IC M16C MCU FLASH 64K 100-QFP

M30622F8PFP#D5C

Manufacturer Part NumberM30622F8PFP#D5C
DescriptionIC M16C MCU FLASH 64K 100-QFP
ManufacturerRenesas Electronics America
SeriesM16C™ M16C/60
M30622F8PFP#D5C datasheet
 

Specifications of M30622F8PFP#D5C

Core ProcessorM16C/60Core Size16-Bit
Speed24MHzConnectivityI²C, IEBus, UART/USART
PeripheralsDMA, WDTNumber Of I /o85
Program Memory Size64KB (64K x 8)Program Memory TypeFLASH
Ram Size4K x 8Voltage - Supply (vcc/vdd)2.7 V ~ 5.5 V
Data ConvertersA/D 26x10b; D/A 2x8bOscillator TypeInternal
Operating Temperature-20°C ~ 85°CPackage / Case100-QFP
Lead Free Status / RoHS StatusContains lead / RoHS non-compliantEeprom Size-
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M16C/62P Group (M16C/62P, M16C/62PT)
Table 1.20
Pin Description (80-pin Version) (1)
Signal Name
Pin Name
Power supply
VCC1, VSS
input
Analog power
AVCC
supply input
AVSS
Reset input
RESET
CNVSS
CNVSS
(BYTE)
Main clock
XIN
input
Main clock
XOUT
output
Sub clock input XCIN
Sub clock
XCOUT
output
Clock output
CLKOUT
INT interrupt
INT0 to INT2
input
NMI interrupt
NMI
input
Key input
KI0 to KI3
interrupt input
Timer A
TA0OUT,
TA3OUT,
TA4OUT
TA0IN, TA3IN,
TA4IN
ZP
Timer B
TB0IN, TB2IN
to TB5IN
Serial interface CTS0 to CTS1
RTS0 to RTS1
CLK0, CLK1,
CLK3, CLK4
RXD0 to RXD2
SIN4
TXD0 to TXD2
SOUT3,
SOUT4
CLKS1
2
I
C mode
SDA0 to SDA2
SCL0 to SCL2
I : Input
O : Output
I/O : Input and output
NOTES:
1. In this manual, hereafter, VCC refers to VCC1 unless otherwise noted.
2. In M16C/62PT, apply 4.0 to 5.5 V to the VCC1 pin.
3. Ask the oscillator maker the oscillation characteristic.
Rev.2.41
Jan 10, 2006
Page 28 of 96
REJ03B0001-0241
(1)
I/O
Power
Type
Supply
I
Apply 2.7 to 5.5 V to the VCC1 pin and 0 V to the VSS pin.
I
VCC1
Applies the power supply for the A/D converter. Connect the
AVCC pin to VCC1. Connect the AVSS pin to VSS.
I
VCC1
The microcomputer is in a reset state when applying “L” to the this pin.
I
VCC1
Switches processor mode. Connect this pin to VSS to when after a
reset to start up in single-chip mode. Connect this pin to VCC1 to
start up in microprocessor mode. As for the BYTE pin of the 80-pin
versions, pull-up processing is performed within the microcomputer.
I
VCC1
I/O pins for the main clock generation circuit. Connect a ceramic
resonator or crystal oscillator between XIN and XOUT
the external clock, input the clock from XIN and leave XOUT
O
VCC1
open.
I
VCC1
I/O pins for a sub clock oscillation circuit. Connect a crystal
oscillator between XCIN and XCOUT
O
VCC1
clock, input the clock from XCIN and leave XCOUT open.
O
VCC2
The clock of the same cycle as fC, f8, or f32 is outputted.
I
VCC1
Input pins for the INT interrupt.
I
VCC1
Input pin for the NMI interrupt.
I
VCC1
Input pins for the key input interrupt.
I/O
VCC1
These are Timer A0,Timer A3 and Timer A4 I/O pins. (however,
output of TA0OUT for the N-channel open drain output.)
I
VCC1
These are Timer A0, Timer A3 and Timer A4 input pins.
I
VCC1
Input pin for the Z-phase.
I
VCC1
These are Timer B0, Timer B2 to Timer B5 input pins.
I
VCC1
These are send control input pins.
O
VCC1
These are receive control output pins.
I/O
VCC1
These are transfer clock I/O pins.
I
VCC1
These are serial data input pins.
I
VCC1
This is serial data input pin.
O
VCC1
These are serial data output pins. (however, output of TXD2 for
the N-channel open drain output.)
O
VCC1
These are serial data output pins.
O
VCC1
This is output pin for transfer clock output from multiple pins
function.
I/O
VCC1
These are serial data I/O pins. (however, output of SDA2 for the
N-channel open drain output.)
I/O
VCC1
These are transfer clock I/O pins. (however, output of SCL2 for
the N-channel open drain output.)
1. Overview
Description
(1, 2)
(3)
. To use
(3)
. To use the external