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  LQ201U1LW11 tft-lcd module (model number: LQ201U1LW11) specifications spec no.: ld-14117 dated: may 29, 2002 www..net www..net
spec no. ld-14117 file no. prepared by : date issue : feb.25.2002 page : 23 pages approved by : date tft lcd development group sharp corporation specification applicable group tft liquid crystal display group device specification tft-lcd module model no. LQ201U1LW11 customer's approval date by presented by m.takeda department general manager development engineering department 2 avc liquid crystal display division avc liquid crystal display group sharp corporation www..net www..net
records of revision LQ201U1LW11 spec no. date revised summary note no. page ld- 1 4 11 7 feb.25. 2002 1 st issue www..net www..net
ld-14117- 1 1. application this specification applies to the monochrome 20.1 uxga tft-lcd module LQ201U1LW11. these specification sheets are the proprietary product of sharp corporation(?sharp) and include materials protected under copyright of sharp. do not reproduce or cause any third party to reproduce them in any form or by any means, electronic or mechanical, for any purpose, in whole or in part, without the express written permission of sharp. the device listed in these specification sheets was designed and manufactured for use in oa equipment. in case of using the device for applications such as control and safety equipment for transportation(aircraft, trains, automobiles, etc. ), rescue and security equipment and various safety related equipment which require higher reliability and safety, take into consideration that appropriate measures such as fail-safe functions and redundant system design should be taken. in case of using the device for equipment that requires an extreme level of reliability, such as aerospace applications, telecommunication equipment(trunk lines), nuclear power control equipment and medical or other equipment for life support, contact and consult with a sharp sales representative. sharp assumes no responsibility for any damage resulting from the use of the device which does not comply with the instructions and the precautions specified in these specification sheets. contact and consult with a sharp sales representative for any questions about this device. 2. overview this module is a active matrix lcd module incorporating amorphous silicon tft (thin f ilm t ransistor). it is composed of a monochrome tft-lcd panel, driver ics, control circuit, power supply circuit and a back light unit. graphics and texts can be displayed on a 1600 xyz 1200 dots panel with about 256 gray scales (8bit) by supplying 48 bit data signals(8bit 2pixel xyz) , two display enable signals, two dot clock signals, +12v dc supply voltages for tft-lcd panel driving and supply voltage for back light. it is a wide viewing-angle-module (vertical viewing angle:170 horizontal viewing angle:170 ,cr R 10). www..net www..net
ld-14117- 2 3. mechanical specifications parameter specifications unit display size 51 (diagonal) cm 20.1 (diagonal) inch active area 408.0 (h) 306.0 (v) mm pixel format 1600 (h) 1200 (v) pixel (1 pixel dots) pixel pitch 0.255(h) 0.255 (v) mm pixel configuration x,y,z vertical stripe display mode normally black unit outline dimensions *1 436(w) 335 (h) 27.5 (d) mm mass 3.8 (max) kg surface treatment anti-glare and hard-coating 2h *1.note: excluding back light cables. the thickness of module (d) doesn?t contain the projection. outline dimensions are shown in fig.1. www..net www..net
