SAMSUNG LTA400HF11-W Specification

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Approval
Approval
Customer :GA
SAMSUNG TFT--
SAMSUNG TFT
SAMSUNG TFT-LCD
MODEL
MODEL
MODEL : LTA400HF11-W
NOTE :
LCD
LCD
: LTA400HF11--
: LTA400HF11
DATE : 17. Mar. 2010
W
W
Customer’’
Customer
zpnuh{|yl
Samsung Electronics Co . , LTD.
s Approval
s Approval
DATE
LCD Business
hwwyv}hlkGi
wylwhylkGi
SUNOK.SONG
DATE
17.Mar.2010
DATE
17.Mar.2010
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Contents
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Revision History -------------------------------------------------------------------------------------------- (3)
General Description --------------------------------------------------------------------------------------- (4)
General Information --------------------------------------------------------------------------------------- (4)
1. Absolute Maximum Ratings -------------------------------------------------------------------------- (5)
2. Optical Characteristics --------------------------------------------------------------------------------- (6)
3. Electrical Characteristics ------------------------------------------------------------------------------- (9)
3.1 TFT LCD Module
3.2 Back Light Unit
3.3 Inverter Input & Specification
4. Input Terminal Pin Assignment --------------------------------------------------------------------- (12)
4.1 Input Signal & Power
4.2 Inverter Input Pin Configuration
4.3 Inverter Input Power Sequence
4.4 LVDS Interface
4.5 Input Signals, Basic Display Colors and Gray Scale of Each Color
5. Interface Timing ---------------------------------------------------------------------------------------- (18)
5.1 Timing Parameters (DE only mode)
5.2 Timing Diagrams of interface Signal (DE only mode)
5.3 Power ON/OFF Sequence
6. Outline Dimension -------------------------------------------------------------------------------------- (21)
7. Reliability test ---------------------------------------------------------------------------------------------(23)
8. Packing --------------------------------------------------------------------------------------------------- (24)
9. Marking & Others --------------------------------------------------------------------------------------- (25)
10. General Precaution ----------------------------------------------------------------------------------- (26)
10.1 Handling
10.2 Storage
10.3 Operation
10.4 Operation Condition Guide
10.5 Others
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* Revision History
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Date
Mar 17,
2010
Rev.
No
000 all First Issued
Page Summary
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General Description
Description
LTA400HF11 is a color active matrix liquid crystal display (LCD) that uses amorphous silicon
TFT(Thin Film Transistor) as switching components. This model is composed of a TFT LCD panel, a driver circuit and a back light unit. The resolution of a 40.0“ is 1920 x 1080 and this model can display up to 1.07 Billion colors with wide viewing angle of 89or higher in all directions. This panel is intended to support applications to provide a excellent performance for Flat Panel Display such as Home-alone Multimedia TFT-LCD TV and High Definition TV
Features
RoHS compliance (Pb-free)High contrast ratio & aperture ratio with wide color gamutSPVA(Super Patterned Vertical Align) modeWide viewing angle (·178¶)High speed response
FHD resolution (16:9)
Low Power consumptionDirect Type 12 CCFLs(Cold Cathode Fluorescent Lamp)DE (Data Enable) mode4ch LVDS (Low Voltage Differential Signaling) interface (4pixel/clock)
( & Natural Motion (DFR: Double Frame Rate) )
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General Information
Module Size
952.0(H
Haze 4.5% , Hard Coating 3HSurface Treatment
RGB vertical stripePixel Arrangement
Normally BlackDisplay Mode
) x551.0(V
TYP
56.6 (D
450 (Typ.)Luminance of White
MAX
UnitSpecificationItems
)
TYP
)
mm
g9,000 (Max)Weight
mm0.46125(H) x 0.46125(W)Pixel Pitch
mm885.6(H) x 498.15(V)Active Display Area
colors8 bit + FRC – 1.07 BillionDisplay Colors
pixel1920 x 1080Number of Pixels
cd/m
2
Note
·1.0mm
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1. Absolute Maximum Ratings
If the condition exceeds maximum ratings, it can cause malfunction or unrecoverable damage to the device.
