M30843FJFP#U3 Renesas Electronics America, M30843FJFP#U3 Datasheet - Page 57

IC M32C MCU FLASH 512K 100LQFP

M30843FJFP#U3

Manufacturer Part Number
M30843FJFP#U3
Description
IC M32C MCU FLASH 512K 100LQFP
Manufacturer
Renesas Electronics America
Series
M16C™ M32C/80r
Datasheets

Specifications of M30843FJFP#U3

Core Processor
M32C/80
Core Size
16/32-Bit
Speed
32MHz
Connectivity
CAN, I²C, IEBus, SIO, UART/USART
Peripherals
DMA, PWM, WDT
Number Of I /o
85
Program Memory Size
512KB (512K x 8)
Program Memory Type
FLASH
Ram Size
24K x 8
Voltage - Supply (vcc/vdd)
3 V ~ 5.5 V
Data Converters
A/D 26x10b; D/A 2x8b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
100-LQFP
For Use With
R0K330879S001BE - KIT DEV RSK M32C/87R0K330879S000BE - KIT DEV RSK M32C/87
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

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Renesas Electronics America
Quantity:
10 000
R
M
e
3
. v
Switching Characteristics
Table 5.23 Memory Expansion Mode and Microprocessor Mode
2
NOTES:
d t
h t
h t
h t
d t
h t
h t
h t
d t
h t
d t
h t
d t
h t
d t
h t
d t
h t
d t
C
1
B (
B (
(
(
B (
B (
(
(
B (
B (
B (
B (
(
(
B (
B (
A (
A (
z
2 .
8 /
S
R
W
R
W
D
W
(V
2. Values can be obtained from the following equations, according to BCLK frequency and external bus cycle.
1. Values can be obtained from the following equations, according to BCLK frequency.
5. tc ns is added when recovery cycle is inserted.
4. Values can be obtained from the following equations, according to BCLK frequency and external bus cycle.
(
3. Values can be obtained from the following equations, according to BCLK frequency and external bus cycle.
t
t
C
C
C
C
C
C
C
C
C
C
D
L
t
t
t
D
D
- B
R
y
R
R
R
h(RD – AD)
h(WR – AD)
h(RD – CS)
h(WR – CS)
h(WR – DB)
1
E
4
L
L
L
L
L
L
L
L
L
L
A -
A -
-
D
t
m
A -
-
-
CC
C
W
t
d(AD – ALE)
K
K
- K
- K
- K
- K
- K
- K
K
K
A -
t
C
D
d(DB – WR)
A -
h(ALE – AD)
L
D
) S
A -
A -
D
R
A -
A -
G
) S
) B
b
J
C
C
R
R
W
W
) E
D
)
D
)
)
u
l o
D
D
) S
) S
D
D
L
L
)
= 4.2 to 5.5V, V
R
R
)
o r
) E
) E
)
)
)
)
. l
)
)
(when accessing an external memory space with the multiplexed bus)
u
0
p
, 8
R
R
D
D
A
A
A
A
C
C
C
C
W
W
A
A
A
A
A
=
=
=
=
=
(
D
D
d
d
d
d
h
h
h
h
a
a
L
L
L
L
d
2
M
R
R
=
=
d
d
d
d
a t
a t
E
E
E
E
d
p i
p i
p i
p i
=
0
S
S
e r
e r
e r
e r
e r
3
0
S
S
S -
S -
S -
S -
S
S
S
S
g i
g i
O
O
5
2
s s
s s
s s
s s
g i
g i
s s
g i
g i
g i
g i
e
e
e
e
n
n
C
u
u
f
f
f
f
f
n
n
(BCLK)
(BCLK)
(BCLK)
(BCLK)
(BCLK)
e l
e l
e l
e l
l a
l a
p t
p t
n
n
n
n
f
8 /
O
O
O
O
l a
l a
O
f
f
(BCLK)
l a
l a
l a
l a
(BCLK)
Page 55
t c
t c
t c
t c
(BCLK)
10 X n
t u
t u
10 X m
10 X m
u
u
u
u
O
O
u
10 X n
10
10
10
10
10
, 4
O
O
p t
p t
p t
p t
O
O
O
O
p t
S
S
S
S
u
u
9
D
H
9
u
u
9
SS
u
u
u
u
9
9
9
9
9
t u
t u
t u
t u
g i
g i
g i
g i
p t
p t
t u
X 2
X 2
X 2
X 2
X 2
M
p t
p t
e
o
p t
p t
p t
p t
n
n
n
n
X 2
t u
t u
a l
d l
X 2
X 2
3
t u
t u
D
H
H
H
F
= 0V at Topr = –20 to 85
l a
l a
l a
l a
t u
t u
t u
t u
y
2
o l
e
o
o
o
i T
D
H
D
H
C
a l
d l
d l
d l
O
O
O
O
i T
D
H
D
H
t a
e
o
m
– 10
– 10
– 10
– 10
– 10
f o
e
o
8 /
u
u
u
u
e
o
e
o
y
a l
d l
m
– 20
– 25
i T
i T
i T
a l
d l
e
S
– 10
p t
p t
p t
p t
a l
d l
a l
d l
8
i T
y
e
4
P
i T
y
m
m
m
a t
(
y
y
5
t u
t u
t u
t u
i T
) T
W
i T
i T
i T
m
a
(
m
i T
e
e
e
t r
W
i T
i T
m
a r
m
m
m
e
D
H
H
H
R
e
m
B (
(
(
i T
[ns]
[ns]
[ns]
[ns]
[ns]
m
m
R
e
m
R
W
e
o
o
o
e
e
e
s
e
[ns] (if external bus cycle is a + b , n= a)
[ns] (if external bus cycle is a + b , m= (bx2)-1)
e
e
m
C
a l
d l
d l
d l
[ns] (if external bus cycle is a + b , n= a)
D
s
a t
t e
R
B (
a (
a t
L
y
e
B (
a (
n
r e
s
i T
i T
i T
d
K
s
C
n
a t
i T
d
d
d
a t
C
m
m
m
L
d
r a
s
d
e r
m
n
L
K
n
r a
e
e
e
a t
e r
d
) d
K
d
e
s s
r a
) d
n
B (
(
(
s
s s
r a
R
W
(
s
a t
d
) 5
) d
a t
s
C
D
) d
r a
R
n
s
a t
(
L
n
d
a t
) 5
(
) d
s
) 5
K
s
n
d
r a
a t
a t
n
d
r a
s
) d
d
r a
n
o
n
a t
) d
r a
d
C unless otherwise specified)
d
) d
r a
n
r a
) d
d
) d
) d
r a
(
) 5
(
) d
) 5
See Figure 5.2
M
e
C
a
o
5. Electrical Characteristics (M32C/84)
s
n
u
d
e r
t i
m
o i
n
e
t n
(
(
(
(
(
(
(
(
N
N
N
N
N
N
N
N
M
o
o
o
o
o
o
o
o
3 -
3 -
5 -
5 -
2 -
e t
e t
e t
e t
e t
e t
e t
e t
i
. n
V
S
a t
) 1
) 1
) 1
) 1
) 2
) 1
) 3
) 4
CC1
n
d
a
=V
d r
M
1
1
1
1
1
8
a
8
8
8
8
8
CC2
. x
=5V
U
n
n
n
n
n
n
n
n
n
n
n
n
n
n
n
n
n
n
n
n
s
s
s
s
s
s
s
s
s
s
s
s
s
s
s
s
s
s
s
t i

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