JDI TX43D22VC0CAA Specification

Page 1
Page 2
CONTENTS
No. Item Sheet No. Page
- CONTENTS 3284PS 2601 - TX43D22VC0CAA - 2E 1-1/1
-
3284PS 2602 - TX43D22VC0CAA - 2E 2-1/1
- DESCRIPTION 3284PS 2603 - TX43D22VC0CAA - 2E 3-1/1 1 ABSOLUTE MAXIMUM RATINGS 3284PS 2604 - TX43D22VC0CAA - 2E 4-1/2 - 4-2/2 2 OPTICAL CHARACTERISTICS 3284PS 2605 - TX43D22VC0CAA - 2E 5-1/2 - 5-2/2 3 ELECTRICAL CHARACTERISTICS 3284PS 2606 - TX43D22VC0CAA - 2E 6-1/2 - 6-2/2 4 BLOCK DIAGRAM 3284PS 2607 - TX43D22VC0CAA - 2E 7-1/1 5 INTERFACE PIN ASSIGNMENT 3284PS 2608 - TX43D22VC0CAA - 2E 8-1/6 - 8-6/6 6 INTERFACE TIMING 3284PS 2609 - TX43D22VC0CAA - 2E 9-1/3 - 9-3/3 7 DIMENSIONAL OUTLINE 3284PS 2610 - TX43D22VC0CAA - 2E 10-1/2 - 10-2/2 8 DSIGNATION OF LOT MARK 3284PS 2611 - TX43D22VC0CAA - 2E 11-1/1 9
COSMETIC SPECIFICATIONS
3284PS 2612 - TX43D22VC0CAA - 2E 12-1/3 - 12-3/3
10 PRECAUTION 3284PS 2613 - TX43D22VC0CAA - 2E 13-1/3 - 13-3/3
Japan Display Inc. Date Feb. 08, 2013 3284PS 2601 - TX43D22VC0CAA - 2E Page 1-1/1
Sh.
No.
Page 3
The upper section : Before revision The lower section : After revision
Corrected the Differential signal input voltage :Max 3.0V--->Max 2.9V Added the UL mark on the label.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2602 - TX43D22VC0CAA - 2E Page 2-1/1
Sh.
No.
Summary
Date
RECORD OF REVISION
Sheet No.
Page
3284PS2604-TX43D22VC0CAA-1E
4-2/2
3284PS2604-TX43D22VC0CAA-2E
3284PS2611-TX43D22VC0CAA-1E
11-1/1
3284PS2611-TX43D22VC0CAA-2E
Feb. 08, 2013
Page 4
DESCRIPTION
This specification is applied to the following 17inch SXGA IPS-Pro-TFT module.
Note : The LED driver for back light unit is built in this module.
General Specifications
Part Name : TX43D22VC0CAA
Effective Display Area : H337.92 × V270.336 [mm]
Number of Pixels : H1280 × V1024 [pixels]
Pixel Pitch : H0.264 × V0.264 [mm]
Color Pixel Arrangement : R+G+B Vertical Stripe
Display Mode : Transmissive Mode
Normally Black Mode IPS-Pro
Top Polarizer Type
: Anti-glare(Hardness:2H)
Number of Colors
: 16,777,216 colors
Viewing Angle Range
: Super Wide Version
Input Signal : 2-channel LVDS (LVDS:Low Voltage Differential Signaling)
Back Light : Edge Light Type with White LED
External Dimensions : (H) 368.0 × (V) 306.0 × (t) 19.9 (mm)
Weight : 1600 g typ.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2603 - TX43D22VC0CAA - 2E Page 3-1/1
Sh.
No.
Page 5
1. ABSOLUTE MAXIMUM RATINGS
1.1 ELECTRICAL ABSOLUTE MAXIMUM RATINGS
(0.5G) (1.0G) (3G) (30G)
Notes 1) Temperature and Humidity should be applied to the center LCD surface of TFT module,
not to the system installed with a module. The temperature at the center of rear surface should be less than 60°C on the condition of operating. Function of module is guaranteed in above operating temperature range,
but optical characteristics and cosmetic specs are specified for only initial 25°C operating
condition.
2)
Ta 40°C ………
Relative humidity should be 85%RH max. Dew is prohibited.
Ta > 40°C ………
Relative humidity should be lower than the moisture of the 85%RH at 40°C.
To prevent optical sheet distortion, do not subject the LCD module to a hot and humid environment for any extended period.
The product evaluating condition shall be 40℃ 85%RH 96h.
3) Frequency of the vibration is between 15Hz and 100Hz, except the resonance point.
4) Pulse width of the shock is approximately 10 ms.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2604 - TX43D22VC0CAA - 2E Page 4-1/2
Sh.
No.
°C
Unit
1)
Note
60
-20
9.8
—
2)
%RH1)Not Acceptable
—
m/s
2
3)
Min.
Max.
Min.
Max.
