Technical Literature For TFT-LCD Module. Model No. LS013B4DN04
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1 No. Date Jan 13 th 2010 Technical Literature For TFT-LCD Module Model No. Notice The technical Literature is subject to change without any prior notice for the purpose of product improvement. Please contact Sharp or its representative before designing your product based on this literature. Mobile Liquid Crystal Display Group SHARP CORPORATION
2 1 NOTICE <<Precautions>> 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 application examples in these specification sheets are provided to explain the representative applications of the device and are not intended to guarantee any industrial property right or other rights or license you to use them. SHARP assumes no responsibility for any problems related to any industrial property right of a third party resulting from the use of the device. SHARP reserves the right to make changes in the specifications, characteristics, data, materials, structures and other contents described herein at any time without notice in order to improve design or reliability. Contact SHARP in order to obtain the latest specification sheets before using any SHARP's device. Manufacturing locations are also subject to change without notice. Observe the following points when in using any device in this publication. SHARP takes no responsibility for damage caused by improper use of the devices. The devices in this publication are designed for use in general electronic equipment designs, such as: Personal computers Office automation Telecommunication equipment Test and measurement equipment Audio visual and multimedia equipment Industrial control Consumer electronics The appropriate design measures should be taken to ensure reliability and safety when SHARP's devices are used for equipment such as: Transportation control and safety equipment(i.e.,aircraft,trains,automobiles,etc.) Traffic signals Alarm equipment Gas leakage sensor breakers Various safety devices etc. SHARP's devices shall not be used for equipment that requires extremely high level of reliability, such as: Military and space applications Nuclear power control equipment Medical 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 specification sheets. Contact and consult with a SHARP sales representative for any questions about this device.
3 2 [For handling and system design] (1) Handle with care as glass is used in this LCD panel. Dropping or contact against hard object may cause cracks or chips. (2) Be careful to handle this LCD panel in order to avoid injury yourself by panel`s edge as this panel is made of glass and might be a sharp edge. (3) Do not scratch the surface of the UV protection film as it is easily damaged. (4) Water droplets on the UV protection film must be wiped off immediately as they may cause color changes, or other defects if remained for a long time. (5)Do not leave the LCD panel in direct sun or under ultraviolet ray. (6) To clean LCD panel surface, wipe clean with absorbent cotton or soft cloth. If further cleaning is needed, use IPA (isopropyl alcohol) and wipe clean lightly on surface only. Do not use organic solvents as it may damage the LCD panel terminal area which uses organic material. Also, do not directly touch with finger. When the terminals cleaning are needed, those should be wiped by a soft cloth or a cotton swab without directly touching by hand. (7) Do not expose gate driver, etc. on the panel (circuit area outside panel display area) to light as it may not operate properly. Design that shields gate driver, etc. from light is required when mounting the LCD module. (8) To avoid circuit failure, do not touch panel terminal area. (9) Support for the LCD panel should be carefully designed to avoid stress that exceeds specification on glass surface. (10) When handling LCD module and assembling them into cabinets, be noted that storage in the environment of oxidization or deoxidization gas and the use of such materials as reagent, solvent, adhesive, resin, and etc. which generate these gasses, may cause corrosion and discoloration of LCD modules. (11)To avoid picture uniformity failure, do not put a seal or an adhesive material on the panel surface. (12) Do not use chloroprene rubber as it generates chlorine gas and affects reliability in LCD panel connective area. (13) Protective film is attached to the surface of UV protection film on LCD panel to prevent scratches or other damages. Remove this protective film before use. In addition, do not attach the protective film which is removed from LCD module again. When the LCD panel which has the reattached protective film is needed to storage for a long time, the UV protection film might have a damage with picture quality failure. (14) Panel is susceptible to mechanical stress and such stress may affect the display. Place the panel on flat surface to avoid stress caused by twist, bend, etc. (15) When transporting LCD panels, secure them in LCD panel tray to avoid mechanical stress. The tray should be conductive to protect LCD panels from static charge. Material used in set or epoxy resin (amine type hardening agent) from packaging, and silicon adhesive (dealcoholized or oxime) all release gas which may affect quality of UV protection film. Do confirm compatibility with user materials. (16) As this LCD module is composed electronic circuits, it is sensitive to electrostatic discharge of 200V or more. Handle with care using cautions for the followings: Operators Operators must wear anti-static wears to prevent electrostatic charge up to and discharge from human body.
