Sony KE-37XS910 / KE-42XS910 / KE-MX37A1 / KE-MX37N1 / KE-MX37S1 Service Manual ▷ View online
– 17 –
Setting [hex]
Sub
Address
Data
bit
Symbol
Item
Function
RANGE
INITIAL
value
7-5
-
-
Be sure to use the display with the
setting fixed to 0.
setting fixed to 0.
0~7 0
4 CCFMD
Color
correction
mode
correction
mode
Selecting the color correction modes.
Valid when the CCFON setting is 1
Valid when the CCFON setting is 1
0:Luminance has
priority.
1:Gradation has
priority
0
3 DCBON
Dynamic
Color
Balance
Color
Balance
Tracking correction of white balance
between the high luminance and the
low luminance.
between the high luminance and the
low luminance.
0: OFF
1: ON
0
2 PPAON
Panel Protect
Apc function
Apc function
When a picture with high
luminance/small area is displayed for
about 3 minutes or longer, the
number of pulses is reduced to about
20% at a maximum. This item can be
used to reduce panel
temperature/extend useful life when
the display is used to show a still
image.
luminance/small area is displayed for
about 3 minutes or longer, the
number of pulses is reduced to about
20% at a maximum. This item can be
used to reduce panel
temperature/extend useful life when
the display is used to show a still
image.
0: OFF
1: ON
1
1 APSON
Auto Peak
Save
function
Save
function
If a low display load picture (less
than 2%) is inputted continuously 3
minutes or more, the brightness is
reduced about 50 %.
than 2%) is inputted continuously 3
minutes or more, the brightness is
reduced about 50 %.
0: OFF
1: ON
1
21
0 DSETEN
Data
Set
Enable
Set
Enable
Whether the register value is
reflected to the operating status of
this product, selected by this item.
The following switch is executed.
0:The received register value is
reflected from the next field.
1:The received register value is
stored so that the DSET setting is
reflected from the next field.
(DSET setting: Setting bit 0 of
address FF)
reflected to the operating status of
this product, selected by this item.
The following switch is executed.
0:The received register value is
reflected from the next field.
1:The received register value is
stored so that the DSET setting is
reflected from the next field.
(DSET setting: Setting bit 0 of
address FF)
0: Invalid
1: Valid
1
7 CCFON
Color
correction
correction
Color collection process is turned
ON/OFF.
ON/OFF.
0: OFF
1: ON
0
6 CCFORM
Color
correction
format
correction
format
Color collection process is switched.
This item is valid when CCFON
setting is 1.
This item is valid when CCFON
setting is 1.
0: NTSC
1: EBU
0
5-3
-
-
Be sure to use the display with the
setting fixed to 0.
setting fixed to 0.
0~7 0
22
2-0 GAMSEL
Selecting the
reverse
reverse
γ
correction
Reverse
γ correction level is set.
The setup 7 is the test mode. Do not
select the setup 7.
When the setup 6 is selected, setting
of the addressed in the range of
31~51 become valid.
select the setup 7.
When the setup 6 is selected, setting
of the addressed in the range of
31~51 become valid.
0: OFF
1: 1.0 th power
2: 2.2 nd power
3: 2.4 th power
4: 2.6 th power
5: 2.8 th power
6: USER
7: TEST
1: 1.0 th power
2: 2.2 nd power
3: 2.4 th power
4: 2.6 th power
5: 2.8 th power
6: USER
7: TEST
2
– 18 –
Setting [hex]
Sub
Address
Data
bit
Symbol
Item
Function
RANGE
INITIAL
value
23 7-0
CONTrast
Peak
luminance
luminance
Peak luminance is adjusted.
When the display picture load is
heavy, the peak luminance is
automatically limited.
When the display picture load is
heavy, the peak luminance is
automatically limited.
00~FF FF
24 7-0
R-RATIO R
ratio
00~FF
FF
25 7-0
G-RATIO G
ratio
00~FF
FF
26 7-0
B-RATIO B
ratio
White balance is adjusted.
Use the display with at least one item
being set to FF (hex).
Use the display with at least one item
being set to FF (hex).
