QDI QD15TL03 Specification

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Prepared Date:
8/30/2004
Final Specification
        
Specification for TFT LCD Module
Quanta Display Inc.
SPECIFICATION
QD15TL0302Page1
Doc. REV.: 00
Issue Date: 9/14/2004
Page: 24 pages
(Include cover page)
QD15TL0302-00
              
Approval By
Model No.
QD15TL03 Rev.:02
Sony Corporation Quanta Computer Inc. Quanta Display Inc.
 
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These specification sheets are the proprietary product of Quanta Display Inc. (”QDI”) and
include materials protected under copyright of QDI. Do not reproduce or cause any third
party to reproduce them in any form or by any means, electronic or mechanical, for any
purpose, in whole or in part, without the express written permission of QDI.
The device listed in these technical literature sheets was designed and manufactured for use
in OA equipment.
In case of using the device for applications such as control and safety equipment for
transportation (aircraft, trains, automobiles, etc.), rescue and security equipment and various
safety related equipment which require higher reliability and safety, take into consideration
that appropriate measures such as fail-safe functions and redundant system design should
be taken.
Do not use the device for equipment that requires an extreme level of reliability, such as
QD15TL0302Page2
aerospace applications, telecommunication equipment (trunk lines), nuclear power control
equipment and medical or other equipment for life support.
QDI assumes no responsibility for any damage resulting from the use of the device, which
does not comply with the instructions, and the precautions specified in these technical
literature sheets.
Contact and consult with a QDI sales representative for any questions about this device.
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Revision History
REV. Date ECN NO. Change Content
0 9/14/2004 N/A Specification Initiation
QD15TL0302Page3
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1. Application
This specification applies to a color TFT-LCD module, QD15TL03 rev.02.
2. Overview
This module is a color active matrix LCD module incorporating amorphous silicon TFT
(Thin Film Transistor). It is composed of a color TFT-LCD panel; driver ICs, control circuit and
power supply circuit and a backlight unit. Graphics and texts can be displayed on a 1280
800 dots panel with 262,144 colors by using LVDS (L
interface and supplying +3.3V DC supply voltage for TFT-LCD panel driving and supply
voltage for backlight.
The TFT-LCD panel used for this module has very high aperture ratio. A low-reflection and
higher-color-saturation type color filter is also used for this panel. Therefore, high-brightness
and high-contrast image, which is suitable for the multimedia use, can be obtained by using
this module.
Optimum viewing direction is 6 o'clock.
QD15TL0302Page4
ow Voltage Differential Signaling) to
3
[Features]
1) High aperture panel; high-brightness or low power consumption.
2) Brilliant and high contrast image.
3) Small footprint and thin shape.
4) Light weight.
5) Wide Screen 15.4” WXGA
6) Lead free ( Pb contain is less than 1000ppm ) compliant
7) RoHS compliant
3. General Specifications
Parameter Specifications Unit
Display size 390.1 (15.4”) Diagonal mm
Active area 331.2×207.0 mm
Pixel format 1280 (H)×800 (V) Pixel
(1 pixel = R+G+B dots)
Pixel pitch 0.2588(H) × 0.2588 (V) mm
Pixel configuration R, G, B vertical stripe
Display mode Normally white
Unit outline dimensions (typ.)*1, 2
Mass 585 max. g
Surface treatment Haze 0; Hardness 2H; Low reflection (~2.5%)
*1.Note: excluding backlight cables. Outline dimensions are shown in this specification.
*2.Note: Please refer to outline drawing, the thickness spec. of screw nearby lamp side are
6.6 and 6.8mm max.
