參數(shù)資料
型號: M38001E8-XXXHP
廠商: Mitsubishi Electric Corporation
英文描述: POT 500 OHM 1/2 SQ CERM SL MT
中文描述: 8位單片機(jī)
文件頁數(shù): 104/173頁
文件大小: 4203K
代理商: M38001E8-XXXHP
3800 GROUP USER’S MANUAL
APPENDIX
3.1 Electrical characteristics
3-2
3.1 Electrical characteristics
3.1.1 Absolute maximum ratings
Table 3.1.1 Absolute maximum ratings
Power source voltage
Input voltage
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
,
P4
0
–P4
7
, P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
RESET, X
IN
CNV
SS
Output voltage P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
,
P4
0
–P4
7
, P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
, X
OUT
Power dissipation
Operating temperature
Storage temperature
Note :
300 mW in case of the flat package.
Input voltage
Input voltage
V
CC
V
I
V
I
V
I
V
O
P
d
T
opr
T
stg
Symbol
Parameter
Conditions
Ratings
–0.3 to 7.0
–0.3 to V
CC
+0.3
–0.3 to V
CC
+0.3
–0.3 to 13
–0.3 to V
CC
+0.3
1000(Note)
–20 to 85
–40 to 125
V
V
V
V
V
mW
°
C
°
C
Unit
T
a
= 25
°
C
All voltages are
based on V
SS
.
Output transistors
are cut off.
Table 3.1.2 Recommended operating conditions
(V
CC
= 3.0 to 5.5 V, T
a
= –20 to 85
°
C, unless otherwise noted)
3.1.2 Recommended operating conditions
Note 1:
The minimum power source voltage is [V] (f(X
IN
) = XMHz) on the condition of 2 MHz < f(X
IN
) < 8 MHz.
2:
The total output current is the sum of all the currents flowing through all the applicable ports. The total average current is an aver-
age value measured over 100 ms. The total peak current is the peak value of all the currents.
3:
The peak output current is the peak current flowing in each port.
4:
The average output current I
OL(avg)
, I
OH(avg)
in an average value measured over 100 ms.
5.5
5.5
V
CC
V
CC
0.2 V
CC
0.2 V
CC
0.16 V
CC
–80
–80
80
80
–40
–40
40
40
–10
10
–5
5
8
6 V
CC
–16
Power source voltage (Note 1)
(f(X
IN
)
2 MHz)
(f(X
IN
) = 8 MHz)
Power source voltage
“H” input voltage
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
, P4
0
–P4
7
,
P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
RESET, X
IN
, CNV
SS
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
, P4
0
–P4
7
,
P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
RESET, CNV
SS
X
IN
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
(Note 2)
P4
0
–P4
7
,P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 2)
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
(Note 2)
P4
0
–P4
7
,P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 2)
“H” input voltage
“L” input voltage
“L” input voltage
“L” input voltage
“H” total peak output current
“H” total peak output current
“L” total peak output current
“L” total peak output current
“H” total average output current P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
(Note 2)
“H” total average output current P4
0
–P4
7
,P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 2)
“L” total average output current
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
(Note 2)
“L” total average output current
P4
0
–P4
7
,P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 2)
“H” peak output current
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
, P4
0
–P4
7
,
P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 3)
“L” peak output current
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
, P4
0
–P4
7
,
P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 3)
“H” average output current
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
, P4
0
–P4
7
,
P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 4)
“L” average output current
P0
0
–P0
7
, P1
0
–P1
7
, P2
0
–P2
7
, P3
0
–P3
7
, P4
0
–P4
7
,
P5
0
–P5
7
, P6
0
–P6
7
, P7
0
, P7
1
(Note 4)
Internal clock oscillation frequency (4.0 V
Vcc
5.5 V)
Internal clock oscillation frequency (3.0 V
Vcc
4.0 V)
V
CC
V
SS
V
IH
V
IH
V
IL
V
IL
V
IL
Σ
I
OH(peak)
Σ
I
OH(peak)
Σ
I
OL(peak)
Σ
I
OL(peak)
Σ
I
OH(avg)
Σ
I
OH(avg)
Σ
I
OL(avg)
Σ
I
OL(avg)
I
OH(peak)
I
OL(peak)
I
OH(avg)
I
OL(avg)
f(X
IN
)
Symbol
Parameter
Limits
Typ.
Min.
3.0
4.0
V
V
V
V
V
V
V
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
MHz
Unit
0.8 V
CC
0.8 V
CC
0
0
0
5.0
5.0
0
Max.
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