4 3 Equipment and containers Process equipment such as conveyer, soldering iron, working bench and containers may possibly generate electrostatic charge up and discharge. Equipment must be grounded through 100Mohms resistance. Use ion blower. Floor Floor plays an important role in leaking static electricity generated in human body or equipment. If the floor is made of insulated material (such as polymer or rubber material), such static electricity may charge. Proper measure should be taken to avoid static electricity charge (electrostatic earth: 100Mohms).There is a possibility that the static electricity is charged to them without leakage in case of insulating floor, so the electrostatic earth: Ω should be made. Humidity Humidity in work area relates to surface resistance of the persons or objects that generate electrostatics, and it can be manipulated to prevent electrostatic charge. Humidity of 40% or lower increases electrostatic earth resistance and promotes electrostatic charging. Therefore, the humidity in the work area should be kept above 40%. Specifically for film peeling process or processes that require human hands, humidity should be kept above 50% and use electricity removal blower. Transportation/Storage Containers and styroform used in transporation and storage may charge electrostatic (from friction and peeling) or electrostatic charge from human body, etc. may cause containers and styroform to have induced charge. Proper electrostatic measure should be taken for containers and storage material.
5 4 [For operating LCD module] (1) Do not operate the LCD panel under outside of electrical specification. Otherwise LCD panel may be damaged. (2) Do not use the LCD panel under outside of specified driving timing chart. Otherwise LCD panel may not have proper picture quality. (1) Do not operate the LCD panel under outside of electrical specification. Otherwise LCD panel may be damaged. (2) Do not use the LCD panel under outside of specified driving timing chart. Otherwise LCD panel may not have proper picture quality. (3) A still image should be displayed less than two hours, if it is necessary to display still image longer than two hour, display image data must be refreshed in order to avoid sticking image on LCD panel. (4) If LCD module takes a static electricity, as the display image which is written into pixel memory might not be displayed, Data update should be executed frequently. [Precautions for Storage] (1) After opening the package, do not leave the LCD panel in direct sun or under strong ultraviolet ray. Store in dark place. (2) In temperature lower than specified rating, liquid crystal material will coagulate. In temperature higher than specified rating, it isotropically liquifies. In either condition, the liquid crystal may not recover its original condition. Store the LCD panel in at or around room temperature as much as possible. Also, storing the LCD panel in high humidity will damage the polarizer. Store in normal room temperature as much as possible. (3) Keeping Method a. Don't keeping under the direct sunlight. b. Keeping in the tray under the dark place.
6 5 [Other Notice] (1) Operation outside specified environmental conditions cannot be guaranteed. (2) As power supply (VDD-VSS VDDA-VSSA) impedance is lowered during use, bus controller should be inserted near LCD module as much as possible. (3) UV protection film is applied over LCD panel surface. Liquid crystal inside LCD panel deteriorates with ultraviolet ray. The panel should not be left in direct sun or under strong ultraviolet ray for prolonged period of time even with the UV protection film. (4) Disassembling the LCD module will cause permanent damage to the module. Do not disassemble the module. (5) If LCD panel is broken, do not ingest the liquid crystal from the broken panel. If hand, leg, or clothes come in contact with liquid crystal, wash off immediately with soap. (6) ODS (specific chlorofuorocarbon, specific halon, trichloroethane, carbon tetrachloride) are not used or contained in material or all production processes of this product. (7) Observe all other precautionary requirements in handling general electronic components. Discarding liquid crystal modules LCD Panel : Dispose of as glass waste. This LCD module contains no harmful substances. The liquid crystal panel contains no dangerous or harmful substances. This liquid crystal panel contains only an extremely small amount of liquid crystal (approximately 100mg) and therefore it will not leak even if the panel should break. Its median lethal dose (LD50) is greater than 2,000 mg/kg and a mutagenetic (Aims test: negative) material is used. FPC : (1) FPC bend R should be 0.45mm or greater and R should be even. In LCD panel an connective area, do not bend FPC into UV protection film side. (2)Do not hang LCD module by FPC or apply force to FPC.
