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 NOTICES 1. The contents stated in this document and the product may be subject to change without prior notice. When you kindly study to use this product, please ask us or our distributor for the latest information. 2. This product is developed and produced for usage onto normal electronic products (office automation equipments, communication peripherals, electric appliance products, game machines, etc.) and is not suitable for applications which need extremely high reliability and extreme safety (aero- or space-use machines, control equipments for nuclear power, life keeping equipments, etc.). 3. This document shall not grant or guarantee any right to adapt intellectual property or any other patents of third party. 4. Please use this product correctly according to operating conditions and precautions for use stated in this document. Please install safety proof in your designing to avoid human accident, fire accident and social damage, which may be resulted from malfunction of this product. 5. This product is not designed to withstand against radiant rays. 6. It is strictly prohibited to copy or publish a part or whole of this document without our prior written approval.
REVISION HISTORY
DATE Nov.21,00 Feb.01,01 REVISION NO. Ver. 1 Ver. 2 PAGE 6 7 8 14 Feb.23,01 Ver.3 3 3 4 4 4 Apr.23,01 Ver.4 6 7 9 17 Initial Release. Change connector maker (CN1). Change connector maker (CN2). Change INTERFACE TIMING PARAMETERS. Attach Aluminum tapes for EMI improvement. Brightness TYP 230 250 Contrast ratio TYP 250 350 Measurement condition (5) IL=5.5 6.0 Lamp voltage NOTE IL=5.5 6.0 Lamp voltage TYP 630 610 CN1 ( Description change ) CN2 ( Description change ) Change RELATIONSHIP BETWEEN INPUT DATA AND DISPLAY POSITION Change Drawing DESCRIPTIONS
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
1/17
MECHANICAL CHARACTERISTICS
ITEM LCD module size Resolution Sub pixel pitch Pixel pitch Active viewing area Bezel opening area Weight SPECIFICATION 341.0(W) x 262.0(H) x 13.8(T) 1024 x RGB(W) x 768(H) 0.099(W) x 0.297(H) 0.297(W) x 0.297(H) 304.1(W) x 228.1(H) 307.3(W) x 231.3(H) (1350)TYP. Ta=25C UNIT mm pixel mm mm mm mm g
ELECTRICAL ABSOLUTE MAXIMUM RATINGS
ITEM Power supply voltage Input logic voltage CFL lamp current SYMBOL VDD-VSS VI IL MIN 0 VSS MAX 6.0 3.6 6.5 UNIT V V mA Ta=25C NOTE
ENVIRONMENTAL ABSOLUTE MAXIMUM RATINGS
ITEM Ambient temperature Humidity Vibration Shock SYMBOL TST TOP CONDITIONS Storage Operation Ta=40C max. Storage Storage MIN -20 0 MAX 60 50 85 1.5 50 UNIT C %RH G G Ta=25C NOTE Note 1 No condensation Note 2 Note 3 XYZ 11ms/direction
[ Note 1 ] Care should be taken so that the LCD module may not be subjected to the temperature beyond this specification. [ Note 2 ] Ta>40C: Absolute humidity shall be less than that of 85%RH/40C. [ Note 3 ] 10-200Hz, 30min/cycle, X/Y/Z each one cycle and except for resonant frequency.
ELECTRICAL CHARACTERISTICS
ITEM Power supply voltage input logic voltage Power Supply current VDD=5.0V ,fV=60Hz ,fCLK=32.5MHz ,Ta=25C SYMBOL CONDITIONS MIN TYP MAX UNIT NOTE VDD-VSS 4.5 5.0 5.5 V VIH High level 2.0 3.6 V Low level VSS 0.8 VIL IDD Note 1 (270) (650) mA
[ Note 1 ] Under the following display image : Typ. value : Display pattern is 256 gray scale bar.
