![](http://datasheet.mmic.net.cn/280000/M30623MAA-2MGP_datasheet_16083420/M30623MAA-2MGP_157.png)
Mitsubishi microcomputers
M16C / 62A Group (80-pin)
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
Electrical characteristics (Vcc = 5V)
157
Table 1.20.6.
Electrical characteristics (referenced to V
CC
= 4.2V to 5V, V
SS
= 0V at Ta =
–
20
o
C to
85
o
C /
–
40
o
C to 85
o
C(Note2)
, f(X
IN
) = 16MHz
unless otherwise specified)
y
m
b
o
l
I
G
H
o
u
t
p
u
t
v
o
l
t
a
g
e
I
OH
=–5mA
P
t
o
P
6
7
,
P
7
6
,
P
7
7
,
P
8
0
t
o
P
8
4
,
P
P
8
7
,
P
9
0
,
P
9
2
t
o
P
9
7
,
P
1
0
0
t
o
P
1
0
7
S
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
V
O
H
V
O
L
L
v
O
o
W
t
a
o
e
u
t
p
u
t
l
g
L
v
O
o
W
t
a
o
e
u
t
p
u
t
l
g
V
O
L
L
v
O
o
W
t
a
o
e
u
t
p
u
t
l
g
V
O
L
I
I
H
I
IL
V
R
A
M
H
H
v
I
G
l
t
H
a
o
e
u
t
p
u
t
o
g
V
T
+
-
V
T
-
V
T+-
V
T-
V
V
4
.
7
V
X
O
U
T
3
3.0
.
0
V
2
.
0
0.45
V
V
X
O
U
T
2
2.0
.
0
0
.
2
1
.
0
V
0.2
1.8
V
5.0
μ
A
μ
A
2
.
0
V
3
.
0
P
a
r
a
m
e
t
e
r
I
OH
=–1mA
I
OH
=–0.5mA
With no load applied
With no load applied
I
OH
=–200
μ
A
I
OL
=5mA
I
OL
=1mA
I
OL
=0.5mA
I
OL
=200
μ
A
P
P
6
0
8
6
,
0
0
3
0
t
t
o
o
P
P
0
7
,
3
7
,
P
P
2
0
4
0
t
t
o
o
P
P
2
7
,
4
3
,
P
P
P
P
P
P4
0
to P4
3
, P5
0
to P5
7
, P6
0
to P6
7
,
P
P
7
1
,
P
7
6
,
P
7
7
,
P
P
8
7
,
P
9
0
,
P
9
2
0
0
4
0
7
0
,
8
6
,
0
0
t
t
t
o
o
P
P
o
7
1
,
8
7
,
P
P
P
0
7
,
4
3
,
0
7
,
7
6
,
P
9
0
,
P
P
P
2
0
5
0
2
0
t
t
7
7
,
P
9
2
t
o
o
o
P
P
t
P
2
7
,
5
7
,
P
8
0
o
P
2
7
,
P
P
t
9
7
,
P
3
0
6
0
o
3
0
t
t
8
4
,
P
1
t
o
o
o
P
P
3
7
,
6
7
,
P
5
0
t
o
P
5
7
,
RESET
P0
0
to P0
7
, P2
0
to P2
7
, P3
0
to P3
7
,
P
t
o
P
4
3
,
P
5
0
t
o
P7
0
, P7
1
, P7
6
, P7
7
, P8
0
to P8
7
,
P
P
9
2
t
o
P
9
7
,
P
X
I
R
E
S
E
T
,
C
N
V
P
t
o
P
0
7
,
P
2
0
t
o
P
t
o
P
4
3
,
P
5
0
t
o
P
P
7
7
,
P
8
0
t
o
P
P
P
9
2
t
o
P
9
7
,
P
X
IN
, RESET, CNVss (BYTE)
T
T
A
B
0
I
0
I
N
,
T
T
A
B
3
I
2
I
N
,
N
t
T
o
A
T
4
I
B
N
,
5
I
N
,
AD
TRG
, CTS
0
, CTS
1
, CLK
0
,CLK
1
, CLK
3
,
CLK
4
, TA3
OUT
, TA4
OUT
, NMI, KI
0
to KI
3
,
S
IN4
, R
X
D
0
to R
X
D
2
N
,
I
N
T
0
t
o
I
N
T
2
,
V
I
=5V
V
I
=0V
–5.0
P
P
P
P
0
0
3
0
6
0
8
6
,
t
t
t
o
o
o
P
8
7
,
P
P
P
0
7
,
3
7
,
6
7
,
9
0
,
P
P
P
2
0
4
0
7
6
,
t
t
9
2
o
o
P
7
7
,
t
P
P
2
7
,
4
3
,
o
8
0
P
9
7
,
P
5
0
t
t
1
o
P
8
4
,
0
0
P
5
7
,
t
o
P
o
P
HIGHPOWER
LOWPOWER
HIGHPOWER
LOWPOWER
P
P
P
0
0
P
t
3
7
,
o
P
1
0
7
P
P
P
1
0
7
HIGHPOWER
LOWPOWER
X
C
O
U
T
3
1
.
