02101300-01-02
EXAMINED BY: FILE NO. CAS-0008309
EMERGING DISPLAY ISSUE :JUL.01, 2016
APPROVED BY:
TECHNOLOGIES CORPORATION TOTAL PAGE:30
VERSION:1
CUSTOMER ACCEPTANCE SPECIFICATIONS
MODEL NO. :
FOR MESSRS :
E T M L 2 1 5 0 0 0 D H A (RoHS)
CUSTOMER'S APPROVAL DATE: _____________________________
BY: _____________________________
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02101300-01-02
E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 0-1 DOC. FIRST ISSUE
R E C O R D S OF R E V I S I O N JUL.01, 2016
D A T E
REVISED PAGE NO.
S U M M A R Y
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 0-2
T A B L E O F C O N T E N T S NO. I T E M PAGE ===============================================================
1. GENERAL SPECIFICATIONS -------------------------------------------- 1
2. MECHANICAL SPECIFICATIONS --------------------------------------- 1
3. ABSOLUTE MAXIMUM RATINGS ------------------------------------- 2
4. ELECTRICAL CHARACTERISTICS ------------------------------------- 3 ~ 6
5. TIMING CHARACTERISTICS ------------------------------------------- 6 ~ 9
6. OPTICAL CHARACTERISTICS ----------------------------------------- 10 ~ 12
7. OUTLINE DIMENSIONS -------------------------------------------------- 13
8. BLOCK DIAGRAM -------------------------------------------------------- 14
9. DETAIL DRAWING OF DOT MATRIX ----------------------------------------- 15
10. INTERFACE SIGNALS --------------------------------------------------- 16 ~ 18
11. CAPACITIVE TOUCH PANEL SPECIFICATION ------------------------- 19
12. INSPECTION CRITERION ------------------------------------------------ 20 ~ 27
13. GENERAL RELIABILITY ASSURANCE --------------------------------- 28
14. TESTING CONDITIONS AND INSPECTION CRITERIA ---------------- 29
15. OPERATION -------------------------------------------------------------- 29
16. NOTICE ------------------------------------------------------------------- 30
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 1
1. GENERAL SPECIFICATIONS
1.1 DATA SHEETS FOR CAPACITIVE TOUCH PANEL CONTROLLER/DRIVER PLEASE REFER TO:
SIS 9279
1.2 MATERIAL SAFETY DESCRIPTION ASSEMBLIES SHALL COMPLY WITH EUROPEAN ROHS REQUIREMENTS, INCLUDING PROHIBITED MATERIALS/COMPONENTS CONTAINING LEAD, MERCURY, CADMIUM, HEXAVALENT CHROMIUM, POLYBROMINATED BIPHENYLS (PBB) AND POLYBROMINATED DIPHENYL ETHERS (PBDE)
2. MECHANICAL SPECIFICATIONS
2.1 TFT LCD MODULE MECHANICAL SPECIFICATIONS
( 1 ) DISPLAY SIZE ---------------------------------- 21.5 inch
( 2 ) NUMBER OF DOTS ----------------------------- 1920W * (RGB) * 1080H DOTS
( 3 ) MODULE SIZE ---------------------------------- 496.6W * 304.8H *11.5D mm
(WITHOUT PCB & PROTECT FILM)
( 4 ) VIEWING AREA --------------------------------- 479.64W * 271.11H mm
( 5 ) ACTIVE AREA ---------------------------------- 476.064W * 267.786H mm
( 6 ) PIXEL SIZE -------------------------------------- 0.24795W * 0.24795H mm
( 7 ) LCD TYPE --------------------------------------- TFT, TRANSMISSIVE, NORMALLY BLACK
( 8 ) COLOR ------------------------------------------- 16.7M
( 9 ) VIEWING DIRECTION ------------------------- SUPER WIDE VIEW
( 10 ) BACK LIGHT ------------------------------------ LED , COLOR : WHITE
( 11 ) INTERFACE MODE ----------------------------- LVDS
2.2 CAPACITIVE TOUCH PANEL MECHANICAL SPECIFICATIONS
( 1 ) TOUCH PANEL SIZE ----------------------------- 21.5 inch
( 2 ) OUTER DIMENSION ----------------------------- 496.6W * 304.8H * 2.8D mm
(WITHOUT FPC & PCB)
( 3 ) EFFECTIVE AREA ------------------------------- 479.64W * 271.11H mm
( 4 ) ACTIVE AREA ---------------------------------- 479.64W * 271.11H mm
( 5 ) INPUT TYPE -------------------------------------- MULTI TOUCH
( 6 ) NUMBER OF TOUCH SENSOR ------------------ 78 * 45 SENSORS
( 7 ) INTERFACE MODE ----------------------------- USB
( 8 ) RESOLUTION ------------------------------------ 1920 * 1080
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 2
3. ABSOLUTE MAXIMUM RATINGS
3.1 TFT LCD MODULE ELECTRICAL ABSOLUTE MAXIMUM RATINGS
PARAMETER SYMBOL MIN. MAX. UNIT REMARK
POWER SUPPLY VOLTAGE VCC -0.3 6.0 V NOTE ( 1 )
LOGIC INPUT VOLTAGE VIN -0.3 3.6 V NOTE ( 1 )
3.2 BACKLIGHT UNIT
PARAMETER SYMBOL MIN. TYP. MAX. UNIT REMARK
LED FORWARD CURRENT PER INPUT PIN
IF 80 85 mA NOTE ( 1 ), ( 2 )
DUTY=100%
LED PULSE FORWARD CURRENT PER INPUT PIN
IP 500 mA NOTE ( 1 ), ( 2 )
PULSE WIDTH≤10ms.AND DUTY≤25%
NOTE ( 1 ):PERMANENT DAMAGE TO THE DEVICE MAY OCCUR IF MAXIMUM VALUES ARE EXCEEDED. FUNCTION OPERATION SHOULD BE RESTRICTED TO THE CONDITIONSDESCRIBED UNDER NORMAL OPERATING CONDITIONS.
NOTE ( 2 ):SPECIFIED VALUES ARE FOR INPUT PIN OF LED LIGHT BAR AT Ta=25±2 C.
3.3 CAPACITIVE TOUCH PANEL ELECTRICAL ABSOLUTE MAXIMUM RATINGS
PARAMETER SYMBOL MIN. MAX. UNIT REMARK
POWER SUPPLY FOR DRIVER VDD -0.3 5.5 V
3.4 ENVIRONMENTAL ABSOLUTE MAXIMUM RATINGS
ITEM
OPERATING STORAGE REMARK
MIN. MAX. MIN. MAX. AMBIENT TEMPERATURE 0C 50 C - 20 C 60 C NOTE ( 1 )
HUMIDITY NOTE ( 2 ) NOTE ( 2 ) WITHOUT CONDENSATION
VIBRATION
2.45 m /s2
( 0.25 G ) 11.76 m /s
2
( 1.2 G )
10~100 Hz XYZ DIRECTIONS 1 Hr. EACH
SHOCK
29.4 m /s2
( 3 G ) 490.0 m /s
2
( 50 G )
10ms XYZ DIRECTIONS 1 TIME EACH
NOTE ( 1 ):a. 90 %RH MAX. b. WET-BULB TEMPERATURE SHOULD BE 39 C MAX. c. NO CONDENSATION.
