Page 1
) Preliminary Specifi c a t i o n
Any modification of Spec. is
Custom e r A p p r o va l & F e e d b a c k
LCD Sa l e s & M a r k e t i n g T e a m
( ) P
(
( √
CUSTOMER
DATE OF ISSUE
02/
not allowed without SDC’
/2013 EXTENSION CODE
MODEL NO.
.
LTI460AN01
-0
Approved by
Prepared by
02/22/13
02/22/13
Display Co., Ltd
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1. ABSOLUTE MAXIMUM RATINGS
1.1 ENVIRONMENTAL ABS O L UT E R A T I N GS
1.2 ELECTRICAL ABSOLUTE R A T I N GS
2. APPLICATION INFORMATION FO R D I D ( D I GI T A L I N F O R M A T I O N D I S P L A Y )
……… … … … … … … … … … … … … … … … … … … … … … … … … … … … … …
4. ELECTRICAL CHARACTERISTICS
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CONDITION & SPECIFI C A T I O N O F C O N V E R T E R ’ S I N P UT
. INPUT TERMINAL PIN ASSIGNM E N T
CONFIGUARATION OF I N P UT P I N O F C O N V E R T E R
THE POWER SEQUENCE F O R I N P UT T I N G T O T H E C O N V E R T E R
……… … … … … … … … … … … … … … … … … … … … … … … … … … … … … … …
.5 INPUT SIGNALS, BASIC D I S P L A Y C O L O R S A N D GR A Y S C A L E
.1 TIMING PARAMETERS ( D E O N L Y M O D E )
.2 TIMING DIAGRAMS OF I N T E R F A
.3 CHARACTERISTICS OF I N P UT D A T A O F L V D S
.4 THE SEQUENCE OF POW E R O N A N D O F F
…………………… … … … … … … … … … … … … … … … … … … … … … … … … … … … … … …
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REVISION HISTORY
–
Table of Contents
…. 3
GENERAL DESCRIPTION ...
1.3 THE OTHERS
3. OPTICAL CHARATERISTICS
4.1 TFT LCD MODULE
4.2 BACK LIGHT UNIT
4.3
5
5
5.2
… 4
… 6
…. 7
…. 7
.…….. 8
… 9
…. 12
.... 15
…………………
… 13
… 17
5.3
5.4 LVDS INTERFACE
5
6. INTERFACE TIMING
6
6
6
6
OUTLINE DIMENSION
7. RELIABILITY TEST
8. PACKING
9. MARKINGS & OTHERS …….
10. GENERAL PRECAUTIONS
CE SIGNAL (DE ONLY MODE)
…
..………………………
................. 17
.. 18
.. 19
..... 20
... 21
…. 22
..... 24
.. 25
....... 28
…… 29
.. 30
——
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REVISION HISTORY
Date. Rev.No. Page
02/22/2013 000 all
–
Revision Description
First issued
——
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0 is a color active mat r i x l i q u i d c r y s t a l d i s p l a y
as switching compone n t s . T h i s m o d e l i s c o m p o s e d o f a T F T L C D p a n e l , a d r i v e r c i r c u i t , a n d
light unit. This 46.0” model h a
colors with the wide viewing angle o f 8 9 ° o r h i g h e r i n a l l d
applications by providing an excellent p e r fo r m a n c e fo r t h e d i s p l a y p r o d u c t s w i t h a fl a t p a n e l s u c h a s
( Digital Information Display ) , Public M o n i t o r
wi t h t h e w i d e c o l o r g a m u t
Patterned Vertical Align) m o d e
(LCD) that uses amorph o u s s i l i c o n
irections. This panel is i n t e n d e d t o s u p p o r t
DESCRIPTION
LTI460AN01Film Transistor)
a back-
FEATURES
High contrast ratio & aperture ratio
SPVA(Super
Wide viewing angle (±178°)
High speed response
Wide XGA HD resolution (1366X768
BLU of CCFL
RoHS compliance (Pb-free)
Low power consumption
DE(Data Enable) mode
The interface (1pixel/clock) of 1
Landscape Only
s a resolution of 1,366 x 768 pixels
Low Voltage Differential Signaling)
–
TFT(Thin
16.7 Million
DID
APPLICATIONS
Digital Information Display (DID)
High Definition Public Monitor
Active Display area
Switching Components
Module Size
Number of pixels
Pixel Arrangement
Display Mode
Surface Treatment
1018.353(H) X 572.544(V)
a-Si TFT active matrix
1025.653(H) x 579.884(V)
1,366 x 768
RGB Vertical stripe
Normally Black
Haze 2.3% / 2H
Typ
Pixel 16:9
Anti-Glare
Luminance of White
——
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450(Typ)
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to be recorded on the spec. with refe r r i n g t o t h e d r a w i n g s
–
Item
Horizontal (H)
Module
Size
Bezel
Open
Black
Matrix
Shift
Note (1) Measure the figure for B
Vertical (V)
Depth (D)
Horizontal (H)
Vertical (V)
Horizontal (H)
Vertical (V)
Weight
- | A - B | ≤
- | C - D | ≤ Vertical Spec
Typ. Max. Unit
- 1025.653 1026.653 mm
- 579.884 580.884 mm
- 58.53 59.53 mm
1018.553 1019.553 mm
572.744 573.744 mm
- - 2.0 mm
- - 2.0 mm
- 12,500 13,500 g
Matrix shift
Note
Minimum Depth (2)
(1)
.