7 6 Contents 1. Outline Characteristics Mechanical Specification Input terminal names and functions Absolute Maximum Rating Electrical characteristics Optical characteristics Module outline External capacitors Package Reliability Test Conditions...27
8 7 1. Outline This TFT-LCD module is a reflective active matrix memory liquid crystal display module with CG silicone thin film transistor. Module outline is indicated in fig Characteristics Reflective panel of white and black with aspect ratio of 1:1 1.3 screen has 96x 96 resolusion. (9216 pixels stripe array) Display control by serial data signal communication. Arbitrary line data renewable. 1bit internal memory for data storage within the panel. Thin, light-weight and compact module with monolithic technology. Super low power consumption TFT panel. FPC attached (Applicable connectors: Please refer to the page 21 Recommended Connectors 3. Mechanical Specification Table 3-1 Item Specification unit Screen size 3.4 (1.3 ) cm Viewing Area (H) (V) mm Dot configuration 96 (H) 96 (V) Dot Dot pitch (H) (V) mm Pixel Array Stripe Array - Outline Dimension 28.2 (W) (H) 1.40 (D) mm Mass 3.6 (TYP g Surface Hardness 3H Pencil hardness (Note) Detail dimension and tolerance are shown in fig. 8-1
9 8 4. Input terminal names and functions Table4-1 Terminal symbol I O Function Remark 1 SCLK INPUT Serial clock signal 2 SI INPUT Serial data input signal 3 SCS INPUT Chip select signal 4 EXTCOMIN INPUT External COM inversion signal input (H: enable) 5 DISP INPUT Display ON/OFF signal Remark4-2 6 VDDA POWER Power supply (Analog) 7 VDD POWER Power supply (Digital) 8 EXTMODE INPUT COM inversion select terminal Remark4-1 9 VSS GND GND(Digital) 10 VSSA GND GND(Analog) Remark4-1 When it s H, EXTCOMIN signal is enable. And when it s L,sirial input flag is enable. Remark4-1 When it s H, EXTCOMIN signal is enable. And when it s L,sirial input flag is enable. H mode; connect the EXTMODE tovdd, L mode; connect the EXTMODE to VSS. Remark4-2 The display ON/OFF signal is only for display. Data in the memory will be saved at the time of ON/OFF. When it s H, data in the memory will display, when it s L, white color will diaplay and data in the memory will be saved. 4-2 Recommended circuit;
10 9 5. Absolute Maximum Rating Table5-1 ( GND 0V ) Item Symbol MIN. MAX. Unit Remark Power Analog VDDA V supply Logic VDD V [Remark5-1] voltage Input signal voltage(high) VDD V [Remark5-2] Input signal voltage(low) -0.3 V Strage Temperature Tstg TBD TBD [Remark5-3,4] Operation Temperature Topr [Remark5-5] (at panel surface) [Remark5-1] Applies to EXTMODE. [Remark5-2] Applies to SCLK, SI, SCS, DISP, EXTCOMIN. [Remark5-3] Do not exceed this temperature in any parts of module. [Remark5-4] Maximum wet bulb temperature is 57 or lower. No condensation is allowed. Cndensation will cause electeical leak and may cause the module to not meet this specification. [Remark5-5] Operating temperature is the temperature that guarantees only for the operation. For contrast, response time, and other display quality determination, use Ta 25.