NOTE ( 2 ):THE TEMPERATURE OF PANEL SURFACE SHOULD BE 0 ºC MIN. AND 60 ºC MAX.
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 3
4. ELECTRICAL CHARACTERISTICS
4.1 TFT LCD MODULE ELECTRICAL CHARACTERISTICS
PARAMETER SYMBOL MIN. TYP. MAX. UNIT NOTE
POWER SUPPLY VOLTAGE VCC 4.5 5.0 5.5 V
RIPPLE VOLTAGE VRP 300 mV RUSH CURRENT IRUSH 3 A ( 2 )
POWER SUPPLY CURRENT WHITE 768 910 mA ( 3 )a
BLACK 720 845 mA ( 3 )b VERTICAL STRIPE 948 1105 mA ( 3 )c
POWER CONSUMPTION PLCD 4.8 5.6 Watt ( 4 )
LVDS INTERFACE
DIFFERENTIAL INPUT VOLTAGE VID 100 600 mV COMMON INPUT VOLTAGE VCM 1.0 1.2 1.4 V DIFFERENTIAL INPUT HIGH
THRESHOLD VOLTAGE VTH +100 mV
DIFFERENTIAL INPUT LOW THRESHOLD VOLTAGE
VTL -100 mV
NOTE ( 1 ):THE AMBIENT TEMPERATURE IS Ta = 25 ± 2 ºC. NOTE ( 2 ):MEASUREMENT CONDITIONS:
Vcc RISING TIME IS 470µs
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NOTE ( 3 ):THE SPECIFIED POWER SUPPLY CURRENT IS UNDER THE CONDITIONS AT Vcc = 5.0 V, Ta = 25 ± 2 ºC, Fr = 75Hz, WHEREAS A POWER DISSIPATION CHECK PATTERN BELOW IS DISPLAYED.
NOTE ( 4 ):THE POWER CONSUMPTION IS SPECIFIED AT THE PATTERN WITH THE MAXIMUM
CURRENT. NOTE ( 5 ):THE LVDS INPUT CHARACTERISTICS ARE AS FOLLOWS:
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4.2 Vcc POWER DIP CONDITION
DIP CONDITION:4.0≤VCC≤4.5, Td≤20ms
4.3 BACKLIGHT UNIT
PARAMETER SYMBOL MIN. TYP. MAX. UNIT NOTE
LED LIGHT BAR INPUT VOLTAGE PER INPUT PIN
VPIN 38.4 42 V ( 1 )
Duty=100%,IPIN=(80mA)
LED LIGHT BAR CURRENT PER INPUT PIN
IPIN 80 85 mA ( 1 ), ( 2 )
Duty=100% LED LIFE TIME LLED 40000 Hrs ( 3 )
POWER CONSUMPTION PBL 12.288 13.056 W ( 1 )
Duty=100%,IPIN=(80mA)
NOTE ( 1 ):LED LIGHT BAR INPUT VOLTAGE AND CURRENT ARE MEASURED BY UTILIZING A TRUE RMS MULTIMETER AS SHOWN BELOW:
NOTE ( 2 ):PBL (TYP) = IPIN(TYP) × VPIN(TYP) × ( 4 ) PBL(MAX) = IPIN(TYP) x VPIN(MAX)x( 4 ) INPUT PINS ,
NOTE ( 3 ):THE LIFETIME OF LED IS DEFINED AS THE TIME WHEN LED PACKAGES CONTINUE TO OPERATE UNDER THE CONDITIONS AT Ta =25 ±2 ºC AND I= (80)mA (PER CHIP) UNTIL THE BRIGHTNESS BECOMES ≤50% OF ITS ORIGINAL VALUE.
NOTE ( 4 ):THE MODULE MUST BE OPERATED WITH CONSTANT DRIVING CURRENT
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4.4 CAPACITIVE TOUCH PANEL ELECTRICAL CHARACTERISTICS Ta=25C
ITEM SYMBOL CONDITION MIN. TYP. MAX. UNIT POWER SUPPLY VDD 4.75 5.0 5.25 V CURRENT CONSUMPTION FOR
OPERATION IVDD VDD-VSS=5.0V 85 128 mA
5. TIMING CHARACTERISTICS
5.1 TIMING TABLE FOR TFT MODULE
THE INPUT SIGNAL TIMING SPECIFICATIONS ARE SHOWN AS THE FOLLOWING TABLE AND TIMING DIAGRAM.
SIGNAL ITEM SYMBOL MIN. TYP. MAX. UNIT REMARK
LVDS CLOCK
FREQUENCY Fc 58.54 74.25 97.98 MHz PERIOD Tc 13.47 ns INPUT CYCLE TO
CYCLE JITTER Trcl -0.02*TC 0.02*TC ns NOTE ( 1 )
INPUT CLOCK TO DATA SKEW
TLVCCS -0.02*TC 0.02*TC NOTE ( 2 )
SPREAD SPECTRUMMODULATION RANGE
Fclkin_ mod 0.97*FC 1.03*FC MHz
NOTE ( 3 )
SPREAD SPECTRUM MODULATION FREQUENCY
FSSM 100 KHz
VERTICAL DISPLAY TERM
FRAME RATE Fr 50 60 75 Hz TOTAL Tv 1115 1125 1136 Th Tv=Tvd+Tvb- ACTIVE DISPLAY Tvd 1080 1080 1080 Th BLANK Tvb Tv-Tvd Tv-Tvd Tv-Tvd Th HORIZONTAL
DISPLAY TERM
TOTAL Th 1050 1100 1150 Tc Th=Thd+Thb ACTIVE DISPLAY Thd 960 960 960 Tc BLANK Thb Th-Thd Th-Thd Th-Thd Tc
NOTE:BECAUSE THIS MODULE IS OPERATED BY DE ONLY MODE, HSYNC AND VSYNC INPUT SIGNALS ARE IGNORED.
INPUT SIGNAL TIMING DIAGRAM
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NOTE ( 1 ):THE INPUT CLOCK CYCLE-TO-CYCLE JITTER IS DEFINED AS BELOW FIGURES. TRCL = T1 – T
NOTE ( 2 ):INPUT CLOCK TO DATA SKEW IS DEFINED AS BELOW FIGURES.
NOTE ( 3 ):THE SSCG (SPREAD SPECTRUM CLOCK GENERATOR) IS DEFINED AS BELOW FIGURES.
