CSOT MT4601B02-2 Specification

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MODEL: MT4601B02-2
Ver. 1.1 Date: 18.Jun.2012
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MT4601B02-2 Product Specification
Customer’s Approval CSOT
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Signature:
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Approved By Product Director
Reviewed By PM Manager
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Date
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MT4601B02-2 Product Specification
Contents
Revision History ................................................................................................................................................4
1. General Description .......................................................................................................................................5
1.1 Product Features ..................................................................................................................................5
1.2 Overview..............................................................................................................................................5
1.3 General Information.............................................................................................................................5
2. Absolute Maximum Ratings ..........................................................................................................................6
2.1 Absolute Maximum Ratings (Ta = 25 ± 2 °C).....................................................................................6
2.2 Environment Requirement...................................................................................................................6
2.3 Package Storage...................................................................................................................................7
3. Electrical Specification ..................................................................................................................................8
3.1 Electrical Characteristics .....................................................................................................................8
3.1.1 Power Consumption (Ta = 25 ± 2 ºC).......................................................................................8
3.1.2 LVDS Characteristics................................................................................................................9
3.2 Backlight Converter Unit...................................................................................................................10
3.2.1 LED Converter Electrical Characteristics (Ta = 25 ± 2 ºC)....................................................10
3.2.2 LED Converter Power Sequence ............................................................................................ 11
4. Electrical Block Diagram.............................................................................................................................12
5. Input Terminal Pin Assignment ...................................................................................................................13
5.1 TFT LCD Module..............................................................................................................................13
5.2 Converter Unit ...................................................................................................................................16
5.2.1 Converter Input Connector Pin Definition..............................................................................16
5.3 Block Diagram of Interface ...............................................................................................................17
5.4 LVDS Interface ..................................................................................................................................17
5.4.1 NS Format (SELLVDS = H)...................................................................................................17
5.4.2 JEIDA Format (SELLVDS = L or Open)................................................................................18
5.5 Color Data Input Assignment ............................................................................................................19
6. Interface Timing...........................................................................................................................................20
6.1 Timing Table (DE Only Mode)..........................................................................................................20
6.2 Power On/Off Sequence ....................................................................................................................22
6.2.1 Power On/Off Sequence .........................................................................................................22
7. Optical Characteristics.................................................................................................................................24
7.1 Measurement Conditions ...................................................................................................................24
7.2 Optical Specifications ........................................................................................................................25
8. Mechanical Characteristics ..........................................................................................................................30
8.1 Mechanical Specification...................................................................................................................30
8.2 Packing...............................................................................................................................................32
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MT4601B02-2 Product Specification
8.2.1 Packing Specifications............................................................................................................32
8.2.2 Packing Method ......................................................................................................................32
9. Definition of Labels .....................................................................................................................................34
9.1 Module Label.....................................................................................................................................34
9.2 Carton Label ......................................................................................................................................34
9.3 Pallet Label ........................................................................................................................................35
10. Precautions.................................................................................................................................................36
10.1 Assembly and Handling Precautions ...............................................................................................36
10.2 Safety Precautions............................................................................................................................36
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MT4601B02-2 Product Specification
Revision History
Ve r si o n Date Page (New) Section Description Revision by
Ver. 0.1 26.Apr.2012 36 10
Ver. 1.1 18.Jun.2012 36 10
Tentative Specification was First Issued. Wu Chenguo
Updated Optical Characteristics Wu Chenguo
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1. General Description
1.1 Product Features
- FHD Resolution (1920 x 1080)
- High Brightness: 400 cd/m²
- Very High Contrast Ratio: 4000:1
- Fast Response Time
- High Color Saturation: 72% NTSC
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MT4601B02-2 Product Specification
- Ultra Wide Viewing Angle: 178° (H)/178° (V) (CR
- Low Power Consumption: Typ. 76.7 W
- DE (Data Enable) Mode
- LVDS (Low Voltage Differential Signaling) Interface
10)
1.2 Overview
MT4601B02-2 is a diagonal 46.0” color active matrix LCD module with edge LED backlight and 4ch-LVDS interface.
This module is a transmissive type display operating in the normally black mode. It supports 1920 x 1080 FHD resolution and
can display up to 1073.7M colors (8bit+FRC). Each pixel is divided into Red, Green and Blue sub-pixels which are arranged
in vertical stripe. The converter of backlight is built-in.
This module dedicates for LCD TV products and provides excellent performance which includes high brightness, ultra
wide viewing angle, high color saturation and high color depth.
