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Record of Revision
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‘07. 02.01
43, 45, 52
Specification Rev. 1.0
EDID55~57
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ReasonNewOldItemSheet(New)Rev. No.Date
First EditionAll0.0’06. 11. 27
Max. 450Max. 435gWeight40.1‘07. 01. 22
--Drawing5, 6, 7, 8, 25,
Normal B/L
Typ. 170 nitTyp. 200 nitLuminance16
Max. 1.6Max. 2.0White Var.
--Backlight repair parts43
Toshiba requestCheck sum : 4ECheck sum :
4C
Corrected an errorAnti-glareGlareSurface treatment40.2
UpdatedTiming parameters330.3’07. 02.07
Toshiba request
Ver. 0.2Ver. 0.1EDID (Timing)55~57
71.0’07. 03. 06
37
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Gap Between Upper
polarizer and Case Top
Dot Inspection
Updated
Toshiba request
Added
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Specification Rev. 1.0
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1. Scope
This specification is applicable to LCD manufacturer’s 35.81cm (14.1”) diagonal size TFT-LCD module
"LP141WP1(TLD2)" designed for Personal Computer.
2. General Specification
2.1. Features
SpecificationsItem
303.69(W) × 189.81(H) (mm) ( 14.1 ” diagonal)Display area ( Active area)
TFT active matrixDriving Method
Number of Pixels
Pixel pitch
Pixel Arrangement
Surface Treatment
Dimensional Outline
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1440(W) × 900(H) × R,G,B (WXGA+) (pixels)
0.2109(H) × 0.2109(V) (mm)
RGB vertical stripes
262,144 (colors)Display color
Transmissivetype, Normally whiteDisplay Mode
6 o'clock (in direction of maximum contrast)Viewing Direction
Anti-glare treatment of the front polarizer
LVDS2PortInterface
cold-cathode fluorescent lamp for side lightingBacklight
320 (H) × 206(V) × 5.5(D) mm (Max.)
306.76 (W) × 193(H) (mm)Bezel Opening
450g(Max.)Weight
1)
1)
1)
4/ 57
Note 1)
1213991440
1
2
899
900
LG.Philips LCD.,Co.Ltd
BGRBGRBGRBGR
BGRBGRBGRBGR
BGRBGRBGRBGR
BGRBGRBGRBGR
0.2109mm
BGR
: Pixel
RGB
0.2109mm
Date: 2007.03.06
: Sub-pixel
(Dots)
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2.2. Dimensional Outline
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( Front figure )
Specification Rev. 1.0
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( Back figure )
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3. Absolute Maximum Ratings
3.1. Absolute Ratings of Environment
9/ 57
MaxMinItemNoteSymbol
Operating Ambient Temperature
Operating Temperature for Panel
Storage Temperature
Operating Ambient Humidity
Storage Humidity
Air Pressure
Air Pressure
Altitude
Altitude
Note 1) Temperature and relative humidity range are shown in the figure below.
Wet bulb temperature should be 39°C Max, and no condensation of water.
Note 2) The surface temperature caused by self heat radiation of cell itself is specified on this item.
10
20304050
Dry Bulb Temperature [℃]
6070800
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3.2. Electrical Absolute Maximum
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(1) TFT LCD Module
Specification Rev. 1.0
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Power Supply Voltage
Logic Input Voltage
(2) Back Light Unit
Lamp Voltage
Lamp Current
Lamp Frequency
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MaxMinItemNoteSymbol
MaxMinItemNoteSymbol
Unit
at 25 ± 5°CV+4.0-0.3VDD
LVDS interfaceVVDD+0.3-0.3VIN
Unit
Broken lamp Max VoltageVRMS5000-VL
mARMS7.02.0IL
KHz8050FL
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3.3. Mechanical Ratings
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Test ItemNoteTest Conditions
Frequency Range 5 -500 Hz, 14.7m/s21.5G) constant,
Mechanical Vibration
Mechanical Shock
LCD fix condition
-> See Note (2)
Pressure Resistance
-> See Note (1)
Strength of FL Cable
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Connector tension test
at side-mount part
0.5Hrs each axis (X, Y, Z direction).
Frequency Range 5 -500 Hz, 4.9m/s2( 0.5G) constant,
0.5Hrs each axis (X, Y, Z direction).
No Destruction with the force 196 N (20 kgf, 16 mm in diameter) to
the display surface at the vertical direction.
No Destruction with the force 294.2 N (30 kgf, 30 mm in diameter)
to the back of the display surface at the vertical direction.
Only the breakage of below items will not happen after test.
( Glass.Lamp & Circuit parts)
Strength of
Rotation
force
Lead Pull
Test
Input connector : With 50 times of connector trial there must beno
damage to the shape and functionally.
Back light connector : With 50 times of connector trial there must be
no damage to the shape and functionally.
M2 : Max 2.5 kgf.cmAssured torque value
Specification Rev. 1.0
70G, Pulse width 11ms, Sine Wave ±X, ±Y, ±Z direction.
* Note) Normal function is only checking points.
Cable : No disconnection of cable to the 5 trial of
360 degree rotation. See a bended state of cable.
Connector : No disconnection of cable to 10 trial of
Definitions of failure for judgment shall be as follows:
(1) Function of the module should be maintained.
(2) Current consumption should be smaller than the specified value.
(3) Appearance and display quality should not have distinguished degradation.
(4) Luminance should be larger than the minimum value specified in optical specification.
LCD: Full-screen gray (L32).