NOTE ( 4 ):THE DCLK RANGE AT LAST LINE OF V-BLANK SHOULD BE SET IN 0 TO HDISPLAY/2
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5.2 POWER ON/OFF SEQUENCE THE POWER SEQUENCE SPECIFICATIONS ARE SHOWN AS THE FOLLOWING TABLE AND DIAGRAM.
TIMING SPECIFICATIONS:
PARAMETER MIN. TYP. MAX. UNIT T1 0.5 10 ms
T2 0 30 50 ms T3 450 ms
T4 100 250 ms
T5 0 20 50 ms T6 0.1 100 ms
T7 1000 ms
NOTE ( 1 ):THE SUPPLY VOLTAGE OF THE EXTERNAL SYSTEM FOR THE MODULE INPUT SHOULD BE THE SAME AS THE DEFINITION OF Vcc.
NOTE ( 2 ):WHEN THE BACKLIGHT TURNS ON BEFORE THE LCD OPERATION OF THE LCD TURNS OFF, THE DISPLAY MAY MOMENTARILY BECOME ABNORMAL SCREEN.
NOTE ( 3 ):IN CASE OF VCC = OFF LEVEL, PLEASE KEEP THE LEVEL OF INPUT SIGNALS ON THE LOW OR KEEP A HIGH IMPEDANCE.
NOTE ( 4 ):T7 SHOULD BE MEASURED AFTER THE MODULE HAS BEEN FULLY DISCHARGED BETWEEN POWER OFF AND ON PERIOD.
NOTE ( 5 ):INTERFACE SIGNAL SHALL NOT BE KEPT AT HIGH IMPEDANCE WHEN THE POWER IS ON.
NOTE ( 6 ):INX WON’T TAKE ANY RESPONSIBILITY FOR THE PRODUCTS WHICH ARE DAMAGED BY THE CUSTOMERS NOT FOLLOWING THE POWER SEQUENCE.
NOTE ( 7 ):THERE MIGHT BE SLIGHT ELECTRONIC NOISE WHEN LCD IS TURNED OFF (EVEN BACKLIGHT UNIT IS ALSO OFF). TO AVOID THIS SYMPTOM, WE SUGGEST "Vcc FALLING TIMING" TO FOLLOW "T6 SPEC".
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5.3 LVDS INPUT SIGNAL SPECIFICATIONS
5.3.1 LVDS DATA MAPPING TABLE
LVDS CHANNEL O0
LVDS OUTPUT D7 D6 D4 D3 D2 D1 D0 DATA ORDER OG0 OR5 OR4 OR3 OR2 OR1 OR0
LVDS CHANNEL O1 LVDS OUTPUT D18 D15 D14 D13 D12 D9 D8
DATA ORDER OB1 OB0 OG5 OG4 OG3 OG2 OG1
LVDS CHANNEL O2 LVDS OUTPUT D26 D25 D24 D22 D21 D20 D19
DATA ORDER DE NA NA OB5 OB4 OB3 OB2
LVDS CHANNEL O3 LVDS OUTPUT D23 D17 D16 D11 D10 D5 D27
DATA ORDER NA OB7 OB6 OG7 OG6 OR7 OR6
LVDS CHANNEL E0 LVDS OUTPUT D7 D6 D4 D3 D2 D1 D0
DATA ORDER EG0 ER5 ER4 ER3 ER2 ER1 ER0
LVDS CHANNEL E1 LVDS OUTPUT D18 D15 D14 D13 D12 D9 D8
DATA ORDER EB1 EB0 EG5 EG4 EG3 EG2 EG1
LVDS CHANNEL E2 LVDS OUTPUT D26 D25 D24 D22 D21 D20 D19
DATA ORDER DE NA NA EB5 EB4 EB3 EB2
LVDS CHANNEL E3 LVDS OUTPUT D23 D17 D16 D11 D10 D5 D27
DATA ORDER NA EB7 EB6 EG7 EG6 ER7 ER6
5.3.2 COLOR DATA INPUT ASSIGNMENT
THE BRIGHTNESS OF EACH PRIMARY COLOR (RED, GREEN AND BLUE) IS BASED ON THE 8-BIT GRAY SCALE DATA INPUT FOR THE COLOR. THE HIGHER THE BINARY INPUT, THE BRIGHTER THE COLOR. THE TABLE BELOW PROVIDES THE ASSIGNMENT OF COLOR VERSUS DATA INPUT.
Color
Data Signal
Red Green Blue
R7 R6 R5 R4 R3 R2 R1 R0 G7 G6 G5 G4 G3 G2 G1 G0 B7 B6 B5 B4 B3 B2 B1 B0
Basic Colors
Black Red
Green Blue
Cyan Magenta Yellow White
0 1 0 0 0 1 1 1
0 1 0 0 0 1 1 1
0 1 0 0 0 1 1 1
0 1 0 0 0 1 1 1
01000111
01000111
01000111
01000111
00101011
00101011
00101011
00101011
00101011
00101011
00101011
00101011
0 0 0 1 1 1 0 1
0 0 0 1 1 1 0 1
0 0 0 1 1 1 0 1
0 0 0 1 1 1 0 1
0 0 0 1 1 1 0 1
00011101
00011101
00011101
Gray Scale Of Red
Red(0) / Dark Red(1) Red(2)
: :
Red(253) Red(254) Red(255)
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
000::111
000:
111
001::011
010:
101
000:: 000
000:
000
000:: 000
000::000
000::000
000::000
000::000
000:
000
0 0 0 :
0 0 0
0 0 0 : : 0 0 0
0 0 0 :
0 0 0
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
000::000
000:: 000
000::000
Gray Scale Of Green
Green(0) / Dark Green(1) Green(2)
: :
Green(253) Green(254) Green(255)
0 0 0 : : 0 0 0
0 0 0 : :
0 0 0
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
000:: 000
000:: 000
000:: 000
000:: 000
000:: 111
000:: 111
000:: 111
000:: 111
000:: 111
000:: 111
001:: 011
010:: 101
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
0 0 0 : :
0 0 0
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
000:: 000
000:: 000
000:: 000
Gray Scale Of Blue
Blue(0) / Dark Blue(1) Blue(2)
: :
Blue(253) Blue(254) Blue(255)
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
0 0 0 : : 0 0 0
000:: 000
000:: 000
000:: 000
000:: 000
000:: 000
000::000
000:: 000
000:: 000
000:: 000
000:: 000
000:: 000
000::000
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
0 0 0 : : 1 1 1
000:: 111
001:: 011
010:: 101
NOTE ( 1 ):0: LOW LEVEL VOLTAGE, 1: HIGH LEVEL VOLTAGE
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6. OPTICAL CHARACTERISTICS
6.1 TEST CONDITIONS
ITEM SYMBOL VALUE UNIT AMBIENT TEMPERATURE Ta 25±2 °C AMBIENT HUMIDITY Ha 50±10 %RH SUPPLY VOLTAGE VCC 5 V
INPUT SIGNAL ACCORDING TO TYPICAL VALUE IN "4. ELECTRICAL
CHARACTERISTICS" LED LIGHT BAR INPUT CURRENT
PER INPUT PIN IPIN 80±1.5 mADC
PWM DUTY RATIO D 100 %
6.2 OPTICAL SPECIFICATIONS
ITEM SYMBOL CONDITION MIN. TYP. MAX. UNIT REMARK
COLOR CHROMATICITY (CIE 1931)
RED Rx
x=0°, Y=0°CS-2000
R=G=B=255GRAY SCALE
Typ – 0.05
(0.635)
Typ + 0.05
NOTE ( 1 )NOTE ( 5 )
Ry (0.340)
GREEN Gx (0.315)
Gy (0.635)
BLUE Bx (0.155)
By (0.050)
WHITE Wx (0.313)
Wy (0.329) CENTER LUMINANCE OF
WHITE (CENTER OF SCREEN) LC (170) (210) cd/m2
NOTE ( 4 )NOTE ( 5 )
CONTRAST RATIO CR (2000) (3000)
NOTE ( 2 )NOTE ( 5 )
RESPONSE TIME
TR 20 25 ms NOTE ( 3 ) TF 5 10 ms NOTE ( 3 ) TGtG_AVE_ x=0°, Y=0° 30 35 ms NOTE ( 3 )
WHITE VARIATION W x=0°, Y=0° (65) % NOTE ( 5 )NOTE ( 6 )
VIEWING ANGLE
HORIZONTAL θx- + θx+CR≥10
(160) (178) Deg.
