DATA DISPLAY GROUP
Datasheet
Samsung
LTM270DL02
The information contained in this document has been carefully researched and is, to the best of our
knowledge, accurate. However, we assume no liability for any product failures or damages, immediate or
consequential, resulting from the use of the information provided herein. Our products are not intended for
use in systems in which failures of product could result in personal injury. All trademarks mentioned herein
are property of their respective owners. All specifications are subject to change without notice.
MODEL LTM270DL02 Page /33
PRODUCT INFORMATION
SAMSUNG TFT-LCD PRODUCT INFORMATION
MODEL : LTM270DL02
ISSUED DATE : 2011-2-21
Note : This is Product Information is subject to change after 3 months of issuing date.
Application Engineering Group
LCD Business, Samsung Electronics Co . , LTD.
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PRODUCT INFORMATION
Contents
General Description --------------------------------------------------------------------------------- (3)
1. Absolute Maximum Ratings -------------------------------------------------------------------- (4)
2. Optical Characteristics --------------------------------------------------------------------------- (6)
3. Electrical Characteristics ----------------------------------------------------------------------- (11)
3.1 TFT LCD Module
3.2 Back Light Unit
4. Block Diagram ------------------------------------------------------------------------------------ (14)
4.1 TFT LCD Module
4.2 Back Light Unit
5. Input Terminal Pin Assignment ---------------------------------------------------------------- (15)
5.1 Input Signal & Power
5.2 Input Power
5.3 Back Light Unit
5.4 LVDS Interface
5.5 Input Signals, Basic Display Colors and Gray Scale of Each Color
6. Interface Timing ----------------------------------------------------------------------------------- (25)
6.1 Timing Parameters (DE only mode)
6.2 Timing Diagrams of interface Signal (DE only mode)
6.3 Power ON/OFF Sequence
6.4 VDD Power Dip Condition
7. Outline Dimension -------------------------------------------------------------------------------- (29)
8. General Precaution ------------------------------------------------------------------------------- (31)
8.1 Handling
8.2 Storage
8.3 Operation
8.4 Operation Condition Guide
8.5 Others
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PRODUCT INFORMATIONGeneral Description
Features
Description
Applications
General Information
Items Specification Unit Note
Pixel Pitch 0.233(H) x 0.233(W) mm
Active Display Area 596.74(H) x 335.66(V) mm
Surface Treatment Haze (TBD)
Display Colors 16.7M ( True 8 bit ) colors
Number of Pixels 2560 x 1440 pixel
Pixel Arrangement RGB vertical stripe
Display Mode Normally Black
Luminance of White 300(Typ.) cd/㎡
LTM270DL02 is a color active matrix liquid crystal display (LCD) that uses amorphous
silicon TFT (Thin Film Transistor) as switching components. This model is composed of
a TFT LCD panel, a driver circuit and a back light unit. The resolution of a 27.0” is 2560
x 1440 and this model can display up to 16.7 millions colors.
Workstation & desktop monitors
MFM & Graphic application
Display terminals for AV application products
Financial market
Monitors for industrial machine
Monitors for HDTV
Monitors for Professional Medical machine
* If the module is used to other applications besides the above, please contact SEC
in advance.
High Color Saturation, high aperture structure
PLS mode
Wide Viewing Angle
QHD (2560 x 1440 pixels) resolution
DE (Data Enable) only mode
White LED Edge slim Backlight (1-side)
RoHS compliance
TCO5.0 compliance
( Except for 2.2 response time; this product does not have over driving function.
It is recommended to support in system level )
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PRODUCT INFORMATION
Note (1) Mechanical tolerance is ± 0.5mm unless there is a special comment.
Mechanical Information
1. Absolute Maximum Ratings
If the condition exceeds maximum ratings, it can cause malfunction or unrecoverable
damage to the device.
