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 Confidential Document
DATA IMAGE
CORPORATION
LCD Module Specification
ITEM NO.: TG161600FFEBB-01
Table of Contents 1. COVER & CONTENTS 2. RECORD OF REVISION 3. GENERAL SPECIFICATIONS 4. ABSOLUTE MAXIMUM RATINGS 5. ELECTRICAL CHARACTERISTICS 6. ELECTRO-OPTICAL CHARACTERISTIC 7. TIMING CHARACTERISTICS 8. PIN CONNECTIONS 9. POWER SUPPLY 10. BLOCK DIAGRAM 11. QUALITY ASSURANCE 12. LOT NUMBERING SYSTEM 13. LCM NUMBERING SYSTEM 14. PRECAUTIONS IN USE LCM 15 OUTLINE DRAWING 16 PACKAGE INFORMATION R&D Dept. Q.C. Dept. Eng. Dept. 1 2 3 4 5 5 7 10 10 11 13 17 17 18 19 20 Prod. Dept.
Version:
C
Issued Date: 2003/7/15
Sheet Code:
Total Pages:
20
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2.
Rev B C
RECORD OF REVISION
Date 10/AUG/00 15/JUL/03 Item 15 13 Page 19 17 Comment
Change FFC TOLERANCE, from 130.5to 133mm. New model numbering system is updated from old P/N#TG16162FEBH
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3. GENERAL SPECIFICATION
Display Format : Dots Size : View Area : General Dimensions : Weight : LCD Type : Polarizer mode : 160 (W) x 0.335 (W) x 63.4 (W) x 69.0 (W) x 30 g max. STN Blue Reflective Transmissive View Angle : Backlight : Backlight Color : V 6 O'clock LED Yellow green White Controller / Driver : Temperature Range : STN Yellow V Transflective Negative 12 O'clock V EL Amber Others Others CCFL V Green V FSTN 160 (H) 0.335 (H) 63.3 (H) 69.5 (H) x dots mm mm 5.6 (T) mm Max.
NT7701 COM & SEG Normal V Wide Temperature Operating 0 to 50C Operating -20 to 70C Storage -20 to 70C Storage -30 to 80C
Remark:
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4. ABSOLUTE MAXIMUM RATINGS 4.1 ELECTRICAL ABSOLUTE MAXIMUM RATINGS
VSS= 0V,
Item Supply Voltage (Logic) Supply Voltage (LCD Driver) Input Voltage Operating Temperature Storage Temperature Symbol VDD-VSS VEE-VSS VI TOP TSTG Min. -0.3 0 VSS -20 -30 Max. 6.5 30 VDD 70 80
Ta = 25C
Unit V V V
C C
4.2
Item
ENVIRONMENTAL ABSOLUTE MAXIMUM RATINGS
Operating (Min.) -20 Note (2) --4.9M/S
2 2
Storage (Min.) -30 Note(2) --19.6M/S 490M/S
2 2
Max.) 70
(Max.) 80
Comment Note (1) Without Condensation XYZ Direction XYZ Direction
Ambient Temp Humidity Vibration Shock
29.4M/S
Note(1) Ta = 0C : 50Hr Max. Note(2) Ta 40C : 90% RH Max. Ta 40C : Absolute humidity must be lower than the humidity of 90% RH at 40C.
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5. ELECTRICAL CHARACTERISTICS
Item Supply Voltage (Logic) Supply Voltage (LCD) Symbol VDD-VSS -20C VEE-VSS 25C 70C Input Voltage Logic Supply Current VIH VIL IDD IEE -EL=ON VEE-VSS=19 Condition Min. 2.5 19.3 18.6 17.6 0.8*VDD VSS --Typ. 3.3 20 19 18 --40 0.9 Max. 5.5 21 20 18.6 VDD 0.2*VDD --V mA V Unit V
6. ELECTRO-OPTICAL CHARACTERISTICS
ITEM Rise Time Symbol Tr Condition 0C 25C 0C 25C 25C 25C & CR3 25C Min. 450 266 400 87 7.1 ---Typ. 560 280 500 94 7.25 30 30 64 Max. 800 302 750 98 7.38 ---Hz Unit ms Note (1) ms Note (3) Note (2) Ref.