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
2/17
OPTICAL CHARACTERISTICS
ITEM SYMBOL CONDITIONS Brightness B =0 Brightness uniformity =0 Contrast ratio CR =0 = 0 = 90 Viewing angle range CR>10 =180 =270 Rise tr Response =0 time Fall tf x Red y x Green y Color of CIE =0 Coordinate x Blue y x White y MIN 180 200 40 50 35 50 (0.59) (0.30) (0.24) (0.55) (0.09) (0.04) (0.27) (0.28) Ta=25C, VDD=5.0V, fV=60Hz TYP MAX UNIT NOTE 2 250 cd/m Note 5,8 1.30 Note 5,6,8 350 Note 2,4,8 55 60 Note 1,2, deg. 4,8 50 60 30 50 ms. Note 3,4,8 10 40 (0.64) (0.69) (0.35) (0.40) (0.29) (0.34) (0.60) (0.65) Note 4,8 (0.14) (0.19) (0.09) (0.14) (0.32) (0.37) (0.33) (0.38)
=180
DATA
Black
100%
White
Black
=270
=90
B
90% 10% 0%
=0
tr
tf
[ Note 1 ] and
[ Note 3 ] Response time
[ Note 2 ] Contrast ratio "CR" Brightness at White CR = Brightness at Black
[ Note 4 ] This shall be measured at center point No.3 of Note 7.
[ Note 5 ] The brightness shall be the average of the following 5 points of Note 7.
[ Note 6 ] The brightness uniformity shall be calculated by using following formula. Maximum brightness of 5 points
Brightness uniformity =
Minimum brightness of 5 points
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
3/17
[ Note 7 ] Measurement points
1/6Hp 1/2Hp 5/6Hp Active area 1/6Vp 1/2Vp 5/6Vp 4 1 3 5 Vp: Total Number of Vertical pixel Hp: Total Number of horizontal pixel 2
[ Note 8 ] Measurement condition (1) Measurement equipment: BM-5A (TOPCON Corp.), Field=2 (2) Ambient temperature Ta: 25 2C (3) LCD: All pixels are WHITE, VDD=5.0V, fV=60Hz (4) Measure after 30 minutes of CFL warm up. (5) IL=6.0 mArms with the CFL inverter CXA-P1212-VJL (TDK).
BACKLIGHT CHARACTERISTICS
This module is used the backlight with 2 CFL. Please follow the characteristics of 1 CFL as below.
ITEM Lamp voltage Lamp current Operating frequency Start up voltage Operating life SYM. CONDITIOS MIN VL IL 4 fL 40 VS 50000 tOL TYP 610 60 MAX 6 65 1500 UNIT Vrms mArms kHz Vrms Hours Ta=25C NOTE at IL=6.0mArms
(Recommended value) (Recommended value)
at Ta=0C at IL=6.0 mArms
[ Note 1 ] Backlight driving conditions (operating frequency fL especially) may interfere with horizontal frequency fH, causing the beat or flicker on the display. Therefore the operating frequency fL shall be adjusted in relation to horizontal frequency fH to avoid interference. [ Note 2 ] The inverter open voltage should be larger than start up voltage, otherwise backlight may blinking for a moment after turns on or not be turned on. And this voltage should be applied to lamp for more than 1 second to start up, otherwise backlight may not be turned on. [ Note 3 ] If driving current waveform is asymmetrical, mercury deviation inside of CFL will incline to one side and consequently abnormal lighting may occur. To prevent such unfavorable lighting, driving current waveform is asked to have unbalance rate of less than 10% and wave-height rate of less than 2 10%. And this driving waveform shall be confirmed in your system.
Unbalance rate = | Ip - I-p | / IL x 100 (%) Ip Wave-height rate = Ip (or I-p) / IL Ip I-p Current waveform IL : High peak value : Effective value
I-p : Low peak value
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
4/17
BLOCK DIAGRAM
FLCN1
CFL
DATA (RGB x 8bits)
ASIC
DATA(RGB x 6bits) DATA(RGB x 6bits)
CN1
VDD VSS
TFT Timing Generator
Source Driver
1024 x (RGB) CN2 Gate Driver DC/DC Converter
768
TFT Panel
Back Light Vcom FLCN2 CFL
[ Note 1 ] ASIC converts incoming RGB x 8 bits data into outgoing RGB x 6 bits data with frame rate modulation and dithering, which enables LCD to perform 'pseudo-8 bits color'.