NOTE ( 1 )NOTE ( 5 ) VERTICAL θy- + θy+ (160) (178)
NOTE ( 1 ):DEFINITION OF VIEWING ANGLE (θx, θy):
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 11 NOTE ( 2 ):DEFINITION OF CONTRAST RATIO (CR):
THE CONTRAST RATIO CAN BE CALCULATED BY THE FOLLOWING EXPRESSION. CONTRAST RATIO (CR) = L255 / L0 L255: LUMINANCE OF GRAY LEVEL 255 L 0: LUMINANCE OF GRAY LEVEL 0 CR = CR (5) CR (X) IS CORRESPONDING TO THE CONTRAST RATIO OF THE POINT X AT FIGURE IN NOTE (6).
NOTE ( 3 ):DEFINITION OF RESPONSE TIME: -THE TR IS THE RISING-TIME MEANS THE TRANSITION TIME FROM “FULL-BLACK (GRAY 0)” TO “FULL-WHITE (GRAY 255)” AND THE TF IS THE FALLING-TIME MEANS THE TRANSITION TIME FROM “FULL-WHITE (GRAY 255)” TO “FULL-WHITE (GRAY 0)” AS THE FOLLOWING FIGURE.(MEASURED BY TEKTRONIX TDS3054B).
-THE TGtG IS THE RESPONSE TIME MEANS THE TRANSITION TIME FROM “GRAY N” TO “GRAY M” (N,M=0~255).
-TGtG_AVE IS THE TOTAL AVERAGE OF THE TGtG DATA (MEASURED BY INX GTG INSTRUMENT)
-THE GRAY (N,M) STANDS FOR THE (0,31,63,~255) AS THE FOLLOWING TABLE. -IF SYSTEM USE ODC (OVER DRIVING CIRCUIT) FUNCTION, TGtG AVE MAY be 5ms~15ms.*IT DEPENDS ON OVERSHOOT RATE
NOTE ( 4 ):DEFINITION OF LUMINANCE OF WHITE (LC): MEASURE THE LUMINANCE OF GRAY LEVEL 255 AT CENTER POINT LC = L (5) L (x) IS CORRESPONDING TO THE LUMINANCE OF THE POINT X AT FIGURE IN NOTE (6).
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 12 NOTE ( 5 ):MEASUREMENT SETUP:
THE LCD MODULE SHOULD BE STABILIZED AT GIVEN TEMPERATURE FOR 40 MINUTES TO AVOID ABRUPT TEMPERATURE CHANGE DURING MEASURING. IN ORDER TO STABILIZE THE LUMINANCE, THE MEASUREMENT SHOULD BE EXECUTED AFTER LIGHTING BACKLIGHT FOR 40 MINUTES IN A WINDLESS ROOM.
NOTE ( 6 ):DEFINITION OF WHITE VARIATION (δW):
MEASURE THE LUMINANCE OF GRAY LEVEL 255 AT 9 POINTS δW = ( MINIMUM [L (1) ~ L (9)] / MAXIMUM [L (1) ~ L (9)] ) *100%
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE T E C H N O L O G I E S C O R P O R A T I O N E T M L 2 1 5 0 0 0 D H A 1 13
7. OUTLINE DIMENSIONS
UNIT : mm SCALE : NTS NOT SPECIFIED TOLERANCE IS 0.5mm NOTE : 1.C/L : SODA LIME 2.LCM :
2.1 LVDS INPUT CONNECTOR SPECIFICATION : P-TWO 187098-30091/FCN WF13-422-3033 2.2 LED CONNECTOR SPECIFICATION : FCN WM13-406-063N/Cvilus CI1406M1HRK-NH. 2.3 THE DIMENSION EXCLUDS DEFORMATION. 2.4 TORQUE OF M3 USER HOLE SHOULD BE WITHIN 5 KGF-CM AND JUST RESCREW 10 TIMES. 2.5 DISPLAY AREA POSITION TOLERANCE : │A-B│≤1 & │C-D│≤1.
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02101300-01-02
E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 14
8. BLOCK DIAGRAM
VSS
USB D+
USB D-
VDD
TOUCH PANEL HOST CPU USB D-
VSS
VDD
USB D+
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 15
9. DETAIL DRAWING OF DOT MATRIX
B G R
B G R
0.24795
0.08265
267.
