AZDISPLAYS PA035XSJ

PA035XSJ
Version : 1.2
FOR MORE INFORMATION:
AZ DISPLAYS, INC.
75 COLUMBIA, ALISO VIEJO, CA, 92656
Http://www.AZDISPLAYS.com
The information contained herein is the exclusive property of Prime View International Co., Ltd. and shall not be distributed,
reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:1
PA035XSJ
TECHNICAL
SPECIFICATION
CONTENTS
NO.
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-
ITEM
Cover
Contents
Application
Features
Mechanical Specifications
Mechanical Drawing of TFT-LCD module
Input / Output Terminals
Pixel Arrangement
Absolute Maximum Ratings
Electrical Characteristics
Power On Sequence
Optical Characteristics
Handling Cautions
Reliability Test
Block Diagram
Packing
Revision History
PAGE
1
2
3
3
3
4
5
7
8
8
17
17
21
22
23
24
26
The information contained herein is the exclusive property of Prime View International Co., Ltd. and shall not be distributed,
reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:2
PA035XSJ
1. Application
This technical specification applies to 3.5” color TFT-LCD module , PA035XSJ
The applications of the panel are car TV, portable DVD, GPS, multimedia applications and others
AV system..
2. Features
. Compatible with NTSC & PAL system
. Pixel in delta configuration
. Image Reversion : Up/Down and Left/Right
3. Mechanical Specifications
Parameter
Screen Size
Display Format
Active Area
Pixel Pitch
Pixel Configuration
Outline Dimension
Surface Treatment
Weight
Specifications
3.5(diagonal)
160× (R,G,B) ×234
72 (H) × 50.54 (V)
0.45(H) × 0.216 (V)
Delta
83.7 (W) × 68.6 (H) × 6.6 (D)(typ.)
Anti - Glare
56+5
Unit
inch
dot
mm
mm
mm
g
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:3
PA035XSJ
4. Mechanical Drawing of TFT-LCD Module
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:4
PA035XSJ
5. Input / Output Terminals
TFT-LCD Module Connector
FPC Down Connect , 28Pins , Pitch : 0.5 mm
Pin No
Symbol
I/O
Description
1
STH1
I/O
Start pulse for source driver
2
AVSS
I
Analog GND for source driver
3
AVDD
I
Analog power input for source driver
4
VB
I
Video Input B
5
VG
I
Video Input G
6
VR
I
Video Input R
7
VSS
I
Digital GND
8
VDD
I
Digital power input
9
CPH1
I
Sampling and shift clock for source driver
10
CPH2
I
Sampling and shift clock for source driver
11
CPH3
I
Sampling and shift clock for source driver
12
STH2
I/O
Start pulse for source driver
13
Q2H
I
Video input rotation control
14
INH
I
Output enable for source driver
15
R/L
I
Left/Right Control for source driver
16
VCOM
I
Common electrode voltage
17
VCOM
I
Common electrode voltage
18
XOE
I
Output enable for gate driver
19
CPV
I
Clock input for gate driver
20
U/D
I
Up/Down Control for gate driver
21
DIO2
I/O
Vertical start pulse
22
DIO1
I/O
Vertical start pulse
23
VGL
I
Gate off voltage(alternative every 1-H)
Note 5-1
24
VEE
I
Gate driver negative voltage
Note 5-2
25
VSS
I
GND
26
VCC
I
Logic power for gate driver
Note 5-3
27
VGH
NC
I
-
Gate on voltage
No connection
Note 5-4
28
Remark
Note 5-5
Note 5-3
Note 5-1
Note 5-3
Note 5-5
Note 5-5
Note 5-1
Note 5-5
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:5
PA035XSJ
Note 5 – 1 : VCOM (TYP.) = 6.0VPP.
Phase of the video signal input and VCOM
The relation between these values could refer to 8-1 Operating condition.
100% white
Composite Video
Signal
pedestal
R,G,B Video
Signal
Vi DC
(VR ,VG ,VB)
VCOM VCOM DC
VGL VGL DC
Vi AC
VCOM AC
VGL AC
1H
1H
Fig.1
Liquid crystal transmission of the video signal input, VCOM and timing
VCOM
H Level
L Level
Video Signal Input Maximum
Black
White
Video Signal Input Minimum
White
Black
White : maximum transmission / Black : minimum transmission
Note 5 – 2 : VEE (TYP.) = -15V
Note 5 – 3 : VDD, VCC (TYP.) = +3.3V , AVDD (TYP.)= +5.0V
Note 5 – 4 : VGH (TYP.)= +17V
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:6
PA035XSJ
Note 5 – 5 : STH1, STH2 and R/L mode
R/L
High(VDD)
Low(0 Volt.)
