9
MITSUBISHI MICROCOMPUTERS
M37702M2LXXXGP, M37702S1LGP
M37702M2LXXXHP, M37702S1LHP
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
In single-
chip mode
output only
pin is open
and other
pins are V
SS
during reset.
V
OH
V
OH
V
OH
V
OH
V
OL
V
OL
V
OL
V
OL
V
T+
–
V
T–
V
T+
–
V
T–
V
T+
–
V
T–
I
IH
I
IL
V
RAM
I
CC
High-level output voltage P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
,
P3
0
, P3
1
, P3
3
, P4
0
–P4
7
, P5
0
–P5
7
,
P6
0
–P6
7
, P7
0
–P7
7
, P8
0
–P8
7
High-level output voltage P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
,
P3
0
, P3
1
, P3
3
High-level output voltage P3
2
High-level output voltage
_
E
Low-level output voltage P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
,
P3
0
, P3
1
, P3
3
, P4
0
–P4
7
, P5
0
–P5
7
,
P6
0
–P6
7
, P7
0
–P7
7
, P8
0
–P8
7
Low-level output voltage P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
,
P3
0
, P3
1
, P3
3
Low-level output voltage P3
2
Low-level output voltage
_
E
Hysteresis
_____
____
INT
0
–INT
2
, AD
TRG
, CTS
0
, CTS
1
, CLK
0
, CLK
1
RESET
Hysteresis
Hysteresis X
IN
High-level input current
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
,
P3
0
–P3
3
, P4
0
–P4
7
, P5
0
–P5
7
,
P6
0
–P6
7
, P7
0
–P7
7
, P8
0
–P8
7,
X
IN
, RESET, CNV
SS
, BYTE
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
,
P3
0
–P3
3
, P4
0
–P4
7
, P5
0
–P5
7
,
P6
0
–P6
7
, P7
0
–P7
7
, P8
0
–P8
7,
X
IN
, RESET, CNV
SS
, BYTE
Low-level input current
RAM hold voltage
Power supply current
V
CC
= 5 V, I
OH
= –10 mA
Limits
Typ.
Symbol
Parameter
Test conditions
Unit
Min.
Max.
3.1
4.8
2.6
3.4
4.8
2.6
ELECTRICAL CHARACTERISTICS
(V
CC
= 5 V, V
SS
= 0 V, T
a
= 25 °C, f(X
IN
) = 8 MHz, unless otherwise noted)
Limits
Typ.
Symbol
Parameter
Test conditions
Unit
—
—
R
LADDER
t
CONV
V
REF
V
IA
Resolution
Absolute accuracy
Ladder resistance
Conversion time
Reference voltage
Analog input voltage
Min.
Max.
8
±3
10
2
28.5
2.7
0
V
CC
V
REF
Bits
LSB
k
μ
s
V
V
V
REF
= V
CC
V
REF
= V
CC
V
REF
= V
CC
A-D CONVERTER CHARACTERISTICS
(V
CC
= 5 V, V
SS
= 0 V, T
a
= 25 °C, f(X
IN
) = 8 MHz, unless otherwise noted)
T
a
= 25 °C when clock
is stopped.
T
a
= 85 °C when clock
is stopped.
f(X
IN
) = 8 MHz,
square waveform
V
CC
= 5 V
V
CC
= 3 V
V
CC
= 3 V, I
OH
= –1 mA
V
CC
= 5 V, I
OH
= –400
μ
A
V
CC
= 5 V, I
OH
= –10 mA
V
CC
= 5 V, I
OH
= –400
μ
A
V
CC
= 3 V, I
OH
= –1 mA
V
CC
= 5 V, I
OH
= –10 mA
V
CC
= 5 V, I
OH
= –400
μ
A
V
CC
= 3 V, I
OH
= –1 mA
V
CC
= 5 V, I
OL
= 10 mA
V
CC
= 3 V, I
OL
= 1 mA
V
CC
= 5 V, I
OL
= 10 mA
V
CC
= 5 V, I
OL
= 2 mA
V
CC
= 3 V, I
OL
= 1 mA
V
CC
= 5 V, I
OL
= 10 mA
V
CC
= 5 V, I
OL
= 2 mA
V
CC
= 3 V, I
OL
= 1 mA
V
CC
= 5 V
V
CC
= 3 V
V
CC
= 5 V
V
CC
= 3 V
V
CC
= 5 V
V
CC
= 3 V
V
CC
= 5 V, I
OL
= 2 mA
V
CC
= 5 V, V
I
= 5 V
V
CC
= 3 V, V
I
= 3 V
V
CC
= 5 V, V
I
= 0 V
V
CC
= 3 V, V
I
= 0 V
When clock is stopped.
0.4
0.1
0.2
0.1
0.1
0.06
3
2.5
4.7
2
6
4
2
0.5
0.45
1.9
0.43
0.4
1.6
0.4
0.4
1
0.7
0.5
0.4
0.3
0.2
5
4
–5
–4
12
8
1
20
V
V
V
V
V
V
V
V
V
V
V
μ
A
μ
A
mA
μ
A
V