参数资料
型号: ML9041-XXBCVWA
厂商: LAPIS SEMICONDUCTOR CO LTD
元件分类: 显示控制器
英文描述: 17 X 100 DOTS DOT MAT LCD DRVR AND DSPL CTLR, UUC175
封装: 10.62 X 2.55 MM, GOLD BUMP, DIE-175
文件页数: 29/61页
文件大小: 572K
代理商: ML9041-XXBCVWA
PEDL9041-03
1Semiconductor
ML9041-xxA/xxB
34/60
Instruction Codes
An instruction code is a signal sent from the CPU to access the ML9041. The ML9041 starts operation as
instructed by the code received. The busy status of the ML9041 is rather longer than the cycle time of the CPU,
since the internal processing of the ML9041 starts at a timing which does not affect the display on the LCD. In the
busy status (Busy Flag is “1”), the ML9041 executes the Busy Flag Read instruction only. Therefore, the CPU
should ensure that the Busy Flag is “0” before sending an instruction code to the ML9041.
1) Display Clear
RS1
1
RS0
0
R/
W
0
DB7
0
DB6
0
DB5
0
DB4
0
DB3
0
DB2
0
DB1
0
DB0
1
Instruction Code:
When this instruction is executed, the LCD display including arbitrator display is cleared and the I/D entry
mode is set to “Increment”. The value of “S” (Display shifting) remains unchanged. The position of the cursor
or blink being displayed moves to the left end of the LCD (or the left end of the line 1 in the 2-line display
mode).
Note:
All DDRAM and ABRAM data turn to “20” and “00” in hexadecimal, respectively. The value of the
address counter (ADC) turns to the one corresponding to the address “00” (hexadecimal) of the
DDRAM.
The execution time of this instruction is 1.52 ms (maximum) at an oscillation frequency of 270 kHz.
2) Cursor Home
RS1
1
RS0
0
R/
W
0
DB7
0
DB6
0
DB5
0
DB4
0
DB3
0
DB2
0
DB1
1
DB0
×
Instruction code:
×: Don’t Care
When this instruction is executed, the cursor or blink position moves to the left end of the LCD (or the left end
of line 1 in the 2-line display mode). If the display has been shifted, the display returns to the original display
position before shifting.
Note:
The value of the address counter (ADC) goes to the one corresponding to the address “00”
(hexadecimal) of the DDRAM).
The execution time of this instruction is 1.52 ms (maximum) at an oscillation frequency of 270 kHz.
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