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REVISION HISTORY
Version Date Page Description
0.0 Sep.21, 2010 All Spec Ver.0.0 was first issued.
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PRODUCT SPECIFICATION
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1. GENERAL DESCRIPTION
1.1 OVERVIEW
N156BGE-L61 is a 15.6” TFT Liquid Crystal Display module with LED Backlight unit and 40 pins
LVDS interface. This module supports 1366 x 768 FHD mode and can display 262,144 colors. The
optimum viewing angle is at 6 o’clock direction.
1.2 GENERAL SPECIFICATI0NS
Item Specification UnitNote
Screen Size 15.6” diagonal
Driver Element a-si TFT active matrix - Pixel Number 1366 x R.G.B. x 768 pixel Pixel Pitch 0.252 (H) x 0.252 (V) mm Pixel Arrangement RGB vertical stripe - Display Colors 262,144 color Transmissive Mode Normally white - Surface Treatment Hard coating (3H), Anti-Glare - Luminance, White 220Cd/m2
Power Consumption
Note (1) The specified power consumption (with converter efficiency) is under the conditions at VCCS =
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PRODUCT SPECIFICATION
Total 5.456 W (Max.) @ cell 1.04 W (Max.),
BL 4.416W(Max.)
Note (1) Please refer to the attached drawings for more information of front and back outline dimensions.
Vertical (V) 208.95 209.45 209.95 mm
Thickness (T) - 4.0 mm
Horizontal 348.73 349.03 349.33 mm
Vertical 198.04 198.24 198.44 mm
Horizontal 343.93 344.23 344.53 mm
Vertical 193.24 193.54 193.84 mm
Weight - - 425 g
2.1 CONNECTOR TYPE
Pin1Pin40
(1)
Please refer Appendix Outline Drawing for detail design.
Connector Part No: I-PEX 20455-040E-12, Tyco# 5-2069716-3, or equivalent
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User’s connector Part No: I-PEX 20453-040T-01,Tyco#5-2069715-3, or equivalent
3. ABSOLUTE MAXIMUM RATINGS
3.1 ABSOLUTE RATINGS OF ENVIRONMENT
Item Symbol
Storage Temperature TST -20 +60 ºC (1)
Operating Ambient Temperature TOP 0 +50 ºC (1), (2)
Note (1) (a) 90 %RH Max. (Ta <= 40 ºC).
(b) Wet-bulb temperature should be 39 ºC Max. (Ta > 40 ºC).
(c) No condensation.
Note (2) The temperature of panel surface should be 0 ºC min. and 60 ºC max.
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PRODUCT SPECIFICATION
Value
Min. Max.
Unit Note
Relative Humidity (%RH)
100
90
80
60
Operating
40
20
10
Storage Range
Temperature (ºC)
8060-20 40 0 20 -40
3.2 ELECTRICAL ABSOLUTE RATINGS
3.2.1 TFT LCD MODULE
Item Symbol
Power Supply Voltage VCCS -0.3 +4.0 V
Logic Input Voltage VIN -0.3 VCCS+0.3 V
Converter Input Voltage
Converter Control Signal Voltage
Converter Control Signal Voltage
Note (1) Stresses beyond those listed in above “ELECTRICAL ABSOLUTE RATINGS” may cause
permanent damage to the device. Normal operation should be restricted to the conditions
LED_VCCS
LED_PWM,
LED_EN
Value
Min. Max.
-0.3 24 V (1)
-0.3 5 V (1)
-0.3 5 V (1)
Unit Note
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described in “ELECTRICAL CHARACTERISTICS”.
