8. General Precaution ------------------------------------------------------------------------------ (31)
8.1 Handling
8.3 Operation
ut Signals, Basic Display Colors and Gray Scale of Each Color
orage
8.4 Operation Condition Guide
8.5 Others
MODELLTM200KT10Page
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Page 3
General Description
silicon TFT (Thin Film Transistor) as switching components. This model is composed of
High speed response
RoHS compliance
General Information
Surface Treatment
Haze 25%
Hard coating (3H)
DisplayMode
NormallyWhite
PRODUCT INFORMATIONPRODUCT INFORMATION
Description
LTM200KT10 is a color active matrix liquid crystal display (LCD) that uses amorphous
a TFT LCD panel, a driver circuit and a back light unit. The resolution of a 20” is 1600 x
900 and this model can display up to 16.7 millions colors.
Features
High contrast ratio, high aperture structure
20”W HD+ (1,600 x 900 pixels) resolution
White LED Edge slim Backlight ( 1-side )
DE (Data Enable) only mode
LVDS (Low Voltage Differential Signaling) interface (2pixel/clock)
Compact Size Design
TCO 5.1 compliances
( Except for 2.2 response time; this product does not have over driving function.
It is recommended to support in system level )
Halogen Free
Applications
Multi-functional monitor products
Display terminals for AV application products
Monitors for industrial machine
* If the module is used to other applications besides the above, please contact SEC
in advance.
ItemsSpecificationUnitNote
Pixel Pitch276.75(H) x 276.75(W)um
Active Display Area442.8(H) x 249.075(V)mm
,
Display Colors16.7Mcolors
Number of Pixels1,600 x 900pixel
Pixel ArrangementRGB vertical stripe
Luminance of White250(Typ.)
cd/㎡
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Page 4
Mechanical Information
Item
Min.Typ
Max
Unit
Note
p
PRODUCT INFORMATIONPRODUCT INFORMATION
.
.
Horizontal (H)462.3462.8463.3mm
Module
Vertical (V)271.5272.0272.5mm
size
Depth (D)--10.3mm-
Weight--1700gLCD module only
Note (1) Mechanical tolerance is ± 0.5mm unless there is a special comment.
1. Absolute Maximum Ratings
-
If the condition exceeds maximum ratings, it can cause malfunction or unrecoverable
damage to the device.
ItemSymbolMin.Max.UnitNote
Power Supply VoltageV
Data SignalV
Storage temperatureT
Center of Glass surface temperature
(Operation)
Shock ( non - operating )S
Vibration ( non - operating )V
Note (1) Ta= 25 ± 2 °C
T
DD
sig
STG
OPR
no
nop
GND-0.55.5V(1)
-5V
-2560
050
℃
℃
(2)
(2)
-50G(3)(5)
-1.5G(4)(5)
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PRODUCT INFORMATIONPRODUCT INFORMATION
b. Maximum wet
-
bulb temperature at 39
C
or less. (
Ta ≤39C)
(2) Temperature and relative humidity range are shown in the figure below.
a. 90 % RH Max. (Ta ≤ 39 °C)
°
c. No condensation
(3) 11ms, sine wave, one time for ±X, ±Y, ±Z axis
(4) 10-300 Hz, Sweep rate 10min, 30min for X,Y,Z axis
(5) At vibration and shock test, the fixture which holds the module to be tested has to be
hard and rigid enough so that the module would not be twisted or bent by the fixture.
(39,90)(39,90)
°
(50,50.4)(50,50.4)
((--25,5)25,5)
Fig. Temperature and Relative humidity range
(60,27.7)(60,27.7)
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Page 6
2. Optical Characteristics
R
(5)
Rx
0.636
Bu
0.188
(ACC ONLY)
White
△
uv
0.02
(9)
PRODUCT INFORMATIONPRODUCT INFORMATION
The optical characteristics should be measured in a dark room or equivalent.