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NoteUnitMax.Min.SymbolItem
Power Supply Voltage
Storage temperature
Operating temperature
Surface temperature
DD
STG
OPR
SUR
X,Y,Z 50
Vibration ( non - operating )
Note (1) Ta= 25 · 2 ¶C
(2) Temperature and relative humidity range are shown in the figure below.
a. 90 % RH Max. (Ta ˺ 39 ¶C) b. Relative Humidity is 90% or less. (Ta ஘39 ¶C) c. No condensation
(3) Although abnormal visual problems can be occurred in T
is not damaged in this range.
(4) 11ms, sine wave, one time for ·X, ·Y, ·Z axis (5) 10-300 Hz, Sweep rate 10min, 30min for X,Y,Z axis
NOP
SUR
V13.2GND-0.5V
V5-Max. LumDimming Control
65-20T
500T
600T
range, the polarizer
(1)
(2)
(3)
(4)GShock ( non - operating )
(5)G1.5-V
Fig. Temperature and Relative humidity range
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2. Optical Characteristics
The optical characteristics should be measured in a dark room or equivalent. Measuring equipment :
Contrast Ratio
(Center of screen)
Response
Time
Luminance of White
(Center of screen)
Red
Color
Chromaticity
(CIE 1931)
Green
Blue
TOPCON RD-80S, TOPCON SR-3, ELDIM EZ-Contrast
(Ta = 25 · 2¶C, VDD=12V, fv= 120Hz, f
= 297.0MHz, Dimming = Max)
DCLK
-5,0003,000C/R
-6-TgG-to-G
-450360Y
Rx
L
Normal
qL,R =0
0.640
0.330Ry
qU,D =0
0.285Gx
Viewing
Angle
TYP.
-0.03
0.610Gy
0.150Bx
TYP.
+0.03
0.059By
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NoteUnitMax.Typ.Min.ConditionSymbolItem
(1)
SR-3
msec
cd/m
2
(3)
RD-80S
(4)
SR-3
(5),(6)
SR-3
White
Hor.
Viewing
Angle
Ver.
White Brightness
Uniformity
(9 Points)
- Test Equipment Setup
The measurement should be executed in a stable, windless and dark room between 40min and 60min after lighting the back light at the given temperature for stabilization of the back light. This should be measured in the center of screen.
0.280Wx
0.290Wy
%-72--Color Gamut
K-10,000--Color Temperature
q
L
R
U
D
uni
C/R˻10
-8975
-8975q Degree
-8975q
-8975q
%25--B
(5)
SR-3
(6)
EZ-Contrast
(2)
SR-3
Environment condition : Ta = 25 · 2 ¶C
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Field Photo detector
TFT - LCD Module
- Definition of test point
320 960 1600
Photo detector
2SR-3
1RD-80S
Field
SR-3 : 50 RD-80S : 50
LCD Panel
The center of the screen
180
540
900
Note (1) Definition of Contrast Ratio (C/R)
: Ratio of gray max (Gmax) & gray min (Gmin) at the center point of the panel
G
CR
/
max
G
min
Gmax : Luminance with all pixels white Gmin : Luminance with all pixels black
Active Area
Test Point
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Note (2) Definition of 9 points brightness uniformity (Test pattern : Full White )
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Buni
BB
(max min)
100
B
max
Bmax : Maximum brightness Bmin : Minimum brightness
Note (3) Definition of Response time : Sum of Tr, Tf
Display data
Optical Instruments
Response
100%
90%
10%
0%
Black (data off)
T
R
White (data on)
Black (data off)
T
F
TIME
Note (4) Definition of Luminance of White : Luminance of white at center point
Note (5) Definition of Color Chromaticity (CIE 1931)
Color coordinate of Red, Green, Blue & White at center point
Note (6) Definition of Viewing Angle
: Viewing angle range (C/R ı10)
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3. Electrical Characteristics
3.1 TFT LCD Module
The connector for display data & timing signal should be connected.
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Ta = 25¶C · 2 ¶C
NoteUnitMax.Typ.Min.SymbolItem
Voltage of Power Supply
Current of
(a) Black
Power
DD
I
DD
Supply
Vsync Frequency
Hsync Frequency
Main Frequency
Rush Current
V
H
DCLK
RUSH
Note (1) The ripple voltage should be controlled under 10% of VDD.
(2) fV=120Hz, fDCLK = 297.0MHz, V
= 12.0V, DC Current.
