VOLTAGE
AND WAVEFORM
CONDITIONS
WARNING
|
Dangerous
potentials exist at
several points throughoutthisinstrument.
When
the instrument
is operated with
the covers removed, do not touch exposed
connections
or components. Some transistors have
voltages present on
their
cases.
Disconnect the power source before replacing parts.
RECOMMENDED
TEST EQUIPMENT
Item
Specifications
Recommended
Type
Test
oscilloscope system
Deflection factor,
1 mV to 50 V/div; input
impedance, 1
megohm; frequency
response,
de
to 2 MHz.
Probe: 10X
attenuation
probe compatible
with
vertical
input.
Tektronix
5110, 5A13N, 5A18N,
5B10N oscilloscope
system orequiv. Use
a
Tektronix
P6108 or P6062B Probe.
Voltmeter (Non-loading
digital
multimeter)
Range,
Oto
250
V; input
impedance,
10 megohms.
Tektronix DM 501
Digital
Multimeter
with
power module.
VOLTAGE
CONDITIONS
Voltage measurements
on this diagram were
made under the following conditions:
An
amplifier unit is installed in
both vertical
compartments. A time-base unit is installed in the horizontal compartment
(set
for
external volts/div). INTENSITY control is set fully ccw.
Voltmeter
common
is connected to chassis ground.
WAVEFORM CONDITIONS
OSCILLOSCOPE
UNDER.
TEST,
install an
amplifier unit in
both vertical compartments and a time-base unit in the
horizontal compartment.
Connect
the
CALIBRATOR output signal to the amplifier
units (set vertical input coupling
to
de and volts/divfor a 2-division display).
Set the time-base unit for internal auto-trigger, 2 ms/division sweep rate.
TEST
OSCILLOSCOPE.
Set the test
oscilloscope triggering for
auto mode with ac coupling
from the internal source
and
set vertical input coupling to ac. Connect a 10X Probe to the
vertical input. Position the display as necessary.
NOTE
The
waveforms shown are actual waveform photographs taken with aTektronix Oscilloscope
Camera System and
Projected
Graticule. Vertical deflection factor shown on the waveform is the actual deflection factor from the
probe
tip. Voltages and
waveforms on the diagrams are not absolute and may
vary between instruments because
of
component tolerances, internal calibration, or front-panel settings. Readouts are simulated in larger-than-
Содержание 5110
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Страница 84: ... i 143 I132 2134 15 BLOCK DIAGRAM ...
Страница 85: ... t 2 E I 5110 S LNHNOdWOD BOVJHaiNI ...
Страница 88: ...J4 O3 INTERFACE J INTERFACE A NOV 1978 ...
Страница 92: ...AUXILIARY BOARD 1143 2134 18 AUXILIARY BOARD ...
Страница 95: ...DEFLECTION AMPLIFIERs ...
Страница 102: ...LV POWERSUPPLY CALIB COMPONENTS A 4 L V Power Supply circuit board 5110 ...
Страница 107: ...SIGNALS OUT OPTION 7 ONLY SI 10 OPT 7 213 26 REV A FE BI979 SIGNALS OUT COPTION T ONLY n ...
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Страница 115: ...5110 OSCILLOSCOPE ...
Страница 116: ...FIG 2 MAINFRAME p 5110 OSCILLOSCOPE ...
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Страница 123: ...13 FIG 4 RACKMOUNT CABINET 5110 OSCILLOSCOPE ...
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