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PDF HT16220 Data sheet ( Hoja de datos )

Número de pieza HT16220
Descripción RAM Mapping 32x8 LCD Controller for I/O xC
Fabricantes Holtek Semiconductor Inc 
Logotipo Holtek Semiconductor Inc Logotipo



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HT16220
RAM Mapping 32´8 LCD Controller for I/O mC
Features
· Operating voltage: 2.7V~5.2V
· External Crystal 32.768kHz oscillator
· 1/4 bias, 1/8 duty, frame frequency is 64Hz
· Max. 32´8 patterns, 8 commons, 32 segments
· Built-in internal resistor type bias generator
· 3-wire serial interface
· 8 kinds of time base/WDT selection
· Time base or WDT overflow output
· Built-in LCD display RAM
· R/W address auto increment
· Two selectable buzzer frequencies
(2kHz/4kHz)
· Power down command reduces power
consumption
· Software configuration feature
· Data mode and Command mode instructions
· Three data accessing modes
· VLCD pin to adjust LCD operating voltage
· Cascade application
General Description
HT16220 is a peripheral device specially de-
signed for I/O type mC used to expand the dis-
play capability. The max. display segment of
the device are 256 patterns (32´8). It also sup-
ports serial interface, buzzer sound, watchdog
timer or time base timer functions. The
HT16220 is a memory mapping and
multi-function LCD controller. The software
configuration feature of the HT16220 make it
suitable for multiple LCD applications includ-
ing LCD modules and display subsystems. Only
three lines are required for the interface be-
tween the host controller and the HT16220.
The HT162X series have many kinds of prod-
ucts that match various applications.
Selection Table
HT162X HT1620 HT1621 HT1622 HT16220 HT1623 HT1625 HT1626 HT1627 HT16270
COM
4 4 8 8 8 8 16 16 16
SEG
32 32 32 32 48 64 48 64 64
Built-in Osc.
ÖÖ
ÖÖÖÖ
Crystal Osc. Ö
Ö
Ö ÖÖÖ
Ö
1 April 21, 2000

1 page




HT16220 pdf
HT16220
Pad Description
Pad No.
1
2
3
4
5
6
7
8
9, 10
11
12
13~15
16~23
24~55
Pad Name
CS
RD
WR
DATA
VSS
VDD
VLCD
IRQ
BZ, BZ
OSCO
OSCI
T1~T3
COM0~COM7
SEG0~SEG31
I/O Description
Chip selection input with pull-high resistor. When the CS is
logic high, the data and command read from or written to the
I
HT16220 are disabled. The serial interface circuit is also reset
But if the CS is at logic low level and is input to the CS pad, the
data and command transmission between the host controller
and the HT16220 are all enabled.
READ clock input with pull-high resistor. Data in the RAM of
the HT16220 are clocked out on the rising edge of the RD sig-
I nal. The clocked out data will appear on the data line. The host
controller can use the next falling edge to latch the clocked out
data.
WRITE clock input with pull-high resistor. Data on the DATA
I line are latched into the HT16220 on the rising edge of the WR
signal.
I/O Serial data input/output with pull-high resistor
¾ Negative power supply, ground
¾ Positive power supply
I LCD operating voltage input pad.
O
Time base or watchdog timer overflow flag, NMOS open drain
output.
O 2kHz or 4kHz tone frequency output pair
O Crystal oscillator output pin
I Crystal oscillator input pin
I Not connected
O LCD common outputs
O LCD segment outputs
Absolute Maximum Ratings
Supply Voltage..............................-0.3V to 5.5V
Input Voltage ................VSS-0.3V to VDD+0.3V
Storage Temperature ................-50°C to 125°C
Operating Temperature .............-25°C to 75°C
Note: These are stress ratings only. Stresses exceeding the range specified under ²Absolute Maxi-
mum Ratings² may cause substantial damage to the device. Functional operation of this device
at other conditions beyond those listed in the specification is not implied and prolonged expo-
sure to extreme conditions may affect device reliability.
5 April 21, 2000

5 Page





HT16220 arduino
WRITE mode (command code : 1 0 1)
CS
HT16220
WR
D ATA
1 0 1 A5 A4 A3 A2 A1 A0 D0 D1 D2 D3
M e m o ry A d d re s s 1 (M A 1 )
D a ta (M A 1 )
1 0 1 A5 A4 A3 A2 A1 A0 D0 D1 D2 D3
M e m o ry A d d re s s 2 (M A 2 )
D a ta (M A 2 )
WRITE mode (successive address writing)
CS
WR
D ATA
1 0 1 A5 A4 A3 A2 A1 A0 D0 D1 D2 D3 D0 D1 D2 D3 D0 D1 D2 D3 D0 D1 D2 D3 D0
M e m o ry A d d re s s (M A )
D a ta (M A )
D a ta (M A + 1 )
D a ta (M A + 2 )
D a ta (M A + 3 )
11 April 21, 2000

11 Page







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