参数资料
型号: MC74HC1GU04DTT2
厂商: MOTOROLA INC
元件分类: 门电路
英文描述: HC/UH SERIES, 1-INPUT INVERT GATE, PDSO5
封装: SC-59, SOT-23, TSOP-5
文件页数: 6/12页
文件大小: 218K
代理商: MC74HC1GU04DTT2
http://onsemi.com
3
DC ELECTRICAL CHARACTERISTICS
VCC
TA = 25°C
TA ≤ 85°C
TA ≤ 125°C
Symbol
Parameter
Test Conditions
(V)
Min
Typ
Max
Min
Max
Min
Max
Unit
VIH
Minimum High–Level
Input Voltage
2.0
3.0
4.5
6.0
1.7
2.45
3.60
4.80
1.7
2.45
3.60
4.80
1.7
2.45
3.60
4.80
V
VIL
Maximum Low–Level
Input Voltage
2.0
3.0
4.5
6.0
0.3
0.5
0.9
1.20
0.3
0.5
0.9
1.20
0.3
0.5
0.9
1.20
V
VOH
Minimum High–Level
Output Voltage
VIN = VIH or VIL
IOH = –20A
2.0
3.0
4.5
6.0
1.8
2.7
4.0
5.5
2.0
3.0
4.5
5.9
1.8
2.7
4.0
5.5
1.8
2.7
4.0
5.5
V
VIN = VIH or VIL
IOH = –2mA
IOH = –2.6mA
4.5
6.0
4.18
5.68
4.33
5.76
4.13
5.63
4.08
5.58
V
VOL
Maximum Low–Level
Output Voltage
VIN = VIH or VIL
IOL = 20A
2.0
3.0
4.5
6.0
0.0
0.1
V
VIN = VIH or VIL
IOL = 2mA
IOL = 2.6mA
4.5
6.0
0.26
0.33
0.40
V
IIN
Maximum Input
Leakage Current
VIN = 6.0V or GND
0 to
6.0
±0.1
±1.0
A
ICC
Maximum Quiescent
Supply Current
VIN = VCC or GND
6.0
1.0
10
40
A
AC ELECTRICAL CHARACTERISTICS (Cload = 50 pF, Input tr = tf = 6.0ns)
TA = 25°C
TA ≤ 85°C
TA ≤ 125°C
Symbol
Parameter
Test Conditions
Min
Typ
Max
Min
Max
Min
Max
Unit
tPLH,
tPHL
Maximum Propogation
Delay,
Input A to Y
VCC = 5.0V
CL = 15 pF
7.0
15
20
25
ns
Input A to Y
VCC = 2.0V
CL = 50 pF
VCC = 3.0V
VCC = 4.5V
VCC = 6.0V
48
24
12
9.0
100
40
20
17
125
50
25
21
155
90
35
26
tTLH,
tTHL
Output Transition Time
VCC = 5.0V
CL = 15 pF
5.0
10
15
20
ns
VCC = 2.0V
CL = 50 pF
VCC = 3.0V
VCC = 4.5V
VCC = 6.0V
50
22
14
12
125
35
25
21
155
45
31
26
200
60
38
32
CIN
Maximum Input
Capacitance
5
10
10
10
pF
Typical @ 25
°C, VCC = 5.0V
CPD
Power Dissipation Capacitance (Note 1.)
10
pF
1. CPD is defined as the value of the internal equivalent capacitance which is calculated from the operating current consumption without load. Average
operating current can be obtained by the equation: ICC(OPR) = CPD VCC fin + ICC. CPD is used to determine the no–load dynamic power
consumption; PD = CPD VCC2 fin + ICC VCC.
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