M30624FGAFP#U3 Renesas Electronics America, M30624FGAFP#U3 Datasheet - Page 46

IC M16C MCU FLASH 100QFP

M30624FGAFP#U3

Manufacturer Part Number
M30624FGAFP#U3
Description
IC M16C MCU FLASH 100QFP
Manufacturer
Renesas Electronics America
Series
M16C™ M16C/60r
Datasheets

Specifications of M30624FGAFP#U3

Core Processor
M16C/60
Core Size
16-Bit
Speed
16MHz
Connectivity
SIO, UART/USART
Peripherals
DMA, PWM, WDT
Number Of I /o
85
Program Memory Size
256KB (256K x 8)
Program Memory Type
FLASH
Ram Size
20K x 8
Voltage - Supply (vcc/vdd)
4.2 V ~ 5.5 V
Data Converters
A/D 10x10b, D/A 2x8b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
100-QFP
For Use With
867-1000 - KIT QUICK START RENESAS 62PM3062PT3-CPE-3 - EMULATOR COMPACT M16C/62P/30P
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

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Power control
Figure 1.10.5. State transition diagram of Power control mode
Transition of stop mode, wait mode
Transition of normal mode
CM06 = “0”
(Notes 1,3)
Main clock is oscillating
Sub clock is oscillating
Medium-speed mode
CM07 = “0” CM06 = “0”
CM17 = “0” CM16 = “0”
(divided-by-4 mode)
CM07 = “0” CM06 = “0”
CM17 = “1” CM16 = “0”
All oscillators stopped
All oscillators stopped
All oscillators stopped
High-speed mode
BCLK : f(X
BCLK : f(X
Stop mode
Stop mode
Stop mode
Note 1: Switch clock after oscillation of main clock is sufficiently stable.
Note 2: Switch clock after oscillation of sub clock is sufficiently stable.
Note 3: Change CM06 after changing CM17 and CM16.
Note 4: Transit in accordance with arrow.
CM06 = “1”
CM04 = “0”
Medium-speed mode
(divided-by-4 mode)
CM07 = “0” CM06 = “0”
CM17 = “0” CM16 = “0”
CM07 = “0” CM06 = “0”
CM17 = “1” CM16 = “0”
IN
IN
High-speed mode
)/4
)
BCLK : f(X
BCLK : f(X
CM04 = “0”
Interrupt
Main clock is oscillating
Main clock is oscillating
Medium-speed mode
Medium-speed mode
Medium-speed mode
(divided-by-16 mode)
CM07 = “0” CM06 = “1”
CM07 = “0” CM06 = “0”
CM17 = “0” CM16 = “1”
CM07 = “0” CM06 = “0”
CM17 = “1” CM16 = “1”
Sub clock is stopped
(divided-by-8 mode)
(divided-by-2 mode)
Sub clock is stopped
IN
CM10 = “1”
CM10 = “1”
CM10 = “1”
Interrupt
Interrupt
IN
)/4
)
BCLK : f(X
BCLK : f(X
BCLK : f(X
(divided-by-16 mode)
Medium-speed mode
Medium-speed mode
IN
(divided-by-2 mode)
CM07 = “0” CM06 = “0”
CM17 = “0” CM16 = “1”
CM07 = “0” CM06 = “0”
CM17 = “1” CM16 = “1”
IN
IN
CM04 = “1”
(Notes 1, 3)
)/16
)/8
)/2
BCLK : f(X
Low-speed/low power
Medium-speed mode
BCLK : f(X
High-speed/medium-
(divided-by-8 mode)
(Refer to the following for the transition of normal mode.)
dissipation mode
Normal mode
speed mode
Reset
CM04 = “1”
Medium-speed mode
IN
(divided-by-8 mode)
IN
)/16
)/2
BCLK : f(X
CM07 = “0”
CM06 = “1”
CM07 = “0” (Note 1)
CM06 = “0” (Note 3)
CM04 = “1”
IN
)/8
WAIT
instruction
WAIT
instruction
WAIT
instruction
Interrupt
Interrupt
Interrupt
CM07 = “1” (Note 2)
CM05 = “1”
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
CM07 = “0”
(Note 1, 3)
CM07 = “1”
(Note 2)
CM07 = “0” (Note 1)
CM06 = “1”
CM04 = “0”
CPU operation stopped
CPU operation stopped
CPU operation stopped
Wait mode
Wait mode
Wait mode
Low power dissipation mode
CM05 = “0”
Main clock is oscillating
Sub clock is oscillating
Sub clock is oscillating
Main clock is stopped
Low-speed mode
BCLK : f(X
BCLK : f(X
CM07 = “1”
CM07 = “1”
M16C / 62A Group
Mitsubishi microcomputers
CIN
CIN
CM05 = “1”
)
)
43

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