AVIC TM150TDSG52 Specification

SHANGHAI
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SHANGHAI
SHANGHAI AVIC
AVIC
AVIC
AVIC OPTOELECTRONICS
OPTOELECTRONICS
OPTOELECTRONICS
OPTOELECTRONICS Q/S 1091 -201 2
Customer
Customer
Customer
Customer :
Approved
Approved
Approved
Approved by
MODEL
MODEL
MODEL
MODEL NO.
ISSUED
ISSUED
ISSUED
ISSUED DATE:
VERSION
VERSION
VERSION
VERSION :
:
:
:
by
by
by Notes
NO.
NO.
NO. :
DATE:
DATE:
DATE: 2012/0
Preliminary
Preliminary
Preliminary
Preliminary Specification
Final
Final
Final
Final Product
:
:
: TM150TDS
:
:
: 1.
Product
Product
Product Specification
TM150TDS
TM150TDS
TM150TDS G
2012/0
2012/0
2012/0 6
Specification
Specification
Specification
Specification
Specification
Specification
Notes
Notes
Notes
6
6
6 /
1.
2
1.
2
1. 2
2
G
5
2
G
5
2
G 5
5 2
2
/
15
/
15
/ 15
15
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This technical specification is subjected to change without notice
The information contained herein is the exclusive property of SHANGHAI
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AVIC
Confirmed
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Confirmed
AVIC Confirmed
Confirmed :
Prepared
Prepared
Prepared
Prepared by
Pean
:
:
:
by
by
by Checked
AVIC
OPTO ELECTRONICS Corporation.
Checked
Checked
Checked by
by
by
by Approved
Approved
Approved
Approved by
Hyman
Hyman
Hyman
Hyman Chen
AVIC
Chen
Chen
Chen
by
by
by
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OPTOELECTRONICS Q/S 1091 -201 2
TABLE
TABLE
TABLE
TABLE OF
1. OUTLINE
2. GENERAL SPECIFICATIONS
..........................................................................................................................................
......................................................................................................
3. ABSOLUTE MAXIMUM RATINGS
4. BLOCK DIAGRAM
..........................................................................................................................
5. MECHANICAL SPECIFICATIONS
6. ELECTRICAL CHARACTERISTICS
OF
CONTENTS
OF
CONTENTS
OF CONTENTS
CONTENTS
...............................................................................................
...............................................................................................
............................................................................................
7. CONNECTIONS AND FUNCTIONS FOR INTERFACE PINS
8. DISPLAY COLORS AND INPUT
9. INTERFACE TIMING
10. OPTICS
11.
MARKINGS
........................................................................................................................................
..................................................................................................................................
...................................................................................................................
DATA
INFORMATION
12. PACKING, TRANSPORTATION AND DELIVERY
........................................................
................................................................
4
5
6
7
8
8
..............................................
10
12
14
16
19
21
13. PRECAUTIONS
14. OUTDRAWING
..........................................................................................................................
...........................................................................................................................
23
25
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AVIC
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OPTOELECTRONICS Q/S 1091 -201 2
RECORD
RECORD
RECORD
RECORD OF
Rev
Rev
Rev
Rev Issued
1.0 2012-05- 21 Preliminary Release Pean Wu
1.1 2012-05- 24
1.2 2012-0 6 - 15 add the OUTDRAWING Hyman Chen
Issued
Issued
Issued Date
Date
Date
Date Description
Description
Description
Description Editor
Page 5,8 Luminance change from 300 cd/m
2
cd/m
(typ.)
OF
REVISION
OF
REVISION
OF REVISION
REVISION
2
(typ.) to 250
Editor
Editor
Editor
Pean Wu
The information contained herein is the exclusive property of SHANGHAI
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OPTO ELECTRONICS Corporation.
AVIC
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1.
OUTLINE
1.
OUTLINE
1.
1. OUTLINE
OUTLINE
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OPTOELECTRONICS Q/S 1091 -201 2

1.1 STRUCTURE AND PRINCIPLE

TM150TDS G 5 2 module is composed of the amorphous silicon thin film transistor liquid crystal
display (a-Si TFT LCD) panel structure with driver LSIs for driving the TFT (Thin Film Transistor)
array and a backlight. The a-Si TFT LCD panel structure is injected liquid crystal material into a
narrow gap between the TFT array glass substrate and a color-filter glass substrate.
Color (Red, Green, Blue) data signals from a host system (e.g. PC, signal generator, etc.) are
modulated into best form for active matrix system by a signal processing board, and sent to the driver
LSIs which drive the individual TFT arrays. The TFT array as an electro-optical switch regulates the
amount of transmitted light from the backlight assembly, when it is controlled by data signals. Color
images are created by regulating the amount of transmitted light through the TFT array of red, green
and blue dots.

