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M52732SP 查看數據表(PDF) - MITSUBISHI ELECTRIC

零件编号
产品描述 (功能)
生产厂家
M52732SP
Mitsubishi
MITSUBISHI ELECTRIC  Mitsubishi
M52732SP Datasheet PDF : 11 Pages
1 2 3 4 5 6 7 8 9 10
MITSUBISHI ICs (Monitor)
M52732SP
3-CHANNEL VIDEO AMPLIFICATION
VSCR2 Sub contrast control characteristics (minimum)
VSCR2 Sub contrast control relative characteristics (minimum)
1. Conditions are identical with those in Attached Table expect
setting V3, V7, and V11 to 3.0V.
2. Then read amplitude of the output at T.P20 (T.P24, 28), which is
VOR5 (VOG5, VOB5) and also VSCR2.
3. The relative sub contrast control characteristics VSCR2 is:
VSCR2=VOR5/VOG5, VOG5/VOB5, VOB5/VOR5
VCR2 Contrast/sub contrast control characteristics (typical)
VCR2 Contrast/sub contrast control relative
characteristics (typical)
1. Conditions are identical with those in Attached Table expect
setting V13, to 6.0V and V3, V7, and V11 to 6.0V.
2. Then read amplitude of the output at T.P20 (T.P24, 28), which is
VOR6 (VOG6, VOB6).
3. The gain and relative gain when the contrast and sub contrast
are typical, are:
VOR6 (VOG6, VOB6) [VP-P]
VCR3=20LOG
0.7
[VP-P]
VCR3=VOR6/VOG6, VOG6/VOB6, VOB6/VOR6
VB1 Brightness control characteristics (maximum)
VB1 Brightness control relative characteristics (maximum)
1. Under conditions in Attached Table.
2. Then use a voltmeter to measure the output at T.P20 (T.P24, 28),
which is VOR7 (VOG7, VOB7). This value is VB1.
3. In addition, the relative brightness control characteristic is
determined from VOR7, VOG7, and VOB7 by calculating differences
between each channel.
VB1 =VOR7-VOG7
=VOG7-VOB7
[mV]
=VOB7-VOR7
VB2 Brightness control characteristics (typical)
VB2 Brightness control relative characteristics (typical)
1. Under conditions in Attached Table.
2. Then use a voltmeter to measure the output at T.P20 (T.P24, 28),
which is VOR7' (VOG7', VOB7'). This value is VB2.
3. In addition, the relative brightness control characteristic is
determined from VOR7', VOG7', and VOB7' by calculating
differences between each channel.
VB2 =VOR7'-VOG7'
=VOG7'-VOB7'
[mV]
=VOB7'-VOR7'
VB3 Brightness control characteristics (minimum)
VB3 Brightness control relative characteristics (minimum)
1. Under conditions in Attached Table.
2. Then use a voltmeter to measure the output at T.P20 (T.P24, 28),
which is VOR7'' (VOG7'', VOB7''). This value is VB3.
3. In addition, the relative brightness control characteristic VB3 is
determined from VOR7'', VOG7'', and VOB7'' by calculating
differences between each channel.
VB3 =VOR7''-VOG7''
=VOG7''-VOB7''
[mV]
=VOB7''-VOR7''
FC1 Frequency characteristics1 (f=50MHz; maximum)
FC1 Frequency relative characteristics1
(f=50MHz; maximum)
FC1' Frequency characteristics1 (f=75MHz; maximum)
FC1' Frequency relative characteristics1
(f=75MHz; maximum)
1. Under conditions in Attached Table.
2. Use SG3 and SG4. Measure amplitude of the output waveform
at T.P20 (T.P24, T.P28) following the procedure in GV, GV.
3. The frequency characteristics FC1, FC1' are calculated by the
equations below:
VOR8 (VOG8, VOB8)
FC1=20LOG VOR1 (VOG1, VOB1)
[VP-P]
[VP-P]
VOR9 (VOG9, VOB9)
FC1'=20LOG VOR1 (VOG1, VOB1)
[VP-P]
[VP-P]
Whre, VOR8 (VOG8, VOB8) is the output amplitude when inputting
SG3, and VOR9 (VOG9, VOB9), SG4, which are measured in 2
above. (VOR1 (VOG1, VOB1) is the value measured in GV, GV.)
4. The relative frequency characteristics FC1, FC1' are
determined by calculating differences between each channel's
FC1 and FC1'.
FC2 Frequency characteristics2 (f=50MHz; maximum)
FC2' Frequency relative characteristics2
(f=75MHz; maximum)
The procedure is identical with that in FC1, FC1, FC1', FC1' except
that the contrast (V13) is reduced to 5.0V.
C.T.1 Crosstalk1 (f=50MHz)
C.T.1' Crosstalk1 (f=75MHz)
1. Under conditions in attached Table.
2. Input SG2 (or SG4) to pin 10 (R-ch) only. Then measure
amplitude of the output waveform at T.P20 (T.P24, T.P28), which
are VOR, VOG, and VOB, respectively.
3. Crosstalk C.T. is:
VOG or VOB
C.T. =20LOG
(C.T. ')
VOR
[VP-P]
[dB]
[VP-P]
5

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