ld-14117- 3 4. input terminals 4-1. tft-lcd panel driving cn7a,cn7b (interface signals and +12vdc power supply) using connectors df19g-20p-1h (hirose electric co., ltd.) corresponding connectors df19g-20s-1c (hirose electric co., ltd.) df19g-20s-1f (hirose electric co., ltd.) using lvds receiver contained in a control ic corresponding lvds transmitter thc63lvdm83r(thine) or compatible cn a pin no. symbol function remark 1 vcc +12v power supply 2 vcc +12v power supply 3vss gnd 4vss gnd 5 rain0- negative (-) lvds differential data input (a port) lvds 6 rain0+ positive (+) lvds differential data input (a port) lvds 7vss gnd 8 rain1- negative (-) lvds differential data input (a port) lvds 9 rain1+ positive (+) lvds differential data input (a port) lvds 10 vss gnd 11 rain2- negative (-) lvds differential data input (a port) lvds 12 rain2+ positive (+) lvds differential data input (a port) lvds 13 vss gnd 14 ckain- negative (-) lvds differential clock input (a port) lvds 15 ckain+ positive (+) lvds differential clock input (a port) lvds 16 vss gnd 17 rain3- negative (-) lvds differential data input (a port) lvds 18 rain3+ positive (+) lvds differential data input (a port) lvds 19 vss gnd 20 blon back light on signal (output) note1 pull up note1 blon:it change from l to h at 7 frames after vcc on. cn b pin no. symbol function remark 1 vcc +12v power supply 2 vcc +12v power supply 3vss gnd 4vss gnd 5 rbin0- negative (-) lvds differential data input (b port) lvds 6 rbin0+ positive (+) lvds differential data input (b port) lvds 7vss gnd 8 rbin1- negative (-) lvds differential data input (b port) lvds 9 rbin1+ positive (+) lvds differential data input (b port) lvds 10 vss gnd 11 rbin2- negative (-) lvds differential data input (b port) lvds 12 rbin2+ positive (+) lvds differential data input (b port) lvds 13 vss gnd 14 ckbin- negative (-) lvds differential clock input (b port) lvds 15 ckbin+ positive (+) lvds differential clock input (b port) lvds 16 vss gnd 17 rbin3- negative (-) lvds differential data input (b port) lvds 18 rbin3+ positive (+) lvds differential data input (b port) lvds 19 vss gnd 20 sellvds select lvds data order note2 pull up note2 this module has dual pixel port to receive dual pixel data at the same time . a port receives first pixel data and b port receives second pixel data in dual pixel data. www..net www..net
ld-14117- 4 note2 sellvds(thine:thc63lvdm83r) transmitter sellvds pin no data =l =h 51 ta0 x0(lsb) x2 52 ta1 x1 x3 54 ta2 x2 x4 55 ta3 x3 x5 56 ta4 x4 x6 3ta5 x5 x7(msb) 4ta6 y0(lsb) y2 6tb0 y1 y3 7tb1 y2 y4 11 tb2 y3 y5 12 tb3 y4 y6 14 tb4 y5 y7(msb) 15 tb5 z0(lsb) z2 19 tb6 z1 z3 20 tc0 z2 z4 22 tc1 z3 z5 23 tc2 z4 z6 24 tc3 z5 z7(msb) 27 tc4 (na) (na) 28 tc5 (rsv1) (rsv1) 30 tc6 de de 50 td0 x6 x0(lsb) 2td1 x7(msb) x1 8td2 y6 y0(lsb) 10 td3 y7(msb) y1 16 td4 z6 z0(lsb) 18 td5 z7(msb) z1 25 td6 (na) (na) www..net www..net
ld-14117- 5 4-2 interface block diagram using receiver contained in a control ic. corresponding transmitter thc63lvdm83r(thine electronics),ds90c383,ds90c383a(national semiconductor) ya0 ya7 za0 za7 dea xa0 xa7 xb0 xb7 zb0 zb7 yb0 yb7 ttl parallel lvds rain0+(5) rain0- ( 6 ) 8 8 8 pll 8 8 8 controller pll lvds ttl parallel lvds ttl parallel pll pll rain 1 +(8) rain 1 -(9) rain2- ( 1 2 ) rbin0+ ( 5 ) rbin0- ( 6 ) rbin 1 + ( 8 ) rbin 1 -(9) rbin2+ ( 11 ) rbin2- ( 1 2 ) rbclkin+ ( 1 4 ) rbclkin- ( 1 5 ) 8 8 8 8 8 8 dea xb0 xb7 zb0 zb7 yb0 yb7 internal circuits clka clka computer side a port b port (tft-lcd side) txin 1 8~20 rain3+ ( 1 7 ) rain3-( 1 8) rbin3+ ( 1 7 ) rbin3- ( 1 8 ) rain2+( 11 ) raclkin+ ( 1 4 ) raclkin- ( 1 5 ) ttl parallel lvds xa0 xa7 za0 za7 ya0 ya7 clkb deb deb clkb www..net www..net
