CMO N150X7-L01 Specification

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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
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
3.1 TFT LCD MODULE
3.2 BACKLIGHT UNIT
4. BLOCK DIAGRAM
4.1 TFT LCD MODULE
4.2 BACKLIGHT UNIT
5. INPUT TERMINAL PIN ASSIGNMENT
5.1 TFT LCD MODULE
5.2 BACKLIGHT UNIT
5.3 TIMING DIAGRAM OF LVDS INPUT SIGNAL
5.4 COLOR DATA INPUT ASSIGNMENT
5.5 EDID DATA STRUCTURE
5.6 EDID SIGINAL SPECIFICATION
6. INTERFACE TIMING
6.1 INPUT SIGNAL TIMING SPECIFICATIONS
6.2 POWER ON/OFF SEQUENCE
6.3 MOMENTARY VOLTAGE DROPS
7. OPTICAL CHARACTERISTICS
7.1 TEST CONDITIONS
7.2 OPTICAL SPECIFICATIONS
8. PRECAUTIONS
8.1 ASSEMBLY AND HANDLING PRECAUTIONS
8.2 SAFETY PRECAUTIONS
9. PACKING
9.1 PACKING SPECIFICATIONS
9.2 PACKING METHOD
10. DEFINITION OF LABELS
.1 CMO MODULE LABEL
10
10.2 CMO CARTON LABEL
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Model No.: N150X7 - L01
Approval
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Model No.: N150X7 - L01
Approval
Version Date
Feb. 03,’05
Apr. 15,’05
Jun. 02,’05
Ver 3.0
Ver 3.1
Ver 3.2
Page
(New)
All
4
23
4,32
REVISION HISTORY
Section Description
All
1.4
7.2
1.4,drawing
Approval specification was first issue for Fujitsu.
Modify Depth of the module: Typ.: 9.9~7.2Ш9.8~7.2 Max.: 10.2~7.5Ш10.1~7.5
Modify the optical spec. Rx:0.647Ш0.641,Ry:0.334Ш0.348 Gx:0.283Ш0.285,Gy:0.612Ш0.604 Bx:0.143Ш0.143,By:0.092Ш0.067
T
R(max):10msШ9ms, TF(max):20msШ17ms
Modify Depth of the module: Typ.: 9.8~7.2Ш9.9~7.2 Max.: 10.1~7.5Ш10.2~7.5
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1. GENERAL DESCRIPTION
1.1 OVERVIEW
N150X7 - L01 is a 15.0” TFT Liquid Crystal Display module with two CCFL Backlight units and 30 pins
LVDS interface. This module supports 1024 x 768 XGA mode and can display 262,144 colors. The optimum
viewing angle is at 6 o’clock direction. The inverter module for Backlight is not built in.
1.2 FEATURES
- Thin and High Brightness
- XGA (1024 x 768 pixels) resolution
- DE only mode
- 3.3V LVDS (Low Voltage Differential Signaling) interface with 1 pixel/clock
- Two CCFLs
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Model No.: N150X7 - L01
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1.3 APPLICATION
- TFT LCD Notebook
1.4 GENERAL SPECIFICATI0NS
Item Specification Unit Note Active Area 304.1 (H) x 228.1 (V) (15.0” diagonal) mm Bezel Opening Area 307.8 (H) x 231.6 (V) mm Driver Element a-si TFT active matrix - ­Pixel Number 1024 x R.G.B. x 768 pixel ­Pixel Pitch 0.297 (H) x 0.297 (V) mm ­Pixel Arrangement RGB vertical stripe - ­Display Colors 262,144 color ­Transmissive Mode Normally white - ­Surface Treatment
Hard coating (2H), Glare Type, ReflectionБ3%
- -
1.5 MECHANICAL SPECIFICATIONS
Item Min. Typ. Max. Unit Note
Horizontal (H) 316.8 317.3 317.8 mm
Module Size
Note (1) Please refer to the attached drawings for more information of front and back outline dimensions.
Vertical (V) 241.5 242 242.5 mm Depth (D) - 9.9~7.2 10.2~7.5 mm
Weight - 800 830 g -
(1)
(1)
Note (2) Connector mounting position
+/- 0.5mm
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2. ABSOLUTE MAXIMUM RATINGS
2.1 ABSOLUTE RATINGS OF ENVIRONMENT
Item Symbol
Storage Temperature TST -20 +60 ºC (1) Storage Humidity HST 5 95 Operating Ambient Temperature TOP 0 +50 ºC (1), (2) Operating Humidity HOP 5 95 Shock (Non-Operating) HST - 200 G (3), (5) Vibration (Non-Operating) V MTBF: 50000 Hr (except for backlight lamp)
Note (1) Temperature and relative humidity range is shown below.