The measurement should be executed in a stable, windless and dark room between
30min after lighting the back light at the given temperature for stabilization
of the back light. This should be measured in the center of screen.
= 25
EZ-
Contrast
(4)
SR-3
°
Photo detector
SR-3
2°
Field
SR-3 : 40㎝
RD-80S : 50㎝
TFT - LCD Module
The center of the screen
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LCD Panel
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Page 8
Note (2) Definition of test point
160 800 1440
PRODUCT INFORMATIONPRODUCT INFORMATION
Active Area
6
: Test Point
Note (3) Definition of Contrast Ratio (C/R)
: Ratio of gray max (Gmax) & gray min (Gmin) at the center point
321
G
CR
G
Gmax : Luminance with all pixels white
Gmin : Luminance with all pixels black
879
max
min
90
45
450
810
of the panel
Note (4) Definition of 9 points brightness uniformity
B
max
(max min)
Buni
Bmax : Maximum brightness
Bmin : Minimum brightness
Note (5) Definition of Response time : Sum of Tr, Tf
Display Data White(TFT off) Black(TFT on) White(TFT off)
Optical Instruments
Response
100
100%
90%
10%
BB
0%
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Page 9
PRODUCT INFORMATIONPRODUCT INFORMATION
Note (6) Definition of Luminance of White : Luminance of white at center point
Note (7) Definition of Color Chromaticity (CIE 1931, CIE1976)
Color coordinate of Red, Green, Blue & White at center point
Note (8) Definition of Viewing Angle
: Viewing angle range (CR ≥ 10)
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Page 10
PRODUCT INFORMATIONPRODUCT INFORMATION
1stgray step : move a square of 255 gray level should be moved into the center of the
Note (9) Color Grayscale Linearity
a. Test image : 100% full white pattern with a test pattern as below
b. Test pattern : Squares, 40mm by 40mm in size, filled with 255, 225, 195, 165, 135 and
105 grays steps should be arranged at the center
of the screen.
c. Test method
screen and measure luminance and u’ and v’ coordinates.
- Next gray step : Move a 225 gray square into the center and measure both
luminance and coordinates, too.
d. Test evaluation
u'v'=(u'-u' )+(v'-v' )AB
Where A, B : 2 gray levels found to have the largest color differences between them
i.e. get the largest ∆u’ and ∆v’ of each 6 pair of u’ and v’ and calculate the ∆u’v’.
2
AB
2
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Page 11
3. Electrical Characteristics
Ta = 25
C
Current o
Currentof
Hsync Frequency
fH46.3
56.0
70.4
kHz
3.1 TFT LCD Module
The connector for display data & timing signal should be connected.
ItemSymbolMin.Typ.Max.UnitNote
PRODUCT INFORMATIONPRODUCT INFORMATION
°
Voltage of Power SupplyV
(a) Black-550-mA
f
Power
Supply
(c) Dot-11001300mA
Vsync Frequencyf
Main Frequencyf
Rush CurrentI
DD
I
DD
V
DCLK
RUSH
4.55.05.5V(1)
(5),(6)(b) White-550-mA
50.060.075.0Hz
48.559.276.1MHz
--3.0A(7)
Note (1) The ripple voltage should be controlled under 10% of VDD.
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Page 12
PRODUCT INFORMATIONPRODUCT INFORMATION
b. C
L
includes all probe and fixture capacitance
LVDS Data
(2) Differential receiver voltage definitions and propagation delay and transition time test circuit
a. All input pulses have frequency = 10MHz, t
Note a.
(3) LVDS Receiver DC parameters are measured under static and steady conditions
which may not be reflective of its performance in the end application.
T
or tF=1ns
R
Note b.
LVDS Clk
V
= 0V
DIFF
RX +/-
t
SKEW
where tskew : skew between LVDS clock & LVDS data,
T : 1 period time of LVDS clock
cf) (-/+) of 300psec means LVDS data goes before or after LVDS clock.
