CMO M215H1-L03 Specification

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ு଱ழၴ ຝ ᐉு ߡۥ ދป
ข঴ጥ෻๠
柏 勳
TFT LCD Tentative Specification
MODEL NO.: M215H1-L03
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentative
Customer :
Approved by :
Note :
2009-06-25
09:05:18
MTR
2009.06.25
Director Accept
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentative
- CONTENTS -
REVISION HISTORY
1. GENERAL DESCRIPTION
1.1 OVERVIEW
1.2 FEATURES
1.3 APPLICATION
1.4 GENERAL SPECIFICATIONS
1.5 MECHANICAL SPECIFICATIONS
2. ABSOLUTE MAXIMUM RATINGS ------------------------------------------------------- 6
2.1 ABSOLUTE RATINGS OF ENVIRONMENT
2.2 ELECTRICAL ABSOLUTE RATINGS
2.2.1 TFT LCD MODULE
2.2.2 BACKLIGHT UNIT
3. ELECTRICAL CHARACTERISTICS ------------------------------------------------------- 7
3.1 .1 TFT LCD MODULE
3.1. 2 Vcc POWER DIP CONDITION
3.2 BACKLIGHT UNIT
4. BLOCK DIAGRAM ------------------------------------------------------- 12
4.1 TFT LCD MODULE
4.2 BACKLIGHT UNIT
5. INPUT TERMINAL PIN ASSIGNMENT ------------------------------------------------------- 13
5.1 TFT LCD MODULE
5.2 LVDS DATA MAPPING TABLE
5.3 BACKLIGHT UNIT
5.4 COLOR DATA INPUT ASSIGNMENT
6. INTERFACE TIMING ------------------------------------------------------- 16
6.1 INPUT SIGNAL TIMING SPECIFICATIONS
6.2 POWER ON/OFF SEQUENCE
7. OPTICAL CHARACTERISTICS ------------------------------------------------------- 19
------------------------------------------------------- 3
------------------------------------------------------- 5
7.1 TEST CONDITIONS
7.2 OPTICAL SPECIFICATIONS
8. PACKAGING ------------------------------------------------------- 22
8.1 PACKING SPECIFICATIONS
8.2 PACKING METHOD
9. DEFINITION OF LABELS ------------------------------------------------------- 24
9.1 CMO MODULE LABEL
10.RELIABILITY TEST ------------------------------------------------------- 25
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11. PRECAUTIONS ------------------------------------------------------- 26
11.1 ASSEMBLY AND HANDLING PRECAUTIONS
11.2 SAFETY PRECAUTIONS
11.3 SAFETY STANDARDS
11.4 STORAGE
11.5 OPERATION CONDITION GUIDE
11.6 OTHER
12. MECHANICAL CHARACTERISTICS ------------------------------------------------------- 27
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Issued Date: Jun. 01, 2009
REVISION HISTORY
Version Date Section Description
Ver 0.0 Jun,01,09’ All M215H1-L03 Specifications was first issuedΖ
Model No.: M215H1-L03
Tentativ e
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1. GENERAL DESCRIPTION
1.1 OVERVIEW
The M215H1-L03 model is a 21.5 inch wide TFT-LCD module with a 4-CCFL Backlight Unit and a 30-pin 2ch-LVDS interface. This module supports 1920 x 1080 Full HD (16:9 wide screen) mode and displays up to 16.7 millions colors. The inverter module for the Backlight Unit is not built in.
1.2 FEATURES
- Super wide viewing angle
- High contrast ratio
- Fast response time
- Low power consumption
- FULL HD(1920 x 1080 pixels) resolution
- DE (Data Enable) only mode
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- LVDS (Low Voltage Differential Signaling) interface
- RoHS compliance.
- TCO 03 compliance.
