




已阅读5页,还剩22页未读, 继续免费阅读
版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领
文档简介
ESL电子纸屏说明书英文版 WF021-01B Product Specification TECHNICAL SPECIFICATION MODEL NO: WF021-01BThe content of this information is subject to changed with out notice.Please contact WF or its agent for further information. Customers ConfirmationCustomer: Date: By: WFs Confirmation Confirmed By: Prepared By: Revision HistoryRev.Issued DateRevised Contents1.0Jul. 1,2011Preliminary1.1SEP.4.20111. Modify Mechanical Drawing of EPD module2. Delete 7-3-1-2) MCU Parallel 6800-series Interface3. Delete7-3-1-3) MCU Parallel 8080-series Interface4. Delete7-3-2) Timing Characteristics of 6800-Series MCU Parallel Interface5. Delete 7-3-3)Timing Characteristics of 8080-Series MCU Parallel Interface6. Figure . 7-6 (1) Modify 41 pin conector to 24 pin connectorTECHNICAL SPECIFICATIONCONTENTSNO.ITEMPAGE-Cover1-Revision History2 -Contents31Application42Features43Mechanical Specifications44Mechanical Drawing of EPD module55Input/Output Terminals66Command Table107Electrical Characteristics138Typical Operating Sequence219Optical Characteristics2310Handling, Safety and Environment Requirements2511Reliability test2612Block Diagram271. Over ViewThe display is a TFT active matrix electrophoretic display , with interface and a reference system design. The 2.04” active area contains 17272 pixels, and has 1-bit and 2-bit full display capabilities. An integrated circuit contains gate buffer, source buffer, interface, timing control logic, oscillator, DC-DC. SRAM. LUT ,VCOM, and border are supplied with each panel.2. Features High contrast High reflectance Ultra wide viewing angle Ultra low power consumption Pure reflective mode Bi-stable Commercial temperature range Landscape, portrait mode Antiglare hard-coated front-surface Low current deep sleep mode On chip display RAM Waveform stored in On-chip OTP Serial peripheral interface available On-chip oscillator On-chip booster and regulator control for generating VCOM, Gate and source driving voltage . I2C Signal Master Interface to read external temperature sensor Available in COG package IC thickness 250um3. Mechanical SpecificationsParameterSpecificationsUnitRemarkScreen Size2.04InchDisplay Resolution172(H)72(V)PixelDpi:95Active Area20.16(H)48.16(V)MmPixel Pitch0.2800.280MmPixel ConfigurationRectangleOutline Dimension29.20(H59.20(V) 1.18(D)MmWeight40.5g4. Mechanical Drawing of EPD module5. Input/Output Terminals5-1) Pin out ListPin #TypeSingleDescriptionRemark1NCDo not connect with other NC pinsKeep Open2OGDRN-Channel MOSFET Gate Drive Control3ORESECurrent Sense Input for the Control Loop4CVGLNegative Gate driving voltage5CVGHPositive Gate driving voltage6OTSCLI2C Interface to digital temperature sensor Clock pin7I/OTSDAI2C Interface to digital temperature sensor Date pin8IBS1Bus selection pinNote 5-59OBUSYBusy state output pinNote 5-410IRES #ResetNote 5-311ID/C #Data /Command control pinNote 5-212ICS #Chip Select input pinNote 5-113I/OD0serial clock pin (SPI)14I/OD1serial data pin (SPI)15CVDDIOPower for interface logic pins16IVCIPower Supply pin for the chip17VSSGround18CVDDCore logic power pin19CVPPPower Supply for OTP Programming20CVSHPositive Source driving voltage21CPREVGHPower Supply pin for VGH and VSH22CVSLNegative Source driving voltage23CPREVGLPower Supply pin for VCOM, VGL and VSL24CVCOMVCOM driving voltageNote 5-1: This pin is the