M30622F8PFP#U3C Renesas Electronics America, M30622F8PFP#U3C Datasheet - Page 50

IC M16C MCU FLASH 64K 100QFP

M30622F8PFP#U3C

Manufacturer Part Number
M30622F8PFP#U3C
Description
IC M16C MCU FLASH 64K 100QFP
Manufacturer
Renesas Electronics America
Series
M16C™ M16C/60r
Datasheets

Specifications of M30622F8PFP#U3C

Core Processor
M16C/60
Core Size
16-Bit
Speed
24MHz
Connectivity
I²C, IEBus, UART/USART
Peripherals
DMA, WDT
Number Of I /o
85
Program Memory Size
64KB (64K x 8)
Program Memory Type
FLASH
Ram Size
4K x 8
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Data Converters
A/D 26x10b; 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 62PR0K33062PS001BE - R0K33062P STARTER KITR0K33062PS000BE - KIT EVAL STARTER FOR M16C/62PM3062PT3-CPE-3 - EMULATOR COMPACT M16C/62P/30P
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
M16C/62P Group (M16C/62P, M16C/62PT)
Table 5.11
Electrical Characteristics (1)
Symbol
V
HIGH
P6_0 to P6_7, P7_2 to P7_7, P8_0 to P8_4,
OH
Output
P8_6, P8_7, P9_0 to P9_7, P10_0 to P10_7,
(3)
Voltage
P11_0 to P11_7, P14_0, P14_1
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7,
P3_0 to P3_7, P4_0 to P4_7, P5_0 to P5_7,
P12_0 to P12_7, P13_0 to P13_7
V
HIGH
P6_0 to P6_7, P7_2 to P7_7, P8_0 to P8_4,
OH
Output
P8_6, P8_7, P9_0 to P9_7, P10_0 to P10_7,
(3)
Voltage
P11_0 to P11_7, P14_0, P14_1
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7,
P3_0 to P3_7, P4_0 to P4_7, P5_0 to P5_7,
P12_0 to P12_7, P13_0 to P13_7
V
HIGH Output Voltage
XOUT
OH
HIGH Output Voltage
XCOUT
V
LOW
P6_0 to P6_7, P7_0 to P7_7, P8_0 to P8_4,
OL
Output
P8_6, P8_7, P9_0 to P9_7, P10_0 to P10_7,
(3)
Voltage
P11_0 to P11_7, P14_0, P14_1
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7,
P3_0 to P3_7, P4_0 to P4_7, P5_0 to P5_7,
P12_0 to P12_7, P13_0 to P13_7
V
LOW
P6_0 to P6_7, P7_0 to P7_7, P8_0 to P8_4,
OL
Output
P8_6, P8_7, P9_0 to P9_7, P10_0 to P10_7,
(3)
Voltage
P11_0 to P11_7, P14_0, P14_1
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7,
P3_0 to P3_7, P4_0 to P4_7, P5_0 to P5_7,
P12_0 to P12_7, P13_0 to P13_7
V
LOW Output Voltage
XOUT
OL
LOW Output Voltage
XCOUT
V
V
Hysteresis
HOLD, RDY, TA0IN to TA4IN, TB0IN to TB5IN,
T+-
T-
INT0 to INT5, NMI, ADTRG, CTS0 to CTS2, CLK0 to CLK4,
TA0OUT to TA4OUT, KI0 to KI3, RXD0 to RXD2,
SCL0 to SCL2, SDA0 to SDA2, SIN3, SIN4
V
V
Hysteresis
T+-
T-
RESET
I
HIGH Input
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
IH
(3)
Current
P4_0 to P4_7, P5_0 to P5_7, P6_0 to P6_7, P7_0 to P7_7,
P8_0 to P8_7, P9_0 to P9_7, P10_0 to P10_7,
P11_0 to P11_7, P12_0 to P12_7, P13_0 to P13_7,
P14_0, P14_1, XIN, RESET, CNVSS, BYTE
I
LOW Input
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
IL
(3)
Current
P4_0 to P4_7, P5_0 to P5_7, P6_0 to P6_7, P7_0 to P7_7,
P8_0 to P8_7, P9_0 to P9_7, P10_0 to P10_7,
P11_0 to P11_7,P12_0 to P12_7, P13_0 to P13_7,
P14_0, P14_1, XIN, RESET, CNVSS, BYTE
R
Pull-Up
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
PULLUP
P4_0 to P4_7, P5_0 to P5_7, P6_0 to P6_7, P7_2 to P7_7,
Resistance
P8_0 to P8_4, P8_6, P8_7, P9_0 to P9_7, P10_0 to P10_7,
(3)
P11_0 to P11_7,P12_0 to P12_7, P13_0 to P13_7,
P14_0, P14_1
R
Feedback Resistance XIN
fXIN
R
Feedback Resistance XCIN
fXCIN
V
RAM Retention Voltage
RAM
NOTES:
1. Referenced to V
=V
=4.2 to 5.5V, V
CC1
CC2
specified.
2. Where the product is used at V
side.
3. There is no external connections for port P1_0 to P1_7, P4_4 to P4_7, P7_2 to P7_5 and P9_1 in 80-pin version.
Rev.2.41
Jan 10, 2006
Page 48 of 96
REJ03B0001-0241
(1)
Parameter
Measuring Condition
I
OH
I
OH
OH
I
OH
HIGHPOWER
I
OH
LOWPOWER
I
OH
HIGHPOWER
With no load applied
LOWPOWER
With no load applied
I
OL
I
OL
I
OL
I
OL
HIGHPOWER
I
OL
LOWPOWER
I
OL
HIGHPOWER
With no load applied
LOWPOWER
With no load applied
V
=5V
I
V
=0V
I
V
=0V
I
At stop mode
= − 20 to 85 ° C / − 40 to 85 ° C, f(BCLK)=24MHz unless otherwise
= 0V at T
SS
opr
= 5 V and V
= 3 V, refer to the 3 V version value for the pin specified value on V
CC1
CC2
5. Electrical Characteristics
V
=V
CC1
CC2
Standard
Min.
Typ.
Max.
=
5mA
− 2.0
V
V
CC1
(2)
=
5mA
− 2.0
V
V
CC2
=
200µA
− 0.3
V
V
CC1
(2)
=
200µA
− 0.3
V
V
CC2
− 2.0
=
1mA
V
V
CC1
− 2.0
=
0.5mA
V
V
CC1
2.5
1.6
=5mA
(2)
=5mA
=200µA
0.45
(2)
=200µA
0.45
=1mA
=0.5mA
0
0
0.2
0.2
− 5.0
30
50
1.5
15
2.0
=5V
Unit
CC1
V
CC2
CC1
V
CC2
CC1
V
CC1
V
2.0
V
2.0
V
2.0
V
2.0
V
1.0
V
2.5
V
µ A
5.0
µ A
k Ω
170
M Ω
M Ω
V
port
CC2

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