LG LP-156WH1-TLA3 Service manual

Product Specification
SPECIFICATION
LP156WH1
Liquid Crystal Display
FOR
)
( (
Preliminary Specification
)
Final Specification
MODEL
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15.6” HD TFT LCDTitle
HPCustomer
*When you obtain standard approval,
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please use the above model name without suffix
LG Display Co., Ltd.SUPPLIER LP156WH1*MODEL TLA3Suffix
SIGNATUREAPPROVED BY
/
/
/
Please return 1 copy for your confirmation with your signature and comments.
Ver. 1.0 Dec. 22, 2008
APPROVED BY
APPROVED BY
K. S. Kwon / S.Manager
K. S. Kwon / S.Manager
REVIEWED BY
REVIEWED BY
C. I. Kim / Manager
PREPARED BY
PREPARED BY
B. T. Jang / Engineer
D. J. Lee / Engineer
Products Engineering Dept.
LG Display Co., Ltd
SIGNATURE
SIGNATURE
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Product Specification
Contents
LP156WH1
Liquid Crystal Display
ITEMNo
COVER CONTENTS RECORD OF REVISIONS GENERAL DESCRIPTION1 ABSOLUTE MAXIMUM RATINGS2
ELECTRICAL SPECIFICATIONS3 ELECTRICAL CHARACTREISTICS 3-1
INTERFACE CONNECTIONS 3-2 LVDS SIGNAL TIMING SPECIFICATION 3-3 SIGNAL TIMING SPECIFICATIONS 3-3 SIGNAL TIMING WAVEFORMS 3-4 COLOR INPUT DATA REFERNECE 3-5
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POWER SEQUENCE 3-6 OPTICAL SFECIFICATIONS4
Page
1 2 3 4 5
6-7
8
9-10
11 11 12 13
14-16
MECHANICAL CHARACTERISTICS5 APPENDIX. LPL PROPOSAL FOR SYSTEM COVER DESIGN A RELIABLITY6 INTERNATIONAL STANDARDS7 SAFETY 7-1 EMC 7-2 PACKING8 DESIGNATION OF LOT MARK 8-1 PACKING FORM 8-2 PRECAUTIONS9 APPENDIX. Enhanced Extended Display Identification Data A
Ver. 1.0 Dec. 22, 2008
17-20 21-23
24
25 25
26
26 27-28 29-31
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Product Specification
RECORD OF REVISIONS
LP156WH1
Liquid Crystal Display
DescriptionPageRevision DateRevision No
First Draft (Preliminary Specification)-Oct. 28. 20080.0
Updated LCM Diagram21-22
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EDID
ver
0.0
0.0 Update Rear View Drawing19Oct. 29. 20080.1
1.0 Update EDID ( Position swap product code )29-31Dec. 18. 20080.2
1.0 Final Draft-Dec. 22. 20081.0
Ver. 1.0 Dec. 22, 2008
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LP156WH1
Liquid Crystal Display
Product Specification
1. General Description
The LP156WH1 is a Color Active Matrix Liquid Crystal Display with an integral Cold Cathode Fluorescent Lamp (CCFL) backlight system. The matrix employs a-Si Thin Film Transistor as the active element. It is a transmissive type display operating in the normally white mode. This TFT-LCD has 15.6 inches diagonally measured active display area with HD resolution(768 vertical by 1366 horizontal pixel array). Each pixel is divided into Red, Green and Blue sub-pixels or dots which are arranged in vertical stripes. Gray scale or the brightness of the sub-pixel color is determined with a 6-bit gray scale signal for each dot, thus, presenting a palette of more than 262,144 colors. The LP156WH1 has been designed to apply the interface method that enables low power, high speed, low EMI. The LP156WH1 is intended to support applications where thin thickness, low power are critical factors and graphic displays are important. In combination with the vertical arrangement of the sub-pixels, the LP156WH1 characteristics provide an excellent flat display for office automation products such as Notebook PC.
CN1 User connector 30 Pin
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CN
General Features
LVDS &
Timing
Control
Block
POWE
R
BLOCK
EDID
BLOCK
Control & Data Power EDID signal & Power
15.6 inches diagonal Active Screen Size
359.3(H, typ) × 209.5(V, typ) × 6.5(D,max) [mm]Outline Dimension
0.252mm × 0.252 mmPixel Pitch 1366 horiz. By 768 vert. Pixels RGB strip arrangementPixel Format 6-bit, 262,144 colorsColor Depth 220 cd/m2(Typ.5 point)Luminance, White Total 5.75 Watt(Typ.) @ LCM circuit 1.3 Watt(Typ.), B/L input 4.45 Watt(Typ.)Power Consumption
550g (Max.)Weight Transmissive mode, normally whiteDisplay Operating Mode Hard Coating(3H), Glare treatment of the front polarizerSurface Treatment
YesRoHS Comply
1
GIP(Gate In Panel)
768
Source Driver Circuit
1
TFT-LCD Panel
(1366 X 768)
Backlight Ass’y
1366
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LP156WH1
Liquid Crystal Display
Product Specification
2. Absolute Maximum Ratings
The following are maximum values which, if exceeded, may cause faulty operation or damage to the unit.
