Electrical characteristics (Vcc = 5V)
deeopmen
Preliminary Specifications REV.E
Specifications in this manual are tentative and subject to change.
Mitsubishi microcomputers
M30220 Group
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
157
Table 1.21.3. Electrical characteristics (referenced to V
CC
= 5V, V
SS
= 0V at Ta = 25
o
C, f(X
IN
)=10MH
Z
unless otherwise specified)
V
CC
= 5V
S
y
m
b
o
l
V
O
H
V
O
H
H
v
I
v
I
G
l
t
H
a
o
e
u
t
p
u
t
o
g
H
G
l
t
H
a
o
e
u
t
p
u
t
o
g
S
t
a
T
n
y
d
p
a
.
r
d
U
n
i
t
M
e
a
s
u
r
i
n
g
c
o
n
d
i
t
i
o
n
V
4
.
7
M
i
n
M
a
x
.
3
.
0
P
a
r
a
m
e
t
e
r
I
O
H
=
–
0
.
1
m
A
I
O
H
=
–
5
m
A
P
P
P
P
P
P
0
0
1
1
0
4
0
7
2
1
t
o
o
o
P
P
P
P
0
7
,
P
1
1
7
,
4
7
,
7
6
,
P
1
1
7
,
P
P
P
3
2
P
1
2
0
5
0
8
0
0
0
P
1
t
2
0
o
t
o
t
o
o
P
t
o
2
7
,
P
5
7
,
P
8
7
,
1
0
7
,
P
1
P
P
P
2
7
3
0
6
0
9
0
1
0
t
t
t
t
o
o
o
t
P
t
t
t
o
o
o
P
P
P
3
5
,
6
7
,
9
7
,
V
V
O
H
X
O
U
T
H
v
I
v
I
G
l
t
H
a
o
e
u
t
p
u
t
o
g
H
O
I
L
I
G
H
P
O
W
E
R
L
O
W
P
O
W
E
R
V
3
.
0
3
.
0
I
O
I
O
H
=
–
–
1
0
m
.
5
A
m
H
=
A
V
O
L
L
v
O
o
W
t
a
o
e
u
t
p
u
t
l
g
V
2
.
0
I
O
L
=
5
m
A
V
O
L
X
O
U
T
L
v
O
o
W
t
a
o
e
u
t
p
u
t
l
g
H
O
I
O
I
G
H
P
O
W
E
R
L
W
P
O
W
E
R
V
2
.
0
2
.
0
I
O
H
=
1
m
A
I
O
H
=
0
.
5
m
A
H
y
s
t
e
r
e
s
i
s
H
I
c
y
s
t
e
r
e
s
i
s
H
G
r
r
H
e
i
t
n
p
u
t
u
n
I
I
H
V
T
+
-
V
T
-
V
T
+
-
V
T
-
0
.
2
0
.
8
V
0
.
2
1
.
8
V
5
.
0
μ
A
μ
A
R
0
0
P
3
0
P
P
9
0
P
1
P
1
0
0
P
3
0
P
P
9
0
P
1
P
1
E
S
E
T
T
IN
C
T
T
A
A
T
0
S
1
,
2
O
0
I
N
t
o
U
t
o
I
T
T
5
,
K
0
,
o
T
A
7
I
C
A
N
,
A
T
B
0
I
G
,
N
T
N
C
M
A
t
T
I
7
O
o
T
B
5
I
N
,
V
I
=
5
V
–
5
.
0
L
c
O
u
W
r
r
e
i
n
t
p
u
t
n
I
I
L
V
R
o
A
M
R
A
M
r
e
t
e
n
t
i
o
n
v
o
l
t
a
g
e
W
h
e
n
c
l
o
c
k
i
s
s
t
o
p
p
e
d
2
.
0
V
V
I
=
0
V
V
O
L
X
C
O
U
T
L
v
O
o
W
t
a
o
e
u
t
p
u
t
l
g
H
G
H
P
O
W
E
R
L
W
P
O
W
E
R
V
W
i
t
h
n
o
l
o
a
d
a
p
p
l
i
e
d
W
i
t
h
n
o
l
o
a
d
a
p
p
l
i
e
d
0
0
V
O
H
X
C
O
U
T
H
G
l
t
H
a
o
e
u
t
p
u
t
o
g
H
G
W
H
P
P
O
O
W
W
E
E
R
R
V
1
.