.
0
6
V
7
0
,
8
6
,
t
P
o
8
0
P
t
o
P
P
8
4
,
1
0
0
9
7
,
t
o
P
1
0
7
R
fX
I
N
R
fCXIN
X
IN
X
CIN
6.0
1.0
M
M
4
0
P
5
7
,
P
6
0
t
o
P
6
7
,
9
0
,
N
,
0
0
4
0
7
6
,
9
0
,
1
s
P
P
8
7
,
1
0
0
0
0
s
2
7
,
5
7
,
t
o
Y
P
P
P
T
3
0
6
0
1
E
0
7
)
t
o
t
o
,
(
B
P
P
3
7
,
6
7
,
t
o
P
1
0
7
,
R
P
U
L
L
U
P
P0
0
to P0
7
, P2
0
to P2
7
, P3
0
to P3
7
,
P4
0
to P4
3
, P5
0
to P5
7
, P6
0
to P6
7
,
P7
6
, P7
7
, P8
0
to P8
4
, P8
6
,P8
7
,
P9
0,
P9
2
to P9
7
, P10
0
to P10
7
50.0
K
V
X
COUT
0
0
HIGHPOWER
LOWPOWER
LOW output
voltage
Icc
Standard
T
y
p
.
M
a
x
.
U
n
i
t
M
i
n
.
H
G
l
t
H
a
o
e
u
t
p
u
t
o
g
Hysteresis
H
y
s
t
e
r
e
s
i
s
HIGH input
current
LOW input
current
Pull-up
resistance
F
e
A
e
e
d
b
a
c
k
r
e
s
i
s
t
a
n
c
e
F
e
d
b
a
c
k
r
e
s
i
s
t
a
n
c
e
R
M
r
e
t
e
n
t
i
o
n
v
o
l
t
a
g
e
P
o
w
e
r
s
u
p
p
l
y
c
u
r
r
e
n
t
T
a
o
V
S
h
r
t
e
o
r
o
u
t
p
n
n
u
s
t
n
a
p
i
n
s
e
h
e
S
p
e
a
d
r
p
i
e
M
e
a
s
u
r
i
n
g
c
o
n
d
i
t
i
o
n
W
h
e
n
c
l
o
c
k
i
s
s
t
o
p
p
e
d
With no load applied
With no load applied
N
N
o
t
t
e
e
1
2
:
:
W
S
i
t
e
h
o
i
f
n
y
e
a
t
i
p
m
r
e
r
u
o
c
p
t
e
o
r
f
a
t
e
4
d
0
°
u
C
s
i
t
n
o
g
f
5
C
°
3
C
2
.
t
o
p
c
o
d
-
8
o
u
s
e
i
t
.
mA
3
0
.
0
5
0
.
0
f(X
IN
)=16MHz
S
u
a
r
e
f(X
CIN
)=32kHz
S
u
a
r
e
90.0
μ
A
q
w
a
v
e
,
n
o
d
i
v
i
s
i
o
n
q
w
a
v
e
Mask ROM version
mA
3
2
.
5
5
0
.
0
f(X
IN
)=16MHz
S
u
a
r
e
q
w
a
v
e
,
n
o
d
i
v
i
s
i
o
n
F
v
l
a
e
s
s
h
i
o
m
n
e
m
o
r
y
5
V
r
Ma
s
k
R
O
M
v
e
r
s
i
o
n
f(X
CIN
)=32kHz
S
u
a
r
e
f(X
CIN
)=32kHz
S
u
a
r
e
q
w
a
v
e
,
i
n
R
A
M
Flash memory 5V
version
l
s
h
m
e
v
e
r
s
i
o
n
1
.
0
μ
A
2
0
.
0
4.0
μ
A
f(X
CIN
)=32kHz
When a WAIT instruction
is executed (Note1)
Ta=85
°
C
when clock is stopped
Ta=25
°
C
when clock is stopped
2
.
2
mA
q
w
a
v
e
,
i
n
f
l
a
s
h
m
e
m
o
r
y
F
a
m
o
r
y
5
V
90.0
μ
A
mA
25
f(X
IN
)=16MHz
S
u
a
r
e
q
w
a
v
e
,
D
i
v
i
s
i
o
n
b
y
4
Flash memory 5V
version, Program
l
s
h
m
e
v
e
r
s
i
o
n
,
E
mA
28
f(X
IN
)=16MHz
Square wave, Division by 4
F
a
m
r
o
a
r
y
e
5
V
s
V
I
=
0
V
30.0
1
6
7
.
0
V
CC
= 5V