Table 1. ABSOLUTE MAXIMUM RATINGS
Parameter Notes
Power Input Voltage Operating Temperature Storage Temperature Operating Ambient Humidity Storage Humidity
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.
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Wet Bulb Temperature []
20
10
0
Symbol
60
50
40
30
Values
MaxMin
90% 80%
60%
40%
20%
10%
Units
Humidity[(%)RH]
Storage
Operation
at 25 5CVdc4.0-0.3VCC
1C500TOP 1C60-20HST 1%RH9010HOP 1%RH9010HST
-20
Ver. 1.0 Dec. 22, 2008
10
20 30 40 50
Dry Bulb Temperature []
60 70 800
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LP156WH1
Liquid Crystal Display
Product Specification
3. Electrical Specifications 3-1. Electrical Characteristics
The LP156WH1 requires two power inputs. One is employed to power the LCD electronics and to drive the
TFT array and liquid crystal. The second input which powers the CCFL, is typically generated by an
inverter. The inverter is an external unit to the LCD.
Table 2. ELECTRICAL CHARACTERISTICS
Parameter Symbol
MODULE :
Power Supply Input Current
LAMP : Operating Voltage Operating Current Power Consumption Operating Frequency
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Established Starting Voltage at 25 at 0
Note)
1. The specified current and power consumption are under the Vcc = 3.3V , 25℃, fv = 60Hz condition whereas Mosaic pattern is displayed and fv is the frame frequency.
I
Vs
CC
BL
BL
BL
BL
Values
MaxTypMin
3.63.33.0VCC Power Supply Input Voltage
870(3.0mA)685(6.5mA)660(7.0mA)V
7.06.53.0I
4.94.45-P
1300 1500
V
V
kHz706040f
V V
NotesUnit
DC
RMS
RMS
RMS RMS
1mA455390­1Watt1.51.3-Pc Power Consumption 2Ohm11010090Zm Differential Impedance
3mA
4Min3--Ts Discharge Stabilization Time 5Hrs--10,000 Life Time
2. This impedance value is needed to proper display and measured form LVDS Tx to the mating connector.
3. The typical operating current is for the typical surface luminance (LWH) in optical characteristics.
4. Define the brightness of the lamp after being lighted for 5 minutes as 100%, Ts is the time required for the brightness of the center of the lamp to be not less than 95%.
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LP156WH1
Liquid Crystal Display
Product Specification
Note)
5. The life time is determined as the time at which brightness of lamp is 50% compare to that of initial value at the typical lamp current.
6. The output of the inverter must have symmetrical(negative and positive) voltage waveform and symmetrical current waveform.(Asymmetrical ratio is less than 10%) Please do not use the inverter which has asymmetrical voltage and asymmetrical 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.
7. It is defined the brightness of the lamp after being lighted for 5 minutes as 100%. TS is the time required for the brightness of the center of the lamp to be not less than 95%.
8. The lamp power consumption shown above does not include loss of external inverter. The applied lamp current is a typical one.
9. 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:
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10. Inverter open voltage must be more than lamp voltage for more than 1 second for start-up. Otherwise, the lamps may not be turned on. Do not attach a conducting tape to lamp connecting wire. If the lamp wire attach to a conducting tape, TFT-LCD Module has a low luminance and the inverter has abnormal action. Because leakage current is occurred between lamp wire and conducting tape. Ex of current wave)
Normal current wave
- Standard
I p
I -p
Abnormal current wave
- Bad
| I p – I –p | / I * Distortion rate I p (or I –p) / I
Abnormal current wave
- Bad
* 100%
rms
rms
Abnormal current wave
- Bad
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LP156WH1
Liquid Crystal Display
Product Specification
3-2. Interface Connections
This LCD employs two interface connections, a 30 pin connector is used for the module electronics interface and the other connector is used for the integral backlight system. The electronics interface connector is a model FI-XB30SRL-HF11 manufactured by JAE.
