Mitsubishi microcomputers
M16C / 62P Group
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
Electrical Characteristics
224
development
Preliminary Specifications Rev.1.0
Specifications in this manual are tentative and subject to change.
2
.
7
5
.
5
Typ.
5
.
V
C
0
0
M
a
x
.
U
n
i
t
P
a
r
a
m
e
t
e
r
V
C
A
V
A
V
s
V
C
c
s
s
1
,
c
V
C
C
2
0
S
A
S
u
n
u
p
a
p
p
l
o
p
l
y
g
l
y
v
s
v
o
u
o
l
p
l
t
t
a
p
a
g
l
g
e
y
e
(
v
V
C
o
C
t
a
1
≥
V
g
e
C
C
2
)
S
y
m
b
o
l
Min.
Standard
l
C
1
V
V
V
V
V
A
HIGH input
voltage
n
a
l
o
g
s
u
p
p
l
y
v
P
P
P
o
l
t
a
g
t
o
t
o
t
o
e
P
P
V
I
H
I
OH (avg)
HIGH average
output current
mA
mA
s
0
0.8V
CC2
.
8
V
C
C
2
V
V
V
V
V
C
V
C
C
2
0
0
.
.
2
2
V
C
V
C
C
2
0
.
2
V
C
C
1
0
0
0
0
L
v
O
o
W
t
a
i
e
n
p
u
t
l
g
0
.
1
6
V
C
C
2
I
OH (peak)
H
c
I
G
r
r
H
e
p
t
e
a
k
o
u
t
p
u
t
u
n
-5.0
-10.0
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
,
P6
0
to P6
7
,P7
2 to
P7
7
,
P8
0
to P8
4,
P8
6,
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
3
1
0
0
0
0
P
3
7
,
0
7
,
0
7
,
P
P
P
4
0
1
0
1
0
t
t
t
o
o
o
P
P
P
4
7
,
1
7
,
1
7
,
P
P
P
5
0
2
0
2
0
t
t
t
o
o
o
P
P
P
5
7
2
7
,
2
7
,
,
P
P
P
1
3
0
3
0
2
0
t
d
o
u
P
r
i
1
n
2
7
,
g
i
P
n
1
3
0
e
-
t
h
o
p
P
1
m
3
7
o
V
0
.
5
V
C
C
2
C
2
V
C
C
2
(d
6
0
1
a
t
a
i
n
p
u
t
f
u
n
c
t
i
o
n
d
u
r
i
n
g
m
e
m
o
r
y
e
x
p
a
n
s
i
o
n
a
n
d
m
i
c
r
o
p
r
o
c
e
s
s
o
r
m
o
d
e
s
)
(
s
g
l
c
i
d
e
)
LOW peak output
current
10.0
5.0
mA
f
(
X
I
N
)
M
(
N
S
R
P
a
o
b
n
L
i
n
t
e
-
c
g
c
l
o
c
l
o
)
c
c
c
c
k
i
n
p
u
t
o
s
c
i
l
l
a
t
i
o
n
f
r
e
q
u
e
n
c
y
4
o
s
o
L
o
O
u
W
t
p
a
t
v
c
e
u
r
r
a
r
g
e
u
e
n
t
I
OL (peak)
m
A
I
OL (avg)
V
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
,
P6
0
to P6
7
,P7
2 to
P7
7
,
P
t
o
P
8
4
8
6
8
7
9
0
P
1
0
t
o
P
1
1
7
,
P
1
2
0
t
o
P
8
0
1
,
P
,
P
,
P
t
1
o
P
9
7
P
,
P
1
1
3
0
0
0
t
t
o
P
P
1
1
3
7
,
0
7
,
P0
0
to P0
7
, P1
0
to P1
7
,
P2
0
to P2
7
,P3
0 to
P3
7
,
P
t
o
P
4
7
,
P
5
0
t
o
P
5
7
,
P
P
t
o
P
8
4
8
6
8
7
9
0
P
1
0
t
o
P
1
1
7
,
P
1
2
0
t
o
P
4
0
8
0
1
6
0
o
1
2
7
,
t
9
7
P
o
,
P
1
P
6
7
,
1
0
0
3
0
P
7
0
t
o
o
P
1
t
o
P
1
3
7
,
7
7
,
0
7
,
P
,
P
,
P
,
P
t
P
P
P
P
P11
0
to P11
7
, P12
0
to P12
7
, P13
0
to P13
7
, P14
0
, P14
1
0
0
4
0
8
0
t
t
t
o
o
o
P
P
P
0
7
,
4
7
,
8
4
P
P
8
6
1
0
5
0
t
t
o
o
8
7
P
P
,
P
1
7
,
P
5
7
,
P
9
0
2
0
6
0
o
t
t
9
7
o
o
,
P
P
P
2
7
,
6
7
,
1
0
0
P
P
3
0
7
0
t
o
P
t
t
o
o
P
P
1
3
7
,
7
7
,
0
7
,
,
P
,
P
t
P
P
P
0
0
P
7
0
3
1
0
0
,
o
P
7
1
P
0
.