“Ripple (Pooling )” can not be seen in Active Area
Tapping Force: Max 3kgf.cm
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Non Operation15 times under Max. torqueRe-screwed test
Operation
Date: 2007.03.06
Page 12
Note 1)
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Specification Rev. 1.0
(1) The compression condition of front side
(a) Compression point : 12 points ( refer to Fig 1-1)
(b) Compression condition: 20kgf, 3 sec, Tool diameter: 16 mm in diameter (refer to Fig 1-3)
:COMPRESSION POINT
LCDFlat plate
12/ 57
[ Fig 1-1 ]
(2) The compression condition of rear side
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(a) Compression point : 21 points ( refer to Fig 1-2 )
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(b)Compression condition : 30kgf, 3 sec, Tool radius: 30 mm in diameter ( refer to Fig 1-3)
:COMPRESSION POINT
ABS natural 2.0t
Flat plate
LCD
[ Fig 1-2 ]
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Specification Rev. 1.0
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10mm in diameter
10
16
B
Rubber sheet
(3) Dimension of the compression jig
(a) compression jig for front side A = 16 mm in diameter
(b)compression jig for rear side A = 30 mm in diameter
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A
[ Fig 1-3 ]
B = 16 mm in diameter
B = 28 mm in diameter
1.5
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Note 2) LCD fixing condition for z direction.
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Z
Y X
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3.4. The Others
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(1) Static electricity pressure resistance
(2) Sound noise
There should be no uncomfortable noise.
Being used under whatever surrounds, when power on/off, the panel should not generate
uncomfortable noise. And regarding specified values are negotiated if it is needed.
(3) Open / Short
No smoke, no fiery at any open/ short test
(4) MTBF : 50,000 Hr (except for backlight lamp)
Specification Rev. 1.0
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Non OperationOperationItemTesting conditions
± 10kV±8KV150pF, 330 ohmContact discharge
±20 KV±15KV 150pF, 330 ohmAir discharge
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4. Optical Characteristics
4.1. Test Conditions
Ambient Temperature : T
Ambient Humidity : H
Supply Voltage : V
a
DD
Input Signal : According to typical value in "Electrical Characteristics"
FL Input Current : IL= 6.0mA
FL Driving Frequency : fLF= ( 60±5 kHz )
FL Inverter : FIF1311-06A (PRONTEK Rev1.0)
The measuring method is shown in following 4.2. The items are measured under stable conditions. The
optical characteristics should be measured in a dark room ( Screen illuminance< 2lx ) or equivalent state
with the methods shown in Note (6).
25±5°C
a
65±20%RH
3.3V
RMS
4.2. Optical Specifications
NoteUnitMax.Typ.Min.ConditionsSymbolItem
Contrast Ratio
(Center 1 Point)
Average luminance
Cross Modulation
Luminance
Uniformity
Chromaticity
Viewing
Angle
13 Points CR Variation
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Red
Green
Blue
White
Hor.
Ver.
Hor.
Ver.
CR
Rx
Ry
Gx
Gy
Bx
By
Wx
Wy
θ
θ
θ
θ
δW13 Points White Variation
SHA
θ
θ
Low
θ
θ
Low
L
θ=0°, φ=0°
Viewing
normal angle
L
R
CR>=10
up
L
R
CR>=5
up
R
φ = 180
φ = 0°
φ = 90°
φ = -90°
φ = 180
φ = 0°
φ = 90°
φ = -90°
θ=0°, φ=0°
Viewing
normal angle
0.558
0.316
0.298
0.519
0.127
0.112
0.283
0.299
40
40
15
30
45
45
20
35
0.588
0.346
0.328
0.549
0.157
0.142
0.313
0.329
45
45
20
35
50
50
25
40
-170140Y
0.618
0.376
0.358
0.579
0.187
0.172
0.343
0.359
-
-
-
-
-
-
-
-
-
deg.
2
cd/m
(2), (6)--350250
(3)ms2516-Tr+ TfResponse Time
*IFL=6.0mA
FL=60±5kHz
Gray Scale Level
(Color Coordinate of
the R,G,B is based
on LPL’s equipment,
and Color Coordinate
of the W is based on
Toshiba’s equipment)
RMS
= L63 (White)
(5)%2.0--D
(1), (6)
PR650
Only for
Color
Coordinate
(7)1.61.4-
(7), A1.6--δC
(8)1.6--dLWhite Variation
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Attach the Lamp current – Luminance characteristics. The range of lamp current is shown in 3.2 (2)
A. Present CR Variation(13Points) Spec is based on PR-880 Equipment and can be changed by the
measuring equipment.
63
θ=0°, φ=0°
Normalized luminance
at each gray level
At normal viewing direction, during displaying the L0-L63 gray scale bar, luminance intensity inversion
can not be seen.
Viewing
normal angle
100100100
92.1 80.5 65.4 55
74.3 58.9 43.7 47
56.4 39.2 27.6 39
38.40 23.57 14.70 31
21.40 11.89 6.80 23
9.30 4.17 2.40 15
3.78 0.67 0.33 7
0.70 0.17 0.01 0
%
(1), (6)
(Center 1 Point)
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NoteUnitMax.Typ.Min.ConditionsGray levelItem
Note 1) Definition of viewing angle θ and φ
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φ
= 180
Note 2) LCD fixing condition for z direction.
The contrast ratio can be calculated by the following expression.
