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IN44780U Datasheet, PDF (1/10 Pages) Integral Corp. – DOT MATRIX LIQUID CRYSTAL DISPLAY CONTROLLER & DRIVER
IN44780U
DOT MATRIX LIQUID CRYSTAL DISPLAY CONTROLLER &
DRIVER
FEATURES
FUNCTION
• Internal Memory
- Character Generator ROM: 8320 bits
- Character Generator RAM: 512 bit
- Display Data RAM: 80 x 8 bits for 80 digits
• Internal automatic reset circuit at power ON
• Internal oscillation circuit
• Power Supply Voltage: +5V ± 10%
• LCD Driving Voltage for display: 0 ~ -5V(V5)
• Duty factor selection (sselected by programs)
1/8 duty: 5 x 7 dots format 1 line,
1/11 duty: 5 x 10 dots format 1 line
1/16 duty: 5 x 7 dots format 2 line
• Bare chip available
• Pin-to-Pin replacement for KS0066, HD44780,
SED1278
• Character type dot matrix LCD driver & controller
• Internal driver: 16 common and 40 segment signal
output
• Display character format: 5 x 7 dots + cursor,
5 x 10 dots + cursor
• Easy interface with a 4-bit or 8-bit MPU
• Display character pattern:
5 x 7 dots format: 192 kinds, 5 x 10 dots format: 32
kinds
• The special character pattern can be programmable by
Character Generator RAM directly
• A customer character pattern can be programmable by
mask
option
• Wide range of instruction function:
Display clear, Cursor home, Display ON/OFF, Display
shift
Cursor ON/OFF, Display character blink, Cursor shift
DESCRIPTION
The IZ44780 is a dot matrix liquid crystal display controller & driver LSI that displays
alphanumerics, characters and symbols.
It drives dot matrix LCD under microcomputer control. All functions needed for dot matrix
LCD drive are internally provided
on one chip.
ODERING INFORMATION
Type
CGROM
IZ44780 – 00
IZ44780 – 01
IZ44780 – XX
English
English
Numberal
Russian
Numberal
Japanese
Custom font (XX – ROM code)
ABSOLUTE MAXIMUM RATINGS
Characteristic
Symbol
Value
Unit
Power Supply Voltage
Driver Supply Voltage
Input Voltage
Operating Temperature
Storage Temperature
VDD
V1 ~ V5
VI
Ta
Tstg
- 0.3 ~ 7.0
V
VDD - 13.5 ~ VDD + 0.3
V
-0.3 ~VDD + 0.3
V
- 20 ~ + 75
oC
- 55 ~ + 125
oC
Notes: Must keep the relation of VDD ≥ V1 ≥ V2 ≥ V3 ≥ V4 ≥ V5
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