DD
(3) Power dissipation check pattern (LCD Module only)
a) Black Pattern b) White Pattern c) Sub V-stripe
(1)V13.212.010.8V
-560-
-540-(b) White
mA
mA
(2),(3)
mA14001100-(c) Sub V-stripe
Hz125120.095f
kHz140135.0120f
MHz310297.0260f
(4)A7--I
(4) Measurement Conditions
V
100%
DD
90%
10% GND
T
=470
RUSH
Rush Current I
can be measured when T
RUSH
. is 470༕.
RUSH
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3.2 Back Light Unit
The back light unit contains 12 direct-lighting type CCFLs ( Cold Cathode Fluorescent Lamp )
Socket
HOT 1
HOT 2
Inverter
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LCD
Module
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Ta=25 · 2¶C
HOT 11
HOT 12
NoteUnitMax.Typ.Min.SymbolItem
(1)Hour--50,000HrOperating Life Time
Note (1) It is defined as the time to take until the brightness reduces to 50% of its original
value.
[Operating condition : Ta = 25·2୅, For single lamp only. ]
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3.3 Inverter Input Condition & Specification
ConditionsSymbolItems
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Specifications
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NoteUnit
Max.Typ.Min.
Input
Voltage
Input
Current
Lamp
Current
Frequency
Backlight
On/Off
Dimming
Control
PWM
Voltage
PWM
Frequency
I
OVER
SAT
O,MAX
LAMP
V
DIM
V
PWM
PWM
Vin=24.0V
Vdim =3.3V
V262422-Vin
4.764.47-
Ta=25·YG¶j
OYP
(1)
A
4.163.75-I
(2)
mArms9.38.88.3Vdim =3.3 VI
kHz504846Vin=24.0 VF
-
5.25-2.4Vin=24.0 VON (3)V
0.8-0Vin=24.0 VOFF
--3.3Max Lum (3)V
0--Min. Lum
5.0-3.0Max (3)V
0.4-0.0Min
Hz180-120Vin=24.0 VF
(4)%100-20Vin=24.0 VDutyPWM Duty
Note) Power Consumption is measured when 450 [cd/m ] of luminance which is the typical
luminance. Lamp Current is measured at the point before Lamp.
(1) Max Value of the Power Consumption is measured during initial turn on time* of the backlight (2) Max Value of the Power Consumption is measured after 60 min warm-up. (3) The ripple voltage should be controlled under 10% of Input Signal (4) Duty = On/(On+Off) * 100
* Initial turn-on time : From 0sec to 60min after turn-on
On Off
Max
Min
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4. Input Terminal Pin Assignment
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4.1.1 Input Signal & Power Connector : FI-RE41S-HF (JAE/UJU)
DescriptionSymbolPinDescriptionPin
Rx1[3]P
Rx1[4]N22Vdd(12V)2
Rx1[4]P23Vdd(12V)3
GND
Rx3[0]N25Vdd(12V)5
Rx3[0]P26No Connection6
Rx3[1]N27GND7
Rx3[1]P28GND8
Rx3[2]N29GND9
Rx3[2]P30Rx1[0]N
10
21Vdd(12V)1
24Vdd(12V)4
ODD LVDS
SIGNAL
31Rx1[0]P11
34Rx1[2]N14
ODD LVDS
SIGNAL
Note) No Connection: This PINS are only used for SAMSUNG internal using.