ld-14117- 6 < sellvds= low > ckain+ ck^ain- rain0+ rain0- rain 1 + rain 1 - rain2+ rain2- rain3+ rain3- ckbin- ckbin+ rbin0+ rbin0- rbin 1 + rbin 1 - rbin2+ rbin2- rbin3+ rbin3- de: display enable rsv 1 : reserve (fixed gnd) na: not available ya0 xa5 xa4 xa3 xa2 xa 1 xa0 xa0 xa 1 ya0 za 1 za0 ya5 ya4 ya3 ya2 ya 1 ya 1 ya2 za 1 dea za5 za4 za3 za2 za2 za3 dea na na za7 za6 ya7 ya6 xa7 xa6 xa6 xa7 na na yb0 xb5 xb4 xb3 xb2 xb 1 xb0 xb0 xb 1 yb0 zb 1 zb0 yb5 yb4 yb3 yb2 yb 1 yb 1 yb2 zb 1 deb zb5 zb4 zb3 zb2 zb2 zb3 deb rsv 1 na zb7 zb6 yb7 yb6 xb7 xb6 xb6 xb7 na na 1 cycle tcsq www..net www..net
ld-14117- 7 < sellvds= high > ckain+ ckain- rain0+ rain0- rain 1 + rain 1 - rain2+ rain2- rain3+ rain3- ckbin- ckbin+ rbin0+ rbin0- rbin 1 + rbin 1 - rbin2+ rbin2- rbin3+ rbin3- de: display enable rsv 1 : reserve (fixed gnd) na: not available ya2 xa7 xa6 xa5 xa4 xa3 xa2 xa2 xa3 ya2 za3 za2 ya7 ya6 ya5 ya4 ya3 ya3 ya4 za3 dea za7 za6 za5 za4 za4 za5 dea na na za 1 za0 ya 1 ya0 xa 1 xa0 xa0 xa 1 na na yb2 xb7 xb6 xb5 xb4 xb3 xb2 xb2 xb3 yb2 zb3 zb2 yb7 yb6 yb5 yb4 yb3 yb3 yb4 zb3 deb zb7 zb6 zb5 zb4 zb4 zb5 deb rsv 1 na zb 1 zb0 yb 1 yb0 xb 1 xb0 xb0 xb 1 na na 1 cycle tcsq www..net www..net
ld-14117- 8 4-2. back light driving cn 1, 2, 3 (upside) cn 4, 5, 6 (downside) the module-side connector : bhsr 02vs 01 (jst) the user-side connector : sm02b bhss 1 tb (jst) pin no. symbol i/o function 1 high i power supply (high voltage side) 2 low i power supply (low voltage side) 5. absolute maximum ratings parameter symbol condition ratings unit remark input voltage v i ta=25 0.3 +3.6 sellvds +12.0v supply voltage vcc ta=25 0 14.0 storage temperature tstg 25 60 T note1 operating temperature (ambient) topa 0 50 note1 humidity 95%rh max. ( ta Q 40 ) maximum wet-bulb temperature at 39 or less. ( ta>40 ) no condensation. 1pin 1pin 1pin tft lcd ? ? ? ? ? ? 1pin 1pin 1pin www..net www..net
ld-14117- 9 6. electrical characteristics 6-1. tft-lcd panel driving ta 25 parameter symbol min. typ. max. unit remark supply voltage vcc +11.4 +12.0 +12.6 v note1 vcc current dissipation icc 390 600 ma note2 permissive input ripple voltage v rf 100 mvp-p input voltage (low) v il 0 +0.6 v sellvds input voltage (high) v ih +2.7 +3.3 v sellvds input current (low) i il 500 av i =gnd input current (high) i ih 10 a v i =vcc output voltage (low) v ol 0.4 v blon:i ol =-1ma output voltage (high) v oh 2.4 v blon:i oh =1ma note1 1 on-off sequences of vcc and data 0 t1 Q 60ms 0 t2 Q 10ms 0 Q t3 Q 1s t4 R 100ms 2 dip conditions for supply voltage vmin = 11.4v, vth= 9.6v 1) vth Q vcc vmin td Q 20ms 2) vcc vth the lcd module shuts down. note2 typical current situation : 16-gray-bar pattern vcc=+12.0v the explanation of each gray scale, gs , is described below section 8. 11.4v 11.4v de,ck,data de,ck ,data vcc vcc t3 t4 t1 t2 1.0v 1.0v vcc td vth vmin xyz gs0 xyz gs 1 xyz gs2 xyz gs254 xyz gs255 .... www..net www..net
ld-14117- 10 6-2. back light driving the back light system is an edge-lighting type with six ccfts (cold cathode fluorescent tube). the characteristics of the lamp are shown in the following table. the value mentioned below is at the case of one ccft. ccft model name ktbe26mstf \ a424ne209 \ z \ 3 stanley.electric.co.,ltd parameter symbol min. typ. max. unit remark lamp current range i l 3.0 6.0 6.5 marms note1 lamp voltage v l 790 vrms ta=25 lamp power consumption p l 4.7 w note2 lamp frequency f l 30 60 70 khz note3 1,500 vrms ta=25 T note4 kick-off voltage vs 2,000 vrms ta=0 note4 lamp life time t l 50,000 hour note5 note1 a lamp can be light in the range of lamp current shown above. maximum rating for current is measured by high frequency current measurement equipment connected to v low at circuit showed below. (note : to keep enough kick-off voltage and necessary steady voltage for ccft.) lamp frequency : 30 70khz ambient temperature : 0 50 module cn 1 : 1 ,2,3,4,5,6: 1 pin(vhigh) inverter cn 1 : 1 ,2,3,4,5,6: 2pin(vlow) note2 referential data per one