(4) Definition of VIDand V
using single-end signals
CM
= 0V
V
DIFF
Differential
Differential
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Page 13
(5)
fV=60Hz, fDCLK = 59.2MHz, VDD = 5.0V, DC Current.
(),
,
,
(7) Measurement Condition
(6) Power dissipation check pattern (LCD Module only)
a) Black Pattern b) White Pattern c) Dot Pattern
PRODUCT INFORMATIONPRODUCT INFORMATION
100%
90%
10%
GND
Rush Current I
T
RUSH
can be measured when T
RUSH
=470㎲
. is 470㎲.
RUSH
V
DD
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Page 14
3.2 Back Light Unit
g
g
3.2.1 The characteristics of LED bar
The back light unit is composed of WLED.
ItemSymbolMin.Typ.Max.UnitNote
PRODUCT INFORMATIONPRODUCT INFORMATION
Ta=25 ± 2°C
LED Forward CurrentI
LED Array VoltageV
Operating Life TimeHr30,000--Hour(2)
Note (1) The above specification is not for the converter output, but for the LED bar.
The LED bar consists of 24 LED packages ; 3 parallel X 8 serial.
( LED 1 parallel Typ. current : 120mA )
(2) Life time(Hr) is defined as the time when brightness of a LED package itself
becomes 50% or less than its ori
and IF = 120 mA.
F
P
-120-mA(1) /ch
-25.6-V-
inal value at the condition of Ta=25 ± 2°C
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Page 15
4. BLOCK DIAGRAM
x
x
g
n
r
PRODUCT INFORMATIONPRODUCT INFORMATION
4.1 TFT LCD Module
USI2
Control signal
LVDS
pair #1
LVDS
pair #2
CN1
(30pin)
LVDS (R
USI-2(Tx)
)
Timing Controller
+5.0V
V
DD
Power
Circuit
4.2 Back Light Unit
Connector: Molex 104086-0410 or equivalent
((Matching Connector : Molex 104085-0400 or equivalent )
Source Driver ICs
S1S 1600
Control signal
ColumnDriverCircuit
TFT-LCD
(1600 x RGB x 900 pixels)
LED barLED bar
signal
LED Powe
LED Retur
LED Power
44--pin connectorpin connector
LED Return
signal
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Page 16
5. Input Terminal Pin Assignment
10
RXO3
N
LVDS diff
15
RXE1
-
Negative LVDS differential data output
(EVEN data )
PRODUCT INFORMATIONPRODUCT INFORMATION
5.1. Input Signal & Power (Connector : UJU IS100-L30B-C23 or equivalent )
PIN NOSYMBOLFUNCTION
1RXO0-Negative LVDS differential data output ( ODD data )
2RXO0+Positive LVDS differential data output ( ODD data )
3RXO1-Negative LVDS differential data output ( ODD data )
4RXO1+Positive LVDS differential data output ( ODD data )
5RXO2-Negative LVDS differential data output ( ODD data )
6RXO2+Positive LVDS differential data output ( ODD data )
7GNDGround
8RXOC-Negative Sampling Clock (ODD data)
9RXOC+Positive Sampling Clock (ODD data)
-
11RXO3+Positive LVDS differential data output
12RXE0-Negative LVDS differential data output (EVEN data)
13RXE0+Positive LVDS differential data output (EVEN data)
14GNDGround
16RXE1+Positive LVDS differential data output (EVEN data)
17GNDGround
18RXE2-Negative LVDS differential data output (EVEN data)
19RXE2+Positive LVDS differential data output (EVEN data)
20RXEC-Negative Sampling Clock (EVEN data)
21RXEC+Positive Sampling Clock (EVEN data)
22RXE3-Negative LVDS differential data output (EVEN data)
23RXE3+Positive LVDS differential data output (EVEN data)
24GNDGround
25NC* CE (For LCD internal use only. Do not connect)
egative
erential data output
26NC* CTL (For LCD internal use only. Do not connect)
27NCNo Connection
28VDD
30VDD
* If the system already uses the 25, 26pins, it should keep under GND level
The voltage applied to those pins should not exceed -200mV.