Note (1) Ta= 25 ± 2 °C
Item Min. Typ. Max. Unit Note
Module
size
Horizontal (H) 629.5 630.0 630.5 mm
Partially 16.8mm(max)
At the connector section
Vertical (V) 367.7 368.2 368.7 mm
Depth (D) 15.8 mm
Weight - - 3200 g LCD module only
Item Symbol Min. Max. Unit Note
Power Supply Voltage VDD GND-0.5 5.5 V
Storage temperature TSTG -20 60 ℃ (1)
Glass surface temperature
(Operation condition)
TOPR 0 50 ℃
Shock ( non - operating ) Snop - 50 G (2)
Vibration ( non - operating ) Vnop - 1.5 G (3)
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PRODUCT INFORMATION
(1) Temperature and relative humidity range are shown in the figure below.
a. 90 % RH Max. (Ta ≤ 39 °C)
b. Maximum wet-bulb temperature at 39 °C or less. (Ta ≤ 39 °C)
c. No condensation
(2) 11ms, sine wave, one time for ±X, ±Y, ±Z axis
(3) 10-300 Hz, Sweep rate 10min, 30min for X,Y,Z axis
Fig. Temperature and Relative humidity range
(39,90)(39,90)
(60,27.7)(60,27.7)
(50,50.4)(50,50.4)
((--25,5)25,5)
(39,90)(39,90)
(60,27.7)(60,27.7)
(50,50.4)(50,50.4)
((--25,5)25,5)
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PRODUCT INFORMATION2. Optical Characteristics
* C.G.L : Color Grayscale Linearity (continue to the next page)
Item Symbol Condition Min. Typ. Max. Unit Note
Contrast Ratio
(Center of screen)
C/R 600 1,000 -
(3)
SR-3
Response
Time
On/Off Tr+Tf - 12 - msec
(5)
RD-80S
Luminance of White
(Center of screen)
YL 250 300 - cd/m2
(6)
SR-3
Color
Chromaticity
(CIE 1931)
Red
Rx
-0.030
0.660
+0.030
Ry 0.330
Green
Gx Normal
θL,R=0
θU,D=0
Viewing
Angle
0.300
Gy 0.630
Blue
Bx 0.150
By 0.040
White
Wx 0.313
Wy 0.329 (7),(8)
Color
Chromaticity
(CIE 1976)
Red
Ru' - 0.468 - SR-3
Rv' - 0.527 -
Green
Gu' - 0.120 -
Gv' - 0.569 -
Blue
Bu' - 0.189 -
Bv' - 0.113 -
White
Wu' - 0.198 -
Wv' - 0.468 -
C.G.L White △u'v' - - 0.02 (9)
The optical characteristics should be measured in a dark room or equivalent.
Measuring equipment : SR-3, RD-80S (TOPCON), EZ-Contrast (Eldim)
(Ta = 25 ± 2°C, VDD=5V, fv= 60Hz, Fdclk= 60.38MHz, If = 440 mA)
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PRODUCT INFORMATION
Note (1) Test Equipment Setup
The measurement should be executed in a stable, windless and dark room between
30min after lighting the back light at the given temperature for stabilization
of the back light. This should be measured in the center of screen.
LED current : 440mA
Environment condition : Ta = 25 ± 2 °C
Photo detector Field
SR-3 2°
Photo detector
LCD Panel
TFT - LCD Module
The center of the screen
SR-3 : 50㎝
Field
Item Symbol Condition Min. Typ. Max. Unit Note
Color Gamut - - 72 - %
Color Temperature - - 6500 - K
Viewing
Angle
Hor.
θL
CR≥10
80 89 -
Degrees
(8)
SR-3
θR 80 89 -
Ver.
