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VL-PS-TLM-T700T2120-03 REV.B
(TLM-T700T2120)
JAN/2009
PAGE 2 OF 28
DOCUMENT REVISION HISTORY DOCUMENT REVISION
FROM TO DATE DESCRIPTION CHANGED
BY CHECKED
BY
A
A B
2009.01.08
2009.01.14
First Release.
Items 1~3 were updated: 1.)(Page 4, point 1) “Viewing angle: 6 o’clock (Highest
contrast), 12 o’clock (Widest viewing).” was changed to “Viewing angle: 6 o’clock (Highest contrast), 12 o’clock (Best viewing).”
2.)(Page 5, Fig.1) The drawing was updated from Rev.6 to Rev.7. 3.)(Page 24, Fig.16) Definition of Viewing Angle was updated.
PHILIP CHENG
PHILIP CHENG
KEITH CHAN
KEITH CHAN
VL-PS-TLM-T700T2120-03 REV.B
(TLM-T700T2120)
JAN/2009
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CONTENTS
Page No.1. GENERAL DESCRIPTION 4 2. MECHANICAL SPECIFICATIONS 4 3. INTERFACE SIGNALS 7 4. ABSOLUTE MAXIMUM RATINGS 10 4.1 ELECTRICAL MAXIMUM RATINGS – FOR IC ONLY 10 4.2 ENVIRONMENTAL CONDITION 10 5. ELECTRICAL SPECIFICATIONS 11 5.1 RECOMMENDED OPERATING CONDITIONS 11 5.2 POWER CONSUMPTION 11 5.3 TIMING SPECIFICATIONS 12 6. SPI REGISTER SETTING 18 6.1 SPI REGISTER DESCRIPTION 18 7. POWER ON/OFF SEQUENCE 21 7.1 POWER ON CONTROL FOR AUTO MODE 21 7.2 RESET WHEN POWER ON 21 8. DISPLAY COLOR AND GRAY SCALE REFERENCE 22 9. POWER ON SEQUENCE 23 10. PIXEL ARRANGEMENT 23 11. OPTICAL CHARACTERISTICS 24 12. RELIABILITY TEST 26 13. HANDLING CAUTIONS 27 13.1 MOUNTING OF MODULE 27 13.2 PRECAUTIONS IN MOUNTING 27 13.3 ADJUSTING MODULE 27 13.4 OTHERS 27
VL-PS-TLM-T700T2120-03 REV.B
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VARITRONIX LIMITED
Preliminary Specification
of LCD Module Type
Model No.: TLM-T700T2120-03
1. General Description • 7.0"(diagonal), 800 x RGB x 480 dots, 16.7M colour, transmissive, normally white, amorphous
silicon TFT active matrix LCD module. • Viewing angle: 6 o’clock (Highest contrast), 12 o’clock (Best viewing). • Digital parallel RGB input mode with build-in TCON. • White LED backlight. • FPC connection.
2. Mechanical Specifications The mechanical detail is shown in Fig. 1 and summarized in Table 1 below.
Table 1 Parameter Specifications Unit
Outline dimensions 162.4(W) x 105.0(H) x 7.3(D) (Exclude FPC, clips, cables & connector of backlight) mm
Bezel opening 154.0(W) x 93.0(H) mmActive area 152.4(W) x 91.44(H) mm
Display format 800 x RGB x 480 dotsColor configuration RGB stripe -
Color TFT 800xRGBx480
Dot pitch 0.1905(RGB)(W) x 0.1905(H) (or 0.0635(W) x 0.1905(H)) mm
Weight Approx: TBD gram
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Figure 1: Module Specification
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7"(DIAGONAL) TFT LCD DISPLAY800 x RGB x 480 DOTS
400x
RG
B
WHITE LED BACKLIGHT
A
24
K
TFT LCDSOURCE DRIVER
WITH TCON
480
TLM-T700T2120-03
TFT LCDSOURCE DRIVER
WITH TCON
400x
RG
B
GNDFRCDEVSHSUD
TFT GATE DRIVER
VGHVDDVEEVSS
VCOM
D07~D00,D17~D10,D27~D20
SDOSDIRESETBCLKSPCKSPEN
V10~V1
VSSAVDDALRVCC
10
Figure 2: Block diagram
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3. Interface signals Table 2(a): Pin assignment of the module
Pin No. Symbol I/O Function Remark 1 VSS Digital power ground for gate driver 2 VEE Negative power for gate driver 3 VDD Digital power supply for gate driver 4 VGH Positive power for gate driver 5 VCOM Voltage for common electrode 6 UD Up / Down control for gate driver 7 VSS Digital power ground for gate driver 8 HS Horizontal sync input 9 VS Vertical sync input 10 DE Input data enable control 11 FRC Dithering control setting 12 GND Digital ground 13 D27 Blue Data (MSB) 14 D26 Blue Data 15 D25 Blue Data 16 D24 Blue Data 17 D23 Blue Data 18 D22 Blue Data 19 D21 Blue Data 20 D20 Blue Data (LSB) 21 GND Digital ground 22 SPEN Serial port data enable signal 23 SPCK Serial port clock 24 CLK Clock signal. Latching data at the falling edge 25 GND Digital ground 26 D17 Green Data (MSB) 27 D16 Green Data 28 D15 Green Data 29 D14 Green Data 30 D13 Green Data 31 D12 Green Data 32 D11 Green Data 33 D10 Green Data (LSB) 34 GND Digital ground 35 D07 Red Data (MSB) 36 D06 Red Data 37 D05 Red Data 38 D04 Red Data 39 D03 Red Data 40 D02 Red Data 41 D01 Red Data
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Table 2(b): Pin assignment of the module Pin No. Symbol I/O Function Remark