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Power Supply : +5V29VDD
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Page 17
Note) Pin number starts from Left side
All GND pi
▼
PRODUCT INFORMATIONPRODUCT INFORMATION
PCB
▼
Pin No. 1 Pin No. 30
#30#1
UJU IS100-L30B-C23 or equivalent
#30#1
Fig. Connector diagram
a.
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.
ns should be connected together and also be connected
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Page 18
5.2 LVDS Interface (1)
TXOUT3
-
No. 10
RXO3
-
7
TXIN9
GO2
Green Odd Pixel Data
TXOUT1+
No. 4
RXO1+
1
1
GO5G
19
TXIN18
BO1
BlueOddPixelData
TXOUT1
N
4
RXO1
5.2.1 Odd Pixel Data (1st pixel data)
LVDS Transmitter ( DS90C383, DS90C385 ) Signal Interface
PRODUCT INFORMATIONPRODUCT INFORMATION
Device Input PinDevice Input Signal
NoSymbolSymbolFunctionTerminalSymbol
51TXIN0 RO0Red Odd Pixel Data (LSB)
52TXIN1 RO1Red Odd Pixel Data
54TXIN2 RO2Red Odd Pixel Data
55TXIN3 RO3Red Odd Pixel Data
56TXIN4 RO4Red Odd Pixel Data
2TXIN5 RO7Red Odd Pixel Data (MSB)
3TXIN6 RO5Red Odd Pixel Data
4TXIN7 GO0Green Odd Pixel Data (LSB)
6TXIN8 GO1Green Odd Pixel Data
8TXIN10GO6Green Odd Pixel Data
10TXIN11GO7Green Odd Pixel Data (MSB)
Output
Signal
TXOUT0-
TXOUT0+
TXOUT3+
TXOUT0-
TXOUT0+
TXOUT1-
TXOUT1+
TXOUT3-
TXOUT3+
To LTM200KT10
Interface (CN1)
No. 1
No. 2
No. 11
No. 1
No. 2
No. 3
No. 4
No. 10
No. 11
RXO0-
RXO0+
RXO3+
RXO0-
RXO0+
RXO1-
RXO1+
RXO3-
RXO3+
11TXIN12GO3Green Odd Pixel Data
12TXIN13GO4Green Odd Pixel Data
4TXIN
15TXIN15BO0Blue Odd Pixel Data (LSB)
16TXIN16BO6Blue Odd Pixel Data
18TXIN17BO7Blue Odd Pixel Data (MSB)
20TXIN19BO2Blue Odd Pixel Data
22TXIN20BO3Blue Odd Pixel Data
23TXIN21BO4Blue Odd Pixel Data
24TXIN22BO5Blue Odd Pixel Data
50TXIN27RO6Red Odd Pixel Data
4
reen Odd Pixel Data
TXOUT1-
TXOUT3-
TXOUT3+
TXOUT1-
TXOUT2-
TXOUT2+
TXOUT3-
TXOUT3+
No. 3
No. 10
No. 11
No. 3
+
o.
No. 5
No. 6
No. 10
No. 11
RXO1-
RXO3-
RXO3+
RXO1-
+
RXO2-
RXO2+
RXO3-
RXO3+
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5.2.2 Even Pixel Data (2nd pixel data)
52
TXIN1
RE1
Red Even Pixel Data
(
()
TXOUT3+
N
23
RXE3+
TXOUT1
No.16
RXE1
14
TXIN14
GE5
Green Even Pixel Data
TXOUT1+
No. 16
RXE1+
LVDS Transmitter ( DS90C383, DS90C385 ) Signal Interface
PRODUCT INFORMATIONPRODUCT INFORMATION
Device Input PinDevice Input Signal
NoSymbolSymbolFunctionTerminalSymbol
51TXIN0 RE0Red Even Pixel Data (LSB)
54TXIN2 RE2Red Even Pixel Data
55TXIN3 RE3Red Even Pixel Data
56TXIN4 RE4Red Even Pixel Data
2TXIN5 RE7Red Even Pixel Data
3TXIN6 RE5Red Even Pixel Data
4TXIN7 GE0Green Even Pixel Data (LSB)
6TXIN8 GE1Green Even Pixel Data
7TXIN9 GE2Green Even Pixel Data
MSB)
Output
Signal
TXOUT0-
TXOUT0+
TXOUT3-
TXOUT0-
TXOUT0+
TXOUT1-
TXOUT1+
To LTM200KT10
Interface (CN1)
No. 12
No. 13
No. 22
o.
