AQM1696A AZDISPLAYS | Alldatasheet
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※ PART NO. : AQM1696A-FLW-FBH (AZ DISPLAYS) VER1.0 APPROVAL COMPANY CHOP CUSTOMER COMMENTS AZ DISPLAYS ENGINEERING APPROVAL DESIGNED BY CHECKED BY APPROVED BY BOBBY JAY GUZHENGHUA
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 1 REVISION RECORD REVISION REVISION DATE PAGE CONTENTS VER1.0 16/12-2010 FIRST ISSUE
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 2 ※ CONTENTS
1.0 GENERAL SPECIFICATION
2.0 ABSOLUTE MAXIMUM RATINGS
3.0 ELECTRICAL CHARACTERISTICS
4.0 OPTICAL CHARACTERISTICS
5.0 BLOCK DIAGRAM
6.0 PIN ASSIGNMENT
7.0 POWER SUPPLY
8.0 TIMING CHARACTERISTICS
9.0 MECHANICAL DIAGRAM
10.0 RELIABILITY TEST
11.0 INSTRUCTION DESCRIPTION
12.0 PRECAUTION FOR USING LCM
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 3
1.0 GENERAL SPECS
- Display Format 160*96 Dot matrix 2. Power Supply 3.0V 3. Module outline dimension 98.48mm(W) x 67.79mm(H) x 9.2mm(D) 4. Viewing Aera(W*H) 74.31mm(W) x 44.87mm(H) 5. Dot Size (W*H) 0.40mm(W) x 0.38mm(H) 6. Dot Pitch (W*H) 0.43mm(W) x 0.41mm(H) 7. Viewing Direction 6:00 O’Clock 8. Driving Method 1/96 Duty,1/11Bias 9. Control IC ST7528 or compatible 10. Display Mode FSTN/Positive/Transflective 11. Backlight Options White LED /Side 12. Operating temperature -20ºC ~ 70ºC 13. Storage temperature -30ºC ~ 80ºC 14. ROHS ROHS compliant
Item Symbol Min Typ Max Unit Operating temperature Top -20 - 70 ºC Storage temperature Tst -30 - 80 ºC Input voltage Vin -0.5 - Vdd+0.5 V Supply voltage for logic Vdd- Vss -0.5 - 3.6 V Supply voltage for LCD driving Vout-Vss -0.5 20 V
3.1 Electrical Characteristics Of LCM
Item Symbol Condition Min Typ Max Unit Power Supply Voltage VDD Ta=25ºC 2.8 3.0 3.2 V Power Supply Current Idd Vdd=3.0V -- 1.4 2.0 mA Input voltage (high) Vih H level 0.7*VDD -- VDD V Input voltage (low) Vil L level VSS -- 0.3*VDD V -20ºC 12.8 13.0 13.2 25ºC 12.3 12.5 12.7 Recommended LC Driving Voltage V0-Vss 70ºC 11.8 12.0 12.2 V
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 4
3.2 The Characteristics Of Backlight
3.2.1 Electrical-Optical Characteristics Of LED Backlight (Ta=25ºC)
Item Symbol Condition Min Typ Max Unit Forward Voltage(1) Vf If=90mA 2.9 3.1 3.3 V Reverse Voltage Vr - -- -- 5 V Luminance(2) Lv If=90mA 200 240 -- cd/ ㎡ Uniformity(3) Δ (Lvmin/Lvmax)% 70% -- -- - Peak wave length λp - -- -- -- nm x If=90mA 0.29 -- 0.34 um Chroma coordinate y If=90mA 0.29 -- 0.34 um Lifetime(4) - If=90mA - 20000 - Hours NOTE: (1) Forward voltage means voltage applied directly to the LED (2)The luminance is the average value of 5 points,The measurement instrument is BM-7 luminance colorimeter.The diameter of aperture is Φ5mm (3) Luminance means the backlight brightness without LCD. (4) Backlight lifetime means luminance value larger than half of the original after 20000 hours’ continuous working.
