222-00
321-0251-00 321-0251-00
321-0222-00 321-0150-00 317-0103-00
317-0750-00 321-0402-00
317-0750-00
317-0103-00 315-0473-00
311-0831-00 311-1272-00 3Ι7-0512-00
317-ο103-0ο
317-0132-0 317-0132-00
ElectricalPa
k
tronix
ts-7511
Serial/ModelNo.
E
ff
801010
Β
060000
Π
Dsco
Ο Β
n
059999
t
RES
.,FXD,CMPSN
RES
.,FXD,CMPSN
RES
.,FXD,CMPSN
RES
.,FXD,CMPSN .,FXD,CMPSN
R
ES ES
.,FXD,CMPSN
R
RES
.,FXD,FILM
RES
.,FXD,FILM RES.,FXD,FILM RES.,FXD,FILM:8.66 RES
.,FXD,FILM:8.66K
RES
.,FXD,FILM .,FXD,CMPSN
RES
.,FXD,CMPSN:S.1K
RES RES
.,FXD,CMPSN
R
ES
.,FXD,CMPSN
R
ES.,VAR
R
ES
.,FXD,FILM:1.4K
RES
.,FXD,FILM
RES
.,FXD,FILM:1.02K .,FXD,FILM
RES RES
.,FXD,FILM
ES
.,FXD,CMPSN
R R
ES.,VAR,NONWIx:15K
(FURNISHED
RES.,FXD,FILM RES
.,FXD,FILM
R
ES
.,VAR,NONWIR:SOK
R
ES
.,FXD,FILM RES.,FXD,CMPSN RES.,FXD,FILM:1.02
RES.,FXD,FILM RES
.,FXD,FILM .,FXD,CMPSN
RES
ES
.,FXD,FILM:2.94KΟΗΜ
R RES.,FXD,FILM
RES.,V
AR,NONWIR:PNL,100
ES
.,FXD,FILM:1.47K
R
RES
.,FXD,FILM:2.94
RES
.,FXD,FILM:1.47K .,FXD,FILM
R
ES
RES.,FXD,FILM:4.02K RES
.,FXD,FILM:4.02K
.,FXD,FILM:2K
RES
RES
.,FXD,FILM
.,FXD,CMPSN:10KΟΗΜ
RES
RES.,FXD,CMPSN
RES
.,FXD,FILM
RES
.,FXD,CMPSN
RES
.
,FXD,CMPSN
RES.,FXD,CMPSN
κ
ES.,VAΑ
R
ES.,V
AR,NONWIΑ:lOOx
ES
.,FXD,CMPSN
R RεS.,ΣxD,CMPSN
.,FXD,CMPSN:1.3K
R
ES
R
ES
.,FXD,CMPSN:1.3K
N
ame &
Description
:240
OHM,5%,0
:24K
OHM,5%,0
:100
OHM,5%,0 OHM,5%,0
:100 :100
OHM,5%,0
:100
OHM,5%,0 K
:25.05 :16.7K :54
:54.9K
,NONWIR:TR
:2
:71.5KΟΗΜ
:73
AS
:4 :953
:953
:71.5KΟΗΜ
:73
:324
:2K
:357
,NONWIΑ:7RMR,l00
ΟΗΜ,0.25%,0 ΟΗΜ,0.25%,0.125 ΟΗΜ,Ι
.9K
ΟΗΜ
K
ΟΗΜ ΟΗΜ,Ι
:IM
OHM,5%,0
OHM,5%,0
.1K
OHM,5%,0
:5 :IM
OHM,5%,0 MR,l00KOHM,O.SW
ΟΗΜ,1
.67K
ΟΗΜ,Ι ΟΗΜ,Ι
.2K
ΟΗΜ
:24K
OHM,5%,0
ΟΗΜ
Α U
NITWITH
.02K
ΟΗΜ,Ι
ΟΗΜ
ΟΗΜ,0.50
ΟΗΜ
ΟΗΜ
:680K
ΟΗΜ
K
.2K
οΗΜ
:24K
OHM,5%,0
ΟΗΜ
ΟΗΜ οΗΜ
K
ΟΗΜ
ΟΗΜ
,1%,0.125W
ΟΗΜ οΗΜ
ΟΗΜ
,1%,0
ΟΗΜ
:75
ΟΗΜ
ΟΗΜ
:150K
ΟΗΜ
:75 :lOKΟΗΜ
:47KOHM,5%,0
:S .1KοΗΜ,5%,0
:1oK
οΗΜ
ΟΗΜ
ΟΗΜ
%,0 ,1%,0 ,1%,0
%,0
.25W