ccft by calculation ( i l v l ) . the data doesn?t include loss at inverter . note3 lamp frequency of inverter may produce interference with horizontal synchronous frequency, and this may cause horizontal beat on the display. therefore, adjust lamp frequency, and keep inverter as far as from module or use electronic shielding between inverter and module to avoid interference. note4 kick-off voltage value is described as the index in the state of lamp only. the kick-off voltage is estimated to be risen up as approx. +200v in the state of module only, and the further rise up can be seen according to the assembling status of user cabinet. please set the kick-off voltage of inverter to avoid the lighting failures in the state of operation. please design the inverter so that its open output voltage can be connected for more than 1 second to startup. otherwise, the lamp may not be turned on. but, please set as 100ms when the ambient luminance around the lamp is more than 1lux. note5 lamp life time is defined as the time when either or occurs in the continuous operation under the condition of ta=25 and i l =6.0 marms . brightness becomes 50% of the original value under standard condition. kick-off voltage at ta=0 exceeds maximum value,2000vrms . note the performance of the backlight, for example lifetime or brightness, is much influenced by the characteristics of the dc-ac inverter for the lamp. when you design or order the inverter, please make sure that a poor lighting caused by the mismatch of the backlight and the inverter (miss-lighting, flicker, etc.) never occurs. when you confirm it, the module should be operated in the same condition as it is installed in your instrument. use the lamp inverter power source incorporating such safeguard as overvoltage / overcurrent protective circuit or lamp voltage waveform detection circuit, which should have individual control of each lamp. in case one circuit without such individual control is connected to more than two lamps, excessive current may flow into one lamp when the other one is not in operation. synchronize frequency and phase of two ccft in the same connector. otherwise it may exceed rated voltage of connector. www..net www..net
ld-14117- 11 7. timing characteristics of input signals 7-1-1. timing characteristics parameter symbol min. typ. max. unit remark frequency 1/tc 60.0 81.0 85.0 mhz clock skew tcsq ?4 0 4 ns note1 830 1080 1600 clock horizontal period th 10.0 13.3 s horizontal period (high) thd 800 800 800 clock 1205 1250 2000 line vertical period tv 12.1 16.7 ms note2 data enable signal vertical period (high) tvd 1200 1200 1200 line note1 lvds (a port)? lvds (b port) phase difference note2 in case of using the long vertical period, the deterioration of display quality, flicker etc. may occur. 1 599 1 600 1 3 24 1 599 1 600 thd th tvd tv tc 1 2 1 200 dea,deb da (xa,ya,za) db (xb,yb,zb) dea,deb tcsq dea deb 11 99 www..net www..net
ld-14117- 12 7-2 input data signals and display position on the screen graphics and texts can be displayed on a 1600 3 1200 dots panel. da( 1 , 1 ) db(2, 1 ) da(3, 1 ) da( 1 ,2) db(2,2) da( 1 ,3) da( 1 , 1 200) db( 1 600, 1 ) db( 1 600, 1 200) xa ya za xb yb zb da( 1 , 1 ) db(2, 1 ) two pixel-data are sampled at the same time. da xa0 xa7, ya0 ya7, za0 za7 db xb0 xb7, yb0 yb7, zb0 zb7 display position of input data h,v z y x 8. input signals, basic display color and gray scale data signal gray xa0 xa1 xa2 xa3 xa4 xa5 xa6 xa7 ya0 ya1 ya2 ya3 ya4 ya5 ya6 ya7 za0 za1 za2 za3 za4 za5 za6 za7 color & gray scale scale xb0 xb1 xb2 xb3 xb4 xb5 xb6 xb7 yb0 yb1 yb2 yb3 yb4 yb5 yb6 yb7 zb0 zb1 zb2 zb3 zb4 zb5 zb6 zb7 black 0 000000000000000000000000 1 100000001000000010000000 darker 2 010000000100000001000000 ? ?? ? ? ? ? ? ? brighter253 101111111011111110111111 ? 254 011111110111111101111111 white 255 111111111111111111111111 0 : low level voltage, 1 : high level voltage. basic color can be displayed in 256 gray scales from 8 bit data signals. gray scale www..net www..net