1.3 General Information
Item Specification Unit Note
Active Area 1018.08 (H) x 572.67 (V) mm
Bezel Opening Area 1024.9 (H) x 579.3 (V) mm
Outline Dimension 1054.9 (H) x 610.8(V) x 10.8 (D) mm D: From Bezel to Rear
Weight 9.5 kg Max.
Driving Scheme a-Si TFT Active Matrix -
Number of Pixels 1920 x 1080 pixel
Pixel Pitch (Sub Pixel) 0.17675 (H) x 0.53025 (V) mm
Pixel Arrangement RGB Vertical Stripe -
Display Colors 1073.7 M color 8bit+FRC
Display Mode Transmissive Mode, Normally Black -
Surface Treatment Anti-glare, Haze 2%,Hard Coating (3H) -
Luminance of White 400 cd/m² Center Point, Typ.
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2. Absolute Maximum Ratings
2.1 Absolute Maximum Ratings (Ta = 25 ± 2 °C)
The followings are maximum values which, if exceeded, may cause damage to the unit.
Item Symbol
MT4601B02-2 Product Specification
Va lu e
Unit
Min. Max.
Power Supply Voltage V
Input Signal Voltage V
V
Light Bar Voltage
V
Converter Input Voltage V
CC
IN
W(2D)
W(3D)
BL
- 0.3 13.8 V
-0.3 3.6 V
45.8 53.4 V
51 60
030V
Control Signal Level - -0.3 3.6 V
2.2 Environment Requirement
(1) Temperature and relative humidity range are shown as below.
Relative Humidity (%RH)
100
90
80
60
40
39 ºC, 90%
Operating Range
RMS
20
Storage Range
10
-40
-20
0
20
40
60
80
Temperature (ºC)
(a) 90%RH maximum (Ta  39 ºC).
(b) Wet-bulb temperature should be 39 ºC maximum (Ta > 39 ºC).
(c) No condensation.
(2) The storage temperature is between - 20 ºC to 60 ºC, and the operating ambient temperature is between 0 ºC to 50 ºC.
The maximum operating temperature is based on the test condition that the surface temperature of display area is less than
or equal to 65 ºC with LCD module in a temperature controlled chamber alone. Thermal management should be considered
in final product design to prevent the surface temperature of display area from being over 65 ºC. The range of operating
temperature may degrade in case of improper thermal management in the end product design.
(3) The TFT module including glass should be avoided any shock or vibration.
While testing shock and vibration, the fixture holding the module should be assured to be hard and rigid enough to prevent
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the module twisted or bent by the fixture. The test conditions should be less than:
Shock (Non-operating): 35 G, 11 ms, half sine wave, 1 time for ± X, ± Y, ± Z.
Vibration (Non-operating): Random 1.0 Grms, 10 ~ 200 Hz, 10 min, 1 time for each X, Y, Z.
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MT4601B02-2 Product Specification
2.3 Package Storage
When storing modules as spares for a long time, please follow the precaution instructions:
(1) Do not store the module in high temperature and high humidity for a long time. It is highly recommended to store the
module with temperature from 0 ºC to 35 ºC in normal humidity.
(2) The module shall be stored in a dark area and avoided to be exposed in direct sunlight or fluorescent light.
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3. Electrical Specification
3.1 Electrical Characteristics
3.1.1 Power Consumption (Ta = 25 ± 2 ºC)
Parameter Symbol
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MT4601B02-2 Product Specification
Va lu e
Unit Note
Min. Typ. Max.
Power Supply Voltage V
Rush Current I
White Pattern I
Power Supply
Horizontal Stripe I
Current
Black Pattern I
Note:
(1) The ripple voltage should be controlled less than 10% of V
(2) Measurement condition: V
rising time = 470 ȝV.
CC
VCCx0.1
GND
470 ȝV
Fig. 3.1 VCCrising time condition
CC
RUSH
CC
CC
CC
.
CC
VCCx0.9
10.8 12.0 13.2 V (1)
--2.3A(2)
- 0.39 0.5 A
- 0.91 1.2 A
- 0.37 0.5 A
V
CC
(3)
(3) Measurement condition: V
A.White Pattern B.Horizontal Pattern
C. Black Pattern
= 12 V, Ta = 25 ± 2 ºC, F = 120 Hz. The test patterns are shown as below.
CC
Fig. 3.2 Test patterns
Ńġ
ňġ
œġ
œġ
ňġ ňġ
Ńġ
œġ
œġ œġ
ňġ
ňġ
Ńġ
Ńġ
œġ
œġ
œġ
ňġ
ňġ
ň
Ńġ
Ńġ
Ńġ
Ńġ
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3.1.2 LVDS Characteristics
Parameter
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Symbol
Min. Typ. Max.