(a) 90 %RH Max. (Ta Љ 40 ºC).
(b) Wet-bulb temperature should be 39 ºC Max. (Ta > 40 ºC).
(c) No condensation.
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Model No.: N150X7 - L01
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Value
Min. Max.
- 2 G (4), (5)
NOP
Unit Note
Note (2) The ambient temperature means the temperature of panel surface.
Note (3) 2ms, half sine wave, 1 times for ± X, ± Y, ± Z.
Note (4) 10 ~ 500 Hz, 30 min/cycle,( 4 )cycles for each X, Y, Z axis. The fixing condition is shown as below:
Side Mount Fixing Screw
Note (5) At testing Vibration and Shock, the fixture in holding the module has to be hard and rigid enough
so that the module would not be twisted or bent by the fixture.
gap=2mm
Bracket
LCD Module
Side Mount Fixing Screw
Stage
2.2 ELECTRICAL ABSOLUTE RATINGS
2.2.1 TFT LCD MODULE
Item Symbol
Power Supply Voltage VCC -0.3 +4.0 V Logic Input Voltage VIN -0.3 VCC+0.3 V
Min. Max.
Value
Unit Note
(1)
2.2.2 BACKLIGHT UNIT
Item Symbol
Lamp Voltage VL - 2.5K V Lamp Current IL - 6.5 mA Lamp Frequency FL - 80 KHz
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).
Min. Max.
Value
Unit Note
(1), (2), IL = 6.0 mA
RMS
RMS
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(1), (2)
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Model No.: N150X7 - L01
3. ELECTRICAL CHARACTERISTICS
3.1 TFT LCD MODULE Ta = 25 ± 2 ºC
Parameter Symbol
Min. Typ. Max. Power Supply Voltage Vcc 3.0 3.3 3.6 V ­Ripple Voltage VRP - 50 mV ­Rush Current I
Power Supply Current
Logical Input Voltage
White - 280 330 mA (3)a Black “H” Level VIL - - +100 mV ­“L” Level V
- 1.5 A (2)
RUSH
Lcc
-100 - - mV -
IH
- 330 400 mA (3)b
Terminating Resistor RT - 100 - Ohm -
Note (1) The module should be always operated within above ranges.
Note (2) Measurement Conditions:
:
Value
Unit Note
Approval
+3.3V
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 470us
+3.3V
0.9Vcc
0.1Vcc
GND
470us
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Note (3) The specified power supply current is under the conditions at Vcc = 3.3 V, Ta = 25 ± 2 ºC, fv = 60
Hz, whereas a power dissipation check pattern below is displayed.
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Model No.: N150X7 - L01
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a. White Pattern
Active Area
b. Black Pattern
Active Area
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Model No.: N150X7 - L01
3.2 BACKLIGHT UNIT Ta = 25 ± 2 ºC
Parameter Symbol
Min. Typ. Max. Lamp Input Voltage VL 585 650 715 V Lamp Current IL 2.0 6.0 6.5 mA
Lamp Turn On Voltage VS
- 1020(25
- 1175 (0 Operating Frequency FL 40 60 80 KHz (3) Lamp Life Time LBL 12,500 17,500 Hrs (5) Power Consumption PL - 7.8 - W (4), IL = 6.0 mA
Note (1) Lamp current is measured by utilizing a high frequency current meter as shown below:
Value
o
C) V
o
C) V
Unit Note
I
RMS
(1)
RMS
(2)
RMS
(2)
RMS
Approval
= 6.0 mA
L
Note (2) The voltage shown above should be applied to the lamp for more than 1 second after startup.
Otherwise the lamp may not be turned on.
Note (3) The lamp frequency may produce interference with horizontal synchronous frequency from the
display, and this may cause line flow on the display. In order to avoid interference, the lamp
frequency should be detached from the horizontal synchronous frequency and its harmonics as far
as possible.
Note (4) P
= IL VL
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 = 6.5 mArms 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 or lower than 80% of its original value. (Effective
ignition length is defined as an area that has less than 70% brightness compared to the
brightness in 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 generating too
much current leakage from high voltage output of the inverter. When designing or ordering the
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
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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
leakage current.
a. The asymmetry rate of the inverter waveform should be 10% below;
b. The distortion rate of the waveform should be within Ѕ2 ± 10%;
c. The ideal sine wave form shall be symmetric in positive and negative polarities.
