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M52742SP Datasheet(PDF) 7 Page - Mitsubishi Electric Semiconductor

Part # M52742SP
Description  BUS CONTROLLED 3-CHANNEL VIDEO PREAMP FOR CRT DISPLAY MONITOR
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Manufacturer  MITSUBISHI [Mitsubishi Electric Semiconductor]
Direct Link  http://www.mitsubishichips.com
Logo MITSUBISHI - Mitsubishi Electric Semiconductor

M52742SP Datasheet(HTML) 7 Page - Mitsubishi Electric Semiconductor

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MITSUBISHI ICs (Monitor)
M52742SP
BUS CONTROLLED 3-CHANNEL VIDEO PREAMP FOR CRT DISPLAY MONITOR
7
PRELIMINARY
Notice:This is not a final specification.
Some parametric limits are subject to change.
VC3 Main contrast control characteristics3
Measuring condition and procedure are the same as described in
VC1.
∆VC3 Main contrast control relative characteristics3
Measuring condition and procedure are the same as described in
∆VC1.
VSC1 Sub contrast control characteristics1
Measur the amplitude output at OUT (29, 32, 35). The measured
value is called VOUT (29, 32, 35). Sub contrast control
characteristics VSC1 is calculated by the equation below:
∆VSC1 Sub contrast control relative characteristics1
Relative characteristics
∆VSC1 is calculated by the equation below:
∆VSC1= VOUT (29)/VOUT (32),
VOUT (32)/VOUT (35),
VOUT (35)/VOUT (29).
VSC2 Sub contrast control characteristics2
Measuring condition and procedure are the same as described in
VSC1.
∆VSC2 Sub contrast control relative characteristics2
Measuring condition and procedure are the same as described in
∆VSC1.
VSC3 Sub contrast control characteristics3
Measuring condition and procedure are the same as described in
VSC1.
∆VSC3 Sub contrast control relative characteristics3
Measuring condition and procedure are the same as described in
∆VSC1.
VMSC Main/sub contrast control characteristics2
Measure the amplitude output at OUT (29, 32, 35). The measured
value is called VOUT (29, 32, 35). Main/Sub contrast control
characteristics VMSC1 is calculated by the equation below:
∆VMSC Main/sub contrast control relative characteristics2
Relative characteristics
∆VMSC1 is calculated by the equation
below:
∆VMSC1= VOUT (29)/VOUT (32),
VOUT (32)/VOUT (35),
VOUT (35)/VOUT (29)
ABL1 ABL control characteristics1
Measure the amplitude output at OUT (29, 32, 35). The measured
value is called VOUT (29, 32, 35), and is ttreated as ABL1.
∆ABL1 ABL control relative characteristics1
Relative characteristics
∆ABL1 is calculated by the equation below:
∆ABL1= VOUT (29)/VOUT (32),
VOUT (32)/VOUT (35),
VOUT (35)/VOUT (29)
ABL2 ABL control characteristics2
Measuring condition and procedure are the same as described in
ABL1.
∆ABL2 ABL control relative characteristics2
Measuring condition and procedure are the same as described in
∆ABL1.
VB1 Brightness control characteristics1
Measure the DC voltage at OUT (29, 32, 35) with a voltmeter. The
measured value is called VOUT (29, 32, 35), and is ttreated as VB1.
∆VB1 Brightness control relative characteristics1
Relative characteristics
∆VB1 is calculated by the difference in the
output between the channels.
∆VB1= VOUT (29)/VOUT (32),
VOUT (32)/VOUT (35),
VOUT (35)/VOUT (29)
VB2 Brightness control characteristics2
Measuring condition and procedure are the same as described in
VB1.
∆VB2 Brightness control relative characteristics2
Measuring condition and procedure are the same as described in
∆VB1.
VB3 Brightness control characteristics3
Measuring condition and procedure are the same as described in
VB1.
∆VB3 Brightness control relative characteristics3
Measuring condition and procedure are the same as described in
∆VB1.
VSC1=20Log
VOUT
0.7
(dB)
VMSC1=20Log
VOUT
0.7
(dB)


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