344.0(W)×222.0 (H)×6.35(T)max. mm
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4. Input Terminals
4-1. TFT-LCD panel driving CN1 (1 channel, LVDS signals – NSC/Ti standard and +3.3V DC power supply)
Using connector: FI-XB30Sx-HFxx/FI-X30Sx-HFxx/equivalent (JAE)
Interface Cable Pin Assignments
PIN NO . SYMBOL FUNCTION
1 VSS Ground
2 VDD Power Supply, 3.3 V (typical)
3 VDD Power Supply, 3.3 V (typical)
4 V EEDID DDC 3.3V power
5 NC Reserved for supplier test point
6 Clk EEDID DDC Clock
7 DATA EEDID DDC Data
8 Rin0- - LVDS differential data input (R0-R5, G0) (odd pixels)
9 Rin0+ + LVDS differential data input (R0-R5, G0) (odd pixels)
10 VSS Ground
QD15TL0302Page5
11 Rin1- - LVDS differential data input (G1-G5, B0-B1) (odd pixels)
12 Rin1+ + LVDS differential data input (G1-G5, B0-B1) (odd pixels)
13 VSS Ground
14 Rin2- - LVDS differential data input (B2-B5, HS, VS, DE) (odd pixels)
15 Rin2+ + LVDS differential data input (B2-B5, HS, VS, DE) (odd pixels)
16 VSS Ground
17 ClkIN- - LVDS differential clock input (odd pixels)
18 ClkIN+ + LVDS differential clock input (odd pixels)
19 VSS Ground
20 NC No connect
21 NC No connect
22 NC No connect
23 NC No connect
24 NC No connect
25 NC No connect
26 NC No connect
27 NC No connect
28 NC No connect
29 NC No connect
30 NC No connect
Note 1】Relation between LVDS signals and actual data shows below section (4-2).
Note 2】The shielding case is connected with signal GND.
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QD15TL0302Page
G5
R5
R0
6
6
)
5
11
DS90C363,DS90C383(National semiconductor
TFT-LCD side
(
RxOUT0
RxOUT6
G0
6
17
RxOUT12
B5
B0
Hsync
Vsync
RxOUT18
RxOUT19
Internal circuits
ENAB
RxOUT20
LVDS-TO-PARALLEL TTL
RxCLK OUT
CK
PLL
DS90CF364
RXIN0+(6)
RXIN0-(5)
RXIN1+(9)
RXIN1-(8)RXIN2+(12)
DS90C*363
5
DS90CF364(National semiconductor) Corresponding Transmitter
Computer side
TxIN 0
6
11
TxIN 6
6
17
TxIN12
6
RXIN2-(11)
TxIN19
TxIN18
RXCLKIN-(14)(14)
RXCLKIN+(1)
TTL PARALLEL-TO-LVDS
PLL
TxIN20
TxCLK IN
Using receiver
R5
R0
G5
G0
B5
B0
Hsync
Vsync
ENAB
CLK
Quanta Display Inc
4-2 Interface block diagram
Controller
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℃ −
V 【
℃ 【
=25℃
mA
Ω
<t1≦ <t2≦ <t3≦
≦ ≦ ≦
t1
t2
t3
t4
t5
t6
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4-3. Backlight driving
CN2: BHSR-02VS-1(JST)
Mating connector: SM02B-BHSS-1-TB (JST) or 87210-0200
Pin No. Symbol Function
1
Power supply for lamp
HIGH
(High voltage side)
2
Power supply for lamp
LOW
(Low voltage side)
5. Absolute Maximum Ratings
5-1 LCD module
Parameter Symbol Condition Ratings Unit Remark
Input voltage
VI
Ta=25
0.3 〜 VDD+0.3
+3.3V supply voltage VDD Ta=25℃ 0 〜 + 4
Storage temperature Tstg
−25 〜 +60
QD15TL0302Page7
Note1
Note2
Operating temperature
Topa
0 〜 +50
(Ambient)
【Note1】LVDS signals
Note2】Humidity:95%RH Max. at Ta≦40℃.
Maximum wet-bulb temperature at 39
or less at Ta>40℃.
No condensation.
6. Electrical Characteristics
6-1.TFT-LCD panel driving Ta
Parameter Symbol Min. Typ. Max. Unit Remark
VDD Supply voltage VDD +3.0 +3.3 +3.6
Current dissipation IDD 370 450 550
V
Permissive input ripple voltage
Differential input High
Threshold voltage Low
Terminal resistor
RP
V
TH
V
TL
R
T
–100
100
100 mV p-p Vcc=+3.3V
+100 mV V
mV
Note2】
Note3】
=+1.2V
CM
Differential input
Rush current I
1.5 A Rise time
RUSH
470uS
Note1
Note1】 V
Note2
: Common mode voltage of LVDS driver.