1.3 APPLICATION
- Workstation & desktop monitor
- Display terminals for AV application
1.4 GENERAL SPECIFICATI0NS
Item Specification Unit Note Diagonal size Active Area Bezel Opening Area 479.8 (H) x 271.3 (V) mm Driver Element a-Si TFT active matrix - ­Pixel Number 1920 x R.G.B. x 1080 pixel ­Pixel Pitch 0.248(H) x 0.248(V) mm ­Pixel Arrangement RGB vertical stripe - ­Display Colors 16.7 millions color ­Transmissive Mode Normally White - ­Surface Treatment Hard coating (3H), AG (Haze 25%) - ­Module Power Consumption (31.05) Watt (2)
546.86 (21.53”)
476.64 x 268.11
mm mm
(1)
1.5 MECHANICAL SPECIFICATIONS
Item Min. Typ. Max. Unit Note
Horizontal(H) 495.1 495.6 496.1 mm
Module Size
I/F connector mounting
Note (1) Please refer to the attached drawings for more information of front and back outline dimensions. Note (2) Please refer to sec. 3.1 & 3.2 in this document for more information of power consumption
Vertical(V) 291.7 292.2 292.7 mm Depth(D) 15.85 16.35 16.85 mm
Weight -- (2570) 2620 g
position
The mounting inclination of the connector makes
the screen center within ±0.5 mm as the horizontal.
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A
2. ABSOLUTE MAXIMUM RATINGS
2.1 ABSOLUTE RATINGS OF ENVIRONMENT
Item Symbol
Storage Temperature TST -20 +60 ºC (1) Operating Ambient Temperature TOP 0 +50 ºC (1), (2) Shock (Non-Operating) S Vibration (Non-Operating) V
LCD Cell Life Time L
Relative Humidity (%RH)
100
90
80
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Value
Min. Max.
- 50 G (3), (5)
NOP
- 1.5 G (4), (5)
NOP
50,000 - Hrs
CELL
Unit Note
MTBF based
60
Operating Range
40
20
10
Storage Range
-20 40 0 20 -40
Temperature (
Note (1) Temperature and relative humidity range is shown in the figure below.
(a) 90% RH Max. (Ta 40 ºC).Љ (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. Note (3) 50G,11 ms, half-sine wave, 1 time for ± X, ± Y, ± Z.
C)
60
80
Note (4) 10 ~ 300 Hz, sweep rate 10 min / cycle , 30 min for X,Y,Z axis Note (5) Upon the Vibration and Shock tests, the fixture used to hold the module must be firm and rigid
enough to prevent the module from twisting or bending by the fixture.
t Room Temperature
Side Mount Fixing Screw
Gap=3~5mm
Bracket
LCD Module
Side Mount Fixing Screw
Stage
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2.2 ELECTRICAL ABSOLUTE RATINGS
2.2.1 TFT LCD MODULE
Item Symbol
Power Supply Voltage Vcc -0.3 +6 V (1)
2.2.2 BACKLIGHT UNIT
Item Symbol
Lamp Voltage VL - 2500 V Lamp Current IL 3.0 8.0 mA Lamp Frequency FL 40 80 KHz (1), (2)
Note (1) Permanent damage to the device may occur if maximum values are exceeded. Function
operation should be restricted to the conditions described under Normal Operating Conditions.
Note (2) Specified values are for lamp (Refer to 3.2 for further information).
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Value
Min. Max.
Value
Min. Max.
Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
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Unit Note
Unit Note
(1), (2), IL = 7.5 mA
RMS
RMS
(1), (2)
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Model No.: M215H1-L03
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3. ELECTRICAL CHARACTERISTICS
3.1.1 TFT LCD MODULE Ta = 25 ± 2 ºC
Parameter Symbol
Min. Typ. Max. Power Supply Voltage Vcc 4.5 5.0 5.5 V ­Ripple Voltage VRP - -- 100 mV ­Power on Rush Current I
- -- 3 A (2)
RUSH
White - 0.51 0.61 A (3)a
Power Supply Current
Black - 1.05 1.26 A (3)b Vertical Stripe
Power consumption (without Backlight Unit)
lcc
- 1.06 1.26 A (3)c
Plcd 5.25 6.3 Watt (4)
LVDS differential input voltage Vid 100 - 600 mV LVDS common input voltage Vic -- 1.2 -- V
Note (1) The module should be always operated within above ranges. Note (2) Power on rush current measurement conditions:
Value
Unit Note
+5.0V
R1
47K
Q1 2SK1475
FUSE
C3
1uF
Vcc
(LCD Module Input)
(High to Low)
(Control Signal)
SW
+12V
C1
1uF
VR1
R2
1K
47K
0.01uF
Q2
2SK1470
C2
Vcc rising time is 470μs
Vcc
0.9Vcc
0.1Vcc
GND
470μs
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≤≤≤
Note (3) The specified power supply current is under the conditions at Vcc = 5.0 V, Ta = 25 ± 2 ºC, fv = 60
Hz, whereas a power dissipation check pattern below is displayed.