θU 80 89 -
θD 80 89 -
Brightness Uniformity
(9 Points)
Buni - - 25 %
(4)
SR-3
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PRODUCT INFORMATION
Note (2) Definition of test point
Note (3) Definition of Contrast Ratio (C/R)
: Ratio of gray max (Gmax) & gray min (Gmin) at the center point⑤ of the panel
Note (4) Definition of 9 points brightness uniformity
Buni
B B
B
100
( max min)
max
Bmax : Maximum brightness with all pixels white
Bmin : Minimum brightness with all pixels white
CR
G
G
max
min
Gmax : Luminance with all pixels white
Gmin : Luminance with all pixels black
6
8 79
3 2 1
45
640 1280 1920
360
720
1080
Active Area
: Test Point
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PRODUCT INFORMATION
Note (5) Definition of Response time
a. On/Off response time : Sum of Tr, Tf
Black (TFT OFF) White (TFT ON) Black (TFT OFF)
100%
90%
10%
0%
TR TF
Optical
Response
Display Data
Time
Note (6) Definition of Luminance of White : Luminance of white at center point⑤
Note (7) Definition of Color Chromaticity (CIE 1931, CIE1976)
Color coordinate of Red, Green, Blue & White at center point⑤
Note (8) Definition of Viewing Angle
: Viewing angle range ( CR ≥10 )
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PRODUCT INFORMATION
Note (9) Color Grayscale Linearity
a. Test image : 100% full white pattern with a test pattern as below
b. Test pattern : Squares, 40mm by 40mm in size, filled with 255, 225, 195, 165, 135 and
105 grays steps should be arranged at the center⑤ of the screen.
c. Test method
-1st gray step : move a square of 255 gray level should be moved into the center of the
screen and measure luminance and u’ and v’ coordinates.
- Next gray step : Move a 225 gray square into the center and measure both
luminance and coordinates, too.
d. Test evaluation
Where A, B : 2 gray levels found to have the largest color differences between them
i.e. get the largest Δu’ and Δv’ of each 6 pair of u’ and v’ and calculate the Δu’v’.
u'v'= (u' - u' ) + (v' - v' )A B 2 A B 2
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PRODUCT INFORMATION3. Electrical Characteristics
3.1 TFT LCD Module
The connector for display data & timing signal should be connected.
Ta = 25°C
Item Symbol Min. Typ. Max. Unit Note
Voltage of Power Supply VDD 4.5 5.0 5.5 V (1)
Interface Type LVDS LVDS
Current of
Power
Supply
(a) Black
IDD
- 900 - mA
(2),(3)(b) White - 1400 1700 mA
(c) Dot - 1100 1300 mA
Vsync Frequency fV 45 60 75 Hz
Hsync Frequency fH 66.18 88.79 111.86 kHz
Main Frequency fDCLK 45 60.38 76.06 MHz
Rush Current IRUSH - - 5 A (4)
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PRODUCT INFORMATION
Rush Current IRUSH can be measured when TRUSH. is 470㎲.
TRUSH=470㎲
100%
GND
90%
10%
VDD
(4) Measurement Condition
12
Note (1) The ripple voltage should be controlled under 10% of VDD.
(2) fV=60Hz, fDCLK = 60.38MHz, VDD = 5.0V, DC Current.
(3) Power dissipation check pattern (LCD Module only)
a) White Pattern b) Black Pattern c) Dot Pattern
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PRODUCT INFORMATION
3.2 Back Light Unit
3.2.1 The characteristics of LED bar
The back light unit is composed of WLED.
Ta=25 ± 2°C
Item Symbol Min. Typ. Max. Unit Note
LED Forward Current IF - 440 480 mA (1)
LED Array Voltage VP - 66.0 70.0 V (1)
Operating Life Time Hr 30,000 - - Hour (2)
Note (1) The above specification is not for the converter output, but for the LED bar.
The LED bar consists of 80 LED packages ; 4 parallel X 20 serial
(2) Life time(Hr) is defined as the time when brightness of a LED package itself
becomes 50% or less than its original value at the condition of Ta=25 ± 2°C
and IF =440mA
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PRODUCT INFORMATION4. BLOCK DIAGRAM
4.2 Back Light Unit
4.1 TFT LCD Module
Connector: Molex 104078-0610 or equivalent
※ For detail connector information, please refer to page 30.