ITEM
Operating
Storage
Temperature
0
Vibration
—
4.9
Humidity
2)
50
4)—Shock
—
29.4—294
lx
—
Corrosive Gas
Not Acceptable
Illumination at
LCD Surface
—
50,000
—
50,000
20 40 60 80 -20 -40 0
20
40
60
80
100
Temperature ( °C )
Relative humidity ( %RH )
Opera
ting
range
Storage range
Page 6
1.2 ELECTRICAL ABSOLUTE MAXIMUM RATINGS (1) TFT Module Vss=0V
Notes 1) It is applied to LVDS signal.
2)
Discharge Coefficient: 200pF-250Ω, Environmental: 25°C-70%RH
3) It is applied to I/F connector pins.
4) It is applied to the surface of a metallic bezel and a LCD panel.
(2) Back-Light
Vss=0V
Item Symbol Min. Max. Unit Note
Input Voltage
V
IN
0 18.0 V —
ON/OFF Control Input Voltage ON/OFF -0.3 6.0 V —
Analog Dimming Signal Voltage
V
BC
-0.3 6.0 V 1),2)
PWM Dimming Signal Voltage PWM -0.3 6.0 V 1)
Notes 1)
These signals can’t input at the same time.(Unused pin is to be left open.)
Notes 2) VBC is only for the evaluation.VBC is not covered by warranty.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2604 - TX43D22VC0CAA - 2E Page 4-2/2
Sh.
No.
2),3)
V
ESD1
±8
kV
2),4)
2.9
V
Electrostatic Durability
V
ESD0
±100
V
1)
—
Item
Symbol
Min.
Max.
Unit
Note
Power Supply Voltage
V
DD
0
6.0
V
Differential signal input voltage
V
IL
-0.3
Page 7
2. OPTICAL CHARACTERISTICS
The following optical characteristics are measured when the LCD is set alone (apart from driving circuits and monitor cabinets) and under stable conditions. It takes about 30 minutes to reach stable conditions. The measuring point is the center of display area unless otherwise noted. The optical characteristics should be measured in a dark room or equivalent state. The values described below are the initial values.
Measuring equipment : KONICA MINOLTA: CS-2000 or equivalent.
Ambient Temperature=25±3°C, VDD=5.0V, fV=60Hz, VIN=12.0V,
and PWM=100% (PWMf=150Hz)
ITEM SYMBOL
CONDITION
Min. Typ. Max. UNIT NOTE
Contrast Ratio CR 600 1,000 — — 2)
Response Rise ton — 10 18
Time Fall tof — 12 20
Brightness of white
Bwh 230 290 —
cd/m
2
4)
Brightness uniformity
Buni 75 — — % 5)
x θ = 0°
0.621
0.651
0.681
y 1)
0.296
0.326
0.356
Color
x
0.284
0.314
0.344
Chromaticity
y
0.581
0.611
0.641
—
Gray scale
(CIE)
x
0.119
0.149
0.179
255
y
0.024
0.054
0.084
x
0.269
0.299
0.329
y
0.285
0.315
0.345
Δx — — 0.04 Δy — — 0.04 6)
Variation of
Δx
θ = +30°
— — 0.04
Color Position
Δy
f = 0°, 90°
— — 0.04 —
Gray scale
(CIE)
Δx 180°, 270° — — 0.04
255
Δy 1) — — 0.04 Δx — — 0.04 Δy — — 0.04
Contrast Ratio
θ=+85゚
at 85°
φ=0゚、90゚
180゚、270゚
Japan Display Inc. Date Feb. 08, 2013 3284PS 2605 - TX43D22VC0CAA - 2E Page 5-1/2
—
—
Sh.
No.
ms
3)
—
—
Red
Green
Red
Blue
White
Green
Blue
White
CR85°
10
Page 8
Note 1) Definition of Viewing Angle
TFT Module
2) Definition of Contrast Ratio (Luminance at displaying WHITE) (Luminance at displaying BLACK)
3) Definition of Response Time
* Temperature of LCD surface=30°C
4)
Brightness of white is measured 30 minutes later at the LCM lights up.
5) Definition of Brightness Uniformity
Display pattern is white (255 DDL). The brightness
uniformity is defined as the following equation.
Brightness at each point is measured, and then Buni can be
calculated using the maximum and minimum brightness values.
Bmin
Bmax
where, Bmax = Maximum brightness
Bmin = Minimum brightness
6) Variation of color position on CIE is defined as difference between colors at θ = 0° and
at θ = 30° & f = 0°, 90°,180°, 270°.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2605 - TX43D22VC0CAA - 2E Page 5-2/2
CR =
Buni =
× 100
Sh.