Note (2) Measure point of Depth
——
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1. ABSOLUTE MAXIMUM R A T I N G S
1.1 ENVIRONMENTAL ABS O L U T E R A T IN G S
emperature an d r e l a t i v e h u m i d i t y a r e s h o w n i n t h e
The temperature of Ta shal l b e o v e r
he maximum temperature of we t
: Tempera t u r e o f t h e c e n t e r o f t h e g l a s s s u r fa c e (T e s t p o i n t 5 )
: Temperat u r e o f e a c h e d g e o f t h e g l a s s s u r fa c e (T e s t p o i n t 1 ~ 4 )
–
Item
Storage temperature
Operation Temperature
Humidity of storage
Operating humidity
Glass surface
Temperature
(Operation)
Note (1) The ranges of t
(
T
T Uniformity
Center
Symbol Min. Max.
T
-20 65
STG
T
0 50
OPR
H
5 90
SUR
H
20 90
OPR
T
0 50
CENTER
∆
T - 10
graph
39℃ .)
–bulb shall be less than 39℃ .
Note
°C (1)
°C (1)
G
°C
°C
(2)
Note (2) Definition of test point
△
T
CENTER
T
CORNER
——
Doc.No. LTI460AN01-0
than 10 ℃ (△T = |T
CENTER
– T
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CORNER
| )
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LECTRICAL ABSOLUT E R A T IN G S
The permanent damage or de fe c t t o t h e d e v i c e m a y o c c u r i f t h e p a n e l i s o p e r a t e d a t t h e fi g u r e s e t ,
of maxi m u m v a l u e s t a t e d i n t h e f o r m e r s p e c .
esc r i b e d a b o v e u n d e r n o r m a l o p e r a t i n g c o n d i t i o n s .
light shall be opera t e d w i t h i n t h e v a l u e d e s c r i b e d a b o v e s i n c e t h e p e r m a n e n t d a m a g e
or defect may occur, if the ab o v e
The Others Absolute R a t i n g s
STATIC ELECTRICITY PRESSURE RSI S T A N C E
The function a l o p e r a t i o n s h o u l d b e
mentioned figures exceed the maximum va l u e .
–
1.2 E
(1) TFT LCD MODULE
Item
Power Supply Voltage
Dimming Control
Note (1) Within Ta (25 ± 2 ° C )
(2)
which exceeds a limit
limited to the conditions d
(2) BACKLIGHT UNIT
Item
Current of lamp IL
Frequency of lamp
Min. Max.
VDD 10.8 13.2
V
0 5.25
dim
Min.
9.0 - 15
30 - 100
Typ
Max
Note
V (1,(2)
V (1)
Unit
mArms
KHz
(2),(3)
(2),(3)
Note
Pressure of lamp gas
Note (2) The back-
Note (3) Based on the single lamp.
1.3
Item
CONTACT DISCHARGE
AIR DISCHARGE
- 25 -
-
Symbol
150pF, 330Ω , ± 10kV, 210points, 1 time/point
150pF, 330Ω , ± 20kV, 210points, 1 time/point
Torr
Min.
Operating
Operating
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PPLICATION INFOR M A T I O N F O R
(Digital Information D i s p l a y )
s screen may display the s u d d e n i m a g e s u c h a s a n i m a g e r e t e n t i o n .
To extend the lifetime and optim i z e a f u n c t i o n o f m o d u l e , t h e b e l o w
Normal operating conditio n
c. Display pattern: Moving image or i m a g e , w h i c h s w i t c h e s r e g u l a r l y
Note) The sudden image on the s c r e e n c a n b e d i s p l a y e d a ft e r t h e s t a t i c i m a g e i s s h o w n i n t h e l o n g
The operating conditions w h e n t h e m o d u l e i s o pe r a
It is recommended to set the DID u p i n t h e w e l l
b. The function of power off and scr e e n s a v e r
The function of periodical power
3 Operating conditions to pr e v e n t t
proper operating time: Under
b. The moving image shall be insert e d b e t w e e n t h e s t a t i c d i s p l a y s p e r i o d i c a l l y .
The refresh time for liquid crysta l i s n e e d e d .
c. The periodic changing of backgro u n d c o l o r a n d c h a r a c t e r ’s c o l o r ( i m a g e )
Use the different color for backg r o u n d a n d c h a r a c t e r
d. Avoid combining the color for ba c k g r o u n d w i t h t h e c o l o r fo r c h a r a c t e r , w h i c h h a s a l a r g e l y d i ffe r e n t
Note (1) Abnormal condition mea n s a l l o p e r a t i n g c o n d i t i o n e x c e p t n o r m a l o p e r a t i n g
Note (2) The moving image or bl a c k p a t t e r n i s s t r o n g l y r e c o m m e n d e d a s a s c r e e n s a v e r .