6-pin connectorLED bar
LED Power
LE
D
R
et
ur
n
si
gn
al
LE
D
P
ow
er
LED Return
signal
Power
Circuit
Column Driver Circuit
TFT-LCD
(2560 x RGB x 1440 pixels)
S1 S2560
Timing Controller
LVDS 2 TCON
Source Driver ICs
CN1
(51pin)
LVDS Signal
Dc power
supply
Control signal
Gamma
Generator
G
A
T
E
IC
14
CN2
(15pin)
Gamma
Generator
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PRODUCT INFORMATION
5.1. Input Signal & Power ( Connector : JAE FI-RE51S-HF-J or equivalent )
15
PIN NO SYMBOL FUNCTION
1 B_RXO0N B_Negative Transmission Data of Pixel 0 (ODD data)
2 B_RXO0P B_Positive Transmission Data of Pixel 0 (ODD data)
3 B_RXO1N B_Negative Transmission Data of Pixel 1 (ODD data)
4 B_RXO1P B_Positive Transmission Data of Pixel 1 (ODD data)
5 B_RXO2N B_Negative Transmission Data of Pixel 2 (ODD data)
6 B_RXO2P B_Positive Transmission Data of Pixel 2 (ODD data)
7 GND Power Ground
8 B_RXOCN B_Negative Sampling Clock (ODD data)
9 B_RXOCP B_Positive Sampling Clock (ODD data)
10 GND Power Ground
11 B_RXO3N B_Negative Transmission Data of Pixel 3 (ODD data)
12 B_RXO3P B_Positive Transmission Data of Pixel 3 (ODD data)
13 GND Power Ground
14 B_RXE0N B_Negative Transmission Data of Pixel 0 (EVEN data)
15 B_RXE0P B_Positive Transmission Data of Pixel 0 (EVEN data)
16 B_RXE1N B_Negative Transmission Data of Pixel 1 (EVEN data)
17 B_RXE1P B_Positive Transmission Data of Pixel 1 (EVEN data)
18 B_RXE2N B_Negative Transmission Data of Pixel 2 (EVEN data)
19 B_RXE2P B_Positive Transmission Data of Pixel 2 (EVEN data)
20 GND Power Ground
21 B_RXECN B_Negative Sampling Clock (EVEN data)
22 B_RXECP B_Positive Sampling Clock (EVEN data)
23 GND Power Ground
24 B_RXE3N B_Negative Transmission Data of Pixel 3 (EVEN data)
25 B_RXE3P B_Positive Transmission Data of Pixel 3 (EVEN data)
26 GND Power Ground
27~51 Please refer to the next page
5. Input Terminal Pin Assignment
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PRODUCT INFORMATION
16
PIN NO SYMBOL FUNCTION
27 F_RXO0N F_Negative Transmission Data of Pixel 0 (ODD data)
28 F_RXO0P F_Positive Transmission Data of Pixel 0 (ODD data)
29 F_RXO1N F_Negative Transmission Data of Pixel 1 (ODD data)
30 F_RXO1P F_Positive Transmission Data of Pixel 1 (ODD data)
31 F_RXO2N F_Negative Transmission Data of Pixel 2 (ODD data)
32 F_RXO2P F_Positive Transmission Data of Pixel 2 (ODD data)
33 GND Power Ground
34 F_RXOCN F_Negative Sampling Clock (ODD data)
35 F_RXOCP F_Positive Sampling Clock (ODD data)
36 GND Power Ground
37 F_RXO3N F_Negative Transmission Data of Pixel 3 (ODD data)
38 F_RXO3P F_Positive Transmission Data of Pixel 3 (ODD data)
39 GND Power Ground
40 F_RXE0N F_Negative Transmission Data of Pixel 0 (EVEN data)
41 F_RXE0P F_Positive Transmission Data of Pixel 0 (EVEN data)
42 F_RXE1N F_Negative Transmission Data of Pixel 1 (EVEN data)
43 F_RXE1P F_Positive Transmission Data of Pixel 1 (EVEN data)
44 F_RXE2N F_Negative Transmission Data of Pixel 2 (EVEN data)
45 F_RXE2P F_Positive Transmission Data of Pixel 2 (EVEN data)
46 GND Power Ground
47 F_RXECN F_Negative Sampling Clock (EVEN data)
48 F_RXECP F_Positive Sampling Clock (EVEN data)
49 GND Power Ground
50 F_RXE3N F_Negative Transmission Data of Pixel 3 (EVEN data)
51 F_RXE3P F_Positive Transmission Data of Pixel 3 (EVEN data)
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PRODUCT INFORMATION
5.2. Input Power ( Connector : YEONHO, 12505WR-15 or Compatible)
17
PIN NO SYMBOL FUNCTION
1 NC NC
2 NC NC
3 NC NC
4 GND Power Ground
5 GND Power Ground
6 GND Power Ground
7 GND Power Ground
8 NC * CE(For LCD internal use only. Do not connect)
9 NC * CTL(For LCD internal use only. Do not connect)
10 GND Power Ground
11 VDD Power Supply : +5V
12 VDD Power Supply : +5V
13 VDD Power Supply : +5V
14 VDD Power Supply : +5V
15 VDD Power Supply : +5VFor
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PRODUCT INFORMATION
a. All GND pins should be connected together and also be connected to the
LCD’s metal chassis.