No. 12
No. 13
No. 15
No. 16
RXE0-
RXE0+
RXE3-
RXE0-
RXE0+
RXE1-
RXE1+
8TXIN10GE6Green Even Pixel Data
10TXIN11GE7Green Even Pixel Data (MSB)
11TXIN12GE3Green Even Pixel Data
12TXIN13GE4Green Even Pixel Data
15TXIN15BE0Blue Even Pixel Data (LSB)
16TXIN16BE6Blue Even Pixel Data
18TXIN17BE7Blue Even Pixel Data (MSB)
19TXIN18BE1Blue Even Pixel Data
20TXIN19BE2Blue Even Pixel Data
22TXIN20BE3Blue Even Pixel Data
23TXIN21BE4Blue Even Pixel Data
24TXIN22BE5Blue Even Pixel Data
TXOUT3-
TXOUT3+
TXOUT1-
TXOUT3-
TXOUT3+
TXOUT1-
TXOUT2-
TXOUT2+
No. 22
No. 23
No. 15
+
No. 22
No. 23
No. 15
No. 18
No. 19
RXE3-
RXE3+
RXE1-
+
RXE3-
RXE3+
RXE1-
RXE2-
RXE2+
50TXIN27RE6Red Even Pixel Data
MODELLTM200KT10Page
TXOUT3-
TXOUT3+
No. 22
No. 23
RXE3-
RXE3+
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Page 20
5.2 LVDS Interface (2)
(
()
A3M
No. 10
RXO3
100
G12
GO2
Green Odd Pixel Data
A1P
No. 4
RXO1+
91
B11
BO1
Blue Odd Pixel Data
5.2.3 Odd Pixel Data (1st pixel data)
LVDS Transmitter ( DS90C387 ) Signal Interface
PRODUCT INFORMATIONPRODUCT INFORMATION
Device Input PinDevice Input Signal
NoSymbolSymbolFunctionTerminalSymbol
10R10RO0Red Odd Pixel Data
9R11RO1Red Odd Pixel Data
8R12 RO2Red Odd Pixel Data
7R13 RO3Red Odd Pixel Data
6R14 RO4Red Odd Pixel Data
3R17 RO7Red Odd Pixel Data (MSB)
5R15 RO5Red Odd Pixel Data
2G10 GO0Green Odd Pixel Data (LSB)
1G11 GO1Green Odd Pixel Data
94G16GO6Green Odd Pixel Data
93G17GO7Green Odd Pixel Data (MSB)
LSB)
Output
Signal
A0M
A0P
A3P
A0M
A0P
A1M
A1P
A3M
A3P
To LTM200KT10
Interface (CN1)
No. 1
No. 2
No. 11
No. 1
No. 2
No. 3
No. 4
No. 10
No. 11
RXO0-
RXO0+
RXO3+
RXO0-
RXO0+
RXO1-
RXO1+
RXO3-
RXO3+
-
99G13GO3Green Odd Pixel Data
96G14GO4Green Odd Pixel Data
95G15GO5Green Odd Pixel Data
92B10BO0Blue Odd Pixel Data (LSB)
86B16BO6Blue Odd Pixel Data
85B17BO7Blue Odd Pixel Data (MSB)
90B12BO2Blue Odd Pixel Data
89B13BO3Blue Odd Pixel Data
88B14BO4Blue Odd Pixel Data
87B15BO5Blue Odd Pixel Data
4R16RO6Red Odd Pixel Data
A1M
A3M
A3P
A1MNo. 3RXO1A1PNo. 4RXO1+
A2M
A2P
A3M
A3P
No. 3
No. 10
No. 11
No. 5
No. 6
No. 10
No. 11
RXO1-
RXO3-
RXO3+
RXO2-
RXO2+
RXO3-
RXO3+
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Page 21
5.2.4 Even Pixel Data (2nd pixel data)
LVDS Transmitter ( DS90C387
) Signal Interface
81
R21
RE1
Red Even Pixel Data
(
()
A7P
No. 23
RXE3+
69
G25
GE5
Green Even Pixel Data
A5P
No. 16
RXE1+
PRODUCT INFORMATIONPRODUCT INFORMATION
Device Input PinDevice Input Signal