MT4601B02-2 Product Specification
Va lu e
Unit Note
Differential Input High Threshold Voltage
Differential Input Low Threshold Voltage
LVDS Interface
Common Input Voltage V
Differential Input Voltage |VID| 200 400 600 mV
Terminating Resistor R
Input High Threshold Voltage V
CMOS Interface
Input Low Threshold Voltage V
Note:
(1) The LVDS input signal has been defined as follows:
V
CM
V
TH
V
TL
CM
T
IH
IL
+ 100 - - mV
- - - 100 mV
1.0 1.2 1.4 V
80 100 120 ohm
2.7 - V
-0.7V
V
TH
V
TL
|VID|
(1)
GND
Fig. 3.3 LVDS input signal
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3.2 Backlight Converter Unit
3.2.1 LED Converter Electrical Characteristics (Ta = 25 ± 2 ºC)
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MT4601B02-2 Product Specification
Parameter Symbol
P
Power Consumption
P
Input Voltage V
I
BL(2D)
Input Current
I
BL(3D)
I
RS (2D)
Input Inrush Current
I
RS (3D)
On
On/Off Control Voltage
V
Off 0.0 - 0.8 V
On/Off Control Current
-I
Max.
PWM Dimming Control Voltage
V
Min. 0.0 - 0.8 V
External PWM Control Current
I
BL(2D)
BL(3D)
BL
BLON
BLON
PDIM
P-DIM
Va lu e
Unit Note
Min. Typ. Max.
-72-W
-34 W
att
att
22.8 24.0 25.2 V
-3
-1.41
-5.23
-8.3
A
A(2)
A Vbl=22.8V
A Vbl=22.8V
2.5 - 5.0 V
--1.5mA
2.5 - 3.3
V
--2mA
(1),
(2)
(1),
PWM Dimming Frequency F
Dimming Duty Ratio D
DET HI Open Collector
DET Status Signal
DET Low 0 0.8 V
Input Impedance R
Note:
(1) Dimming ratio = 100% (Max.) (T
(2) T
= 25 ± 5 ºC, Turn on for 45minutes
A
= 25 ± 5 ºC, Turn on for 45minutes)
A
PWM
DIM
IN
160 180 200 Hz
10
-
100 %
200 Kohm
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MT4601B02-2 Product Specification
3.2.2 LED Converter Power Sequence
No ITEM SYMBOL MIN. TYP. MAX. UNIT Remark
1VBLRising Time T
2VBLFalling Time Time T
3V
4V
5VBL to V
Rising Time T
BLON
Falling Time T
BLON
Delay Time T
P_DIM
6 BLON Delay Time T
7 BLON Off Time T
8V
Off Time T
P_DIM
r
f
r1
f1
1
2
3
4
20 炼炼ms
20 炼炼ms
炼炼100 ms
炼炼100 ms
500 炼炼ms
250 炼炼ms
0
250
炼炼
炼炼
ms
ms
See Fig.3.5
Fig. 3.4 The Power Sequence of V
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, VP_Dim and V
BL
BLON
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4. Electrical Block Diagram
Input Connector
Data
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MT4601B02-2 Product Specification
Scan Driver
V
CC
Control Board
VBL×5
GND×5
DET
BLON
1D Dimming/Scanning
Converter Connector
Timing
Controller
DC/DC
Converter
GAMMA
Voltage
LED
TFT LCD Panel
(1920 x 3 x 1080)
Data Driver
Lightbar Connector
Backlight
Unit
P_DIM
Converter
Converter Board
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5. Input Terminal Pin Assignment
5.1 TFT LCD Module
CN3: 300C51-0000RA-G(STARCONN)or equivalent (see Note (1))
Pin No. Symbol Description Note
MT4601B02-2 Product Specification
1
2
3
4
5
6 SEL_LVDS LVDS Data Format Selection (2)
7 GND Ground
8 GND Ground
9 GND Ground
10
11
12
13
14
15
16 GND
Vdd˄12˅
Vdd˄12˅
Vdd˄12˅
Vdd˄12˅
Vdd˄12˅
Rx2˷0˹N
Rx2˷0˹P
Rx2˷1˹N
Rx2˷1˹P
Rx2˷2˹N
Rx2˷2˹P
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
17 Rx2CLK-
18 Rx2CLK+
19 GND
20
21
22
23
24 GND
25
26
27
28
29
30