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Model No.: N150X7 - L01
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* 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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Note (7) About operating current min 2.0mA , lamp maker has some advice as below:
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Model No.: N150X7 - L01
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Explanation and comparison of the kind of tone light:
ʳ Lamp current wave-like by the adjustment of the current.
ʳ Lamp current wave-like by the adjustment of the burst.
(Reference) Light quantity adjustment method
P-P LEVEL DOWN
Tone light
P-P LEVEL =
Comparative table
Method
current Good ( 75 % Д 85% )
burst Bad ( 65 % Д 75% )
Method of case that Lamp current MIN2.0mA is controlled.
It is the setting of minimum 2mA (MIN) to Lamp current 6mA (TYP) in the lamp specification. The burst is
excellent for circuitry. The marker proposes that pays attention to the following contents.
Backlight efficiency (INVЀLAMP)
OFF:20%
ON:80%
Tone light rate (%) Circuitry
58 Complicated
10 Easy
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The attention point of the light with a touch of the burst:
ʳ Do not to be SPARK at start.
N G
SPARK
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Model No.: N150X7 - L01
Approval
GOOD
PWM frequency does so that the frequency that is not able to divide the fixed number time, fixed number to lamp
drive frequency is selected. (It is due to resonance noise occurrence prevention. ) Even the frequency that is using it
for LCD avoids selecting it.
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4. BLOCK DIAGRAM
4.1 TFT LCD MODULE
Rxin0(+/-)
Rxin1(+/-)
Rxin2(+/-)
(JAE-FI-XB30SL-HF10)
INPUT CONNECTOR
CLK(+/-)
Vcc
GND
Data
CLK
V
EDID
EDID
EDID
VL
LAMP CONNECTOR
(JST-BHSR-02VS-1)
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LVDS INPUT /
TIMING CONTROLLER
DC/DC CONVERTER &
REFERENCE VOLTAGE
GENERATOR
EDID
EEPROM
Model No.: N150X7 - L01
SCAN DRIVER IC
TFT LCD PANEL
(1024xR.G.B.x768)
DATA DRIVER IC
BACKLIGHT UNIT
Approval
4.2 BACKLIGHT UNIT
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5. INPUT TERMINAL PIN ASSIGNMENT
5.1 TFT LCD MODULE
Pin Symbol Description Polarity Remark
1 Vss Ground 2 Vcc Power Supply +3.3 V (typical) 3 Vcc Power Supply +3.3 V (typical) 4 V 5 NC Non-Connection 6 CLK 7 DATA 8 Rxin0- LVDS Differential Data Input Negative
9 Rxin0+ LVDS Differential Data Input Positive
10 Vss Ground 11 Rxin1- LVDS Differential Data Input Negative
12 Rxin1+ LVDS Differential Data Input Positive
13 Vss Ground 14 Rxin2- LVDS Differential Data Input Negative
15 Rxin2+ LVDS Differential Data Input Positive
16 Vss Ground 17 CLK- LVDS Clock Data Input Negative 18 CLK+ LVDS Clock Data Input Positive 19 Vss Ground 20 NC Non-Connection 21 NC Non-Connection 22 Vss Ground 23 NC Non-Connection 24 NC Non-Connection 25 Vss Ground 26 NC Non-Connection 27 NC Non-Connection 28 Vss Ground 29 NC Non-Connection 30 NC Non-Connection
Note (1) Connector Part No.: JAE-FI-XB30SL-HF10
DDC 3.3V Power
EDID
DDC Clock
EDID
DDC Data
EDID
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Model No.: N150X7 - L01
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-
R0~R5,G0
G1~G5,B0,B1
-
B2~B5,DE,Hsync,Vsync
LVDS Level
Note (2) User’s connector Part No: JAE-FI-X30C2L
Note (3) The first pixel is even.
5.2 BACKLIGHT UNIT
Pin Symbol Description Color
1 HV High Voltage Red 2 LV Ground White 1 HV High Voltage Red 2 LV Ground Black
Note (1) Connector Part No.: JST-BHSR-02VS-1 or equivalent
Note (2) User’s connector Part No.: JST-SM02B-BHSS-1-TB or equivalent
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5.3 TIMING DIAGRAM OF LVDS INPUT SIGNAL
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Model No.: N150X7 - L01
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CLK+
Rxin2
Rxin1
Rxin0
T/7
IN20 IN19 IN18 IN17 IN16 IN15 IN14
DE B5 B4 B3 B2 Vsync Hsync
IN13 IN12 IN11 IN10 IN9 IN8 IN7
B1 G4 G3 G2 G1 B0 G5
IN6 IN5 IN4 IN3 IN2 IN1 IN0
G0 R3 R2 R1 R0 R5 R4
Signal for 1 DCLK Cycle (T)
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5.4 COLOR DATA INPUT ASSIGNMENT
The brightness of each primary color (red, green and blue) is based on the 6-bit gray scale data input for
the color. The higher the binary input, the brighter the color. The table below provides the assignment of
color versus data input.
