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Calibration—7D14
e.
Set
the
medium-frequency generator for a five-
division
(100 millivolts) display at
the 50-kHz reference
frequency.
f.
Set
the time-base unit for a sweep rate of 10 µs/
division
and observe the Trigger Indicator square-wave dis
play.
g.
Set
the generator for an output
of 3.5 MHz.
h.
Increase
the output frequency
of the generator until
the
Trigger Indicator display amplitude
becomes zero (a
straight
line).
i.
CHECK—Output
frequency of
generator must be 5
MHz±1
MHz.
j.
Disconnect all test equipment.
COUPLING
TRIGGER
LEVEL/SLOPE
6.
Check
TRIGGER
LEVEL
Range
and
SLOPE
Selection
a.
Change
the following control settings:
7D14
AC
VAR
Centered
on positive slope
(left of
center)
b.
Connect the medium-frequency
constant-amplitude
generator
to the CH A INPUT through the five-nanosecond
GR
cable,
GR to BNC male adapter, and BNC T connector.
Connect
the output of the BNC
T connector to the ampli
fier
unit
input through the 18-inch
BNC cable.
c.
Set
the
amplifier unit for a vertical deflection factor
of .2 volt/division.
d.
Set
the generator for
a five-division display (1 volt) of
a
50-kHz signal.
e.
Set
the time-base
unit for a sweep rate of 20
µs/
division.
f.
Set
the time-base
unit to trigger at the center of the
positive-slope
region.
g.
Rotate
the 7D14 LEVEL/SLOPE control throughout
the
positive-slope
range from the 6:00 o'clock
to 12:00
o'clock
positions while
observing the Trigger Indicator and
sine-wave
generator
displays.
h.
CHECK
—Trigger Indicator and
sine-wave generator
waveforms
are
in
phase with one another (both waveforms
start
on the positive-going
slope), and the Trigger Indicator
display
amplitude becomes zero (straight line) before the
LEVEL/SLOPE control
reaches either
extreme of rotation.
i. Rotate
the 7D14
LEVEL/SLOPE control throughout
the
negative-slope
range from
the 6:00 o'clock to 12:00
o'clock
positions while observing
the Trigger Indicator and
sine-wave
generator displays.
j. CHECK—Trigger Indicator and
sine-wave generator
waveforms are
out of
phase (sine-wave generator waveform
starts
on
the
positive slope and Trigger Indicator waveform
starts
on
the negative slope), and the Trigger
Indicator dis
play
amplitude
becomes
zero (straight line) before the
LEVEL/SLOPE
control reaches either extreme of rotation.
k.
Disconnect all test equipment.
NOTES
5-7
Summary of Contents for 7D14
Page 4: ...7D14 ...
Page 11: ...Operating Instructions 7D14 Fig 2 1 7D14 front panel controls and connectors 2 2 ...
Page 33: ... 3 13 Fig 3 11 Logic diagram for Zero Cancel Logic stage Circuit Description 7D14 ...
Page 38: ...3 18 Fig 3 16 Time Base and Control circuit detailed block diagram Circuit Description 7D14 ...
Page 44: ...NOTES ...
Page 46: ...NJ Fig 4 1 Electrode configuration for semiconductors in this instrument I ...
Page 68: ...NOTES ...
Page 96: ... 7DI 4 DIGITAL COUNTER UNIT ...
Page 98: ...GRS 0371 BLOCK DIAGRAM ...
Page 99: ......
Page 103: ...0 0 I 200 mV 500 µs 0 001 200 mV 500 µs 0 001 MHz 00 mV E 00 µs 0 001 MHz ...
Page 106: ...1 ...
Page 110: ...A2 Logic Circuit Board Assembly jQ798i 798 jc743 CR744t uni R724 R742 JL744S FrR796 ...
Page 113: ......
Page 114: ...P 0 A2 LOGIC BOARD ...
Page 121: ... A B D t F H J NPR Tj ZWX V A AC M AEA HUM qAZ DEF HJ N P R S T J V V7X y ABM APAI AA 7DI4 ...
Page 129: ......
Page 130: ...4 7D14 DIGITAL COUNTER ...