31 GND
32 Rx4CLK-
Rx2˷3˹N
Rx2˷3˹P
Rx2˷4˹N
Rx2˷4˹P
Rx4˷0˹N
Rx4˷0˹P
Rx4˷1˹N
Rx4˷1˹P
Rx4˷2˹N
Rx4˷2˹P
EVEN LVDS SIGNAL
33 Rx4CLK+ EVEN LVDS SIGNAL
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34 GND
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MT4601B02-2 Product Specification
35
36
37
38
39 GND Ground
40 NC No Connection (3)
41 NC No Connection (3)
42 3D_EN signal
43 NC No Connection (3)
44 NC No Connection (3)
45 GND Ground
46 NC No Connection (3)
47 NC No Connection (3)
48 3D_SYNC_I Shutter glass Sync input signal
49 3D_SYNC_O Shutter glass Sync Signal
50 NC No Connection (3)
Rx4˷3˹N
Rx4˷3˹P
Rx4˷4˹N
Rx4˷4˹P
3D Enable signalˈH for 3D modeˈL for 2D mode
51 NC No Connection (3)
CN2: 300C41-0000RA-G4 (STARCONN) or equivalent (see Note (1))
Pin No. Symbol Description Note
1
2
3
4
5
6 NC No Connection (3)
7 GND Ground
8 GND Ground
9 GND Ground (2)
10
11
12
13
Vdd˄12˅
Vdd˄12˅
Vdd˄12˅
Vdd˄12˅
Vdd˄12˅
Rx1˷0˹N
Rx1˷0˹P
Rx1˷1˹N
Rx1˷1˹P
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
Power Supply, + 12 V DC Regulated
ODD LVDS SIGNAL
14
15
16 GND
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Rx1˷2˹N
Rx1˷2˹P
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17 Rx1CLK-
18 Rx1CLK+
19 GND
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MT4601B02-2 Product Specification
20
21
22
23
24 GND
25
26
27
28
29
30
31 GND
32 Rx3CLK-
33 Rx3CLK+
34 GND
35
Rx1˷3˹N
Rx1˷3˹P
Rx1˷4˹N
Rx1˷4˹P
Rx3˷0˹N
Rx3˷0˹P
Rx3˷1˹N
Rx3˷1˹P
Rx3˷2˹N
Rx3˷2˹P
Rx3˷3˹N
ODD LVDS SIGNAL
36
37
38
39 GND Ground
40 NC No Connection (3)
41 NC No Connection (3)
Note:
(1) The direction of pin assignment is shown as below:
Rx3˷3˹P
Rx3˷4˹N
Rx3˷4˹N
#1
#51
#1
#41
(2)
(3)
(4)
CN3 CN3
#1 #51
Fig. 5.1 LVDS connector direction sketch map
#1 #41
CN2 CN2
(2) High: connect to + 3.3 V ė NSformat; Low: connect to GND or Open ė JEIDA format.
(3) For CSOT internal only, please let it open.
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5.2 Converter Unit
5.2.1 Converter Input Connector Pin Definition
CN1: CI1114M1HR0-NH (Cvilux) or equivalent (see 5.2 Note (1))
Pin No. Symbol Feature
1
2
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MT4601B02-2 Product Specification
10
11
12
13
14
Note (1):
3
4
5
6
7
8
9
V
BL
GND GND
DET Normal (0 ~ 0.8 V), Abnormal (Open Collector)
BLON BLON/OFF, BLON Floating: BLU ON
NC NC
P_DIM PWM Dimming Control (Open for 100%)
Power Supply, + 24 V DC Regulated
#1
CN1
CN1
#1
Fig. 5.2 Power input connector direction sketch map
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#14
#14
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5.3 Block Diagram of Interface
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MT4601B02-2 Product Specification
LV 1N 0
LV 1P 0
LV 1N 1
LV 1P 1
LV 1N 2
LV 1P 2
LV CK 1N
LV CK 1P
LV 1N 3
LV 1P 3
Connector
Fig. 5.3
Block diagram of interface
Timing Controller
100ȍ
100ȍ
100ȍ
100ȍ
100ȍ
Attention:
(1) LCD module uses a 100 ohms (ȍ) resistor between positive and negative lines of each receiver input.
(2) LVDS cable impedance shall be 50 ohms per signal line or about 100 ohms per twist-pair line respectively.