Color
R5 R4 R3 R2 R1 R0 G5 G4 G3 G2 G1 G0 B5 B4 B3 B2 B1 B0 Black Red Green
Basic Colors
Gray Scale Of Red
Gray Scale Of Green
Gray Scale Of Blue
Note (1) 0: Low Level Voltage, 1: High Level Voltage
Blue Cyan Magenta Yellow White Red(0)/Dark Red(1) Red(2)
:
: Red(61) Red(62) Red(63) Green(0)/Dark Green(1) Green(2)
:
: Green(61) Green(62) Green(63) Blue(0)/Dark Blue(1) Blue(2)
:
: Blue(61) Blue(62) Blue(63)
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
0
0
0
0
0
0 : :
0
0
0
0
0
0
0
0
0
0
0
0 : :
0
0
0
0
0
0
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Model No.: N150X7 - L01
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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
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
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
1
1
1
1
1
1
1
1
1
1
1
1
1
1
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
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
0
0
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
:
1
1
0
1
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
0
0
0
0
0
0
0
0
0
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
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
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
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
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5.5 EDID DATA STRUCTURE
The EDID (Extended Display Identification Data) data formats support displays as defined in the VESA
Plug & Display and FPDI standards.
Byte #
(decimal)
0 0 Header 1 1 Header 2 2 Header 3 3 Header 4 4 Header 5 5 Header 6 6 Header 7 7 Header 8 8
9 9 EISA ID manufacturer name (Compressed ASCII) 10 0A ID product code (N150X7-L01) 11 0B ID product code (hex LSB first,N150X7-L01) 12 0C 13 0D 14 0E 15 0F 16 10 17 11 18 12 19 13 20 14 21 15 22 16 23 17 24 18 25 19 26 1A 27 1B 28 1C 29 1D 30 1E 31 1F 32 20 33 21 34 22 35 23 Established timings 1 36 24 Established timings 2 (1024x768@60Hz) 37 25 Manufacturer’s reserved timings 38 26 Standard timing ID # 1 39 27 Standard timing ID # 1 40 28 Standard timing ID # 2 41 29 Standard timing ID # 2
Byte #
(hex)
Field Name and Comments
EISA ID manufacturer name (ϘAPPϙ)
ID S/N (fixed Ϙ0ϙ) ID S/N (fixed Ϙ0ϙ) ID S/N (fixed Ϙ0ϙ) ID S/N (fixed Ϙ0ϙ) Week of manufacture (fixed Ϙ0EHϙ) Year of manufacture (fixed Ϙ2004ϙ) EDID structure version # (Ϙ1ϙ) EDID revision # (Ϙ3ϙ) Video I/P definition (Ϙdigitalϙ) Max H image size (Ϙ28 cmϙ) Max V image size (Ϙ21 cmϙ) Display Gamma (Gamma = ϙ2.2ϙ) Feature support (ϘRGB, preferred timingϙ)
Red/Green (Rx1, Rx0, Ry1, Ry0, Gx1, Gx0, Gy1, Gy0) EB 11101011 Blue/White (Bx1, Bx0, By1, By0, Wx1, Wx0, Wy1, Wy0) A5 10100101 Red-x (Rx = “0.647”) A5 10100101 Red-y (Ry = “0.334”) 55 01010101 Green-x (Gx = ”0.283”) 48 01001000 Green-y (Gy = ”0.612”) 9C 10011100 Blue-x (Bx = ”0.143”) 24 00100100 Blue-y (By = ”0.092”) 17 00010111 White-x (Wx = ”0.313”) 50 01010000 White-y (Wy = ”0.329”) 54 01010100
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Value
(hex)
00 00000000 FF 11111111 FF 11111111 FF 11111111 FF 11111111 FF 11111111 FF 11111111 00 00000000 06 00000110 10 00010000
07 00000111 15 00010101 00 00000000 00 00000000 00 00000000 00 00000000 00 00000000 00 00000000 01 00000001 03 00000011 80 10000000 1C 00011100 15 00010101 78 01111000 0A 00001010
00 00000000 08 00001000 00 00000000 01 00000001 01 00000001 01 00000001 01 00000001
Value
(binary)
