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Operating Instructions—Type 422 AC-DC
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2. Set the VO LTS/DIV switch and the V A R IA B LE
VO LTS/D IV control to produce a display an exact number
of graticule divisions in amplitude. Do not change the
V A R IA B LE VO LTS/DIV control after obtaining the
desired deflection. This display can be used as a reference
fo r amplitude comparison measurements.
3. To establish an arbitrary vertical defelction factor so
the amplitude of an unknown signal can be measured
accurately at any setting o f the VO LTS/DIV switch, the
amplitude of the reference signal must be known. If it is
not known, it can be measured before the VA R IA B LE
VO LTS/D IV control is set in step 2.
4. Divide the amplitude o f the reference signal (volts) by
the product of the vertical deflection established in step 2
(divisions) and the setting of the VO LTS/DIV switch. This
is the vertical conversion factor.
Vertical
reference signal amplitude (volts)
Conversion
= ---------------------------------------------------------
Factor
vertical deflection (divisions) X VO LTS/
DIV switch setting
5. To measure the amplitude o f an unknown signal,
disconnect the reference signal and connect the unknown
signal to the INPUT connector. Set the VO LTS/D IV switch
to a setting that provides sufficient vertical deflection to
make an accurate measurement. Do not readjust the
V A R IA B LE VO LTS/DIV control.
1. Connect the reference signal to the INPUT connec
tor. Set the VO LTS/D IV switch fo r fo u r or five divisions of
vertical deflection.
2. Set the T IM E /D IV switch and the V A R IA B LE
T IM E /D IV control so one cycle o f the signal covers an
exact number o f horizontal divisions. Do not change the
V A R IA B LE T IM E /D IV control after obtaining the desired
deflection. This display can be used as a reference fo r fre
quency comparison measurements.
3. To establish an arbitrary sweep rate so the repetition
rate of an unknown signal can be measured accurately at
any setting of the T IM E /D IV switch, the repetition rate o f
the reference signal must be known. If it is not known, it
can be measured before the V A R IA B LE T IM E /D IV switch
is set in step 2.
4. Divide the repetition rate o f the reference signal
(seconds) by the product of the horizontal deflection estab
lished in step 2 (divisions) and the setting of the T IM E /D IV
switch. This is the horizontal conversion factor
Horizontal
Conversion =
Factor
reference signal repetition rate (seconds)_____________
horizontal deflection (divisions) X T IM E /D IV switch setting
6.
Measure the vertical deflection in divisions and
calculate the amplitude of the unknown signal using the
following formula.
g.
.
VO LTS/D IV
vertical
vertical
_
,
=
switch
x conversion X deflection
Am plitude
settjng
factor
(divisions)
EXAMPLE. Assume a reference signal amplitude o f 30
volts, a VO LTS/D IV switch setting o f 5 and the V A R IA
BLE V O LTS/D IV control is adjusted to provide a vertical
deflection of four divisions.
Substituting these values in the vertical conversion factor
form ula (step 4):
Vertical
v
Conversion =
7\~x §
.V~ = ^
Factor
Then w ith a VO LTS/D IV switch setting o f 10, the peak-to-
peak amplitude o f an unknown signal which produces a
vertical deflection of five divisions can be determined by
using the signal amplitude formula (step 6):
Signal
= i o v X 1.5 X 5 = 75 volts
Am plitude
5.
To measure the repetition rate of an unknown signal,
disconnect the reference signal and connect the unknown
signal to the INPUT connector. Set the T IM E /D IV switch
to a setting that provides sufficient horizontal deflection to
make an accurate measurement. Do not readjust the V A R
IABLE T IM E /D IV control.
6.
Measure the horizontal deflection in divisions and cal
culate the repetition rate o f the unknown signal using the
follow ing formula:
Repetition
Rate
T IM E /D IV
horizontal
horizontal
switch
X conversion
X deflection
setting
factor
(divisions)
NOTE
If the horizontal magnifier is used be sure to use the
magnified sweep rate in place of the T IM E /D IV
switch setting.
EXAMPLE. Assume a reference signal frequency o f 455
hertz (repetition rate 2.19 milliseconds), and a T IM E /D IV
switch setting o f .2 ms, w ith the V A R IA B LE T IM E /D IV
control adjusted to provide a horizontal deflection of eight
divisions. Substituting these values in the horizontal conver
sion factor formula (step 4):
Sweep Rates.
To establish an arbitary horizontal sweep
rate based upon a specific reference frequency, proceed as
follows:
Horizontal
Conversion
Factor
2.19 milliseconds
--------------------------- = 1.37
. 2 X 8
2-23
Summary of Contents for 422
Page 4: ...R TV 422 AC OC P o p p Type 422 AC DC ...
Page 64: ...Circuit Description Type 422 AC DC 3 26 Fig 3 15 Idealized DC DC Regulator circuit waveforms ...
Page 68: ...NOTES ...
Page 90: ...Maintenance Type 422 AC DC 4 22 Si Fig 4 14 High Voltage Rectifier Multiplier circuit board ...
Page 92: ...Maintenance Type 422 AC DC 4 24 Fig 4 16 DC Power Converter circuit board ...
Page 93: ...Maintenance Type 422 AC DC E 4 25 Fig 4 17 DC Power Control circuit board ...
Page 94: ...NOTES ...
Page 132: ...NOTES ...
Page 158: ......
Page 180: ...B U D C K D A G A N s N e o o o o u p T Y P E 4 Z 2 A C D C 0 2 foe ...
Page 187: ...T Y P E 4 1 2 A C D C l S W E E P T R I G G E R 3 s M 2 0 0 0 0 U P 1268 SWEEP TRIGGER ...
Page 191: ... H O R I Z O N T A L A M P L I F s N z o o o o u p H O R I Z O N T A L AMPLIFIER ...
Page 192: ... ...
Page 195: ...CRT CIRCUIT 10 3 f 8 OS M hS q u a gs u 0 z 3 U js o 0 1 j C V J C J u l Q ...
Page 198: ...FIG 1 FRONT TYPE 422 AC DC ...
Page 199: ...FIG 2 CHASSIS ...
Page 200: ...4 I TYPE 422 AC DC FIG 2 ...
Page 201: ...FIG 3 AC DC POWER SUPPLY s TYPE 422 AC DC FIG 3 ...
Page 205: ......