AMP DISPLAY INC. CUSTOMER CUSTOMER PART NO. AMP PART NO. APPROVED BY DATE

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AMP DISPLAY INC. SPECIFICATIONS CUSTOMER CUSTOMER PART NO. AMP PART NO. AM7201280ETZQW-00H APPROVED BY DATE Approved For Specifications Approved For Specifications & Sample AMP DISPLAY INC 9856 SIXTH STREET RANCHO CUCAMONGA CA TEL: 909-980-1310 FAX: 909-980-1419 WWW.AMPDISPLAY.COM APPROVED BY ~ CHECKED BY 91730 ORGANIZED BY

RECORD OF REVISION Revision Date Page Contents Editor 2015/8/03 - New Release Lawlite Date : 2015/8/03 AMPIRE CO., LTD. 2

1. PHYSICAL SPECIFICATIONS Item Specifications Remark LCD size Driver element Display resolution 4.99 inch(diagonal) a-si TFT active matrix 720 (W) 3(RGB) x 1280(H) dots Pixel Configuration 16.7M Pixel pitch Active area Module size Color arrangement LED Numbers Weight (g) Driver IC 0.08625 (W) x0.08625 (H) mm 62.1 (W) x 110.4 (H) mm 65.4 (W) x 118.9 (H) 1.45 (D) mm R.G.B-stripe 12 LED TBD ILI9881C Note 1: Requirements on Environmental Protection: Q/S0002 Note 2: LCM weight tolerance: ± 5% Date : 2015/8/03 AMPIRE CO., LTD. 3

2. ABSOLUTE MAXIMUM RATINGS GND=0V, Ta = 25 Item Symbol MIN MAX Unit Remark Logic Supply Voltage VDDI -0.3 3.3 V Power Supply Voltage VDD+ -0.3 6.5 V VDD- 0.3-6.5 V Logic Low Level Input voltage Logic High Level Input voltage VIL -0.3 IOVCC*0.3 V VIH IOVCC*0.3 IOVCC Back Light Forward Current ILED - 25 ma For Each LED Operating Temperature TOPR -20 70 Storage Temperature TSTG -30 80 Date : 2015/8/03 AMPIRE CO., LTD. 4

3. ELECTRICAL SPECIFICATIONS Item Symbol MIN TYP MAX Unit Remark Logic Supply Voltage IOVCC 1.75 1.8 3.3 V Power Supply Voltage VDD+(VSP) 4.5 5.0 6.0 V VDD-(VSN) -6.0-5.0-4.5 Input Signal Voltage Output Signal Voltage Low Level High Level Low Level High Level VIL GND -- 0.3*VDDI V VIH 0.7* VDDI -- VDDI V VOL GND -- 0.2* VDDI V VOH 0.8* VDDI -- VDDI V Date : 2015/8/03 AMPIRE CO., LTD. 5

4 Timing Characteristics 4.1 Reset timing characteristics Reset input timing Symb ol Parameter t RESW *1)Reset low Pulse width t REST *2)Reset complete time Related Pins MIN TY P MA X Note Uni t RESX 10 - - - μs - - - 5 - - 120 When reset applied during Sleep in mode When reset applied during Sleep out mode ms ms Note 1. Spike due to an electrostatic on RESX line does not cause irregular system reset according to the table below. RESX Pulse Action Shorter than 5μs Reset Rejected Longer than 10μs Reset Reset starts Between 5μs and 10μs (It depends on voltage and temperature condition) Note 2. During the resetting period, the display will be blanked (The display is entering blanking sequence, which maximum time is 120 ms, when Reset Starts in Sleep Out mode. The display remains the blank state in Sleep In mode) and then return to Default condition for H/W reset. Note 3. During Reset Complete Time, ID1/ID2/ID3/ID4 and VCOM value in OTP will be latched to internal register during this period. This loading is done every time when there is H/W reset complete time (t REST ) within 5ms after arising edge of RESX. Date : 2015/8/03 AMPIRE CO., LTD. 6

Note 4. Spike Rejection also applies during a valid reset pulse as shown below: Note 5. It is necessary to wait 5msec after releasing RESX before sending commands. Also Sleep Out command cannot be sent for 120msec. Date : 2015/8/03 AMPIRE CO., LTD. 7