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Byte #
(decimal)
42 2A Standard timing ID # 3 43 2B Standard timing ID # 3 44 2C Standard timing ID # 4 45 2D Standard timing ID # 4 46 2E Standard timing ID # 5 47 2F Standard timing ID # 5 48 30 Standard timing ID # 6 49 31 Standard timing ID # 6 50 32 Standard timing ID # 7 51 33 Standard timing ID # 7 52 34 Standard timing ID # 8 53 35 Standard timing ID # 8 54 36 55 37 # 1 Pixel clock (hex LSB first) 56 38 57 39 58 3A 59 3B 60 3C 61 3D 62 3E 63 3F 64 40 65 41 # 1 H sync offset: H sync pulse width : V sync offset : V sync
66 42 67 43 68 44 69 45 70 46 71 47 72 48 Detailed timing description # 2 73 49 # 2 Flag 74 4A # 2 Reserved 75 4B
76 4C # 2 Flag 77 4D 78 4E 79 4F 80 50 81 51 82 52 83 53 # 2 New line character # 2 indicates end of ASCII string 84 54 85 55
Byte #
(hex)
Field Name and Comments
Detailed timing description # 1 Pixel clock (Ϙ65 MHzϙ)
# 1 H active (Ϙ1024ϙ) # 1 H blank (Ϙ320ϙ) # 1 H active: H blank (Ϙ1024 : 320ϙ) # 1 V active (ϙ768ϙ) # 1 V blank (ϙ38ϙ) # 1 V active: V blank (ϙ768 : 38ϙ) # 1 H sync offset (ϙ24ϙ) # 1 H sync pulse width (ϙ136ϙ) # 1 V sync offset: V sync pulse width (ϙ3 : 6ϙ)
width (ϙ24 : 136 : 3 : 6ϙ) # 1 H image size (ϙ285 mmϙ) # 1 V image size (ϙ214 mmϙ) # 1 H image size: V image size (ϙ285 : 214ϙ) # 1 H boarder (ϙ0ϙ) # 1 V boarder (ϙ0ϙ) # 1 Flags (ϙNon-Interlace, Non-Stereo, Digital Separateϙ)
# 2 FE (hex) defines ASCII string (Model Name ϘN150X7ϙ, ASCII)
# 2 1st character of string (ϘNϙ) # 2 2nd character of string (Ϙ1ϙ) # 2 3rd character of string (Ϙ5ϙ) # 2 4th character of string (Ϙ0ϙ) # 2 5th character of string (ϘXϙ) # 2 6th character of string (Ϙ7ϙ)
# 2 Padding with ϘBlankϙ character # 2 Padding with ϘBlankϙ character
Va l ue (hex)
01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 01 00000001 64 01100100 19 00011001 00 00000000 40 01000000 41 01000001 00 00000000 26 00100110 30 00110000 18 00011000 88 10001000 36 00110110
00 00000000 1D 00011101 D6 11010110 10 00010000 00 00000000 00 00000000 18 00011000 00 00000000 00 00000000 00 00000000
FE 11111110
00 00000000 4E 01001110 31 00110001 35 00110101 30 00110000 58 01011000 37 00110111 20 00100000 20 00100000 20 00100000
Value
(binary)
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Byte # (decimal)
86 56 87 57 88 58 89 59 90 5A # 3 Flag 91 5B # 3 Flag 92 5C # 3 Flag 93 5D # 3 FE (hex) defines ASCII string (Model Name “N150X7”,
94 5E # 3 Flag
95 5F # 3 1st character of string (“N”) 96 60 # 3 2nd character of string (“1”) 97 61 # 3 3rd character of string (“5”) 98 62 # 3 4th character of string (“0”) 99 63 # 3 5th character of string (“X”)
100 64 # 3 6th character of string (“7”) 101 102 103 104 105 106 107 108 6C 109 6D 110 6E
111 6F 112 70 113 114 115 116 117 118 119 120 121 122 7A # 4 New line character # 4 indicates end of Monitor name 0A 00001010 123 7B 124 7C 125 7D 126 7E Extension flag 00 00000000 127 7F Checksum F9 11111001
Byte # (hex)
65 66 67 68
69 6A 6B
71
72
73
74
75
76
77
78
79
Field Name and Comments
# 2 Padding with ϘBlankϙ character # 2 Padding with ϘBlankϙ character # 2 Padding with ϘBlankϙ character # 2 Padding with ϘBlankϙ character
ASCII)