4 Only the lifetime of DID st a t e d i n t h i s spe c i s g u a r a n t e e d i f t h e D I D i s u se d u n d e r
f or a screen saver is needed when the static i m a g
he sudden display resulted from
–
2. A
A DID’
conditions are required.
2.1
a. Temperature: 20 ±15℃
b. Humidity: 55 ±20 %
2.2
condition.
a. Ambient condition
-
in the long-term.
2.
the static image in the
a. The
-
-
-Change colors periodically.
luminance.
2.
the proper
-of
-term.
20 hours a day.
DID
-
.
-term.
abnormal
-ventilated place.
e is displayed
displaying
(image) respectively.
condition.
——
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the space surrounded b y t h e s i m i l a r a m b i e n t
D = 3.3V, fv=60Hz, fDCLK = 7 8 .0
–
3.
The optical characteristics should be
setting.
Measuring equipment : TOPCON RD
Item Symbol
Contrast Ratio C/R
Response
time
Luminance of White
(At the center of screen)
Color
Chromaticity
(CIE 1931)
G-to-G
(AVG)
Red
Green
Blue
Tg
YL
RX
RY
GX
GY
BX
BY
measured in a dark room or
80S, SR-3, ELDIM EZ-Contrast Ta(25± 2 °C)
Min. Typ. Max.
- 2000 3000 -
- - 8 16
- 400 450 -
0.643
0.328
0.271
Normal
φ = 0
θ = 0
Viewing
Angle
TYP.
-0.03
0.599
0.143
0.060
TYP
+0.03
Note
- (1) SR-3
(3) RD-80S
2
-
(4) SR-3
(5), (6)
SR-3
White
Color Gamut -
Color temperature
Hor.
Viewing
Angle
Ver.
Brightness Uniformity
(9 Point)
WX
WY
-
θL
θR
θU
θD
B
uni
0.280
0.290
- 70 72 -
- - 10,000 -
79 89 -
79 89 -
CR ≥ 10
79 89 -
79 89 -
- - - 25.0
* Ta = 25 ± 2 °C, VD
%
K
%
MHz, IF =100% duty
(5)
SR-3
(6)
SR-3
EZ-Contrast
(2)
SR-3
——
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Notice (a) Setup for test equipment
The measurement should be e x e c u t e d i n a s t a b l e , w i n d l e s s a n d d a r k r o o m b e t w e e n
after lighting the backlight at t h e g i v e n t e m p e r a t u r e fo r s t a b i l i z a t i o n o f t h e b a c k l i g h t . T h i s s h o u l d b e
measured in the center of scre e n .
onment condition : T a = 2 5 ± 2 ° C
Definition of contrast ratio (C / R )
Ratio of max. gray (Gmax) & mi n .
) Definition of brightness unifo r m i t y a t 9 p o i n t s ( T e s t p a t t e r n : F u l l w h i t e )
Definition of Response time :
G : Average response time b e t w e e n t h e w h o l e g r a y s c a l e t o t h e w h o l e g r a y s c a l e .
H : Horizontal Length of A c t i v e A r e a
V : Vertical height of Acti v e
The envir
Note (1)
–
40min and 60min
: The
Note (4
gray (Gmin) at the center point ⑤
G
C R
/
Gmax : Luminance in all white pixels
Gmin : Luminance in all black pixels.
Buni
= ∗
100
Bmax : Maximum brightness
Bmin : Minimum brightness
max
=
G
B B
( max min)
min
B
−
max
.
Area
Note (3)
※
G-to-
——
Doc.No. LTI460AN01-0
Sume of Tr, Tf
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Definition of Luminance of Wh i t e : L u m i n a n c e o f w h i t e a t c e n t e r p o i n t
Definition of Color Chromati c i t y ( C I E 1 9 3 1 )
Color coordinate of Red, Gree n , B l u e &
–
Note (4)
Note (5)
Note (6) Definition of Viewing Angle
White at center point ⑤
: Viewing angle range (C/R ≥ 10)
⑤
——
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ELECTRICAL CHARACT E R I S T I C S
The connector to transmit a display da t a a n d
The ripple voltage should be
Note (3) The pattern for checking the p o w e r d i s s i p a t i o n (L C D m o d u l e o n l y )
–
4.
4.1 TFT LCD MODULE
Item
Voltage of Power Supply
Current of
Power
Supply
Vsync Frequency
Hsync Frequency
Note (1)
(a) Black
(b) White
(c) Sub-V Stripe
Main Frequency
Rush Current
a timing signal should be connected.
Symbol Min. Typ. Max.
VDD 10.8 12.0 13.2
- 534 620
IDD
fV 48.0 60.0 62.0
fH 43 50.4 53.0
F
72.0 78.0 85.0
dclk
I
- - 3
RUSH
controlled under 10% of VDD.