.25W
%,0
%,0
%,0 ,1%,0 ,1%,0
,20%,0
S320)
%,0
,1%,0
,1%,0
,5%,0 ,1%,0
,1%,0 ,1%,0
,1%,0
,1%,0
0HM,O
,1%,0.125W ,1%,0
,1%,0 ,1%,0
,1%,0
.125
,1%,0
,5%,0
,5%,0
,1%,0
,5%,0
,5%,0
KOHM,O.SW
ΟΗΜ
,10%,0
,5%,ο.125
,5%,0 ,5%,0
.25W .25W .25W
.25W .25W .25W
.125
W
W
.125
W
.125
W
.125
W
.125
W
.25W .25W
.125
W
.125
W
.125
W .125W .125
W
.25W
.25W
.125
W
.125
W
W
.125
W
.25
ω
.125W
.125
W
.125
W
.25W
.125W 91637
.125
W
W
.SO
.125
W
.125
W
.125
ω
.125
W
W
.125
W
.125
W
.125
W
.125
ω
.125W
.125
W
.25W
W
.50
.125
W
.125
W
.125
W
M
fr
d eMfrPartNumber
Co
01121 01121
01121CB1015 01121CB1015 01121CB1015 01121
91637 91637 91637 91637 91637 91637
01121 01121 01121CB5125
01121CB1055
73138 91637
91637 91637 91637 91637 01121
71590
91637 91637
01121 91637
01121CB6845 91637
91637 91637 01121
91637 01121
91637 91637
91637 91637 91637 91637
91637 91637 01121
01121 24546 01121
01121 01121
73138 32997 01121 01121
01121 01121
B2415
C
C
B2435
C
B1015
MFF1816D25051C MFF1816D16701C
MFF1816G54901F
MFF1816G86600F
MFF1816G86600F MFF1816G54901F
C
B1055
C
B5125
91-104-0
MFF1816G14000F
MFF1816G2670oF MFF1816G10200F
MFF1816G71501F MFF1816G73201F
C
B2435
ΒΑ
201
-061
MFF1816G40200F MFF1816G953ROF
S
V5031
MFF1816G953
MFF1816G10200F
MFF1816G71501F MFF1816G73201F
C
B2435 MFF1816G29400F MFF1816G324ROF
W
AIG024S101UA
MFF1816G14700F MFF1816G29400F MFF1816G14700F MFF1816G20000F MFF1816G40200F
MFF1816G40200F
MFF1816G20000F MFF1816G357ROF
ΒΒ1035 ΒΒ7505
NASSD1503F
ΒΒ7505 ΒΒ1035
C
B4735
91-104-0
Ρ
-L58-104
3329
ΒΒ5125 ΒΒ1035
ΒΒ
1325
ΒΒ
1325
,
R
OF
7_8
REVJ,SEP
1980
C
R
430
R
431
Α
434
R
434
Α
440
R441
R
442
R
446
R
451
R
452
Α
453
Α
455
Α
457
R
460
R
460
Α
461
R
462
R
464
R
470
R
471
R
472
R
474
R
474
R
475
R
476
R
478
R
479
R
501
R
502
R
503
Α
504
R
505
R
506
R
508
Α
509
R
512
R
513
R
515
Α
516
R
517
R
518
Α
519
Α
521
R
522
Α
523
Α
524
R
525
R
527
R
528
R
529
R
531
R
533
R
535
R
537
R
539
R
551
R
561
ktNo
Te k
.