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PRODUCT SPECIFICATION
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4. ELECTRICAL SPECIFICATIONS
4.1 FUNCTION BLOCK DIAGRAM
LVDS Display
Data & Clock
BIST
VCCS
GND
INPUT CONNECTOR
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PRODUCT SPECIFICATION
SCAN DRIVER IC
TIMING ONTROLLER
TFT LCD
PANEL
DC/DC CONVERTER &
REFERENCE VOLTAGE
GENERATOR
Data
EDID
CLK
EDID
V
EDID
Converter
Input Signals
DATA DRIVER IC
EDID
EEPROM
LED CONVERTER BACKLIGHT UNIT
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4.2. INTERFACE CONNECTIONS
PIN ASSIGNMENT
Pin Symbol Description Remark
1 NC No Connection (Reserve)
2 VCCS Power Supply (3.3V typ.)
3 VCCS Power Supply (3.3V typ.)
4 VEDID DDC 3.3V power
5 BIST Panel self test
6 CLKEDID DDC clock
7 DATAEDID DDC data
8 Rxin0- LVDS differential data input
9 Rxin0+ LVDS differential data input
10 VSS Ground
11 Rxin1- LVDS differential data input
12 Rxin1+ LVDS differential data input
13 VSS Ground
14 Rxin2- LVDS Differential Data Input
15 Rxin2+ LVDS Differential Data Input
16 VSS Ground
17 RxCLK- LVDS differential clock input
18 RxCLK+ LVDS differential clock input
19 VSS Ground
20 NC No Connection (Reserve)
21 NC No Connection (Reserve)
22 VSS Ground
23 NC No Connection (Reserve)
24 NC No Connection (Reserve)
25 VSS Ground
26 NC No Connection (Reserve)
27 NC No Connection (Reserve)
28 VSS Ground
29 NC No Connection (Reserve)
30 NC No Connection (Reserve)
31 LED_GND LED Ground
32 LED_GND LED Ground
33 LED_GND LED Ground
34 NC No Connection (Reserve)
35 LED_PWM PWM Control Signal of LED Converter
36 LED_EN Enable Control Signal of LED Converter
37 NC No Connection (Reserve)
38 LED_VCCS LED Power Supply
39 LED_VCCS LED Power Supply
40 LED_VCCS LED Power Supply
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PRODUCT SPECIFICATION
R0-R5, G0
G1~G5, B0, B1
B2-B5,HS,VS, DE
LVDS CL K
Note (1) The first pixel is odd as shown in the following figure.
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PRODUCT SPECIFICATION
1,1
(odd)
2,1
3,1
1,2
(even)
2,2
1,3
(odd)
1,4
(even)
1,Xmax
Pitch
Pitch
Ymax,1
Ymax,
Xmax
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4.3 ELECTRICAL CHARACTERISTICS
4.3.1 LCD ELETRONICS SPECIFICATION
Parameter Symbol
Power Supply Voltage VCCS 3.0 3.3 3.6 V (1)-
Ripple Voltage VRP - 50 - mV (1)-
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PRODUCT SPECIFICATION
Value
Unit Note
Min. Typ. Max.
Inrush Current I
- - 1.5 A (1),(2)
RUSH
Mosaic255 285 315 mA (3)a
Power Supply Current
Black
lcc
340 365 400 mA (3)b
Note (1) The ambient temperature is Ta = 25 ± 2 ºC.
Note (2) I
: the maximum current when VCCS is rising
RUSH
I
: the maximum current of the first 100ms after power-on
IS
Measurement Conditions: Shown as the following figure. Test pattern: black..
(High to Low)
(Control Signal)
SW
+12V
+3.3V
R1
47K
R2
1K
47K
VR1
C1
1uF
Q1 2SK1475
C2
0.01uF
Q2
2SK1470
FUSE
C3
1uF
VCCS
(LCD Module Input)
VCCS rising time is 0.5ms
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Note (3) The specified power supply current is under the conditions at VCCS = 3.3 V, Ta = 25 ± 2 ºC, DC
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PRODUCT SPECIFICATION
Current and f
a. Mosaic Pattern
= 60 Hz, whereas a power dissipation check pattern below is displayed.
v
Active Area
b. Black Pattern
Active Area
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4.3.2 LED CONVERTER SPECIFICATION
Parameter Symbol
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PRODUCT SPECIFICATION
Value
Unit Note
Min. Typ. Max.