786
1920(RGB)*1080 DOTS
B G R
476.064
0.24
795
UNIT : mm SCALE : NTS NOT SPECIFIED TOLERANCE IS 0.1 DOTS MATRIX TOLERANCE IS 0.01
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 16
10. INTERFACE SIGNALS
10.1 IF1 TFT LCD MODULE INTERFACE
PIN NO. SYMBOL FUNCTION
1 RXO0- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O0 (ODD)
2 RXO0+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O0 (ODD)
3 RXO1- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O1 (ODD)
4 RXO1+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O1 (ODD)
5 RXO2- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O2 (ODD)
6 RXO2+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O2 (ODD)
7 GND GROUND 8 RXOC- NEGATIVE LVDS DIFFERENTIAL CLOCK INPUT. (ODD) 9 RXOC+ POSITIVE LVDS DIFFERENTIAL CLOCK INPUT. (ODD)
10 RXO3- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O3(ODD)
11 RXO3+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL O3 (ODD)
12 RXE0- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E0 (EVEN)
13 RXE0+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E0 (EVEN)
14 GND GROUND
15 RXE1- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E1 (EVEN)
16 RXE1+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E1 (EVEN)
17 GND GROUND
18 RXE2- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E2 (EVEN)
19 RXE2+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E2 (EVEN)
20 RXEC- NEGATIVE LVDS DIFFERENTIAL CLOCK INPUT. (EVEN) 21 RXEC+ POSITIVE LVDS DIFFERENTIAL CLOCK INPUT. (EVEN)
22 RXE3- NEGATIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E3 (EVEN)
23 RXE3+ POSITIVE LVDS DIFFERENTIAL DATA INPUT. CHANNEL E3 (EVEN)
24 GND GROUND 25 NC FOR LCD INTERNAL USE ONLY, DO NOT CONNECT
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 17
PIN NO. SYMBOL FUNCTION 26 NC FOR LCD INTERNAL USE ONLY, DO NOT CONNECT 27 NC FOR LCD INTERNAL USE ONLY, DO NOT CONNECT 28 Vcc +5.0V POWER SUPPLY 29 Vcc +5.0V POWER SUPPLY 30 Vcc +5.0V POWER SUPPLY
NOTE ( 1 ):CONNECTOR PART NO.: WF13-422-3033(Fullconn) OR 187098-30091(P-two) equivalent
NOTE ( 2 ):CONNECTOR PART NO.: USER’S CONNECTOR PART NO: MATING WIRE CABLE CONNECTOR PART NO.: FI-X30H(JAE) OR FI-X30HL(JAE) MATING FFC CABLE CONNECTOR PART NO.: 217007-013001 (P-TWO) OR
JF05X030-1 (JAE). *NOTICE: THERE WOULD BE COMPATIBLE ISSUES IF NOT USING THE INDICATED CONNECTORS IN
THE MATCHING LIST. NOTE ( 3 ):THE FIRST PIXEL IS ODD. NOTE ( 4 ):INPUT SIGNAL OF EVEN AND ODD CLOCK SHOULD BE THE SAME TIMING.
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 18
10.2 IF3 LED DRIVER INTERFACE
PIN NO. FUNCTION 1 CATHODE OF LED STRING 2 CATHODE OF LED STRING 3 VLED 4 VLED 5 CATHODE OF LED STRING 6 CATHODE OF LED STRING
NOTE ( 1 ):CONNECTOR: WM13-406-063N & CI1406M1HRK-NH. NOTE ( 2 ):LB CONNECTOR DRAWING:
10.3 IF2 TOUCH PANEL INTERFACE
PIN NO. SYMBOL FUNCTION 1 VDD POWER SUPPLY VOLTAGE 2 USB D- USB D- 3 USB D+ USB D+ 4 VSS GROUND PIN 5 VSS GROUND PIN
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 19
11. CAPACITIVE TOUCH PANEL SPECIFICATION 11.1 OPTICAL CHARACTERISTICS
ITEM CONDITION MIN. TYP. MAX. UNIT
TRANSPARENCY NOTE ( 1 )
Ta = 25C 85 %
NOTE ( 1 ):OPTICAL MEASUREMENT SHOULD BE EXECUTED AFTER PANEL IS SECURED. MEASUREMENT PROCESS SHOULD BE EXECUTED IN A STABLE, WINDLESS, AND DARK ROOM. OPTICAL SPECIFICATIONS SHOULD BE MEASURED BY SPECTROPHOTOMETER.
11.2 HARDNESS
ITEM DESCRIPTION
SURFACE HARDNESS 7H (MIN.)
11.3 DURABILITY
USING STEEL BALL AND FALLING ON TOUCH PANEL SURFACE, FROM THE HEIGHT MUST PASS BELOW CONDITIONS:
ITEM CONDITION INSPECTION
METHOD DESCRIPTION
STEEL BALL DROP TEST
WEIGHT:67g HEIGHT OF FALL:30 cm
VISUAL INSPECTION
SIGN OF FRACTURE OR DAMAGE IS NOT ACCEPTABLE 3 TIMES/ 1 POINTS, 25C(CENTER TEST)
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 20
12. INSPECTION CRITERION
12.1 APPLICATION THIS INSPECTION STANDARD IS TO BE APPLIED TO THE LCD MODULE DELIVERED FROM EMERGING DISPLAY TECHNOLOGIES CORP.( E.D.T ) TO CUSTOMERS
12.2 INSPECTION CONDITIONS
12.2.1 (1)OBSERVATION DISTANCE:355cm
(2)VIEW ANGLE: NON-OPERATION CONDITION:5
(PERPENDICULAR TO LCD PANEL SURFACE) OPERATION CONDITION:45
(PERPENDICULAR TO LCD PANEL SURFACE)
12.2.2 ENVIRONMENT CONDITIONS:
AMBIENT TEMPERATURE 255C AMBIENT HUMIDITY 6520%RH AMBIENT
ILLUMINATION COSMETIC INSPECTION 600~800 Lux
FUNCTIONAL INSPECTION 300~500 Lux
12.2.3 INSPECTION LOT QUANTITY PER DELIVERY LOT FOR EACH MODEL
12.2.4 INSPECTION METHOD
A SAMPLING INSPECTION SHALL BE MADE ACCORDING TO THE FOLLOWING PROVISIONS TO JUDGE THE ACCEPTABILITY (a)APPLICABLE STANDARD:
MIL-STD-105E NORMAL INSPECTION, SINGLE SAMPLING
LEVEL Ⅱ (b)AQL : MAJOR DEFECT:AQL 0.65 MINOR DEFECT:AQL 1.0
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E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 21
12.3 CAPACITIVE TOUCH PANEL INSPECTION STANDARDS INSPECTION ITEMS CRITERIA REMARK
BLACK/WHITE SPOT
THE FOLLOWING BLACK/WHITE SPOT ARE WITHIN THE VIEWING AREA. AVERAGE DIAMETER:D (mm) SIZE D PERMISSIBLE NO.
D0.2mm IGNORE 0.2mmD0.3mm 7 0.3mmD0.5mm 5
D0.5 mm 0
NOTE ( 1 ):THE DISTANCE BETWEEN DEFECTS SHOULD BE MORE THAN 10mm APART.
DD
SCRATCH
THE FOLLOWING BLACK LINE, WHITE LINE IS WITHIN THE VIEWING AREA. WIDTH:W (mm) , LENGTH : L (mm) SIZE W & L PERMISSIBLE NO.
W0.1mm IGNORE 0.1mmW0.2mm,L15mm 5
W0.2mm or L25mm 0
NOTE ( 1 ):THE DISTANCE BETWEEN DEFECTS SHOULD BE MORE THAN 10mm APART.