CM
On-off conditions for supply voltage
0
0
0
400 ms
200 ms
200 ms
10 ms
50 ms
50 ms
t4
t5
t6
VDD
DATA
10%
90%
90%
10%
CCFL
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Vcc-dip conditions
1) 2.5 V td
2) Vcc
Vcc-dip conditions should also follow the On-off conditions for supply voltage
Note3】 Typical current situation :
Max. current situation : Dot on / off pattern
Min. current situation : Full white pattern
VDD=+3.3V (typ. / Mosaic pattern)
Vcc<3.0 V
10 ms
2.5 V
t
d
32X36 Mosaic pattern.
QD15TL0302Page8
vcc
3.0V
2.5V
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℃ ① ②
B
A
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6-2. Backlight driving
The backlight system is an edge-lighting type with single CCFT (Cold Cathode
Fluorescent Tube).
The characteristics of the lamp are shown in the following table.
Parameter Symbol Min. Typ. Max. Unit Remark
Lamp current range IL 3.0 6.0 6.5 mArms【Note1】
Lamp voltage V L 657 730 803 Vrms
Lamp power consumption
Lamp frequency FL 54 60 66 kHz 【Note3】
Kick-off voltage Vs
Lamp life time LL 15000
Note1】 Lamp current is measured with current meter for high frequency as shown below.
Module
PL
4.75
1
2
QD15TL0302Page9
I
1460 Vrms Ta=25
1650 Vrms Ta=0℃ 【Note4】
hour 【Note5】
6.0mA
L=
Note2】
Inverter
A
Note2】Calculated Value for reference ( I
Note3】Lamp frequency may produce interference with horizontal synchronous frequency,
and this may cause beat on the display. Therefore lamp frequency shall be
detached as much as possible from the horizontal synchronous frequency and
from the harmonics of horizontal synchronous to avoid interference.
Note4】 The voltage above this value should be applied to the lamp for more than 1 second
to start-up. Otherwise the lamp may not be turned on.
Note5】 Lamp life time is defined as the time when either ① or ② occurs in the
continuous operation under the condition of Ta = 25
Note6】Please use the rate of unsymmetrical of a lamplighting waveform ( lamp current
Note) The performance of the backlight, for example life time or brightness, is much
Brightness becomes 50 % of the original value under standard condition.
Kick-off voltage at Ta = 0℃ exceeds maximum value.
waveform and lamp voltage waveform) at 5% or less.
L × V L)
and I
Unsymmetrical ratio:
A: Lamp current or lamp voltage o-p of positive side B: Lamp current or lamp voltage o-p of negative side
C: Max.( A,B) this is bigger in A or B
(|A|-|B|) / |C| Љ 5%
= 6.0 mArms.
L
influenced by the characteristics of the DC-AC inverter for the lamp. When you
design or order the inverter, please make sure that a poor lighting caused by the
mismatch of the backlight and the inverter (miss-lighting, flicker, etc.) never occur.
When you confirm it, the module should be operated in the same condition as it is
installed in your instrument.
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7. Timing characteristics of LCD module input signals
7-1. Timing characteristics
(This is specified at digital outputs of LVDS driver.)
Data
Vertical )
ENAB
Sync
C
Item
Vsync cycle (TVA)
Blanking period(TVB) 8 16
Sync pulse width (TVC) 2 4 35 line
Back porch (TVD) 5 8
symbol)
808 816 850 line
Sync pulse width + Back
porch
Active display area (TVE) 800 800 800 line
Front porch (TVF) 1 4
(TVC+TVD)
D
Min. Typ. Max. Unit Remark
7 12
16.667
ms Negative
line
line
line
line
QD15TL0302Page10
B
( Horizontal )
Item
Hsync cycle (THA)
Blanking period (THB) 100 128
Sync pulse width (THC) 16 32
Back porch (THD) 68 75
Sync pulse width + Back
porch (T
Active display area (THE) 1280 1280 1280 clock
Front porch (THF) 16 21
Clock )
Note) In case of lower frequency, the deterioration of display quality, flicker etc., may be
occurred.