11 10 6. Electrical characteristics 6-1) TFT LCD panel drive Table6-1 Recommended operating Condition Power supply Input signal voltage VSS(GND) 0V Ta 25 Item symbol MIN. TYP. MAX. Unit Remark Analog VDDA V Logic VDD V [Remark6-1] Hi VIH VDD-0.1 VDD V Lo VIL VSS VSS+0.1 V [Remark6-1] Applies to EXTMODE H [Remark6-2] Applies to SCLK, SI, SCS, DISP, EXTCOMIN. [Remark6-2]
12 11 6-2) Power supply sequence On Sequence Normal operation Off sequence 1 1 T1 T2 T3 T4 T5 T6 T7 VDD/VDDA 5V GND GND DISP GND GND EXTCOMIN GND Normal operation GND SCS GND 2 Normal operation 2 GND Others GND 2 Normal operation 2 GND Refer to timing chart and AC timing characteristics for detail 1 and may be opposite (however, TCOM polarity inversion will not occur even with EXTCOMIN between DISP= L. Also, when DISP and EXTCOMIN are simultaneously started up, allow 30us or more before SCS starts up (It may be less than 60us). 2 Setting value for pixel memory initialization SCS=Driving accordingly to clear pixel internal memory method (use all clear flag or write all screen white) S1=M2 (all clear flag) = H or write white SCLK: Normal Driving [ON Sequence] (1) 3V rise time (depends on IC) (2) Pixel memory initialization T2: 1V or more Initialize with M2 (all clear flag) or write all screen white (3) Release time for initialization of TCOM latch T3: 30us or more Time required to release COM related latch circuit initialization which is initializing using DISP signals (4) TCOM polarity initialization time T4: 30us or more Time required initializing TCOM polarity accordingly to EXTCOMIN input [Normal Operation] Duration of normal driving [Off Sequence] (5) Pixel memory initialization time T5: 1V or more (6) VA, VB, VCOM initialization time T6: 1V or more (7) 3V falling time (Depends on IC) [Remark] Precaustions at ehte time of power on and power off. Remark 1)When power on, VDD and VDDA are same time or VDD should be faster than the VDDA. Remark 2) When power off, VDD and VDDA are same time or VDDA shoud be faster than the VDD.
13 12 6-3) Input signal characteristics Table6-3-1 VDDA= 3.0V VDD= 3.0V VSS=0V VSSA=0V Ta=25 Item Symbol MIN TYP MAX Unit Remark Frame frequency fscs 1-60 Hz Clock frequency fsclk MHz Vertical Interval tv ms COM Frequency fcom Hz Table VDDA= 3.0V VDD= 3.0V VSS=0V VSSA=0V Ta=25 Item Symbol MIN TYP MAX Unit Remark SCS Rising time trscs ns SCS Falling Time tfscs ns SCS High duration twscsh us us SCS Low duration twscsl us SCS set up time tsscs us SCS hold time thscs us SI Rising time trsi ns SI Falling time tfsi ns SI set up time tssi 380 *1 - - ns SI hold time thsi 440 *1 - - ns SCLK Rising time trsclk ns SCLK Falling time tfsclk ns SCLK High duration twsclkh ns SCLK Low duration twsclkl ns EXTCOMIN signal freequency fextcomin 1 60 Hz [Remark6-3] EXTCOMIN signal rising time trextcomin ns EXTCOMIN signal falling time tfextcomin ns EXTCOMIN signalhigh duration twextcominh 2 us DISP Rising time trdisp ns DISP Folling time tfdisp ns Remark 6-3 EXTCOMIN frequency should be made lower than frame frequency.