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
5/17
INTERFACE PIN CONNECTIONS LCM : CN1
PIN NO. SYMBOL FUNCTION 1 GND Ground 2 DCLK Dot Clock 3 GND Ground 4 DE Data enable 5 GND Ground 6 NC No Connection 7 GND Ground 8 NC No Connection 9 GND Ground 10 NC No Connection 11 GND Ground 12 BO7 Blue odd data (MSB) 13 BO6 Blue odd data 14 BO5 Blue odd data 15 BO4 Blue odd data 16 GND Ground 17 BO3 Blue odd data 18 BO2 Blue odd data 19 BO1 Blue odd data 20 BO0 Blue odd data (LSB) 21 GND Ground 22 GO7 Green odd data (MSB) 23 GO6 Green odd data 24 GO5 Green odd data 25 GO4 Green odd data 26 GND Ground 27 GO3 Green odd data 28 GO2 Green odd data 29 GO1 Green odd data 30 GO0 Green odd data (LSB) 31 GND Ground 32 RO7 Red odd data (MSB) 33 RO6 Red odd data 34 RO5 Red odd data 35 RO4 Red odd data 36 GND Ground 37 RO3 Red odd data 38 RO2 Red odd data 39 RO1 Red odd data 40 RO0 Red odd data (LSB) 41 VCC 42 VCC 43 NC No Connection 44 NC No Connection 45 NC No Connection CN1 (Data Signal and Power Supply): FH12-45S-0.5SH(49) (HIROSE)
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
6/17
INTERFACE PIN CONNECTIONS LCM : CN2
PIN NO. SYMBOL FUNCTION 1 GND Ground 2 BE7 Blue even data (MSB) 3 BE6 Blue even data 4 BE5 Blue even data 5 BE4 Blue even data 6 GND Ground 7 BE3 Blue even data 8 BE2 Blue even data 9 BE1 Blue even data 10 BE0 Blue even data (LSB) 11 GND Ground 12 GE7 Green even data (MSB) 13 GE6 Green even data 14 GE5 Green even data 15 GE4 Green even data 16 GND Ground 17 GE3 Green even data 18 GE2 Green even data 19 GE1 Green even data 20 GE0 Green even data (LSB) 21 GND Ground 22 RE7 Red even data (MSB) 23 RE6 Red even data 24 RE5 Red even data 25 RE4 Red even data 26 GND Ground 27 RE3 Red even data 28 RE2 Red even data 29 RE1 Red even data 30 RE0 Red even data (LSB) CN2 (Data Signal) : FH12-30S-0.5SH(49) (HIROSE)
Back Light : FLCN1,2
PIN NO. SYMBOL FUNCTION 1 H.V High voltage for CFL 2 NC No Connection 3 LGND Low voltage for CFL FLCN1,2 : BHR-03VS-1 (JST) Suitable mating connector: SM02(8.0)B-BHS-1 (JST)
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
7/17
INTERNAL SIGNAL TIMING PARAMETERS ( DE_MODE )
PARAMETER Frequency Width-Low Width-High DCLK Rise Time Fall Time Duty Setup Time Hold Time Rise/Fall Time Horiz. Period DE Horiz. DE Vert. Period Vert. DE Setup Time DATA Hold Time Rise/Fall Time SYMBOL fCLK tWCL tWCH trCLK tfCLK D tSI tHI tir,tif tHP tHDE tVP nVDE tSD tHD tDr,tDf MIN 30.0 5.0 5.0 (0.40) (5.0) (5.0) 525 512 (780) 768 (5.0) (5.0) TYP 32.5 0.50 (672) (512) 806 (768) MAX 39.5 (5.0) (5.0) (0.60) (5.0) 900 512 768 (5.0) UNIT MHz ns ns ns ns ns ns ns tCLK tCLK tHP n ns ns ns NOTE tCLK=1/fCLK
D=tCLKL/tCLK for DCLK
fV=60Hz Typ. for DCLK
[ Note 1 ] Definition of Vertical Frequency fV and Horizontal Frequency fH: fH (Horizontal Frequency) = 1/tHP fV (Vertical Frequency) = 1/tVP
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
8/17
INTERNAL SIGNAL TIMING DIAGRAM ( DE_MODE ) tir,tDr
DE,RGB DATA
tif,tDf VIHmin VILmax
tCLK
1/2
tWCH
VDD
tfCLK
DCLK
tCLKL
RGB DATA Invalid Data
tSD
tHD
tWCL
trCLK
(Data: Latched at fall edge of DCLK)
Invalid Data
tSI
DE
tSI tHI
tHI
tHP tHDE
DE
shrink
tVP
DE
1
2
-----
n-1
n
nVDE RELATIONSHIP BETWEEN INPUT DATA AND DISPLAY POSITION
12(Odd)
11(Odd) 21(Odd) 31(Odd)
11(Even) 21(Even)
......
