AC-161JYILY-70 [ZETTLER]

SPECIFICATIONS FOR LCD MODULE; 规格液晶模块
AC-161JYILY-70
型号: AC-161JYILY-70
厂家: ZETTLER ELECTRONICS    ZETTLER ELECTRONICS
描述:

SPECIFICATIONS FOR LCD MODULE
规格液晶模块

CD
文件: 总17页 (文件大小:257K)
中文:  中文翻译
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A M P I R E  
SPECIFICATIONS FOR  
LCD MODULE  
CUSTOMER  
CUSTOMER PART NO.  
AMPIRE PART NO.  
APPROVED BY  
DATE  
AC-161JYILY-70  
APPROVED BY  
CHECKED BY  
ORGANIZED BY  
Date : 2006/9/7  
AMPIRE CO., LTD.  
1
RECORD OF REVISION  
Revision Date  
Page  
Contents  
Editor  
2006/6/7  
2006/9/7  
-
New Release  
Modify Mechanical Data  
Tony  
3
Sunglin  
Date : 2006/9/7  
AMPIRE CO., LTD.  
2
1 FEATURES  
(1) Display format : 16 characters × 1 lines  
(2) Construction : LCD panel, Bezel, Zebra ,Yellow-green LED back-light and PCB.  
(3) Display type ; STN ,Yellow-green mode , Transflective, 6 o’clock view.  
(4) Controller : ST7066-0A.  
(5) 5V single power input.  
(6) Normal temperature type.  
(7) ROHS compliant.  
2 MECHANICAL DATA  
Parameter  
Dot size  
Stand Value  
1.152 (W) × 1.765(H)  
1.212(W) × 1.825(H)  
Unit  
mm  
mm  
mm  
mm  
mm  
Dot pitch  
Character size  
Viewing area  
Module size  
6.0(W) × 14.54(H)  
120.0(W) × 23.0(H)  
151.0(W) × 40.0(H) × 14.7 max (T)  
3 ABSOLUTE MAXIMUM RATINGS  
Parameter  
Logic Circuit Supply Voltage  
LCD Driving Voltage  
Input Voltage  
Symbol  
Min  
Max  
7.0  
Unit  
V
VDD-VSS  
VDD-VO  
VI  
-0.3  
-0.3  
-0.3  
0
10.0  
V
VDD+0.3  
50  
V
Normal temp. type  
Operating Temp.  
Storage Temp.  
TOP  
°C  
°C  
TSTG  
-20  
70  
Date : 2006/9/7  
AMPIRE CO., LTD.  
3
4 ELECTRO-OPTICAL CHARACTERISTICS  
Parameter  
Symbol  
Condition Min  
Typ  
Max  
Unit  
Note  
----- Electronic Characteristics -----  
Logic Circuit  
Supply Voltage  
VDD-VSS  
VDD-VO  
--  
2.7  
--  
5.5  
V
V
LCD Driving  
Voltage  
--  
4.75  
--  
--  
5.0  
--  
--  
5.25  
0 °C  
25 °C  
50 °C  
--  
0 ~ 50 °C for  
Normal Temp.  
type  
( STN )  
--  
Input Voltage  
VIH  
VIL  
IDD  
0.7 VDD  
VSS  
--  
--  
VDD  
0.3 VDD  
2.4  
V
V
--  
--  
Logic Supply  
Current  
VDD = 5V  
2.0  
mA  
----- Optical Characteristics ( STN ) -----  
Contrast  
Rise Time  
Fall Time  
CR  
tr  
--  
--  
--  
--  
--  
--  
--  
--  
5
--  
300  
300  
--  
Note 1  
Note 2  
25°C  
25°C  
200  
200  
40  
ms  
ms  
tf  
25°C  
Viewing Angle  
Range  
Note 3  
θ f  
θ b  
θ l  
θ r  
fF  
25°C &  
CR2  
Deg.  
Hz  
35  
--  
35  
--  
35  
--  
Frame Frequency  
64  
--  
25°C  
-----Array type LED Back-light Characteristics -----  
Parameter  
Symbol  
Condition Min  
Typ  
Max  
Unit  
Note  
Forward Voltage  
VF  
--  
--  
4.05  
4.3  
V
Supply Voltage  
between A&K  
Forward Current  
IF  
VF=4.05V  
VF=4.05V  
--  
--  
420  
30  
--  
--  
mA  
2
LCM Luminous intensity  
cd/m  
A
K
* LED Dice number = 2×42=84  
Date : 2006/9/7  
AMPIRE CO., LTD.  
4
(NOTE 1) Contrast ratio :CR = (Brightness in OFF state) / (Brightness in ON state)  
( NOTE 2 ) Response time :  
(NOTE 3) Viewing angle  
Date : 2006/9/7  
AMPIRE CO., LTD.  
5
5 BLOCK DIAGRAM & POWER SUPPLY  
Interface  
COM1  
COM8  
16 Character x 1 Line  
SEG1 ~ SEG40  
COM9  
E
R/W  
RS  
COM16  
DB0~DB7  
VDD  
VO  
VSS  
ST7066  
VDD(+5V)  
LCD Bias  
Circuit  
R1  
VR  
VO  
R2  
A
4.05V  
K
LED -BA CK LIG H T  
VSS  
LCD Module  
5V Power Input  
Date : 2006/9/7  
AMPIRE CO., LTD.  