Table 3. MODULE CONNECTOR PIN CONFIGURATION (CN1)
NotesDescriptionSymbolPin
GroundGND1 Power Supply, 3.3V Typ.VCC2 Power Supply, 3.3V Typ.VCC3 DDC 3.3V powerV EEDID4 No ConnectionNC5 DDC ClockClk EEDID6 DDC DataDATA EEDID7 Negative LVDS differential data inputOdd_RIN 0-8 Positive LVDS differential data inputOdd_RIN 0+9 GroundGND10 Negative LVDS differential data inputOdd_RIN 1- 11 Positive LVDS differential data inputOdd_RIN 1+12 GroundGND13 Negative LVDS differential data inputOdd_RIN 2-14 Positive LVDS differential data inputOdd_RIN 2+15 GroundGND16 Negative LVDS differential clock inputOdd_CLKIN-17
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NC No Connection21
Positive LVDS differential clock inputOdd_CLKIN+18 GroundGND19 No ConnectionNC20
No ConnectionNC22 No ConnectionNC23 No ConnectionNC24 No ConnectionNC25 No ConnectionNC26 No ConnectionNC27 No ConnectionNC28 No ConnectionNC29 No ConnectionNC30
The backlight interface connector is a model BHSR-02VS-1, manufactured by JST or Compatible. The mating connector part number is AMP1674817-2 or equivalent.
Table 4. BACKLIGHT CONNECTOR PIN CONFIGURATION (J3)
1, Interface chips
1.1 LCD : SW, SW0624 (LCD Controller) including LVDS Receiver
1.2 System : THC63LVDF823A or equivalent * Pin to Pin compatible with LVDS
2. Connector
2.1 LCD :FI-XB30SRL-HF11 ,JAE or its compatibles
2.2 Mating : FI-X30M or equivalent.
2.3 Connector pin arrangement
30
[LCD Module Rear View]
PIN1
PIN2PIN2
1
NotesDescriptionSymbolPin
1Power supply for lamp (High voltage side)HV1 1Power supply for lamp (Low voltage side)LV2
Notes : 1. The high voltage side terminal is colored Pink and the low voltage side terminal is Green.
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Product Specification
LVDS +
LVDS -
0V
V
CM
# |VID| = |(LVDS +) – (LVDS -)| # VCM= {(LVDS +) + ( LVDS -)}/2
|VID|
V
IN_MAXVIN_MIN
LVDS Data
t
SKEW
LVDS Clock
T
clk
t
SKEW (Fclk
= 1/T
clk
)
1) 85MHz > Fclk 65MHz : -400 ~ +400
2) 65MHz > Fclk 25MHz : -600 ~ +600
3-3. LVDS Signal Timing Specifications
3-3-1. DC Specification
LP156WH1
Liquid Crystal Display
Description
LVDS Common mode Voltage LVDS Input Voltage Range
3-3-2. AC Specification
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LVDS Clock to Data Skew Margin
Symbo
l
CM
IN
SKEW
SKEW
NotesUnitMaxMin
-mV600100|VID|LVDS Differential Voltage
-V1.80.6V
-V2.10.3V
NotesUnitMaxMinSymbolDescription
ps+ 400 400-t
600-
ps+ 600t
85MHz > Fclk
65MHz
65MHz > Fclk
25MHz
LVDS Clock to Clock Skew Margin (Even to Odd)
Maximum deviation of input clock frequency during SSC
Maximum modulation frequency of input clock during SSC
Ver. 1.0 Dec. 22, 2008
SKEW_EO
DEV
MOD
- 1/7
+ 1/7t
T
clk
%± 3-F
KHz200-F
-
-
-
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LVDS Even Data
LVDS Odd Clock
LVDS Even Clock
t
SKEW_EO
T
clk
T
clk
Freq.
F
max
F
center
F
min
Product Specification
< Clock skew margin between channel >
LP156WH1
Liquid Crystal Display
F
* F
center
DEV
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3-3-3. Data Format
1) LVDS 1 Port
RCLK+
RA+/-
RB+/-
RC+/-
R3 R2
G4 G3
B5 B4
R1 R0
G2 G1
B3 B2
1
F
MOD
< Spread Spectrum >
G0 R5 R4 R3 R2 R1 R0
B1 B0 G5 G4 G3 G2 G1
DE VSYNC HSYNC B5 B4 B3 B2
Time
G0
B1
DE
VSYNC HSYNC
R5 R4
B0 G5
Ver. 1.0 Dec. 22, 2008
RD+/-
G7 G6
Previous (N-1)th Cycle Next(N+1)th Cycle
R7 R6
X B7 B6 G7 G6 R7 R6
Current (Nth) Cycle
< LVDS Data Format >
X
B7 B6
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