- 913 1050
- 920 1080
Ta = 25 ± 2 °C
Note
(1)
(2), (3)
-
-
-
(4)
Note (2) fV=60Hz, f
a) Black Pattern
Note (4) Conditions for
DCLK
=78.0MHz, V
=12.0V, DC Current.
b) White Pattern d)
.
-V Stripe Pattern
——
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4.2 BACK LIGHT UNIT
The current of lamp shall be m e a s u r e d w i t h t h e a m m et e r f o r p r o d u c t w i t h a h i g h f r e q u e n c y w i t h i n t h e
operating range of lamp as s h o w n b e l o w
Min. voltage of lamp: Based o n t h e 1 5 m A r m s , c u r r e n t o f l a m p .
lamp: Base d o n t h e 1 1 m A r m s , c u r r e n t o f l a m p .
The lifetime of lamp shall be t h e t i m e , u n t i l w h i c h t h e l u m i n a n c e o f B L U f a l l s b e l o w 5 0 %
of initial luminance at the sta n d a r d s t a t e w h e n t h e l a m p i s o p e r a t e d c o n t i n u o u s l y w i t h i n t h e
mentioned lifeti m e i s f o r s i n g l e l a m p .
(3) The value of voltage, which i s b e y o n d t h e a b o v e
lamp for over 1 sec. to start t h e l a m p .
mentioned figure shall be en t e r e d t o t h e
–
Item Symbol
Current of lamp
Voltage of lamp V
Frequency of lamp
Operating life Time Hr
Start up voltage
Power Consumption P
CCFL Counts Q
Note (1)
Min. Typ. Max.
I
L
f
9.0 13.0 15.0 mArms
1,035 ± 7%(IL : 9mA)
995 ± 7%(IL : 11mA)
975 ± 7%(IL : 12mA)
955 ± 7%(IL : 13mA)
935 ± 7%(IL : 14mA)
915 ± 7%(IL : 15mA)
30
- 50,000
- - -
1370 - -
1530 - -
111.78 148.98 164.7
- 12 - EA
-depicted picture.
100 kHz
-
Unit
Vrms
Hour
Vrms
W
Note
(1)
(1)
25℃ (2)
0℃ (2)
25℃ (3)
0℃ (3)
IL * V
* Q
Max . voltage of
(2)
guaranteed period for
- The above-
-
If not, the lamp may not be lightened.
——
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ONDITION & SPECIFICA T I O N O F
1) All data was approved after r u n n i n g 1 2 0 m i n u t e s .
Inrush is measured within B L U o n 1 0 m s a ft e r l e a v i n g
or more at room temperat u
℃
(3) Additional Appendix for Inp u t c u r r e n t
the BLU as it is at least 1 h r
–
4.3 C
Items Symbol
Supply Voltage & Current
Input Voltage Vin
Inrush
Current
Output Section
Output Current
Frequency I
Voltage for
open lamp
Enable
Inrush
LAMP
Io
CONVERTER’
Specifications
Conditions
Min. Typ. Max.
- 21.6 24 26.4
Vin =24.0V
dim=100%
Vin = 24V,
Dim=100%
Vin = 24V - 63 -
Vin= 24V
Dim=100%
- 6.40
12.8 13.5 14.2
1600
- -
7.4
Unit Note
V Ta=25±2 °C
Adc
(rms)
kHz
Vrms
Initial turn
on
After aging
for 1hour
All-lamp is
NC state.
Enable Logic VON
Disable
Logic
DIMMING for INTERNAL PWM
Voltage range VDIM
FREQUENCY of
PWM
Duty range of
PWM
Note (
(2)
VOFF
FINT,PWM
DINT,PWM
2.4 - 5.25
Vin = 24V
Dim = 0V
Vin =24V,
Dim =
0~3.3V
at room temperature (25℃ )
0 - 0.8
0 - 3.3
120 150 180
20 - 100
VDC
VDC
VDC
Hz
%
——
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INPUT TERMINAL PI N A S S I G NM E NT
Note (1) No Connection : These pins a r e o n l y u s e d f o r S A M S UN G i n t e r n a l p u r p o s e .
Off = Interface Sig n a l (T 3 ) ≥ L V D S O p t i o n ≥ V
–
5.
5.1
Pin
1
2
3
4 GND
5 Rx0N
6 Rx0P
7 GND
8 Rx1N
9 Rx1P
10
11 Rx2N
N.C
GND
Input Connector Model
Pin
16 GND
19
- 20
21 LVDS
22
- 23
24
-
17
18
25
26
Rx3N
Rx3P
GND
N.C(1)
N.C
N.C
N.C
N.C
VDD
-E30S-SM (JAE)
Ground
-
Ground
ed
(2)
ot Connected
ot Connected
ot Connected
ot Connected
VDD(=+12V)
12
13
14
15
Note (2) LVDS Option : High(3.3V)
Low(GND )or
Sequence : On = V
Rx2P
GND
Rx CLK-
RxCLK+
DD
-
Normal NS LVDS format
OPEN(N.C) JEIDA LVDS format
27
28
29 VDD
30 VDD
Interface Signal(T2)
VDD
VDD
DD
VDD(=+12V)
VDD(=+12V)
VDD(=+12V)
VDD(=+12V)
——
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Note (3) LVDS Connector
a. Pins for power G N D s h a l l b e c o n n e c t e d t o t h e L C D ’s m e t a l c h a s s i s .
b. All inpu t p i n s fo r p o w e r s h a l l b e c o n n e c t e d t o g e t h e r .
c. All NC pins shall be d e s i g n e d w i t h b e i n g s e p a r a t e d fr o m o t h e r s i g n a l o r p o w e r .
