参数资料
型号: MM74HC4016N
厂商: NATIONAL SEMICONDUCTOR CORP
元件分类: 运动控制电子
英文描述: Alternator Voltage Regulator Darlington Driver; Package: SOIC 14 LEAD; No of Pins: 14; Container: Rail; Qty per Container: 55
中文描述: QUAD 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDIP14
封装: PLASTIC, DIP-14
文件页数: 2/8页
文件大小: 171K
代理商: MM74HC4016N
Absolute Maximum Ratings
(Notes 1 & 2)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales
Office/Distributors for availability and specifications.
Supply Voltage (V
CC
)
DC Control Input Voltage (V
IN
)
DC Switch I/O Voltage (V
IO
)
Clamp Diode Current (I
IK
, I
OK
)
DC Output Current, per pin (I
OUT
)
DC V
CC
or GND Current, per pin (I
CC
)
Storage Temperature Range (T
STG
)
Power Dissipation (P
D
)
(Note 3)
S.O. Package only
b
0.5 to
a
15V
b
1.5 to V
CC
a
1.5V
b
0.5 to V
CC
a
0.5V
g
20 mA
g
25 mA
g
50 mA
b
65
§
C to
a
150
§
C
600 mW
500 mW
260
§
C
Lead Temp. (T
L
) (Soldering 10 seconds)
Operating Conditions
Min
2
Max
12
Units
V
Supply Voltage (V
CC
)
DC Input or Output Voltage
(V
IN
, V
OUT
)
Operating Temp. Range (T
A
)
MM74HC
MM54HC
0
V
CC
V
b
40
b
55
a
85
a
125
§
C
§
C
Input Rise or Fall Times
V
CC
e
2.0V
(t
r
, t
f
)
V
CC
e
4.5V
V
CC
e
6.0V
1000
500
400
ns
ns
ns
DC Electrical Characteristics
(Note 4)
T
A
e
25
§
C
74HC
54HC
Symbol
Parameter
Conditions
V
CC
T
A
eb
40 to 85
§
C T
A
eb
55 to 125
§
C Units
Typ
Guaranteed Limits
V
IH
Minimum High Level
Input Voltage
2.0V
4.5V
9.0V
12.0V
1.5
3.15
6.3
8.4
1.5
3.15
6.3
8.4
1.5
3.15
6.3
8.4
V
V
V
V
V
IL
Maximum Low Level
Input Voltage
**
2.0V
4.5V
9.0V
12.0V
0.5
1.35
2.7
3.6
0.5
1.35
2.7
3.6
0.5
1.35
2.7
3.6
V
V
V
V
R
ON
Maximum ‘ON’ Resistance V
CTL
e
V
IH
, I
S
e
2.0 mA
(See Note 5)
4.5V
9.0V
12.0V
100
50
30
170
85
70
200
105
85
220
120
100
X
X
X
V
IS
e
V
CC
to GND
(Figure 1)
2.0V
4.5V
9.0V
12.0V
100
40
35
20
180
80
60
40
215
100
75
60
240
120
80
70
X
X
X
X
V
CTL
e
V
IH
, I
S
e
2.0 mA
V
IS
e
V
CC
or GND
(Figure 1)
R
ON
Maximum ‘ON’ Resistance V
CTL
e
V
IH
Matching
4.5V
9.0V
12.V
10
5
5
15
10
10
20
15
15
20
15
15
X
X
X
V
IS
e
V
CC
to GND
I
IN
Maximum Control
Input Current
V
IN
e
V
CC
or GND
6.0V
g
0.1
g
1.0
g
1.0
m
A
I
IZ
Maximum Switch ‘OFF’
Leakage Current
V
OS
e
V
CC
or GND
V
IS
e
GND or V
CC
V
CTL
e
V
IL
(Figure 2)
V
IS
e
V
CC
to GND
V
CTL
e
V
IH
, V
OH
e
OPEN
(Figure 3)
6.0V
9.0V
12.0V
g
60
g
80
g
100
g
600
g
800
g
1000
g
600
g
800
g
1000
nA
nA
nA
I
IZ
Maximum Switch ‘ON’
Leakage Current
6.0V
9.0V
12.0V
g
40
g
50
g
60
g
150
g
200
g
300
g
150
g
200
g
300
nA
nA
nA
I
CC
Maximum Quiescent
Supply Current
V
IN
e
V
CC
or GND
I
OUT
e
0
m
A
6.0V
9.0V
12.0V
2.0
4.0
8.0
20
40
80
40
80
160
m
A
m
A
m
A
Note 1:
Absolute Maximum Ratings are those values beyond which damage to the device may occur.
Note 2:
Unless otherwise specified all voltages are referenced to ground.
Note 3:
Power Dissipation temperature derating D plastic ‘‘N’’ package:
b
12 mW/
§
C from 65
§
C to 85
§
C; ceramic ‘‘J’’ package:
b
12 mW/
§
C from 100
§
C to 125
§
C.
Note 4:
For a power supply of 5V
g
10% the worst case on resistances (R
ON
) occurs for HC at 4.5V. Thus the 4.5V values should be used when designing with
this supply. Worst case V
IH
and V
IL
occur at V
CC
e
5.5V and 4.5V respectively. (The V
IH
value at 5.5V is 3.85V.) The worst case leakage current occur for CMOS at
the higher voltage and so these values should be used.
Note 5:
At supply voltages (V
CC
–GND) approaching 2V the analog switch on resistance becomes extremely non-linear. Therefore it is recommended that these
devices be used to transmit digital only when using these supply voltages.
**
V
IL
limits are currently tested at 20% of V
CC
. The above V
IL
specification (30% of V
CC
) will be implemented no later than Q1, CY’89.
2
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