8
V
C
C
1
6
.
5
V
V
I
L
20 X V
CC
-44
5
0
V
CC
=3.0 to 5.5V
V
CC
=2.7 to 3.0V
0
0
M
MHz
k
H
MHz
M
H
M
H
H
z
1
6
f
(
f
(
f
(
X
C
R
P
I
N
)
g
L
u
i
L
k
i
l
k
l
o
a
o
s
t
i
s
c
o
c
i
n
i
l
l
l
l
a
f
a
t
i
e
t
i
o
q
o
n
u
n
f
e
f
r
e
n
r
e
q
c
q
u
y
u
e
n
c
y
z
32.768
1
2
7
,
o
P
1
4
0
,
P
1
4
1
t
P
1
4
0
,
P
1
4
1
N
N
N
o
o
o
t
t
t
e
e
e
1
2
3
:
:
:
R
T
T
f
o
m
p
m
R
e
h
h
r
u
o
u
e
f
e
e
s
r
t
s
e
p
r
m
t
o
o
t
s
t
a
e
n
e
t
a
r
t
b
e
P
b
e
t
i
o
c
a
l
s
6
n
e
n
I
O
P
-
4
,
P
-
4
s
d
o
t
u
L
3
,
0
7
0
h
i
o
t
(
P
m
,
m
p
p
p
V
C
u
e
4
,
A
a
n
A
b
e
C
c
a
k
P
m
d
m
t
w
=
r
f
,
x
8
0
a
x
e
e
r
o
P
.
V
C
e
n
r
6
T
t
C
t
o
,
h
e
o
1
i
s
r
P
t
P
=
t
t
s
7
o
8
4
h
,
t
a
V
C
e
P
P
l
m
C
m
0
,
8
0
I
O
u
2
e
P
t
H
s
t
=
a
1
o
(
b
n
,
P
p
e
2
P
8
4
,
e
a
-
.
v
7
a
2
l
,
t
u
P
P
k
)
4
0
o
5
8
6
,
1
2
f
o
m
A
.
5
i
,
p
m
V
t
h
P
a
o
i
8
7
,
n
d
r
t
a
x
a
n
t
1
P
s
.
T
o
0
9
1
3
h
p
m
,
3
,
e
r
=
s
P
m
P
t
-
2
0
t
o
8
5
°
C
/
-
4
0
t
o
8
5
°
C
u
n
l
e
s
s
o
t
h
e
r
w
i
s
e
s
p
e
c
i
f
i
e
d
.
t
u
)
5
a
P
e
w
0
P
.
p
1
0
u
4
,
o
t
,
t
P
b
5
I
O
1
e
,
H
1
P
,
8
1
(
0
2
p
P
1
m
,
e
4
0
A
a
n
a
k
a
n
a
P
o
d
x
1
r
.