–
——
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CONFIGUARATION OF IN P U T P IN O F C O N VE R T E R
3 THE POWER SEQUENCE F O R IN P U T T IN G T O T H E C O N VE R T E R
–
5.2
(1) Input Connector
The CN101 connector : 20022WR-
Pin No. SYMBOL
1, 2, 3, 4, 5 Vin
6, 7, 8, 9, 10 GND
11 NC
12 ENA
13 INT_DIM
14 NC
The CN002 connector : 20022WR-
Pin No. SYMBOL
1, 2, 3, 4, 5 Vin
6, 7, 8, 9, 10 GND
(YEONHO)
REMARK
Power Supply DC 24V
No connection
Inverter On/Off Control
Internal PWM Dimming Signal /
No Connection
REMARK
Power Supply DC 24V
Ground
0V(Min. Dim)
Ground
11,12,13,14 NC
5.
No connection
——
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5.4 LVDS INTERFACE
LVDS OPTION( input : pin9 ) : IF T H I S P I N : L O W ( G N D o r N / C )
Defau l t L V D S O p t i o n : J EI D A
- LVDS Receiver : Tcon(Merged)
- Data Format (JEIDA & Normal)
–
TxOUT/RxIN0
TxOUT/RxIN1
→
JEIDA LVDS FORMAT
→
LVDS pin JEIDA -DATA
TxIN/RxOUT0 R4
TxIN/RxOUT1 R3
TxIN/RxOUT2 R4
TxIN/RxOUT3 R5
TxIN/RxOUT4 R6
TxIN/RxOUT6 R7
TxIN/RxOUT7 G2
TxIN/RxOUT8 G3
TxIN/RxOUT9 G4
TxIN/RxOUT12 G5
TxIN/RxOUT13 G6
TxIN/RxOUT14 G7
TxIN/RxOUT15 B2
TxIN/RxOUT18 B3
TxIN/RxOUT19 B4
TxIN/RxOUT20 B5
TxIN/RxOUT21 B6
Normal -DATA
R0
R1
R2
R3
R4
R5
G0
G1
G2
G3
G4
G5
B0
B1
B2
B3
B4
TxOUT/RxIN2
TxOUT/RxIN3
TxIN/RxOUT22 B7
TxIN/RxOUT24 HSYNC
TxIN/RxOUT25 VSYNC
TxIN/RxOUT26 DEN
TxIN/RxOUT27 R0
TxIN/RxOUT5 R1
TxIN/RxOUT10 G0
TxIN/RxOUT11 G1
TxIN/RxOUT16 B0
TxIN/RxOUT17 B1
TxIN/RxOUT23 RESERVED
B5
HSYNC
VSYNC
DEN
R6
R7
G6
G7
B6
B7
RESERVED
——
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INPUT SIGNALS, BASIC D IS P L A Y CO L O R S A N D G R A Y S CA L E
: Green Gray, B n : B l u e G r a y (n = G r a y L e v e l )
Input Signal : 0 = Low Level Vol t a g e , 1 = H i g h L e v e l V o l t a g e
R4 R5 R6 R7 G0 G1 G2 G3 G4 G5 G6 G7 B0
0 0 0 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0 0 0 1
0 0 0 0 1 1 1 1 1 1 1 1 0
1 1 1 1 0 0 0 0 0 0 0 0 0
1 1 1 1 0 0 0 0 0 0 0 0 1
1 1 1 1 1 1 1 1 1 1 1 1 0
1 1 1 1 1 1 1 1 1 1 1 1 1
0 0 0 0 0 0 0 0 0 0 0 0 0
1 1 1 1 0 0 0 0 0 0 0 0 0
1 1 1 1 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0 0 0 0
0 0 0 0 1 0 0 0 0 0 0 0 0
: : : : : : : : : : : : :
0 0 0 0 1 0 1 1 1 1 1 1 0
0 0 0 0 0 1 1 1 1 1 1 1 0
0 0 0 0 0 0 0 0 0 0 0 0 1
0 0 0 0 0 0 0 0 0 0 0 0 0
: : : : : : : : : : : : :
0 0 0 0 0 0 0 0 0 0 0 0 1
0 0 0 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0 0 0 1
–
5.5
COLOR
BASIC
COLOR
GRAY
SCALE OF
RED
DISPLAY
CYAN 0 0 0 0
BLACK 0 0 0 0
DARK
↑
↓
LIGHT
1 0 0 0
: : : :
: : : :
1 0 1 1
DATA SIGNAL
GREEN
0 0 0 0 1 1 1 1 1 1 1 1 1
0 0 0 0 0 0 0 0 0 0 0 0 0
0 0 0 0 0 0 0 0 0 0 0 0 0
: : : : : : : : : : : : :
: : : : : : : : : : : : :
1 1 1 1 0 0 0 0 0 0 0 0 0
GRAY
BLUE
1 1 1 1 1 1 1
0 0 0 0 0 0 0
0 0 0 0 0 0 0
: : : : : : :
: : : : : : :
0 0 0 0 0 0 0 R253
SCALE
LEVEL
-
R0
R1
R3~
R252
DARK
GRAY
SCALE OF
GREEN
GRAY
SCALE OF
BLUE
↑
↓
LIGHT
GREEN 0 0 0 0
BLACK 0 0 0 0
DARK
↑
↓
LIGHT
Note) Definition of Gray
Rn : Red Gray, Gn
0 0 0 0
: : : :
: : : :
0 0 0 0 0 1 0 0 0 0 0 0 0
: : : : : : : : : : : : :