Converter Input power supply voltage
Converter Inrush Current
LED_Vccs
ILED
RUSH
6.0 12.0 21.0 V
- - 1.5 A (1)
2.3 -5V
EN Control Level
Backlight Off 0 - 0.5 V
2.3 -5V
PWM Control Level
PWM Low Level 0 - 0.5 V
10 - 100 % %
PWM Control Duty Ratio
5 - 100 % %
PWM Control Permissive Ripple
Voltage
PWM Control Frequency f
VPWM_pp
190 - 2K Hz Hz
PWM
- - 100 mV mV
LED Power Current ILED ILED 232 292 368 mA (4)
Note (1) ILED
ILED
Measurement Conditions: Shown as the following figure. LED_VCCS = Typ, Ta = 25 ± 2 ºC, f
: the maximum current when LED_VCCS is rising,
RUSH
: the maximum current of the first 100ms after power-on,
IS
PWM
= 200 Hz, Duty=100%.
(High to Low)
(Control Signal)
SW=24V
LED_VCCS(Typ)
LED_VCCS(Typ)
C1
1uF
VR1
R1
47K
R2
1K
47K
Q1 IRL3303
0.01uF
FUSE
Q2
IRL3303
C2
C3
1uF
(LED Converter Input)
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PRODUCT SPECIFICATION
VLED rising time is 0.5ms
0.5ms
90%
ILED
10%
Rush
100ms
ILED
IS
LED_VCC
LED_PWM
LED_EN
ILED
Note (2) If the PWM control duty ratio is less than 10%, there is some possibility that acoustic noise or
backlight flash can be found. And it is also difficult to control the brightness linearity.
Note (3) If PWM control frequency is applied in the range less than 1KHz, the “waterfall” phenomenon on
0V
0V
0V
the screen may be found. To avoid the issue, it’s a suggestion that PWM control frequency should
follow the criterion as below.
PWM control frequency f
dfN)33.0( f
should be in the range
PWM
PWM
fNd)66.0(
N : Integer )3(tN
f
: Frame rate
Note (4) The specified LED power supply current is under the conditions at “LED_VCCS = Typ.”, Ta = 25
± 2 ºC, f
= 200 Hz, Duty=100%.
PWM
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4.3.3 BACKLIGHT UNIT
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PRODUCT SPECIFICATION
Parameter Symbol
LED Light Bar Power
Supply Voltage
LED Light Bar Power
Supply Current
Power Consumption PL2.55 2.98 3.43 W (3)
LED Life Time L
Note (1) LED current is measured by utilizing a high frequency current meter as shown below :
Light Bar Feedback
Channels
L28 31 34 V
V
L91.2 96 100.8 mA
I
BL
Min. Typ. Max.
12000 - - Hrs (4)
VL,I
L
Ta = 25 ± 2 ºC
Value
LED
Light Bar
Unit Note
(1)(2)(Duty100%)
Note (2) For better LED light bar driving quality, it is recommended to utilize the adaptive boost converter
with current balancing function to drive LED light-bar.
Note (3) P
Note (4) The lifetime of LED is defined as the time when it continues to operate under the conditions at Ta =
25 ±2
= IL ×VL (Without LED converter transfer efficiency)
L
o
C and IL = 24 mA (Per EA) until the brightness becomes 50% of its original value.Љ
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|
|
|
|
4.4 LVDS INPUT SIGNAL TIMING SPECIFICATIONS
4.4.1 LVDS DC SPECIFICATIONS
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PRODUCT SPECIFICATION
Parameter Symbol
Min. Typ. Max.
LVDS Differential Input High Threshold V
LVDS Differential Input Low Threshold V
LVDS Common Mode Voltage VCM 1.125 - 1.375 V (1)
LVDS Differential Input Voltage |VID| 100 - 600 mV (1)
LVDS Terminating Resistor RT - 100 - Ohm -
Note (1) The parameters of LVDS signals are defined as the following figures.
CM
V
TH(LVDS)
-100 - - mV
TL(LVDS)
- - +100 mV
Value
Unit Note
V
CM
V
CM
VID
(1),
=1.2V
(1)
=1.2V
Single Ended
0V
Differential
4.4.2 LVDS DATA FORMAT
CLK+
T/7
Rxin2
Rxin1
Rxin0
IN20 IN19 IN18 IN17 IN16 IN15 IN14
DEB5 B4 B3 B2 Vsync Hsync
IN13 IN12 IN11 IN10 IN9 IN8 IN7
B1G4 G3 G2 G1 B0 G5
IN6
G0R3 R2 R1 R0
IN5 IN4 IN3 IN2 IN1 IN0
R5
V
VID
0V
V
R4
Signal for 1 DCLK Cycle (T)
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4.4.3 COLOR DATA INPUT ASSIGNMENT
The brightness of each primary color (red, green and blue) is based on the 6-bit gray scale data input
for the color. The higher the binary input the brighter the color. The table below provides the assignment
of color versus data input.