Fall Time Contrast View Angle Frame Frequency
Tf K 1~2 1, 2 Ff
Note (1) & (2) : See next page Note (3) : Contrast ratio is defined under the following condition: CR= Brightness of non-selected condition Brightness of selected condition ( a ). ( b ). ( c ). ( d ). Temperature ---------- 25C Frame frequency ---- 64Hz Viewing angle -------- = 0, = 0 Operating voltage --- 19V
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Note (1) Response time is measured as the shortest period of time possible between the change in state of an LCD segment as demonstrated below: +Vop 1/f F 0
-Vop 90% 100% 10% tr Condition: ( a ) . Temperature ---------------25C ( b ) . Frame frequency --------- 64Hz ( c ) . View Angle ----------------- = 0, =0 ( d ) . Operating voltage -------- 19V Note (2) Definition of View Angle Top - Bottom direction Top 1 2 Right -- Left direction 2 1 tf
Bottom
Left
Right
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6.2 ELECTRIC - OPTICAL CHARACTERISTIC
( TEMP : 20C )
ITEM BRIGHTNESS UNIFORMITY CURRENT CONSUMPTION CONDITION 400HZ,100Vrms SINE WAVE 400HZ,100Vrms SINE WAVE 400HZ,100Vrms SINE WAVE DIMENION cd/m % mA/cm
2 2
STANDARD MIN 45 85 -TYP 56 90 0.12 0.17 0.35 0.32 0.36 MAX --0.17 0.19 0.37 0.34 0.38
X GREEN CHROMATICITY 400HZ,100Vrms SINE WAVE White Y Note: Measured at the EL panel unit. Y X
0.15 0.33 0.30 0.34
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7. TIMING CHARACTERISTICS
common & Segment interface timing: Item Symbol Clock Cycle SCP Pulse Width Data Set Up Time Data Hold Time SCP Rise/Fall Time LP Rise Time LP Fall Time LP Pulse Width SCP To LP Delay Time LP To SCP Delay Time LP "H" Pulse Width LP "L" Pulse Width tC tSWH, tSWL tDSU tDHD tr,tf tLRP tlw tlw tSL tLS tCWH tCWL
tSWL
Test Condition Fig.1 Fig.1 Fig.1& 2 Fig.1& 2 Fig.1& 2 Fig.1 Fig.1 Fig.1 Fig.1 Fig.1 Fig.2 Fig.2
tSWH 90% 10%
tr
Min. 500 240 240 240
Typ.
Max.
Units ns ns ns ns
50 240 240 240 50 100 40 170
ns ns ns ns ns ns ns ns
CL2
tSL
tf tLS
tLW tLFP tLRP
CL1
tDSU
tDHD
D0-D3
Fig1. SEGMENT TIMING
tCWH tCWL tf
CL2
90% 10%
tDSU tDHD tr
CL1
Fig2. COMMON TIMING
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7.1 TIMING CHART
M 1/Ff FLM 160 CL1 1 2 160 1 2 160 1 2
FLM CL1 CL2 CL2 x DO-D3 ( 160 / 4 ) pulse
7.2 POWER ON/OFF TIMING
VDD
VSS 0.8 VDD 0~50ms 0 ~50ms VSS 0.8 VDD
VDD
Signal
vss
VEE
VSS
20ms min.
0ms
VSS
VEE
vss
POWER ON POWER ON The missing pixels may occur when the LCM is driven beyond above power interface timing sequence.