symbol)
1380 1408 1428 clock
+THD)
HC
Item Min. Typ. Max. Unit Remark
Frequency 67.0 68.9 72.0 MHz
Min. Typ. Max. Unit Remark
84 107
20.44
s
clock
clock
clock
clock
clock
Negative
Note1】
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7-2. Input Data Signals and Display Position on the screen
D1,DH1
D1,DH2 D2,DH2
D1,DH800
D2,DH1
D3,DH1
R
G B
QD15TL0302Page11
D1280,DH1
1280
D
,DH
800
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×
×
È
È
È
È
Ø
È
È
È
È
Ø
×
×
È
È
È
È
Ø
È
È
È
È
Ø
×
×
È
È
È
È
Ø
È
È
È
È
Ø
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QD15TL0302Page12
8. Input Signals, Basic Display Colors and Gray Scale of Each Color
Colors &
Gray scale Gray
Black
Blue
Basic Color Gray Scale of Red Gray Scale of Green Gray Scale of Blue
Green
Cyan
Red
Magenta
Yellow
White
Scale
R0 R1 R2 R3 R4 R5 G0 G1 G2 G3 G4 G5 B0 B1 B2 B3 B4 B5
0 0 0 0 0 00000000 0 0 000
0 0 0 0 0 00000001 1 1 111
0 0 0 0 0 01111110 0 0 000
0 0 0 0 0 01111111 1 1 111
1 1 1 1 1 10000000 0 0 000
1 1 1 1 1 10000001 1 1 111
1 1 1 1 1 11111110 0 0 000
1 1 1 1 1 11111111 1 1 111
Data signal
Black GS0 0 0 0 0 0 0 0 000000 0 0 000
GS1 1 0 0 0 0 00000000 0 0 000
Darker GS2 0 1 0 0 0 00000000 0 0 000
Brighter GS61 1 0 1 1 1 10000000 0 0 000
GS62 0 1 1 1 1 10000000 0 0 000
Red GS63 1 1 1 1 1 10000000 0 0 000
Black GS0 0 0 0 0 0 0 0 000000 0 0 000
GS1 0 0 0 0 0 01000000 0 0 000
Darker GS2 0 0 0 0 0 00100000 0 0 000
Brighter GS61 0 0 0 0 0 01011110 0 0 000
GS62 0 0 0 0 0 00111110 0 0 000
Green GS63 0 0 0 0 0 01111110 0 0 000
Black GS0 0 0 0 0 0 0 0 000000 0 0 000
GS1 0 0 0 0 0 00000001 0 0 000
Darker GS2 0 0 0 0 0 00000000 1 0 000
Brighter GS61 0 0 0 0 0 00000001 0 1 111
GS62 0 0 0 0 0 00000000 1 1 111
Blue GS63 0 0 0 0 0 00000001 1 1 111
0 : Low level voltage, 1 : High level voltage
Each basic color can be displayed in 64 gray scales from 6 bit data signals. According to the
combination of total 18 bit data signals, the 262,144-color display can be achieved on the screen.
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QD15TL0302Page13
9. EDID data structure
This is the EDID (Extended Display Identification Data) data format to support displays as
defined in the VESA Plug & Display.
Byte Byte Value Value
(decimal) (hex)
Header
0 0 Header 0 0
1 1 Header FF 11111111
2 2 Header FF 11111111
3 3 Header FF 11111111
4 4 Header FF 11111111
5 5 Header FF 11111111
6 6 Header FF 11111111
7 7 Header 0 0
Field Name and Comments
(hex) (binary)
Vender/Product ID / EDID Version
8 8 EISA manufacturer code=QDS 44 01000100
9 9 EISA manufacturer code (Compressed ASCII) 93 10010011
10 0A Product code (20) LSB 14 00010100
11 0B Product code MSB 00 00000000
12 0C ID (32bit) Serial No (zero if not used) 00 00000000
13 0D ID (32bit) Serial No (zero if not used) 00 00000000
14 0E ID (32bit) Serial No (zero if not used) 00 00000000
15 0F ID (32bit) Serial No (zero if not used) 00 00000000
16 10 Week of manufacture (zero if not used) 00 00000000
17 11 Year of mass production – 1990 (ex. 2004-1990=14) 0E 00001110
18 12 EDID structure version # = 1 01 00000001
19 13 EDID revision # = 3 03 00000011
Display Parameter
20 14 Video I/P definition = Digital I/P 80 10000000
21 15 Max H image size (cm) =33cm 21 00100001
22 16 Max V image size (cm) =21cm 15 00010101
23 17 Display gamma ( 2.2×100 ) –100 78 01111000
24 18 Features (no DPMS,Active off,RGB,timing BLK1) 0A 00001010
Panel Color Coordinates