Contrast Ratio (CR) = L63 / L0
L63 : Luminance on the white raster (gray scale level L63)
L 0 : Luminance on the black raster (gray scale level L0)
°
φ
= 270
Left
,
,
°
Down
Normal
θ
Measurement
Direction
φ
Y
φ
= 90°, Up
φ
°
= 0
,
Right
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Note 3) Definition of response time
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Specification Rev. 1.0
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SHA
Tr
)
%
100
90
Optical
Response
10
0
BrightBright
Note 4) Definition of surfaceluminance of white
Measure the luminance of white at Centerpoint. Surfaceluminance of white Y
Note 5) Definition of Cross Modulation (D
D
= | YB– YA| / YA×100 (%)
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SHA
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Tf
Dark
L
Where:
YA= Luminance of measured location without darkest gray pattern (cd/m2)
YB= Luminance of measured location with darkest gray pattern (cd/m2)
(0, 0)
Gray Level 42
VIEW AREA
LG.Philips LCD.,Co.Ltd
YA(500, 225)
(1439, 899)
Gray Level 0
Gray Level 42
(0, 0)
VIEW AREA
(100, 100)
YA(500, 225)
(250, 350)
(1439, 899)
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Note 6) Measuring setup
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The measurement suppose to be executed after stabilized the panel at given temperature during 30
Min. The measurement shall be executed 30 minutes after lighting at rating. The luminance of white
should be typical luminance ( Typical Condition IL=6.0mA ). In order to stable the luminance, LCD s
hall not be got winds.
Specification Rev. 1.0
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LCD module
LCD panel
Center of the screen
( Field of view = 1 deg)
500 mm
Note 7) Definition of 13 points white variation δW, CR variation δC
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δW = Maximum luminance of 13 points / Minimum luminance of 13 points
δCR= Maximum CR 13 points / Minimum CR of 13 points
Light Shield Room
( Screen illuminance< 2lx)
Photometer
(Pritchard 880 or equivalent)
R
Horizontal Line number [pixel]
Vertical Line number [pixel]
0
223
449
673
899
45
854
0
45
6
9
11
35971910791439
2
4
LG.Philips LCD.,Co.Ltd
7 8
1
12
Active area
1394
: test point
3
10
5
13
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Note 8) Definition of White Variation dL: measure the luminance of white at 13 ×11 points.
( Field of View : 2deg. Measuring Distance : 500 mm )
φ17.5
17.5mm
L(x-1,y-1)
12
D(x+1,y-1)
L(x,y)
L(x+1,y+1)
L(x+1,y-1)
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5. Electrical Characteristics
5.1. TFT LCD module
NoteUnitMax.Typ.Min.SymbolItem
Power Supply Voltage
Differential Input
Threshold Voltage
Rush Current
Power Supply
Current
Note 1) The module should be always operated within these ranges. The "Typ." shows the recommendable value.
Note 2) Recommended LVDS transmitter : THC63LVDF823A made by THINE or equivalent, Pin to Pin
compatible with TI LVDS.
LVDS receiver included in this module is LVD4107 (LCD Controller 1chip)
Note 3) Typical condition as follows. : fV= 60Hz, fDCLK = 88.896MHz, VDD= 3.3V, DC current.
Note 4) Power dissipation check pattern.
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Specification Rev. 1.0
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Note 5) Measuring condition of rush current.
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VDDrising time is 470us
3.3V
0.9 V
DD
0.1 V
GND
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5.2. BackligntUnit
Lamp Current
Lamp Voltage
Power Consumption
Frequency
Ignition Voltage at 0°C
Ignition Voltage at 25°C
Note 1) Lamp current is measured with a high frequency current as shown below.
L
L
L
FL
V
IV
V
IV
VL: High Voltage Line
7.06.02.0I
880675640V
1415--
23/ 57
NoteUnitMax.Typ.Min.SymbolItem
RMS
V
RMS
kHz806550f
V
RMS
mm5.355.255.15-CreepageDistance
mg3.0-1.5-Mercury Qt’yof CCFL
(1)mA
(2)W4.54.1-P
(3)Hour--15,000HrOperating Life Time
(5)
(4)--(5)1180-(4)---
TFT LCD Module
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Note 2) Referto ILX VLto calculate.
Note 3) Life time of Lamp can be defined as the time in which it continues to operate under the condition
T = 25°C ± 2°C and IL= 6.0 ㎃ until one of the following events occurs.
1. When the brightness becomes 50% or lower than it’s original.
2. When the Effective ignition length becomes 80% or lower than it’s 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 4) The discharge shall be connected uniformly. Slide up method shall be used for voltage application.
Above voltage is applied voltage to both ends of the lamp as the starting voltage.
( Above value is not out put voltage of inverter.)
Note 5) The lamp shall be lighted stably. Slide up method shall be used for voltage application.
Above voltage is applied voltage to both ends of the lamp as the established starting voltage.
(Above value is not out put voltage of inverter)
GL: Low Voltage Line
A
~
FL Inverter
A
: AC ampere meter
~
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Specification Rev. 1.0
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***Requirements for a system inverter design, which is intended to have a better display performance, a
better power efficiency and a more reliable lamp, are following.
It shall help increase the lamp lifetime and reduce leakage current.
a. The asymmetry rate of the inverter waveform should be less than 10%.
b. The distortion rate of the waveform should be within √2 ±10%.
* Inverter output waveform had better be more similar to ideal sine wave.
* Asymmetry rate:
I p
| I p– I –p| / I
rms
* 100%
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I -p
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* Distortion rate
I p(or I –p) / I
rms
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Specification Rev. 1.0
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Note 6) Detail description of creepagedistance
[Section ‘A’]
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5.3. Regulation
The set (which LCD module is assembled into) should conform to the regulations below.
