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M52693SP View Datasheet(PDF) - MITSUBISHI ELECTRIC

Part Name
Description
View to exact match
M52693SP
Mitsubishi
MITSUBISHI ELECTRIC  Mitsubishi
M52693SP Datasheet PDF : 9 Pages
1 2 3 4 5 6 7 8 9
MITSUBISHI ICs (AV COMMON)
M52693SP
BURST LOCK CLOCK GENERATOR
ELECTRICAL CHARACTERISTICS TEST METHOD
VR
VR=VRH-VRL
VSOH, VSOL, tH and tPDH
SYNC IN
(PG 1 )
tPDH
SYNC OUT
(Pin 16 )
GND
tH
VSOH
VSOL
Sync-in
Measure tH and tPDH when the input amplitude of pin 15 is 0.1VP-P.
Make sure that tH and tPDH are within the allowable range. When
the input amplitude of pin 15 is 0.6VP-P, make sure that tH and tPDH
are within the allowable range.
If the voltage which appears at pin 30 when pin 18 is "H" is taken
as Vsub1, and the voltage which appears at pin 30 when pin 18 is
"L" is taken as Vsub2, the clamp offset is given by the following
expression:
DVSRB = (Vsub1 - V27), (Vsub2 - V27)
Vsub and VSRB
Measure pin 30 DC output voltage in correspondence to the "H"
and "L" states of pin 18 .
Gsub
Measure pin 30 gain in correspondence to the "H" and "L" states of
pin 18 .
CTsub, Cmain, and CTPIP
Measure crosstalk under the following input conditions:
Prameter
Input signal
CTsub
CTmain
CTPIP
CTsub 1
Ctsub 2
CTmain 1
CTmain 2
CTPIP 1
CTPIP 2
Sine wave
Amplitude
0.3VP-P
Frequency
3.58MHz
Pin connection
Switching condition:Left
Input codition:Right
4
b
IN
7
a
--
a
--
b
IN
b
IN
a
--
a
--
b
IN
b
IN
a
--
a
--
b
IN
17
0V
0V
0V
0V
0 5V
0 5V
18
5 0V
0 5V
0V
0V
0V
0V
20
0V
0V
5 0V
0 5V
5V
0V
fBWsub
Measure pin 30 frequency characteristics in correspondence to the
"H" and "L" states of pin 18. Condition: -3dB
Vmain
Measure pin 14 DC output voltage in correspondence to the "H"
and "L" states of pin 20 .
Gmain
Measure pin 14 gain in correspondence to the "H" and "L" states of
pin 20 .
fBWmain
Measure pin 14 frequency characteristics in correspondence to the
"H" and "L" states of pin 20 . Condition: -3dB
VPIP
If the voltage which appears at pin 1 when pin 20 is "H" is taken
as Vpip1, and the voltage which appears at pin 1 when pin 20 is
"L" is taken as Vpip2, VPIP is given by the following expression:
VPIP = Vpip1 - VPIP , Vpip2 - VPIP

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