0 0 0 0 1 1 1 1 1 1 1 1 0
0 0 0 0 0 0 0 0 0 0 0 0 0
: : : : : : : : : : : : :
0 0 0 0 0 0 0
: : : : : : :
0 0 0 0 0 0 0 G255
0 0 0 0 0 0 0
: : : : : : :
G2
G3~
G252
B0
B3~
B252
——
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TIMING PARAMETERS ( D E O N L Y M O D E )
Note) The signals of Hsync and Vsync m u s t b e i n p u t t e d e v e n t h o u g h t h i s T
est Point: TTL controls sign a l a n d C L K a t L V D S T x a t t h e i n p u t t e r m i n a l o f s y s t e m .
The limit of spread spectru m ' s r a n g e o f S ET i n w h
con is oper a t e d a t D E m o d e .
ich the LCD module is ass e m b l e d
–
6. IN
6.1
SIGNAL ITEM
Clock
Vsync
Term for the
vertical
display
Term for the
horizontal
display
(1) T
(2) Internal VDD = 3.3V
(3) The spread spectrum
-
should be within ± 3 %
- Modulation frequency :
display period
Total Horizontal
Frequency Hsync
Active
Total vertical
SYMBOL
1/TC 72 78 85
FH 43 50.4 53.0
FV 48 60 62
TVD - 768 -
TV 775 802 1420
THD - 1368 -
TH 1420 1624 2770
30kHz~300kHz
MIN. TYP. MAX.
-
Unit NOTE
MHz -
KHz -
Hz -
Lines -
Lines -
Clocks -
clocks -
——
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2 TIMING DIAGRAMS OF IN T E R F A CE S IG N A L
–
6.
(DE
——
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CHARACTERISTICS OF IN P U T D A T A O F L VD S
Input voltage at the common mod e
Frequency for input clock (=1/ T )
ratio of Rx’s clock for outp u t
Definition o f D C c h a r a c t e r i s t i c s o f L V D S r e c e i v e r
–
6.3
(1) Specification for DC
ITEM
Supply voltage for IO
Supply voltage in the core
Color depth
Input voltage for differential
(2) Specification for AC
<
SYMBOL Min. Typ.
VDD33_LVDS 3.0 3.3
VDD12_LVDS 1.1 1.2
VCM 0.3
|VID| 100 350
Max. UNIT
3.6 V
1.3 V
8
1.8 V
600 mV
>
Bit
Period of output clock
Position of input data
Position of input data
Duty
ITEM
Lock time
SYMBOL Min. Typ.
FIN 25 -
t
11.11 -
- -
- -
-450 -
-500 -
T
t
RSRM
t
RSLM
t
- -
45 50
- -
-400 -
UNIT
90 MHz
40 ns
-
-
100 usec
55 %
ps
ps -
——
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ch s k w ) i n M u l t i p l e L V D S C h a n n e l s
synchronized wit h D E p e r e a c h L V D S C h a n n e l a n d T
Ti m i n g d i a g r a m o f s k e w m a r g i n o f L V D S r e c e i v e r
chskw < 16* L V D S C l o c k P e r i o d
–
<
* LVDS Channel to Channel Skew(T-
<
LVDS receiver’s operation >
Note : DE should be
——
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4 THE SEQUENCE OF POW E R O N A N D O F F
To prevent the LCD module from bein g l a t c h e d u p o r b e i n g o p e r a t e d a t t h e D C .
The order to turn the power on and off s h o u l d b e s a m e a s s h o w n i n t h e d i a g r a m b e l o w .
T1 : The time, during which the leve l o f V
T2 : The changing time, during whi c h t he V
T3 : The changing time, during whi c h t he va l i d d a t a o f si g na l st a rt s l e a vi ng o ut unt i l t he V
T4 : The changing time, during whi c h t he V
T5 : The changing time, during whi c h t he si g na l o f B L U st a rt s ri si ng b e y o nd 5 0 % .
