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Product Specification Customer Model Name Description Date 2017/1/13 Revision 5.0 S070SWS08HT-DC19 7.0" TFT LCD Module 1024(RGB)x600 Dots FT5306DE4 Solution Engineering Check Date Prepared Date Borger 2017/1/13 Jack Guo 2017/1/13 Customer Approval Date Page1 of 24

Table of Contents 1. Record of Revision...3 2 General Specifications...4 3 Input/Output Terminals... 5 4 Absolute Maximum Ratings...7 5 Electrical Characteristics...7 6 Capacitive touch panel...13 7 OpticalCharacteristics... 17 8 Reliability Tests...21 9 Mechanical Drawing... 22 10.Packing... 23 11.Precautions For Use of LCD modules...24 Page2 of 24

1. Record of Revision Rev Issued Date Description Editor 1.0 2015/3/3 First Release. Rich liang 2.0 2016/6/30 Update LCD Gary guo 3.0 2016/8/30 Update LED&Increase CTP Jack Guo 4.0 2016/9/13 Update P/N Jack Guo 5.0 2017/1/13 Update Mechanical Drawing. Jack Guo Page3 of 24

2 General Specifications Characteristics Mechanical Feature Spec Size 7 inch Resolution 1024(Horizontal)*600(Vertical) Interface LVDS Connect type Connector Color Depth 262K Technology type a-si Display Spec. Pixel pitch (mm) 0.05 x 0.15 Pixel Configuration R.G.B. Vertical Stripe Display Mode Normally White Driver IC NT52002+NT51008 Surface Treatment HC Viewing Direction 12 O clock LCM (W x H x D) (mm) 165.25*104.89*4.63 Active Area(mm) 153.6 x 90 With /Without TSP With CTP Weight (g) TBD LED Numbers 27 LEDs Note : Requirements on Environmental Protection: RoHS compliant. Page4 of 24

3.Input/Output Terminals 3.1 Module interface description No. Symbol Description 1 VCOM Common Voltage 2 VDD Power Voltage for digital circuit 3 VDD Power Voltage for digital circuit 4 NC No connection 5 RESET Global reset pin 6 STBYB Standby mode Normally pulled high STBYB=1,normal operation STBYB=0,timing contrller,source Driver will turn off,all output are High-Z 7 GND Ground 8 RXIN0- -LVDS differential data input 9 RXIN0+ +LVDS differential data input 10 GND Ground 11 RXIN1- -LVDS differential data input 12 RXIN1+ +LVDS differential data input 13 GND Ground 14 RXIN2- -LVDS differential data input 15 RXIN2+ +LVDS differential data input 16 GND Ground 17 RXCLKIN- -LVDS differential clock input 18 RXCLKIN+ +LVDS differential clock input 19 GND Ground 20 RXIN3- -LVDS differential data input 21 RXIN3+ -LVDS differential data input 22 GND Ground 23 NC No connection 24 NC No connection 25 GND Ground 26 NC No connection 27 DIMO Backlight CABC controller signal output 28 SELB 6bit/8bit mode select (Note 1) 29 AVDD Power for Analog Circuit 30 GND Ground 31 LED- LED Cathode 32 LED- LED Cathode Page5 of 24

33 L/R Horizontal inversion (Note 3) 34 U/D Vertical inversion (Note 3) 35 VGL Gate off Voltage 36 CABCEN1 CABC H/W enable (Note 2) 37 CABCEN0 CABC H/W enable (Note 2) 38 VGH Gate ON Voltage 39 LED+ LED Anode 40 LED+ LED Anode Note 1: if LVDS input data is 6bit,selb must be set to high; if LVDS input data is 8bit,selb must be set to low; Note 2:When CABC_EN=00,CABC OFF. When CABC_EN=01,user interface image. When CABC_EN=10,still picture. When CABC_EN=11,moving image When CABC off,don t connect DIMO,else connect it to backlight Note 3: when L/R=0 set right to left scan direction when L/R=1 set left to right scan direction when U/D=0 set top to bottom scan direction when U/D=1 set bottom to top scan direction 3.2 CTP interface description Pin Signal Description 1 GND Ground 2 VDD Power supply 3 SDA I2C data input and output 4 SCL I2C clock input 5 RST Reset Pin for CTP 6 INT Interrupt request to the host 7 TEST Test Pin for CTP 8 VSS Ground Page6 of 24

