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LC65F1306A Datasheet(PDF) 3 Page - Sanyo Semicon Device

Part No. LC65F1306A
Description  4-Bit Single-Chip CMOS Microcontroller for Small-Scale Control Applications
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Manufacturer  SANYO [Sanyo Semicon Device]
Direct Link  https://www.sanyo-av.com/us/
Logo SANYO - Sanyo Semicon Device

LC65F1306A Datasheet(HTML) 3 Page - Sanyo Semicon Device

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LC65F1306A
No.6829-3/22
Function Table
Parameter
LC651306A/04A/02A/01A
LC65F1306A
ROM
6144
× 8 bits (1306A)
4096
× 8 bits (1304A)
2048
× 8 bits (1302A)
1024
× 8 bits (1301A)
6144
× 8 bits
Memory
RAM
256
× 4 bits
(1306A/04A/02A/01A)
256
× 4 bits
Instruction set
81
81
Instructions
Table reference
Supported
Supported
Interrupt
1 external, 1 internal
1 external, 1 internal
Timer
4-bit variable prescaler + 8-bit
timers
4-bit variable prescaler + 8-bit
timers
Stack level
8
8
On-chip
functions
Standby function
Standby mode by the HALT
instruction supported
Standby mode by the HALT
instruction supported
Port number
18 I/O port pins
22 I/O port pins
Serial port
Input and output in 4 or 8 bit
units
Input and output in 4 or 8 bit
units
I/O
voltage
capacity
15 V max.
15 V max.
Output current
10 mA typ.
20 mA max.
10 mA typ.
20 mA max.
I/O circuit type
Open
drain
(N-channel)
or
pull-up resistor output option
can be specified in 1- bit unit.
Open drain (N-channel)
Output
level
at
reset
High or low level output can be selected in port unit (ports C and D
only)
I/O ports
Square wave output
Supported
Supported
Minimum
cycle
time
0.92
µs (VDD ≥ 2.5 V)
0.92
µs (VDD ≥ 3.0 V)
Operating
temperature
-40
°C to +85°C
0
°C to +85°C (when writing)
-20
°C to +85°C (when reading)
Supply voltage
2.5 to 6 V
3.0 to 5.5 V
Characteristics
Supply current
1.5 mA typ.
3 mA typ.
Oscillator
RC (800 kHz typ.)
Ceramic (400k, 800k,1MHz,
4MHz)
RC (800 kHz typ.)
Ceramic (400k, 800k,1MHz,
4MHz)
Oscillator
Divider
circuit
option
1/1, 1/3, 1/4
1/1, 1/3, 1/4
Package
DIP24S MFP24S SSOP24
DIP24S MFP24S
Watchdog timer
Supported
Supported
Other items
OTP
Only DIP24S MFP24S
-
Note: The above oscillator and oscillator circuit constants are tentative. They will be announced as the recommended circuits
for these microcontrollers are determined. Please confirm the progress of these developments periodically.


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