No.
x X'
f=180°
(9 o'clock)
f=90°
(12 o'clock)
q=0°
Y
Y'
Z
Z'
θ
f=270°
(6 o'clock)
f=0°
(3 o'clock)
f
eye
10% 50% 90%
10%
50%
90%
: measuring points
(1) (2) (3)
(4) (5) (6)
(7) (8) (9)
White Black Black
Displaying Data Signal
Optical Response ( Luminance)
ton
100
90
10
0
%
toff
Page 9
3. ELECTRICAL CHARACTERISTICS
3.1 TFT-LCD Module Ta=25°C, Vss=0V ITEM SYMBOL Min. Typ. Max. Unit Note
Power Supply Voltage
V
DD
4.5 5 5.5 V —
Power Supply Current
I
DD
— 610 750 mA 1),2),3)
Differential input voltage for
V
ILH
— — +100 mV
VCM=1.2V
LVDS receiver threshold
V
ILL
-100 — — mV
VCM=1.2V
Vsync Frequency
f
V
— 60 76 * Hz —
Hsync Frequency
f
H
— 64 — kHz —
DCLK Frequency
f
CLK
40 54 67.5 MHz —
* The LCD panel works ordinarily when fv is set between 60Hz and 76Hz. However, picture quality and optical characteristics can be guaranteed only at fv=60Hz. If the LCD is used other than fv=60Hz, customers are requested to check picture quality of the LCD under customers' specific conditions.
Note 1) DC current at fv=60.0Hz, fCLK=54MHz and VDD=5.0V
2) As this module contains current fuse(1.6A),please prepare current source that is enough
for cutting current fuse (larger than 5.0A) or set protection circuit when a trouble happens.
3) It is the current value with the white picture (255DDL).
Japan Display Inc. Date Feb. 08, 2013 3284PS 2606 - TX43D22VC0CAA - 2E Page 6-1/2
Sh.
No.
V
DD
V
SS
DC Ampere Meter
TFT Module
Page 10
3.2 BACK LIGHT
Ta=25°C
Item Symbol Min. Typ. Max. Unit Note
Input Voltage
V
IN
10.8 12.0 13.2 V —
Input Current
I
IN
— 1.0 1.44 A 1), 2)
ON/OFF
ON 2.5 3.3 5.0 V B/L=ON
Control Voltage OFF 0 — 0.5 V B/L=OFF
Current
I
BL
— — 1.0 ON/OFF=5.0V
Brightness Control Voltage
V
BC
1.0 3.3 3.6 V 3),5)
I
BC
— — 1.0 mA
VBC=3.6V
PWM dimming signal High 2.5 3.3 5.0 V Input Voltage Low 0 — 0.9 V
I
PWM
— 1.0 — mA 6)
PWM Frequency PWMf 140 150 160 Hz —
Notes
1)
IIN Typ: VIN=12.0V, ON/OFF=3.3V, PWM=100%(PWMf=150Hz)
IIN Max: VIN=10.8V, ON/OFF=3.3V, PWM=100%(PWMf=150Hz)
2)
As this module contains current fuse(3.0A),please prepare current source that is enough for cutting current fuse
(larger than 8.0A) or set protection circuit when a trouble happens.
3) Brightness Control (Reference value) 4) Brightness Control (Reference value)
V
BC
(Typ.)
Brightness
PWM (Typ.) Brightness
1.0V 20% 5% 5%
1.3V 30% 10% 10%
1.5V 40% 20% 20%
1.8V 50% 30% 30%
2.0V 60% 40% 40%
2.3V 70% 50% 50%
2.5V 80% 60% 60%
2.8V 90% 70% 70% Above 3.0V 100% 80% 80% VBC is only for the evaluation. 90% 90%
VBC is not covered by warranty.
100% 100%
VBC is recommendable to use more than 1.0V. Display image may look unstable if the on-duty ratio Display image may look unstable if VBC is
is less than 5%.
less than 1.0V.
5)
These signals can’t input at the same time.(Unused pin is to be left open.)
6) PWM pin has inrush current during PWM signal is to be high, this value depends on output impedance of external device. For example, Pulse Generator with 50ohm output impedance has 27mA
PWM input current (I
PWM
) of this LED driver during 50μs.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2606 - TX43D22VC0CAA - 2E Page 6-2/2
4),5)
ON/OFF
mA
PWM
Sh.
No.
Page 11
4. BLOCK DIAGRAM
(1) TFT Module
(2) Back light unit
Japan Display Inc. Date Feb. 08, 2013 3284PS 2607 - TX43D22VC0CAA - 2E Page 7-1/1
Sh.
No.
DC/DC
Converter
TFT-LCD
Drain Driver
LVDS (ODD data)
Timing signals
Display data Control signals
DC power supply
CN1
G1
G2
G1024
D1
D2
D3840
Gate
Driver
ODD pixel
Timing
Converter
EVEN
pixel
LVDS (EVEN data) Display data
Receiver
Receiver
CN2
LED (Series)
LED (Series)
LED (Series)
LED driver
ON/OFF Control
DC power supply
PWM Control
Page 12
5. INTERFACE PIN ASSIGNMENT
5.1 TFT-LCD MODULE
CN1 HIROSE: MDF76GW-30S-1H or Equivalent (Matching connector: JAE FI-X30H or FI-X30M or Equivalent)
Pin No. Symbol Function Note
1 RAIN0- ODD pixel data 2) 2 RAIN0+ 3 RAIN1- ODD pixel data 2) 4 RAIN1+ 5 RAIN2- ODD pixel data 2) 6 RAIN2+ 7 Vss
GND (0V)
1) 8 RACLKIN- ODD pixel data 2) 9 RACLKIN+
10 RAIN3- ODD pixel clock 2) 11 RAIN3+ 12 RBIN0-
EVEN pixel data
2)
13 RBIN0+ 14 Vss
GND (0V)
1)
15 RBIN1-
EVEN pixel data
2)
16 RBIN1+ 17 Vss
GND (0V)
1)
18 RBIN2- EVEN pixel clock 2) 19 RBIN2+ 20 RBCLKIN-
EVEN pixel data
2)
21 RBCLKIN+ 22 RBIN3-
EVEN pixel data
2)
23 RBIN3+ 24 Vss
GND (0V)
1)
25 NC No connection 3) 26 NC No connection 3) 27 NC No connection 3) 28
V
DD
29
V
DD
Power supply (+5.0V) 4)
30
V
DD
Note 1) All Vss pins should be grounded.