GND
Rx3CLK-32Rx1[1]N12
Rx3CLK+33Rx1[1]P13
GND
Rx3[3]N35Rx1[2]P15
Rx3[3]P36GND16
Rx3[4]N37Rx1CLK-17
Rx3[4]P38Rx1CLK+18
GND39GND19
No Connection40Rx1[3]N20
No Connection41
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4.1.2 Input Signal & Power Connector : FI-RE51S-HF (JAE/UJU)
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DescriptionPinDescriptionPin
10
Rx2[0]N
Rx2[0]P
Rx2[1]N
Rx2[1]P
Rx2[2]N
Rx2[2]P
26Vdd(12V)1
27Vdd(12V)2
28Vdd(12V)3
29Vdd(12V)4
30Vdd(12V)5
31No Connection6
32GND7
33GND8
34GND9
35
3611
3712
3813
EVEN LVDS
SIGNAL
Rx4[0]P
Rx4[1]N
Rx4[1]P
Rx4[2]N
Rx4[2]P
GND
Rx4CLK-
Rx4CLK+
GND
Rx4[3]N
Rx4[3]P
Rx4[4]N
Rx4[4]P
GND3914
No Connection4015
GND
EVEN LVDS
SIGNAL
NOTE) No connection : This Pins are only used for SAMSUNG internal using
Rx2CLK-
Rx2CLK+
GND
Rx2[3]N
Rx2[3]P
Rx2[4]N
Rx2[4]P
GND
Rx4[0]N
No Connection4116
No Connection4217
No Connection4318
No Connection4419
LVDS Option * Note(1)4520
No Connection4621
No Connection4722
No Connection4823
No Connection4924
No Connection5025
No Connection51
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Note) Pin number starts from Right side
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PCB
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Pin No. 1 Pin No. 41
#1 #41
#1
#41
Pin No. 1 Pin No. 51
#1
#1
#51
#51
Fig. Connector diagram
a. All GND pins should be connected together and also be connected to the LCD’s
metal chassis. b. All power input pins should be connected together. c. All NC pins should be separated from other signal or power.
Note(1) LVDS OPTION : If this PIN HIGH ( 3.3V ) ˧ Normal LVDS format
LOW ( GND ) ˧ JEIDA LVDS format
SEQUENCE : On = VDD(T1) ˧ LVDS Option ˧ Interface Signal(T2)
OFF = Interface Signal(T3) ˧ LVDS Option ˧ VDD
Vin
LVDS
Option
LVDS Signal
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T2
T3
LVDS Option Sequence
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4.2. Inverter Input Pin Configuration
Pin No.
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Connector : 20022WR-14B1 (Yeon-ho)
Pin Configuration(FUNCTION)
Master
24 V1
24 V2
24 V3
24 V4
24 V5
GND6
GND7
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Error Out 11
Backlight On /Off
Dimming Control
External PWM
[ON:2.4 – 5.25 V, OFF: 0 - 0.8 V]12
[0V:Min, 3.3V:Max] *Note(1)13
Note(1) If use Dimming Control, Pin 14 Must be N.C
If use External PWM, Pin 13 Must be N.C & remove Sync cable
4.3. Inverter Input Power Sequence
Vin (24V)
0.02sec [Min]
Dimming Control
GND8
GND9
GND10
[20~100%] *Note(1)14
External PWM
0.02sec [Min]
Backlight On/Off
0sec [Min]
Note) SEQUENCE : On = Vin(24V) > Dimming Control˻ Backlight On/off
OFF = Backlight On/Off ˻ Dimming Control > Vin(24V)
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0 sec [Min]
0.5sec [Min]
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4.4 LVDS Interface
- LVDS Receiver : Tcon (merged)
- Data Format (JEIDA & Normal)
TxOUT/RxIN0
TxOUT/RxIN1
JEIDA -DATA
R4 R5 R6 R7 R8 R9 G4 G5 G6 G7 G8 G9
B4 B5
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Normal -DATALVDS pin
R0TxIN/RxOUT0 R1TxIN/RxOUT1 R2TxIN/RxOUT2 R3TxIN/RxOUT3 R4TxIN/RxOUT4 R5TxIN/RxOUT6 G0TxIN/RxOUT7 G1TxIN/RxOUT8 G2TxIN/RxOUT9 G3TxIN/RxOUT12 G4TxIN/RxOUT13 G5TxIN/RxOUT14 B0TxIN/RxOUT15 B1TxIN/RxOUT18
TxOUT/RxIN2
TxOUT/RxIN3
B6 B7 B8 B9
HSYNC
VSYNC
DEN
R2 R3 G2 G3
B2 B3
RESERVED
R0 R1 G0
B2TxIN/RxOUT19 B3TxIN/RxOUT20 B4TxIN/RxOUT21
B5TxIN/RxOUT22 HSYNCTxIN/RxOUT24 VSYNCTxIN/RxOUT25
DENTxIN/RxOUT26
R6TxIN/RxOUT27
R7TxIN/RxOUT5