T6 : The changing time, during whi c h t he si g na l o f B L U st
’s value f o r sup p l y v o l t a g e , B L U , a nd si g na l t o t he e x t e rna l sy st e m o f t he
comput e d w i t h r e f e rri ng t o t he f o rm e r m e nt i o ne d v a l ue .
method to apply the v o l t a g e t o t he l a m p w i t hi n t he ra ng e , w hi c h t he L C D o p e ra t e s.
turne d o n b e f o r e t he L C D i s o p e ra t e d o r t he p o w e r o f L C D i s t urne d
light i s t urne d o f f , t he a b no r m a l d i sp l a y o n t he sc r e e n m a y b e
Please keep the level of inp ut si g na l l o w o r k e e p t he l e v e l o f i m p e d a nc e hi g h w he n t he v a l ue
The value shall be measur e d a f t e r t he m o d ul e ha s b e e n f ul l y d i sc ha r g e d b e t w e e n t he p e ri o d ,
which the power is turne d o n
starts rising beyond 90% until the va l i d d a t a o f si g na l
starts falling below 10% to restart t he W i nd o w s.
and the period, which the power is t urne d o f f l i k e t he T 4
–
6.
0.5ms<T1≤ 10ms
10ms<T2
0<T3≤ 50ms
1000ms≤ T4
1000ms≤ T5
(Recommend Value)
(Recommend Value)
≤
50ms
100ms≤ T6
started coming in.
falling below 90%.
The inputted V
module shall be
The
When the back-light is
off before the backmomentarily.
of VDD is below 10%.
timing.
DD
is rising from 10% to 90%.
DD
DD
DD
starts
DD
shown
——
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7. PACKING
CARTON (INTERNAL P A CK A G E )
Corrugated fiberboa r d b o x a n d c a r d b o a r d a s s h o c k a b s o r b e r
Note(1) Total Weight : Approximat e l y
cceptance number of pil i n g :
–
7.1
(1) Packing Form :
(2) Packing Method
Note(2) A
Note(3) Carton size : 1270
151.8kg [With Pallet Plastic]
2Pallets
1150mm(V) x 844mm(Height)
(3) Packing Material
No.
1
2
3
4
5
Part Name
Cushion-Pallet
Cushion-Pallet BOX
Bag-Shielding
Protector-Panel
Pallet-Plastic
——
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A nameplate bearing followed by is affi x e d t o a s h i p p e d p r o d u c t a t t h e s p e c i fi e d
locati o n o n e a c h p r o d u c t .
–
8.
(1) Parts number : LTI460AN01
(2) Revision code : Three letters
(3) Lot number :
(4) Nameplate Indication
(5) Packing small box attach
——
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(a) When the module is assembled, It
to twist and bend th e m o d u l e s .
(b) Refrain from strong mechanical sho c k a n d / o r a n y f o r c e t o t h e m o d u l e .
dama g e t o t h e m o d u l e a n d C C F T b a c k
(c) Note that polarizers are very fragil e a n d c o u l d b e e a s i l y d a m a g e d . D o n o t p r e s s o r s c r a t c h
(d) Wipe off water droplets or oil imme d i a t e l y .
(e) If the surface of the polarizer is dir t y , c l e a n i t u s i n g s o m e a b s o r b e n t c o t t o n o r s o ft c l o t h .
(f) The desirable cleaners are water, IPA (I s o p r o p h y l A l c o h o l ) o r H e x a n e .
(ex. Acetone), Ethyl alcohol, Toluen e , Et h y l a c i d o r M e t h y l c h l o r i d e . I t m i g h t p e r m a n e n t d a m a g e t o t h e
polarizer due to chemical reaction.
(g) If the liquid crystal material leaks fr o m t h e p a n e l , i t s h o u l d b e k e p t a w a y fr o m t h e e y e s o r m o u t h .
of contact with hands, legs o r c l o t h e s , i t m u s t b e w a s h e d a w a y t h o r o u g h l y w i t h s o a p .
it m a y c a u s e d a m a g e t o t h e C
(i) Use fingerstalls with soft gloves in o r d e r t o k e e p d i s p l a y c l e a n d u r i n g t h e i
(l) Do not touch any component which i s l o c a t e d o n t h e b a c k s i d e .
(m) Protection film for polarizer on the m o d u l e s h a l l b e s l o w l y
electrostatic charge can be minimi z e d .
(n) Pins of I/F connector shall not be t o u c h e d d i r e c t l y w i t h b a r e h a n d s .
should be attached to the system firmly using ev e ry m o u n t i n g h o l e s .
In addition t o d a m a g e , t h i s m a y
Do not use Ket o n e t y p e m a t
peeled off just before us e s o
–
9.
9.1 HANDLING
Be careful not
cause improper operation or
harder than a HB pencil lead.
discoloration may occur.
In case
(h) Protect the module from static.
process.
(j) Do not disassemble the module.