2) RnINm+ and RnINm- (n=A,B m=0,1,2,3) should be wired by twist-pairs or side-by-side FPC patterns, respectively.
3) Please keep open.
4) All VDD pins should be connected to +5.0 V(typ.).
5)
Pin assignment is as follows.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2608 - TX43D22VC0CAA - 2E Page 8-1/6
Sh.
No.
1pin
30pin
(Figure from top-view)
Page 13
5.2 BACK-LIGHT UNIT
CN2 : CviLux: CI0112M1HR0-NH or Equivalent
(Matching connector : JST: PHR-12 or CviLux: CI0112S0000 or Equivalent)
Pin No. Symbol
1
V
IN
2
V
IN
3
V
IN
4
V
IN
5 ON/OFF High : Backlight ON, Low : Backlight OFF 6
V
SS
7
V
SS
8
V
BC
Brightness Control Signal
9 PWM PWM Dimming Signal
10 NC No connection 11
V
SS
12
V
SS
Notes 1)
All VIN pins should be connected to +12.0V (Typ.).
2)
All VSS pins should be grounded. The metal bezel is internally connected to GND.
3) High level:2.5 ~ 5.0V, Low level:0 ~ 0.9V
4)
High level:2.5 ~ 5.0V DC, Low level:0 ~ 0.5V DC
5) Input Voltage : 1.0 ~ 3.6V DC VBC is only for the evaluation.VBC is not covered by warranty.
6)
These signals can’t input at the same time.(Unused pin is to be left open.)
7) Please keep open.
8)
Pin assignment is as follows.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2608 - TX43D22VC0CAA - 2E Page 8-2/6
Sh.
No.
Description
Note
Power Supply (typ. 12.0V)
1)
4)
GND (0V)
2)
GND (0V)
2)
5), 6)
3), 6)
7)
12pin 1pin
(Figure from top-view)
Page 14
BLOCK DIAGRAM OF INTERFACE
RA0~7, RB0~7
: R data Receiver: Equivalent of THC63LVDF84B by THine
GA0~7, GB0~7
: G data
BA0~7, BB0~7
: B data
DTMG : Display timing data
Note 1) RSVD (reserved) pins on a transmitter should be connected with Vss.
2)
The system must have a LVDS transmitter to drive a module.
3) The impedance of LVDS cable should be 50 ohms per a signal line or about 100 ohms per a twist-pair line when it is used differentially.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2608 - TX43D22VC0CAA - 2E Page 8-3/6
Sh.
No.
LVDS-to-TTL
Parallel
RAIN0+ RAIN0­RAIN1+ RAIN1­RAIN2+ RAIN2-
PLL
RCLKAIN+
RCLKAIN-
TFT
Parallel-to-LVDS
PLL
Host
Graphics Controller
(Reserved)
System (PC) side TFT module side
CN1
(Reserved)
DTMG
RA0~RA7 GA0~GA7 BA0~BA7
LCD Panel Controller
DTMG
RAIN3-
RAIN3+
LVDS
ODD pixel ODD pixel
RA0~RA7
GA0~GA7
BA0~BA7
1)
TAIN RAOUT
LVDS-to-TTL
Parallel
RBIN0+ RBIN0­RBIN1+ RBIN1­RBIN2+ RBIN2-
PLL
RCLKBIN+
RCLKBIN-
TFT
Parallel-to-LVDS
PLL
(Reserved) (Reserved)
RB0~RB7 GB0~GB7
BB0~BB7
RBIN3-
RBIN3+
LVDS
EVEN pixel EVEN pixel
RB0~RB7
GB0~GB7
BB0~BB7
1)
TBIN RBOUT
(Reserved)
(Reserved) (Reserved) (Reserved)
Page 15
LVDS INTERFACE
Japan Display Inc. Date Feb. 08, 2013 3284PS 2608 - TX43D22VC0CAA - 2E Page 8-4/6
Sh.
No.
