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  no. ld ? 17y59a date november ?d 16 ?d 2005 technical literature for tft - lcd module model no. LQ104V1LG61 the technical literature is subject to change without notice. so, please contact sharp or its representative before designing your product based on this literature. engineering department ?w mobile lcd design center ?t mobile liquid crystal disply group sharp corporation these p arts have corres p onded with the rohs directive. www..net www..net
records of revision LQ104V1LG61 spec no. date revised summary note no. page ld-17y59a nov.16.2005 - - - 1 st issue www..net www..net
ld17y59a-1 1. application this technical literature applie s to color tft-lcd module, LQ104V1LG61 these technical literature sheets ar e 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 technical literature sheets wa s designed and manufactured for use in general electronic equipment. in case of using the device for applications such as control and safety equipment for transportation (conrrols of 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. do not use the device for equipment that requires an extr eme level of reliability, such as aerospace applications, telecommunication equipment (trunk lines), nuclear power control equipment and medical or other equipment for life support. 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 technical literature sheets. contact and consult with a sharp sales representative for any questions about this device. 2. overview this module is a color active matrix lcd module in corporating amorphous silicon tft (thin film transistor). it is composed of a color tft-lcd panel, driver ics, control circuit and power supply circuit and a backlight unit. graphics and texts can be displayed on a 6403480 dots panel with 262,144 colors by using lvds(l ow v oltage d ifferential s ignaling)system for interface and supplying +3.3v/5.0v dc supply voltage for tft-lcd panel driving and supply voltage for backlight. the tft-lcd panel used for this module is a low-reflection and higher-color-saturation type. therefore, this module is also suitable for the multimedia use. viewing angle is 6 o?clock direction. this module is the type of wide viewing angle and superhigh brightness (450cd/m 2 ). backlight-driving dc/ac inverter is not built in this module. www..net www..net
ld17y59a-2 3. outline specification. parameter specifications unit display size 26 (10.4") diagonal cm active area 211.2(h)158.4(v) mm pixel format 640(h)480(v) pixel (1 pixel=r+g+b dots) - number of colors (number of gray scale level) 262, 144 colors (64 gray scales per color) pixel pitch 0.330(h)0.330(v) mm pixel configuration r,g,b vertical stripe - display mode normally white - unit outline dimensions *1 246.5(w)179.4(h)max.13.7 (d) mm mass 620 (max) g surface treatment anti-glare and hard-coating 3h - *1: excluding backlight cables. outline dimensions is shown in fig.1 www..net www..net
ld17y59a-3 4. input terminals 4-1. tft-lcd panel driving cn1 (lvds signals , +3.3v / +5.0v dc power supply and contorol signal) corresponding connector:fi-se2 0m (jae) or fi-s20s (jae) pin no. symbol function remark 1 v cc +3.3v / +5.0v power supply 2 v cc +3.3v / +5.0v power supply 3 gnd 4 gnd 5 rxin0- differential data input, ch0 (negative) lvds signal 6 rxin0+ differential data input, ch0 (positive) lvds signal 7 gnd 8 rxin1- differential data input, ch1 (negative) lvds signal 9 rxin1+ differential data input, ch1 (positive) lvds signal 10 gnd 11 rxin2- differential data input, ch2 (negative) lvds signal 12 rxin2+ differential data input, ch2 (positive) lvds signal 13 gnd 14 rxclk in- differential clock input (negative) lvds signal 15 rxclk in+ differential cloc k input (positive) lvds signal 16 gnd 17 r/l horizontal display mode select signal [note1] 18 u/d vertical display m ode select signal [note2] 19 gnd 20 gnd [note ] to obtain the proper relation between lvds signals and actual digital data signals, the digital signals should be inputted into the transmitter as described in the nextsection, 4-2. [note ] the shielding case is connected with signal gnd. [note ] data mapping 1 cycle g0 r5 r4 r3 r2 r1 r0 r0 r1 g0 b1 b0 g5 g4 g3 g2 g1 g1 g2 b1 de b5 b4 b3 b2 b2 b3 de vs hs rxin0+/- rxin1+/- rxin12/- rxclkin-+/- www..net www..net