25 19 Red/Green Low bits (RxRy/GxGy) 4D 01001101
26 1A Blue/White Low bits (BxBy/WxWy) C7 11000111
27 1B Red X Rx=0.576 93 10010011
28 1C Red Y Ry=0.360 5C 01011100
29 1D Green X Gx=0.320 51 01010001
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30 1E Green Y Gy=0.533 88 10001000
31 1F Blue X Bx=0.156 27 00100111
32 20 Blue Y By=0.129 21 00100001
33 21 White X Wx=0.322 52 01010010
34 22 White Y Wy=0.332 54 01010100
Established Timings
35 23 Established timings 1 (00h if not used) 00 00000000
36 24 Established timings 2 (1024×768@60Hz) 00 00000000
Standard Timing ID
37 25 Manufacturer’s timings( 00h if not used) 00 00000000
38 26 Standard timing ID1 (01h if not used) 01 00000001
39 27 Standard timing ID1 (01h if not used) 01 00000001
40 28 Standard timing ID2 (01h if not used) 01 00000001
41 29 Standard timing ID2 (01h if not used) 01 00000001
42 2A Standard timing ID3 (01h if not used) 01 00000001
QD15TL0302Page14
43 2B Standard timing ID3 (01h if not used) 01 00000001
44 2C Standard timing ID4 (01h if not used) 01 00000001
45 2D Standard timing ID4 (01h if not used) 01 00000001
46 2E Standard timing ID5 (01h if not used) 01 00000001
47 2F Standard timing ID5 (01h if not used) 01 00000001
48 30 Standard timing ID6 (01h if not used) 01 00000001
49 31 Standard timing ID6 (01h if not used) 01 00000001
50 32 Standard timing ID7 (01h if not used) 01 00000001
51 33 Standard timing ID7 (01h if not used) 01 00000001
52 34 Standard timing ID8 (01h if not used) 01 00000001
53 35 Standard timing ID8 (01h if not used) 01 00000001
Timing Descriptor #1
54 36 Pixel Clock (LSB) EA 11101010
55 37 Pixel Clock (MSB) 1A 00011010
56 38 Horizontal Active (lower 8 bits) 00 00000000
57 39 Horizontal Blanking (lower 8bits) 80 10000000
58 3A
59 3B Vertical Active (lower 8bits) 20 00100000
60 3C Vertical Blanking lines (lower 8bits) 17 00010111
61 3D Vertical Active : Vertical Banking (upper 4:4 bits) 30 00110000
62 3E Horizontal Sync.Offset 15 00010101
63 3F Horizontal Sync.Width 20 00100000
64 40 Vertical Sync. Offset: lines Sync. Width 26 00100110
65 41 Horizontal/Vertical Sync Offset/Width upper 2 bits 00 00000000
66 42 Horizontal Image Size (lower 8 bits) 4B 01001011
Horizontal Active: Horizontal Blanking (upper 4:4 bits)
50 01010000
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67 43 Vertical Image Size (lower 8 bits) CF 11001111
68 44 Horizontal : Vertical Image Size (upper 4:4 bits) 10 00010000
69 45 Horizontal Border (zero for internal LCD) 00 00000000
70 46 Vertical Border (zero for internal LCD) 00 00000000
71 47
Timing Descriptor #2 MANUFACTURER SPECIFIED RANGE TIMING Descriptor
72 48 Flag 00 00000000
73 49 Flag 00 00000000
74 4A Flag 00 00000000
75 4B
76 4C Flag 00 00000000
77 4D Value=HSPW min/2 (pixel clks) 08 00001000
78 4E Value=HSPW max/2 (pixel clks) 00 00000000
Non-interlaced,Normal,no stereo,Separate
sync,H/V pol negatives 18 00011000
Data Type Tag : Descriptor Defined by
Manufacturer 0F 00001111
QD15TL0302Page15
79 4F Value=Thbp min/2 (pixel clks) 2A 00101010
80 50 Value=Thbp max/2 (pixel clks) 00 00000000
81 51 Value=VSPW min/2 (line pulses) 01 00000001
82 52 Value=VSPW max/2 (line pulses) 12 00010010
83 53 Value=Tvbp min/2 (line pulses) 04 00000100
84 54 Value=Tvbp max/2 (line pulses) 00 00000000
85 55 Thp min=value*2+HA pixel clks (pixel clks) 32 00110010
86 56 Thp max=value*2+HA pixel clks (pixel clks) 4A 01001010