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8. PIN CONNECTIONS
NO 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 Symbol VSS FLM CL1(LP) CL2(SCP) M(N.C) VDD EL ON VEE D3 D2 D1 D0 NC NC NC NC VSS VSS Function Power Supply (0V) First Line Mark for Common Scan HL Data Latch Pulse HL Data Shift Pulse H/L Frame Reverse Signal (Alternate Signal) Power Supply for Logic EL. Back light ON /OFF ("H"=ON,"L"=OFF) Power Supply for LCD (+V) H/L Display data(Upper Half) NO Connection. NO Connection. NO Connection. NO Connection. Power Supply (0V) Power Supply (0V)
9. POWER SUPPLY
LCM
VDD VSS R1 R2 30V
PCB
R3 VEE R1+R2+R3=10~20K /EL-ON
=+3.3V(EL ENABLE) =-0V(EL DISABLE)
E.L.B/L
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10. BLOCK DIAGRAM
D0~D3,CL1,CL2
U2 160 SEG1 COM1 FLM CL1 160 U1 160X160 LCD PANEL COM160 SEG160
M
EL B/L DRIVING CKT
EL-ON
*M SIGNAL CAN BE SUPPLIED BY USER'S INTERFACE OR GENERATED BY MODULE'S CKT (FOR THIS SPEC.,M SIGNAL MUST BE SUPPLIED BY USER'S INTEREACE)
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10.1 DISPLAY PATTERN
FIRST DATA COM001 COM002 D3 D2 D1 D0 D3 D2 D1 D0 D3 D2 D1 D0 D3 D2 D1 D0
COM159 COM160
D3 D2 D1 D0 D3 D2 D1 D0 SEG001 SEG002
D3 D2 D1 D0 D3 D2 D1 D0 SEG159 SEG160
160*160 Dots Matrix
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11. QUALITY ASSURANCE 11.1 Test Condition
11.1.1 Temperature and Humidity(Ambient Temperature) Temperature : 20 5C Humidity : 65 5% 11.1.2 Operation Unless specified otherwise, test will be conducted with LCM in operation. 11.1.3 Container Unless specified otherwise, vibration test will be conducted on module only. 11.1.4 Test Frequency Single cycle. 11.1.5 Test Method
No. 1 2 3 4 5 6 7 Parameter High Temperature Operating Low Temperature Operating High Temperature Storage Low Temperature Storage Vibration Test (Non-operation state) Damp Proof Test (Non-operation state) Shock Test (Non-operation state) Conditions 70 2 C -20 2 C 80 2 C -30 2 C Total fixed amplitude : 1.5mm Vibration Frequency : 10 ~ 55Hz One cycle 60 seconds to 3 directions of X.Y.Z. for each 15 minutes 40C 2C, 90~95%RH, 96h Regulations Note 3 Note 3 Note 3 Note 3 Note 3
Note 1,2 Note 3
To be measured after dropping from 60cm high once concrete surface in packing state Note 1: Returned under normal temperature and humidity for 4 hrs. Note 2: No dew condensation to be observed. Note 3: No change on display and in operation under the test condition
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11.2
Inspection condition
11.2.1 Inspection conditions The LCD shall be inspected under 40W white fluorescent light.
45
11.2.2 Definition of applicable Zones
B LCD A BEZEL PCB
A : Display Area B : Non-Display Area
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11.2.3 Inspection Parameters
No. Parameter Black or White spots Zone Dimension D < 0.15 0.15 D< 0.2 0.2 D 0.25 D 0.3 Acceptable Class number Of Defects A B 4 4 Minor 2 2 0 1 D = (Long + Short) / 2 AQL Level Criteria
1
2.5 * : Disregard
2
Scratch,
Substances Class Acceptable Of number X (mm) Y(mm) Defects A B 0.04 W 4 4 3.0 L 0.06 W Minor 2 3 2.0 L 0.08 W 0 1 0.1 < W X : Length Y : Width : Disregard Total defects should not exceed 4/module Zone AQL Level
2.5
3
Air Bubbles (between glass & polarizer) Zone Dimension D 0.15 0.15 < D 0.25 Acceptable number A B 2 Class of Defects Minor AQL Level
2.5
0 1 0.25 < D : Disregard Total defects shall not excess 3/module.
4
Uniformity of Pixel
(1)
Pixel shape (with Dent) 0.152
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(2)
Pixel shape ( with Projection)
Should not be connected to next pixel 0.152 (3) Pin hole X
4
Uniformity of Pixel
Y ( X + Y )/2 0.02mm (Less than 0.1 mm is no counted) (4) Deformation
X ( X + Y ) / 2 0.3mm
Y Total acceptable number : 1/pixel, 5/cell Definition It is a defect that is likely to result in failure or to reduce materially the usability of the product for the intended function. It is a defect that is likely to assembly size and not result in functioning problem. It is a defect that will not result in functioning problem with deviation classified.
Major Class of defects Minor
AQL 0.65% AQL 1.00% AQL 2.5%
11.3 Sampling Condition
Unless otherwise agree in written, the sampling inspection shall be applied to the incoming inspection of customer. Lot size: Quantity of shipment lot per model. Sampling type: normal inspection, single sampling Sampling table: MIL-STD-105E Inspection level: Level II
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12. LOT NUMBERING SYSTEM
9 7 4 2 Production week number Production year
13.
LCM NUMBERING SYSTEM TG 161600 F F E B B - 01
VERSION :01
View direction & Temp. Range
A-Bottom view 6H & Normal temp. B-Bottom view 6H & Wide temp. C-Top View & Normal temp. D-Top View & Wide temp.