(1) EMI Regulations.
CISPR : Pub.22 CLASS B
FCC : PART15 CLASS B
VCCI : CLASS B
(2) Safety Regulations (Only LCD)
IEC 950
UL 1950
(3) Material list concerning
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MakerRatingProductSilkItem
EMI
Filter
DC/DC
ASIC
(Data Output)
ASIC
(Clock Output)
Power
VDD(3.3V)
Control IC for
Power supply
Switching
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Diode
Schottky
Barrier Diode
L1Inductor
PLN6012T-
100MR80
10 uH±20% (Inductance)
0.24Ω±20%(DC Resistance)
0.9A Max(Rated DC Current)
---
---
---
---ZenerDiode
NSLM3310US1
DIODESSOT-23(3pin)BAV99D2,D3,D4
DIODESSOT-23(3pin)BAT750D1
TDK
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6. Block Diagram
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LVDS
&
Timing
Control
Block
CN
1
Power
Block
:Control & Data:Power
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Lamp: SS20D3065N6580C2882600S(SKN)
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1. Hot (Pink)
2. Cold (Green)
Lamp(Sanken) P/No : 6912L-0210A
Row Driver Circuit
Backlight Lamp Ass'yJ1
Column Driver Circuit
TFT-LCD
(1440 X 900)
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7. Input Terminal Pin Assignment
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7.1. TFT LCD module
GroundGND1
Power Supply, 3.3V Typ.VCC2
Power Supply, 3.3V Typ.VCC3
DDC 3.3V powerV EEDID4
Reserved for supplier test pointNC5
DDC ClockClkEEDID6
DDC DataDATA EEDID7
Negative LVDS differential data inputOdd_RIN0-8
Positive LVDS differential data inputOdd_RIN0+9
GND
Ground10
Negative LVDS differential data inputOdd_RIN1-11
Positive LVDS differential data inputOdd_RIN1+12
GroundGND13
Negative LVDS differential data inputOdd_RIN2-14
Positive LVDS differential data inputOdd_RIN2+15
GroundGND16
Negative LVDS differential clock inputOdd_CLKIN-17
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Positive LVDS differential clock inputOdd_CLKIN+18
GroundGND19
Negative LVDS differential data inputEven_RIN0-20
Positive LVDS differential data inputEven_RIN0+21
GroundGND22
Negative LVDS differential data inputEven_RIN1-23
Positive LVDS differential data inputEven_RIN1+24
GroundGND25
Negative LVDS differential data inputEven_RIN2-26
Positive LVDS differential data inputEven_RIN2+27
GroundGND28
Negative LVDS differential clock inputEven_CLKIN-29
Positive LVDS differential clock inputEven_CLKIN+30
Specification Rev. 1.0
NotesDescriptionSymbolPin
[LVDS Receiver]
DAWIN, LVD4107x 2ea
[Connector]
GT101-30S-HR11, LGC, 30 Pin
[Connector pin arrangement]
LCD rear view
30
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1
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Date: 2007.03.06
Page 29
Specification Rev. 1.0
www.DataSheet.net/
Datasheet pdf - http://www.DataSheet4U.co.kr/
7.2. Backlight Unit
Using Connector : BHTR-02VS (Maker : JST)
(Contact Pin of VL : SBHT-002T-P0.5(Maker :JST))
(Contact Pin of GL : SBHT-002T-P0.5(Maker :JST))
7.3. LVDS Transmitter
LVDS Transmitter : THC63LVDF823A(made by THINE)or compatible.
29/ 57
FunctionCable ColorSymbolPin
High VoltagePinkVL1
Low VoltageGreenGL2
21
23
Pin Name
www.jxlcd.com
www.jxlcd.com
D1720
D1822
Y0M41VccVcc8
Y2M35NCNC14
Require SignalsPin NamePin #Require SignalsPin #
R3D348R4D41
R2D247VccVcc2
GNDGND46R5D53
R1D145G0D64
R0D044GNDDND5
NCNC43G1D76
LVDS GNDLVDS GND42G2D87
A0M
A0PY0P40G3D99
A1MY1M39G4D1010
A1PY1P38GNDGND11
LVDS VccLVDS Vcc37G5D1112
LVDS GNDLVDS GND36B0D1213
A2M
A2PY2P34B1D1315
CLKMCLKOUTM33B2D1416
CLKPCLKOUTP32GNDGND17
LVDS GNDLVDS GND31B3D1518
PLL GNDPLL GND30B4D1619
PLL VccPLL Vcc29B5
PLL GNDPLL GND28VccVcc
SHDNSHDN27HSYNC
DclkCLKIN26VSYNCD19
DE(Data Enable)D2025GNDGND24
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Page 30
Specification Rev. 1.0
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7.4. Timing Diagrams of LVDS Transmission
Switching Characteristic
VCC = 3.0 ~ 3.6V, Ta = -10 ~ +70℃
Transmitter
ParameterUnitMax.Typ.Min.Symbol
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ns5--CLK IN Transition TimetTCIT
ns32.4T14.7CLK IN PeriodtTCP
ns0.6T0.5T0.4TCLK IN High TimetTCH
ns0.6T0.5T0.4TCLK IN Low TimetTCL
ns-14.2-CLK IN to TCLK +/-DelaytTCD
ns--3.0TTL Data Setup to CLK INtTS
ns--1.5TTL Data Hold from CLK INtTH
ns1.50.70.26LVDS Transition TimetLVT
ns0.20-0.2Output Data Position 0 (T= 15.38ns)tTOP1
nsT/7 + 0.2T/7T/7 -0.2Output Data Position 1 (T= 15.38ns)tTOP0
ns2T/7 + 0.22T/72T/7 -0.2Output Data Position 2 (T= 15.38ns)tTOP2
ns3T/7 + 0.23T/73T/7 -0.2Output Data Position 3 (T= 15.38ns)tTOP3
ns4T/7 + 0.24T/74T/7 -0.2Output Data Position 4 (T= 15.38ns)tTOP4
ns5T/7 + 0.25T/75T/7 -0.2Output Data Position 5 (T= 15.38ns)tTOP5
ns6T/7 + 0.26T/76T/7 -0.2Output Data Position 6 (T= 15.38ns)tTOP6