87 57 Tvp min=value*2+VA lines 04 00000100
88 58 Tvp max=value*2+VA lines 19 00011001
89 59 Module revision 00 00000000
Timing Descriptor #3 : ASCII String : Supplier Name
90 5A Flag 00 00000000
91 5B Flag 00 00000000
92 5C Flag 00 00000000
93 5D Data Type Tag : Module serial number FE 11111110
94 5E Flag 00 00000000
95 5F ASCII (Q) 51 01010001
96 60 ASCII (U) 55 01010101
97 61 ASCII (A) 41 01000001
98 62 ASCII (N) 4E 01001110
99 63 ASCII (T) 54 01010100
100 64 ASCII (A) 41 01000001
101 65 ASCII (D) 44 01000100
102 66 ASCII (I) 49 01001001
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103 67 ASCII (S) 53 01010011
104 68 ASCII (P) 50 01010000
105 69 ASCII (L) 4C 01001100
106 6A ASCII (A) 41 01000001
107 6B ASCII (Y) 59 01011001
Timing Descriptor #4 ASCII String : Supplier P/N
108 6C Flag 00 00000000
109 6D Flag 00 00000000
110 6E Flag 00 00000000
111 6F Data Type Tag : Module Name FE 11111110
112 70 Flag 00 00000000
113 71 Q 51 01010001
114 72 D 44 01000100
115 73 1 31 00110001
116 74 5 35 00110101
QD15TL0302Page16
117 75 T 54 01010100
118 76 L 4C 01001100
119 77 0 30 00110000
120 78 3 33 00110011
121 79 2 32 00110010
122 7A Terminate with ASCII code 0Ah 0A 00001010
123 7B Pad field with ASCII code 20h 20 00100000
124 7C Pad field with ASCII code 20h 20 00100000
125 7D Pad field with ASCII code 20h 20 00100000
126 7E Extension flag 00 00000000
127 7F Checksum B8 10111000
Note : XX means variable values generated by QDI production system for EEDID file based
on module’s information.
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θ
θ
θ
CR
θ=0°
θ=0°
− 【
YL2
δW
δW
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10.Optical Characteristics
Ta=25
QD15TL0302Page17
, Vcc=+3.3V
Parameter Symbol Condition Min. Typ. Max. Unit Remark
Viewing Horizontal
Angle Vertical
Range
Contrast ratio
Response Rise Tr
Time Decay Td
Chromaticity of Wx 0.292 0.322 0.352
21,θ22
11
12
CR>10 50 60
n
35 45
45 55
300 450
5 10 ms
20 25 ms
Deg.
Deg.
Deg.
White Wy 0.302 0.332 0.362
Chromaticity of
Red
Chromaticity of
Green
Rx
Ry
Gx
Gy
0.546
0.330
0.290
0.503
0.576
0.360
0.320
0.533
0.606
0.390
0.350
0.563
Note1,4
Note2,4
Note3,4
Note4
Chromaticity of
Blue
Luminance of white
Note5
White Uniformity
Bx
By
1
2
0.126
5 points
(Average)
5 Points
13 points
0.156
0.099
0.129
200 220
0.186
0.159
Cd/m2 IL = 6.0
mArms
F
=55kHz
L
1.25
Note5
1.45
The optical characteristics shall be measured in a dark room or equivalent state with the
method shown in Fig.3.
Photodetector (BM-5A: TOPCON)
Field=2o
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TFT-LCD module
Center of the screen
Fig 3. Optical characteristics measurement method
400 mm
LCD Panel
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ӻ
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Note1
Quanta Display Inc
Definitions of viewing angle range:
Normal Direction
22
11
12
Note2】Definition of contrast ratio:
6 o’clock direction
The contrast ratio is defined as the following.
Luminance (brightness) with all pixels white
Contrast Ratio (CR) =
Luminance (brightness) with all pixels black
QD15TL0302Page18
21
Note3】Definition of response time:
The response time is defined as the following figure and shall be measured by
switching the input signal for "black" and "white" .
100%
White
90%
White Black
Photodetector Output
10%
(Relative Value)
0%
r
d
Time
Note4】This shall be measured at center of the screen.