14 13 SCS, SI, SCLK signal twscsh twscsl SCS 50% 90% 90% 50% 50% 10% 10% trscs tsscs thscs tfscs SI 90% 90% 10% 10% 10% 10% trsi tfsi tssi thsi twsclkh twsclkl SCLK 90% 90% 50% 50% 50% 50% 10% 10% trsclk tfsclk EXTCOMIN signal fextcomin EXTCOMIN 90% 90% 50% 50% 50% 10% 10% trextcomin tfextcomin twextcominh DISP signal DISP 90% 90% 10% 10% trdisp tfdisp SCS,SI,SCLK DISP EXTCOMIN: 3V input voltage
15 14 6-4) Power consumption (Average) Table6-4 Ta 25 Item Symbol MIN TYP MAX unit Remark Condition1 6 TBD uw [Remark6-4] Condition2 12 TBD uw [Remark6-4] * Measurement Condition 1 Display mode (no display data update), Common inversion fscs=1hz, with VDD=3V VDDA=3V fsclk=0.5mhz Display pattern: Vertical stripe display * Measurement Condition 2 Data update mode (with display data update: 1Hz) Common inversion fscs=1hz with VDD=3V VDDA=3V fsclk=0.5mhz Display pattern: Vertical stripe display Remark 6-4 This is value in steady condition, not the falue of peak power at the time of COM operation. Some marging for power supply is recommended. We recommend capacitor for VDD and VDDA. (If VDD and VDDA are on separate systems, we recommend capacitor for each.)
16 15 6-5) Input Signal Timing Chart Data update mode (1 line) Updates data of only one specified line. (M0= H M2 L ) twscsh twscsl SCS tsscs thscs SI M0 M1 M2 DMYDMYDMYDMYDMYAG0 AG1 AG2 AG3 AG4 AG5 AG6DMY D1 D2 D3 D4 D93 D94 D95 D96 DUMMY DATA(don't care) SCLK tssi thsi twsclkl twsclkh Mode selection period (3ck+5ckDMY) Gate line address period (7ck+1ckDMY) Data writing period (96ck) Data transfer period (16ck) M0: Mode flag. Set for H. Data update mode (Memory internal data update) When L, display mode (maintain memory internal data). M1: Frame inversion flag. When H, outputs VCOM= H, and when L, outputs VCOM= L. When EXTMODE= H, it can be H or L. M2: All clear flag. Refer to 6-5-4) All Clear Mode to execute clear. DUMMY DATA: Dummy data. It can be H or L ( L is recommended.) Data write period Data is being stored in 1 st latch block of binary driver on panel. Data transfer period Data written in 1 st latch is being transferred (written) to pixel internal memory circuit. For gate line address setting, refer to 6-6) Input Signal and Display. M1: Frame inversion fl is enaled when EXTMODE= L. When SCS becomes L, M0 and M2 are cleared.
17 Data Update Mode (Multiple Lines) Updates arbitrary multiple lines data. (M0= H M2 L ) twscsh SCS tsscs SI M0 M1 M2 DMY DMY DMY AG0 AG1 AG2 AG3 AG5 AG6 DMY D4 D93 D96 AG0 AG1 AG5 AG6 D1 D2 D3 DMY AG4 D94 D95 D1 DMY DMY D2 DUMMY DATA(don't care) tssi thsi twsclkl twsclkh SCLK Mode selection period (3ck+5ckDMY) Gate line address period (7ck+1ckDMY) GL1 Data transfer period (96ck) Data transfer period (8ck(Dummy)+7ck(address)+1ck(Dummy)=16ck) GL2 twscsh twscsl thscs D95 D96 DUMMY DATA(don't care) AG0 AG1 AG4 AG5 AG6 DMY D1 D2 D94 D95 D96 DUMMY DATA(don't care) GL(n-1)th Line Data transfer period (8ck(Dymmy)+7ck(address)+1ck(Dummy)=16ck) GL(n)th line Data writing period (96ck) Data transfer period (16ck) M0: Mode flag. Set for H. Data update mode (Memory internal data update) When L, display mode (maintain memory internal data). M1: Frame inversion flag. When H, outputs VCOM= H, and when L, outputs VCOM= L. When EXTMODE= H, it can be H or L. M2: All clear flag. Refer to 6-5-4) All Clear Mode to execute clear. DUMMY DATA: Dummy data. It can be H or L ( L is recommended.) Data write period Data is being stored in 1 st latch block of binary driver on panel. Data transfer period For example, during GL2nd line data transfer period, GL 2 nd line address is latched and GL1st line data is transferred from 1 st latch to pixel internal memory circuit at the same time. For gate line address setting, refer to 6-6) Input Signal and Display. Input data continuously. M1: Frame inversion flag is enabled when EXTMODE= L. When SCS becomes L, M0 and M2 are cleared.