4.2 High Speed Mode Parameter Symbol Parameter Specification MIN TYP MAX Unit High Speed mode DSI-CLK+/- 2xUI INST Double UI instantaneous 4-25 ns DSI-CLK+/- UI INSTA, UI INSS UI instantaneous Halfs 2-12.5 ns DSI-Dn+/- t DS Data to clock setup time 0.15 - - UI DSI-Dn+/- t DH Data to clock hole time 0.15 - - UI DSI-CLK+/- t DRTCLK Differential rise time for clock 150-0.31UI ps DSI-Dn+/- t DRTDATA Differential rise time for data 150-0.31UI ps DSI-CLK+/- t DFTCLK Differential fall time for clock 150-0.31UI ps DSI-Dn+/- t DFTDATA Differential fall time for data 150-0.31UI ps AC characteristics for MIPI-DSI High speed mode Date : 2015/8/03 AMPIRE CO., LTD. 8

4.3 Low Speed Mode Parameter Symbol Parameter Low Power mode DSI-D0+/- T LPXM LP-10 or LP-11 periods Length of LP-00, LP-01, MPU Display Module DSI-D0+/- T LPXD LP-10 or LP-11 periods Length of LP-00, LP-01, Display Module MPU DSI-D0+/- T TA.SURED Time-out before the MPU Start driving DSI-D0+/- T TA.GETD Time to drive LP-00 by Display module DSI-D0+/- T TA.GOD Time to drive LP-00 after Turnaround request-mpu DSI-D0+/- Ratio T LPX Ratio of T LPXM / T LPXD between MCU and display module Specification MIN TYP MAX Unit 50 - - ns 58 - - ns T LPXD - 2X T LPXD ns 5X T LPXD - - ns 4X T LPXD - - ns 2/3-3/2 BTA from the MCU to the Display Module BTA from the Display Module to the MCU Date : 2015/8/03 AMPIRE CO., LTD. 9

4.4 Bursts Parameter Symbol Parameter Hight Speed Data Transmission Bursts Length of any low-power state DSI-Dn+/- T LPX period Time to drive LP-00 to prepare for DSI-Dn+/- T HS.PREPARE DSI-Dn+/- HS transmission T HS.PREPARE T HS.PREPARE + time to drive HS-0 + T HS.ZERO before the sync sequence DSI-Dn+/- T D.TERM.EN receiver line termination measured from when Dn crosses Time to enable Data Lane V IL(max) DSI-Dn+/- T HS.SKIP Time-out at RX to ignore transition period of EoT DSI-Dn+/- T HS.TRAIL state after last payload data bit of Time to drive flipped differential a HS transmission burst DSI-Dn+/- T HS.EXIT Time to drive LP-11 after HS burst DSI-Dn+/- T EoT Time from start of T HS-TRAIL period to start of LP-11 state Specification MIN TYP MAX Unit 50 - - ns 40ns+ 85ns+ - 4UI 6UI ns 145ns+ 10UI - - ns Time for Dn to 35ns+ - reach 4UI ns V TERM.EN 40 - max(8ui,60ns+ 4UI) 55ns+ 4UI ns - - ns 100 - - ns - - 105ns +12UI ns High Speed Data Transmission Bursts Date : 2015/8/03 AMPIRE CO., LTD. 10

DSI-CLK+/- T CLK-POST DSI-CLK+/- T CLK-PRE Parameter Symbol Parameter Specification MIN TYP MAX Unit Switching the clock Lance between clock Trans mission and Low Power Mode continue sending HS clock after 60ns the last associated Data Lane +52UI - - ns Time that the transmitter shall has transitioned to LP mode driven prior to any associated Data Lane beginning the 8 - - UI Time that the HS clock shall be transition from LP to HS mode DSI-CLK+/- T CLK.PREPAR Time to drive LP-00 to prepare 38-95 ns DSI-CLK+/- DSI-CLK+/- E T CLK.TERM.E N T CLK.PREPAR E +T CLK.ZERO for HS clock transmission Time to enable Clock Lane receiver line termination measured from when Dn crosses V IL(max) T CLK.PREPARE + time for lead HS-0 drive period before starting Clock DSI-CLK+/- T CLK.TRAIL state after last payload clock bit Time to drive HS differential of a HS transmission burst DSI-CLK+/- T EoT Time from start of T CLK.TRAIL period to start of LP-11 state Time for Dn to reach - 38 ns V TERM.EN 300 - - ns 60 - - ns - - 105ns +12UI ns Switching the clock Lane between clock Transmission and Low Power Mode Date : 2015/8/03 AMPIRE CO., LTD. 11