ns10--Phase Lock Loop SettTPLL
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AC Timing Diagrams
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Transmitter Device
Specification Rev. 1.0
tTCP
tTCHtTCL
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CLK IN
TxD-Tx6
Tx+/-
TCLK+
2.0V
tTS
2.0V
0.8V
V diff=0V
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tTOP1
tTOP0
tTOP6
DATA VALID
2.0V
0.8V
tTH
2.0V
0.8V
tTCD
2.0V2.0V
0.8V
0.8V
Tx0Tx1Tx4R G BTx2Tx5Tx6
tTOP5
tTOP4
tTOP3
tTOP2
LG.Philips LCD.,Co.Ltd
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Page 32
Specification Rev. 1.0
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7.5. Input Signal, Basic Display Colors and Gray Scale of each Color
Input Color Data
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Basic
Color
RED
GREEN
BLUE
Color
Black
Red
Green
Blue
Cyan
Magenta
Yellow
White
Black
RED(Dark)
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 for LCD VCCto 0V.
Note 3) Lamp power must be turn on after power supply for LCD and interface signal are valid.
LG.Philips LCD.,Co.Ltd
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(1) Ambient Temperature : 25±5°C
(2) Ambient Humidity : 65±20%RH
(3) Illumination : 200 – 500 Lux( nominal 350 Lux) under the fluorescent lamp
(4) Viewing Distance: Approximately 30cm by the eyes of the inspector from the module
(5) Viewing angle :The surface of the module and the inspector’s line shall be at 90 ± 45 degrees.
(6) Display pattern: Pure Red, Green, Blue, Black, White, Gray level 0 -63
9.3. Defect modes
DescriptionDefect Mode
Points on the display which appear dark / bright and remain unchanged in sizeDark / Bright spots
Lines on the display which appear dark / bright and remain unchanged in sizeDark / Bright lines
Polarizer scratch
Polarizer dent
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Ripple (Pooling )
When the unit is lit a light , line is seen across a darker background; linedoes not vary
in size
When the unit is lit a light, light (white) spots appear againsta darker background, and
do not vary in size
A sub-pixel (R,G,B dot) stuck off / onBright / dark dot
Diagonal lines that appear gray with the display patterns dark and vary in sizeRubbing line
When the unit lights, lines in the minor (Vertical ) or major (Horizontal) axis appear dimDim line
When the unit lights, lines in the both minor and major axis do not appearCross line
Interference can not be seen with any bright plane display at any viewing angleInterference
When displaying sub-pixelchecker(gray level and darkest gray), flicker can not be seenFlicker
Tapping Test, Tapping area : All bezel(Metal cover) side, LCD: Full-screen gray (L32)
“Ripple (Pooling )” can not be seen in Active Area
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9.4. Mechanical Inspection
(1) Light leakage: No light leakage between metal chassis (bezel) and glass
(2) No sharp edge
(3) The mounting holes: No Changed (Side fixed type)
(4) PCB Appearance: No pattern peeling snapping / No electrically short
If there are repair portions,the repair portions on PCB is covered by epoxy resign
(5) Soldering: No cold solder joint, lead move when pulled
(6) Bezel, Frame, Connectors: No distinct stain, rust orscratch, no pin bending
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9.5. Visual Inspection
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Dark / bright spot
Specification Rev. 1.0
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Reject (mm)Count (mm)Defect type
Dark / Bright lines
L
Polarizer scratch
L
Polarizer dent / bubble
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D
W
W
D
0.2< D ≤ 0.5
N ≤ 3
0.05< W ≤ 0.07
0.3 < L ≤ 3.0
N ≤ 3
0.01 < W ≤ 0.1
0.3 < L ≤ 0.5
N ≤ 3
0.2 ≤ D ≤ 0.5
N ≤ 3
Not allowedRubbing defect
D > 0.5
W > 0.07
L > 3.0
W > 0.1
L > 0.5
D > 0.5
N > 7N ≤ 7Maximumallowable number of defects
Not allowedDim line
[ D : diameter, W : width, L : length, N : count ]
Note 1) Inspection area should be within bezel opening.
Note 2) Dusts which are bigger not less than 0.10mm (0.1≤W) shall be judged by "Average Diameter".
Note 3) Scratches which are bigger not less than 0.05mm (0.05≤W) shall be judged by "Average Diameter".
Average Diameter D = (a+b)/2 (mm)
a
b
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9.6. Electrical Inspection
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(1) Dot defect
Specification Rev. 1.0
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Defect type
Bright dots
Three or more adjacent
Dark dots
Maximum distance
between defects
1) Inspection patterns for dot defect are Pure Red, Green, Blue, Black, and White.