1512(Odd)
1512(Even) 2512(Even)
.
. . . .
.
VpHp
RGB
. . .
7671(Odd) 7681(Odd)
7681(Even)
.........
767512(Even) 768512(Odd) 768512(Even)
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page
9/17
RELATIONSHIP BETWEEN INPUT DATA AND DISPLAY COLOR
R DATA INPUT DATA MSB DISPLAY R7 R6 R5 R4 R3 COLOR BLACK LL LLL RED(255) HHHHH GREEN(255) LL LLL BLUE(255) LL LLL CYAN HHLLL MAGENTA HHHHH YELLOW HHHHH WHITE HHHHH BLACK LL LLL RED(1) *LL LLL RED(2) *LL LLL RED(3) *LL LLL RED(4) LL LLL : : RED(251) *HHHHH RED(252) HHHHH RED(253) HHHHH RED(254) HHHHH RED(255) HHHHH BLACK LL LLL GREEN(1) * LL LLL GREEN(2) * LL LLL GREEN(3) * LL LLL GREEN(4) LL LLL : : GREEN(251) * LL LLL GREEN(252) LL LLL GREEN(253) LL LLL GREEN(254) LL LLL GREEN(255) LL LLL BLACK LL LLL BLUE(1) *LL LLL BLUE(2) *LL LLL BLUE(3) *LL LLL BLUE(4) LL LLL : : BLUE(251) *LL LLL BLUE(252) LL LLL BLUE(253) LL LLL BLUE(254) LL LLL BLUE(255) LL LLL RED BASIC COLOR GREEN BLUE G DATA R2 L H L L L H H H L L L L H L H H H H L L L L L L L L L L L L L L L L L L L L LSB R1 R0 LL HH LL LL LL HH HH HH LL LH HL HH LL H L L H H L L L L L L L L L L L L L L L L L L L L H L H L H L L L L L L L L L L L L L L L L L L L L MSB G7 G6 LL LL HH LL HH LL HH HH LL LL LL LL LL L L L L L L L L L L H H H H H L L L L L L L L L L L L L L L L L L L L H H H H H L L L L L L L L L L G5 G4 G3 G2 L LLL L LLL HHHH L LLL HHHH L LLL HHHH HHHH L LLL L LLL L LLL L LLL L LLL : LLLL LLLL LLLL LLLL LLLL LLLL LLLL LLLL LLLL LLLH : HHHL HHHH HHHH HHHH HHHH LLLL LLLL LLLL LLLL LLLL : LLLL LLLL LLLL LLLL LLLL LSB G1 G0 LL LL HH LL HH LL HH HH LL LL LL LL LL L L L L L L L H H L H L L H H L L L L L L L L L L L L L L L L H L H L H L H L H L L L L L L L L L L B DATA MSB B7 B6 B5 B4 B3 LL LLL LL LLL LL LLL HHHHH HHHHH HHHHH LL LLL HHHHH LL LLL LL LLL LL LLL LL LLL LL LLL : LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL : LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL LLL LL : HHHHH HHHHH HHHHH HHHHH HHHHH LSB B0 L L L H H H L H L L L L L L L L L L L L L L L L L L L L L H L H L H L H L H
B2 L L L H H H L H L L L L L L L L L L L L L L L L L L L L L L L L H L H H H H
B1 L L L H H H L H L L L L L L L L L L L L L L L L L L L L L L H H L H L L H H
[ Note 1 ] Color(n) --- 'n' indicates gray scale step. [ Note 2 ] '*' Mark shows using the frame rate modulation and dithering.
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page 10/17
POWER ON/OFF SEQUENCE REQUIREMENT
Power-on
90%
Power-off
90% 10% 15ms < t3 < 200ms 1sec < t5 0 < t 4< 20ms VTH
(VDD=5.0V)
VDD
0V
10% 0< t 1< 25ms 0 < t 2< 65ms
Logic input
0V 100ms < t6 ON
VALID DATA
VTL
0ms < t7
CFL
(Recommend)
OFF
When the power is off, Logic input must be kept at either low level or high impedance. Power sequence for CFL (backlight) is not specified especially, however it is recommended to consider some timing difference between Logic input as shown above. If backlight lights on before LCD starts function, or if backlight is kept on after LCD stopped function, screen may look white for a moment or abnormal image may be displayed. This is caused by variation in output signal from timing generator at Logic input on or off. It does not cause damage to liquid crystal molecule and driving circuit.