L
W
LINEAR TYPE / FOREIGN FIBER
SIZE W & L PERMISSIBLE NO. W0.1mm IGNORE
0.1mmW0.2mm,L15mm 5 W0.2mm or L25mm 0
NOTE ( 1 ):THE DISTANCE BETWEEN DEFECTS SHOULD BE MORE THAN 10mm APART.
BUBBLE / DENT
BUBBLES WITHIN VIEWING AREA. AVERAGE DIAMETER:D (mm) SIZE D PERMISSIBLE NO.
D0.2mm IGNORE 0.2mmD0.3mm 3 0.3mmD0.5mm 1
D0.5mm 0
NOTE ( 1 ):THE DISTANCE BETWEEN DEFECTS SHOULD BE MORE THAN 10mm APART.
D
CHIP DAMAGE ON GLASS
EDGE
X 6mm 、Y 1mm、Z t (t : thickness)
CORNER X 3 mm、Y 3mm、Z t
(t : thickness)
Z
Y
Z
X
XY
Chip of glass
CRACK NOT ACCEPTABLE
NOTE: 1. FOR ANY SPOTS OR LINES, WHICH ARE NOT OBSERVED UNDER APPROPRIATE PANEL OPERATING
CONDITION ARE DEEMED ACCEPTABLE. 2. THE FOREIGN MATERIALS THAT CAN BE BLOWN OUT BY AIR AND REMOVED BY WET CLEANING
ARE NOT REGARDED AS DEFECTS.
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 22
12.4 TFT LCD MODULE INSPECTION CRITERIA
12.4.1 VISUAL DEFECTS CLASSIFICATION
TYPE OF DEFECT INSPECTION ITEM DEFECT FEATURE AQL
MAJOR DEFECT
1.DISPLAY ON
DEFECT TO MISS SPECIFIED DISPLAY FUNCTION, FOR ALL AND SPECIFIED DOTS EX: DISCONNECTION, SHORT
CIRCUIT ETC 0.65
2.BACKLIGHT
NO LIGHT FLICKERING AND OTHER
ABNORMAL ILLUMINATION
3.DIMENSIONS SUBJECT TO INDIVIDUAL
ACCEPTANCE SPECIFICATIONS
MINOR DEFECT
1.DISPLAY ZONE
BLACK/WHITE SPOT BUBBLES ON POLARIZER NEWTON RING BLACK/WHITE LINE SCRATCH CONTAMINATION LEVER COLOR SPREAD
1.0
2.BEZEL ZONE
STAINS SCRATCHES FOREIGN MATTER
3.SOLDERING
INSUFFICIENT SOLDER SOLDERED IN INCORRECT
POSITION CONVEX SOLDERING SPOT SOLDER BALLS SOLDER SCRAPS
4.DISPLAY ON (ALL ON)
LIGHT LINE
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 23
12.4.2 MODULE DEFECTS CLASSIFICATION
NO. ITEM CRITERIA
1
DISPLAY ON INSPECTION
(1)INCORRECT PATTERN(2)MISSING SEGMENT (3)DIM SEGMENT (4)OPERATING VOLTAGE BEYOND SPEC
2 OVERALL DIMENSIONS
(1)OVERALL DIMENSION BEYOND SPEC
3 DOT DEFECT
(1)INSPECTION PATTERN: FULL WHITE, FULL BLACK, RED, GREEN AND BLUE SCREENS. (2)
ITEMS ACCEPTABLE COUNT
BRIGHT DOT
RANDOM N 2
2 DOTS ADJACENT N 1
3 DOTS ADJACENT OR MORE N 0
DARK DOT
RANDOM N 5
2 DOTS ADJACENT N 2
3 DOTS ADJACENT OR MORE N 1
DISTANCE
MINIMUM DISTANCE BETWEEN BRIGHT DOTS
L 15mm
MINIMUM DISTANCE BETWEEN DARK DOTS
L 15mm
TOTAL BRIGHT AND DARK DOTS N 5
NOTE: 1. THE DEFINITION OF DOT:
THE SIZE OF A DEFECTIVE DOT OVER 1/2 OF WHOLE DOT IS REGARDED AS ONE DEFECTIVE DOT.
2. BRIGHT DOT: DOTS APPEAR BRIGHT AND UNCHANGED IN SIZE IN WHICH LCD PANEL IS DISPLAYING UNDER BLACK PATTERN. 3. DARK DOT: DOTS APPEAR DARK AND UNCHANGED IN SIZE IN WHICH LCD PANEL IS DISPLAYING UNDER PURE RED, GREEN, BLUE PICTURE.
4
FOREIGN BLACK/WHITE/ BRIGHT LINE/ SCRATCH OF VIEWING AREA
LENGTH:L WIDTH:W PERMISSIBLE NO.
L 0.5 W 0.05 IGNORE
0.5 L 5.0 0.05 W 0.1 4
5.0 L 0.1 W NONE
WIDTH:W mm, LENGTH: L mm
5
FOREIGN MATTER \ BLACK SPOTS \ WHITE SPOTS \ DENT (INCLUDING LIGHT LEAKAGE DUE TO POLARIZING PLATES PINHOLES, ETC.)
AVERAGE DIAMETER (mm): D NUMBER OF PIECES PERMITTEDD 0.15 IGNORE
0.15 D 0.5 4 0.5 D NONE
NOTE :DIAMETER D=(a+b)/2
a
b
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 24
NO. ITEM CRITERIA
6
BUBBLES OF POLARIZER /DIRT/CF FAIL /SURFACE STAINS /SCRATCH
AVERAGE DIAMETER (mm):D
NUMBER OF PIECES PERMITTED
BUBBLE ON THE POLARIZER
D 0.25 IGNORE
0.25 < D 0.5 N 5 0.5 < D NONE
SURFACE STAINS D 0.1 IGNORE
0.1 D 0.5 N 6
CF FAIL / SPOT D 0.1 IGNORE
0.1 D 0.5 N 4
SCRATCH 0.05 < W 0.1, 0.5 < L 10.0
N 4
NOTE : (1)POLARIZER BUBBLE IS DEFINED AS THE BUBBLE APPEARS ON ACTIVE DISPLAY AREA. THE DEFECT OF POLARIZER BUBBLE SHALL BE IGNORED IF THE POLARIZER BUBBLE APPEARS ON THE OUTSIDE OF ACTIVE DISPLAY AREA.
(2)THE EXTRANEOUS SUBSTANCE IS DEFINED AS IT CAN BE OBSERVED WHEN THE MODULE IS POWER ON.
(3)THE DEFINITION OF AVERAGE DIAMETER, D IS DEFINED AS FOLLOWING.