6
W
W
i
i
t
t
h
h
n
n
o
o
l
l
o
o
a
a
d
d
a
a
p
p
p
p
l
l
i
i
e
e
d
d
3
.
0
k
1
6
7
.
0
P
r
u
e
l
l
i
-
s
u
t
p
a
s
n
c
e
R
P
U
L
L
U
P
V
I
=
0
V
3
0
.
0
5
0
.
0
R
f
X
C
I
N
F
e
e
d
b
a
c
k
r
e
s
i
s
t
a
n
c
e
X
C
I
N
6
.
0
M
R
f
X
I
N
F
e
e
d
b
a
c
k
r
e
s
i
s
t
a
n
c
e
X
I
N
1
.
0
M
P
P
P
P
P
P
0
0
3
0
6
0
9
0
1
1
t
t
t
t
o
o
o
o
o
o
P
P
P
P
0
7
,
3
5
,
6
7
,
9
7
,
P
1
P
1
1
7
,
3
2
P
P
P
P
1
0
4
0
7
0
1
0
0
P
t
t
t
o
o
o
o
P
P
P
1
7
,
4
7
,
7
6
,
P
1
t
o
P
P
P
2
0
5
0
8
0
1
2
7
,
t
t
t
o
o
o
P
P
P
2
7
,
5
7
,
8
7
,
3
0
t
t
2
0
0
7
,
P
1
0
3
0
t
t
1
I
O
H
=
–
2
0
0
μ
A
I
O
L
=
2
0
0
μ
A
0
.
4
5
3
.
0
N
L
t
D
T
L
K
1
,
4
O
U
R
S
0
,
,
U
C
T
P
6
0
t
t
t
t
o
o
o
o
o
o
P
P
P
P
0
7
,
3
5
,
6
7
,
9
7
,
P
1
P
1
1
7
,
3
2
,
P
P
P
P
1
0
4
0
7
0
1
0
0
P
X
I
t
t
t
o
o
o
o
P
P
P
1
7
,
4
7
,
7
7
,
P
1
t
o
R
E
P
P
P
2
0
5
0
8
0
1
2
7
,
E
T
t
t
t
o
o
o
P
P
P
2
7
,
5
7
,
8
7
,
t
2
0
N
,
0
7
,
P
S
1
0
3
0
t
t
1
,
C
N
V
S
S
P
P
P
P
6
0
9
0
1
1
t
t
o
o
o
o
P
P
6
7
,
9
7
,
P
1
P
1
1
7
,
3
2
P
P
7
2
1
0
0
P
t
o
o
P
7
6
,
P
1
t
o
P
8
0
1
2
7
,
t
o
P
8
7
,
t
2
0
0
7
,
P
1
0
3
0
t
t
1
P
P
0
0
3
0
t
t
o
o
P
P
0
7
,
3
5
,
P
P
1
0
4
0
t
t
o
o
P
P
1
7
,
4
7
,
P
P
2
0
5
0
t
t
o
o
P
P
2
7
,
5
7
,
K
I
0
t
o
K
I
1
5
(
N
o
t
e
)
,
K
I
1
6
t
o
K
I
1
9
N
t
e
:
H
a
s
n
o
e
f
f
e
c
t
d
u
r
i
n
g
i
n
t
e
r
m
i
t
t
e
n
t
p
u
l
l
u
p
o
p
e
r
a
t
i
o
n
.
T
,
T
,
P
6
0
t
t
t
t
o
o
o
o
o
o
P
P
P
P
0
7
,
3
5
,
6
7
,
9
7
,
P
1
P
1
1
7
,
3
2
,
P
P
P
P
1
0
4
0
7
0
1
0
0
P
X
I
t
t
t
o
o
o
o
P
P
P
1
7
,
4
7
,
7
7
,
P
1
t
o
R
E
P
P
P
2
0
5
0
8
0
1
2
7
,
E
T
t
t
t
o
o
o
P
P
P
2
7
,
5
7
,
8
7
,
t
2
0
N
,
0
7
,
P
S
1
0
3
0
t
t
1
,
C
N
V
S
S