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a. White Pattern
Active Area
c. Vertical Stripe Pattern
b. Black Pattern
Active Area
R
G
R
B
G
R
B
G
R R
G
B
B
B
B
R
R
R
G
G
G
G
B
B
B
B
R
R
Note (4)The power consumption is specified at the pattern with the maximum current
3.1.2 Vcc Power Dip Condition:
Active Area
Vcc
4.5V
Dip condition:
Td
msTdVVccV 20,5.40.4
4.0V
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3.2 BACKLIGHT UNIT
Parameter Symbol Lamp Input Voltage VL -- 860 946 V
Lamp Current IL 3 7.5 8 mA Lamp Turn On Voltage VS Operating Frequency FL 40 55 80 KHz (3)
Lamp Life Time LBL 40000 50000 - Hrs (5) IL = 7.5 mA Power Consumption PL - (25.8) - W (4), IL = 7.5 mA
Note (1) Lamp current is measured by current amplify & oscilloscope as shown below:
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Value
Min. Typ. Max.
- - 1370(25°C) V
- - 1770(0°C) V
Model No.: M215H1-L03
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Unit Note
I
RMS
(1)
RMS
(2)
RMS
(2)
RMS
= 7.5mA
L
LCD Module
HV+ (Pink) LV (White) HV- (Blue)
LV (Black)
HV+ (Pink) LV (White)
HV- (Blue) LV (Black)
Current Probe
1 2
A
Inverter
Current Amplify
1 2
A
Oscilloscope
Measure equipment: Current Amplify: TektronixTCPA300
Ta = 25 ± 2 ºC
Current probe: Tektronix TCP312 Oscilloscope: TDS3054B
Note (2) The voltage that must be larger than Vs should be applied to the lamp for more than 1 second
after startup. Otherwise, the lamp may not be turned on normally. It is the value output voltage of NF circuit.
Note (3) The lamp frequency may produce interference with horizontal synchronization frequency from the
display, which might cause line flow on the display. In order to avoid interference, the lamp frequency should be detached from the horizontal synchronization frequency and its harmonics as far as possible.
Note (4) P
= IL ×VL X 4
L
Note (5) The lifetime of lamp can be defined as the time in which it continues to operate under the
condition Ta = 25 ±2
o
C and IL = 7.5 mA until one of the following events occurs:
(a) When the brightness becomes or lower than 50% of its original value.
(b) When the effective ignition length becomes Љ 80% of its original value.
(The effective ignition length is a scope that luminance is over 80% of that at the center point.)
Note (6) The waveform of the voltage output of inverter must be area-symmetric and the design of the
inverter must have specifications for the modularized lamp. The performance of the Backlight, such as lifetime or brightness, is greatly influenced by the characteristics of the DC-AC inverter for the lamp. All the parameters of an inverter should be carefully designed to avoid producing too much current leakage from high voltage output of the inverter. When designing or ordering the
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inverter please make sure that a poor lighting caused by the mismatch of the Backlight and the inverter (miss-lighting, flicker, etc.) never occurs. If the above situation is confirmed, the module should be operated in the same manners when it is installed in your instrument.
The output of the inverter must have symmetrical (negative and positive) voltage waveform and symmetrical current waveform.(Unsymmetrical ratio is less than 10%) Please do not use the inverter which has unsymmetrical voltage and unsymmetrical current and spike wave. Lamp frequency may produce interface with horizontal synchronous frequency and as a result this may cause beat on the display. Therefore lamp frequency shall be as away possible from the horizontal synchronous frequency and from its harmonics in order to prevent interference.
Requirements for a system inverter design, which is intended to have a better display performance, a better power efficiency and a more reliable lamp. It shall help increase the lamp lifetime and reduce its
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leakage current.
a. The asymmetry rate of the inverter waveform should be 10% below; b. The distortion rate of the waveform should be within 2 ± 10%; c. The ideal sine wave form shall be symmetric in positive and negative polarities.