5.4 LVDS Interface
5.4.1 NS Format (SELLVDS = H)
RCLK1P/ RCLK2P
RA1P/ RA2P
RB1P/ RB2P
RC1P/ RC2P
RD1P/ RD2P
RE1P/ RE2P
G0 R5 R4 R3 R2 R1 R0
B1 B0 G5 G4 G3 G2 G1
DE VS HS B5 B4 B3 B2
NA B7 B6 G7 G6 R7 R6
NA B9 B8 G9 G8 R9 R8
Fig. 5.4 NS format
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5.4.2 JEIDA Format (SELLVDS = L or Open)
RCLK1P / RCLK2P
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MT4601B02-2 Product Specification
RA1P/ RA2P
RB1P/ RB2P
RC1P/ RC2P
RD1P/ RD2P
RE1P/ RE2P
G4 R9 R8 R7 R6 R5 R4
B5 B4 G9 G8 G7 G6 G5
DE VS HS B9 B8 B7 B6
NA B3 B2 G3 G2 R3 R2
NA B1 B0 G1 G0 R1 R0
Fig. 5.5 JEIDA format
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5.5 Color Data Input Assignment
The brightness of each primary color is based on the 10-bit gray scale data input for each color. The higher the binary
input, the brighter the color. The table below provides the assignment of the color versus.
Data Signal
MT4601B02-2 Product Specification
Data Input Color
Basic Colors
Gray Scale of Red
Red Green Blue
MSB LSB MSB LSB MSB LSB
R9 R8 R7 R6 R5 R4 R3 R2 R1 R0 G9 G8 G7 G6 G5 G4 G3 G2 G1 G0 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0
Black 000000000000000000000000000000
Red(1023) 111111111100000000000000000000
Green(1023)000000000011111111110000000000
Blue(1023) 000000000000000000001111111111
Cyan 000000000011111111111111111111
Magenta 111111111100000000001111111111
Yellow 1 1 1 1 1 1 1 1 1 1 11111111110000000000
White 111111111111111111111111111111
Red(000) 000000000000000000000000000000
Red(001) 000000000100000000000000000000
:
:
Red(1022) 111111111000000000000000000000
:::::::::::::::::::::::::::::::::::::::::::::::::::::::::::
:
Red(1023) 111111111100000000000000000000
Green(000) 000000000000000000000000000000
Green(001) 000000000000000000010000000000
Gray Scale of Green
:
:
Green(1022)000000000011111111100000000000
Green(1023)000000000011111111110000000000
Blue(000) 000000000000000000000000000000
Blue(001) 000000000000000000000000000001
:
Gray Scale of Blue
:
Blue(1022) 000000000000000000001111111110
Blue(1023) 000000000000000000001111111111
:::::::::::::::::::::::::::::::::::::::::::::::::::::::::::
:::::::::::::::::::::::::::::::::::::::::::::::::::::::::::
Attention:
0: Low level voltage; 1: High level voltage.
:
:
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6. Interface Timing
6.1 Timing Table (DE Only Mode)
Signal Item Symbol Min. Typ. Max. Unit Note
LVDS Clock Frequency
Frame Rate F - 120 - Hz
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F
CLK
(= 1 / T
CLK
64.80 74.25 80.74 MHz
)
MT4601B02-2 Product Specification
Vertical
Ter m
Tot al T
Display T
Blank T
Tot al T
V
VD
VB
H
1092 1125 1392 T
1080
12 45 312 T
540 570 580 T
TV=TVD+T
H
T
H
H
CLKTH=THD+THB
Horizontal
Ter m
Display T
Blank T
HD
HB
480
60 90 100 T
T
CLK
CLK
Attention:
(1) The module is operated in DE only mode, H sync and V sync input signal have no effect on normal operation.
T
V
T
VD
T
VB
DE
T
H
VB
DCLK
T
CLK
T
HB
T
HD
DE
DATA
Valid Display Data
Fig. 6.1 Interface signal timing diagram
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(2) The input clock cycle-to-cycle is defined as below figures.
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MT4601B02-2 Product Specification
T
jitter
T1=Tf200ps
T2=T1f200ps
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6.2 Power On/Off Sequence
6.2.1 Power On/Off Sequence
To prevent a latch-up or DC operation of LCD module, the power on/off sequence should be as the diagram below.
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MT4601B02-2 Product Specification
0.9 V
CC
V
CC
LV D S
Signals
0V
0V
Power On
T7 T8
Option Signals
(SELLVDS, 2D/3D L/R, LD_EN, SCN_EN)
V
BL
T1
T2
Valid Data
50%
50%
T3
0.9 V
CC
0.1 V
CC
T4
Power Off
T5
T6
Fig. 6.2 Power on/off sequence
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MT4601B02-2 Product Specification
6.2.2 2D/3D Change Signal Sequence without Vcc Turn off and Turn on
0.9 V
CC
0.1 V
CC
V
CC
0V
T1
T2
LV D S S ig na l s
0V
Power On
T7
T9
2D/3D
Va lu e s
Parameter
Unit
Min. Typ. Max.
