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M30624FGMFP - 16-BIT SINGLE-CHIP MICROCOMPUTER

Download the M30624FGMFP datasheet PDF. This datasheet also covers the M30620M8A-XXXFP variant, as both devices belong to the same 16-bit single-chip microcomputer family and are provided as variant models within a single manufacturer datasheet.

Description

The M16C/62A group of single-chip microcomputers are built using the high-performance silicon gate CMOS process using a M16C/60 Series CPU core and are packaged in a 100-pin plastic molded QFP.

Features

  • Memory capacity ROM (See Figure 1.1.4. ROM Expansion) RAM 3K to 20K bytes.
  • Shortest instruction execution time 62.5ns (f(XIN)=16MHZ, VCC=5V) 100ns (f(XIN)=10MHZ, VCC=3V, with software one-wait) : Mask ROM, flash memory 5V version.
  • Supply voltage 4.2V to 5.5V (f(XIN)=16MHZ, without software wait) : Mask ROM, flash memory 5V version 2.7V to 5.5V (f(XIN)=10MHZ with software one-wait) : Mask ROM, flash memory 5V version.
  • Low power consumption 25.5mW ( f(XIN)=.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (M30620M8A-XXXFP_RenesasTechnology.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number M30624FGMFP
Manufacturer Renesas
File Size 3.75 MB
Description 16-BIT SINGLE-CHIP MICROCOMPUTER
Datasheet download datasheet M30624FGMFP Datasheet

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
Description Mitsubishi microcomputers M16C / 62A Group SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER Description The M16C/62A group of single-chip microcomputers are built using the high-performance silicon gate CMOS process using a M16C/60 Series CPU core and are packaged in a 100-pin plastic molded QFP. These single-chip microcomputers operate using sophisticated instructions featuring a high level of instruction efficiency. With 1M bytes of address space, they are capable of executing instructions at high speed. They also feature a built-in multiplier and DMAC, making them ideal for controlling office, communications, industrial equipment, and other high-speed processing applications.
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