# 3 New line character # 3 indicates end of ASCII string 20 00100000 # 3 Padding with “Blank” character 20 00100000 # 3 Padding with “Blank” character 20 00100000 # 3 Padding with “Blank” character 20 00100000 # 3 Padding with “Blank” character 20 00100000 # 3 Padding with “Blank” character 20 00100000 # 3 Padding with “Blank” character 20 00100000 # 4 Flag # 4 Flag # 4 Flag Data Type Tag: ASCII String
# 4 Flag
# 4 1st character of name (“C”) 43 01000011 # 4 2nd character of name (“o”) 6F 01101111 # 4 3rd character of name (“l”) 6C 01101100 # 4 4th character of name (“o”) 6F 01101111 # 4 5th character of name (“r”) 72 01110010 # 4 6th character of name (<space>) 20 00100000 # 4 7th character of name (“L”) 4C 01001100 # 4 8th character of name (“C”) 43 01000011 # 4 9th character of name (“D”) 44 01000100
# 4 Padding with ϘBlank” character # 4 Padding with ϘBlank” character # 4 Padding with ϘBlank” character
Va l ue (hex)
Value
(binary) 20 00100000 20 00100000 20 00100000
20 00100000 00 00000000 00 00000000 00 00000000
FE 11111110
00 00000000 4E 01001110 31 00110001 35 00110101 30 00110000 58 01011000 37 00110111
00 00000000 00 00000000 00 00000000
FC 11111100
00 00000000
20 00100000 20 00100000 20 00100000
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5.6 EDID SIGINAL SPECIFICATION
(1) EDID Power
Parameter Symbol Conditions Min. Typ. Max. Unit
Absolute
Maximum
Ratings
Recommended
Operating
Conditions
Vcc 0 __ 7.0 V
Vcc Read Operation 2.2 — 5.5 V
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(2) DC characteristics
Symbol Min. Max. Unit Remark
SCL, SDA terminal input voltage
Hysteresis Voltage VHYS 0.05 VCC V
Output Voltage
Input Leak current
(Vin =0.1V~VCC)
Output Leak current ILO -10 10 uA
Terminal capacity(Input, Output) Cin, Cout 10 pF
Operating current
High Voltage VIH
Low Voltage VIL
VOL1 VOL2
ILI
ICC Write
ICC Read
0.7uV
-10
-10
CC
— V
0.3uV
CC
V
0.4
0.6
10 50
3 1
IOL=3mA, CC=2.5V
V
IOL=6mA, CC=2.5V
uA
mA
WP=VSS WP=VCC
Vout =0.1V~VCC,
WP=VSS
VCC=5.0V
Ta=25
Fclk=1.0MHz
VCC=5.5V,
SCL=400KHz
0
C,
Stillness current
(SDA=SCL=VCC)
(WP=VSS,A0,A1,A2=VSS)
ICCS —
30
100
uA
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VCC=3.0V VCC=5.5V
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(3) AC characteristics (VCC=2.5~5.5V standard operation mode)
Item Symbol
Clock frequency Fclk 100 400 KHz
Clock High Time THIGH 4000 900 —
Clock Low Time TLOW 4700 1300 —
SDA, SCL falling time TR 1000 300
SDA, SCL rising time TF 300 300
START hold time THD: STA 4000 600 —
START setup time TSU: STA 4700 600 —
Data input hold time THD: Data 0 0 —
Data input setup time TSU: Data 250 100 —
STOP setup time TSU: STO 4700 600 —
Output decision time from
a clock
Bus free time TBUF 4700 1300 —
Rising time of Min VIH,
VIL
Spike oppression TSP 50 — 50 ns
A write-in cycle time TWR 10 — 10 ms
The number of times of
data rewriting
TAA — 3500
TOF — 250
— 1M — 1M — cycles
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VCC=2.5V-5.5V
(Standard operation
mode)
Min. Max. Min. Max. Unit Remark
VCC=4.5V-5.5V
(High-speed
operation mode)
100 900
20 250
Model No.: N150X7 - L01
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ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
CBЉ100pF
Byte and
page mode
VCC=5.0V
Ta=25
0
C,
(4) Device Addressing
Device Code
1 0 1 0 0 0 0 R/W
Slave Address
R/W
A2 A1 A0
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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
DCLK Frequency 1/Tc 50 65 68 MHz -
Frame Time Cycle TV 771 806 850 TH -
DE
Note (1) Because this module is operated by DE only mode, Hsync and Vsync input signals should be set
to low logic level or ground. Otherwise, this module would operate abnormally.
