M30290FAHP#U5A Renesas Electronics America, M30290FAHP#U5A Datasheet - Page 90

IC M16C/29 MCU FLASH 96K 80LQFP

M30290FAHP#U5A

Manufacturer Part Number
M30290FAHP#U5A
Description
IC M16C/29 MCU FLASH 96K 80LQFP
Manufacturer
Renesas Electronics America
Series
M16C™ M16C/Tiny/29r
Datasheet

Specifications of M30290FAHP#U5A

Core Processor
M16C/60
Core Size
16-Bit
Speed
20MHz
Connectivity
CAN, I²C, IEBus, SIO, UART/USART
Peripherals
DMA, POR, PWM, Voltage Detect, WDT
Number Of I /o
71
Program Memory Size
96KB (96K x 8)
Program Memory Type
FLASH
Ram Size
8K x 8
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Data Converters
A/D 27x10b
Oscillator Type
Internal
Operating Temperature
-20°C ~ 85°C
Package / Case
80-LQFP
For Use With
R0K330290S000BE - KIT EVAL STARTER FOR M16C/29M30290T2-CPE - EMULATOR COMPACT M16C/26A/28/29M30290T2-CPE-HP - EMULATOR COMPACT FOR M16C/TINY
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

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R
R
M
e
E
1
. v
J
Figure 7.12 State Transition in Normal Mode
6
0
1
9
C
1 .
B
2 /
0
2
9
1
M
0
NOTES:
Main clock oscillation
G
: Arrow shows mode can be changed. Do not change mode to another mode when no arrow is shown.
1
r a
1. Avoid making a transition when the CM20 bit is set to 1 (oscillation stop, re-oscillation detection function enabled).
2. Wait for the main clock oscillation stabilization time before switching over. Set the CM15 bit in the CM1 register to 1 (drive capacity High) until main clock oscillation is stabilized.
3. Switch clock after oscillation of sub-clock is sufficiently stable.
4. Change bits CM17 and CM16 before changing the CM06 bit.
5. The PM20 bit in the PM2 register becomes effective when the PLC07 bit in the PLC0 register is set to 1 (PLL on). Change the PM20 bit when the PLC07 bit is set to 0 (PLL off).
6. Set the CM06 bit to 1 (division by 8 mode) before changing back the operation mode from on-chip oscillator mode to high- or middle-speed mode.
7. When the CM21 bit is set to 0 (on-chip oscillator turned off) and the CM05 bit is set to 1 (main clock turned off), the CM06 bit is fixed to 1 (divide-by-8 mode) and the
0 -
o r
3 .
Sub clock oscillation
Set the CM20 bit to 0 (oscillation stop, re-oscillation detection function disabled) before transiting.
CM15 bit is fixed to 1 (drive capability High).
Set the PM20 bit to 0 (2 waits) when PLL clock > 16MHz.
CPU clock: f(PLL)
PLL operation mode
1
CM04=1
CPU clock: f(PLL)
u
, 0
PLL operation
mode
1
p
CM07=0
CM06=0
CM17=0
CM16=0
CM07=0
CM06=0
CM17=0
CM16=0
2
2
0
0
7
CM04=0
PLC07=0
PLC07=0
(5)
PLC07=1
(5)
PLC07=1
(5)
CM11=1
CM11=0
CM11=1
CM11=0
(5)
page 64
High-speed mode
High-speed mode
CPU clock: f(X
CPU clock: f(X
CM07=0
CM06=0
CM17=0
CM16=0
CM07=0
CM06=0
CM17=0
CM16=0
f o
IN
IN
4
)
)
5
8
CPU clock: f(X
Middle-speed mode
Middle-speed mode
CPU clock: f(X
(divide by 2)
(divide by 2)
CM07=0
CM06=0
CM17=0
CM16=1
CM07=0
CM06=0
CM17=0
CM16=1
CM04=1
CM07=1
CM05=1
(1, 7)
(3)
IN
IN
)/2
)/2
Low power dissipation mode
Middle-speed mode
Middle-speed mode
CPU clock: f(X
CPU clock: f(X
CPU clock: f(X
CPU clock: f(X
Low-speed mode
(divide by 4)
(divide by 4)
CM07=0
CM06=0
CM17=1
CM16=0
CM07=0
CM06=0
CM17=1
CM16=0
CM07=0
CM07=0
CM06=1
CM15=1
IN
IN
)/4
)/4
CIN
CIN
)
)
Middle-speed mode
CPU clock: f(X
Middle-speed mode
CPU clock: f(X
(divide by 8)
(divide by 8)
CM07=0
CM06=1
CM07=0
CM06=1
(2, 4)
CM04=0
CM07=0
CM05=0
IN
IN
)/8
)/8
Middle-speed mode
Middle-speed mode
CPU clock: f(X
CPU clock: f(X
(divide by 16)
(divide by 16)
CM07=0
CM06=0
CM17=1
CM16=1
CM07=0
CM06=0
CM17=1
CM16=1
IN
CM21=0
CM21=1
IN
)/16
)/16
CM21=0
CM21=1
CM21=0
CM21=1
(2, 6)
(2, 6)
CM07=1
(3)
On-chip oscillator mode
CPU clock: f(X
On-chip oscillator
mode
CM04=1
Low-speed
mode
CPU clock
CPU clock
CM07=0
f(ROC)
f(ROC)/2
f(ROC)/4
f(ROC)/8
f(ROC)/16
f(ROC)
f(ROC)/2
f(ROC)/4
f(ROC)/8
f(ROC)/16
CIN
)
CM07=0
(4)
CM04=0
CM05=0
CM05=1
CM05=0
CM05=1
(1)
M0
M
(1)
On-chip oscillator clock
oscillation
On-chip oscillator low power
dissipation mode
CM04=1
On-chip oscillator
low power
dissipation mode
CPU clock
CPU clock
f(ROC)
f(ROC)/2
f(ROC)/4
f(ROC)/8
f(ROC)/16
f(ROC)
f(ROC)/2
f(ROC)/4
f(ROC)/8
f(ROC)/16
CM04=0

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