參數(shù)資料
型號: M52722SP
廠商: Mitsubishi Electric Corporation
英文描述: 3-CHANNEL VIDEO PREAMPLIFIER PROVIDED WITH OSD MIX AND RETRACE LINE BLK FOR HIGH-RESOLUTION
中文描述: 3通道視頻前置放大器帶OSD提供的混合并回朔線座的高分辨率
文件頁數(shù): 7/17頁
文件大?。?/td> 125K
代理商: M52722SP
MITSUBISHI ICs (Monitor)
M52722SP
3-CHANNEL VIDEO PREAMPLIFIER PROVIDED WITH OSD MIX
AND RETRACE LINE BLK FOR HIGH-RESOLUTION
7
F
C2
and
F
C2
frequency characteristics 2 and relative
frequency characteristics 2 (f=180MHz at typ.)
The same as for F
C1
,
F
C1
and
F
C1'
applies except adjusting the
main contrast voltage (V17) and allowing the amplitude of output
signal when SGA is input to be 1.0V
P-P
.
C.T.1 crosstalk 1 (f=50MHz) and
C.T.1' crosstalk 1 (f=180MHz)
1. The conditions shall be as specified in the electrical
characteristics. (Set the input pin and hold pin as in the case of
F
C1
,
FC1
, F
C1'
and
F
C1'
)
2. Input SG1 (or SG2) to pin
waveform amplitude of T.P25 (T.P30 or T.P35) to be V
OR
, V
OG
or
V
OB
.
3. Crosstalk C.T.1 (C.T.1')
(R-ch) only, measure the output
C.T.2 crosstalk 2 (f=50MHz) and
C.T.2' corsstalk 2 (f=180MHz)
1. Change the input pin to pin
the case of C.T.1 or C.T.1'.
2. Crosstalk C.T.2 (C.T.2') is found by:
(G-ch), and read the output as in
C.T.3 crosstalk 3(f=50MHz) and
C.T.3' crosstalk 3(f=180MHz)
1. Change the input pin to pin
the case of C.T.1 or C.T.1'.
2. Crosstalk C.T.3 (C.T.3') is found by:
(B-ch), and read the output as in
Tr, and Tf, Pulse characteristics 1 and pulse characteristics 2
1. The conditions shall be as specified in the electrical
characteristics table. Adjust the main contrast voltage (V17) and
brightness voltage (V19), and allow the output signal amplitude
to be 4.0Vp-p, and the black level 2.0V.
2. Use an active probe to measure rise Tr1 and fall Tf1 at 10% to
90% of input pulse.
3. Then, use an active probe to measure rise Tr2 and fall Tf2 at 10%
to 90% of output pulse.
4. Pulse characteristics Tr and Tf:
V14th clamping pulse threshold voltage
1. The conditions shall be as specified in the electrical characteristic
table.
2. Gradually reduce SG4 level at this time, while monitoring the
output signal (pedestal voltage: about 1.8V), and measure SG4
top level when the pedestal voltage of output signal is not
stabilized and starts to fall.
W14 minimum clamping pulse operation width
Gradually reduce SG4 pulse width, and measure SG4 pulse width
(1.5V from GND) when the pedestal voltage of output signal is not
stabilized and starts to fall.
P
DCH
and P
DCL
, pedestal voltage temperature characteristics 1
and pedestal voltage temperature characteristics 2
1. The conditions shall be as specified in the electrical
characteristics table.
2. Measure pedestal voltage at room temperature to let the value be
P
DC
1.
3. Then, measure pedestal voltage at -20C and 85C to let the
value be P
DC2
or P
DC3
.
4. P
DCH
=P
DC1
-P
DC2
P
DCL
=P
DC1
-P
DC3
OTr and OTf, OSD pulse characteristics 1 and OSD pulse
characteristics 2
1. The conditions shall be as specified in the electrical
characteristics table. Adjust main OSD adjustment voltage (V36)
and brightness voltage (V19) to allow output signal amplitude to
become 3.0Vp-p, and black level 2.0.
2. Use an active probe to measure rise OTr1 and fall OTf1 at 10% to
90% of input pulse.
3. Use an active probe to measure rise OTtr2 and fall OTf2 at 10%
to 90% of output pulse.
4. OSD pulse characteristics OTr and OTf are found by:
13
C.T.1=20log
V
OG
or V
OB
[V
P-P
]
V
OR
[V
P-P
]
[dB]
(C.T.1’)
8
C.T.2=20log
V
OR
or V
OB
[V
P-P
]
V
OG
[V
P-P
]
[dB]
(C.T.2’)
3
C.T.3=20log
V
OR
or V
OG
[V
P-P
]
V
OB
[V
P-P
]
[dB]
(C.T.2’)
Tr (nsec) = (Tr2)
2
- (Tr1)
2
Tf (nsec) = (Tf2)
2
- (Tf1)
2
10%
90%
100%
0%
Tr1
or
Tr2
Tf1
or
Tf2
OTr (nsec) = (OTr2)
2
- (OTr1)
2
OTf (nsec) = (OTf2)
2
- (OTf1)
2
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