4 Absolute Maximum Ratings 5 Electrical Characteristics 5.1.1Driving TFT LCD Panel Page7 of 24 Ta = 25 C

5.1.2 Current Consumption Page8 of 24

5.2 Power Seqence Page9 of 24

5.3 Timing Characteristics Page10 of 24

Page11 of 24

5.4 Driving Backlight Item Symbol MIN TYP MAX Unit Remark Forward Current IF - 180 - ma Forward Voltage VF 9.3 9.6 9.9 V Backlight Power consumption WBL - 1.726 - W LED Life Time 25000 - - Hrs Note 1: Each LED : IF =20 ma, VF =3.2V. Note 2: Optical performance should be evaluated at Ta=25 only. Note 3: If LED is driven by high current, high ambient temperature & humidity condition. The life time of LED will be reduced.operating life means brightness goes down to 50% initial brightness. Typical operating life time is estimated data. K A 27LEDs Backlight Circuit diagram Page12 of 24

6. Capacitive touch panel characteristics 6.1 Panel touch characteristics (Ta=25 ) FPC Design Item Description Note IC solution on TP Model FT5306DE4 Touch Count Max 5 point Display Resolution 1024*600 Interface Type I2C I2C Slave Address 0X70 Origin of Coordinate Top left corner COF Power supply 2.8-3.3V Transmittance 85% Hard Coating 6H Operation environment -20 ºC~+70 ºC, 90%RH Storage environment -30 ºC~+80 ºC, 90%RH Structure Cover GLASS (AGC) + LOCA+ ITO GLASS + FPC (COF) 6.2.1 I2C Communication Page13 of 24

Page14 of 24

6.2.2 ELECTRICAL SPECIFICATIONS Page15 of 24

Page16 of 24

7. Optical Characteristics 7.1 Module Test Characteristics Items Symbol Condition Min. Typ. Max. Unit Remark θt 40 50 - Viewing angles θb Center 60 70 - Degree θl CR 10 60 70 -. Note2 θr 60 70 - Contrast Ratio CR Θ =0 500 700 - - Note1, Note3 Response Time TON - 10 20 Note1, 25 C ms TOFF - 15 30 Note4 White XW 0.309 - YW 0.327 - XR 0.649 - Red YR -0.015 0.331 +0.015 - Note1, Chromaticity Gree XG 0.288 - Note5 n YG 0.585 - Blue XB 0.140 - YB 0.089 - Uniformity U - 70 - % Note1, Note6 Luminance L - 380 Note1, Note7 Test Conditions: 1. IF= 20mA(one channel),the ambient temperature is 25 2. The test systems refer to Note 1 and Note 2. Note 1:Definition of optical measurement system. The optical characteristics should be measured in dark room. After 5 minutes operation, the optical properties are measured at the center point of the LCD screen. All input terminals LCD panel must be ground when measuring the center area of the panel. Page17 of 24

Note 2: Definition of viewing angle range and measurement system. viewing angle is measured at the center point of the LCD by CONOSCOPE(ergo-80). Note 3: Definition of contrast ratio Page18 of 24

White state :The state is that the LCD should driven by Vwhite. Black state : The state is that the LCD should driven by Vblack. Vwhite: To be determined Vblack: To be determined. Note 4: Definition of Response time The response time is defined as the LCD optical switching time interval between White state and Black state. Rise time (TON) is the time between photo detector output intensity changed from 90% to 10%. And fall time (TOFF) is the time between photo detector output intensity changed from 10% to 90%. Note 5: Definition of color chromaticity (CIE1931) Color coordinates measured at center point of LCD. Note 6: Definition of Luminance Uniformity Active area is divided into 9 measuring areas (Refer Fig. 2). Every measuring point is placed at the center of each measuring area. Luminance Uniformity(U) = Lmin/ Lmax x100% L-------Active area length W----- Active area width Page19 of 24