ld-14117- 13 9. optical characteristics ta=25 , vcc =+12v parameter symbol condition min. typ. max. unit remark 11 70 85 deg. vertical 12 70 85 deg viewing angle range horizontal 21, 22 (cr R 10) 70 85 deg. note1,4 contrast ratio 1000 note2,4 rise d 525 response time decay r 20 50 note3,4 wx 0.264 0.294 0.324 chromaticity of white wy 0.279 0.309 0.339 note4 luminance of white y l 560 700 cd/m 2 il=6.0ma rms fl=60khz note4 white uniformity w =0 1.25 note5 the measurement shall be executed 30 minutes after li ghting at rating. the optical characteristics shall be measured in a dark room or equivalent state with the method shown in fig.2 below. photodetector(ez-contrast center of screen( =0 ? tft-lcd-module fig.2- 1 viewing angle measurement method center of screen( =0 ) tft-lcd-module mm field= photodetector contrast ratio/response time(bm-5a) luminance(bm-7) chromaticity(sr- 1 ) fig.2-2 luminance/contrast ratio/response time/chromaticity measurement method fig.2 optical characteristics measurement method www..net www..net
ld-14117- 14 note1 definitions of viewing angle range: note2 definition of contrast ratio: the contrast ratio is defined as the following. contrast ratio (cr) note3 definition of response time: the response time is defined as the following figure and shall be measured by switching the input signal for "black" and "white". note4 this shall be measured at center of the screen. note5 definition of white uniformity: white uniformity is defined as the following with five measurements (a e). luminance (brightness) with all pixels white luminance (brightness) with all pixels black pixel 1200 400 800 900 300 600 d pixel a b c e maximum luminance of five points (brightness) minimum luminance of five points (brightness) w www..net www..net
ld-14117- 15 10. handling precautions a) be sure to turn off the power supply when inserting or disconnecting the cable. b) be sure to design the cabinet so that the module can be installed without any extra stress such as warp or twist. c) since the front polarize is easily damaged, pay attention not to scratch it. d) since long contact with water may cause discoloration or spots, wipe off water drop immediately. e) when the panel surface is soiled, wipe it with absorbent cotton or other soft cloth. f) since the panel is made of glass, it may break or crack if dropped or bumped on hard surface. handle with care. g) since cmos lsi is used in this module, take care of static electricity and take the human earth into consideration when handling. h) make sure the mounting holes of the module are grounded sufficiently. take electro-magnetic interference (emi) into consideration. i) the module has some printed circuit boards (pcbs) on the back side. take care to keep them form any stress or pressure when handling or installing the module; otherwise some of electronic parts on the pcbs may be damaged. j) observe all other precautionary requirements in handling components. k) when some pressure is added onto the module from rear side constantly, it causes display non-uniformity issue , functional defect, etc. so, please avoid such design. l) if the stress is applied onto the panel under operating conditions, display defects such as black dots may occur. so, do not press the display with fingers. to recover this defect, turn off the power supply and restart after several seconds. 11. packing form a) piling number of cartons : maximum 8 cartons b) packing quantity in one carton : 2 module c) carton size : 592mm(w) 486mm(h) 215(d) d) total mass of one carton filled with full modules : 10.5kg e) packing form is shown in fig.3 www..net www..net