Color
R5 R4 R3 R2 R1 R0 G5 G4 G3 G2 G1 G0 B5 B4 B3 B2 B1 B0
Black
Red
Green
Basic
Colors
Gray
Scale
Of
Red
Gray
Scale
Of
Green
Gray
Scale
Of
Blue
Note (1) 0: Low Level Voltage, 1: High Level Voltage
Blue
Cyan
Magenta
Yellow
White
Red(0)/Dark
Red(1)
Red(2)
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4.5 DISPLAY TIMING SPECIFICATIONS
The input signal timing specifications are shown as the following table and timing diagram.
Signal Item SymbolMin. Typ. Max. Unit Note
DCLK Frequency 1/Tc 71.4 72.5273.26 MHz -
Vertical Total Time TV785 790 795 TH -
Vertical Active Display Period TVD 768 768 768 TH -
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PRODUCT SPECIFICATION
DE
Note (1) Because this module is operated by DE only mode, Hsync and Vsync are ignored.
DE
DCLK
DE
Vertical Active Blanking Period TVB TV-TVD 20 TV-TVD TH -
Horizontal Total Time TH151615261536 Tc -
Horizontal Active Display Period THD 136613661366 Tc -
Horizontal Active Blanking Period THB
INPUT SIGNAL TIMING DIAGRAM
TC
TH-THD
HD
T
100
TH-THD
Tc -
DATA
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4.6 POWER ON/OFF SEQUENCE
The power sequence specifications are shown as the following table and diagram.
Symbol
t1 0.5 - 10 ms
t2 0 - 50 ms
t3 0 - 50 ms
t4 500 - - ms
t5 200 - - ms
t6 200 - - ms
t7 0.5 - 10 ms
tA 0.5 - 10 ms
t
B
tC 10 - - ms
tD 10 - - ms
tE 10 - - ms
tF 10 - - ms
Min. Typ. Max.
0 10 ms
Value
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PRODUCT SPECIFICATION
Unit Note
- Power Supply
for LCD, VCCS
- Interface Signal
(LVDS Signal of
Transmitter), V
- Power Supply for
LED Converter,
LED_VCCS
- LED Converter
Dimming Signal,
LED_PWM
- LED Converter
Enable Signal,
LED_EN
I
0V
0V
0V
0V
0V
Power On
90%
10%
Power Off
t1
t2
Valid Data
t6t5
10%
90%
t
A
t
C
PWM Signal
tE t
90%
t
B
t
D
F
90%
10%
t7
10%
t3
10%
t4
Note (1) Please don’t plug or unplug the interface cable when system is turned on.
Note (2) Please avoid floating state of the interface signal during signal invalid period.
Note (3) It is recommended that the backlight power must be turned on after the power supply for LCD and the
interface signal is valid.
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5. OPTICAL CHARACTERISTICS
5.1 TEST CONDITIONS
Item Symbol Value Unit
Ambient Temperature Ta
Ambient Humidity Ha
Supply Voltage VCC 3.3 V
Input Signal According to typical value in "3. ELECTRICAL CHARACTERISTICS"
LED Light Bar Input Current IL 184 mA
The measurement methods of optical characteristics are shown in Section 5.2. The following items
should be measured under the test conditions described in Section 5.1 and stable environment shown in
Note (5).
5.2 OPTICAL SPECIFICATIONS
Item Symbol Condition Min. Typ. Max. UnitNote
Contrast Ratio CR400500- -
Response Time
Average Luminance of White
Red
Color
Chromaticity
Viewing Angle
White Variation of 5 Points
Green
Blue
White
Horizontal
Vertica l
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PRODUCT SPECIFICATION
25r2
50r10
TR - 35ms
- 511 ms
T
F
L
AVE
Rx
Ry
=0q, TY =0q
T
x
Viewing Normal Angle
Gx
Gy
Bx
By
Wx 0.313 Wy
Tx+
T
-
TY+
T
GW
x
-
Y
5p
CRt10
T
=0q, TY =0q
x
185 220 - cd/m
(0.589)
(0.357)
(0.331)
Typ –
0.03
(0.557)
(0.148)
Typ +
0.03
(0.126)
0.329
40 45
40 45 15 20 40 45 -
70 80 - %
o
C
%RH
-
-
-
-
-
-
-
Deg.