Fig. 2 Definition of uniformity Lmax: The measured maximum luminance of all measurement position. Lmin: The measured minimum luminance of all measurement position. Note 7: Definition of Luminance : Measure the luminance of white state at center point. Page20 of 24

8.Reliability Tests No Test Item Condition Remarks 1 2 3 4 5 6 7 8 High Temperature Operation Low Temperature Operation High Temperature Storage Low Temperature Storage High Temperature & Humidity Storage Thermal Shock (Non-operation) Electro Discharge (Operation) Vibration (Non-operation) Static 9 Shock (Non-operation) 10 Package Drop Test +70, 96hrs -20, 96hrs +80, 120hrs -30, 120hrs +40, 90% RH max, 120 hours -30 30 min ~ +70 30 min Change time: 5min, 100 Cycle C=150pF, R=330 Ω, 5 points/panel Air:±8KV, 5 times; Contact: ±4KV, 5 times; (Environment: 15 ~ 35, 30% ~ 60%, 86Kpa ~ 106Kpa) Frequency range: 10~55Hz, Stroke: 1.mm Sweep: 10Hz~55Hz~10Hz 2 hours for each direction of X.Y. Z. (package condition) 60G 6ms, ± X, ±Y, ± Z 3 times for each direction Height: 80 cm, 1 corner, 3 edges, 6 surfaces Note 1 IEC60068-2-2, GB2423. 2-89 Note 2 IEC60068-2-1 GB2423.1-89 IEC60068-2-2 GB2423. 2-89 IEC60068-2-1 GB/T2423.1-89 IEC60068-2-3 GB/T2423.3-2006 Start with cold temperature,end with high temperature IEC60068-2-14, GB2423.22-87 IEC61000-4-2 GB/T17626.2-1998 IEC60068-2-6 GB/T2423.5-1995 IEC60068-2-27 GB/T2423.5-1995 IEC60068-2-32 GB/T2423.8-1995 Note: The sample size for each test 5pcs. Page21 of 24

K A 1 8 A K 1 2 3 4 5 6 7 8 9 9 Mechanical Drawing 27LEDs Backlight Circuit diagram *104.89±0.2 LCM&Cover Lens 97.2±0.2 Sensor Glass 1.78 90.8(TP VA) 3.82 35.69±0.3 90 (AA) 4.22 LCM NOTES: 1. DISPLAY TYPE: 7.0 INCH TFT /TRANSMISSIVE 2. BACKLIGHT: 27 CHIP WHITE LED, 3S9P IF =9.6±0.6V;IV =180mA 3. OPERATING TEMP: -20 C~+70 C 4. STORAGE TEMP: -30 c~+80 c 7. Capacitive Touch Panel IC:FT5306DE4(COF) (Channels 20*12).Support touch: 5 points; 6.Luminance:380cd/m2(TYP) 7. "( )"reference dimension."*"critical dimension 8. RoHS Compliant 1.0 2014/12/04 First issue REV. DATE MODIFICATION 4.0 2016.09.13 Update P/N 3.0 2016.08.03 更新背光 LED 及测试条件为 :27LEDpcs/180MA 2.0 2015/12/11 Update format DETAIL"A" 39.97±0.3 67.56±0.3 3.5 0.3 1 40 STIFFENER COMPONENT SIDE P0.5*(40-1)=19.5±0.2 0.3±0.05 0.3±0.05(FPC+PI) 8 1 6 6 45.23±0.3 4.1 19 COATING MATERIAL conponent area 7.53 20.2 1.5 MAX (conponent area) single layer area 7'.0 TFT 1024*(RGB)*600 81.43 49.22 Resolution1024(RGB)X600 153.6 (AA) 7.03 *4.63±0.2 LCM 154(VA AA) 6.83 162±0.2Sensor Glass 2.29 *165.25±0.2 LCM&Cover Lens Label S070SWS08HT-DC19 YYYYMMDD VIEWING Gray PROJECTION 3rd ANGLE UNIT SCALE mm 1:1 6 O'clock CHKD Li Huang 2016.09.13 TOLERANCE UNLESS SPECIFIED ±0.2 12 O'clock DWN REV. SHEET OF Li Huang 2016.09.13 4.0 1/1 FPC Connector File NO: PART NO. (FH12-40S-0.5SH) CDT-DWG-S070SWS08HT-DC19 S070SWS08HT-DC19 CDTECH RGB Interface Pin Pin Name 1 GND 2 VDD 3 SDA 4 SCL 5 /RST 6 INT 7 TEST 8 VSS 40 LED+ 39 LED+ 38 VGH 37 CABCEN0 36 CABCEN1 35 VGL 34 U/D 33 L/R 32 31 RXIN0- LED- LED- 30 GND 29 AVDD 28 SELB 27 DIMO 26 NC 25 GND 5 3.5 24 NC 20.5±0.2 23 NC 22 GND white silk line 21 RXIN3+ 20 7.8 single layer area "A" 19 GND 18 RXCLKIN+ Ground 17 5.3 0.5 A K stiffener COMPONENT AREA H=1.2MAX 16 GND 15 RXIN2+ 14 13 GND 12 RXIN1+ 11 10 GND RXIN0+ RXIN3- RXCLKIN- RXIN1- RXIN2- GND STBYB RESET NC VDD VDD VCOM PIN NAME Page22 of 24