00~FF FF
7 IRQRST
Clearing the
IRQ output
signal
IRQ output
signal
This item implements control to
return the IRQ signal from "HIGH" to
"Low" level when an error occurs.
When this item is set to 1, the IRQ
signal is returned to "Low" level.
return the IRQ signal from "HIGH" to
"Low" level when an error occurs.
When this item is set to 1, the IRQ
signal is returned to "Low" level.
0: Normal
1: IRQ signal clear
1: IRQ signal clear
0
6 ERRRST
Clearing the
ERRF flag
ERRF flag
This item implements control to
return the ERRF flag to 0 when an
error occurs.
When this item is set to 1, this
setting automatically returns to 0
after returning the ERRF flag to 0.
return the ERRF flag to 0 when an
error occurs.
When this item is set to 1, this
setting automatically returns to 0
after returning the ERRF flag to 0.
0: Normal
1: ERRFflag clear
1: ERRFflag clear
0
5 OHRRST Clearing
the
OHRF flag
The control by which the OHRF flag
is returned to 0 is done. This setting
automatically returns to the state of 0
after returning 0 the ERRF flag when
this setting is set to one.
is returned to 0 is done. This setting
automatically returns to the state of 0
after returning 0 the ERRF flag when
this setting is set to one.
0: Normal
1: OHRF
flag clear
0
4
PSDRST
Clearing the
PSDF flag
PSDF flag
This item exercise control to return
the PSDF flag to 0 when this
machine performs the OFF
sequence at AC power shutdown.
When this item is set to 1, this
setting automatically returns to 0
after returning the PSDF flag to 0.
the PSDF flag to 0 when this
machine performs the OFF
sequence at AC power shutdown.
When this item is set to 1, this
setting automatically returns to 0
after returning the PSDF flag to 0.
0: Normal
1: PSDF flag clear
0
27
3-0 ERRS
Error
code
selection
When this setting is changed and the
ERRC setting is read out, the error
contents (as many as 16 errors) of
the module that have occurred in the
past can be checked.
If more than 16 errors have occurred,
the error code is updated starting
from the oldest error.
ERRC setting is read out, the error
contents (as many as 16 errors) of
the module that have occurred in the
past can be checked.
If more than 16 errors have occurred,
the error code is updated starting
from the oldest error.
0: Latest error
1: Previous error
2:
|
E:
F: Oldest error
1: Previous error
2:
|
E:
F: Oldest error
0
– 19 –
Setting [hex]
Sub
Address
Data
bit
Symbol
Item
Function
RANGE
INITIAL
value
7
PWMP
Power
Maximam
peek control
Maximam
peek control
The PWMAX setting is switched to
constant brightness (peak electric
power) control. The password setting
is necessary to turn on this setting.
constant brightness (peak electric
power) control. The password setting
is necessary to turn on this setting.
When password is
set
set
0:OFF 1:ON
0
6
-
-
Be sure to use the display with the
setting fixed to 0.
setting fixed to 0.
0-1 0
PWMP=0 Setting of the maximum
electric power.
0: -40W
1: -20W
2: ±0W
3: +20W
5-4 PWMAX
Maximum
power
consumption
power
consumption
PWMP=1 Setting of peak electric
power. Electric power by
which electric power is
permitted in addition to
improve practical
brightness to the
maximum electric power
set 3:+20W
which electric power is
permitted in addition to
improve practical
brightness to the
maximum electric power
set 3:+20W
0: ±0W
1: +20W
2: +30W
3: +40W
2
28
3-0
-
-
Be sure to use the display with the
setting fixed to 0.
setting fixed to 0.
0~F 0
29 7-0
PWM
PASS
Password of
peak electric
power setting
peak electric
power setting
Password of peak electric power
setting.The password is described to
the delivery specifications. When the
password setting is normally done,
the reading value of the real thing
ground becomes 51.
setting.The password is described to
the delivery specifications. When the
password setting is normally done,
the reading value of the real thing
ground becomes 51.
51: Permission of
PWMP ON
Another: Prohibition
FF
2A 7-0
VRPASS
Password of
VRPOL
setting
VRPOL
setting
If ‘AA” is written, VRPOL setting can
be changed.
be changed.
