English
Language : 

MN103SJ7 Datasheet, PDF (1/16 Pages) Panasonic Semiconductor – 32-bit Single-chip Microcontroller
MN103SJ7/N0/N1/N2/N4/N5/N6 Series
32-bit Single-chip Microcontroller
 Overview
The MN103S is a 32-bit microcontroller combining ease of use intended for programs development in the C language with a simple,
high-performance architecture made possible through pursuit of cost performance.
Built around a compact 32-bit CPU with a basic instruction word length of 1 byte, this LSI includes internal memory for instructions
and data, DMA controller, a clock generator, bus controller, interrupt controller, watchdog timer, standard peripheral circuitry such as timers
and serial interfaces, PWM circuit best suited to controlling 3-phase motors and A/D converters for motor position control. The MN103S
Series' high-speed CPU coupled with abundance of peripheral features provides an easy means of developing low-cost, high-performance
and multifunctional system on LSI for motor and power control applications requiring fast response - a feature previously unavailable with
conventional microcontrollers.
 Product Summary
This datasheet describes the following model.
Model
ROM
Size
RAM
Size
Pins
Timer
(8bit/
16bit)
PWM
Serial
I/F
A/D
VGA
Package
MN103SFJ7A 32 KB 2 KB TQFP48 8/1
1
2
2
—
TQFP48-P-0707B
MN103SFN0D
4KB
64 KB
MN103SFN0X
8 KB QFP44
QFP044-P-1010F
8/2
1
2
2
—
MN103SFN0G
6 KB TQFP48
TQFP48-P-0707B
128 KB
MN103SFN0Y
8 KB
MN103SFN1D
4 KB
64 KB
MN103SFN1X
8 KB
TQFP64 12/3
2
3
2
—
TQFP064-P-1010C
MN103SFN1G
6 KB
128 KB
MN103SFN1Y
8 KB
MN103SFN2D
4 KB
64 KB
MN103SFN2X
8 KB
TQFP80 12/5
2
3
2
—
TQFP080-P-1212D
MN103SFN2G
6 KB
128 KB
MN103SFN2Y
8 KB
MN103SFN4D
4 KB
64 KB
MN103SFN4X
8 KB QFP44
QFP044-P-1010F
8/2
1
2
2
1
MN103SFN4G
6 KB TQFP48
TQFP48-P-0707B
128 KB
MN103SFN4Y
8 KB
MN103SFN5D
4 KB
64 KB
MN103SFN5X
8 KB
TQFP64 12/3
2
3
2
2
TQFP064-P-1010C
MN103SFN5G
6 KB
128 KB
MN103SFN5Y
8 KB
MN103SFN6D
4 KB
64 KB
MN103SFN6X
8 KB
TQFP80 12/5
2
3
2
2
TQFP080-P-1212D
MN103SFN6G
6 KB
128 KB
MN103SFN6Y
8 KB
Publication date: September 2013
Ver. DEM
1