chip select input connecting to the MCU. The chip is enabled for MCU communication only when CS# is pulled LOW in parallel interface. When CS# is not in use, please connect to VCI or VSS.Note 5-2: This pin is Data/Command control pin connecting to the MCU. When the pin is pulled HIGH, the data at 7:0 will be interpreted as data. When the pin is pulled LOW, the data at D7:0 will be interpreted as command.Note 5-3: This pin is reset signal input. Active Low.Note 5-4:This pin is Busy state output pin. When Busy is High, the operation of chip should not be interrupted, command should not be sent. e.g., The chip would put Busy pin High when - Outputting display waveform; or- Programming with OTP- Communicating with digital temperature sensorNote 5-5: Table: Bus interface selection6. Command TableD/C# =0, R/W# (WR#) =0, E(RD# =1)unless specific setting is stated.7. Electrical Characteristics7-1) Absolute maximum ratingParameterSymbolRatingUnitLogic Supply VoltageVCI-0.5 to +3.6VLogic Input VoltageVIN-0.5 to VCI +0.5VLogic Output VoltageVOUT-0.5 to VCI +0.5VOperating Temp. rangeTOPR0 to +50Storage Temp. rangeTSTG-25 to +707-2) Panel DC CharacteristicsThe following specifications apply for : VSS = 0V, VCI = 3.0V, TA = 25ParameterSymbolConditionsMinTypMaxUnitSingle groundVSS-0-VLogic Supply VoltageVCI-2.43.03.3VHigh level input voltageVIH-0.8VCI-VLow level input voltageVIL-0.2VCIVHigh level output voltageVOHIOH= -100uA0.9VCI-VLow level output voltageVOLIOH= 100uA-0.1VCIVMaximum power panelPMAX-3.610mWStandby power panelTSTBY-TBDmWTypical power panelPTYP-0.657-mWOperating temperature-0-50Storage temperature-25-70Maximum image updateTime at 25-1000-msDeep sleep mode currentVCIDC/DC offNo clockNo input loadRam data not retain-25uASleep mode currentVCIDC/DC offNo clockNo input loadRam data retain-3550uA- The Typical power consumption is measured with following pattern transition: from horizontal 4 gray scale pattern to vertical 4 gray scale pattern.(Note 7-1)- The standby power is the consumed power when the panel controller is in standby mode.- The listed electrical/optical characteristics are only guaranteed under the controller & waveform provided by WF- Vcom is recommended to be set in the range of assigned value 0.1V.Note 7-1The Typical power consumption 7-3) Panel AC CharacteristicsThe following specifications apply for : VSS = 0V, VCI = 3.0V, TA = 25ParameterSymbolConditionsMinTypMaxUnitInternal Oscillator frequencyFoscVCI=2.4 to 3.3V0.9511.05MHz7-3-1) MCU InterfaceNote 7-2 : L is connected to VSSNote 7-3 : H is connected to VCI7-3-1-1) MCU Interface SelectionMCU interface consist of 2 data/command pins and 3 control pins .The pin assignment at different interface mode is summarized in Table 7-1. Different MCU mode can be set by hardware selection on BS1 pins. The display panel only supports spi4 or spi3 interface mode.Pin NameData/Command InterfaceControl SignalBus interfaceD1D0CS#D/C#RES#SPI4SDinSCLKCS#D/C#RES#SPI3SDinSCLKCS#LRES#MCU interface assignment under different bus interface mode7-3-1-2) MCU Serial Interface (4-wire SPI)The serial interface consists of serial clock SCLK, serial data SDIN, D/C# , CS#. In SPI mode ,D0 acts as SCLK, D1 acts as SDIN .FunctionCS#D/C#SCLKWrite CommandLLWrite dataLHControl pins of Serial interfaceNote 7-9 : stands for rising edge of signalSDIN is shifted into an 8-bit shift register on every rising edge of SCLK