ld17y59a-4 [note 1],[note 2] r/l = high, u/d = low r/l = low, u/d = low r/l = high, u/d = high r/l = low, u/d = high www..net www..net
ld17y59a-5 100 ?? 100 ?? 100 ?? 100 ?? using receiver ?f single lvds interface, which equals thc63lvdf64a(thine),contained in a control ic corresponding transmitter ?f ds90c363, ds90c363a, ds90c383, ds90c383a ( national semiconductor ), thc63lvdf63a,thc63lvdm63a(thine), sn75lvds84(ti) 4-2 lvds interface block diagram ?i system side ?j ( tft-lcd side ) 100 ?? 100 ?? 100 ?? 10uf r0 ?` r5 b0 ?` b5 hsync vsync enab g0 ?` g5 ck lvds transmitter rxin1+ (9pin) rxin1- (8pin) rxin2+ (12pin) rxin2- (11pin) rxclkin+ (15pin) rxclkin- (14pin) lvds receiver controller ?u ?u ?u ?u ?u ?u r/l u/d 10k ?? 10k ?? r0 ?` r5 b0 ?` b5 hsync vsync enab g0 ?` g5 clk r/l u/d vcc ?u?b?b rxin0+ (6pin) rxin0- (5pin) 100 ?? 100 ?? 100 ?? txin18 txin19 txin20 txclk in txin 0 ?` 5 txin 6 ?` 11 txin12 ?` 17 pll digital signal ? lvds signal rxout18 rxout19 rxout20 rxclk out rxout12 ?` 17 rxout6 ?` 11 rxout0 ?` 5 pll lvds signal ? digital signal r/l(17pin) u/d(18pin) vcc(1,2pin) gnd gnd gnd(3,4,7,10,13,16,19,20pin) ld17y59a-5 www..net www..net
ld17y59a-6 4-3. backlight driving cn2 ,cn3 used connector : bhr-02(8.0)vs-1n (jst) corresponding connector : sm02(8.0)b-bhs-1-tb or -1n-tb (jst) pin no. symbol function color of fl cable 1 vhigh power supply for lamp (high voltage side) (pink ?^ blue) 2 vlow power supply for lamp (low voltage side) (white ?^ gray) 5. absolute maximum ratings parameter symbol condition pin name ratings unit remark +3.3v / +5.0v supply voltage vcc ta=25 o c vcc 0 to + 6.0 v input voltage vi1 rxini-/+(i= 0,1,2) -0.3 to vcc+0.3 v vcc < 3.0v ta=25 o c rxclk in-/+ -0.3 to 3.3v v 3.0v ?? vcc vi2 ta=25 o c r/l , u/d -0.3 to vcc+0.3 v lamp input voltage vhigh - - (2000) vrms storage temperature tstg - - -30 to +80 o c operating temperature topa panel surface - -30 to +80 o c [note1] [note1] humidity: 95%rh max. at ta ?? 40 o c. maximum wet-bulb temperature at 39 o c or less at ta>40 o c. no condensation. 6. recommended operation condition parameter symbol min. typ. max. unit remark supply voltage vcc ?{ 3.0 +3.3/+5.0 ?{ 5.5 ?u [note1] lvds signals v l 0 2.4 ?u [note2] input voltage vi 0 vcc ?u [note3] ambient temperature topa -30 +80 ?? [note4], [note5] [note1] vcc-turn-on conditions 0200ms vcc-dip conditions 1) 2.5v ?? vcc td ?? 10ms 2) vcc<2.5v vcc-dip conditions should also follow the vcc-turn-on conditions. [note2] rxin0-, rxin0+,rxin1-,rxin1+ ,rxin2-,rxin2+,rxclk in-,rxclk in+ [note3] r/l, u/d [note4] humidity: 95%rh max. at ta=<40 o c. maximum wet-bulb temperature at 39 o c or less at ta>40 o c. no condensation. [note5] maximum value : panel surface temperature t ?s 0.3v vcc t1 t ?q 0.9vcc 0.3v vcc t ?t 0.9vcc signal signal t ?r 2.7v 2.5v vcc ?s?? www..net www..net
ld17y59a-7 7. electrical characteristics 7-1. tft-lcd panel driving ta=25 o c parameter symbol min. typ. max. unit remark vcc=+3.3v icc - (tbd) (tbd) ma current dissipation vcc=+5.0v icc - (tbd) (tbd) ma [note1] permissive input ripple voltage vrp - - 100 mvp-p input voltage range lvds signal vl 0 - 2.4 v [note2] differential input high vth - - vcm+ 100 mv v cm =1.2v threshold voltage low vtl vcm? 100 - - mv [note3] input impedance (differential input) rt - 100 - ?? [note2] low vil - - 0.8 v [note4] input voltage high vih 2.1 - - [note5] low(vi=0v) iol1 -800 - - input current1 high(vi=vcc) ioh1 -10.0 - 10.0 [note4] low(vi=0v) iol2 -10.0 - 10.0 ua input current2 high(vi=vcc) ioh2 - - 800 ua [note5] [note1] typical current situation : 16-gray-bar pattern. vcc=+3.3v / +5.0v [note2] lvds signals [note3] v cm : common mode voltage of lvds driver. [note4] r/l [note5] u/d rgb gs0 rgb gs4 rgb gs8 rgb gs56 rgb gs60 .... www..net www..net