P
artNo.
315-0201-00 315-0102-00
315-0122-00 315-0152-00
311-0310-00 315-0511-00
315-0153-00 315-0204-00
3
15-0513-00
315-0101-00 315-0243-00
315-0432-00
315-0472-00 311-0950-00 311-1268-00 315-0272-00 315-0223-00 315-0331-00
315-0201-00 315-0124-00
317-0104-00 317-0202-00 317-0102-00 317-0103-00
317-0153-00 315-0362-00
317-0511-00 315-0683-00
315-0104-00 315-0474-00
317-0105-00 315-0154-00 321-0399-00 321-0373-00 315-0105-00 321-0402-00
321-0402-00 321-0223-00 321-0299-00 321-0346-00 321-0346-00 321-0339-00
321-0373-00 321-0402-00 321-0344-00
321-0373-00 321-0402-00
321-0373-00 321-0304-00
321-0402-00 321-0373-00 321-0402-00 321-0402-00 321-0356-00
321-0344-00 315-0510-00
315-0510-00
tronix
Serial/Mo delNo
E
ff
Β
010100Β049999
Β
050000
Β
010100Β059999
Β
060000
ΧΒ
120000
Β
010100Β099999
Β
1Ο 00Ο0
ΧΒ
1Ο 00Ο0
Β
010100
Dsco
Β
099999ΧRES.,FXD ,CMPSN:510
.
n
t
RES.,
FXD,CMPSN
RES.,FXD
R
ES.,FXD,CMPSN:1 .2KOHM,5%,0
R
ES
.,FXD,CMPSN:1.5K
RES
.,VAR,N
RES.,FXD,CMPSN:510
R
ES
.,FXD,CMPSN
RES.,FXD,CMPSN RES.,FXD
RES.,
FXD,CMP
R
ES
.,FXD,CMPSN:24KOHM,5%,0
RES.,
FXD,CMP
RES.,
FXD,CM RES.,VAR,NONWIR:TR RES.,VAR,NONWIR:lOK
R
ES.,
FXD,CMP
R
ES.,
FXD,CMPSN RES.,
FXD,CMP RES.,
FXD,CMPSN RES.,FXD,CMPSN RES.,FXD,CMPSN:IOOK
R
ES
.,FXD,CMPS RES.,FXD ,CMPSN:IKΟΗΜ RES.,FXD,CMPSN:l
RES.,FXD ,CMPSN:15KΟΗΜ RES
.,FXD ,CMPSN:3 .6KOHM,5%,0
R
ES
.,FXD,CMPSN:68KOHM,5%,0
R
ES
.,FXD ,CMPSN:100KOHM,5%,0 RES
.,FXD ,CMPSN:470KOHM,5%,0
RES
.,FXD ,CMPSN:IMOHM RES.,FXD ,CMPSN:150KOHM,5%,0 RES.,FXD,FILM
R
ES
.,F RES
.,FXD ,CMPSN:IM RES
.,F
RES
.,FXD,FILM RES.,ΣXD,FILM:2.05K
RES
.,FXD,FILM
RES
.,FXD,FILM
.,F
RES
RES.,FXD,FILM
RES.,FXD,FILM:75KOHM, 1%,0.125
RES.,FXD,FILM
R
ES
.,FXD,FILM
RES
.,FXD,FILM
RES
.,FXD,FILM
RES
.,FXD,FILM
RES.,FXD,FILM RES
.,FXD,
R
ES
.,FXD,FILM
RES.,FXD,FILM RES
.,FXD,FILM
R
ES
.,FXD,FILM
RES.,FXD,FILM RES
.,FXD RES.,FXD,CMPSN
N
ame&Descriptio n
:200
,CMPSN:IK
ONWIR:SK
:15KOHM,5%,0 :200KOHM,5%,0
,CMPSN:S1
SN:100 SN :4 .3KOHM,5%,0.25W
P SN :4 .7KOHM,5%,0
SN:2 .7KOHM,5%,0