3.2.2 Backlight Control Circuit FOR LCM(1x6=6 pcs LED)
A:Vin=5.0V If=90mA(TYPE.) K:0V
3.2.3 LED Characteristics Curves(for single led)
1.Forward current VS.Ambient Temperature -30 (mA)Forward Current5 100 Ambient Temperature 2505 0 8 0 45 Forward Voltage Forward Current(mA) 2.Forward current VS Forward Voltage
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 5 Item Symbol Condition Min Typ Max Unit Viewing angle (Left - right) θ2 Cr ≥ 2.0 -35 - 35 deg Viewing angle (Up-down) θ1 Cr ≥ 2.0 -25 - 40 deg Contrast Ratio Cr θ1=0°, θ2=0° - 6 - Response time (rise) Tr θ1=0°, θ2=0° - 180 300 ms Response time (fall) Tf θ1=0°, θ2=0° - 150 250 ms (1). Definition of Optical Response Time (2). Definition of Contrast Ratio
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 6 (3). Definition of Viewing Angle θ2 and θ1 E VSS LCD160X96 SEG0SEG159 COM50 COM95 COM0 COM49 SEG160 COM50COM46 13 0 LED BACKLIGHT A(5.0V) K
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 7 Pin No. Symbol Function
1 CSB Chip select signal
2 RST Reset signal
3 A0 Display/Control data select signal
4 RW Write- Read signal
5 E Enable signal
6 DB0 Data bit0
7 DB1 Data bit1
8 DB2 Data bit2
9 DB3 Data bit3
10 DB4 Data bit4
11 DB5 Data bit5
12 DB6 Data bit6
13 DB7 Data bit7
14 VDD Logic power supply
15 VSS Ground
16 VOUT LCD power supply
17 VSS Ground
18 VSS Ground
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 8
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 9 For more details,please refer to IC specification.
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 10 160*96 DOTS COM95 COM0 SEG159 SEG0 DETAIL C(NOT SCALED) SILICONE(COVER IC) NO EXCEED LCD BACK POLARIZER 1.59mm THICKNESS CAN COMPRESSED TO 0.5mm. 0.79mm THICKNESS CAN COMPRESSED TO 0.25mm. THE Borde With 0.35mm Thickness 2mm Around ALIGNMENT PADS ON BOTH SIDES*2 COVER WITH SILICONE DETAIL B(5:1) CAPACITOR*4 0.1uF/25V/0805 Note:Unspecified Tolerance:±0.2mm A 1 2 3 4 5 6 78 2 3 4 5 6 B C D E F C D E F A B 7 8
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 11 NO Test Item D escription T est Condition R emark
1 High temperature
temperature Under normal humidity for a long time Check normal performance 80 ºC 96hrs
2 Low temperature
Applying the low storage temperature Under normal humidity for a long time Check normal performance -30ºC 96hrs
3 High temperature
Apply the electric stress(Voltage and current) Under high temperature for a long time 70 ºC 96hrs Note1
4 Low temperature
Apply the electric stress Under low temperature for a long time -20ºC 96hrs Note1 Note2 High temperature/High Humidity Storage Apply high temperature and high humidity storage for a long time 90% RH 40ºC 96hrs Note2 Environmental Test Temperature Cycle Apply the low and high temperature cycle 30min 10min 30min 10min 1 cycle Check normal performance -30ºC/80ºC 10 cycle Vibration test(Package state) Applying vibration to product check normal performance Freq:10~55~10H z Amplitude:0.75m m 1cycle time:1min X.Y.Z every direction for 15 cycles Mechanical Test Shock test(package state) Applying shock to product check normal performance Drop them through 70cm height to strike horizontal plane
9 Other
Note1:Normal operations condition (25ºC±5ºC). Note2:Pay attention to keep dewdrops from the module during this test.
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 12
11.0 DISPLAY CONTROL INSTRUCTION
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 13
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 14 For more details,please refer to IC specification.