G6TxIN/RxOUT10
G7TxIN/RxOUT11
B6TxIN/RxOUT16
B7TxIN/RxOUT17
RESERVEDTxIN/RxOUT23
R8TxIN/RxOUT28
R9TxIN/RxOUT29
G8TxIN/RxOUT30
TxOUT/RxIN4
G1
B0 B1
RESERVED
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RESERVEDTxIN/RxOUT34
G9TxIN/RxOUT31
B8TxIN/RxOUT32
B9TxIN/RxOUT33
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4.5 Input Signals, Basic Display Colors and Gray Scale of Each Color
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COLOR
BASIC
COLOR
GRAY
SCALE
OF
D
RE
DISPLAY
(8bit)
LACK
UE
DA
RK
˦
˨
LIGHT
DATA SIGNAL
BLUEGREENRED
G8
R8
R9
0
0
0
0
000000000BL
0
0
0
0
1
1
1
A
11111MAGENT
1
1
1
1
1
0
0
0
0
0
0
:
:
:
:
1
1
1
1
1
1
G9
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
0
0
:
:
:
:
::::::::::::::::::
0
0
0
0
0
0
B7B6B5B4B3B2B1B0G7G6G5G4G3G2G1G0R7R6R5R4R3R2R1R0
00000000000000000000000BLACK
::::::::::::::::::::::::
::::::
GRAY SCALE LEVEL
B8
B9
0
0
-000000000000000000000000B
1
1
-111111110000000
0
0
-000000001111111100000000GREEN
1
1
-111111111111111100000000CYAN
0
0
-000000000000000011111111RED
1
1
-1111111100000000111
0
0
-000000001111111111111111YELLOW
1
1
-111111111111111111111111WHITE
0
0
R00
0
0
R1000000000000000000000001
0
0
R2000000000000000000000010
:
:
R3~
R1020
:
:
0
0
R1021000000000000000011111101
0
0
R1022000000000000000011111110
0
0
R1023000000000000000011111111RED
ACK
GRAY
SCALE
OF
GREEN
GRAY
SCALE
OF
BLUE
DARK
˦
˨
LIGHT
ACK
DARK
˦
˨
LIGHT
000BL
Note) Definition of Gray :
Rn : Red Gray, Gn : Green Gray, Bn : Blue Gray (n = Gray level)
Input Signal : 0 = Low level voltage, 1 = High level voltage
0
0
0
0
0
0
:
:
::::::::
:
:
0
0
0
0
0
0
0
0
0
0
0
0
:
:
:
:
0
0
0
0
0
0
000000000000BL
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
G0000000000000
0
0
::::::::::::::::::::::::
:
::::::::::::::::
:
0
0
0
0
0
0
::::::::::::::::::::::::
:
:
::::::::::::::::::::::::
1
1
1
G1000000000000000100000000
0
G2000000000000001000000000
0
:
G3~
G1020
:
G1021000000001111110100000000
0
0
G1022000000001111111000000000
G1023000000001111111100000000GREEN
0
B0000000000000000000000
0
B1000000010000000000000000
0
B2000000100000000000000000
0
:
B3~
B1020
:
1
B1021111111010000000000000000
1
B1022111111100000000000000000
1
B1023111111110000000000000000BLUE
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5. Interface Timing
5.1 Timing Parameters ( DE mode )
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NOTEUnitMAX.TYP.MIN.SYMBOLITEMSIGNAL
Clock
Hsync
Vsync
Frequency
C
H
V
Active
Vertical
Display
Period
VD
Display Term
Vertical
Total
V
Active
Horizontal
Display
Period
HD
Display Term
Horizontal
Total
H
Note) This product is DE mode. The Hsync & Vsync signal must be inputted
-MHz305.0297.0260.01/T
-KHz140.0135.0120.0F
-Hz125.0120.095.0F
-Lines-1080-T
-Lines138011251092T
-Clocks-1920-T
-clocks234822002092T
(1) Test Point : TTL control signal and CLK at LVDS Tx input terminal in system (2) Internal VDD = 3.3V (3) Spread spectrum
- Modulation rate (max) : · 1.5 %
- Modulation Frequency : under 300KHz
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5.2 Timing diagrams of interface signal ( DE mode )
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TV
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DE
DE
DCLK
DATA
SIGNALS
TVD
TVB
TH
THD
TC
DCLK
DISPLAY
DATA
DE
TC
TCH
TDS TDH
TES
TCL
0.5 V
0.5 V
CC
0.5 V
CC
CC
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5.3 Power ON/OFF Sequence
To prevent a latch-up or DC operation of the LCD Module, the power on/off
sequence should be as the diagram below.