b. All power input pins should be connected together.
c. All NC pins should be separated from other signal or power.
18
Note) Pin number starts from Left side
Pin No. 1 Pin No. 51
PCB
▼
#51#1
▼
Fig. Connector diagram
#51#1
Connector : JAE FI-RE51S-HF-J or equivalent
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PRODUCT INFORMATION
19
5.3 Back Light Unit
LED Bar input connector : Molex 104078-0610 or equivalent
Note ) Pin number starts from Left side
Pin No. Pin description Function
1 RTN 1 Channel 1 LED return
2 RTN 2 Channel 2 LED return
3 Vin LED power input
4 Vin LED power input
5 RTN 3 Channel 3 LED return
6 RTN 4 Channel 4 LED return
Fig. Connector diagram
Connector
Rear view of panel
#6 #1
▼
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PRODUCT INFORMATION5.4 LVDS Interface
5.4.1 Front _ Odd Pixel Data
LVDS Transmitter (THC63LVD103) Signal Interface
Input pin Input signal Output
signal
LTM270DL02 interface
No symbol symbol Function Terminal Symbol
59 TD0 F_RO2 Red Odd Pixel Data(LSB)
TD- / TD+ 37 / 38
F_RXO3N /
F_RXO3P61 TD1 F_RO3 Red Odd Pixel Data
33 TA0 F_RO4 Red Odd Pixel Data
TA- / TA+ 27 / 28
F_RXO0N /
F_RXO0P
34 TA1 F_RO5 Red Odd Pixel Data
35 TA2 F_RO6 Red Odd Pixel Data
36 TA3 F_RO7 Red Odd Pixel Data
37 TA4 F_RO8 Red Odd Pixel Data
38 TA5 F_RO9 Red Odd Pixel Data(MSB)
62 TD2 F_GO2
Green Odd Pixel
Data(LSB) TD- / TD+ 37 / 38
F_RXO3N /
F_RXO3P
63 TD3 F_GO3 Green Odd Pixel Data
40 TA6 F_GO4 Green Odd Pixel Data TA- / TA+ 27 / 28
F_RXO0N /
F_RXO0P
41 TB0 F_GO5 Green Odd Pixel Data
TB- / TB+ 29 / 30
F_RXO1N /
F_RXO1P
42 TB1 F_GO6 Green Odd Pixel Data
44 TB2 F_GO7 Green Odd Pixel Data
45 TB3 F_GO8 Green Odd Pixel Data
46 TB4 F_GO9
Green Odd Pixel
Data(MSB)
64 TD4 F_BO2 Blue Odd Pixel Data(LSB)
TD- / TD+ 37 / 38
F_RXO3N /
F_RXO3P1 TD5 F_BO3 Blue Odd Pixel Data
48 TB5 F_BO4 Blue Odd Pixel Data
TB- / TB+ 29 / 30
F_RXO1N /
F_RXO1P49 TB6 F_BO5 Blue Odd Pixel Data
50 TC0 F_BO6 Blue Odd Pixel Data
TC- / TC+ 31 / 32
F_RXO2N /
F_RXO2P
52 TC1 F_BO7 Blue Odd Pixel Data
53 TC2 F_BO8 Blue Odd Pixel Data
54 TC3 F_BO9 Blue Odd Pixel Data(MSB)
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PRODUCT INFORMATION5.4 LVDS Interface
5.4.2 Front _ Even Pixel Data