AVERAGE DIAMETER (D)=(a+b)/2
a
b
7 LINE DEFECT ON DISPLAY
OBVIOUS VERTICAL OR HORIZONTAL LINE DEFECT IS NOT ALLOWED
8 MURA ON DISPLAY
NOT VISIBLE THROUGH 8% ND FILTER IN 50% GRAY PATTERN OR JUDGE BY EQUIVALENT LIMIT SAMPLE IF NECESSARY
9
UNEVEN COLOR SPREAD, COLORATION
(1)TO BE DETERMINED BASED UPON THE STANDARD SAMPLE.
10
BEZEL APPEARANCE
(1)BEZEL MAY NOT HAVE RUST, BE DEFORMED OR HAVE FINGER PRINTS STAINS OF OTHER CONTAMINATION.
(2)BEZEL MUST COMPLY WITH JOB SPECIFICATIONS.
11 PCB
(1)THERE MAY NOT BE MORE THAN 2mm OF SEALANT OUTSIDE THE SEAL AREA ON THE PCB, AND THERE SHOULD BE NO MORE THAN THREE PLACES.
(2)NO OXIDATION OR CONTAMINATION PCB TERMINALS. (3)PARTS ON PCB MUST BE THE SAME AS ON THE PRODUCTION CHARACTERISTIC CHART. THERE SHOULD BE NO WRONG PARTS, MISSING PARTS OR EXCESS
PARTS. (4)THE JUMPER ON THE PCB SHOULD CONFORM TO THE PRODUCT CHARACTERISTIC CHART.
(5)IF SOLDER GETS ON BEZEL TAB PADS, LED PAD, ZEBRA PAD OR SCREW HOLD PAD; MAKE SURE IT IS SMOOTHED DOWN.
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 25
NO. ITEM CRITERIA
12 SOLDERING
(1)NO SOLDERING FOUND ON THE SPECIFIED PLACE (2)INSUFFICIENT SOLDER (a)LSI, IC A POOR WETTING OF SOLDER IS BETWEEN LOWER BEND OR “HEEL” OF LEAD AND PAD
SOLDER FILLET
(b)CHIP COMPONENT .SOLDER IS LESS THAN 50% OF SIDES AND FRONT FACE WETTING
SOLDER FILLET
1/2
.SOLDER WETS 3 SIDES OF TERMINAL, BUT LESS THAN 25% OF SIDES AND FRONT SURFACE AREA ARE COVERED
SOLDER
(3)PARTS ALIGNMENT (a)LSI, IC
LEAD WIDTH IS MORE THAN 50% BEYOND PAD OUTLINE
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TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 26
NO. ITEM CRITERIA
12 SOLDERING
(b)CHIP COMPONENT COMPONENT IS OFF CENTER, AND MORE THAN 50% OF THE LEADS IS OFF THE PAD OUTLINE
(4)NO UNMELTED SOLDER PASTE MAY BE PRESENT ON THE PCB. (5)NO COLD SOLDER JOINTS, MISSING SOLDER CONNECTIONS, OXIDATION OR ICICLE. (6)NO RESIDUE OR SOLDER BALLS ON PCB. (7)NO SHORT CIRCUITS IN COMPONENTS ON PCB.
13 BACKLIGHT
(1)NO LIGHT (2)FLICKERING AND OTHER ABNORMAL ILLUMINATION (3)SPOTS OR SCRATCHES THAT APPEAR WHEN LIT MUST BE JUDGED
USING LCD SPOT, LINES AND CONTAMINATION STANDARDS. (4)BACKLIGHT DOESN’T LIGHT OR COLOR IS WRONG.
14 GENERAL APPEARANCE
(1)NO OXIDATION, CONTAMINATION, CURVES OR, BENDS ON INTERFACE PIN (OLB) OF TCP. (2)NO CRACKS ON INTERFACE PIN (OLB) OF TCP. (3)NO CONTAMINATION, SOLDER RESIDUE OR SOLDER BALLS ON PRODUCT. (4)THE IC ON THE TCP MAY NOT BE DAMAGED, CIRCUITS. (5)THE UPPERMOST EDGE OF THE PROTECTIVE STRIP ON THE INTERFACE PIN MUST BE PRESENT OR LOOK AS IF IT CAUSE THE INTERFACE PIN TO SEVER.
(6)THE RESIDUAL ROSIN OR TIN OIL OF SOLDERING (COMPONENT OR CHIP COMPONENT) IS NOT BURNED INTO
BROWN OR BLACK COLOR. (7)SEALANT ON TOP OF THE ITO CIRCUIT HAS NOT HARDENED. (8)PIN TYPE MUST MATCH TYPE IN SPECIFICATION SHEET. (9)LCD PIN LOOSE OR MISSING PINS. (10)PRODUCT PACKAGING MUST THE SAME AS SPECIFIED ON PACKAGING SPECIFICATION SHEET. (11)PRODUCT DIMENSION AND STRUCTURE MUST CONFORM TO PRODUCT SPECIFICATION SHEET. (12)THE APPEARANCE OF HEAT SEAL SHOULD NOT ADMIT ANY DIRT AND BREAK.
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 27
NO. ITEM CRITERIA
15 CRACKED GLASS
THE LCD WITH EXTENSIVE CRACK IS NOT ACCEPTABLE
GENERAL GLASS CHIP:
c
ab
c
a
w
b
c
a
b
a b c
t/2 VIEWING AREA 1/8X t/2 , 2t W/2 1/8X
*W=DISTANCE BETWEEN SEALANT AREA AND LCD PANEL EDGE
X = LCD SIDE LENGTH t = GLASS THICKNESS
CORNER PART:
ca
b
a b c
t/2 VIEWING AREA 1/8X
t/2 , 2t W/2 1/8X
*W=DISTANCE BETWEEN SEALANT AREA AND LCD PANEL EDGE
X = LCD SIDE LENGTH t = GLASS THICKNESS
CHIP ON ELECTRODE PAD
b
c
a
a b c
t 0.5mm 1/8X
* X=LCD SIDE WIDTH t =GLASS THICKNESS
b
ac
a b c
t 1/8X L
*X=LCD SIDE WIDTH t = GLASS THICKNESS L=ELECTRODE PAD LENGTH IF GLASS CHIPPING THE ITO
TERMINAL, OVER 2/3 OF THE ITO MUST REMAIN AND BE, INSPECTED ACCORDING TO ELECTRODE TERMINAL SPECIFICATIONS IF THE PRODUCT WILL BE HEAT
SEALED BY THE CUSTOMER, THE ALIGNMENT MARK MUST NOT BE DEMAGED
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E M E R G I N G D I S P L A Y MODEL NO . VERSION PAGE
TECHNOLOGIES CORPORATION E T M L 2 1 5 0 0 0 D H A 1 28
13. GENERAL RELIABILITY ASSURANCE
NO. ITEM CONDITIONS TIME PERIOD REMARK
1 HIGH TEMPERATURE
STORAGE 602C
15 RH 240HRS
2HRS LEFT ALONE AT NORMAL TEMP
2 LOW TEMPERATURE
STORAGE -202C
15 RH 240HRS
4HRS LEFT ALONE AT NORMAL TEMP
3 HIGH TEMPERATURE
OPERATING 502C 240HRS AS SAME AS (2)
4 LOW TEMPERATURE
OPERATING 02C 240HRS AS SAME AS (2)
5 HIGH TEMPERATURE/
HUMIDITY TEST (STORAGE)
502C
80 RH 240HRS AS SAME AS (2)
6 THERMAL SHOCK (NOT OPERATED)
3 min3 min30 min 30 min
+60C
-20C-20C
1cycle
TRANSIT/3MIN10CYCLES
7
ESD (ELECTROSTATIC
DISCHARGE) (NOT OPERATED)
AIR DISCHARGE 12KV CONTACT DISCHARGE 8KV ACCORDING TO IEC-61000-4-2
NOTE ( 1 ):AFTER RELIABILITY TEST COMPLETION, THE FOLLOWINGS ARE VERIFIED: 1. WHETHER TOUCH PANEL WORKS NORMALLY UNDER NORMAL TEMPERATURE
ENVIRONMENT. 2. VARIATION ON MODULE APPEARANCE.
