參數(shù)資料
型號: ML9041A-XXACVWA
廠商: LAPIS SEMICONDUCTOR CO LTD
元件分類: 顯示控制器
英文描述: 17 X 100 DOTS DOT MAT LCD DRVR AND DSPL CTLR, UUC189
封裝: 10.62 X 2.55 MM, GOLD BUMP, DIE-189
文件頁數(shù): 64/65頁
文件大?。?/td> 690K
代理商: ML9041A-XXACVWA
PEDL9041A-02
OKI Semiconductor
ML9041A-xxA/xxB
7/64
ABSOLUTE MAXIMUM RATINGS
(GND = 0 V)
Parameter
Symbol
Condition
Rating
Unit
Applicable pins
Supply Voltage
V
DD
Ta = 25°C
–0.3 to +6.5
V
DD–GND
LCD Driving Voltage
V
1, V2, V3,
V
4, V5
Ta = 25°C
V
DD–7.5 to VDD+0.3
V
1, V4, V5, V5IN, V2, V3A, V3B
Input Voltage
V
I
Ta = 25°C
–0.3 to V
DD+0.3
V
R/W, E, SHT, CSR, S/P,
SSR, Sl, RS
0, RS1, BE, CS,
T
1 to T3, DB0 to DB7, VIN
Storage Temperature
T
STG
–55 to +150
°C
RECOMMENDED OPERATING CONDITIONS
(GND = 0 V)
Parameter
Symbol
Condition
Range
Unit
Applicable pins
Supply Voltage
V
DD
2.7 to 5.5
V
DD–GND
LCD Driving Voltage
V
DD–V5
(See Note)
3.3 to 7.0
V
DD–V5
(V
5IN)
Voltage Multipler
Operating Voltage
V
MUL
BE = “1”
2.7 to 3.5
V
DD–VIN
Operating Temperature
T
op
–40 to +85
°C
Note:
This voltage should be applied across V
DD and V5. The following voltages are output to the V1, V2,
V
3A (V3B) and V4 pins:
1/4 bias
V
1 = {VDD – (VDD – V5)/4} ±0.15 V
V
2 = V3B = {VDD – (VDD – V5)/2} ±0.15 V
V
4 = {VDD – 3 × (VDD – V5)/4 } ±0.15 V
1/5 bias
V
1 = {VDD – (VDD – V5)/5} ±0.15 V
V
2 = {VDD – 2 × (VDD – V5)/5} ±0.15 V
V
3A = V3B = {VDD – 3 × (VDD – V5)/5} ±0.15 V
V
4 = {VDD – 4 × (VDD – V5)/5} ±0.15 V
The voltages at the V
1, V2, V3A (V3B), V4 and V5 pins should satisfy
V
DD > V1 > V2 > V3A (V3B) > V4 > V5.
(Higher
→ Lower)
* If the chip is attached on a substrate using COG technology, the chip tends to be susceptible
to electrical characteristics of the chip due to trace resistance on the glass substrate. It is
recommended to use the chip by confirming that it operates on the glass substrate properly.
Trace resistance, especially, V
DD and VSS trace resistance, between the chip on the LCD
panel and the flexible cable should be designed as low as possible. Trace resistance that
cannot be very well decreased, larger size of the LCD panel, or greater trace capacitance
between the microcontroller and the ML9041A device can cause device malfunction. In order
to avoid the device malfunction, power noise should be reduced by serial interfacing of the
microcontroller and the ML9041A device.
* Do not apply short-circuiting across output pins and across an output pin and an input/output
pin or the power supply pin in the output mode.
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