0msec<T1˺10msec
T2˻ 840msec 0<T3˺50msec 1000msec˺T4
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T1 : VDDrising time from 10% to 90% T2 : The time from V T3 : The time from valid data off to V T4 : V
off time for Windows restart
DD
to valid data at power ON.
DD
off at power Off.
DD
T5 : The time from valid data to B/L enable at power ON. T6 : The time from valid data off to B/L disable at power Off.
The supply voltage of the external system for the Module input should be the same
as the definition of V
DD
.
Apply the lamp voltage within the LCD operation range. When the back light turns on
before the LCD operation or the LCD turns off before the back light turns off, the display may momentarily show abnormal screen.
In case of V
= off level,
DD
please keep the level of input signals low or keep a high impedance.
T4 should be measured after the Module has been fully discharged between power off
and on period.
Interface signal should not be kept at high impedance when the power is on.In Case T5 is less than 1000msec and T6 is less than 100msec,
Garbage Display can be seen. (It is not related to electrical function issue, Just for recommendation to prevent Garbage Display )
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7. Reliability Test
Item Test condition Quantity
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Temperature
Step Stress
HTOL 50, 500hr determination 4EA
LTOL 0, 500hr determination 4EA
HTS 70, 500hr determination 4EA
LTS -30, 500hr determination 4EA
THB 40/ 95%RH, 500hr determination 4EA
WHTS 60/ 75%RH, 250hr determination 4EA
Thermal Shock -20 ~ 60 ఁ, 200cycle determination 4EA
ESD(operation)
Inverter Input
Con. ESD
Vibration 10~300Hz/1.5G/10minSR, XYZ, 30min/axis 3EA
Shock Half Sine, 11msec, ·X,Y 40G, · Z 30G 1time/axis 3EA
contact : ᇹ8 kV ,150Ꮔ/330ᇢ,200Point,1 time/Point
non-contact : 15 kV,150Ꮔ/330ᇢ,200Point,1 time/Point
-20 60, 40hr, 5 Cycle determination 4EA
3EA
contact : ᇹ2kV,150Ꮔ/330,Input Con.Pin,3 times/Pin 3EA
PALLET
Vibration
PALLET Drop
1.05Grms 5~200Hz 1hr
4 edge 1face(bottom) 20 cm
1PALLET(10EA)
1PALLET(10EA)
[ Result Evaluation Criteria]
Under the display quality test conditions with normal operation state, these should be no change which may affect practical display functions.
* HTOL/ LTOL : High/Low Temperature Operating Life ** THB : Temperature Humidity Bias *** HTS/LTS : High/Low Temperature Storage **** WHTS : Wet High Temperature Storage
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8. PACKING
8.1 CARTON (Internal Package)
(1) Packing Form
Corrugated fiberboard box and corrugated cardboard as shock absorber
(2) Packing Method
Packing
-Pallet Box
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Direction be able to open it
Cushion-Foam
LCD Module
Cushion-Foam
Pallet-Plastic
8.2 Packing Specification
LCD Packing
10ea / (Packing-
Pallet Box)
RemarkSpecificationItem
1. 9.0 kg / LCD (10ea)
2. 7 Kg / Cushion-pallet (2ea)
3. 6.7 Kg / Packing-Pallet Box (1ea)
4. Cushion-pallet Material : EPS
5. Packing-Pallet Box Material : DW4
1. Pallet weight = 8kg1Box / PalletPallet
VerticalPacking Direction
1150mm(H) x 1985mm(V) x 609mm(height)H x V x heightTotal Pallet Size
Total Pallet
Weight
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111.7kg
Pallet(8kg) + Module (90 kg) + Cushion (up + bottom =7kg) + Pallet-BOX(6.7kg)
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9. MARKING & OTHERS
A nameplate bearing followed by is affixed to a shipped product at the specified location on each product.