NoSymbolSymbolFunctionTerminalSymbol
84R20RE0Red Even Pixel Data (LSB)
80R22 RE2Red Even Pixel Data
79R23 RE3Red Even Pixel Data
78R24 RE4Red Even Pixel Data
75R27 RE7Red Even Pixel Data
77R25 RE5Red Even Pixel Data
74G20 GE0Green Even Pixel Data (LSB)
73G21 GE1Green Even Pixel Data
72G22 GE2Green Even Pixel Data
66G26GE6Green Even Pixel Data
65G27GE7Green Even Pixel Data (MSB)
MSB)
Output
Signal
A4M
A4P
A7M
A4M
A4P
A5M
A5P
A7M
A7P
To LTM200KT10
Interface (CN1)
No. 12
No. 13
No. 22
No. 12
No. 13
No. 15
No. 16
No. 22
No. 23
RXE0-
RXE0+
RXE3-
RXE0-
RXE0+
RXE1-
RXE1+
RXE3-
RXE3+
71G23GE3Green Even Pixel Data
70G24GE4Green Even Pixel Data
64B20BE0Blue Even Pixel Data (LSB)
58B26BE6Blue Even Pixel Data
57B27BE7Blue Even Pixel Data (MSB)
63B21BE1Blue Even Pixel Data
62B22BE2Blue Even Pixel Data
61B23BE3Blue Even Pixel Data
60B24BE4Blue Even Pixel Data
59B25BE5Blue Even Pixel Data
76R26RE6Red Even Pixel Data
A5M
A5P
A7M
A7P
A5M
A6M
A6P
A7M
A7P
No. 15
No. 16
No. 22
No. 23
No. 15
No. 18
No. 19
No. 22
No. 23
RXE1-
RXE1+
RXE3-
RXE3+
RXE1-
RXE2-
RXE2+
RXE3-
RXE3+
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Page 22
5.2.5 Timing Diagrams of LVDS For Transmitting
LVDS Receiver : Integrated T-CON
PRODUCT INFORMATIONPRODUCT INFORMATION
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Page 23
PRODUCT INFORMATIONPRODUCT INFORMATION
5.3 Back Light Unit
LED Bar input connector :
Connector: Molex 104086-0410 or equivalent
((Matching Connector : Molex Molex 104085-0400, 104085-0410 or equivalent )
Pin No.Pin descriptionFunction
1VinLED power input
2RTN 1Channel 1 LED return
3RTN 2Channel 2 LED return
4RTN 3Channel 3 LED return
Note ) Pin number starts from Left side
Rear view of panel
Connector
▼
#4
Fig. Connector diagram
#1
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Page 24
PRODUCT INFORMATIONPRODUCT INFORMATION
BLACK
000000000000000000000000R0
OF
G252
5.4 Input Signals, Basic Display Colors and Gray Scale of Each Color
Rn : Red Gray, Gn : Green Gray, Bn : Blue Gray (n = Gray level)
Input Signal : 0 = Low level voltage, 1 = High level voltage
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Page 25
6. Interface Timing
SIGNAL
ITEM
SYMBOL
MIN
TYP
MAX
Unit
NOTE
6.1 Timing Parameters ( DE only mode )
PRODUCT INFORMATIONPRODUCT INFORMATION
Clock
HsyncF
Frequency
VsyncF
Active
Vertical
Display Term
Display
Period
Vertical TotalT
Active
Display
Horizontal
Period
Display Term
Horizontal
Total
1/T
T
T
T
H
V
VD
V
HD
H
.