ld17y59a-8 7-2. backlight driving the backlight system is an edge-lighting type with double ccft (cold cathode fluorescent tube). the characteristics of single lamp are shown in the following table. (it is usually required to measure under the following condition. condition:il=6.0ma,ta=25 ???} 2 ?? ,fl=60khz.) parameter symbol min. typ. max. unit remark lamp current il (3.0) (6 .0) (6.5) ma rms [note1] lamp power consumption pl - (2.82) - w [note2] lamp frequency fl (35) (60) (70) khz [note3] kick-off voltage vs - - (t bd) inverter output [note4] - - (tbd) v rms (transformer output) ta=-30 o c lamp life time ll (50000) - - hour [note5] [note1] lamp current is measured with current meter for high frequency as shown below. [note2] referential data per one ccft by calculation. (i l ?~ vl) the data don?t include loss at inverter. ( il=6.0marms) [note3] lamp frequency may produce interference with horizontal synchronous frequency,and this may cause beat on the display. therefore lamp frequency shall be detached as much as possible from the horizontal synchronous frequency and from the harmonics of horizontal synchronous to avoid interference. [note4] the open output voltage of the inverter shall be maintained for more than 1s; otherwise the lamp may not be turned on. [note5] above value is appl icable when lamp (the long side of lcd module) is placed horizontally. (landscape position) lamp life time is defined that it applied either ?@ or ?a under this condition (continuous turning on at ta=25 o c, il=6.0ma rms) ?@ brightness becomes 50% of the original value under standard condition. ?a kick-off voltage at ta=-30 o c exceeds maximum value, (tbd)vrms. (lamp lifetime may vary if lamp is in portrait pos ition due to the change of mercury density inside the lamp.) in case of operating under lower temp environment, the lamp exhaustion is accelerated and the brightness becomes lower. (continuous operating for around 1 month under lower temp condition may reduce the brightness to half of the original brightness.) in case of such usage under lower temp environment, periodical lamp exchange is recommended. [note6] the performance of the backlight, for example life time or brightness, is much influenced by the characteristics of the dc-ac i nverter 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-li ghting,flicker, etc.) neve r occur. when you confirm it, the module should be operated in the same condition as it is installed in your instrument. be sure to use a back light power supply with the safety protection circuit such as the detection circuit for the excess voltage, excess current and or electric discharge waveform. be sure to use the detect circuit by which one side of the ccft lamps can be controlled independently. otherwise, when one side of the ccft is open, the excess current may possibly be applied to the other side of the lamp. recommended inverter is ?(tbd)?. [note7] it is required to have the inverter designed so that to allow the impedance deviation of the two ccft lamps and the capacity deviation of barast capacitor. [note8] under the environment of 10lx or less, miss-lighting delay may occur. module ?` ?` ?u ?` transformer output voltage inverter output voltage cn2,3 ?f 2pin ?u ?` cn2,3 ?f 1pin inverter www..net www..net