(1) Part number : LTA400HF11 (2) Revision: Three letters (3) Lot number : X X X X XXX
(4) Nameplate Indication
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XX X
Cell Position No. (In the Glass) Glass No. (In the one Lot) Lot No. (Glass) Month Year (Note1) Product code Line
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T
C
LTA400HF11
0925
[[[[
(5) Packing box attach
[[[[[[[[[[ [[[
OWD733KI44
Week code : 09 25
week year
40mm
Revision code
Lot number
80mm
100mm
Part number
[[[
43
Box serial number
165mm
(6) Others
1. After service part Lamps cannot be replaced because of the narrow bezel structure.
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10. General Precautions
10.1 Handling
(a) When the Module is assembled, it should be attached to the system firmly
using all mounting holes. Be careful not to twist and bend the Module.
(b) Because the inverter use high voltage, it should be disconnected from power
before it is assembled or disassembled.
(c) Refrain from strong mechanical shock and / or any force to the Module.
In addition to damage, this may cause improper operation or damage to the Module and CCFT back light.
(d) Note that polarizers are very fragile and could be damage easily.
Do not press or scratch the surface harder than a HB pencil lead.
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(e) Wipe off water droplets or oil immediately. If you leave the droplets for a long
time, staining or discoloration may occur.
(f) If the surface of the polarizer is dirty, clean it using absorbent cotton or soft cloth.
(g) Desirable cleaners are water, IPA(Isopropyl Alcohol) or Hexane.
Do not use Ketone type materials(ex. Acetone), Ethyl alcohol, Toluene, Ethyl acid or Methyl chloride. It might permanent damage to the polarizer due to chemical reaction.
(h) 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, legs or clothes, it must be washed away with soap thoroughly.
(i) Protect the module from Electrostatic discharge. Otherwise the ASIC IC or
semiconductor would be damaged.
(j) Use finger-stalls with soft gloves in order to keep display clean during the
incoming inspection and assembly process.
(k) Do not disassemble the Module.
(l) Do not disassemble shield case of inverter & LVDS board
(m) Do not connect N.C pins. (Samsung internal use only)
(n) Protection film for polarizer on the Module should be slowly peeled off just before use
so that the electrostatic charge can be minimized. Must put on antistatic glove while handling a module
(o) Pins of I/F connector should not be touched directly with bare hands.
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10.2 Storage
(a) Do not leave the Module in high temperature, and high humidity for a long time.
It is highly recommended to store the Module with temperature from 0 to 35 and relative humidity of less than 70%.
(b) Do not store the TFT-LCD Module in direct sunlight.
(c) The Module should be stored in a dark place. It is prohibited to apply sunlight or
fluorescent light in storing.
10.3 Operation
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(a) Do not connect or disconnect the Module in the "Power On" condition.
(b) Power supply should always be turned on/off by the "Power on/off sequence"
(c) Module has high frequency circuits. Sufficient suppression to the electromagnetic
interference should be done by system manufacturers. Grounding and shielding methods may be important to minimize the interference.
(d) The cable between the back light connector and its inverter power supply should
be connected directly with a minimized length. A longer cable between the back light and the inverter may cause lower luminance of lamp(CCFT) and may require higher startup voltage(Vs).
10.4 Operation Condition Guide
(a) The LCD product should be operated under normal conditions.
Normal condition is defined as below;
- Temperature : 20·15୅
- Humidity : 55·20%
- Display pattern : continually changing pattern (Not stationary)
(b) If the product will be used in extreme conditions such as high temperature,
humidity, display patterns or operation time etc.., It is strongly recommended to contact SEC for Application engineering advice. Otherwise, its reliability and function may not be guaranteed. Extreme conditions are commonly found at Airports, Transit Stations, Banks, Stock market, and Controlling systems.
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10.5 Others
(a) Ultra-violet ray filter is necessary for outdoor operation.
(b) Avoid condensation of water. It may result in improper operation or disconnection
of electrode.
(c) Do not exceed the absolute maximum rating value. ( supply voltage variation,
input voltage variation, variation in part contents and environmental temperature, and so on) Otherwise the Module may be damaged.
(d) If the Module keeps displaying the same pattern for a long period of time,
the image may be "sticked" to the screen. To avoid image sticking, it is recommended to use a screen saver.
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(e) This Module has its circuitry PCB's on the rear side and should be handled
carefully in order not to be stressed.
(f) Please contact SEC in advance when you display the same pattern for a long time.
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