M30621MCM-F546GP MITSUBISHI [Mitsubishi Electric Semiconductor], M30621MCM-F546GP Datasheet
M30621MCM-F546GP
Related parts for M30621MCM-F546GP
M30621MCM-F546GP Summary of contents
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Description Description The M16C/62M (80-pin version) group (low voltage version) 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 80-pin plastic molded QFP. These single-chip microcomputers ...
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Description Pin Configuration Figures 1.1.1 show the pin configurations (top view). PIN CONFIGURATION (top view P10 ...
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Description Block Diagram Figure 1.1 block diagram of the M16C/62M (80-pin version) group (low voltage version). Block diagram of the M16C/62M (80-pin version) group (low voltage version) I/O ports Port P0 Internal peripheral functions Timer Timer TA0 (16 ...
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Description Performance Outline Table 1.1 performance outline of M16C/62M (80-pin version) group (low voltage version). Table 1.1.1. Performance outline of M16C/62M (80-pin version) group (low voltage version) Item Number of basic instructions Shortest instruction execution time Memory ROM ...
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... Mask ROM version Figure 1.1.3. ROM expansion The M16C/62M (80-pin version) group (low voltage version) products currently supported are listed in Table 1.1.2. Table 1.1.2. M16C/62M (80-pin version) group (low voltage version) Type No ROM capacity 128 Kbytes M30621MCM-XXXGP 256 Kbytes M30625MGM-XXXGP 128 Kbytes M30621FGMGP 256 Kbytes M30625FGMGP . ...
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Description Type No – Figure 1.1.4. Type No., memory size, and package 6 Mitsubishi microcomputers M16C / 62M (80-pin version) Group . (Low voltage version) SINGLE-CHIP ...
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Description About the M16C/62M (80-pin version) group (low voltage version) The M16C/62M (80-pin version) group (low voltage version) is packaged in a 80-pin plastic mold pack- age. The number of pins in comparison with the 100-pin package products is decreased. ...
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Electrical characteristics (Vcc = 3V) Table 1.20.1. Absolute maximum ratings Symbol Supply voltage Vcc AVcc Analog supply voltage RESET, CNV Input voltage ...
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Electrical characteristics (Vcc = 3V) Table 1.20.2. Recommended operating conditions (referenced – 40 Symbol Vcc Supply voltage AVcc Analog supply voltage Vss Supply voltage AVss Analog supply voltage ...
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Electrical characteristics (Vcc = 3V) Table 1.20.3. A-D conversion characteristics (referenced – specified) Symbol Parameter Resolution Absolute accuracy, sample & hold function not available (8 bit) R Ladder resistance LADDER ...
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Electrical characteristics (Vcc = 3V) Table 1.20.7. Electrical characteristics (referenced – specified ...
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Electrical characteristics (Vcc = 3V) Timing requirements (referenced to V unless otherwise specified Specify a product of - use it. Table 1.20.8. External clock input Symbol t External clock input cycle time c ...
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Electrical characteristics (Vcc = 3V) Timing requirements (referenced to V unless otherwise specified Specify a product of - use it. Table 1.20.9. Timer A input (counter input in event counter mode) Symbol t ...
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Electrical characteristics (Vcc = 3V) Timing requirements (referenced to V unless otherwise specified Specify a product of - use it. Table 1.20.14. Timer B input (counter input in event counter mode) Symbol t ...
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Electrical characteristics (Vcc = 3V) TAi input IN TAi input OUT TAi input OUT (Up/down input) During event counter mode TAi input IN (When count on falling edge is selected) TAi input IN (When count on rising edge is selected) ...
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Usage precaution Usage Precaution Timer A (timer mode) (1) Reading the timer Ai register while a count is in progress allows reading, with arbitrary timing, the value of the counter. Reading the timer Ai register with the reload timing gets ...
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Usage precaution Timer B (pulse period/pulse width measurement mode) (1) If changing the measurement mode select bit is set after a count is started, the timer Bi interrupt request bit goes to “1”. (2) When the first effective edge is ...
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Usage precaution (4) External interrupt • When the polarity of the INT0 to INT2 pins is changed, the interrupt request bit is sometimes set to "1". After changing the polarity, set the interrupt request bit to "0". (5) Rewrite the ...
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... Mitsubishi. For the M30621MCM-XXXGP, submit the 80P6S mark specification sheet. 3. Usage Conditions For our reference when of testing our products, please reply to the following questions about the usage of the products you ordered ...
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... GZZ-SH13-96B<02A0> MITSUBISHI ELECTRIC-CHIP 16-BIT MICROCOMPUTER M30621MCM-XXXGP MASK ROM CONFIRMATION FORM (2) Which kind CIN COUT Ceramic resonator External clock input What frequency do not use? f CIN (3) Which operating supply voltage do you use? (Circle the operating voltage range of use) 2.2 2.4 2.6 2.7 2.8 (4) Which operating ambient temperature do you use? ...
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GZZ-SH13-49B<98A1> MITSUBISHI ELECTRIC-CHIP 16-BIT MICROCOMPUTER M30625MGM-XXXGP MASK ROM CONFIRMATION FORM Company name Customer Date Date : issued 1. Check sheet Mitsubishi processes the mask files generated by the mask file generation utilities out of those held on the floppy disks ...
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GZZ-SH13-49B<98A1> MITSUBISHI ELECTRIC-CHIP 16-BIT MICROCOMPUTER M30625MGM-XXXGP MASK ROM CONFIRMATION FORM (2) Which kind CIN COUT Ceramic resonator External clock input What frequency do not use? f CIN (3) Which operating supply voltage do you use? ...
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Keep safety first in your circuit designs! Mitsubishi Electric Corporation puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to ...
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MITSUBISHI SEMICONDUCTORS M16C/62M Group (80-pin) Specification REV.A June. First Edition 2000 Editioned by Committee of editing of Mitsubishi Semiconductor Published by Mitsubishi Electric Corp., Kitaitami Works This book, or parts thereof, may not be reproduced in any form without permission ...