* Asymmetry rate:
I p
I
-p
| I
* Distortion rate I
– I –p | / I
p
(or I –p) / I
p
rms
rms
* 100%
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4. BLOCK DIAGRAM
4.1 TFT LCD MODULE
RXO0(+/-)
RXO1(+/-)
RXO2(+/-)
RXO3(+/-)
RXOC(+/-)
RXE0(+/-)
RXE1(+/-)
RXE2(+/-)
RXE3(+/-)
RXEC(+/-)
AGMODE
Vcc
GND
INPUT CONNECTOR
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LVDS INPUT /
TIMING CONTROLLER
DC/DC CONVERTER &
REFERENCE VOLTAGE
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Model No.: M215H1-L03
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SCAN DRIVER IC
TFT LCD PANEL
(1920x3x1080)
DATA DRIVER IC
VL
LAMP CONNECTOR
4.2 BACKLIGHT UNIT
(YEONHO 35001HS-02L)
BACKLIGHT UNIT
1 HV(Pink)
2 LV(White)
1 HV(Blue)
2 LV(Black)
1 HV(Pink)
2 LV(White)
1 HV(Blue)
2 LV(Black)
Note: On the same side, the same-polarity lamp voltage design for lamps is recommended
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5. INPUT TERMINAL PIN ASSIGNMENT
5.1 TFT LCD MODULE
Pin Name Description
1 RXO0- Negative LVDS differential data input. Channel O0 (odd) 2 RXO0+ Positive LVDS differential data input. Channel O0 (odd) 3 RXO1- Negative LVDS differential data input. Channel O1 (odd) 4 RXO1+ Positive LVDS differential data input. Channel O1 (odd) 5 RXO2- Negative LVDS differential data input. Channel O2 (odd) 6 RXO2+ Positive LVDS differential data input. Channel O2 (odd) 7 GND Ground 8 RXOC- Negative LVDS differential clock input. (odd)
9 RXOC+ Positive LVDS differential clock input. (odd) 10 RXO3- Negative LVDS differential data input. Channel O3(odd) 11 RXO3+ Positive LVDS differential data input. Channel O3 (odd) 12 RXE0- Negative LVDS differential data input. Channel E0 (even) 13 RXE0+ Positive LVDS differential data input. Channel E0 (even) 14 GND Ground 15 RXE1- Negative LVDS differential data input. Channel E1 (even) 16 RXE1+ Positive LVDS differential data input. Channel E1 (even) 17 GND Ground 18 RXE2- Negative LVDS differential data input. Channel E2 (even) 19 RXE2+ Positive LVDS differential data input. Channel E2 (even) 20 RXEC- Negative LVDS differential clock input. (even) 21 RXEC+ Positive LVDS differential clock input. (even) 22 RXE3- Negative LVDS differential data input. Channel E3 (even) 23 RXE3+ Positive LVDS differential data input. Channel E3 (even) 24 GND Ground 25 NC Not connection, this pin should be open. 26 NC Not connection, this pin should be open. 27 NC Not connection, this pin should be open. 28 VCC +5.0V power supply 29 VCC +5.0V power supply 30 VCC +5.0V power supply
Note (1) Connector Part No.: 093G30-B2001A(STARCONN) or 187045-30091(P-TWO)
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Note (2) Mating Wire Cable Connector Part No.: FI-X30H(JAE) or FI-X30HL(JAE) Note (3) Mating FFC Cable Connector Part No.: 217007-013001 (P-TWO) or JF05X030-1 (JAE) Note (4) The first pixel is odd. Note (5) Input signal of even and odd clock should be the same timing.