2) Adjacent two dots will be counted as two dots.
3) The distribution of dot defects should be below. Average value of dot defect s should be less than 1.
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Not allowedTwo adjacent
Not allowed
Not allowedThree or more adjacent
Reject Count
N > 3( Green > 2)N ≤ 2( Green ≤ 1)Random
N >4N ≤ 3Random
N > 2N ≤ 1Two adjacent
N > 7N ≤ 6Maximum allowable number of dot defect
L>16mmL ≤ 15mmBright -to -bright dot
L>11mmL ≤ 10mmDark -to -dark dot
Quantity of LCD
0 1 2 3 4 5 6 7 8
Count of dot defect in a LCD
Required distribution of dot defect
4) The definition of 2 adjacent dots.
RGBRGBRGRGBRGBRGRGBRGBRG
LG.Philips LCD.,Co.Ltd
Average dot defect N
< 1
AVE
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Specification Rev. 1.0
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(2) Light leakage
Light leakage can not be seen between metal chassis(bezel) and glass when displaying black plane.
(3) Image sticking
Image sticking pattern shall not be to persist longer than 1second after displaying following pattern 8
hoursin the room temperature condition.
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(4) Glue/stain/dirt
Glue, non-removable stain and dirt which are visible in the inspection area are not acceptable.
LG.Philips LCD.,Co.Ltd
Date: 2007.03.06
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Page 40
Specification Rev. 1.0
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Datasheet pdf - http://www.DataSheet4U.co.kr/
(3) Packing Specification
ConditionsItem
Packing Vibration
(4) Package Label
Package label should be at least shown the following information.
a) TOSHIBA code name(G33C00043110) which will be numbered by Toshiba
b) Revision number which be numbered by LCD maker
c) Quantity
d)LCD maker
e) Model number which be numbered by LCD maker
f) Production Year / Month
(5) Location of Package label : 2 points ( Side )
Frequency Range : 5 -50 Hz, Degree of acceleration 1G(9.8m/s2). Sweep rate 3 minutes
Top & Bottom 60 minutes, Right & Left 15 minutes, Back & Forth 15 minutes
1 Angle, 3 Edge, 6 Face, 76cmPacking Drop Test
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2 sides( LABEL Position)
Left
LG.Philips LCD.,Co.Ltd
Date: 2007.03.06
Right
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Specification Rev. 1.0
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11. Labels and Lamp Ass’y Exchange
11.1. LCD code Label on LCD
LCD code label should be at least shown the following information.
(1) TOSHIBA code name (G33C00043110) which will be numbered by Toshiba & Bar code
(Bar code : CODE-39 High-density )
(2) LGPL Serial numberCODE( numbered by LCD maker , less than equal 13digits)
ABCDEFGHIJKLM
A,B,C : SIZE(INCH) D : YEAR
E : MONTH F ~ M : SERIAL NO.
Note
1. YEAR
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Year
Mark
2. MONTH
Month
Mark
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Serial NO. Is printed on the label. The label is attached to the backside of the LCD module.
This is subject to change without prior notice.
200320022001
321
200452005
4
Apr5May
4
2006720078200892009
6
Jun7Jul8Aug9Sep
6
2010
0
Oct
A
Nov
B
DecMarFebJan
C321
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Example >
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LABEL : 78mm X 37mm
Specification Rev. 1.0
LPL Serial Number Code
128 High-density
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TOSHIBA CODE
39 High-density
TOSHIBA
Revision Code
The revision code is inserted in the label by Toshiba request. If the contents of the specification need to be
change under mass-production, the code can be revised after Toshiba’s approval. Although there is not
items in the contents of the specification, Toshiba can requestsLPL to change the revision code.
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11.2. Caution Textureon LCD
www.jxlcd.com
[Disposal of CCFL]
[High Voltage]
LG.Philips LCD.,Co.Ltd
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Caution: This process should be made in Clean roomwith no scratch nor particle on Polarizer and
B/L Ass’y.
(2) ② Disassembly of Tape Adhesive used for Sheets fixing (4Point).
(3) ③ Disassembly of Sheets, Light guide.
Caution: No penetration of foreign body is indispensable with no scratch on the surface of each
Sheets.
(4) ④ Disassembly of Screw(2Point) and Cover Ass’y Bottom(L)
Caution: Maximum value of torque with Screw should be below 2.5kg.cm
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② Sheets fixing
② Sheets fixing
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③ Sheets, Light guide
④ Screw (2Point)
① Board Ass’y
② Sheets fixing
② Sheets fixing
④ Cover Ass’yBottom(L)
④ Screw (2Point)
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Specification Rev. 1.0
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11.5.5. Assembly of Cover Ass’y Bottom(L), Sheets, Light guide, Tape Adhesive and Board Ass’y.
(1) ① Detach a release paper from Double Tape at the Cover Ass’y Bottom(L)
(2) ② Assembly of Cover Ass’y Bottom(L) and Screw(2Point).
Caution: Maximum value of torque with Screw shouldbe below 2.5kgf.cm
(3) ③ Assembly of Light Guide and Sheets
Caution: No penetration of foreign body is indispensable with no scratch on the surface of each
Sheet and Light guide.
(4) ④ Assembly of Tape adhesive used for Sheets fixing(4Point)
(5) ⑤ Assembly of Board Ass’y.
Caution: Pressure or stress should not be given onPCB and TCP.