Note5】Definition of white uniformity:
Maximun Luminance of 5/13 points
w =
Minimum Luminance of 5/13 points
320
F
640
G
960
H
D
*1) 5 Points are A~E
I
C
*1) 13 Points are A~M
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B E
K
L
M
200
J
400
600
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11. Display Quality
The display quality of the color TFT-LCD module shall be in compliance with the Incoming
Inspection Standard.
12. Handling Precautions
a) Be sure to turn off the power supply when inserting or disconnecting the cable.
b) Be sure to design the cabinet so that the module can be installed without any extra
stress such as warp or twist.
c) Since the front polarizer is easily damaged, pay attention not to scratch it.
d) Wipe off water drop immediately. Long contact with water may cause discoloration or
spots.
e) When the panel surface is soiled, wipe it with absorbent cotton or other soft cloth.
f) Since the panel is made of glass, it may break or crack if dropped or bumped on hard
surface. Handle with care.
g) Since CMOS LSI is used in this module, take care of static electricity and injure the
QD15TL0302Page19
human earth when handling.
h) Observe all other precautionary requirements in handling components.
i) This module has its circuitry PCBs on the rear side and should be handled carefully in
order not to be stressed.
j) Laminated film is attached to the module surface to prevent it from being scratched.
Peel the film off slowly just before the use with strict attention to electrostatic
charges. Ionized air shall be blown over during the action. Blow off the 'dust' on the
polarizer by using an ionized nitrogen gun, etc..
K) Mounting screw hole can stand torque 1.3~1.5 Kgf-cm.
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QD15TL0302Page20
13. Reliability test items
Test item Conditions
No.
1 High temperature storage test Ta = 65℃ 48h
2 Low temperature storage test Ta = -30℃ 48h
3 High temperature
& High humidity operation test
4 High temperature
& High humidity storage test
Ta = 45℃ ; 90 %RH 48h ; (As remark #3)
(No condensation)
Ta = 50℃ ; 90 %RH 48h ; (As remark #3)
(No condensation)
5 High temperature operation test Ta = 50℃ 48h
(The panel temp. must be less than 60
6 Low temperature operation test Ta = 0℃ 48h
7 Thermal cycle storage test -30oC / 2hrsÅ> 65oC / 2hrs; 12 cycle;
o
C/min
8 Vibration test
temperature slope less than 10
Frequency: 10〜500Hz, 1.5G, Test period : 3 hours
)
(non- operating)
9 Shock test
(Non- operating)
(1 hour for each direction of X,Y,Z)
Max. Gravity: 210G
Pulse width: 3 ms, Half sine wave
Direction :
Z
Once for each direction.
10 Altitude test (operation) 700 hPa (3000m) 48h
11 Altitude test (storage) 260 hPa (10000m) 48h Remark:
(1) A failure is defined as the appearance of pixel failured on any color layer or the
appearance of horizontal or vertical lines, bars etc.
(2) Low temperature storage “ Panel must return to operating temperature range prior to
activation.”
(3) Hi temperature / Humidity test
Max. wet-bulb temperature is less than 39
o
C ; At glass temperature high than 40 oC.
Temperature and relative humidity range is shown in the figure below.
Relative Humidity (% RH)
100
80
60
Operating Range
40
-60
20
-40 -20
Temperature (oC)
Storage Range
0
20
40 60
80
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14. Others
1) Lot No. Label:
2) Adjusting volume has been set optimally before shipment, so do not change any
adjusted value. If adjusted value is changed, the specification may not be satisfied.
3) Disassembling the module can cause permanent damage and should be strictly
avoided.
4) Please be careful since image retention may occur when a fixed pattern is displayed
Serial number
JFC1171000001 QD15TL03 Rev.02
01
Product Name
Serial Number Bar Code
QD15TL0302Page21
for a long time.
5) If any problem occurs in relation to the description of this specification, it shall be
resolved through discussion with spirit of cooperation.
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15. Packing form
CARTON OUTLINE: 454(L) X 384(W) X 335(H) mm
QD15TL0302Page22
印刷面
STEP 1 : 將模組(S-PWB側先進入)置入靜電袋中,
TOTAL WEIGHT: 14.7 KG
100±20
100 20±
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16. Mechanical Outline Dimension
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