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5.2 LVDS DATA MAPPING TABLE
LVDS Channel O0
LVDS Channel O1
LVDS Channel O2
LVDS Channel O3
LVDS Channel E0
LVDS Channel E1
LVDS Channel E2
LVDS Channel E3
LVDS output D7 D6 D4 D3 D2 D1 D0 Data order OG0 OR5 OR4 OR3 OR2 OR1 OR0 LVDS output D18 D15 D14 D13 D12 D9 D8 Data order OB1 OB0 OG5 OG4 OG3 OG2 OG1 LVDS output D26 D25 D24 D22 D21 D20 D19 Data order DE NA NA OB5 OB4 OB3 OB2 LVDS output D23 D17 D16 D11 D10 D5 D27 Data order NA OB7 OB6 OG7 OG6 OR7 OR6 LVDS output D7 D6 D4 D3 D2 D1 D0 Data order EG0 ER5 ER4 ER3 ER2 ER1 ER0 LVDS output D18 D15 D14 D13 D12 D9 D8 Data order EB1 EB0 EG5 EG4 EG3 EG2 EG1 LVDS output D26 D25 D24 D22 D21 D20 D19 Data order DE NA NA EB5 EB4 EB3 EB2 LVDS output D23 D17 D16 D11 D10 D5 D27 Data order NA EB7 EB6 EG7 EG6 ER7 ER6
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5.3 BACKLIGHT UNIT
Pin Symbol Description Remark
1 HV High Voltage Pink 2 LV Low Voltage White 1 HV High Voltage Blue 2 LV Low Voltage Black
Note (1) Connector Part No.: YEONHO 35001HS-02L or equivalent
Note (2) User’s connector Part No.: YEONHO 35001WR-02L or equivalent
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5.4 COLOR DATA INPUT ASSIGNMENT
The brightness of each primary color (red, green and blue) is based on the 8-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
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
Basic Colors
Gray Scale Of Red
Black Red Green Blue Cyan Magenta Yellow White Red(0) / Dark Red(1) Red(2)
:
: Red(253) Red(254) Red(255)
0
0
1
1
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
:
:
:
:
1
1
1
1
1
1
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Data Signal
Red Green Blue
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
1
1
1
1
0
1
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0 0 0 1 1 1 0 1 0 0 0
0 0 0
Tentativ e
0 0 0 1 1 1 0 1 0 0 0
:
:
:
: 0 0 0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
Green(0) / Dark
Gray Scale Of Green
Gray Scale Of Blue
Note (1) 0: Low Level Voltage, 1: High Level Voltage
Green(1) Green(2)
:
: Green(253) Green(254) Green(255) Blue(0) / Dark Blue(1) Blue(2)
:
: Blue(253) Blue(254) Blue(255)
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
1
1
1
1
1
1
0
1
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
0
1
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
15 / 28
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)
6. INTERFACE TIMING
6.1 INPUT SIGNAL TIMING SPECIFICATIONS
The input signal timing specifications are shown as the following table and timing diagram.
Signal Item Symbol Min. Typ. Max. Unit Note
Frequency Fc 58.54 74.25 97.98 MHz ­Period Tc - 13.47 - ns Input cycle to cycle jitter Spread spectrum
LVDS Clock
LVDS Data
Vertical Active Display Term
Horizontal Active Display Term
NoteΚBecause this module is operated by DE only mode, Hsync and Vsync input signals should be set to
modulation range Spread spectrum modulation frequency High Time Tch - 4/7 - Tc ­Low Time Tcl - 3/7 - Tc ­Setup Time Tlvs 600 - - ps ­Hold Time Tlvh 600 - - ps ­Frame Rate Fr 50 60 75 Hz Tv=Tvd+Tvb Total Tv 1115 1125 1136 Th ­Display Tvd 1080 1080 1080 Th ­Blank Tvb Tv-Tvd 45 Tv-Tvd Th ­Total Th 1050 1100 1150 Tc Th=Thd+Thb Display Thd 960 960 960 Tc ­Blank Thb Th-Thd 140 Th-Thd Tc -
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T
rcl
F
clkin_mod
F
F
SSM
clkin
200 KHz
Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
Ё Ё
-2
%
Ё
200 ps (1)
+2% MHz
F
clkin
(2)
low logic level or ground. Otherwise, this module would operate abnormally.
INPUT SIGNAL TIMING DIAGRAM
Note (1) The input clock cycle-to-cycle jitter is defined as below figures. Trcl = I T
Valid display data (960 clocks
TI
1
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Note (1) The input clock cycle-to-cycle jitter is defined as below figures. Trcl = I T1 Ω TI
Note (2) The SSCG (Spread spectrum clock generator) is defined as below figures.
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
6.2 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.
Restart
Power On
Power Off
Power Supply
for LCD, Vcc
-
Interface Signal (LVDS Signal of Transmitter), V
-
Power for Lamp
Timing Specifications:
0.5< t1 Љ 10 msec 0 < t2 Љ 50 msec 0 < t3 Љ 50 msec
0V
0V
I
10%
t4 Њ 500 msec t5 Њ 450 msec
90%
t1
t2
90%
Valid Data
t6 t5
50%50%
ONOFF OFF
t3
t7
10%
10%
t4
t6 Њ 90 msec
5 t7Љ 100 msecЉ
Note.