STH1
Input
Output
STH2
Output
Input
Remark
Left to Right
Right to Left
DIO1
Input
Output
DIO2
Output
Input
Remark
Down to Up
Up to Down
DIO1,DIO2,and U/D mode
U/D
High(VCC)
Low(0 Volt.)
U/D(PIN 20)=High R/L(PIN 15)=High
U/D(PIN 20)=Low R/L(PIN 15)=Low
6. Pixel Arrangement
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:7
PA035XSJ
7. Absolute Maximum Ratings :
The followings are maximum values , which if exceeded, may cause faulty operation or damage
to the unit.
GND = 0V,Ta = 25℃
Symbol
MIN.
MAX.
AVDD
-0.3
+5.8
V
VDD
-0.3
+7.0
V
H Level VGH
-0.3
+35
V
L Level VGL
-20
+0.3
V
+0.3
+40
V
Parameter
Supply Voltage For Source Driver
Supply Voltage For Gate Driver
VGH-VGL
Unit
Remark
8. Electrical Characteristics
8-1) Operating Condition
Parameter
Supply Voltage For Source
Driver
Supply Voltage For Gate
Driver
Symbol
MIN.
Analog
AVDD
Logic
VDD
VGH
+4.5
+3.0
+4.5
+15.0
Typ.
+5.0
+3.3
+5.0
+17.0
MAX.
+5.5
+3.6
+5.5
+19.0
VEE
-15.5
-15.0
-14.5
VGL AC
-
+6.0
-
VGL DC
-13.0
-12.0
-10.5
+3.0
+4.5
+0.7 VDD
0
+3.3
+5.0
+3.6
+2.5
-
+3.6
+5.5
+4.0
VDD
+0.3VDD
VCOM AC
-
+6.0
-
VCOM DC
+1.1
+1.3
+1.5
Logic
Analog Signal input Level
(VR , VG , VB)
Digital input voltage
VCC
VIAC
VIDC
H level
VIH
L level
VIL
VCOM
Unit
Remark
V
V Depend on T/C
V signal voltage
V
DC Component
V
of VGL
AC Component of
VP-P
VGL
AC Component of
VP-P
VGL
V Depend on T/C
V signal voltage
V Note 8-2
V
V
V
AC Component of
VP-P V
COM
DC Component of
V
VCOM Note 8-1
Note 8-1 : PVI strongly suggests that the VCOM DC level shall be adjustable,and the adjustable level
range is 1.3V±0.2V,every module’s VCOM DC level shall be carefully adjusted to show a
best image performance.
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:8
PA035XSJ
Note 8-2: Both NTSC and PAL system Video Signal input waveform is based on 8 steps gray scale.
White
White
3.6~4.0V
Black
Black
8-2) Current Consumption (GND=0V)
Ta=
Parameter
Current for Driver
Symbol
ICC
IGL
IGH
AIDD
IDD
Condition
VCC=+3.3V
VGL=-12V
VGH=+17V
AVDD=+5V
VDD=+3.3V
Min.
-
Typ.
0.0030
0.09
0.088
5.2
0.6
Max.
0.0045
0.14
0.13
7.7
1.5
25 ℃
Unit
Remark
mA
mA VGL center voltage
mA
mA
mA
8-3) Backlight driving & Power Consumption
Pin No
1
3
Symbol
VL1
VL2
Description
Input terminal (Hi voltage side)
Input terminal (Low voltage side)
Remark
Note 8-3
Note 8-3 : Low voltage side of backlight inverter connects with Ground of inverter circuits.
Ta= 25 ℃
Parameter
Symbol
Min.
Max.
Unit
-
Typ.
265
Lamp voltage
VL
Lamp current
IL
Lamp frequency
Starting voltage (25℃)
(Reference Voltage)
Starting voltage (0℃)
(Reference Voltage)
Remark
-
Vrms
3
35
65
mA
PL
25
KHz
Note 8-4
Vs
-
-
440
Vrms
Note 8-5
Vs
-
-
530
Vrms
Note 8-5
Note 8-4 : The waveform of lamp driving voltage should be as closed to a perfect SIN wave as
possible.