42 D00 Red Data (LSB) 43 RESETB Hardware global reset 44 SDI Serial port Data Input 45 SDO Serial port Data output 46 VCC Digital power 47 LR Left/Right control for source driver 48 GND Digital ground 49 VDDA Analog power supply for source driver Note 1 50 VSSA Analog power ground for source driver 51 V10 Gamma Voltage 10 52 V9 Gamma Voltage 9 53 V8 Gamma Voltage 8 54 V7 Gamma Voltage 7 55 V6 Gamma Voltage 6 56 V5 Gamma Voltage 5 57 V4 Gamma Voltage 4 58 V3 Gamma Voltage 3 59 V2 Gamma Voltage 2 60 V1 Gamma Voltage 1
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Note 1: Typical Application Circuit (When VDDA = +12V)
Figure 3
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Table 2(c): Pin assignment of the backlight connector Symbol Description
A Anode (+) of the LED backlight. K Cathode (-) of the LED backlight.
4. Absolute Maximum Ratings 4.1 Electrical Maximum Ratings – for IC Only
Table 3 (VSS=GND=0V, Ta=25°C) Parameters Symbol MIN. MAX. Unit Remark
VCC -0.3 +7.0 V VDDA -0.3 +13.5 V VDD -0.3 +7.0 V VGH -0.3 +42.0 V
VGH-VEE 12 40 V
Supply Voltage
VEE VGH-42 +0.3 V
4.2 Environmental Condition
Table 4
Operating temperature
(Topr)
Storage temperature
(Tstg) (Note 1)
Item
Min. Max. Min. Max.
Remark
Ambient temperature (Ta) -30°C +85°C -40°C +90°C Dry Note 1: Product cannot sustain at extreme storage conditions for long time.
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5. Electrical Specifications 5.1 Recommended Operating Conditions
Table 5 (VSS=GND=0V, Ta=25°C) Item Symbol Conditions Min. Typ. Max. Unit Remark
VCC 3.0 3.3 3.6 V Supply Voltage for Source Driver VDDA - 12 - V
VDD 3.0 3.3 3.6 V VGH 16 18 19 V Supply Voltage for Gate
Driver VEE -7 -6 -5 V VIH 0.8VCC - VCC V Digital Input Voltage VIL 0 - 0.2VCC V
VCOM Voltage VCOM - TBD - V Supply voltage of white
LED backlight VLED
=VA-VK - TBD 19.0 V
Luminance(on the module surface)
Forward current= 450 mA
Number of LED dies =15 pcs - 550 - cd/m2
5.2 Power Consumption
Table 6 Parameter Symbol Condition Min. Typ. Max. Unit Remark
Supply Current for Source Driver (Digital) ICC VCC= 3.3V - TBD - mA Supply Current for Source Driver (Analog) IDDA VDDA=12V - TBD - mA
Supply Current for Gate Driver (Digital) IDD VDD=3.3V - TBD - mA Supply Current for Gate Driver (Hi level) IGH VGH=18V - TBD - mA
Supply Current for Gate Driver(Low level) IEE VEE=-6V - TBD - mA LCD Panel Power Consumption - TBD - mW Backlight Power Consumption - TBD - mW
Total Power Consumption - TBD - mW
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5.3 Timing Characteristics 5.3.1 Input Signal Characteristics 5.3.1.1 AC Electrical Characteristics
Table 7
5.3.1.2 Resolution:800x480 5.3.1.2.1 Sync Mode
Table 8
5.3.1.2.2 DE Mode
Table 9
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Table 10
5.3.2 Hardware Reset Timing
Table 11
Figure 4
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5.3.3 Timing Controller Timing Chart 5.3.3.1 Clock and Data Input Waveforms
Figure 5: Clock and Data input waveforms.
5.3.3.2 Data Input Format
Figure 6: SYNC Mode Horizontal Data Format
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Figure 7: SYNC Mode Vertical Data Format
Figure 8: DE Mode Data Format
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5.3.3.3 Digital Output timing waveforms
Figure 9
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5.3.4 SPI timing characteristics Table 12
SPI Timing
Figure 10: SPI timing (read data)
Figure 11: SPI timing (write data)
SPEN must keep low more than 13 clocks after SDI starting to write data.
Write SPI commend must after RESETB rising more than 10 us.
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JAN/2009
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6. SPI Register Setting 6.1 SPI Register Description
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(TLM-T700T2120)
JAN/2009
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VL-PS-TLM-T700T2120-03 REV.B
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JAN/2009
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7. Power ON/OFF Sequence To prevent the device damage from latch up, the power ON/OFF sequence shown below must be followed.