(1) The supply voltage of the external system for the module input should be the same as the definition of Vcc. (2) Apply the lamp voltage within the LCD operation range. When the backlight turns on before the LCD
operation of the LCD turns off before the backlight turns off, the display may momentarily become abnormal
screen. (3) In case of VCC = off level, please keep the level of input signals on the low or keep a high impedance. (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. (6)
CMO won’t take any responsibility for the products which are damaged by the customers not following the
Power Sequence.
(7)
There might be slight electronic noise when LCD is turned off (even backlight unit is also off). To avoid this
symptom, we suggest "Vcc falling timing" to follow "t7 spec".
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7. OPTICAL CHARACTERISTICS
7.1 TEST CONDITIONS
Item Symbol Value Unit Ambient Temperature Ta Ambient Humidity Ha Supply Voltage VCC 5.0 V Input Signal According to typical value in "3. ELECTRICAL CHARACTERISTICS" Inverter Current IL 7.5±0.5 mA Inverter Driving Frequency FL 55±5 KHz Inverter
7.2 OPTICAL SPECIFICATIONS
The relative measurement methods of optical characteristics are shown in 7.2. The following items should
be measured under the test conditions described in 7.1 and stable environment shown in Note (6).
Item Symbol Condition Min. Typ. Max. Unit Note
Red
Color
Chromaticity
(CIE 1931)
Center Luminance of White
(Center of Screen)
Contrast Ratio CR
Response Time
White Variation δW
Viewing Angle
Viewing Angle
Green
Blue
White
Horizontal
Vertical
Horizontal
Vertical
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
o
25±2
50±10
Logah MIT70070.50
Rx Ry Gx Gy
θ
Bx By
Wx Wy
L
C
TR --- 1.3 2.2 ms T
F
θx+
-
θ
x
θY+
-
θ
Y
θx+
-
θ
x
θY+
-
θ
Y
=0° , θY =0°
x
CS-1000T
R=G=B=255
Grayscale
θ
=0° , θY =0°
x
θ
=0° , θY =0°
x
USB2000
CR>10
USB2000
CRЊ5
USB2000
Typ –
0.03
250 300 --- cd/m2(4), (5)
700 1000 --- - (2), (6)
--- 3.7 5.8 ms
--- ---- 1.33 - (5), (6)
75 75 70
70 80
80 75
75
0.651
0.334
0.286
0.600
0.152
0.075
0.313
0.329
85 --­85 80 80
89 --­89 85 85
Typ +
0.03
---
---
---
---
---
---
C
%RH
(1), (5)
(3)
Deg. (1), (5)
Deg. (1), (5)
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Note (1) Definition of Viewing Angle (θx, θy):
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
Note (2) Definition of Contrast Ratio (CR):
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) = L255 / L0 L255: Luminance of gray level 255 L 0: Luminance of gray level 0
CR = CR (5) CR (X) is corresponding to the Contrast Ratio of the point X at Figure in Note (6).
Note (3) Definition of Response Time (T
Optical
Response
100%
90%
10%
0%
Gray Level 255
T
66.67ms
, TF):
R
Gray Level 255
Gray Level 0
Time
R
T
F
66.67ms
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Note (4) Definition of Luminance of White (LC):
Measure the luminance of gray level 255 at center point L
= L (5)
C
L (x) is corresponding to the luminance of the point X at Figure in Note (6).
Note (5) Measurement Setup:
The LCD module should be stabilized at given temperature for (30 minutes) to avoid abrupt temperature change during measuring. In order to stabilize the luminance, the measurement should be executed after lighting Backlight for (30 minutes) in a windless room.
LCD Module
LCD Panel
USB2000
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
CS-1000T
Field of View = 1º
Center of the Screen
Light Shield Room
(Ambient Luminance < 2 lux)
Note (6) Definition of White Variation (δW):
Measure the luminance of gray level 255 at 9 points
δW = Maximum [L (1) ~ L (9)] / Minimum [L (1) ~ L (9)]
D/10 D/2
W/10
1 3
Horizontal Line
D
D/10
2
X
W/2
W
Vertical Line
W/10
4
7
5
8
6
9
: Test Point
X=1 to 9
Active Area
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8. PACKAGING
8.1 PACKING SPECIFICATIONS
(1) 10 LCD modules / 1 Box (2) Box dimensions: 563(L) X 390 (W) X 375 (H) mm
(3) Weight: 26.23 Kg (10 modules per box)
8.2 PACKING METHOD
(1) Carton Packing should have no failure in the following reliability test items.