18 Display Mode Maintains memory internal data (maintains current display). (M0= L M2 L ) twscsh tv twscsl SCS tsscs thscs SI M0 M1 M2 DUMMY DATA(don't care) M0 M1 M2 DUMMY DATA(don't care) SCLK tssi thsi Mode selection period (3ck) Data transfer period (More than 13ck) M0: Mode flag. Set for H. Data update mode (Memory internal data update) When L, display mode (maintain memory internal data). M1: Frame inversion flag. When H, outputs VCOM= H, and when L, outputs VCOM= L. When EXTMODE= H, it can be H or L. M2: All clear flag. Refer to 6-5-4) All Clear Mode to execute clear. DUMMY DATA: Dummy data. It can be H or L ( L is recommended.) M1: Frame inversion flag is enabled when EXTMODE= L When SCS becomes L, M0 and M2 are cleared.
19 All Clear Mode Clears memory internal data and writes white. (M0= L M2 H ) twscsh tv twscsl SCS tsscs thscs SI M0 M1 M2 DUMMY DATA(don't care) M0 M1 M2 DUMMY DATA(don't care) SCLK tssi thsi Mode selection period (3ck) Data transfer period (More than 13ck) M0: Mode flag. Set it L. M1: Frame inversion flag. When H, outputs VCOM= H, and when L, outputs VCOM= L. When EXTMODE= H, it can be H or L. M2: All clear flag. Set it H DUMMY DATA: Dummy data. It can be H or L ( L is recommended.) M1: Frame inversion flag is enabled when EXTMODE= L. When SCS becomes L, M0 and M2 are cleared.
20 COM Inversion There are two types of inputs, COM signal serial input (EXTMODE= L ) and external COM signal input (EXTMODE= H ). EXTMODE= L SCS SI COM M0 M1 M2 M0 M1 M2 M0 M1 M fcom 2 M1 LC polarity inversion flag: If M1is "H" then VCOM="H" is output. If M1 is "L" then VCOM="L" is output. 1 LC inversion has been changed by M1 flag statement. 2 The periods of plus polarity and minus polarity should be same length as much as possible. EXTMODE= H 1) about the when SCS signal is H. 1 LC inversion polarity has been set by the rising timing of EXTCOMIN in internal circuit block as COMZ signal, 2 The period of EXTCOMIN should be constant. 2) about the when SCS signal is L. 3 LC inversion polarity has been set by the rising timing of EXTCOMIN in internal circuit block as COMZ signal, 4 The period of EXTCOMIN should be constant.