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page 11/17
PRECAUTIONS (INSTRUCTIONS FOR SAFE AND PROPER USE) 1. Instructions for safety
(1) Please do not disassemble or modify LCD module to avoid the possibility of electric shock, damage of electronic components, scratch at display surface and invasion of foreign particles. In addition, such activity may result in fire accident due to burning of electronic component. LCD module disassembled or modified by customer is out of warranty. Please be careful in handling of LCD module with broken glass. When the display glass breaks, please pay attention not to injure your fingers. The display surface has the plastic film attached, which prevents dispersion of glass pieces, however touching broken edge will injure your fingers. Also CFL (Cold Cathode Fluorescent Lamp) is made of glass, therefore please pay attention in the same way. Please do not touch the fluid flown out of broken display glass. If the fluid should stick to hand or clothes, wipe off with soap or alcohol immediately and then wash it with water. If the fluid should get in eyes, wash eyes immediately with washing lotion for more than 15 minutes and then consult the doctor. Please make secure connection of CFL connector. Please make sure that CFL connector from LCD module is connected with output connector on inverter circuit securely. Poor connection may cause smoke or fire accident due to high voltage in circuit. If connection may not be secure, please switch off the power supply for LCD module and CFL and then make secure connection. Please do not make connection with another connector than recommended mating connector. CFL contains mercury inside. Please follow regulations or rules established by local autonomy at its disposal. Please be careful to electric shock. Before handling LCD module, please switch off the power supply. Since high voltage is applied to CFL terminal, cable, connector and inverter circuit in operation mode, touching them will cause electric shock.
(2)
(3)
(4)
(5) (6)
2. Instructions for designing
(1) Mounting of LCD Please fix LCD module at all mounting flanges shown in this specification for installation onto system. The used screws should have proper dimensions. Furthermore, designing of mounting parts should be adequate so that LCD module is not warped or twisted, to achieve good display quality. Polarity of power supply for CFL Please give careful consideration in designing so that each polar of cable should be connected correctly at assembling (i.e. high voltage side is connected to high voltage side and low voltage side is connected to low voltage side). Since longer CFL cable may cause insatiable start-up of CFL and reduction of brightness, please make cable short as much as possible.
(2)
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page 12/17
(3)
Designing of power supply circuit for CFL Please design the circuit so that high voltage output can be kept for more than 1 second. The shorter time may not start up CFL. The driving inverter circuit is recommended to be the type which CFL current can be controlled. The type which voltage is controlled is not recommended, because it may cause big current under high temperature and insatiable start-up of CFL under low temperature. Heat radiation CFL generates heat at lighting and causes temperature rise inside system. Therefore, designing to radiate heat like radiation slits at cabinet is recommended to meet the specified operating temperature range for LCD module. Noise on power line Spike noise contained in power line causes abnormal operation of driving circuit and abnormal display. To avoid it, spike noise should be suppressed below VDD 200mVp-p. (In any case, absolute maximum rating should be kept.) Power sequence Before LCD module is switched on, please make sure that power supply and input signals of system, testing equipment, etc. meet the recommended power sequence. Absolute maximum rating Absolute maximum rating specified in this specification has to be kept in any case. It shows the maximum that cannot be exceeded. Exceeding it may cause burning or non-recoverable break of electronic components in circuit. Please make system design so that absolute maximum rating is not exceeded even if ambient temperature, input signal and components are varied. Protection for power supply Please study to adapt protection for power supply against trouble of LCD module, depending on usage condition of system. Fuse installed on LCD module should be never modified. Any modification to make the function of fuse ineffective may cause burning or break of printed wiring board or other components at circuit trouble. Protection against electric shock High voltage is applied to CFL connector, inverter circuit and CFL at lighting. Please make design not to expose or be accessible to such high voltage parts to avoid electric shock.
(4)
(5)
(6)
(7)
(8)
(9)
(10) Protection cover and cut-off filter for ultraviolet rays When LCD module is used under severe condition like outdoor, it is recommended to use transparent protection cover over display surface to avoid scratches and invasion of dust and water. In addition, when LCD module is exposed to direct sun light for long time, use of cut-off filter for ultraviolet rays is also recommended. Please be careful not to get condensation.