Note 8-5 : The” Max of starting voltage ” means the minimum voltage of inverter to turn on the
CCFL. and it should be applied to the lamp for more than 1 second to start up. Otherwise
the lamp may not be turned on.
PVI strongly recommend that the minimum voltage of inverter could be designed for 0°C
condition.
The information contained herein is the exclusive property of Prime View International Co., Ltd. and shall not be distributed,
reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:9
PA035XSJ
Power Consumption
Ta=
Parameter
LCD Panel Power Consumption
Backlight Lamp Power Consumption
Total Power Consumption
Symbol
Conditions
TYP.
30.57
0.80
0.83
25 ℃
Unit Remark
mW Note 8-6
W Note 8-7
W
Note 8-6:The power consumption for backlight is not included.
Note 8-7:Backlight lamp power consumption is calculated by IL×VL.
8-4) Input / Output Connector
A) Backlight Connector
JST BHR-03VS-1,
Pin No. : 3 ,
Pitch : 4mm
8-5) Timing Characteristics Of Input Signals
Characteristics
1Field Scanning Period
1Line Scanning Period
Source Driver Operating Frequency
Signal Sampling Pulse Width
Signal Sampling Pulse Delay
Signal Sampling Pulse Width(H)
Signal Sampling Pulse Delay(L)
Source Start Signal Pulse Width
Source Start Signal Setup Time
Source Start Signal Hold Time
Source Output Enable Pulse Width
Source Start Signal Rising Time
Video Input Signal Start Point
Phase Difference Between OEH&CPV
Gate Clock Period
Gate Clock Pulse Width(H)
Gate Clock Pulse Width(L)
Gate Start Signal Pulse Width
Gate Start Signal Setup Time
Gate Start Signal Hold Time
Phase Difference Between OEH&STH
Phase Difference Between SYNC&OEH
Gate Output Enable Pulse Width
VCOM Delay Time
RGB Delay Time
Vertical Display Start
Symbol
t1V
t1H
fhc
tchw
tchd
tchwh
tchwl
tshw
tshset
tshhld
tohw
tss
tvs
toc
tcvw
tcvwh
tcvwl
tsvw
tsvset
tsvhld
tosp
tohs
toev
tDCOM
tDRGB
tsv
Min.
1.0
200
95.3
142.9
142.9
90
20
20
1.0
1.5
10
10
10
5
5
5
-
Typ.
262.5
63.5
3.14
317.7
105.9
158.8
158.8
317.7
158.8
158.8
2.0
9.8
10.0
2.3
63.5
31.7
31.7
63.5
53.2
10.3
4
1.4
2.5
3
Max.
5.0
1000
116.5
174.7
174.7
630*
48
48
126**
3
2
-
Unit
H
µs
MHz
ns
ns
ns
ns
ns
ns
ns
µs
µs
µs
µs
µs
µs
µs
µs
µs
µs
µs
µs
µs
µs
µs
tH
Remark
tchd 12,23
*tshset=tshhld
**tsvset=tsvhld
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:10
PA035XSJ
Invalidity data
Fig. 8-1 Horizontal Start Pixel
Validity data
Invalidity data
R,G,B
CPH1
STH1,2
197
198
199
Tshw
1
2
3
t1H=199 CPHclk=63.5u sec
160
161
1
2
8 – 6 ) Signal Timing Waveforms
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:11
tDRGB
VR,G,B
VCOM
Q2H
XOE
CPV
INH
STH1,2
HD
tohs
toev
toc
tohw
tDCOM
tvs
tosp
tss
tcvwh
tshw
tcvw
tcvw
l
Fig. 8-2 Detail Horizontal Timing
PA035XSJ
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:12
Fig. 8-3 Sampling Clock Timing
STH 1,2
CPH 3
CPH 2
CPH 1
tchd12
tchd23
tshset
tshw
tshhld
tchwh
R1 (B1)
tchw
tchwl
G1 (R1)
B1 (G1)
R2 (B2)
G2 (R2)
B2 (G2)
R3 (B3)
PA035XSJ
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:13
Fig. 8-4 Vertical Shift Clock Timing
DIO 1,2
CPV
tcvwh
tcvw
tcvwl
tsvset
tsvw
tsvhld
PA035XSJ
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:14
PA035XSJ
VCOM
(Even field)
VCOM
(Odd field)
Q2H
DIO1
VD
HD
V(R,G,B)