6
6 INTERFACE  
No.  
1
Symbol  
VSS  
VDD  
VO  
Function  
Ground (0V)  
2
Supply Voltage for Logic (+5V )  
Contrast Adjustment  
Data/Instruction Select  
Read/Write Select  
Enable Signal  
Data Bus  
3
4
RS  
5
R/W  
E
6
7
DB0  
DB1  
DB2  
DB3  
DB4  
DB5  
DB6  
DB7  
8
Data Bus  
9
Data Bus  
10  
11  
12  
13  
14  
Data Bus  
Data Bus  
Data Bus  
Data Bus  
Data Bus  
Date : 2006/9/7  
AMPIRE CO., LTD.  
7
7 TIMING CHARACTERISTICS  
Write Operation  
Item  
Symbol  
VDD=5V  
VDD=3.3V  
Min Max  
Unit  
Min  
Max  
--  
Enable cycle time  
Enable pulse width  
Enable rise/fall time  
tcycE  
PWEH  
tEr,tEf  
tAS  
500  
230  
--  
1000  
450  
--  
--  
--  
ns  
--  
20  
--  
25  
--  
Address set-up time  
(RS, R/W to E)  
40  
60  
Address hold time  
Data set-up time  
Data hold time  
tAH  
tDSW  
tH  
10  
80  
10  
--  
--  
--  
20  
195  
10  
--  
--  
--  
Date : 2006/9/7  
AMPIRE CO., LTD.  
8
Read Operation  
Item  
Symbol  
VDD=5V  
VDD=3.3V  
Min Max  
Unit  
Min  
Max  
--  
Enable cycle time  
tcycE  
PWEH  
tEr,tEf  
tAS  
500  
230  
--  
1000  
450  
--  
--  
--  
ns  
Enable pulse width  
Enable rise/fall time  
--  
20  
--  
25  
--  
Address set-up time  
(RS, R/W to E)  
40  
60  
Address hold time  
Data delay time  
Data hold time  
tAH  
10  
--  
5
--  
120  
--  
20  
--  
5
--  
360  
--  
tDDR  
tDRH  
Date : 2006/9/7  
AMPIRE CO., LTD.  
9
8 INSTRUCTION SET  
Instruction  
Code  
Description  
E.T.(fOSC  
=270  
KHZ)  
RS R/ D7 D6 D5 D4 D3 D2 D1 D0  
W
Clear  
Display  
0
0
0
0
0
0
0
0
0
1 Write”20H” to DDRAM and set DDRAM  
address to “00H” from AC  
1.53 ms  
Return  
Home  
0
0
0
0
0
0
0
0
1
-- Sets DD RAM address to “00H” from AC  
and return cursor to its original position if  
shifted. The contents of DDRAM are not  
changed.  
1.53 ms  
Entry Mode  
SET  
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1 I/D SH Assign cursor moving direction and enable  
the shift of entire display.  
39 µS  
39 µS  
Display  
ON/OFF  
Control  
D
C
B Set display (D), cursor (C), and blink of  
cursor (B) on/off control bit.  
Cursor or  
Display  
Shift  
0
0
0
0
0
0
0
0
0
1
S/ R/ -- -- Set cursor moving and display shift control  
39 µS  
39 µS  
C
L
bit, and the direction, without changing of  
DDRAM data.  
Function  
Set  
1 DL N  
F
-- -- Sets interface data length (DL:8-bit/4-bit),  
number of display lines (N:2-line/1-line)  
and , display font type (F:5x11dots/5x8  
dost).  
Set CG  
RAM  
Address  
0
0
0
0
0
1
0
1 AC AC AC AC AC AC Sets CG RAM address in address counter.  
39 µS  
39 µS  
0 µS  
5
4
3
2
1
0
Set DD  
RAM  
Address  
1 AC AC AC AC AC AC AC Sets DD RAM address in address counter.  
6
5
4
3
2
1
0
Read Busy  
Flag and  
Address  
BF AC AC AC AC AC AC AC Whether during internal operation or not  
6
5
4
3
2
1
0 can be known by reading BF. The contents  
of address counter can also be read.  
Write Data  
to RAM  
1
1
0
1
D7 D6 D5 D4 D3 D2 D1 D0 Writes data into internal RAM (DD RAM  
/CG RAM).  
43 µS  
43 µS  
Read Data  
from RAM  
D7 D6 D5 D4 D3 D2 D1 D0 Reads data from internal RAM (DD RAM  
/CG RAM).  
* “--“ : don’t care  
Note : When an MPU program with checking the Busy Flag(DB7) is made, it must be  
necesssary1/2Fosc is necessary for executing the next instruction by the falling edge of the ‘E’  
signal after the Busy Flag(DB7) goes to “LOW”.  
Date : 2006/9/7  
AMPIRE CO., LTD.  