Test Item Test Conditions Note
ISTA STANDARD Random, Frequency Range: 1 – 200 Hz
Vibration
Dropping Test 1 Corner, 3 Edge, 6 Face, for ISTA Standard Non Operation
Top & Bottom: 30 minutes (+Z), 10 min (-Z), Right & Left: 10 minutes (X) Back & Forth 10 minutes (Y)
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
Non Operation
Figure. 8-1 Packing method
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For Ocean shipping
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
Sea / Land Transportation
(40ft HQ Container)
(L1000mm,t=3mm)
Film
(L1130mm,t=5mm)
Carton Label
PE Sheet
(L1150*W1190*H143mm)
PP Belt
Sea / Land Transportation
(40ft Container)
(L1000mm,t=3mm)
Film
(L1130mm,t=5mm)
Figure. 8-2 Packing method
PE Sheet
(L625mm,t=5mm)
PP Belt
Carton Label
(L1150*W1190*H143mm)
For Air transport
(L1000mm,t=3mm)
(L1130mm,t=5mm)
Film
Air Transportation
PE Sheet
PP Belt
Carton Label
(L1150*W1190*H143mm)
Figure. 8-3 Packing method
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9. DEFINITION OF LABELS
9.1 CMO MODULE LABEL
The barcode nameplate is pasted on each module as illustration, and its definitions are as following explanation.
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
M215H1-L03
CML5H11XXXXXLXXLYMDNNNN
(a) Model Name: M215H1-L03 (b) Revision: Rev. XX, for example: A0, A1… B1, B2… or C1, C2…etc. (c) CMO barcode definition:
Serial ID: XX
Code Meaning Description
XX CMO internal use ­XX Revision Cover all the change
X CMO internal use -
XX CMO internal use -
YMD Year, month, day
L Product line # Line 1=1, Line 2=2, Line 3=3, …
NNNN Serial number Manufacturing sequence of product
(d) Customer’s barcode definition:
-XX-X-XX-YMD-L-NNNN
Year: 2001=1, 2002=2, 2003=3, 2004=4… Month: 1~12=1, 2, 3, ~, 9, A, B, C Day: 1~31=1, 2, 3, ~, 9, A, B, C, ~, W, X, Y, exclude I, O, and U.
(Fab ID)
Serial ID: CM
Code Meaning Description
CM Supplier code CMO=CM
L5H13 Model number M215H1-L03=L5H13
Revision code ZBD, C1=A, C2=B, ….
X
X Source driver IC code
X Gate driver IC code
XX Cell location Tainan, Taiwan=TN
L Cell line # 1~Z
XX Module location Tainan, Taiwan=TN ; NB, China=NP ; NH, China=NH
L Module line # 1~Z
YMD Year, month, day
NNNN Serial number Manufacturing sequence of product
(e) UL Factory ID:
Region Factory ID
TWCMO GEMN
NBCMO LEOO
NBCME CANO
NHCMO CAPG
-L5H13-X-X-X-XX-L-XX-L-YMD-NNNN
Non ZBD, C1=1, C2=2, …. Century=1, CLL=2, Demos=3, Epson=4, Fujitsu=5, Himax=6, Hitachi=7, Hynix=8, LDI=9, Matsushita=A, NEC=B, Novatec=C, OKI=D, Philips=E, Renasas=F, Samsung=G, Sanyo=H, Sharp=I, TI=J, Topro=K, Toshiba=L, Windbond=M
Year: 2001=1, 2002=2, 2003=3, 2004=4… Month: 1~12=1, 2, 3, ~, 9, A, B, C Day: 1~31=1, 2, 3, ~, 9, A, B, C, ~, T, U, V
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10. Reliability Test
Environment test conditions are listed as following table.