T1 0.5 - 10.0 ms
T2 0.0 - - ms
T3 0.0 - - ms
T4 1000.0 - - ms
T5 500.0 - - ms
T6 100.0 - - ms
T7 - - T2 ms
T8 - - T3 ms
T9 0.0 - 10.0 ms
Attention:
(1) The supply voltage of the external system for the module input should follow the definition of V
CC
.
(2) Apply the lightbar voltage within the LCD operation range. When the backlight turns on before the LCD operation or the
LCD turns off before the backlight turns off, the display may momentarily become abnormal screen.
(3) In case that V
is in off level, please keep the level of input signals on the low or high impedance. If T2 < 0, that may
CC
cause electrical overstress.
(4) T4 should be measured after the module has been fully discharged between power off and on period.
(5) Interface signal shall not be kept at high impedance when the power is on.
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7. Optical Characteristics
7.1 Measurement Conditions
The table below is the test condition of optical measurement.
Item Symbol Value Unit
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MT4601B02-2 Product Specification
Ambient Temperature T
Ambient Humidity H
Supply Voltage V
CC
A
A
25 r 2
50 r 10
12 V
ºC
%RH
Driving Signal Refer to the typical value in Chapter 3: Electrical Specification
Light Source Current (Each Unit) I
Vertical Refresh Rate F
L
R
84 mA
120 Hz
To avoid abrupt temperature change during optical measurement, it’s suggested to warm up the LCD module more than 60
minutes after lighting the backlight and in the windless environment.
To measure the LCD module, it is suggested to set up the standard measurement system as Fig. 7.1. The measuring area S
should contain at least 500 pixels of the LCD module as illustrated in Fig. 7.2 (A means the area allocated to one pixel). In this
model, for example, the minimum measuring distance Z is 370 mm when T is 2 degree. Hence, 500 mm is the typical
measuring distance. This measuring condition is referred to 301-2H of VESA FPDM 2.0 about viewing distance, angle, and
angular field of view definition.
T
6 ʌUð
Z
For Square
T
r
Z
Fig. 7.1 The standard set-up system of measurement Fig. 7.2 The area S contains at least 500 pixels to be measured
S
N =
ı 500 pixels
A
N means the actual number of the pixels in the area S.
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7.2 Optical Specifications
The table below of optical characteristics is measured by MINOLTA CS2000, MINOLTA CA310, ELDIM OPTI
Scope-SA and ELDIM EZContrast in dark room.
Item Symbol Condition Min. Typ. Max. Unit Note
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MT4601B02-2 Product Specification
Static Contrast Ratio CR
- 4000 - - (1) (2)
(3) OPTI
Response Time T
L
L
W-2D
-6.5-ms Scope-SA
320 400 - cd/m2(2) (4)
Center Luminance
L
W -3D
-50- -(8)
3D Crosstalk CT-3D - 4% - - (8)
Uniformity of White Screen - 75 - - % (2) (5)
R
X
Red
R
Y
G
X
=0q, TV=0q
T
H
Normal direction at
center point of the
LCD module.
0.640
0.337
0.325
-
-
-
Green
Color
Chromaticity
(CIE1931)
Blue
G
W
Y
B
X
B
Y
X
Typ.
-0.03
0.625
0.154
Typ.
+0.03
0.055
0.280 -
­(2) (6)
-
-
White
W
Y
0.290 -
Color Gamut CG - 72 - % NTSC
-89-
-
-
-
89
89
89
-
-
-
Deg.
(7)
ELDIM
EZContrast
Viewing Angle
Horizontal
Vertical
T
H+
T
H-
CR t 10
T
V+
T
V-
Note:
(1) Definition of static contrast ratio (CR):
It’s necessary to switch off all the dynamic and dimming function when measuring the static contrast ratio.
CR-W
Static Contrast Ratio (CR) =
CR-D
CR-W is the luminance measured by LMD (light-measuring device) at the center point of the LCD module with
full-screen displaying white. The standard setup of measurement is illustrated in Fig. 7.3; CR-D is the luminance measured
by LMD at the center point of the LCD module with full-screen displaying black.
(2) The LMD in the item could be a spectroradiometer such as (KONICA MINOLTA) CS2000, CS1000, (TOPCON) SR-UL2
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or the same level spectroradiometer. Other display color analyzer (KONICA MINOLTA) CA210, CA310 or (TOPCON)
BM-7 could be involved after being calibrated with a spectroradiometer on each stage of a product.