10  
9 INITIALIZATION SEQUENCE  
10 DD RAM ADDRESS  
DIGIT  
1
2
3
4
5
6
7
8
9
10 11 12 13 14 15 16  
Display Position  
1 LINE 00 01 02 03 04 05 06 07 40 41 42 43 44 45 46 47  
DD RAM Address  
Date : 2006/9/7  
AMPIRE CO., LTD.  
11  
11 FONT TABLE  
Date : 2006/9/7  
AMPIRE CO., LTD.  
12  
12 QUALITY AND RELIABILITY  
12.1 TEST CONDITIONS  
Tests should be conducted under the following conditions :  
Ambient temperature : 25 ± 5°C  
Humidity  
: 60 ± 25% RH.  
12.2 SAMPLING PLAN  
Sampling method shall be in accordance with MIL-STD-105E , level II, normal  
single sampling plan .  
12.3 ACCEPTABLE QUALITY LEVEL  
A major defect is defined as one that could cause failure to or materially reduce the  
usability of the unit for its intended purpose. A minor defect is one that does not materially  
reduce the usability of the unit for its intended purpose or is an infringement from established  
standards and has no significant bearing on its effective use or operation.  
12.4 APPEARANCE  
An appearance test should be conducted by human sight at approximately 30 cm  
distance from the LCD module under flourescent light. The inspection area of LCD panel  
shall be within the range of following limits.  
Date : 2006/9/7  
AMPIRE CO., LTD.  
13  
12.5 INSPECTION QUALITY CRITERIA  
Item  
Description of defects  
Class of Acceptable level  
Defects  
Major  
Major  
(%)  
0.65  
1.5  
Function  
Dimension  
Short circuit or Pattern cut  
Deviation from drawings  
Black spots  
Ave . dia . D  
area A  
area B  
Minor  
2.5  
Disregard  
D0.2  
3
2
0
4
3
1
B
0.2<D0.3  
0.3<D0.4  
0.4<D  
Width W, Length L  
W0.03  
Black lines  
A
Minor  
2.5  
disregard  
3
1
4
1
0.03<W0.05  
0.05<W0.07 , L3.0  
See line criteria  
Bubbles in  
polarizer  
Color  
Average diameter D 0.2 < D < 0.5 mm  
for N = 4 , D > 0.5 for N = 1  
Minor  
Minor  
Minor  
Minor  
Minor  
Minor  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
Rainbow color or newton ring.  
uniformity  
Glass  
Obvious visible damage.  
See note 1  
Scratches  
Contrast  
ratio  
Response  
time  
See note 2  
Viewing  
angle  
See note 3  
Zone A active area  
Zone B viewing area  
Date : 2006/9/7  
AMPIRE CO., LTD.  
14  
12.6 RELIABILITY  
Test Item  
Test Conditions  
Note  
High Temperature Operation  
Low Temperature Operation  
High Temperature Storage  
Low Temperature Storage  
50±3°C , t=96 hrs  
0±3°C , t=96 hrs  
70±3°C , t=96 hrs  
-20±3°C , t=96 hrs  
1,2  
1,2  
-20°C ~ 25°C ~ 70°C  
30 m in. 5 min. 30 min. ( 1 cycle )  
Total 5 cycle  
Temperature Cycle  
Humidity Test  
1,2  
1,2  
2
40 °C, Humidity 90%, 96 hrs  
Sweep frequency : 10 ~ 55 ~ 10 Hz/1min  
Amplitude : 0.75mm  
Test direction : X.Y.Z/3 axis  
Duration : 30min/each axis  
Vibration Test (Packing)  
Note 1 : Condensation of water is not permitted on the module.  
Note 2 : The module should be inspected after 1 hour storage in normal conditions  
(15-35°C , 45-65%RH).  
Definitions of life end point :  
z
z
z
z
Current drain should be smaller than the specific value.  
Function of the module should be maintained.  
Appearance and display quality should not have degraded noticeably.  
Contrast ratio should be greater than 50% of the initial value.  
Date : 2006/9/7  
AMPIRE CO., LTD.  
15  
13 HANDLING PRECAUTIONS  
(1) A LCD module is a fragile item and should not be subjected to strong mechanical shocks.  
(2) Avoid applying pressure to the module surface. This will distort the glass and cause a  
change in color.  
(3) Under no circumstances should the position of the bezel tabs or their shape be modified.  
(4) Do not modify the display PCB in either shape or positioning of components.  
(5) Do not modify or move location of the zebra or heat seal connectors.  
(6) The device should only be soldered to during interfacing. Modification to other areas of  
the board should not be carried out.  
(7) In the event of LCD breakage and resultant leakage of fluid do not inhale, ingest or make  
contact with the skin. If contact is made rinse immediately.  
(8) When cleaning the module use a soft damp cloth with a mild solvent, such as Isopropyl or  
Ethyl alcohol. The use of water, ketone or aromatic is not permitted.  
(9) Prior to initial power up input signals should not be applied.  
(10) Protect the module against static electricity and observe appropriate anti-static  
precautions.  
Date : 2006/9/7  
AMPIRE CO., LTD.  
16  
14 OUTLINE DIMENSION  
Date : 2006/9/7  
AMPIRE CO., LTD.  
17  

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