① Board Ass’y④ Sheets fixing
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④ Sheets fixing
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③ Sheets, Light guide
② Screw (2Point)
④ Sheets fixing
④ Sheets fixing
① Cover Ass’yBottom(L)
② Screw (2Point)
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11.5.6. Assembly of Source PCB
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(1) ① Assembly of Source PCB.
Caution: Stress should not be given on COF
Specification Rev. 1.0
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11.5.7. Assembly of Top Case
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(1) ① Assembly of Top Case.
Caution: Pressure should not be given on PCB and COF.
Specification Rev. 1.0
51/ 57
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Specification Rev. 1.0
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11.5.6. Assembly of Source PCB
(1) ① Assembly of Source PCB & Cover shield(S)
Caution: Pressure or stress should not be given onSource COF & Source PCB..
Usage of gloves with anti-electric discharge coating is recommended
To eliminate possible damage on circuits occurred by ESD.
(2) ② Assembly of Cover shield(G)
Caution: Pressure or stress should not be given on Gate COF
(3) ③ Assembly of Tape Adhesive used for Top case fixing
④ Assembly of Tape Adhesive used for B/L Wire fixing
Caution: Pressure or stress should not be given onTop case during this process
52/ 57
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Specification Rev. 1.0
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Datasheet pdf - http://www.DataSheet4U.co.kr/
12. General Precaution
Please pay attention to the followings when you use this TFT LCD module.
12.1. Mounting Precautions
(1) You must mount a module using holes arranged in fourcorners or four sides.
(2) You should consider the mounting structure so that uneven force (ex. twisted stress) is not applied
to the module. And the case on which a module is mounted should have sufficient strength so that
external force is not transmitted directly to the module.
(3) Please attach a transparent protective plate to thesurface in order to protect the polarizer.
Transparent protective plate should have sufficient strength in order to resist external force.
(4) You should adopt radiation structure to satisfy thetemperature specification.
(5) Acetic acid type and chlorine type materials for the cover case aren’tdesirable because the former
generates corrosive gas of attacking the polarizer at high temperature and the latter causes circuit
break by electro-chemical reaction.
(6) Do not touch, push or rub the exposed polarizer with glass, tweezers or anything harder than HB
pencil lead. And please do not rub with dust clothes with chemical treatment. Do not touch the surface
of polarizer for bare hand or greasy cloth. (Some cosmetics are detrimental to the polarizer.)
(7) When the surface becomes dusty, please wipe gently with absorbent cotton or other soft materials
like chamois soaked with petroleum benzene. Normal-hexane is recommended for cleaning the
adhesives used to attach front / rear polarizers. Do not use acetone, toluene and alcohol because
they cause chemical damage to the polarizer.
(8) Wipe off saliva or water drops as soon as possible.Their long time contact with polarizer causes
deformations and color fading.
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(9) Do not open the case because inside circuits do nothave sufficient strength.
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12.2. Operating Precautions
(1) The spike noise causes the mis-operation of circuits. It should be lower than following voltage
: V = ± 200mV (Over and under shoot voltage).
(2) Response time depends on the temperature. (In lowertemperature, it becomes longer.)
(3) Brightness depends on the temperature. (In lower temperature, it becomes lower.) And in lower
temperature, response time (required time that brightness is stable after turned on ) becomes longer.
(4) Be careful for condensation at sudden temperature change. Condensation makes damage to
polarizer or electrical contacted parts. And after fading condensation, smear or spot will occur.
(5) When fixed patterns are displayed for a long time, remnant image is likely to occur.
(6) A module has high frequency circuit. If you need toshield the electromagnetic noise, please co-
work.When a Back-light unit is operating, it sounds. If you need to shield the noise, please co-work.
12.3. Electrostatic Discharge Control
Since a module is composed of electronic circuits, itis not strong to electrostatic discharge. Make
certain that treatment persons are connected to ground through wrist band etc . And don’t touch
interface pin directly.
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Date: 2007.03.06
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Specification Rev. 1.0
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12.4. Precautions for Strong Light Exposure
Strong light exposure causes degradation of polarizer and color filter.
12.5. Storage
When storing modules as spares for a long time, the following precautions are necessary.
(1) Store them in a dark place. Do not expose the module to sunlight or fluorescent light. Keep the
temperature between 5℃ and 35℃ at normal humidity.
(2) The polarizer surface should not come in contact with any other object. It is recommended that they
be stored in the container in which they were shipped.
12.6. Handling Precautions for Protection Film
(1) When the protection film is peeled off, static electricity is generated between the film and polarizer.
This should be peeled off slowly and carefully by people who areelectrically grounded and with well
ion-blown equipment or in such a condition, etc.
(2)The protection film is attached to the polarizer with a small amount of glue. If some stress is applied
to rub the protection film against the polarizer during the timeyou peel off the film, the glue is apt to
remain on the polarizer. Please carefully peel off the protection film without rubbing it against the
polarizer.
(3) When the module with protection film attached is stored for a long time, sometimes there remains a
very small amount of glue still on the polarizer after the protection film is peeled off.
(4) You can remove the glue easily. When the glue remains on the polarizer surface or its vestige is
recognized, please wipe them off with absorbent cotton waste or other soft material like chamois
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soaked with normal-hexane.