RE0 RE1 RE2 RE3 RE4 RE5
RE6 RE7
GE0
GE1 GE2 GE3 GE4 GE5
GE6 GE7
BE0 BE1
BE2 BE3 BE4 BE5
BE6 BE7
(HS) (VS) DTMG
No use
RBin3+/-
RBin2+/-
RBin1+/-
RBin0+/-
Rx1 Rx0 Rx6 Rx5 Rx4 Rx3 Rx2
RO0 RO1 RO2 RO3 RO4 RO5
RO6 RO7
GO0
GO1 GO2 GO3 GO4 GO5
GO6 GO7
BO0 BO1
BO2 BO3 BO4 BO5
BO6 BO7
(HS) (VS) DTMG
No use
RAin3+/-
RAin2+/-
RAin1+/-
RAin0+/-
RACLK IN +/-
8bit Digital
ODD Data
[7:0]
EVEN Data
[7:0]
8 bit x 3 LVDS Interface Format
RBCLK IN +/-
Rx1 Rx0 Rx6 Rx5 Rx4 Rx3 Rx2
Page 16
CORRESPONDENCE BETWEEN INPUT DATA AND DISPLAY IMAGE
ODD pixel:
RA0~RA7 : R data
(1, 1) (1, 2) GA0~GA7 : G data
BA0~BA7 : B data
RA GA BA RB GB BB EVEN pixel: RB0~RB7 : R data
GB0~GB7 : G data BB0~BB7 : B data
Japan Display Inc. Date Feb. 08, 2013 3284PS 2608 - TX43D22VC0CAA - 2E Page 8-5/6
Sh.
No.
2, 1
2, 2
2, 3
2, 1280
1, 1
1, 2
1, 3
1, 1280
1024, 1
1024, 2
1024, 3
1024, 1280
3, 1
3, 2
3, 3
3, 1280
DCLK
RA0~RA7
GA0~GA7
BA0~BA7
1, 3 1, 1 INVALID 1, 5 1, 7
RB0~RB7
GB0~GB7
BB0~BB7
1, 4 1, 2 INVALID 1, 6 1, 8
Page 17
RELATIONSHIP BETWEEN DISPLAY COLORS AND INPUT SIGNALS
Note 1) Definition of gray scale: Color (n)
n indicates gray scale level. Higher n means brighter level.
2) Data signals: 1: High, 0: Low
Japan Display Inc. Date Feb. 08, 2013 3284PS 2608 - TX43D22VC0CAA - 2E Page 8-6/6
Sh.
No.
Input deta R data G data B data
Color MSB LSB MSB LSB MSB LSB
Black
Red (255)
Green (255)
Blue (255)
Cyan
Magenta
Yellow White
Black Red (1) Red (2)
Red (254) Red (255)
Black
Green (1) Green (2)
Green (254) Green (255)
Black
Blue (1) Blue (2)
Blue (254) Blue (255)
BB0
BB5
BB4
BB3
BB2
GB0
BB7
BB6
GB6
GB5
GB4
GB3
GB2
BB1
GA1
RB2
RB1
RB0
GB7
RB7
RB6
RB5
RB4
GB1
RA3
RB3
BA6
BA5
BA4
BA1
BA0
00000
RA7
RA6
RA5
RA4
GA0
BA7
GA2
RA1
RA0
GA7
RA2
GA6
GA5
GA4
0
111111000
0000000000000
0
00000000010000000000000011111100000000000000011111111111111111111111111111000000001111100000011111111101111111111111110000000100000111111111001111000
0
00000
1
0000000000000
0
0000100
000000000
000000000
0000000
0
………………………
…
00000
0
……………
…
…
……………
…
…
…
…………………
…
…
00000
0…000
…
…
000
…
…
…
0000000000000001111110001110000000000000000000000000010000000000000000000000010000000
0
…………………
……………………………
…
………
…
0
………………………
…
…0………
…
00000
00000
11110000011
1
0
1
000000000
0000001111111
0
00000
00000
00000
0
1000000000000
0000000000010
……………
00000
0
………0…
…
010
………
…
0
…………………………………
000
0
GA3
10101
…………………………………
…
…
1
10000000010
01111100000
0
001011000
1
Basic Color
111
1
Green
000
0
…
…
0
0
0
000
0
…
…
1
…
…
0
100…0
1
0
0
001
1
………
Red
111
Blue
0000000
0
…0…
…
…
…
…
…
0000000
0…0
0
0
0
1
0
………
0
0
11000…0
0
BA3
BA2
000
0
…1…
0
0
0
…
…
Page 18
6. INTERFACE TIMING
6.1 LVDS RECEIVER TIMING CHARACTERISTICS
(Regulation with the Input Terminal of the Module)
Item
condition
Unit Remarks
1/t
CLK
40 54 67.5
450
- -
t
SU
570
- -
1000
- -
450
- -
t
HD
570
- -
1000
- -
Japan Display Inc. Date Feb. 08, 2013 3284PS 2609 - TX43D22VC0CAA - 2E Page 9-1/3
Sh.
No.
t
CLK
=18ns
t
CLK
=25ns
RinX
(X=0,1,2)
Set up time
t
CLK
=15ns
ps
-
t
CLK
=18ns
t
CLK
=25ns
Hold time
t
CLK
=15ns
MHz
Symbol
Min.
Typ.
Max.