21 20 6-6) Input Signal and Display, Gate address(line) Setting Data position in display H,V UP P1,L1 P2,L1 P3,L1 P96,L1 P1,L2 P2,L2 P1,L3 Display side up P1,L96 P96,L96 Gate line address setting Line
22 21 7. Optical characteristics Table 7-1 Viewing angle CR 3 Item Symbol MIN. TYP. MAX. unit Remark H θ21,θ22 60 (degree) V θ11 60 (degree) θ12 60 (degree) [Remark7-1] Contrast ratio CR [Remark7-2 3] Reflecivity ratio R 50 % [Remark7-3] Response time Rise τr 50 ms Fall τd 50 ms [Remark 7-3,4] Ta=25 Panel Chromaticity White x [Remark7-3] y [Remark7-3] Optical characteristics measurement equipment. Figure 7-2 is for contrast ratio, reflectivity ratio, and panel chromaticity measurement, and figure 7-3 is for response time measurement. Both are to be conducted in a dark or room equivalent to a dark room Measurement equipment Measurement equipment (CM-2002) (LCD-5200) Normal line Normal line Light receiver Light source Light receiver Light source -30 Integrating sphere LCD panel LCD panel Display center Fig7-2 Contrast ratio, Reflection ratio, Panel chromaticity of white Display center Fig7-3 response time
23 22 [Remark7-1] Defintion of Viewint Angle Normal Line [Remark7-2] Defintion of Contrast Retio 6 o clock direction Contrast ratio(cr) Reflection intensity in white display Reflection intensity in black display [Remark7-4] Respons time (Change in reflection ratio) It s difined by the time change of optical receiver output when signal is input to display white or black White Black White Optical receiver output (Incremental) Time
24 23 8. Module outline 8-1) Outline dimention of the panel with FPC type fig.8-1 fig. 8-2 Recommended Connector SMK (Bottom Contact) FP12 Series: CFP F 8-2) FPC Bend Specification When bending FPC, bend where specified in Condition (1) and the bend R should be more than R specified in Condition (2). FPC is not to contact glass edge, and there should be no stress to connective area between panel and FPC. Condition (1) FPC bend recommended area: 0.8mm 6.0mm from glass edge. Condition (2) Minimum bend R: Inner diameter R0.45 Fig.8-3 Remark 8-1 Do not bend backward (toward UV protection film side) Remark 8-2 Bend frequency: 3 times or less (Repeat bend condition: ) Recommended Connector of 180 degree bent FPC SMK Contact side: upper side FP-12 series CFP F
25 24 9. External capacitors Fig. 9-1 External capacitor recommendation capacity value Recommended capacity value C1 DISP- VSS: rank B 0.1uF Ceramic capacitor C2 VDDA- VSS: rank B 1uF Ceramic capacitor C3 VDD- VSS: rank B 1uF Ceramic capacitor Above circuit and parts are only recommendation. For actual use, please evaluate their conformity with your system and design. (Capacitor pressure resistance can be larger than resistance indicated above.)
26 Package 10-1) Serial number (Ink-jet print) will be indicated on serial number label as indicated in Figure 10-1 outline dimension figure. Model number Print structure 9312AD00001FA ABC D Display side up Back side up Serial number specifications A a single figure of the year B month(1,2...9,x,y,z) C day D serial numbe Fig Serial number print position 10-2) Forwarding form 1) Piling number of cartons : Max 12 Package quality in a carton : 800pcs 2) Storage condition Temperature: 0 40 Humidity: 60%RH or lower (at 40 ) There should be no condensation at low temperature and high humidity. Atmosphere: No harmful gas, such as acid or alkali, which causes severe corrosion on electronic parts and wiring, are to be detected. Period: About 3 months Opening the package: in order to prevent electrostatic damage to TFT modules, room humidity should be made over 50%RH and take effective measure such as use of earth when opening the package.
27 ) Package Fig Package Form
28 Reliability Test Conditions 11-1) Reliability test items Table11-1 Test Item Test condition Remark 1 High temperature storage test Ta=80degrees Celsius 240h 2 3 Low temperature storage test Ta=35degrees Celsius 240h High temperature and high humidity operating test Tp=40degrees Celsius/95%RH 240h 4 High temperature operating test Tp=70degrees Celsius 240h 5 Low temperature operating test Tp=-20degrees Celsius 240h Shock test Ta=-30degrees Celsius (1h) +80 degrees 6 (Non operating test) Celsius (1h) / 5 cycle 7 Electro static discharge test ±200V 200pF(0Ω) each terminai: 1 time [Remark] Ta = Ambient temperature, Tp = Panel temperature (Evaluation method) In the standard condition, there shall be no practical problems that may affect the display function. 11-2) Panel surface stress spesification Panel surface stress spesification has been defined as a parameter Force of stress [N] without no picture failer. Load testing Minimum 120[N] Test condition ) Test stracture Press point Press Jig Press speed Support Press time LCD panel with UV protection film Center of LCD panel φ10mm column 1mm minute fixed on stage 5 seconds after achivement of the press strength,then reless it.
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