Backlight Color
B -Blue Y -Yellow
Backlight
N -No Back light E -EL
MODE
M - transmissive F - transflective R - Reflective N - Negative
LCD type
P - FSTN Paper white F - FSTN N - TN
Series code 161600- Dot number =160 x 160 dots, 00 Type Model type
CM - Character Module GM - Graphic Module TG -Slim TAB/COG Module TGX-Custom Slim TAB/COG Module
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14. PRECAUTION FOR USING LCM
1. LIQUID CRYSTAL DISPLAY (LCD) LCD is made up of glass, organic sealant, organic fluid, and polymer based polarizers. The following precautions should be taken when handing, (1). Keep the temperature within range of use and storage. Excessive temperature and humidity could cause polarization degredation, polarizer peel off or bubble. (2). Do not contact the exposed polarizers with anything harder than an HB pencil lead. To clean dust off the display surface, wipe gently with cotton, chamois or other soft material soaked in petroleum benzin. (3). Wipe off saliva or water drops immediately. Contact with water over a long period of time may cause polarizer deformation or color fading, while an active LCD with water condensation on its surface will cause corrosion of ITO electrodes. (4). Glass can be easily chipped or cracked from rough handling, especially at corners and edges. (5). Do not drive LCD with DC voltage. 2. Liquid Crystal Display Modules 2.1 Mechanical Considerations LCM are assembled and adjusted with a high degree of precision. Avoid excessive shocks and do not make any alterations or modifications. The following should be noted. (1). Do not tamper in any way with the tabs on the metal frame. (2). Do not modify the PCB by drilling extra holes, changing its outline, moving its components or modifying its pattern. (3). Do not touch the elastomer connector, especially insert an backlight panel (for example, EL). (4). When mounting a LCM make sure that the PCB is not under any stress such as bending or twisting . Elastomer contacts are very delicate and missing pixels could result from slight dislocation of any of the elements. (5). Avoid pressing on the metal bezel, otherwise the elastomer connector could be deformed and lose contact, resulting in missing pixels. 2.2. Static Electricity LCM contains CMOS LSI's and the same precaution for such devices should apply, namely (1). The operator should be grounded whenever he/she comes into contact with the module. Never touch any of the conductive parts such as the LSI pads, the copper leads on the PCB and the interface terminals with any parts of the human body. (2). The modules should be kept in antistatic bags or other containers resistant to static for storage. (3). Only properly grounded soldering irons should be used. (4). If an electric screwdriver is used, it should be well grounded and shielded from commutator sparks. (5) The normal static prevention measures should be observed for work clothes and working benches; for the latter conductive (rubber) mat is recommended. (6). Since dry air is inductive to static, a relative humidity of 50-60% is recommended. 2.3 Soldering (1). Solder only to the I/O terminals. (2). Use only soldering irons with proper grounding and no leakage. (3). Soldering temperature : 280C 10C (4). Soldering time: 3 to 4 sec. (5). Use eutectic solder with resin flux fill. (6). If flux is used, the LCD surface should be covered to avoid flux spatters. Flux residue should be removed after wards. 2.4 Operation (1). The viewing angle can be adjusted by varying the LCD driving voltage V0. (2). Driving voltage should be kept within specified range; excess voltage shortens display life. (3). Response time increases with decrease in temperature. (4). Display may turn black or dark blue at temperatures above its operational range; this is (however not pressing on the viewing area) may cause the segments to appear "fractured". (5). Mechanical disturbance during operation (such as pressing on the viewing area) may cause the segments to appear "fractured". 2.5 Storage If any fluid leaks out of a damaged glass cell, wash off any human part that comes into contact with soap and water. Never swallow the fluid. The toxicity is extremely low but caution should be exercised at all the time. 2.6 Limited Warranty Unless otherwise agreed between DATA IMAGE and customer, DATA IMAGE will replace or repair any of its LCD and LCM which is found to be defective electrically and visually when inspected in accordance with DATA IMAGE acceptance standards, for a period on one year from date of shipment. Confirmation of such date shall be based on freight documents. The warranty liability of DATA IMAGE is limited to repair and/or replacement on the terms set forth above. DATA IMAGE will not responsible for any subsequent or consequential events.
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15
OUTLINE DRAWING
(Back)
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16. PACKAGE INFORMATION
Anti-static bag
LCM
Carton
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