NOTE ( 2 ):1. CONDUCT EXAMINATION AND MEASUREMENT UNDER THE FOLLOWING CONDITIONS, UNLESS SPECIFIED OTHERWISE. TEMPERATURE:255C HUMIDITY:5510%RH ATMOSPHERIC PRESSURE:9610KPA
2. DATA FOR ALL MEASUREMENTS SHALL ONLY BE RECORDED ONCE SPECIMENS HAVE ATTAINED TEMPERATURE STABILITY.
NOTE ( 3 ):THE STATED VALUE ARE BASED ON EDT TESTING CRITERIA AND EVALUATION EQUIPMENTS AS BENCHMARK. SPECIFIC ESD PERFORMANCE WILL BE BASED ON APPLICATION CONDITION AND CUSTOMER’S UNIT STRUCTURE.
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14. TESTING CONDITIONS AND INSPECTION CRITERIA FOR THE FINAL TEST THE TESTING SAMPLE MUST BE STORED AT ROOM TEMPERATURE FOR 24 HOURS, AFTER THE TESTS LISTED IN TABLE 13.5, STANDARD SPECIFICATIONS FOR RELIABILITY HAVE BEEN EXECUTED IN ORDER TO ENSURE STABILITY.
NO. ITEM TEST MODEL INSPECTION CRITERIA
1 CURRENT
CONSUMPTION REFER TO SPECIFICATION
THE CURRENT CONSUMPTION SHOULD CONFORM TO THE PRODUCT SPECIFICATION.
2 CONTRAST REFER TO SPECIFICATION
AFTER THE TESTS HAVE BEEN EXECUTED, THE CONTRAST MUST BE LARGER THAN HALF OF ITS INITIAL VALUE PRIOR TO THE TESTS.
3 APPEARANCE VISUAL INSPECTION DEFECT FREE
15. OPERATION
15.1 DO NOT CONNECT OR DISCONNECT MODULES TO OR FROM THE
MAIN SYSTEM WHILE POWER IS BEING SUPPLIED . 15.2 USE THE MODULE WITHIN SPECIFIED TEMPERATURE ; LOWER
TEMPERATURE CAUSES THE RETARDATION OF BLINKING SPEED OF THE DISPLAY ; HIGHER TEMPERATURE MAKES OVERALL DISPLAY DISCOLOR . WHEN THE TEMPERATURE RETURNS TO NORMALITY, THE DISPLAY WILL OPERATE NORMALLY.
15.3 ADJUST THE LC DRIVING VOLTAGE TO OBTAIN THE OPTIMUM CONTRAST .
15.4 POWER ON SEQUENCE INPUT SIGNALS SHOULD NOT BE SUPPLIED TO LCD MODULE BEFORE POWER SUPPLY VOLTAGE IS APPLIED AND REACHES THE SPECIFIED VALUE. IF ABOVE SEQUENCE IS NOT FOLLOWED , CMOS LSIS OF LCD MODULES MAY BE DAMAGED DUE TO LATCH - UP PROBLEM.
15.5 NOT ALLOWED TO INFLICT ANY EXTERNAL STRESS AND TO CAUSE ANY MECHANICAL INTERFERENCE ON THE BENDING AREA OF FPC DURING THE TAIL BENDING BACKWARDS! DO NOT STRESS FPC AND IC ON THE MODULE!
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16. NOTICE
16.1 USE A GROUNDED SOLDERING IRON WHEN SOLDERING CONNECTOR I/O TERMINALS . FOR SOLDERING OR REPAIRING, TAKE PRECAUTION AGAINST THE TEMPERATURE OF THE SOLDERING IRON AND THE SOLDERING TIME TO PREVENT PEELING OFF THE THROUGH-HOLE-PAD .
16.2 DO NOT DISASSEMBLE . EDT SHALL NOT BE HELD RESPONSIBLE IF THE MODULE IS DISASSEMBLED AND UPON THE REASSEMBLY THE MODULE FAILED.
16.3 DO NOT CHARGE STATIC ELECTRICITY, AS THE CIRCUIT OF THIS MODULE CONTAINS CMOS LSIS. A WORKMAN'S BODY SHOULD ALWAYS BE STATIC-PROTECTED BY USE OF AN ESD STRAP. WORKING CLOTHES FOR SUCH PERSONNEL SHOULD BE OF STATIC-PROTECTED MATERIAL.
16.4 ALWAYS GROUND THE ELECTRICALLY-POWERED DRIVER BEFORE USING IT TO INSTALL THE LCD MODULE. WHILE CLEANING THE WORK STATION BY VACUUM CLEANER, DO NOT BRING THE SUCKING MOUTH NEAR THE MODULE ; STATIC ELECTRICITY OF THE ELECTRICALLY-POWERED DRIVER OR THE VACUUM CLEANER MAY DESTROY THE MODULE.
16.5 DON’T GIVE EXTERNAL SHOCK. 16.6 DON’T APPLY EXCESSIVE FORCE ON THE SURFACE. 16.7 LIQUID IN LCD IS HAZARDOUS SUBSTANCE. MUST NOT LICK AND
SWALLOW. WHEN THE LIQUID IS ATTACH TO YOUR, SKIN, CLOTH ETC. WASH IT OUT THOROUGHLY AND IMMEDIATELY.
16.8 DON’T OPERATE IT ABOVE THE ABSOLUTE MAXIMUM RATING. 16.9 STORAGE IN A CLEAN ENVIRONMENT, FREE FROM DUST, ACTIVE
GAS, AND SOLVENT. 16.10 STORE WITHOUT ANY PHYSICAL LOAD. 16.11 REWIRING: NO MORE THAN 3 TIMES.
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