4.5 LP-11 between High Speed and Low Power Modes D SI-D0 High Speed or Low Power modes are starting or finishing from/to Stop State (SS, LP-11) when 4 different combinations, what are listed below, are possible: 1. High Speed Mode => Stop State (SS, LP-11) => High Speed Mode 2. High Speed Mode => Stop State (SS, LP-11) => Low Speed Mode 3. Low Speed Mode => Stop State (SS, LP-11) => High Speed Mode 4. Low Speed Mode => Stop State (SS, LP-11) => Low Speed Mode The Low Power Mode is also including 2 different functions: 1. Escape 2. Bus Turnaround (BTA) Stop State (SS, LP-11) Timings from previous mode to Next mode Next Escape mode HSDT BTA Previous Min Max Min Max Min Max Escape mode 100ns - 100ns - 100ns - HSDT 60ns+ 52UI - 60ns+ 52UI - 60ns+ 52UI - BTA 100ns - 100ns - 100ns - Date : 2015/8/03 AMPIRE CO., LTD. 12

4.6 POWER ON/OFF SEQUENCE VDDI and VDDA can be applied (or powered down) in any order. During the power off sequences, if LCD is in the Sleep Out mode, VDDA and VDDI must be powered down with minimum 120msec, and if LCD is in the Sleep In mode, VDDA and VDDI can be powered down with minimum 0msec after RESX has been released. CSX can be applied at any timing or can be permanently grounded. RESX has priority over CSX. Note: 1. There will be no damage to ILI19806C if the power sequences are not met. 2. There will be no abnormal visible effects on the display panel during the Power On/Off Sequences. 3. There will be no abnormal visible effects on the display between end of Power On Sequence and before receiving Sleep Out command. Also between receiving Sleep In command and Power Off Sequence. 4. If RESX line is not held stable by host during Power On Sequence as defined in Sections 13.1 and 13.2, then it will be necessary to apply a Hardware Reset (RESX) after Host Power On Sequence is complete to ensure correct operation. Otherwise function is not guaranteed. 5. Keep data pins DB[23:0] at low level, when VDDB or VDDI comes later Date : 2015/8/03 AMPIRE CO., LTD. 13

5 Input/Output Terminals Pin No. Symbol I/O Function 1 GND p Power ground 2 LEDK2 P Cathode for LED backlighting 3 LEDK1 p Cathode for LED backlighting 4 LEDA P Anode for LED backlighting 5 GND p Power ground 6 CABC P CABC function enable 7 GND P Power ground 8 TE I/O 9 ID_GPIO(GND) I ID 10 RESET I Reset pin 11 ID_ADC I ID 12 IOVCC(1.8V) P 1.8V 13 GND P Power ground 14 VDD(+5V) P +5V 15 GND P Power ground 16 VDD(-5V) P -5V 17 GND P Power ground 18 OTP I/O NC 19 GND P Power ground 20 LAN3_P I MIPI data input 21 LAN3_N I MIPI data input 22 GND P Power ground Date : 2015/8/03 AMPIRE CO., LTD. 14

23 LAN2_P I MIPI data input 24 LAN2_N I MIPI data input 25 GND P Power ground 26 CLK_P I MIPI CLK input 27 CLK_N I MIPI CLK input 28 GND P Power ground 29 LAN1_P I MIPI data input 30 LAN1_N I MIPI data input 31 GND P Power ground 32 LAN0_P I MIPI data input 33 LAN0_N I MIPI data input 34 GND P Power ground Note1:Please add the FPC connector type and matched one if necessary. Date : 2015/8/03 AMPIRE CO., LTD. 15