C
48.559.276.1MHz-
.
.
46.356.070.4kHz-
506075Hz-
900900900Lines-
906934955Lines-
800800800clocks
95010561150clocks
2pixel/
clock
2pixel/
clock
Note (1) Test Point : TTL control signal and CLK at LVDS Tx input terminal in system
(2) Internal Vcc = 5.0V
(3) While operation, DE signal should be have the same cycle.
(4) Main frequency Max is 76.1MHz without spread spectrum.
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Page 26
PRODUCT INFORMATIONPRODUCT INFORMATION
DE
SIGNALS
T
CL
6.2 Timing diagrams of interface signal ( DE only mode )
TV
DE
DCLK
DATA
TVD
TVB
TH
THD
TC
DCLK
DISPLAY
DATA
DE
TC
TCH
TDSTDH
TES
0.5
V
0.5
V
CC
0.5
V
CC
CC
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Page 27
6.3 Power ON/OFF Sequence
To prevent a latch
up or DC operation of the LCD Module, the power on/off
p
p
PRODUCT INFORMATIONPRODUCT INFORMATION
-
sequence should be as the diagram below.
300㎲≤T1≤10msec
0≤T2≤50msec
0≤T3≤50msec
1sec≤T4
Back-Light
(Recommended)
500msec≤T5
100msec≤T6
T1 : VDDrising time from 10% to 90%
T2 : The time from VDDto valid data at power ON.
T3 : The time from valid data off to VDDoff at power Off.
T4 : VDDoff time for Windows restart
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 LED 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 VDD= off level,
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
eriod.
Interface signal should not be kept at high impedance when the power is on.
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Page 28
6.4 VDD Power Dip Condition
V
DD
90%
T
PRODUCT INFORMATIONPRODUCT INFORMATION
d
80%
V
CC
GND
4.5V ≤ VDD≤ 5.5V
If V
(typ.) x 80% ≤ VCC≤ VDD(typ) x 90%
DD
Then, 0<Td ≤20msec
Note(1) The above conditions are for the glitch of the input voltage.
(2) For stable operation of an LCD Module power, please follow them.
i.e., if typ VDD x 80% ≤ Vcc ≤ typ VDD x 90%, then Tdshould be less than 20ms.
MODELLTM200KT10Page
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Page 29
7. Outline Dimension
[ Refer to the next page ]
PRODUCT INFORMATIONPRODUCT INFORMATION
MODELLTM200KT10Page
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Page 30
FI L E NO.
5
7
0
7
5
6
ABCDEFGHIJK
LMNOP
QRSTUVW
NO
PAR T N AME
CODE NO
SPE CI F I C AT I ON
WEI GHT
UNF O L DE D DI M.
Q' TY
OF . MAT ER I A L
FI N I S H MAT E RI A L
REMA RK
0
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5
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2 - M3 S c r e w
De p t h Ma x 3 . 5
5
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4 ±0. 3
3
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0
±
1
4
3
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0
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1
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ACT I V E CE NT E R
4 4 2 . 8 ACT I V E AR EA
4 4 6 . 8 BE Z EL OPEN
4 6 2 . 8 ±0. 5 OUT S I Z E
5
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±
2
9 . 8 ±0. 5
1 1 6 . 21 1 6 . 21 1 6 . 2
4 - 4 1 . 5
6 9
Z-9 . 8
A
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A
P
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A
B
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LJ 9 6 -XX XX X X
X X X X X X X X X X X X X X X X
Z-7 . 3
XX X XX X X
XX XX
MADE I N CHI NA
L TM2 00 KT XX -XX X
XXX XXX XXXX XX X
Z-7 . 7
* NOT E S
1 . BA CKL I GHT : WHI T E L ED
2 . L ED C ONNE CTOR SP ECI F I CA T I ON.