:22KOHM,57,,0
SN:330
:200 :120KOHM,5%,0
N :2KΟΗΜ
O
:140KΟΗΜ
D,FILM
X
X
X
:75KOHM,
D,FILM
:150 :150KΟΗΜ
:12.7K :39.2K
D,FILM
:39.2K :33.2K
:150KΟΗΜ :37.4K :75KOHM, 1%,0.125 :150KΟΗΜ,Ι :75KOHM, 1%,0
:14.3K
FILM
:150KOHM,1Y :75KOHM,1Y :150KOH :150KOHM,lY,,0 :49.9K
:37.4KONM
,C
MP
SN:51
:51
OHM,5%,0
OHM,5%,0
ΟΗΜ
ΟΗΜ
OHM,5%,0
K
OHM,5%,0 OHM,5%,0
MR,lOKOHM
ΟΗΜ
OHM,5%,0 OHM,5%,0
ΟΗΜ
K
ΟΗΜ
ΟΗΜ
OHM,5%,0
K
ΟΗΜ
ΟΗΜ ΟΗΜ
ΟΗΜ ΟΗΜ ΟΗΜ,Ι
ΟΗΜ
ΟΗΜ
ΟΗΜ
OHM,5%,0 OHM,5%,0
.25W
.25W
.25W
,5%,0
.25
,20Υ0.50W
,10%,0.50W
,5%,0 ,5%,0 ,5%,0
,5%,0.125W 01121
,5%,0
,5%,0
,5Y,,0
,1%,0
1%,0
,1%,0 , 1
%,0 ,1%,0 ,1%,0.125W ,1%,0
,
Ι
,1%,0
,1%,0
%,0
,1%,0
,,0 ,,0
M
,
1Y,,0
,1%,0
, 1Y,,0
W
.25W
.25W
.25W .25W .25W
.25W
.25W ,O .S
W
.25W
.25W .25W
.25W
.25W .125
W .125W 01121 .125
W
.125
W
.25W
.125
W
.25W
.25W .25W
.125W
.25W
.125
W
.125W
.25W
.125
W
.125W 24546
.125
W
.125
%,0 %,0
W
.125W .125
W
W
.125
W
.125
W
W
.125
W
.125W
.125W 91637
.125
W
.125
W .125W .125
W
.125
W
.125
W
.25W .25W
R
eplaceable
E
lect
ricalParts-7511
M
fr
Code
01121 01121
01121CB 01121 01121W-7350 01121
01121 01121
01121 01121CB 01121 01121CB
01121 73138 32997
01121CB 01121CB 01121CB
01121CB 01121CB 01121
01121
01121 01121CB 01121 01121CB 01121 01121CB
01121 01121 91637
91637
01121CB
24546NA55D1503
91637 91637
91637MFF 91637 91637
91637 24546 91637 91637 24546NA55
91637
24546 91637 24546NA55D1503 24546NA55D1503 91637
91637MFF 01121CB
01121CB
frPartNumber
M
B
C
2015
CB
1025 1225
CB
1525
Α
B
C
5115
CB
1535
CB
2045
CB
5135
1015
C B
2435 4325
C B
4725
Β
R
91
10
Ρ-L58
3329
2725 2235 3315
2015 1245
ΒΒ
1045
ΒΒ2025 ΒΒ
1025
ΒΒ1035
ΒΒ1535
3625
ΒΒ5115
6835
B
C
1045
4745
ΒΒ
1055
C
B
1545
MFF
1816G14002
MFF
1816G75001
1055
NA55D
1503
MFF
1816G20500
MFF
1816G12701 1816G39201
MFF
1816G39201
MFF
1816G33201
MFF
1816G75001
NA55D
1503
MFF1816G37401 MFF
1816G75001
D
1503
MFF
1816G75001
MFF
1816G14301
NA55D
1503
MFF
1816G75001
MFF
1816G49901
1816G37401
5105 5105
K
-103
F F
F
F
F F
F
F
F F
F
F F
F
F F
F
F
F F
F F
REV
Κ,SEP
1980
7-9
eplacea
R
C
k
tNo.