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MT4601B02-2 Product Specification
Black & White
LMD
LCD Module
Fig. 7.3 The standard setup of CR measurement
(3) Response time T
time matrix in which each element t
luminance ratios among 0%, 25%, 50%, 75%, and 100% luminance. The transition time t
is defined as the average transition time in the response time matrix. The table below is the response
L
is the transition time from luminance ratio X to Y. X and Y are two different
X to Y
is defined as the time taken
X to Y
from 10% to 90% of the luminance difference between X and Y (X < Y) as illustrated in Fig.3. When X > Y, the definition
of t
on refresh rate F
Luminance
Ratio of
Current Frame
t
X to Y
is the time taken from 90% to 10% of the luminance difference between X and Y. The response time is optimized
X to Y
= 60Hz.
R
Measured
Transition Time
100% t
0% 25% 50% 75% 100%
0% t
25% t
50% t
75% t
0% to 25%
0% to 50%
0% to 75%
0% to 100%
Luminance Ratio of Previous Frame
25% to 0%
t
25% to 50%
t
25% to 75%
t
25% to 100%
t
50% to 0%
t
50% to 25%
t
50% to 75%
t
50% to 100%
t
75% to 0%
t
75% to 25%
t
75% to 50%
t
75% to 100%
t
t
t
t
means the transition time from luminance ratio X to Y.
100% to 0%
100% to 25%
100% to 50%
100% to 75%
Luminance
Luminance
t
t
X to Y
100%
100%
90%
90%
Xto Y
Y: 0%, 25%, 50%, 75%, 100%
Y: 0%, 25% 50%, 75%, 100%
Brighter state
Brighter State
Darker State
10%
10%
Darker state
0%
0%
X: 0%, 25% 50%, 75%, 100%
X: 0%
25%,50%,75%,100%
Fig. 7.4 The definition of t
X to Y
Time
Time
All the transition time is measured at the center point of the LCD module by ELDIM OPTI Scope-SA.
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(1)
(4)
(3)
(2)
(5)
(6)
(7)
(8)
(9)
Global LCD Panel Exchange Center
(4) Definition of center luminance (LW):
The luminance is measured at the center point of the LCD module with full-screen displaying white. Fig. 7.5 shows the
standard setup of luminance measurement.
Fig. 7.5 The standard setup of luminance measurement
(5) Definition of uniformity of white screen:
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MT4601B02-2 Product Specification
White
LMD
LCD Module
The luminance Li (i from 1 to 9) is measured at the 9 points defined in Fig. 7.6. H and V indicate active area.
From the measured set of luminance values Li (i from 1 to 9), the minimum luminance is denoted as L
maximum luminance is denoted as L
Uniformity = L
min
/ L
max
x 100%.
.The uniformity of white screen is defined according to
max.
min
H
H/9 H/9
H/2
H/2
V/9
V/2
V
V/2
V/9
Fig. 7.6 Symbol “ + ” defines the 9 measuring locations (1), (2), (3) ··· (9)
(6) Definition of color chromaticity:
Each chromaticity coordinates (x, y) are measured in CIE1931 color space when full-screen displaying primary color R, G,
and the
B and white. The color gamut is defined as the fraction in percent of the area of the triangle bounded by R, G, B
coordinates and the area is defined by NTSC 1953 color standard in the CIE color space. Chromaticity coordinates are
measured by CS2000 and the standard setup of measurement is shown in Fig. 7.7.
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Fig. 7.7 The standard setup of color chromaticity measurement
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MT4601B02-2 Product Specification
Colors
LMD
LCD Module
(7) Definition of viewing angle coordinate system (T
The contrast ratio is measured at the center point of the LCD module. The viewing angles are defined at the angle that the
contrast ratio is larger than 10 at four directions relative to the perpendicular direction of the LCD module (two vertical
angles: up T
and down TV-; and two horizontal angles: right TH+and left TH-) as illustrated in Fig. 7.8. The contrast ratio
V+
is measured by ELDIM EZ Contrast.
Fig. 7.8 Viewing angle coordination system
(8) Definition of the 3D mode performance:
, TV):
H
Y
X
T
H+
T
T
H-
T
V+
V-
Z
Test pattern
Pattern Left eye image Right eye image remark
Left eye image: L255
WW
Right eye image:L255
L(WW) is denoted as the luminance of “WW”
Left eye image: L255
WB
Right eye image:L0
L(WB) is denoted as the luminance of “WB”
Left eye image: L0
BW
Right eye image:L255
L(BW) is denoted as the luminance of “BW”
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(WB)-L(BB)
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BB
Fig. 7.9 3D optical measurement system
Measure the center point of the LCD module through the shutter glasses under 3D mode operation.