EVEN FIELD
V(R,G,B)
ODD
FIELD
Display on panel first line
Fig. 8-5(a) Vertical Timing (From Up to Down)
tsv
BRG
RGB
Vertical timing (From up to down)
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:15
PA035XSJ
VCOM
(Even field)
VCOM
(Odd field)
Q2H
DIO2
VD
HD
V(R,G,B)
ODD FIELD
V(R,G,B)
EVEN FIELD
Display on panel first line
tsv
Fig. 8-5(b) Vertical Timing (From Down to Up)
RGB
BRG
Vertical timing (From down to up)
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:16
PA035XSJ
9. Power On Sequence
VGH
VDD,VCC
VSS(0V)
VEE
OFF
OFF
ON
T1
T3
Logic signal
RGB-Video signal
T2
T4
1) 10ms≦T1<T2
2) 0ms<T3≦T4≦10ms
10. Optical Characteristics
10-1) Specification:
Ta = 25℃
Parameter
Horizontal
Viewing
Angle
Vertical
Symbol
θ
θ(6 o’clock)
θ(12o’clock)
Contrast Ratio
Rise
Fall
Uniformity
Brightness
White
Response time
Chromaticity
Lamp Life Time
CR
Tr
Tf
U
L
x
y
Condition
CR≧10
At optimized
Viewing angle
θ=0°
θ=0°
θ=0°
+25℃
MIN.
45
30
10
TYP.
50
35
15
200
350
15
25
65
70
200
250
0.290 0.320
0.300 0.330
20,000
MAX. Unit
deg
deg
deg
30
50
0.350
0.360
-
Remarks
Note 10-1
Note 10-2
ms
Note 10-4
ms
%
Note 10-5
cd/㎡
Note 10-3
Hr
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:17
PA035XSJ
Note 10-1 : The definitions of viewing angles
normal
(θ = 0)
observer
θ
3
AB
C
12
6
φ
LCD panel
9
φ : Viewing direction
θ : Viewing angle
Note 10-2 : CR =
Luminance when Testing point is White
Luminance when Testing point is Black
(Testing configuration see 10-2 )
Contrast Ratio is measured in optimum common electrode voltage.
Note 10-3 : 1. Topcon BM-7(fast) luminance meter 1°field of view is used in the testing (after 20~30
minutes operation).
2. Lamp Current 3mA
3. Inverter model : TDK-347.
Note 10-4 : The definition of response time :
White
Black
White
100%
90%
Brightness
10%
0%
Tr
Tf
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:18
PA035XSJ
Note 10-5: The uniformity of LCD is defined as
U=
The Minimum Brightness of the 9 testing Points
The Maximum Brightness of the 9 testing Points
Luminance meter : BM-5A or BM-7 fast(TOPCON)
Measurement distance : 500 mm +/- 50 mm
Ambient illumination : < 1 Lux
Measuring direction : Perpendicular to the surface of module
The test pattern is white (Gray Level 63).
1/6
2/6
2/6
1/6
1/6
2/6
2/6
1/6
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:19
PA035XSJ
10-2) Testing configuration
BM-7(fast)
Caution: 1. Environmental illumination≦1 lux
2. Before test CR, Vcom voltage must
be adjusted carefully to get the best
500mm
CR.
R,G,B signal
input
Pattern
generator
y
LCD
Backlight
LCD Display
Testing Point
Pattern A
y
R, G, B Waveform of Pattern A at Testing Point
63.6μs
Testing Point
Pattern B
RGB
waveform
Vcom
63.6μs
Vw=1.3V +/- 0.2V
y
R, G, B Waveform of Pattern B at Testing Point
63.6μs
63.6μs
RGB
waveform
Vcom
Vb=5.0V +/- 0.2V
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:20
PA035XSJ
11. Handling Cautions
11-1) Mounting of module
a) Please power off the module when you connect the input/output connector.
b) Please connect the ground pattern of the inverter circuit surely. If the connection is not
perfect, some following problems may happen possibly.
1.The noise from the backlight unit will increase.