2
(2),
(5) ,(7)
(3) ,(7)
(4),
(6) ,(7)
(1) ,(7)
(1),(5) ,
(7)
(5),(6) ,
(7)
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Note (1) Definition of Viewing Angle (Tx, Ty):
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PRODUCT SPECIFICATION
Normal
Tx = Ty = 0º
Ty-Ty
TX- = 90º
6 o’clock
T
y- = 90º
x-
y-
Note (2) Definition of Contrast Ratio (CR):
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) = L63 / L0
L63: Luminance of gray level 63
L 0: Luminance of gray level 0
CR = CR (1)
CR (X) is corresponding to the Contrast Ratio of the point X at Figure in Note (6).
Note (3) Definition of Response Time (T
R
, TF):
Tx
Tx
12 o’clock direction
y+
T
y+ = 90º
x+
TX+ = 90º
100%
90%
Optical
Response
10%
0%
T
R
Note (4) Definition of Average Luminance of White (L
AVE
):
T
F
Measure the luminance of gray level 63 at 5 points
L
= [L (1)+ L (2)+ L (3)+ L (4)+ L (5)] / 5
AVE
L (x) is corresponding to the luminance of the point X at Figure in Note (6)
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(
)
Note (5) Measurement Setup:
The LCD module should be stabilized at given temperature for 20 minutes to avoid abrupt
temperature change during measuring. In order to stabilize the luminance, the measurement
should be executed after lighting Backlight for 20 minutes in a windless room.
LCD Module
LCD Panel
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PRODUCT SPECIFICATION
USB2000
or equivalent
Center of the Screen
500 mm
Note (6) Definition of White Variation (GW):
Measure the luminance of gray level 63 at 5 points
GW
= {Minimum [L (1) ~ L (5)] / Maximum [L (1) ~ L (5)]}*100%
5p
˄˃
ˉ
˛˂ˇ
˅
ˊ
ˆ
CS-2000T
Light Shield Room
Ambient Luminance < 2 lux
or equivalent
ˋ
X
ʳ
: Test Point
X=1 to 13
Active area
˄˃
ˌ
ˇˈ
˄˄
˄˃˄˃
˪˂ˇ˪˂ˇ˪˂ˇ˪˂ˇ
˛
˛˂ˇ˛˂ˇ˛˂ˇ
˄
˄˅
˪
˄˃
˄ˆ
Note (7) The listed optical specifications refer to the initial value of manufacture, but the condition of
the specifications after long-term operation will not be warranted.