(k) Do not pull or fold the
-light.
the surface
If you leave the droplets
-MOS Gate Array IC.
ncoming
Staining and
erials
inspection and assembly
that the
——
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9.2 STORAGE
comply with t h e c r i t e r i a i n t h e t a b l e b e l o w .
The storage roo m s h o u l d b e e q u i p p e d w i t h a g o o d v e n t i l a t i o n f a c i l i t y , w h i c h h a s a
Products should b e p l a c e d o n t h e
Prevent product s f r o m b e i n g e x p o s e d t o t h e d i r e c t
Be cautious not t o p i l e t h e p r o d u c t s u p .
Avoid storing pr o d u c t s i n t h e e n v i r o n m e n t , w h i c h o t h e r h a z a r d o u s m a t e r i a l i
If products are d e l i v e r e d o r k e p t i n t h e s t o r a g e f a c i l i t y m o r e t h a n 3 m o n t h s ,
you to leave pro d u c t s u n d e r t h e c o n d i t i o n i n c l u d i n g a 2 0
the condition inc l u d i n g t h e 5 0
Do not connect or disconnect the c a b l e t o / fr o m
shall be always turned o n / o ff
(c) The module has a circuit with a hig h fr e q u e n c y . T h e
electromagnetic interference suffic i e n t l y . T h e m e t h o d s t o g r o u n d a n d s h i e l d a r e i m p o r t a n t
(d) Design the length of cable to conn e c t b e t w e e n t h e c o n n e c t o r fo r b a c k
possible and the shorter cable shal l b e c o n n e c t e d di r e c t l y .
The longer cable between that of b a c k
lower and need a higher startup vo l t a g e (V s ).
.4 OPERATION CONDITI O N G U ID E
The LCD product should be operat e d u n d e r n o r m a l c o n d i t i o n s .
Normal condition is defined as bel o w ;
Display pattern : continually chan g i n g p a t t e r n ( N o t s t a t i o n a r y )
If the product will be used in extrem e c o n d i
operation time etc.., It is strongly r e c o m
Otherwise, its reliability and functi o n m a y n o t b e g u a r a n t e e d . Ex t r e m e c o n d i t i o n s a r e c o m m o n l y fo u n d a t
Airports, Transit Stations, Banks, St o c k m a r k e t , a n d C o n t r o l l i n g s y s t e m s .
pallet, which is away from the wall n o t o n t h e f l o o r .
sunlight, moisture, a n d w a t e r .
temperatur e a n d a h u m i d i t y o f
more than 3 months, bak e t h e p r o d u c t s u n d e r
temp. and the 10% humidity for 24hr s a f t e r b e i n g u s e d .
the module at the "Power On" con d i t i o n .
nufacturers shall supp r e s s t h e
light and the i n v e r t e r a s s h o r t a s
nverter may cause the lumi n a n c e o f l a m p (C C F L ) t o
humidit y , d i s p l a y p a t t e r n s o r
C for Application eng i n e e r i n g a d v i c e .
We highly recommend to
–
ITEM
Storage
Temperature
Storage Humidity
Storage Life
-
-
-
Storage Condition
-
-
-
9.3 OPERATION
(a)
(b) The power
temperature
Min.
(
) 5
35
-manufactured products for
℃
by the item 6.5. "Power on/off sequence"
12 months
℃
Max.
40
75
s placed.
we recommend
interference.
9
(a)
- Temperature : 20±15℃
- Humidity : 55±20%
-
(b)
system ma
-light and that of i
tions such as high temperature,
mended to contact SD
to minimize the
-
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6-000-G-130222
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9.5 OTHERS
violet ray filter is necessary fo r o u t d o o r o p e r a t i o n .
Module should be turned clockwis e (r e g u l a r fr o n t v i e w p e r s p e c t i v e ) w h e n u s e d i n
Avoid condensation of water. It ma y r e s u l t i n i m p r o p e r o p e r a t i o n o r d i s c o n n e c t i o n
Do not exceed the absolute maximu m r a t i n g v a l u e . (s u p p l y v o l t a g e v a r i a t i o n ,
variation in part contents and envi r o n m e n t a l t e m p e r a t u r e , a n d s o o n ) O t h e r w i s e t h e M o d u l e m a y b e
displaying the s a m e p a t t e r n fo r a l o n g p e r i o d o f t i m e ,
To avoid image sticking , i t i s r e c o m m e n d e d t o u s e a s c r e e n s a v e r .
This Module has its circuitry PCB's o n t h e r e a r s i d e a n d s h o u l d b e h a n d l e d
C in advance whe n y o u d i s p l a y t h e s a m e p a t t e r n fo r a l o n g t i m e .
the imag e m a y b e " s t i c k e d " t o
(a) Ultra-
(b)
(c)
(d)
damaged.
(e) If the Module keeps
the screen.
(f)
stressed.
(g) Please contact SD
–
of electrode.
order not to be
.
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Doc.No. LTI460AN01-0
Page 31 of 31
6-000-G-130222
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