6 Optical Characteristics Item Symbol Condition Min Typ Max Unit Remark θt 80 View Angles θb 80 CR 10 θl 80 Degree Note2,3 θr 80 Contrast Ratio CR θ=0 o 600 800 Note 3 Response Time T ON T OFF 25-35 ms Note 4 White x 0.26 0.29 0.32 y 0.28 0.30 0.34 Note 1,5 Chromaticity Red x 0.571 0.621 0.671 y Backlight is 0.271 0.321 0.371 Note 1,5 Green x on 0.261 0.311 0.361 y 0.579 0.629 0.679 Note 1,5 Blue x 0.105 0.155 0.205 y 0.002 0.052 0.102 Note 1,5 Uniformity U 70 80 % Note 6 NTSC 70 % Note 5 Luminance L 400 430 cd/m 2 Note 7 Test Conditions: 1. IF= 20mA, and the ambient temperature is 25. 2. The test systems refer to Note 1 and Note 2. Date : 2015/8/03 AMPIRE CO., LTD. 16

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. Item Photo detector Field Contrast Ratio Luminance Chromaticity Lum Uniformity Response Time SR-3A BM-7A 1 2 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 White state : The state is that the LCD should drive by Vwhite. Black state : The state is that the LCD should drive by Vblack. Date : 2015/8/03 AMPIRE CO., LTD. 17

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 L-------Active area length W----- Active area width 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 avg of 9 point. Date : 2015/8/03 AMPIRE CO., LTD. 18

7 Environmental / Reliability Test No Test Item Test condition Remark 1 High Temperature Storage 70 ±2 96Hrs 2 Low Temperature Storage -30 ±2 96Hrs 3 High Temperature Operation 60 ±2 96Hrs 4 Low Temperature Operation -20 ±2 96Hrs 5 High Temperature & Humidity Storage 60 ±2 90%RH 96Hrs 6 Temperature Cycle - 30 70 30min 30min after 32cycle, change time 30s Restore 2H at 25 7 Vibration Test 8 Shock Test 9 Drop Test(package state) 10 ESD Sensitivity test Power off Frequency:10Hz~55Hz Stroke:1.5mm Sweep:10Hz~55Hz~10Hz, 120min ±x,±y,±z for each direction Half-sine wave,600m/s2,6ms ±x,±y,±z 3 times,for each direction 800mm, concrete floor,1corner, 3edges, 6 sides each time 5points/panel Contact ±4KV,150PF/330, 5times Air ±8KV,150PF/330,5times 1Carton-box - 1Carton-box NOTE: 1.Sample size for each test item is 5~10pcs. 2.For Damp Proof Test, Pure water(resistance>10mω) should be used. 3.In case of malfunction defect caused by ESD damage, if it would be recovered to normal state after resetting, it would be judge as a good part. Using ionizer(an antistatic blower) - Date : 2015/8/03 AMPIRE CO., LTD. 19

is recommended at working area in order to reduce electro-static voltage. When removing protection film from LCM panel, peel off the tag slowly( recommended more than one second) while blowing with ionizer toward the peeling face to minimize ESD which may damage electrical circuit. 4. EL evaluation should be excepted from reliability test with humidity and temperature: Some defects such as black spot/blemish can happen by natural chemical reaction with humidity and Fluorescence EL has. 5. Polarizer test criteria a. when testing avoid samples take out then return, It can cause water coagulation in Polarizer. Increase the distance of samples, And put samples before the wind. b. When the samples are put into the test, put them upright so that the glasses keep spaces between them each other. ( Picture 9.1) Picture 9.1 Picture 9.2 c. Put samples into testing machine as small as possible so that it is drafty. d. Do not put samples under wick because water will fall.( Picture 9.2) e. Do not open testing machine except for taking them out in order to prevent moisture condensation. 6. Please use automatic switch menu(or roll menu) testing mode when test operating mode 7. The inspection terms after reliability test, as below Date : 2015/8/03 AMPIRE CO., LTD. 20

8. OUTLINE DIMENSION Date : 2015/8/03 AMPIRE CO., LTD. 21