LVDS Transmitter (THC63LVD103) Signal Interface
Input pin Input signal Output
signal
LTM270DL02 interface
No symbol symbol Function Terminal Symbol
59 TD0 F_RE2 Red Even Pixel Data(LSB)
TD- / TD+ 50 / 51
F_RXE3N /
F_RXE3P61 TD1 F_RE3 Red Even Pixel Data
33 TA0 F_RE4 Red Even Pixel Data
TA- / TA+ 40 / 41
F_RXE0N /
F_RXE0P
34 TA1 F_RE5 Red Even Pixel Data
35 TA2 F_RE6 Red Even Pixel Data
36 TA3 F_RE7 Red Even Pixel Data
37 TA4 F_RE8 Red Even Pixel Data
38 TA5 F_RE9 Red Even Pixel Data(MSB)
62 TD2 F_GE2
Green Even Pixel
Data(LSB) TD- / TD+ 50 / 51
F_RXE3N /
F_RXE3P
63 TD3 F_GE3 Green Even Pixel Data
40 TA6 F_GE4 Green Even Pixel Data TA- / TA+ 40 / 41
F_RXE0N /
F_RXE0P
41 TB0 F_GE5 Green Even Pixel Data
TB- / TB+ 42 / 43
F_RXE1N /
F_RXE1P
42 TB1 F_GE6 Green Even Pixel Data
44 TB2 F_GE7 Green Even Pixel Data
45 TB3 F_GE8 Green Even Pixel Data
46 TB4 F_GE9
Green Even Pixel
Data(MSB)
64 TD4 F_BE2 Blue Even Pixel Data(LSB)
TD- / TD+ 50 / 51
F_RXE3N /
F_RXE3P1 TD5 F_BE3 Blue Even Pixel Data
48 TB5 F_BE4 Blue Even Pixel Data
TB- / TB+ 42 / 43
F_RXE1N /
F_RXE1P49 TB6 F_BE5 Blue Even Pixel Data
50 TC0 F_BE6 Blue Even Pixel Data
TC- / TC+ 44 / 45
F_RXE2N /
F_RXE2P
52 TC1 F_BE7 Blue Even Pixel Data
53 TC2 F_BE8 Blue Even Pixel Data
54 TC3 F_BE9 Blue Even Pixel Data(MSB)
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PRODUCT INFORMATION5.4 LVDS Interface
5.4.3 Back _ Odd Pixel Data
LVDS Transmitter (THC63LVD103) Signal Interface
Input pin Input signal
Output
signal
LTM270DL02 interface
No symbol symbol Function Terminal Symbol
59 TD0 B_RO2 Red Odd Pixel Data(LSB)
TD- / TD+
B_RXO3N /
B_RXO3P
61 TD1 B_RO3 Red Odd Pixel Data
33 TA0 B_RO4 Red Odd Pixel Data
TA- / TA+ 1 / 2
B_RXO0N /
B_RXO0P
34 TA1 B_RO5 Red Odd Pixel Data
35 TA2 B_RO6 Red Odd Pixel Data
36 TA3 B_RO7 Red Odd Pixel Data
37 TA4 B_RO8 Red Odd Pixel Data
38 TA5 B_RO9 Red Odd Pixel Data(MSB)
62 TD2 B_GO2 Green Odd Pixel Data(LSB)
TD- / TD+ 11 / 12
B_RXO3N /
B_RXO3P
63 TD3 B_GO3 Green Odd Pixel Data
40 TA6 B_GO4 Green Odd Pixel Data TA- / TA+ 1 / 2
B_RXO0N /
B_RXO0P
41 TB0 B_GO5 Green Odd Pixel Data
TB- / TB+ 3 / 4
B_RXO1N /
B_RXO1P
42 TB1 B_GO6 Green Odd Pixel Data
44 TB2 B_GO7 Green Odd Pixel Data
45 TB3 B_GO8
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