ld17y59a-9 8. timing characteristics of input signals these are specified at the digital inputs/ outputs of lvds transmitter/receiver. timing diagrams of input signal are shown in fig.2. 8-1. timing characteristics parameter symbol min. typ. max. unit remark clock frequency 1/tc - 25.18 28.33 mhz - horizontal cycle th 30.00 31.78 - s - sync. signal 750 800 900 clock - pulse width thp 2 96 200 clock - vertical cycle tv 515 525 560 line - sync. signal pulse width tvp 1 - 34 line - horizontal display period thd 640 640 640 clock - hsync-vsync tvh 0 - th-thp clock - phase difference vertical data start position tvs 34 34 34 line - [note] in case of lower frequency, the deterioration of display quality, flicker etc.,may be occurred. 8-2. horizontal display position the horizontal display position is determined by enab signal and the input data corresponding to the rising edge of enab signal is displayed at the left end of the active area. parameter symbol min. typ. max. unit remark enable signal pulse width tep 2 640 th-10 clock - hsync-enable signal phase difference the 44 - th?664 clock - [note] when enab is fixed "low", the display starts from the data of c104(clock) as shown in fig.2. be careful that the module does not work when enab is fixed "high". when the phase difference is below 104 clock, keep the ? high level of enab is signal longer than 104-the. if it will not be keeped, the display starts from the data of c104(clock). 8-3. vertical display position the vertical display position, tvs is fixed ?34? (line). 8-4. input data signals and di splay position on the screen d1,dh1 d1,dh2 d1,dh3 d2,dh2 d2,dh1 d3,dh1 r g b display position of input data ( h , v ?j ?t?o d640, d1,dh480 d640,dh1 dh480 www..net www..net
ld17y59a-10 c1* c2* c104* 0 . 8 v 0 . 8 v horizontal sync.signal (hsync) clock signal (ck) data signal (r0?`r5,g0?`g5, b0?`b5) d1 d2 d3 tc d639 d640 horizontal invalid data period horizontal invalid data period data enable signal (enab) thp number of clock number of h-data line the thd tep th dh1 dh2 dh3 dh479 dh480 vertical invalid data period vertical invalid data period vertical sync. signal (vsync) horizontal sync. signal (hsync) tvh tvp tv tvs tvd number of v-data line 1 line 34 line fig. 2 input si gnal waveforms data signal (r0?`r5,g0?`g5, b0?`b5) 0 . 8 v 0 . 8 v 0 . 8 v 0 . 8 v 2 . 1 v 0 . 8 v 0 . 8 v 0 . 8 v 0 . 8 v 2 . 1 v 2 . 1 v 2 . 1 v * only when enable terminal is fixed ? low ? 0 . 8 v 2 line ld17y59a-10 www..net www..net
ld17y59a-11 9. input signals, basic display colors and gray scale of each color 0 :low level voltage, 1 : high level voltage each basic color can be displayed in 64 gray scales from 6 bit da ta signals. according to the combination of total 18 bit data signals, the 262,144-color display can be achieved on the screen. colors & data signal gray scale gray scale r0 r1 r2 r3 r4 r5 g0 g1 g2 g3 g4 g5 b0 b1 b2 b3 b4 b5 black ?| 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 blue ?| 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 green ?| 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0 cyan ?| 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 red ?| 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 magenta ?| 1 1 1 1 1 1 0 0 0 0 0 0 1 1 1 1 1 1 yellow ?| 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 white ?| 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 black gs0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 gs1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 darker gs2 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 ? brighter gs61 1 0 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 ? gs62 0 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 red gs63 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 black gs0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 gs1 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 darker gs2 0 0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 ? brighter gs61 0 0 0 0 0 0 1 0 1 1 1 1 0 0 0 0 0 0 ? gs62 0 0 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0 green gs63 0 0 0 0 0 0 1 1 1 1 1 1 0 0 0 0 0 0 black gs0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 gs1 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 darker gs2 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 ? brighter gs61 0 0 0 0 0 0 0 0 0 0 0 0 1 0 1 1 1 1 ? gs62 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 blue gs63 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 basic color gray scale of red gray scale of green gray scale of blue www..net www..net