R
602
R
605
R
606
R609
Α
621
R
622
R
624
Α
626
R
627
Α
629
Α
634
R
635
R
636
R
638
S141A S141A S146 S146
S302A,B S302A,B
5320
Τ
230
Τ
400
Τ
410
Τ
430
V
R221
P
ble
E
lectrical
Tektronix P
artNo.
315-0101-00 315-0101-00 315-0101-00
315-0101-00 321-0632-00 321-0601-00
321-0236-00 321-0315-00 315-0180-00 315-0512-00
315-0100-00 315-0470-00
315-0101-00 315-0101-00
-C
670-1149-00
-C
670-1149-01 262-0894-00
260-1090-00 670-1148-00 670-1148-01
311-0585-00
-----
-----
120-0547-00 120-0650-00 XFMR,TOROID 120-0487-00 120-0546-00
152-0226-00
arts-7511
Serial/Model
E
ff
Β
010100
Β
020000
Β
010100
Β
020000
No
.
Dscont
Β
019999
Β
019999
N
ame&Descri
RES.,FXD,CMPSN RES.,FXD,CMPSN
RES
.,FXD,CMPSN
RES
.,FXD,CMPSN
RES.,FXD,FILM:9.41K
RES.,FXD,FILM:2.141K
RES
.,FXD,FILM:2.8K
R
ES
.,FXD,FILM
R
ES
.,FXD,CMPSN
RES.,FXD,CMPSN RES
.,FXD,CMPSN .,FXD,CMPSN
RES RES
.,FXD,CMPSN
RES
.,FXD,CMPSN
SWITCH,PUSH SWITCH,PUSH SWITCH,WIRED
S
W
ITCH,ROTARY
S
W
ITCH,PUSH
SWITCH,PUSH
RES
.,VAR,NONWIR:15K
(FURNISHED
XFMR,TOROID
XFMR,TOROID XFMR,TOROID
S
EMICOND
:100 :100
:100 :100
:18
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:18
.1K
:S :10
:47
:100 :100
: :
:VOLTS/DIV
:VOLTS/DIV : :
AS
ΑUNITWITHΑ320)
:4-15
WINDINGS
:2
T
URNS
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T
URNS
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DEVICE
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ΟΗΜ
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,5%,0
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ΟΗΜ
,57,0
ΟΗΜ,0.5%,0
ΟΗΜ,0.25%,0
ΟΗΜ
,1%,0
,1%,0.125W
ΟΗΜ
,5%,0
ΟΗΜ
,5%,0
ΟΗΜ
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ΟΗΜ
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ΟΗΜ
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T
URNWINDINGS
BIFILA BIFILAR
p
tion
.25W .25W
.25
W
.25W
.125W 91637
.125W 91637MΣ
.125W 91637
.25W
.25
W
.25
W
.25
W
.25
W
.25W
.25
W
R
M
fr
P
Code 01121CB1015
01121CB1015 01121CB1015 01121CB1015
91637 01121CB1805 01121CB5125
01121CB1005
01121CB4705
01121 01121CB1015
80009 80009 670-1149-01
80009
80009 80009 80009
71590
80009 80009 80009 120-0487-00 80009
14552
artNumber
M
fr
MFF1816D941000
F1816D21410C
MFF1816G28000F MFF1816G18701F
C
B1015
670-1149-00
262-0894-00 260-1090-00
670-1148-00 670-1149-01
ΒΑ
201-061
120-0547-00 120-0650-00
120-0546-00 TD3810980
7-1
REV
Ι ,
EP
1980
0
S
SECTION
DIAGRAMS
AND
MECHANICAL
8
PARTS
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following
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special
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ILLUSTRATIONS
are
symbols
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circuit
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encloses
.
made
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controlorconnector
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circuit
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.
located
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