3. Instructions for use and handling
(1) Protection against Static electricity C-MOS LSI and semiconductors are easily damaged by static discharge. LCD module should be handled on conductive mat by person grounded with wrist strap etc. to avoid getting static electricity. Please be careful not to generate static electricity during operation.
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page 13/17
(2)
Protection against dust and stain LCD module should be handled in circumstance as clean as possible. It is recommended to wear fingerstalls or ductless and soft gloves before handling to avoid getting dust or stain on display surface. Protection film for display surface It is recommended to remove protection film at nearly final process of assembling to avoid getting scratch or dust. To remove film, please pick up its edge with dullhead tweezers or cellophane tape at first and then remove film gradually taking more than 3 seconds. If film is removed quickly, static electricity may be generated and may damage semiconductors or electronic components. Contamination of display surface When display surface of LCD module is contaminated, please wipe the surface softly with cotton swab or clean cloth. If it is not enough, please take it away with cellophane tape or wipe the surface with cotton swab or clean cloth containing benzine. In this case, please be careful so that benzine does not get in inside of LCD module, because it may be damaged. Water drop on LCD surface Please do not leave LCD module with water drop. When the display surface gets water drop, please wipe it off with cotton swab or soft cloth immediately, otherwise display surface will be deteriorated. If water gets in inside of LCD module, circuit may be damaged. Please make sure that LCD module is not warped or twisted at installation into system. Even temporary warp or twist may be the cause for failure. Mechanical stress Please be careful not to apply strong mechanical stress like drop or shock to LCD module. Such stress may cause break of display glass and CFL or may be the cause for failure. Pressure to display surface Please be careful not to apply strong pressure to display surface. Such pressure may cause scratches at surface or may be the cause of failure. Protection against scratch Please be careful not to hit, press or rub the display surface with hard material like tools. In addition, please do not put heavy or hard material on display surface, and do not stack LCD modules. Polarizer at front surface can be easily scratched.
(3)
(4)
(5)
(6) (7)
(8)
(9)
(10) Plugging in of connector Please be careful not to apply strong stress to connector part of LCD module at plugging in or out, because strong stress may damage the inside connection. At plugging in connector, place LCD module on the flat surface and hold the backside of connector on LCD module. Please make sure that connector is plugged in correctly. Insecure connection may be the cause for failure during operation. In addition, please be careful not to put the connecting cable between cabinet of system and LCD module at installing LCD module into system. (11) Handling of CFL cable and FPC (Flexible Printed Circuit) Please be careful not to pull or scratch CFL cable, because CFL or soldered part of cable may be damaged consequently. Also FPC should not be pulled or scratched. (12) Switching off before plugging in connector Please make sure that power is switched off before plugging in connector. If power is on at plugging in or out, circuit of LCD module may be damaged. When LCD is switched on for test or inspection, please make sure that power supply and input signals of driving system meet the specified power sequence.
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page 14/17
(13) Temperature dependence of LCD display Response speed (optical response) of LCD display is dependent on temperature. Under low temperature, response speed is slower. Also brightness and chromaticity change slightly depending on temperature. (14) Slow light-up of CFL under low temperature Under low temperature, start-up of CFL gets difficult. (The time from switch-on to stable lighting becomes longer.) As characteristic of CFL, operation under low temperature makes the life time shorter. To avoid this, it is recommended to operate under normal temperature. (15) Condensation LCD module may get condensation on its display surface and inside in the circumstance where temperature changes much in short time. Condensation can cause deterioration or failure. Therefore, please be careful not to get condensation. (16) Remaining of image Displaying the same pattern for long time may cause remaining of image even after changing the pattern. This is not failure but will disappear with time.
4. Instructions for storage and transportation
(1) Storage Please store LCD module in the dark place of room temperature and low humidity in original packing condition, to avoid condensation that may cause failure. Since sudden temperature change may cause condensation, please store in circumstance of stable temperature. Stacking number Since excessive weight causes deformation and damage of carton box, please stack only up to the number stated on carton box for storage and transportation. Handling Since LCD module consists of glass and precise electronic components, it will be damaged by excessive shock and drop. Therefore, please handle the carton box carefully to minimize shock at loading, reloading and transportation.
(2)
(3)
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A Ver.4 Page 15/17
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A
Ver.4
Page
16/17
TM15003SPEC-10022-B1
Tottori SANYO Electric Co., Ltd.
TM150XG-22L03A
Ver.4
Page
17/17
TM15003SPEC-10022-B7


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