˜˸ʳ ʳ ʳ ˥˸˼˸˷ʳ˖˷˼˼ʳ ˡ˸ʳ ˧˸˸˴˸ʳ˛˼˷˼ʳ˕˼˴ʳʻ˧˛˕ʼʳ Ta= 50к , 80%RH, 240hours ʳʳ ˛˼˺˻ʳ˧˸˸˴˸ʳˢ˸˴˼ʳʻ˛˧ˢʼʳ Ta= 50к , 50%RH , 240hours ʳʳ ˟ʳ˧˸˸˴˸ʳˢ˸˴˼ʳʻ˟˧ˢʼʳ Ta= 0к , 240hours ʳʳ ˛˼˺˻ʳ˧˸˸˴˸ʳ˦˴˺˸ʳʻ˛˧˦ʼʳ Ta= 60к , 240hours ʳʳ ˟ʳ˧˸˸˴˸ʳ˦˴˺˸ʳʻ˟˧˦ʼʳ Ta= -20к , 240hours ʳʳ
˩˼˵˴˼ʳ˧˸ʳ ʻˡˀ˸˴˼ʼʳ
˦˻˶˾ʳ˧˸ʳ ʻˡˀ˸˴˼ʼʳ
˧˻˸˴˿ʳ˦˻˶˾ʳ˧˸ʳʻ˧˦˧ʼʳ -20к/30min , 60к / 30min , 100 cycles ʳʳ
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Acceleration: 1.5 Grms Wave: Half-sine Frequency: 10 - 300 Hz Sweep: 30 Minutes each Axis (X, Y, Z)
Acceleration: 50 G Wave: Half-sine Active Time: 11 ms Direction : ± X, ± Y, ± Z.(one time for each Axis)
Tentativ e
ʳʳ
ʳʳ
ˢ˂ˢ˹˹ʳ˧˸ʳ 25к ,On/10sec , Off /10sec , 30,000 cycles ʳʳ
Contact Discharge: 8KV, 150pF(330) ʳʳ
˘˦˗ʳʻ˘˿˸˶ʳ˦˴˼˶ʳ˗˼˶˻˴˺˸ʼʳ
Air Discharge: 15KV, 150pF(330) ʳʳ
Operation:10,000 ft / 24hours
˔˿˼˷˸ʳ˧˸ʳ
Non-Operation:30,000 ft / 24hours
ʳʳ
11. PRECAUTIONS
11.1 ASSEMBLY AND HANDLING PRECAUTIONS
(1) Do not apply rough force such as bending or twisting to the module during assembly. (2) To assemble or install module into user’s system can be only in clean working areas. The dust and oil
may cause electrical short or worsen the polarizer.
(3) It’s not permitted to have pressure or impulse on the module because the LCD panel and Backlight
will be damaged.
(4) Always follow the correct power sequence when LCD module is connecting and operating. This can
prevent damage to the CMOS LSI chips during latch-up. (5) Do not pull the I/F connector in or out while the module is operating. (6) Do not disassemble the module. (7) Use a soft dry cloth without chemicals for cleaning, because the surface of polarizer is very soft and
easily scratched. (8) It is dangerous that moisture come into or contacted the LCD module, because moisture may damage
LCD module when it is operating. (9) High temperature or humidity may reduce the performance of module. Please store LCD module
within the specified storage conditions.
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Issued Date: Jun. 01, 2009
Model No.: M215H1-L03
Tentativ e
(10) When ambient temperature is lower than 10ºC may reduce the display quality. For example, the
response time will become slowly, and the starting voltage of CCFL will be higher than room
temperature.
11.2 SAFETY PRECAUTIONS
(1) The startup voltage of Backlight is approximately 1000 Volts. It may cause electrical shock while
assembling with inverter. Do not disassemble the module or insert anything into the Backlight unit. (2) 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. (3) After the module’s end of life, it is not harmful in case of normal operation and storage.
11.3 SAFETY STANDARDS
The LCD module should be certified with safety regulations as follows: (1) UL60950-1 or updated standard. (2) IEC60950-1 or updated standard.
11.4. Storage
(1) Do not leave the module in high temperature, and high humidity for a long time.
It is highly recommended to store the module with temperature from 0к to 35к
And relative humidity of less than 70%
(2) Do not store the TFT – LCD module in direct sunlight
(3) The module should be stored in dark place. It is prohibited to apply sunlight or fluorescent light in storing
11.5. Operation condition guide
(1) The LCD product should be operated under normal condition.
Normal condition is defined as below : Temperature : 20±15к Humidity: 65±20% Display pattern : continually changing pattern(Not stationary)
(2) If the product will be used in extreme conditions such as high temperature , high humidity , high altitude ,
display pattern or operation time etc…It is strongly recommended to contact CMO for application engineering advice . Otherwise , Its reliability and function may not be guaranteed.
11.6 OTHER
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