DCLK frequency
RinX
Rx6
RCLKin
Rx5
Rx4
Rx3
Rx2
Rx1
Rx0
13/14 * t
CLK
t
CLK
Vdiff=0V
RinX=(RinXp)-(RinXn)
(X=0,1,2)
11/14 * t
CLK
9/14 * t
CLK
7/14 * t
CLK
3/14 * t
CLK
1/14 * t
CLK
+100mV
-100mV
t
SU
t
HD
+100mV
-100mV
RCLKin+ RCLKin-
1/14 * t
CLK
3/14 * t
CLK
5/14 * t
CLK
13/14 * t
CLK
11/14 * t
CLK
5/14 * t
CLK
7/14 * t
CLK
9/14 * t
CLK
Solid-line:hold time Dot-line:set up time
Page 19
6.2 Timing Parameters
SIGNAL ITEM
SYMBOL
Min. Typ. Max. Unit Note
Clock Frequency
1/t
CLK
40 — 67.5 MHz —
13.1 16.7 (17.5) msec —
1,027 1,066 (1,270) lines —
Display Period
t
VD
1,024 1,024 1,024 lines —
Vertical Blank
Period
One Line
Scanning Time
Horizontal Active
Display Term
Dimensions in parentheses are reference value.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2609 - TX43D22VC0CAA - 2E Page 9-2/3
Sh.
No.
Vertical Active
Display Term
t
VB
3
—
Frame Frequency
Cycle
t
V
—
lines—Cycle
t
H
812
—
(1,080)
clocks—640
clocks
—
Display Period
t
HD
640
640
T
HD
T
H
T
VD
T
V
T
VB
DTMG
DTMG
D
CLK
t
CLK
Page 20
6.3 TIMING BETWEEN INTERFACE SIGNALS AND POWER SUPPLY
Power supply voltage V
DD
Input signals V
I
Back-light V
IN
Back-light Brighness control signal
(PWM or VBC )
1)
Back-light ON/OFF
Timing of power supply voltage and input signals should be used under
the following specifications.
0ms
TPR
10ms
10ms
TDR
50ms
0ms
TDF
50ms
TIN
1s
TBR
500ms
TBF
100ms
(a)
500ms
(b)
1s
Note 1)
These signals can’t input at the same time.(Unused pin is to be left open.)
VBC is only for the evaluation.VBC is not covered by warranty.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2609 - TX43D22VC0CAA - 2E Page 9-3/3
Sh.
No.
TPR
0.1V
DD
0.9V
DD
0V
TIN
TDR
TDF
0V
valid
0V
TBF
TBR
10.4V
ON
Min. 1ms
0V
0V
Min. 1ms
Min. 1ms Min. 1ms Min. 20ms
Min. 10ms
9.7V
(a)
(b)
Page 21
Note
1) The dimension in parentheses are reference value. Unit: mm
2) The unspecified tolerance: ±0.5mm Scale:NTS
3) Measure the thickness with 9.8×104Pa(1kgf/cm2)pressure.
4) Maximum screwing torque for panel mount : 0.392N・m
Japan Display Inc. Date Feb. 08, 2013 3284PS 2610 - TX43D22VC0CAA - 2E Page 10-1/2
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7. DIMENSIONAL OUTLINE
(1)Front View
Page 22
Unit: mm
Scale:NTS
Japan Display Inc. Date Feb. 08, 2013 3284PS 2610 - TX43D22VC0CAA - 2E Page 10-2/2
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No.
(2)Rear View
Page 23
8. DESIGNATION OF LOT MARK
8.1 LOT MARK
Notes 1) Year Mark 2)
Month
Mark
Month
Mark 3)
Week (Day)
Mark 2012 2 1 01 7 07 1 ~ 7 1 2013 3 2 02 8 08 8 ~ 14 2 2014 4 3 03 9 09 15 ~ 21 3 2015 5 4 04 10 10 22 ~ 28 4 2016 6 5 05 11 11 29 ~ 31 5
6 06 12 12
4) for Japan Display internal use only. 5)
Production management sign
H Made in Japan
T Made in Taiwan
8.2 REVISION (REV.) CONTROL Revision version is denoted by letter A through Z, except I and O, for Japan Display manufacturing convenience.
8.3 LOCATION OF LOT MARK The Lot mark is printed on a label which is attached to the rear bezel, as shown in
7. External Dimensional. The style of character can be changed without prior notice.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2611 - TX43D22VC0CAA - 2E Page 11-1/1
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No.
TX43D22VC0CAA
TX43D22VC0CAA
5 digits for production number
(00001 ~ 99999)
Optional mark 4)
Production location mark 5)
Week 3)
Month 2)
Year 1)
Lot mark
REV.
C U S
Page 24
9. COSMETIC SPECIFICATIONS
9.1 CONDITIONS FOR COSMETIC INSPECTION
(1) Viewing zone
a) The figure shows the correspondence
between eyes (of inspector) and TFT-LCD module.
q < 45°
: when non-operating inspection
q < 5°
: when operating inspection
b) Inspection should be executed only from
front side and only A-zone. Cosmetic of B-zone and C-zone are ignore. (refer to 9.2 DEFINITION OF ZONE)
(2) Environmental
a) Temperature : 25°C b) Ambient light : Sufficient darker condition when operating inspection.