in order of D7,D6, D0.D/C# is sampled on every eighth clock and the data byte in the shift register is written to the Graphic Display Data RAM(RAM) or command register in the same clock.Under serial mode, only write operations are allowed.7-3-1-3) MCU Serial Interface (3-wire SPI)The 3-wire serial interface consists of serial clock SCLK, serial data ADIN and CS#.In 3-wire SPI mode,D0 acts as SCLK, D1 acts as SDIN, The pin D/C# can be connected to an external ground.The operation is similar to 4-wire serial interface while D/C# pin is not used. There are altogether 9-bits will be shifted into the shift register on every ninth clock in sequence : D/C# bit, D7 to D0 bit. The D/C# bit (first bit of the sequential data ) will determine the following data byte in shift register is written to the Display Data RAM (D/C# bit = 1) or the command register (D/C# bit = 0).Under serial mode ,only write operations are allowed.FunctionCS#D/C#SCLKWrite CommandLTie LOWWrite dataLTie LOWControl pins of 3-wire Serial interfaceNote 7-10 : stands for rising edge of signal7-3-2) Timing Characteristics of Series Interface Series Interface Timing Characteristics (VCI - VSS = 1.8 V to 2.0 v , TA = 25, CL = 20 pF)SymbolParameterMinTypMaxUnittcycleClock Cycle Time250-nstASAddress Setup Time150-nstAHAddress Hold Time150-nstCSSChip Select Setup Time120-nstCSHChip Select Hold Time60-nstDSWWrite Data Setup Time50-nstDHWWrite Data Hold Time15-nstCLKLClock Low Time100-nstCLKHClock High Time100-nstRRise Time 20%80%-15nstFFall Time 20%80%-15ns Series interface characteristics7-4) Power ConsumptionParameterSymbolConditionsTYPMaxUnitRemarkPanel power consumption during update-5680mW-Power consumption in standby mode-TBDmW-7-5) Reference Circuit Figure . 7-5 (1) Figure . 7-5 (2) Figure . 7-5 (3) Figure . 7-5 (4) 8. Typical Operating SequenceInitialize display :Command 21H Data 8FHCommand 3HData 00HCommand 24HDeliver 3096 times of data FFHData F8HCommand 20HClose charge pump (shut down) : Open charge pump :Command F0HCommand 22HData 1FHData 83H Command 22HCommand 20HData C0HCommand 20HNormal display sequence : Image resolution : 72172 Image type : 24-bit. Note : 19. Optical characteristics9-1) SpecificationsMeasurements are made with that the illumination is under an angle of 45 degrees, the detection is perpendicular unless otherwise specified. T=25SYMBOLPARAMETERCONDITIONSMINYPYMAXUNITNoteRReflectanceWhite3035-%Note9-1GnNth Grey Level-DS+(WS-DS)xn(m-1)-L*-CRContrast Ratio-8-TupdateUpdate time24-bit mode-1-sec-WS : White state, DS : Dark stateGray state from Dark to White : DS、G1、G2、Gn、Gm-2、WSm : 4, when 2 bits modeNote 9-1 : Luminance meter : Eye One Pro Spectrophotometer9-2) Definition of contrast ratioThe contrast ratio (CR) is the ratio between the reflectance in a full white area (R1) and the reflectance in a dark area (Rd) :CR = R1/Rd 9-3) Reflection RatioThe reflection ratio is expressed as :R = Reflectance Factor white board x (L center / L white board )L center is the luminance measured at center in a white area (R=G =B=1) . L white board is the luminance of a standard white board . Both are measured with equivalent illumination source . The viewing angle shall be no more than 2 degrees .9-4) Bi-stability 1 Month defined as no more than 20% drop of Contrast ratio.