2.The output from inverter circuit will be unstable.
3.In some cases a part of module will heat.
c) Polarizer which is made of soft material and susceptible to flaw must be handled carefully.
d) Protective film (Laminator) is applied on surface to protect it against scratches and dirts. It
is recommended to peel off the laminator before use and taking care of static electricity.
11-2) Precautions in mounting
a) When metal part of the TFT-LCD module (shielding lid and rear case) is soiled, wipe it
with soft dry cloth.
b) Wipe off water drops or finger grease immediately. Long contact with water may cause
discoloration or spots.
c) TFT-LCD module uses glass which breaks or cracks easily if dropped or bumped on hard
surface. Please handle with care.
d) Since CMOS LSI is used in the module. So take care of static electricity and earth yourself
when handling.
11-3) Adjusting module
a) Adjusting volumes on the rear face of the module have been set optimally before
shipment.
b) Therefore, do not change any adjusted values. If adjusted values are changed, the
specifications described may not be satisfied.
11-4) Others
a) Do not expose the module to direct sunlight or intensive ultraviolet rays for many hours.
b) Store the module at a room temperature place.
c) The voltage of beginning electric discharge may over the normal voltage because of
leakage current from approach conductor by to draw lump read lead line around.
d) If LCD panel breaks, it is possibly that the liquid crystal escapes from the panel.
Avoid putting it into eyes or mouth. When liquid crystal sticks on hands, clothes or feet.
Wash it out immediately with soap.
e) Observe all other precautionary requirements in handling general electronic components.
f) Please adjust the voltage of common electrode as material of attachment by 1 module.
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:21
PA035XSJ
12. Reliability Test
No
Test Item
1
High Temperature Storage Test
2
Low Temperature Storage Test
3 High Temperature Operation Test
4 Low Temperature Operation Test
High Temperature & High
5
Humidity Operation Test
Thermal Cycling Test
6
(non-operating)
7
Vibration Test
(non-operating)
8
Shock Test
(non-operating)
9
Electrostatic Discharge Test
(non-operating)
Test Condition
Ta = +70℃, 240 hrs
Ta = -20℃, 240 hrs
Ta = +60℃, 240 hrs
Ta = 0℃, 240 hrs
Ta = +60℃, 90%RH, 240 hrs
-25℃→ +70℃, 200 Cycles
30 min 30 min
Frequency:10 ~ 55 HZ
Amplitude:1 mm
Sweep time: 11 mins
Test Period : 6 Cycles for each direction of X, Y, Z
100G, 6ms
Direction : ±X, ±Y, ±Z
Cycle : 3 times
Machine Mode=±200V
C=200pF,R=0Ω
1 time / each terminal
Ta: ambient temperature
[Criteria]
1. Main LCD should normally work under the normally condition no defect of function,
screen quality and appearance (including : mura ,line defect ,no image)
2. After the temperature and humidity test, the luminance and CR (Contrast ratio) ,should not
be lower than minimum of specification.
3.
After the vibration and shock test , can’t be find chip ,broken
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:22
PA035XSJ
13. Block Diagram
LCD Panel
V Driver
(Gate)
H Driver
(Source)
Input
Inverter
Back-light
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:23
PA035XSJ
14. Packing
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reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:24
PA035XSJ
The information contained herein is the exclusive property of Prime View International Co., Ltd. and shall not be distributed,
reproduced, or disclosed in whole or in part without prior written permission of Prime View International Co., Ltd.PAGE:25
PA035XSJ
Revision History
Rev.
0.1
0.2
Issued Date
Mar. 03, 2004
Apr. 02, 2004
1.0
1.1
Apr. 13, 2004
Oct. 06, 2004
1.2
Nov. 24, 2005
Revised
Contents
NEW
Page 3: Modify Weight.
Page 8: Modify Operating Condition(Vcom DC Level)
Page 9: Modify Current Consumption & Power Consumption
Page 19: Modify Transmission & White Chromaticity
Page 25: Add Packing
Page 9: Add Note about Lamp Starting Voltage
Page 19: Add Lamp Life Time
Page 9 : Modify 8-3) Backlight driving
Starting voltage (25℃) Vs(max)=400Vrms chang Vs(max)=440Vrms
Starting voltage (0℃) Vs(max)=520Vrms chang Vs(max)=530Vrms
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