: about 1000 lx and non-directive when non-operating inspection.
c) Back-light : when non-operating inspection, back-light should be off.
9.2 DEFINITION OF ZONE
•A-zone
: Display area (pixel area).
•B-zone
: Area between A-zone and C-zone.
•C-zone
: Metal bezel area.
A-zone
(Include I/F connector)
B-zone
C-zone
Japan Display Inc. Date Feb. 08, 2013 3284PS 2612 - TX43D22VC0CAA - 2E Page 12-1/3
Sh.
No.
TFT-LCD module
Light
Inspection view
q
0
about 300mm
q
Page 25
9.3 COSMETIC SPECIFICATIONS
When displaying condition is not stable (ex. at turn on or off), the following
specifications are not applied.
Max. acceptable number
A-zone
1-dot 0 pcs 1),3)
Operating
1 Dot Defect Sparkle 2-dots 0
inspection
mode 3-dots 0 Units 1),4)
4-dots 0
Density 0
pcs/f15mm 1),5)
Total 0 pcs 1)
1-dot 7 pcs 2),3) Black 2-dots 3 mode 3-dots 0 Units 2),4)
4-dots 0
Density 2
pcs/f15mm 2),5)
Total 7 pcs 2)
Total 7 pcs —
2 Line defect Serious one is 3 Uneven brightness not allowed. 4
Stain inclusion
Line shape
W 0.1 pcs 6)
W: width (mm) L: length (mm)
5
Stain inclusion
D 0.3 Ignore
Dot shape
D 0.4 4 pcs 6)
D: ave. dia. (mm)
0.4 < D 0.5 3
D > 0.5 0
6
Scratch on polarizer
W 0.02 L: Ignore Ignore
Line shape
L 40 8
W: width (mm)
L > 40 0 pcs 7)
L 10 8
L > 10 0
L: length (mm)
W > 0.1 — 0
7
Scratch on polarizer
D 0.2 Ignore
Dot shape
D 0.6 8 pcs 7)
D: ave. dia. (mm)
D > 0.6 0
Japan Display Inc. Date Feb. 08, 2013 3284PS 2612 - TX43D22VC0CAA - 2E Page 12-2/3
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No.
No.
Item
Unit
Note
L 1.0
0
W 0.04
W 0.1
—
—
L < 1.0
3
Page 26
Max. acceptable number
A-zone
non-
8
Bubbles, peeling
D 0.3 Ignore
operating
in polarizer
D 0.5 8 pcs 7)
inspection
D: ave. dia. (mm)
D 1.0 4
D > 1.0 0
9
Wrinkles on polarizer
Serious one is
not allowed.
Notes 1)
Sparkle mode : brightness of dot is more than 30% at black. (W,R,G,B≧147DDL)
(visible to eye)
2) Black mode: brightness of dot is less than 70% at white. (visible to eye)
3) 1 dot: defect dot is isolated, not attached to other defect dot.
4)
N dots: N defect dots are consecutive. (N means the number of defects dots)
5)
Density: number of defect dots inside 15mm f.
6) Those stains which can be wiped out easily are acceptable.
7) Polarizer area inside of B-zone is not applied.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2612 - TX43D22VC0CAA - 2E Page 12-3/3
Sh.
No.
—
—
No.
Item
Unit
Note
Page 27
10. PRECAUTION
Please pay attention to the followings when a TFT module with a back-light unit is used, handled and mounted.
10.1 PRECAUTION TO HANDLING AND MOUNTING
(1) Applying strong force to a part of the module may cause partial deformation of frame or mold,
and cause damage to the display.
(2) The module should gently and firmly be held by both hands. Never hold by just one hand in order
to avoid any internal damage. Never drop or hit the module. Never press the glass surface.
(3) The module should be installed with mounting holes of a module. Usage style of this product is
limited to landscape mode.
(4) Uneven force such as twisted stress should not be applied to a module when a module is mounted
on the cover case. The cover case must have sufficient strength so that external force can not be
transmitted directly to a module.
(5) It is recommended to leave about 1mm space between a module and a cover case so that partial
force is not applied to a module.
(6) The edge of a cover case should be located inside more than 1mm from the edge of a module front
frame.
(7) A transparent protective plate should be added to the front of the display in order to protect both
the polarizer and TFT cell. The transparent protective plate should have sufficient strength such that the plate can not be deformed, due to external forces, and touch the module.
(8) Materials containing acetic acid and chlorine should not be used for the cover case nor for
other parts which are positioned in close proximity to the module. This is because the Acetic acid damage the polarizer, whilst the chlorine will attack the electric circuits by way of
electro-chemical reaction.
(9) The front polarizer on the TFT cell should be handled carefully, due to its softness, and must not
be touched, pushed or rubbed with glass, tweezers or anything harder than an HB pencil lead.
The surface of the polarizer should not be touched nor rubbed with bare hands, greasy or dusty clothes.