ld17y59a-12 10. optical characteristics ta=25 ?? , vcc=+3.3v / +5.0v parameter symbol condition min. typ. max. unit remark viewing horizontal ?? 21, ?? 22 cr>10 60 70 - deg. [note1] angle vertical ?? 11 35 50 - deg. [note4] range ?? 12 55 60 - deg. contrast ratio crn ?? =0 o 300 - - [note2] cro optimum viewing angle - (600) - [note4] response rise ?? r - 10 - ms [note3] time decay ?? d - 25 - ms [note4] chromaticity of white x 0.263 0.313 0.363 y 0.279 0.329 0.379 x (0.546) (0.596) (0.646) chromaticity of red y (0.279) (0.329) (0.379) x (0.260) (0.310) (0.360) chromaticity of green y (0.502) (0.551) (0.602) x (0.117) (0.167) (0.217) chromaticity of blue y (0.132) (0.182) (0.232) [note4] il=6.0marms f=60khz luminance of white y l1 360 450 - cd/m 2 white uniformity w ?? =0 o - - 1.25 [note5] [note] the measurement shall be executed 30 minutes after lighting at rating. (condition:il=6.0ma rms) the optical characteristics shall be measured in a dark room or equivalent state with the method shown in fig.3 below. photodetector fig.3 optical characteristics measurement method center of the screen tft-lcd module 400mm field ?? 1 ?? lcd panel viewing angle/response time : bm-5a (topcon) contrast ratio/luminance of white/chromaticity : sr-3(topcon) www..net www..net
ld17y59a-13 [note1] definitions of viewing angle range: n orm al line 12 ?` e). 11. display quality the display quality of the color tft-lcd module shall be in compliance with the incoming inspection standard. luminance (brightness) with all pixels white luminance (brightness) with all pixels black maximum luminance of five points (brightness) minimum luminance of five points (brightness) ?aw?? a b c d e p ixel 160 320 480 pixel 120 240 360 www..net www..net
ld17y59a-14 12.handling precautions a) be sure to turn o ff 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 polarizer is easily damaged, pay attention not to scratch it. blow away dust on the po larizer with antistatic ?m 2 blow. it is undesirable to wipe off because a polarizer is sensitive. it is recommended to peel off softly using the adhesive tape when soil or finger oil is stuck to the polarizer. when unavoidable, wipe off carefully with a cloth for wiping lenses. d) wipe off water drop immediately. long contact with water may cause discoloration or spots. 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 injure the human earth when handling.observe all other precautionary requirements in handling components. h) since there is a circuit board in the module back, stress is not added at the time of a design assembly. please make it like. if stress is added, there is a possibility that circuit parts may be damaged. i) protection film is attached to the modu le surface to prevent it from being scratched . peel the film off slowly , just before the use, with strict attention to electrostatic charges. blow off 'dust' on the polarizer by using an ionized nitrogen. j) the polarizer surface on th e panel is treated with anti-glare for low reflection. in case of attaching protective board over th e lcd, be careful about the optical interface fringe etc. which degrades display quality. k) do not expose the lcd panel to direct sunlight. lightproof shade etc. should be attached when lcd panel is used under such environment. l) connect gnd to 4 place of mounting holes to stabilize against emi and external noise. m) there are high voltage portions on the backlight and very dangerous. careless touch may lead to electrical shock. when exchange lamps or service, turn off the power without tail. n) when handling lcd modules and assembling them into