Vertical Active Display Period TVD 768 768 768 TH -
One Line Scanning Time Cycle TH 1200 1344 1500 Tc -
Horizontal Active Display Period THD 1024 1024 1024 Tc -
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DE
DCLK
TC
DE
DATA
6.2 POWER ON/OFF SEQUENCE
Power Supply
for LCD, Vcc
- Interface Signal
(LVDS Signal of Transmitter), V
- Power for Lamp
0V
0V
I
10%
INPUT SIGNAL TIMING DIAGRAM
Power On
90%
t1
Valid Data
ONOFF OFF
Power Off
90%
t6 t5
50%50%
HD
T
Restart
t7
10%
t3 t2
t4
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Timing Specifications:
0 Љ t1 Љ 20 ms
0 < t2 Љ 50 ms
0 < t3 Љ 50 ms
t4 Њ 200 ms
t5 Њ 100 ms
t6 Њ 0 ms
0 Љ t7Љ 10 ms
Note (1) Please avoid floating state of interface signal at invalid period.
Note (2) When the interface signal is invalid, be sure to pull down the power supply of LCD Vcc to 0 V.
Note (3) The Backlight inverter power must be turned on after the power supply for the logic and the
interface signal is valid. The Backlight inverter power must be turned off before the power supply
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for the logic and the interface signal is invalid.
Note (4) Sometimes some slight noise shows when LCD is turned off (even backlight is already off). To
avoid this phenomenon, we suggest that the Vcc falling time is better to follow
t7Њ5 msec
Note (5) To avoid in-rush current is too large when power on. CMO suggest t1 should be larger than 470us when
power on.
6.3 MOMENTARY VOLTAGE DROPS
(1) When 2.4V Љ Vcc І3.0V and tdЉ10ms , the unit must work normally when VCC return to 3.0V.
(2) When Vcc < 2.4V, momentary voltage shall conform to the input voltage sequence.
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7. OPTICAL CHARACTERISTICS
7.1 TEST CONDITIONS
Item Symbol Value Unit Ambient Temperature Ta Ambient Humidity Ha Supply Voltage VCC 3.3 V Input Signal According to typical value in "3. ELECTRICAL CHARACTERISTICS" Inverter Current IL 6.0 mA Inverter Driving Frequency FL 60 KHz Inverter H05-4915
The relative measurement methods of optical characteristics are shown in 6.2. The following items
should be measured under the test conditions described in 6.1 and stable environment shown in Note (6).
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25r2
50r10
Model No.: N150X7 - L01
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o
C
%RH
7.2 OPTICAL SPECIFICATIONS
Item Symbol Condition Min. Typ. Max. Unit Note
Red
Green
Color Chromaticity
Blue
White
Color Gamut C.G% - 72% - % (9)
Central Luminance of White L5 420 500 - cd/m2(4), (6) Contrast Ratio CR
Response Time
Cross Talk CT - - 4.0 % (5), (6)
White Variation
Horizontal
Viewing Angle
Vertical
Rx 0.641 ­Ry Gx Gy Bx
T
=0q, TY =0q
By
Wx 0.313 -
x
Viewing Normal Angle
(CS-1000T)
TYP
-0.03
Wy
0.348
0.285
0.604
0.143
0.067
0.329
TYP
+0.03
400 600 - - (2), (6) TR - 4 9 ms T
F
GWA GW
B
Tx+
T
-
x
TY+
T
-
Y
T
=0q, TY =0q
x
T
=0q, TY =0q
x
(BM-5A)
CRt10
(BM-5A)
- 12 17 ms
70 % 70 % 50 60 ­50 60 ­30 40 -
Deg. (1), (6)
50 60 -
-
-
-
-
-
-
(1), (6)
(3)
(6), (7),
(8)
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Note (1) Definition of Viewing Angle (Tx, Ty):
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TX- = 90º
x-
6 o’clock
T
y- = 90º
y-
Note (2) Definition of Contrast Ratio (CR):
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) = L63 / L0
Normal
Tx = Ty = 0º
Ty- Ty
Tx
Tx
y+
12 o’clock direction
T
y+ = 90º
x+
TX+ = 90º
L63: Luminance of gray level 63
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 (7).
Note (3) Definition of Response Time (T
100%
90%
Optical
Response
10%
0%
R
T
R
, TF):
Time
T
F
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A
A
Note (4) Definition of Central Luminance of White (L5):
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Measure the luminance of gray level 63 at point X
L5 = L (5)
L (x) is corresponding to the luminance of the point X at Figure in Note (7).