ld-14117- 16 12 reliability test items no. test item conditions 1 high temperature storage test ta=60 240h 2 low temperature storage test ta= -25 240h 3 high temperature & high humidity operation test ta= 40 ; 95%rh 240h (no condensation) 4 high temperature operation test ta=50 240h (the panel temp. must be less than 60 ) 5 low temperature operation test ta=0 240h 6 vibration test (non- operating) frequency : 10 57hz/vibration width (one side) : 0.075mm : 58 500hz/gravity : 9.8m/s 2 sweep time : 11 minutes test period : 3 hours (1 hour for each direction of x,y,z) 7 shock test (non- operating) max. gravity : 490m/s 2 pulse width : 11ms, sine wave direction : x, y, z, once for each direction. result evaluation criteria under the display quality test conditions with normal operation state, these shall be no change which may affect practical display function. www..net www..net
ld-14117- 17 13 others 1) lot no. and indication bar code label: 5 * # 4 2 lq20 1 u 1 lw 11 23 xxxxxx made in japan model no. lot no. bar code(lot no.) 2) packing label model no. (LQ201U1LW11) lot no. (date) quantity ? LQ201U1LW11 LQ201U1LW11 LQ201U1LW11 LQ201U1LW11 ? ?? `? bar code ? bar code ? bar code ? `??? 3) adjusting volume have been set optimally before shipment, so do not change any adjusted value. if adjusted value is changed, the specification may not be satisfied. 4) disassembling the module can cause permanent damage and should be strictly avoided. 5) please be careful since image retention may occur when a fixed pattern is displayed for a long time. 6) the chemical compound that causes the destruction of ozone layer is not being used. 7) warning of mercury and material information of lpg(light pipe guide) are labeled on the back of the module. material information material information material information material information >plastic light guide:pmma< >plastic light guide:pmma< >plastic light guide:pmma< >plastic light guide:pmma< cold cathode fluorescent lamp in lcd panel contains a small amount of mercury,please follow local ordinances or regulation for disposal ???????w?Mz????? ????t??? 8) when any question or issue occurs, it shall be solved by mutual discussion. how to express lot no. a production month ( 1 9,x,y,z) a production year (the last figures of the christian era) serial no. www..net www..net
ld-14117- 18 14 carton storage condition temperature 0 to 40 humidity 95%rh or less reference condition : 20 to 35 , 85%rh or less (summer) : 5 to 15 , 85%rh or less (winter) ? the total storage time (40 ,95%rh) : 240h or less sunlight be sure to shelter a product from the direct sunlight. atmosphere harmful gas, such as acid and alkali which bites electronic components and/or wires, must not be detected. notes be sure to put cartons on palette or base, don?t put it on floor, and store them with removing from wall. please take care of ventilation in storehouse and around cartons, and control changing temperature is within limits of natural environment. storage period 1 year www..net www..net