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 15
- When design the product with this LCD Module, make sure the viewing angle matches to its purpose of usage. 2. As LCD panel is made of glass substrate, Dropping the LCD module or banging it against hard objects may cause cracking or fragmentation. Especially at corners and edges. 3. Although the polarizer of this LCD Module has the anti-glare coating, always be careful not to scratch its surface. Use of a plastic cover is recommended to protect the surface of polarizer. 4. If the LCD module is stored at below specified temperature, the LC material may freeze and be deteriorated. If it is stored at above specified temperature, the molecular orientation of the LC material may change to Liquid state and it may not revert to its original state. Excessive temperature and humidity could cause polarizer peel off or bubble. Therefore, the LCD module should always be stored within specified temperature range. 5. Saliva or water droplets must be wiped off immediately as those may leave stains or cause color changes if remained for a long time. Water vapor will cause corrosion of ITO electrodes. 6. If the surface of LCD panel needs to be cleaned, wipe it swiftly with cotton or other soft cloth. If it is not still clean enough, blow a breath on the surface and wipe again. 7. The module should be driven according to the specified ratings to avoid malfunction and permanent damage. Applying DC voltage cause a rapid deterioration of LC material. Make sure to apply alternating waveform by continuous application of the M signal. Especially the power ON/OFF sequence should be kept to avoid latchup of driver LSIs and DC charge up to LCD panel. 8. Mechanical Considerations a) 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. b) Do not tamper in any way with the tabs on the metal frame. c) Do not modify the PCB by drilling extra holes, changing its outline, moving its components or modifying its pattern. d) Do not touch the elastomer connector; especially insert a backlight panel (for example, EL). e) When mounting a LCM makes 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. f) Avoid pressing on the metal bezel, otherwise the elastomer connector could be deformed and lose contact, resulting in missing pixels. 9. Static Electricity a) Operator Ware the electrostatics shielded clothes because human body may be statically charged if not ware shielded clothes. 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. b) Equipment There is a possibility that the static electricity is charged to the equipment, which has a function of peeling or friction action (ex: conveyer, soldering iron, working table). Earth the equipment through proper resistance (electrostatic earth: 1x108 ohm).
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 16 Only properly grounded soldering irons should be used. If an electric screwdriver is used, it should be well grounded and shielded from commutator sparks. The normal static prevention measures should be observed for work clothes and working benches; for the latter conductive (rubber) mat is recommended. c) Floor Floor is the important part to drain static electricity, which is generated by operators or equipment. There is a possibility that charged static electricity is not properly drained in case of insulating floor. Set the electrostatic earth (electrostatic earth: 1x108 ohm). d) Humidity Proper humidity helps in reducing the chance of generating electrostatic charges. Humidity should be kept over 50%RH. e) Transportation/storage The storage materials also need to be anti-static treated because there is a possibility that the human body or storage materials such as containers may be statically charged by friction or peeling. The modules should be kept in antistatic bags or other containers resistant to static for storage. f) Soldering Solder only to the I/O terminals.Use only soldering irons with proper grounding and no leakage. Soldering temperature : 280°C ± 10°C Soldering time: 3 to 4 sec. Use eutectic solder with resin flux fill. If flux is used, the LCD surface should be covered to avoid flux spatters. Flux residue should be removed afterwards. g) Others The laminator (protective film) is attached on the surface of LCD panel to prevent it from scratches or stains. It should be peeled off slowly using static eliminator. Static eliminator should also be installed to the workbench to prevent LCD module from static charge. 10. Operation a) Driving voltage should be kept within specified range; excess voltage shortens display life. b) Response time increases with decrease in temperature. c) 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”. d) Mechanical disturbance during operation (such as pressing on the viewing area) may cause the segments to appear “fractured”. 11. If any fluid leaks out of a damaged glass cell, wash off any human part that comes into contact with soap and water. The toxicity is extremely low but caution should be exercised at all the time. 12. Disassembling the LCD module can cause permanent damage and it should be strictly avoided. 13. LCD retains the display pattern when it is applied for long time (Image retention). To prevent image retention, do not apply the fixed pattern for a long time. Image retention is not a deterioration of LCD. It will be removed after display pattern is changed. 14. Do not use any materials, which emit gas from epoxy resin (hardener for amine) and silicone adhesive agent
AQM1696A-FLW-FBH(AZ DISPLAYS) GRAPHIC MODULE VER1.0 AZ DISPLAYS 17 (dealcohol or deoxym) to prevent discoloration of polarizer due to gas. 15. Avoid the exposure of the module to the direct sunlight or strong ultraviolet light for a long time. 16. The brightness of LCD module may be affected by the routing of CCFL cables due to leakage to the chassis through coupling effect. The inverter circuit needs to be designed taking the level of leakage current into consideration. Thorough evaluation is needed for LCD module and inverter built into its host equipment to ensure specified brig htness.