Power ON: (VCC, GND)→ (VDDA, VSSA) → (V1 to V10) Power OFF: (V1 to V10) )→ (VDDA, VSSA) → (VCC, GND)
7.1 Power ON Control for Auto Mode
The product has a power ON sequence control function. When power is ON, blanking data is output for 4-frames (default value) first, from the falling edge of the following VS signal. It can be defined in register R5 A_TIME [1:0].The blanking data would be gray level 255 for normally white panel.
Figure 12 7.2 Reset When Power On
The product is internally initialized by the global reset signal, RESETB. The reset input must be held low for at least 1ms after power is stable.
Figure 13: RESETB control after power stable
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JAN/2009
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8. Display Color and Gray Scale Reference Table 13
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JAN/2009
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9. Power On Sequence The Power on sequence only effect by VCC, VDD, VDDA, VEE and VGH, the others do not care.
Figure 14
10. Pixel Arrangement
The LCD module pixel arrangement is the stripe.
Figure 15
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JAN/2009
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11. Optical Characteristics Table 14: Optical specifications (Ta=25oC)
Specifications Items Symbol Condition Min. Typ. Max. Unit Remark
φ1(3 o’clock) 65 70 - Horizontal φ2(9 o’clock) 65 70 - θ2(12 o’clock) 35 40 -
Viewing angle
Vertical θ1(6 o’clock)
Center CR≥10
45 50 -
deg Note 1
Contrast Ratio CR 400 500 - - Note 2 Rise Tr - 15 30 ms Response
Time Fall Tf θ=0°, φ=0° - 25 30 ms Note 3
Transmission Ratio T θ=0°, φ=0° 5.2 5.7 - % Cross Talk CTK θ=0°, φ=0° - - 3.5 % Note 4
Note 1: The definitions of viewing angle are as follow
Figure 16
Note 2: CR=
Note 3: Definition of Response Time Tr and Tf:
Figure 17
Luminance when Testing point is White Luminance when Testing point is Black
(Highest contrast)
(Best viewing)
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Note 4: Cross Talk (CTK) =(|YA-YB|/YA)×100%
YA: Brightness of Pattern A
YB: Brightness of Pattern B
Luminance meter: BM 5A or BM-7 fast (TOPCON)
Measurement distance: 500 mm +/- 50 mm
Ambient illumination: < 1 Lux
Measuring direction: Perpendicular to the surface of module.
Figure 18
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12. Reliability Test
Table 15: Reliability of LCD panel No Test Item Test Condition Remark 1 High Temperature Storage Test Ta = +90℃, 240hrs
2 Low Temperature Storage Test Ta = -40℃, 240hrs
3 High Temperature Operation Test Ta = +85℃, 240 hrs
4 Low Temperature Operation Test Ta = -30℃, 240hrs
5 High Temperature & High Humidity Operation Test Ta = +60℃, 90%RH, 240 hrs
6 Thermal Cycling Test (non-operating)
-30℃→+80℃, 200 Cycles 30min 30min
7 Electrostatic Discharge Test (non-operating)
200pF, 0Ω ±200V 1 time / each terminal
Ta: ambient temperature Note: The protective film must be removed before temperature test. [Criteria] In the standard conditions, there is not display function NG issue occurred. (Including: line defect, no image), All the cosmetic specification is judged before the reliability stress.
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13. Handling Cautions 13.1 Mounting of module
a) Please power off the module when you connect the input/output connector. b) Please following the tear off direction as Figure19 to remove the protective film as slowly as
possible, so that electrostatic charge can be minimized.
Figure 19 13.2 Precautions in mounting
a) When metal part of the TFT-LCD module (shielding lid and rear case) is soiled, wipe it with soft dry cloth.
b) Wipe off water drops or finger grease immediately. Long contact with water may cause discoloration or spots.
c) TFT-LCD module uses glass which breaks or cracks easily if dropped or bumped on hard surface. Please handle with care.
d) Since CMOS LSI is used in the module. So take care of static electricity and earth yourself when handling.
13.3 Adjusting module
a) Adjusting volumes on the rear face of the module have been set optimally before shipment. b) Therefore, do not change any adjusted values. If adjusted values are changed, the specifications
described may not be satisfied.
13.4 Others a) Do not expose the module to direct sunlight or intensive ultraviolet rays for many hours. b) Store the module at a room temperature place. c) The voltage of beginning electric discharge may over the normal voltage because of leakage
current from approach conductor by to draw lump read lead line around.
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d) If LCD panel breaks, it is possibly that the liquid crystal escapes from the panel. Avoid putting it into eyes or mouth. When liquid crystal sticks on hands, clothes or feet. Wash it out immediately with soap.
e) Observe all other precautionary requirements in handling general electronic components. f) Please adjust the voltage of common electrode as material of attachment by 1 module.
“Varitronix Limited reserves the right to change this specification.” TEL: (852) 2197-6000 FAX:(852) 2343-9555. URL:http://www.varitronix.com
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