- MAK E R : MOL E X
- P AR T N O. : 1 0 4 0 8 60 41 0
OR e qu i v a l e nt
3 . I / F CON NE CT OR SP ECI F I CA T I ON.
- MAK E R:
- P AR T N O.
4 . USE R MOUNT I NG T ORQUE SP EC : 3 ~ 4 k gf - c m
2 . 1
3 . 6
4
2 . 1
2 . 3 5
0
R
E
V
I
S
I
O
N
GEN ERA L T OLE RA NCE
STE P L E VE L 1 L E VE L 2 L E VE L 3
0 < X < 4 ±0. 05 ±0. 1 ±0. 2
4 < X < 16 ±0. 0 8 ±0. 1 5 ±0 . 3
16 < X < 6 4 ±0. 12 ±0. 25 ±0. 5
64 < X < 2 56 ±0. 2 5 ±0. 4 ±0. 8
DESCR I PT I ON OF REV I SI ON RE ASON CHG' D BY
REV DATE
mm
DRA' N BY
DES' D BY
UNI T
/
SCAL E
TOL ER ANC E
SA MSUN G EL E CTR ONI C S
CHK' D BY
APP ' D B Y
SPE C. N O
MODEL NA ME
L TM2 00 K T1 0
PAR T/ SHEE T
OUT LI NE -DI M.
NAME
CODE NO.VE R.
SHEET
/
1 1
00
Page 31
8. General Precautions
(a) When the module is assembled, it should be attached to the system firmly
In addition to damage, it may cause improper operation or damage to the module
time, staining or discoloration may occur
reaction
PRODUCT INFORMATIONPRODUCT INFORMATION
8.1 Handling
using all mounting holes. Be careful not to twist and bend the module.
(b) Because the inverter uses high voltages, it should be disconnected from power
source before it is assembled or disassembled.
(c) Refrain from strong mechanical shock and / or any force to the module.
and LED back light.
(d) Note that polarizer films are very fragile and could be damaged easily.
Do not press or scratch the surface harder than a HB pencil lead.
(e) Wipe off water droplets or oil immediately. If you leave the droplets for a long
.
(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 cause permanent damage to the polarizer due to chemical
.
(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 static, or the CMOS Gate Array IC 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.
(I) Do not adjust the variable resistor located on the Module.
(m) Protection film for polarizer on the Module should be slowly peeled off just before use
so that the electrostatic charge can be minimized.
(n) Pins of I/F connector should not be touched directly with bare hands.
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Page 32
PRODUCT INFORMATIONPRODUCT INFORMATION
It is highly recommended to store the Module with temperature from 5 to 40
℃
fluorescent light in storing
(a) The LCD
(b) If the product will be used in extreme conditions such as high temperature
8.2 Storage
(a) Do not leave the Module in high temperature, and high humidity for a long time.
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
.
(d) Storage period is recommended not to exceed 1 year.
8.3 Operation
(a) Do not connect or disconnect the Module in the "Power On" condition.
(b) Power supply should always be turned on/off by the item 6.3
"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.
8.4 Operation Condition Guide
product should be operated under normal conditions.
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.
,
MODELLTM200KT10Page
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Page 33
8.5 Others
(a) Ul
fil
input voltage variation, variation in part contents and environmental temperature
To avoid image sticking, it is recommended to use a screen saver
PRODUCT INFORMATIONPRODUCT INFORMATION
tra-violet ray
(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,
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 “stuck" to the screen.
(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.
ter is necessary for outdoor operation.
,
.
MODELLTM200KT10Page
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