P
T
3
p
o
1
h
m
r
t
4
1
e
u
s
m
t
o
s
t
P
u
t
a
b
8
6
,
s
l
e
t
I
O
-
P
b
e
H
4
0
8
7
,
(
m
8
p
0
e
A
9
m
a
m
,
A
k
m
f
o
x
1
0
a
r
T
,
x
p
.
o
h
P
T
r
e
1
h
t
s
t
1
e
t
P
t
0
a
1
o
t
,
I
O
4
0
,
a
P
l
1
H
a
I
O
,
(
n
L
a
p
d
(
p
d
a
P
e
k
1
a
P
)
4
1
k
2
f
o
)
s
P
a
m
d
)
)
a
P
n
e
r
P
T
.
o
,
l
r
l
f
P
P
.
N
o
t
e
4
:
l
n
m
a
i
n
c
l
o
c
k
o
s
c
i
l
l
a
t
i
o
n
f
r
e
q
u
e
n
c
y
,
P
L
L
c
l
o
c
k
o
s
c
i
l
l
a
t
i
o
n
f
r
e
q
u
e
n
c
y
a
n
d
s
u
p
p
l
y
v
o
l
t
a
g
e
.
0
.
8
V
C
C
1
V
V
C
C
1
P
P
t
o
o
P
6
7
,
P
1
1
7
,
P
7
2
P
t
o
4
0
,
P
7
7
,
P
4
1
,
P
8
0
t
o
P
8
7
,
P
9
0
t
o
P
9
7
,
P
1
0
0
t
o
P
1
0
7
,
X
I
N
,
R
E
S
E
T
,
C
N
V
S
S
,
B
Y
T
E
1
0
t
1
1
t
3
7
,
P
4
0
t
o
P
4
7
,
P
5
0
t
o
P
5
7
,
P
1
2
0
t
o
P
1
2
7
,
P
1
3
0
t
o
P
1
3
7
P
t
t
o
o
P
P
0
7
,
0
7
,
P
P
1
0
1
0
t
t
o
o
P
P
1
7
,
1
7
,
P
P
2
0
2
0
t
t
o
o
P
P
2
7
,
2
7
,
P
P
3
0
3
0
(
d
u
r
i
n
g
s
i
n
g
l
e
-
c
h
i
p
m
o
d
e
)
C
2
(d
6
0
P
a
t
a
i
n
p
u
t
f
u
n
c
t
i
o
n
d
u
r
i
n
g
m
e
m
o
r
y
e
x
p
a
n
s
i
o
n
a
n
d
m
i
c
r
o
p
r
o
c
e
s
s
o
r
m
o
d
e
s
)
P
1
t
o
o
P
6
7
,
P
1
1
7
,
P
7
0
P
t
o
4
0
,
P
7
7
,
P
4
1
,
P
8
0
t
o
P
8
7
,
P
9
0
t
o
P
9
7
,
P
1
0
0
t
o
P
1
0
7
,
X
I
N
,
R
E
S
E
T
,
C
N
V
S
S
,
B
Y
T
E
1
0
t
1
1
i
L
n
)
r
)
l
e
n
c
y
(
N
o
t
e
4
)
46.67 X V
CC
-
116
2
4
V
CC
=3.0 to 5.5V
V
CC
=2.7 to 3.0V
10
10
z
z
2
4
f
(
T
S
B
U
(
C
L
P
K
L
)
C
P
P
L
U
L
f
o
r
p
e
r
a
e
t
n
i
o
c
n
y
c
s
l
o
n
c
t
k
h
0
M
m
m
H
s
s
z
L
)
e
q
u
y
e
s
i
z
e
r
s
t
a
b
i
l
i
z
a
t
i
o
n
w
a
i
t
t
i
m
e
V
CC
=5.0V
V
CC
=3.0V
50
20
Main clock input oscillation frequency
16.0
0.0
f
I
)
f
Z
]
Supply voltage
[V] (main clock: no division)
5.5
3.0
10.0
2.7
AAAAAA
AAAAAA
AAAAAA
AAAAAA
AAAAAA
AAAAAA
20 x V
CC
-44MH
Z
PLL clock oscillation frequency
24.0
0.0
f
f
Z
]
Supply voltage
[V] (PLL clock oscillation)
5.5
10.0
2.7
AAAAAA
AAAAAA
AAAAAA
AAAAAA
3.0
46.67 x V
CC
-116MH
Z
Table 1.26.2.
Recommended Operating Conditions (Note 1)