10 Packing Packing Method 1. Put module into tray cavity: 2. Tray stacking 3. Put 1 cardboard under the tray stack and 1 cardboard above: 4. Fix the cardboard to the tray stack with adhesive tape: 5. Put the tray stack into carton. 6. Carton sealing with adhesive tape. Page23 of 24

11. Precautions For Use of LCD modules 10.1 Handling Precautions 10.1.1. The display panel is made of glass. Do not subject it to a mechanical shock by dropping it from a high place, etc. 10.1.2. If the display panel is damaged and the liquid crystal substance inside it leaks out, be sure not to get any in your mouth, if the substance comes into contact with your skin or clothes, promptly wash it off using soap and water. 10.1.3. Do not apply excessive force to the display surface or the adjoining areas since this may cause the color tone to vary. 10.1.4. The polarizer covering the display surface of the LCD module is soft and easily scratched. Handle this polarizer carefully. 10.1.5. If the display surface is contaminated, breathe on the surface and gently wipe it with a soft dry cloth. If still not completely clear, moisten cloth with one of the following solvents: - Isopropyl alcohol - Ethyl alcohol Solvents other than those mentioned above may damage the polarizer. Especially, do not use the following: - Water - Ketone - Aromatic solvents 10.1.6. Do not attempt to disassemble the LCD Module. 10.1.7. If the logic circuit power is off, do not apply the input signals. 10.1.8. To prevent destruction of the elements by static electricity, be careful to maintain an optimum work environment. 10.1.8.1. Be sure to ground the body when handling the LCD Modules. 10.1.8.2. Tools required for assembly, such as soldering irons, must be properly ground. 10.1.8.3. To reduce the amount of static electricity generated, do not conduct assembly and other work under dry conditions. 10.1.8.4. The LCD Module is coated with a film to protect the display surface. Be care when peeling off this protective film since static electricity may be generated. 10.2 Storage Precautions 10.2.1. When storing the LCD modules, avoid exposure to direct sunlight or to the light of fluorescent lamps. 10.2.2. The LCD modules should be stored under the storage temperature range If the LCD modules will be stored for a long time, the recommend condition is: Temperature : 0 ~ 40 Relatively humidity: 80% 10.2.3. The LCD modules should be stored in the room without acid, alkali and harmful gas. 10.3 Transportation Precautions The LCD modules should be no falling and violent shocking during transportation, and also should avoid excessive press, water, damp and sunshine. Page24 of 24