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s p e c i f i c a t i o n s a r e s u b j e c t t o c h a n g e w i t h o u t n o t i c e . s u g g e s t e d a p p l i c a t i o n s ( i f a n y ) a r e f o r s t a n d a r d u s e ; s e e i m p o r t a n t r e s t r i c t i o n s f o r l i m i t a t i o n s o n s p e c i a l a p p l i c a t i o n s . s e e l i m i t e d  w a r r a n t y f o r s h a r p ? s p r o d u c t w a r r a n t y . t h e l i m i t e d w a r r a n t y i s i n l i e u , a n d e x c l u s i v e o f , a l l o t h e r w a r r a n t i e s , e x p r e s s o r i m p l i e d .  a l l e x p r e s s a n d i m p l i e d w a r r a n t i e s , i n c l u d i n g t h e w a r r a n t i e s o f m e r c h a n t a b i l i t y , f i t n e s s f o r u s e a n d  f i t n e s s f o r a p a r t i c u l a r p u r p o s e , a r e s p e c i f i c a l l y e x c l u d e d . i n n o e v e n t w i l l s h a r p b e l i a b l e , o r i n a n y w a y r e s p o n s i b l e ,  f o r a n y i n c i d e n t a l o r c o n s e q u e n t i a l e c o n o m i c o r p r o p e r t y d a m a g e . n o r t h a m e r i c a e u r o p e j a p a n s h a r p m i c r o e l e c t r o n i c s o f t h e a m e r i c a s 5 7 0 0 n w p a c i f i c r i m b l v d . c a m a s , w a 9 8 6 0 7 , u . s . a . p h o n e : ( 1 ) 3 6 0 - 8 3 4 - 2 5 0 0 f a x : ( 1 ) 3 6 0 - 8 3 4 - 8 9 0 3 f a s t i n f o : ( 1 ) 8 0 0 - 8 3 3 - 9 4 3 7 w w w . s h a r p s m a . c o m s h a r p m i c r o e l e c t r o n i c s e u r o p e d i v i s i o n o f s h a r p e l e c t r o n i c s ( e u r o p e ) g m b h s o n n i n s t r a s s e 3 2 0 0 9 7 h a m b u r g , g e r m a n y p h o n e : ( 4 9 ) 4 0 - 2 3 7 6 - 2 2 8 6 f a x : ( 4 9 ) 4 0 - 2 3 7 6 - 2 2 3 2 w w w . s h a r p s m e . c o m s h a r p c o r p o r a t i o n e l e c t r o n i c c o m p o n e n t s & d e v i c e s 2 2 - 2 2 n a g a i k e - c h o , a b e n o - k u o s a k a 5 4 5 - 8 5 2 2 , j a p a n p h o n e : ( 8 1 ) 6 - 6 6 2 1 - 1 2 2 1 f a x : ( 8 1 ) 6 1 1 7 - 7 2 5 3 0 0 / 6 1 1 7 - 7 2 5 3 0 1 w w w . s h a r p - w o r l d . c o m t a i w a n s i n g a p o r e k o r e a s h a r p e l e c t r o n i c c o m p o n e n t s ( t a i w a n ) c o r p o r a t i o n 8 f - a , n o . 1 6 , s e c . 4 , n a n k i n g e . r d . t a i p e i , t a i w a n , r e p u b l i c o f c h i n a p h o n e : ( 8 8 6 ) 2 - 2 5 7 7 - 7 3 4 1 f a x : ( 8 8 6 ) 2 - 2 5 7 7 - 7 3 2 6 / 2 - 2 5 7 7 - 7 3 2 8 s h a r p e l e c t r o n i c s ( s i n g a p o r e ) p t e . , l t d . 4 3 8 a , a l e x a n d r a r o a d , # 0 5 - 0 1 / 0 2 a l e x a n d r a t e c h n o p a r k , s i n g a p o r e 1 1 9 9 6 7 p h o n e : ( 6 5 ) 2 7 1 - 3 5 6 6 f a x : ( 6 5 ) 2 7 1 - 3 8 5 5 s h a r p e l e c t r o n i c c o m p o n e n t s ( k o r e a ) c o r p o r a t i o n r m 5 0 1 g e o s u n g b / d , 5 4 1 d o h w a - d o n g , m a p o - k u s e o u l 1 2 1 - 7 0 1 , k o r e a p h o n e : ( 8 2 ) 2 - 7 1 1 - 5 8 1 3 ~ 8 f a x : ( 8 2 ) 2 - 7 1 1 - 5 8 1 9 c h i n a h o n g k o n g s h a r p m i c r o e l e c t r o n i c s o f c h i n a ( s h a n g h a i ) c o . , l t d . 2 8 x i n j i n q i a o r o a d k i n g t o w e r 1 6 f p u d o n g s h a n g h a i , 2 0 1 2 0 6 p . r . c h i n a p h o n e : ( 8 6 ) 2 1 - 5 8 5 4 - 7 7 1 0 / 2 1 - 5 8 3 4 - 6 0 5 6 f a x : ( 8 6 ) 2 1 - 5 8 5 4 - 4 3 4 0 / 2 1 - 5 8 3 4 - 6 0 5 7 h e a d o f f i c e : n o . 3 6 0 , b a s h e n r o a d , x i n d e v e l o p m e n t b l d g . 2 2 w a i g a o q i a o f r e e t r a d e z o n e s h a n g h a i 2 0 0 1 3 1 p . r . c h i n a e m a i l : s m c @ c h i n a . g l o b a l . s h a r p . c o . j p s h a r p - r o x y ( h o n g k o n g ) l t d . 3 r d b u s i n e s s d i v i s i o n , 1 7 / f , a d m i r a l t y c e n t r e , t o w e r 1 1 8 h a r c o u r t r o a d , h o n g k o n g p h o n e : ( 8 5 2 ) 2 8 2 2 9 3 1 1 f a x : ( 8 5 2 ) 2 8 6 6 0 7 7 9 w w w . s h a r p . c o m . h k s h e n z h e n r e p r e s e n t a t i v e o f f i c e : r o o m 1 3 b 1 , t o w e r c , e l e c t r o n i c s s c i e n c e & t e c h n o l o g y b u i l d i n g s h e n n a n z h o n g r o a d s h e n z h e n , p . r . c h i n a p h o n e : ( 8 6 ) 7 5 5 - 3 2 7 3 7 3 1 f a x : ( 8 6 ) 7 5 5 - 3 2 7 3 7 3 5 www..net www..net


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