1.2 APPLICATIONS

Monitor for industrial display

1.3 FEATURES

a-Si TFT active matrix
LVDS interface
R.G.B input 8bit, 16.7 millions colors (6bit+Hi FRC)
R.G.B input 6 bit selectable , 262K color s
Resolution XGA (1024 × 768 pixels)
Wide viewing angle 80 ° /80 ° / 80 ° /80 ° (L/R/U/D)
High contrast ratio 600:1
Module size 326.5 (H) × 253.5 (V) × 11.8 (D) mm
Fast response time (T on+ Toff= 8ms
High gamut (60%)
Edge light type backlight (White-LED)
Backlight driver circuit included
RoHS compliance
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2.
GENERAL
2.
GENERAL
2.
2. GENERAL
GENERAL SPECIFICATIONS
Display area 304.128 (W) x 228.096 (V) mm (typ.)
Diagonal size of display 38.0 cm (15.0 inches)
Drive system a-Si TFT active matrix
Display color 16.7 M colors (6bit+ HiFRC) ; 262K color s selectable
Pixel 1,024 (H) × 768V) pixels
Pixel arrangement RGB vertical stripe
Dot pitch 0.099 (H) × 0.297(V) mm
Pixel pitch 0.297(H) × 0.297(V) mm
Module size 326.5mm (H)(typ.) × 253.5mm (V)(typ.) × 11.8 mm(D) (typ.)
Weight ( 1000 g typ.)
Contrast ratio 600 :1 (typ.)
Viewing angle(U/D/L/R) 80 ° / 80 ° /80 ° /80 ° (typ.)
Color gamut 60% (typ.)
Response time 8 ms (typ.)
Luminance 250 cd/m
Transmissive Mode Normally White
Surface Treatment Anti Glare
Signal system LVDS 1 port
Power supply voltage LCD panel: 3.3V
Backlight White-LED
Power consumption (11 W max )
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SPECIFICATIONS
SPECIFICATIONS
SPECIFICATIONS
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OPTOELECTRONICS Q/S 1091 -201 2
LED backlight: 12V
2
(typ.)
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3.
ABSOLUTE
3.
ABSOLUTE
3.
3. ABSOLUTE
ABSOLUTE MAXIMUM
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MAXIMUM
MAXIMUM
MAXIMUM RATINGS
Parameter Symbol Rating Unit Remarks
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OPTOELECTRONICS Q/S 1091 -201 2
RATINGS
RATINGS
RATINGS
Power Supply Voltage VCC -0.3 ~ +4.0 V
Input voltage for signals Vi -0.3 ~ + 4.0 V
Storage temperature
Operating temperature
Absolute humidity AH 70 g/m
Note1: T emperature and relative humidity range is shown in the figure below.
(a) 90%RH Max.
(b) Wet-bulb temperature should be39 ° C Max.
(c) No condensation.
Note2: The temperature of panel display surface area should be - 0 ° C Min and 65 ° C Max.
(Ta
40 ° C )
Relative
Relative
Relative
Relative Humidity
80
Tst
Top
(Ta
Humidity
Humidity
Humidity (% RH
- 2 0 ~ + 65 ° C Note 1
0 ~ + 65 ° C Note 1, 2
3
> 4 0 ° C )
RH
RH
RH
Ta
Ta
Ta
= 25 ° C
= 25 ° C
> 50 ° C
60
Operating
Operating
Operating
Operating Range
40
20
Temperature
Temperature
Temperature
Temperature (
-40 -20 0 20 40 60 80
(
(
( )
)
)
)
5
Storage
Storage
Storage
Storage Range
Range
Range
Range
Range
Range
Range
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4.
BLOCK
4.
BLOCK
4.
4. BLOCK
BLOCK DIAGRAM
DIAGRAM
DIAGRAM
DIAGRAM
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Note1: Relations between GND (Signal ground and LED driver ground) and FG (Frame ground) in
Note2: GND and FG must be connected to customer equipment ’ s ground, and it is recommended
that
these grounds be connected together in customer equipment.
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5.
MECHANICAL
5.
MECHANICAL
5.
5. MECHANICAL
MECHANICAL SPECIFICATIONS
Parameter Specification Unit
Module size 326.5 ± 0.5 (W) × 253.5 ± 0.5 (H) × 11.8 ± 0.3 (D) mm
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SPECIFICATIONS
SPECIFICATIONS
SPECIFICATIONS
Display area
Weight ( 1000 g typ.) g
6.
ELECTRICAL
6.
ELECTRICAL
6.
6. ELECTRICAL
ELECTRICAL CHARACTERISTICS
CHARACTERISTICS
CHARACTERISTICS
CHARACTERISTICS
304.128 (W) x 228.096 (V) mm (typ.)
[38cm (15.0 inches)]

6.1 DRIVING FOR LCD

Parameter Symbol min. typ. max. Unit Remarks
Power supply voltage VCC 3.0 3.3 3.6 V -
Power supply ripple Vp-p 200mV V
Power supply current ICC - ( 500 ) ( 550 ) mA
Permissible ripple voltage VRP - - 100 mV VDD
Differential input voltage
Differential input threshold
voltage for LVDS receiver
Input voltage width for L VDS
receiver
Terminating resistor RT - 100 - Ω -
Rush current I
Input voltage for
MSL signals
Note 1: All black pattern
Note 2: Common mode voltage for LVDS receiver
Note 3: Measurement Conditions:
High VTH - - 100 mV
Low VTL -100 - mV
High VFH 2.0 VCC V
Low VFL 0 0. 4 V
Vid
Vi 0 - 1 . 90 V -
rush
250 450 mV
- - 1.5 A Note3
Including spike
at VDD = 3.3V
VCM = 1.25V
mm
noise
Note 1
Note2
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