cabinets, please be noted that long-term storage in the environment of oxidization or deoxidization gas and the use of such materials as reagent,solvent, adhesive, resin, etc. which ge nerate these gasses, may cause corrosion and discoloration of the lcd modules. o) cold cathode fluorescent lamp in lcd panel contains a small amount of mercury, please follow local ordinances or regulations for disposal. p) be careful of a back light lead not to pull by force at the time of the wiring to an inverter, or line processing. q) when install lcd modules in the cabinet, recommended torque value is ?0.294 ?} 0.02n m (3.0 ?} 0.2kgf cm)?. be sure to confirm it in the same co ndition as it is installed in your instrument. r) liquid crystal contained in the panel may leak if the lcd is br oken. rinse it as soon as possible if it gets inside your eye or mouth by mistake. s) notice:never dismantle the module , because it will cause failure. t) be careful when using it for long time with fi xed pattern display as it may cause afterimage. u) 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. v) if a minute particle enters in the module and adheres to an optical material, it may cause display non-uniformity issue, etc. therefore, fine-pitch filters have to be installed to cooling and inhalation hole if you intend to install a fan. www..net www..net
ld17y59a-15 13. packing form product countries / areas japan taiwan china piling number of cartons ?i tbd ?j package quantity in one carton ?i tbd ?j carton size ?i tbd ?j total mass of one carton filled with full modules ?i tbd ?j packing form is shown ?i tbd ?j 14.reliability test items no. test item conditions remark 1 high temperature storage test ta=80 ?? 240h panel surface 2 low temperature storage test ta= -30 ?? 240h 3 high temperature & high humidity operation test ta=40 ?? ; 95%rh 240h (no condensation) 4 high temperature operation test ta=80 ?? 240h panel surface 5 low temperature operation test ta= -30 ?? 240h 6 vibration test (non- operating) frequency: 10 ?` 57hz/vibration width (one side ): 0.153mm : 57 ?` 500hz/gravity: (19.6) m/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, half sine wave direction : ?} x, ?} y, ?} z once for each direction. 8 esd test contact discharge ( 150pf 330 ?? ) non-operating = ?} 10kv, operating = ?} 8kv atmospheric discharge ( 150pf 330 ?? ) non-operating = ?} 20kv, operating = ?} 15kv 9 emi measurement in 10m site display position on the screen = ? h ? (full-screen), gnd to 4 place = un-connect, vcc / vsignal = typ. vcci (class b) [result evaluation criteria] under the display quality test conditions with normal operation state, these shall be no change which may affect practical di splay function. (nor mal operation state ?f temperature:15 ?` 35 ?? , humidity:45 ?` 75 ?? , atmospheric pressure:86 ?` 106kpa) www..net www..net
ld17y59a-16 15.others 15-1 lot no. label: model number made in japan made in taiwan japan taiwan product countries / areas made in china china serial no. (5 digits) production year (last digit of dominical year) production month (1-9x, y, z) assembly site code lot number ?d ?o ?o z ?t ?o ?o ?p ?` y * discernment code ?` g product countries / areas z japan taiwan china barcode barcode LQ104V1LG61 15-2 packing box label: product countries / areas japan taiwan china ?e??i???f ?i?s?r?j LQ104V1LG61 ?k?????m?n?d ?f ?i?p?s?j?q?o?o?t?d?p?p?d?o?p ?p???????????????f ?i?p?j ?p?o ?????? ???[?u?i?? ?f barcode barcode barcode ?v???[?v????p???x??????b model number lot number (date) quantity of module LQ104V1LG61 g LQ104V1LG61 z type quantity date LQ104V1LG61 10pcs 2005.11.1 quantity of module : japan quantity of module : taiwan or china 15-3 if any problem occurs in relation to the description of this technical literature , it shall be resolved through discussion with spirit of cooperation. www..net www..net
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