00~FF
00
7-4
-
-
-
0~F
0
2B
3-0 RISTIM
RISe
TIMe
Setting of wait time for Vs/Va
stabilization at the time of start up
sequence.
stabilization at the time of start up
sequence.
Wait time [ms] = 200
×Set value
(Ma x:3000[ms])
0~F 5
2C 7-0
PsTPW
Ps-Tank
PoWer
PoWer
The maximum
electric power
setting:
electric power
setting:
The maximum
over electric
power from +20W
over electric
power from +20W
00-FF 28
2D 7-0
PsTTM
Ps-Tank
TiMe
TiMe
Time which can
operate by the
maximum over
electric power
(*10sec)
operate by the
maximum over
electric power
(*10sec)
When the
amount of an
over electric
power becomes
PsTPW×PsTTM
or less at
PWMP=1, the
control by which
brightness is
lowered is
done.
amount of an
over electric
power becomes
PsTPW×PsTTM
or less at
PWMP=1, the
control by which
brightness is
lowered is
done.
00-FF 3C
– 20 –
Setting [hex]
Sub
Address
Data
bit
Symbol
Item
Function
RANGE
INITIAL
value
7-4 -
-
Be sure to use the display with the
setting fixed to C.
setting fixed to C.
3 VRPOL
Voltage
Reference
POLarity
Reference
POLarity
Setting of Vrs/Vra output polarity.
Set in the following procedures.
1) Write “AA” in the address 2A.
2) Write “0” or “1” in this address.
3) Write other than “AA” in the
address 2A.
Set in the following procedures.
1) Write “AA” in the address 2A.
2) Write “0” or “1” in this address.
3) Write other than “AA” in the
address 2A.
0: POSI
1:NEGA
0
30
2-0 -
-
Be sure to use the display with the
setting fixed to 0.
setting fixed to 0.
31 7-0
GAM00
Reverse
γ
correction
DC
DC
Sets the input level that implements
the forced 0 [LSB] output.
the forced 0 [LSB] output.
00~FF 1F
7-2
-
<no use>
-
32
1-0 GAM01[9:
8]
00~FF 00
33 7-0
GAM01[7:
0]
Reverse
γ
coefficient 01
Reverse
γ coefficient value is set.
Input Output value of 8 [LSB]
00~FF 04
7-3
-
<no use>
-
34
2-0 GAM02[10:
8]
00~FF 00
35 7-0
GAM02[7:
0]
Reverse
γ
correction 02
Reverse
γ coefficient value is set.
Input Output value of 16 [LSB]
00~FF 24
7-4
-
<no use>
-
36
3-0 GAM03[11:8]
Reverse
γ
correction 03
Reverse
γ coefficient value is set.
Input Output value of 24 [LSB]
00~FF 00
37 7-0
GAM03
[7: 0]
00~FF 58
7-4
-
<no use>
-
38
3-0
GAM04
[11: 8]
Reverse
γ
correction 04
Reverse
γ coefficient value is set.
Input Output value of 32 [LSB]
00~FF 00
39 7-0
GAM04
[7: 0]
00~FF A7
7-5
-
<no use>
-
3A
4-0
GAM05
[12: 8]
00~FF 01
7-1
GAM05
[7: 1]
Reverse
γ
correction 05
Reverse
γ coefficient value is set.
Input Output value of 40 [LSB]
3B
0
-
<no use>
-
00~FF 12
7-5
-
<no use>
-
3C
4-0
GAM06
[12: 8]
00~FF 01
7-1
GAM06
[7: 1]
Reverse
γ
correction 06
Reverse
γ coefficient value is set.
Input Output value of 48 [LSB]
3D
0
-
<no use>
-
00~FF 9A
7-5
-
<no use>
-
3E
4-0
GAM07
[12: 8]
00~FF 02
7-2
GAM07
[7: 2]
Reverse
γ
correction 07
Reverse
γ coefficient value is set.
Input Output value of 56 [LSB]
3F
1-0
-
<no use>
-
00~FF 40
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