(And a general impression that the display still nice.)10. HANDLING,SAFETY AND ENVIROMENTAL REQUIREMENTSWARNINGThe display glass may break when it is dropped or bumped on a hard surface . Handle with care.Should the display break, do not touch the electrophoretic material . In case of contact with electrophoretic material , wash with water and soap.CAUTIONThe display module should not be exposed to harmful gases , such as acid and alkali gases , which corrode electronic components.Disassembling the display module can cause permanent damage and invalidate the warranty agreements.Observe general precautions that are common to handling delicate electronic components . The glass can break and front surfaces can easily be damaged . Moreover the display is sensitive to static electricity and other rough environmental conditions.Data sheet statusProduct specificationThe data sheet contains final product specifications.Limiting valuesLimiting values given are in accordance with the Absolute Maximum Rating System (IEC 134).Stress above one or more of the limiting values may cause permanent damage to the device.These are stress ratings only and operation of the device at these or any other conditions above those given in the Characteristics sections of the specification is not implied . Exposure to limiting values for extended periods may affect device reliability.Application informationWhere application information is given , it is advisory and dose not form part of the specification.11. Reliability testTESTCONDITIONMETHODREMARK1High-Temperature OperationT = 50,30% for 240 hrsIEC 60 068-2-2Bp2Low-Temperature OperationT = 0 for 240 hrsIEC 60 068-2-2Ab3High-Temperature StorageT = +70, 23% for 240 hrsTest in white patternIEC 60 068-2-2Bp4Low-Temperature StorageT = -25 for 240 hrsTest in white patternIEC 60 068-2-2Ab5High Temperature, High-Humidity OperationT=+40,RH=90%for168hrsIEC 60 068-2-3CA6High Temperature, High-Humidity StorageT=+60,RH=80%for240hrsTest in white patternIEC 60 068-2-3CA7Temperature Cycle-25 30mins +70 30mins,70cyclesTest in white patternIEC 60 068-2-14NB8UV exposure Resistance765 W/m2 for 168 hrs,40IEC 60 068-2-5 Sa9Electrostatic Effect(non-operating)Machine mode+/- 250V, 0,200pFIEC62179,IEC6218010Package Vibration1.04G,Frequency : 10500HzDirection : X,Y,ZDuration:1hours in each directionFull packed for shipment11Package Drop ImpactDrop from height of 122 cm onConcrete surfaceDrop sequence:1 corner, 3edges,6faceOne drop for each
温馨提示
- 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
- 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
- 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
- 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
- 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
- 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
- 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。
最新文档
- 2025西安未央区辛家庙社区卫生服务中心招聘(8人)备考练习题库及答案解析
- 2025浙江供富冷链发展(金华)有限公司人才招聘1人备考练习题库及答案解析
- 2025年EHS培训考核题库及参考答案
- 礼貌礼仪知识培训考核课件
- 2025四川雅安市雨城区公共卫生服务辅助岗招募14人备考练习题库及答案解析
- 2025年广东省事业单位集中公开招聘高层次和急需紧缺人才6465人备考练习试题及答案解析
- 2025重庆市铜梁区人力资源和社会保障局第四批公益性岗位招聘6人备考练习题库及答案解析
- (2025年)云南省昆明市全国计算机等级考试网络技术模拟考试含答案
- 成都高新技术产业开发区石羊街道办事处公办幼儿园招聘编外人员备考练习试题及答案解析
- 2025重庆市九龙坡区人民医院杨家坪分院(重庆市九龙坡区杨家坪街道社区卫生服务中心)非在编人员招聘5人备考练习试题及答案解析
- (2025年标准)自愿交社保协议书
- 2025年空分设备行业研究报告及未来发展趋势预测
- 幼师面试精 选题目及答案解析
- 企业营销自动化平台开发及应用研究
- 通信技术对生活方式的改变
- 医院招聘面试题目及参考答案
- 神经外科护士进修汇报:专业提升与实践应用
- 重庆导游基础知识课件
- 建筑工地基孔肯雅热防控和应急方案
- 人教版三年级数学下册第五单元《面积》-长方形和正方形面积专项练习卷含答案
- 铜仁公积金提取管理办法
评论
0/150
提交评论