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Page 55
Specification Rev. 1.0
(decimal)
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Datasheet pdf - http://www.DataSheet4U.co.kr/
APPENDIX A. Enhanced Extended Display Identification Data (EEDIDTM) 1/3
100AProduct code0F
110B(Hex, LSB first)00
120C32-bit serial number 00
130D00
140E00
150F00
1610Week of manufacture00
1711Year of manufacture = 200711
1812EDID Structure version # = 101
1913EDID Revision # = 303
2014Video input definition = Digital I/p,non TMDS CRGB80
2115Max H image size(㎝) = 30.374㎝(30)1E
2216Max V image size(㎝) = 18.984㎝(19)13
2317Display gamma = 2.2078
2418Feature support(DPMS) = Active off, RGB Color0A
2519Red/Green low BitsC4
261ABlue/White Low Bits40
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271BRed X Rx = 0.58294
281CRed Y Ry = 0.34458
291DGreen X Gx = 0.32653
301EGreen Y Gy = 0.5478C
311FBlue X Bx = 0.15828
3220Blue Y By = 0.13723
3321White X Wx = 0.31350
3422White Y Wy = 0.32954
3523Established Timing I00
3624Established Timing II00
3725Manufacturer's Timings00
3826Standard Timing Identification 1 was not used
3927Standard Timing Identification 1 was not used
4028Standard Timing Identification 2 was not used
4129Standard Timing Identification 2 was not used
422AStandard Timing Identification 3 was not used
432BStandard Timing Identification 3 was not used
442CStandard Timing Identification 4 was not used
452DStandard Timing Identification 4 was not used
462EStandard Timing Identification 5 was not used
472FStandard Timing Identification 5 was not used
4830Standard Timing Identification 6 was not used
4931Standard Timing Identification 6 was not used
5032Standard Timing Identification 7 was not used
5133Standard Timing Identification 7 was not used
5234Standard Timing Identification 8 was not used
5335Standard Timing Identification 8 was not used
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Specification Rev. 1.0
(decimal)
895912th character of name("2")
320011
0010
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APPENDIX A. Enhanced Extended Display Identification Data (EEDIDTM) 2/3
56/ 57
Byte#Byte#
(HEX)
54361440 X 900 @ 60㎐ mode : pixel clock = 96.2㎒9410010100
5537(Stored LSB first)2500100101
5638Horizontal Active = 1440 pixelsA010100000
5739Horizontal Blanking = 320 pixels4001000000
583AHorizontal Active : Horizontal Blanking = 1440 : 3205 1 01010001
593BVertical Avtive = 900 lines8410000100
603CVertical Blanking = 12 lines0C00001100
613DVertical Active : Vertical Blanking = 900 : 123000110000
623EHorizontal Sync. Offset = 64 pixels4001000000
633FHorizontal Sync Pulse Width = 32 pixels2000100000
6440Vertical Sync Offset = 3 lines, Sync Width = 3 lines3300110011
6541Horizontal Vertical Sync Offset/Width upper 2bits = 00000000000
6642Horizontal Image Size = 303.696㎜(304)3000110000
6743Vertical Image Size = 189.81㎜ (190)BE10111110
6844Horizontal & Vertical Image Size1000010000
6945Horizontal Border = 00000000000
7046Vertical Border = 00000000000
7147
7248Detailed Timing Descriptor #20000000000
73490000000000
744A0000000000
754BMonitor nameFC11111100
764CFlag0000000000
774D1st character of name("L")4C01001100
784E2nd character of name("P")5001010000
794F3rd character of name("1")3100110001
80504th character of name("4")3400110100
81514th character of name("1")3100110001
82525th character of name("W")5701010111
83536th character of name("P")5001010000
84557th character of name("1")3100110001
www.jxlcd.com
www.jxlcd.com
85558th character of name("-")2D00101101
86569th character of name("T")5401010100
875710th character of name("L")4C01001100
885811th character of name("D")4401000100
Non-interlaced,Normal display,no stereo,Digital separate sync,H/V pol negatives
Field Name and Comments
Value
(HEX)
Value
(binary)
1800011000
Timing
Descriptor
#1
Detailed
Timing
Description
#2
905ADetailed Timing Descriptor #30000000000
915B0000000000
925C0000000000
935DMonitor range limits, binary codedFD11111101
945E0000000000
955FVertical Frequency Min : 54Hz3600110110
9660Vertical Frequency Max : 65Hz4101000001
9761Horizontal Frequency Min : 49KHz3100110001
9862Horizontal Frequency Max : 59KHz3B00111011
9963Pixel Clock Max : 104MHz0A00001010
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Page 57
Specification Rev. 1.0
(decimal)
www.DataSheet.net/
Datasheet pdf - http://www.DataSheet4U.co.kr/
APPENDIX A. Enhanced Extended Display Identification Data (EEDIDTM) 3/3
57/ 57
Byte#Byte#
(HEX)
1086CDetailed Timing Descriptor #40000000000
1096D0000000000
1106E0000000000
1116FFE11111110
112700000000000
113711st character of name("L")4C01001100
114722nd character of name("P")5001010000
115733rd character of name("1")3100110001
116744th character of name("4")3400110100
117754th character of name("1")3100110001
118765th character of name("W")5701010111
119776th character of name("P")5001010000
120787th character of name("1")3100110001
121798th character of name("-")2D00101101
1227A9th character of name("T")5401010100
1237B10th character of name("L")4C01001100
1247C11th character of name("D")4401000100
1257D12th character of name("2")3200110010
1267EExtension flag = 000000000000
1277FChecksumD211010010
Field Name and Comments
Value
(HEX)
Value
(binary)
Detailed
Timing
Description
#4
Extension Flag
Checksum
www.jxlcd.com
www.jxlcd.com
LG.Philips LCD.,Co.Ltd
Date: 2007.03.06
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