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MT4601B02-2 Product Specification
Left eye image: L0
Right eye image:L0
L(BB) is denoted as the luminance of “BB”
3D optical
LMD
Shutter glasses
LCD Module
The 3D luminance (Lw-3D) is the luminance measured by LMD with well controlled shutter glasses at the center point of the
LCD module with test pattern L(WW).
The 3D crosstalk is measuremd at the center point of the LCD modeule through right-eye glasses..
Definition of the 3D mode crosstalk:
CT-3D =
L
L(BW)-L(BB)
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8. Mechanical Characteristics
8.1 Mechanical Specification
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MT4601B02-2 Product Specification
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MT4601B02-2 Product Specification
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8.2 Packing
8.2.1 Packing Specifications
Item
Quantity Dimension (mm) Weight (kg)
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MT4601B02-2 Product Specification
Specification
Packing Box 22pcs / box 1157.0 (L) x 1066.0 (W) x 675.0 (H)
Pallet 1 1200 (L) x 1100 (W) x 175 (H) Net Weight: 19
Stack Layer 3
Boxes per Pallet 1 box / pallet
Pallet after Packing 22 pcs / pallet 1200 (L) x 1120 (W) x 850(H) Gross Weight: 242
8.2.2 Packing Method
Protector Film
Masking Tape
Corrugated Board
LCD Module
PE Bag
LCD Module
Net Weight: 209.0
Gross Weight: 223.0
Around Board
Bottom Cushion
Earth Cover
Pallet
Fig. 8.1 Packing method (protector film stick on the front of the LCD module)
Top Cushion
PP Belt
Carton Label
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MT4601B02-2 Product Specification
PE Sheet
PE Film
PP Belt
Corner Protector
Pallet
Pallet Label
2 pcs Pallet label stick on the PE Film.
Relative to the two sides.
Fig. 8.2 Shipping method
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9. Definition of Labels
9.1 Module Label
For RoHs compatible products, CSOT will add RoHS for identification.
MT4601B02-2 Product Specification
Model Name: MT4601B02-2
Ver.X.X: Version, for example: 0.1, 0.2, … , 1.1, 1.2, …, 2.1, 2.2, Ă
WC (Week Code): XX
Year: 2010 = 10, 2011 = 11 … 2020 = 20, 2021 = 21…
Week: 01, 02, 03 …
Serial Number: XXXXXXXXXXXX
XX
Week
Year
XXXXXXXX
CSOT Internal Use
Panel ID
9.2 Carton Label
Model Name: MT4601B02-3
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Serial Number: XXXXX XX XXXXX XXXXX
Manufactured Date:
Year: 2010 = 10, 2011 = 11…2020 = 20, 2021 = 21…
Month: 1~9, A~C, for Jan. ~ Dec.
Date: 01~31, for 1st to 31st
Model Version Code: Version of product, for example: 01, 02, 11, 12…
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CSOT Internal Use
Year, Month, Date
Model Version Code
CSOT Internal Use
MT4601B02-2 Product Specification
9.3 Pallet Label
Model Name: MT4601B02-3
Serial Number: XXX
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XX XXX XXXXX
CSOT Internal Use
Year, Month
Model Version Code
CSOT Internal Use
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10. Precautions
10.1 Assembly and Handling Precautions
(1) Do not apply rough force such as bending or twisting to the LCD module during assembly.
(2) It is recommended to assemble or install a LCD module into the user’s system in clean working areas. The dust
and oil may cause electrical short or damage the polarizer.
(3) Do not apply pressure or impulse to the LCD module to prevent the damage to LCD panel and backlight.
(4) Always follow the correct power-on sequence. This can prevent the damage and latch-up to the LSI chips.
(5) Do not plug in or pull out the interface connector while the module is in operation.
(6) Do not disassemble the LCD module.
(7) Use soft dry cloth without chemicals for cleaning because the surface of polarizer is very soft and easily be
scratched.
(8) Moisture can easily penetrate into the LCD module and may cause the damage during operation.
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MT4601B02-2 Product Specification
(9) High temperature or humidity may deteriorate the performance of the LCD module. Please store LCD modules in
the specified storage conditions.
(10) When ambient temperature is lower than 10ºC, the display quality might be deteriorated. For example, the
response time will become slow, and the starting voltage of LED light bar will be higher than that in room
temperature.
10.2 Safety Precautions
(1) If the liquid crystal material leaks from the panel, it should be kept away from the eyes or mouth. In case of
contact with hands, skin or clothes, it has to be washed away thoroughly with soap.
(2) After the LCD module’s end of life, it is not harmful in case of normal operation and storage.
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