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PRODUCT SPECIFICATION
42 2A Standard timing ID # 3
43 2B Standard timing ID # 3
44 2C Standard timing ID # 4
45 2D Standard timing ID # 4
46 2E Standard timing ID # 5
47 2F Standard timing ID # 5
48 30 Standard timing ID # 6
49 31 Standard timing ID # 6
50 32 Standard timing ID # 7
51 33 Standard timing ID # 7
52 34 Standard timing ID # 8
53 35 Standard timing ID # 8
Detailed timing description # 1 Pixel clock (“72.52MHz”, According to
54 36
55 37 # 1 Pixel clock (hex LSB first)
56 38 # 1 H active (“1366”)
57 39 # 1 H blank (“160”)
58 3A # 1 H active : H blank (“1366 :160”)
59 3B # 1 V active (”768”)
60 3C # 1 V blank (”22”)
61 3D # 1 V active : V blank (”768 :22”)
62 3E # 1 H sync offset (”48”)
63 3F # 1 H sync pulse width ("32”)
64 40 # 1 V sync offset : V sync pulse width (”3 : 5”)
65 41
66 42 # 1 H image size (”344 mm”) 58
67 43 # 1 V image size (”193 mm”) C1
68 44 # 1 H image size : V image size (”344 : 193”)
69 45 # 1 H boarder (”0”)
70 46 # 1 V boarder (”0”)
75 4B
76 4C # 2 Flag
77 4D # 2 1st character of name (“N”)
78 4E # 2 2nd character of name (“1”)
79 4F # 2 3rd character of name (“5”)
80 50 # 2 4th character of name (“6”)
81 51 # 2 5th character of name (“B”)
82 52 # 2 6th character of name (“G”)
83 53 # 2 7th character of name (“E”)
84 54 # 2 8th character of name (“-”)
85 55 # 2 9th character of name (“L”)
VESA CVT Rev1.1)
# 1 H sync offset : H sync pulse width : V sync offset : V sync width
(”48: 32 : 3 : 5”)
# 1 Non-interlaced, Normal, no stereo, Separate sync, H/V pol
Negatives
# 2 FE (hex) defines ASCII string (Model Name “N156BGE-L52”,
ASCII)
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PRODUCT SPECIFICATION
86 56 # 2 9th character of name (“5”)
87 57 # 2 Ath character of name (“2”)
88 58 # 2 New line character indicates end of ASCII string
89 59 # 2 Padding with “Blank” character
90 5A Detailed timing description # 3
91 5B # 3 Flag
92 5C # 3 Reserved
93 5D # 3 FE (hex) defines ASCII string (Vendor “CMO”, ASCII)
94 5E # 3 Flag
95 5F # 3 1st character of string (“C”)
96 60 # 3 2nd character of string (“M”)
97 61 # 3 3rd character of string (“O”)
98 62 # 3 New line character indicates end of ASCII string
99 63 # 3 Padding with “Blank” character
100 64 # 3 Padding with “Blank” character
101 65 # 3 Padding with “Blank” character
102 66 # 3 Padding with “Blank” character
103 67 # 3 Padding with “Blank” character
104 68 # 3 Padding with “Blank” character
105 69 # 3 Padding with “Blank” character
106 6A # 3 Padding with “Blank” character
107 6B # 3 Padding with “Blank” character
108 6C Detailed timing description # 4
109 6D # 4 Flag
110 6E # 4 Reserved
# 4 FE (hex) defines ASCII string (Model Name“N156BGE-L52”,
111 6F
112 70 # 4 Flag
113 71 # 4 1st character of name (“N”) 4E
114 72 # 4 2nd character of name (“1”) 31
115 73 # 4 3rd character of name (“5”) 35
116 74 # 4 4th character of name (“6”) 36
117 75 # 4 5th character of name (“B”) 42
118 76 # 4 6th character of name (“G”) 47
119 77 # 4 7th character of name (“E”) 45
120 78 # 4 8th character of name (“-”) 2D
121 79 # 4 9th character of name (“L”)
122 7A # 4 9th character of name (“5”)
123 7B # 4 Ath character of name (“2”)
124 7C # 4 New line character indicates end of ASCII string
125 7D # 4 Padding with “Blank” character
126 7E Extension flag
127 7F Checksum
ASCII)
35 00110101
32 00110010
0A 00001010
20 00100000
00 00000000
00 00000000
00 00000000
FE 1111111 0
00 00000000
43 01000011
4D 01001101
4F 01001111
0A 00001010
20 00100000
20 00100000
20 00100000
20 00100000
20 00100000
20 00100000
20 00100000
20 00100000
20 00100000
00 00000000
00 00000000
00 00000000
FE 1111111 0
00 00000000
4C 01001100
35 00110101
32 00110010
0A 00001010
20 00100000
00 00000000
EE 1110111 0
01001110
00110001
00110101
00110110
01000010
01000111
01000101
00101101
Version 0.0 1 December 2010 29 / 31
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Appendix. OUTLINE DRAWING
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PRODUCT SPECIFICATION
Version 0.0 1 December 2010 30 / 31
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PRODUCT SPECIFICATION
Version 0.0 1 December 2010 31 / 31
The copyright belongs to CHIMEI InnoLux. Any unauthorized use is prohibited.
One step solution for LCD / PDP / OLED panel application: Datasheet, inventory and accessory!
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