Note (5) Definition of Cross Talk (CT):
CT = | Y
– YA | / YA u 100 (%)
B
Where:
Y
= Luminance of measured location without gray level 0 pattern (cd/m2)
A
Y
= Luminance of measured location with gray level 0 pattern (cd/m2)
B
(0, 0)
ctive Area
Y
(D/8,W/2)
A, L
Gray 32
Y
(D/2,7W/8)
A, D
Y
A, U
Y
A, R
(D,W)
(D/2,W/8)
(7D/8,W/2)
(D/4,W/4)
Y
(D/8,W/2)
B, L
Y
(D/2,7W/8)
B, D
(0, 0)
ctive Area
Gray 0
Gray 32
Y
B, U
Y
B, R
(3D/4,3W/4)
(D,W)
(D/2,W/8)
(7D/8,W/2)
Note (6) Measurement Setup:
The LCD module should be stabilized at given temperature for 20 minutes to avoid abrupt
temperature change during measuring. In order to stabilize the luminance, the measurement
should be executed after lighting Backlight for 20 minutes in a windless room.
LCD Module
LCD Panel
Center of the Screen
500 mm
Photometer
(BM-5A, CS-1000)
Field of View = 2º
Light Shield Room
(Ambient Luminance < 2 lux)
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Note (7) Definition of White Variation (GW):
Measure the luminance of gray level 63 at 5 points
GW = Maximum [L (1), L (2), L (3), L (4), L (5)] / Minimum [L (1), L (2), L (3), L (4), L (5)]
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W
W/4
W/2
Vertical Line
3W/4
Note (8) Definition of White Variation (īW
Measure the luminance of gray level 63 at any point of range A on active display area
īW
A = Minimum [L(Any point of area A)] / Maximum [L(Any point of area A)]*100 %
Horizontal Line
D
D/4 D/2 3D/4
12
5
3
Active Area
A):
4
X
: Test Point
X=1 to 5
Definition of White Variation (īW
B):
Measure the luminance of gray level 63 at any point of range B on active display area
īW
B = Minimum [L(Any point of area B)] / Maximum [L(Any point of area B)]*100 %
īW
B = Minimum [L(Any point of area B)] / Maximum [L(Any point of area B)]*100 %
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Note (9) Definition of color gamut (C.G%):
C.G%= ȜR G B /ȜR
R
0, G0, B0 : color coordinates of red, green, and blue defined by NTSC, respectively.
R, G, B : color coordinates of module on 255 gray levels of red, green, and blue, respectively.
ȜR
0 G0 B0 : area of triangle defined by R0, G0, B0
ȜR G B: area of triangle defined by R, G, B
0 G0 B0,
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8. PRECAUTIONS
8.1 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.
(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.
8.2 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.
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p)
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9. PACKING
9.1 PACKING SPECIFICATIONS
(1) 15 LCD modules / 1 Box
(2) Box dimensions : 511(L) X 420(W) X 360(H) mm
(3) Weight : approximately 14.7 Kg (15 modules per box)
9.2 PACKING METHOD
(1)Carton Packing should have no failure in the following reliability test items.
Test Item Test Conditions Note Vibration Random, 2-200 Hz, follow ISTA standard Non Operation Dropping Test 1 Angle (A), 55cm
3 Edge (BΕCΕD), 55cm 6 Face (EΕFΕGΕHΕIΕJ), 65cm
Model No.: N150X7 - L01
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Non Operation
F(Side)
G(To
J(Rear)
C(Edge)
E(Side)
I(Front)
D(Edge)
H(Bottom)
B(Edge)
A(Corner)
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PALLET
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10. DEFINITION OF LABELS
10.1 CMO MODULE LABEL
The barcode nameplate is pasted on each module as illustration, and its definitions are as following explanation.
-
C P 1 3 5 4 4 8 - 0 1
CP235834-01
01A
N141X5 - L03 Rev.XX
X X X X X X X Y M D L N N N N
(a) Model Name: N150X7 - L01
(b) Revision: Rev. XX, for example: A1, …, C1, C2 …etc.
(c) Serial ID: X X
X X X X X Y M D X N N N N
Serial No. CMO Internal Use
Year, Month, Date CMO Internal Use
Revision
CMO Internal Use
(d) Customer Internal Product Code : CP235834-01
(e) Customer Internal Revision : XXX, for example: 01A, 02A …etc
Serial ID includes the information as below:
E207943
MADE IN TAIWAN
(a) Manufactured Date: Year: 1~9, for 2001~2009
Month: 1~9, A~C, for Jan. ~ Dec.
Day: 1~9, A~Y, for 1
st
to 31st, exclude I , O and U
(b) Revision Code: cover all the change
(c) Serial No.: Manufacturing sequence of product
10.2 CARTON LABEL
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