(10) If the surface of the polarizer becomes dirty it should be gently wiped using an absorbent cotton
(Traysee CC clean cloth), chamois or other soft material, slightly dampened with petroleum benzene. IPA (isopropyl alcohol) is recommended to clean away the traces of adhesive which is
used to attach the front/rear polarizers to the TFT cell. Other cleaning chemicals such as acetone, toluene and alcohol should not be used to clean adhesives because they cause chemical damage to
the polarizer.
(11) Saliva or water drops should be immediately wiped off. Otherwise, the portion of a polarizer may
become deformed and its color may fade.
Japan Display Inc. Date Feb. 08, 2013 3284PS 2613 - TX43D22VC0CAA - 2E Page 13-1/3
Sh.
No.
Edge of
Fig.1 Cross sectional view of a monitor set
Cover case
B-zone
(1.0) mm
TFT module
Polarizer
cover case
Effective display area
Page 28
(12) The module should not be opened or modified. It may not work properly when module is modified.
If the module is once opened or modified, warranty of the module becomes invalid and Japan Display doesn't guarantee its quality and reliability.
(13)
The metallic bezel of the module should not be handled with bare hand or dirty gloves.
Otherwise, the color of the metallic frame may become dirty during its storage.
It's recommended to use clean soft gloves and clean finger stalls whilst the module is
handled at incoming inspection process and production assembly process.
(14) During transportation, do not place LCD module at face down or face up.
Because strong shock may cause functional failure at above condition.
10.2 PRECAUTION TO OPERATION
(1) The ambient temperature near the operated module should be satisfied with the absolute
maximum ratings. Unless it meets the specifications, sufficient cooling system should be
adopted to system.
(2) The spike noise causes this module a mis-operation. The level of spike noise
should be as follows: -200mV over- and under- shoot of VDD +200mV
VDD including over- and under- shoot should not exceed the absolute maximum ratings.
(3) Optical response time, luminance and chromaticity depend on the temperature of the TFT
module. Optical response time becomes longer at lower temperature operation.
(4) Sudden temperature changes may cause dew on and/or in the a module. Dew can cause
damage to the polarizer and/or electrical contacting areas of the module. Dew causes deterioration of display quality.
(5) Fixed pattern on display for a long time may cause after-image. It may take long time to recover. (6) This module has high frequency circuits. Sufficient suppression to electromagnetic interference
should be done by system manufacturers. Grounding and shielding methods may be effective to
minimize such interference.
(7) Noise may be heard when a back-light is operated. If necessary, sufficient suppression should be
done by the system manufacturers. (8) The module should not be connected or removed while a main system works. (9) Connecting or disconnecting the I/F cables, whilst the power and data signals are present, could
result in permanent damage to the module. The I/F connectors should only be connected and
disconnected after the power supply and data signal have been turned off.
10.3 ELECTROSTATIC DISCHARGE CONTROL
(1) This module consists of a TFT cell and electronic circuits with CMOS-ICs, which are very
susceptible to electrostatic discharge. Persons who are handling the module should be
grounded through adequate methods such as a wrist band. I/F connector pins should not
be touched directly with bare hands.
(2) The polarizer protective film should be removed slowly so as to avoid an excessive build-up
of electrostatic charge.
10.4 PRECAUTION TO STRONG LIGHT EXPOSURE
(1) The module should not be exposed to strong light. Otherwise, characteristics of a polarizer
and color filter may be degraded.
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Page 29
10.5 PRECAUTION OF STORAGE, PACKAGE AND TRANSPORTATION When modules such as service purposes, are stored for a long time, following precautions should be taken care of :
(1) Modules should be stored in a dark place. It is prohibited to apply direct sunlight or
fluorescent light during storage. Modules should be stored between 5 to 35°C at normal humidity (60%RH or less).
(2) The surface of polarizer should not come into direct contact with any other object.
It's recommended that modules should be stored in the original Japan Display's shipping box.
10.6 PRECAUTION OF HANDLING PROTECTION FILM
(1) The protection film for polarizer should be peeled off slowly and carefully by person who is
electrically grounded with adequate methods such as wristbands. Besides, ionized air should be blown over the module during peeling process. Dusts on a polarizer should be blown off using an ionized nitrogen gun and so on.
10.7 SAFETY
(1) Since the TFT cell is made of glass, handling of any broken module should be
carried out with the utmost care so as to avoid any injury. Hands which have come into direct contact with liquid crystal material should be washed immediately and thoroughly.
(2) The module should not be taken apart during operation so that back-light drives by high voltage.
10.8 ENVIRONMENTAL PROTECTION
(1) Flexible circuits board and printed circuits board used in a module contain small amount of lead.
Please follow local ordinance or regulations for its disposal.
10.9 USE RESTRICTIONS AND LIMITATIONS
(1) This product is not authorized for use in life support devices or systems, military applications
or other applications which pose a significant risk of personal injury.
(2)
In no event shall Japan Display be liable for any incidental, indirect or consequential
damages in connection with the installation or use of this product, even if informed of the possibility there of in advance. These limitations apply to all causes action in the aggregate, including without limitation breach of contact, breach of warranty, negligence, strict liability, misrepresentation and other torts.
10.10 OTHERS
(1) Electrical components which may not affect electrical performance are subject to change
without prior notice due to an unforeseen change in their availability.
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