NLX1G99
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9
AC ELECTRICAL CHARACTERISTICS (Input tr = tf = 3.0 ns)
Symbol
Parameter
VCC (V)
Test Condition
TA = 255C
TA v +855C
TA = 555C
to +1255C
Unit
Min
Typ
Max
Min
Max
Min
Max
tPLH,
tPHL
Propagation
Delay, Any
Input to Output
Y (See Test
Circuit)
1.651.95
2.3 2.7
3.0 3.6
4.5 5.5
Refer to switch
positions and loading
conditions in
4.3
2.4
1.7
1.3
12.8
7.1
5.2
4.0
25.1
10.2
6.7
4.5
4.3
2.4
1.7
1.3
25.1
10.2
6.9
4.9
4.3
2.4
1.7
1.3
25.1
10.2
7.0
5.0
ns
tEN
Output Enable
Time, OE to Y
1.651.95
2.3 2.7
3.0 3.6
4.5 5.5
Refer to switch
positions and loading
conditions in
3.4
2.1
1.3
1.0
24.7
11
7.5
5.7
3.4
2.1
1.3
1.0
24.7
12
8.0
6.2
3.4
2.1
1.3
1.0
24.7
12.2
8.3
6.5
ns
tDIS
Output Disable
Time, OE to Y
1.651.95
2.3 2.7
3.0 3.6
4.5 5.5
Refer to switch
positions and loading
conditions in
4.0
2.7
3.5
2.0
15.5
7.5
7.0
5.5
4.0
2.7
3.5
2.0
15.5
7.0
5.5
4.0
2.7
3.5
2.0
15.5
7.5
7.0
5.5
ns
tPLH,
tPHL
Propagation
Delay, Any
Input to Output
Y (See Test
Circuit)
1.651.95
2.3 2.7
3.0 3.6
4.5 5.5
Refer to switch
Positions and loading
conditions in
4.3
2.5
2.3
1.6
13.6
7.8
5.6
4.4
25.7
10.7
7.6
5.2
4.3
2.5
2.3
1.6
25.7
10.7
7.6
5.2
4.3
2.5
2.3
1.6
25.7
10.7
7.6
5.2
ns
tEN
Output Enable
Time, OE to Y
1.651.95
2.3 2.7
3.0 3.6
4.5 5.5
Refer to switch
Positions and loading
conditions in
4.2
2.4
2.0
1.7
25.2
11.3
8.0
6.0
4.2
2.4
2.0
1.7
25.2
12.2
8.5
6.5
4.2
2.4
2.0
1.7
25.2
13
8.7
6.7
ns
tDIS
Output Disable
Time, OE to Y
1.651.95
2.3 2.7
3.0 3.6
4.5 5.5
Refer to switch
Positions and loading
conditions in
3.7
2.0
2.1
1.0
15
6.5
5.6
4.5
3.7
2.0
2.1
1.0
15
6.7
5.8
4.7
3.7
2.0
2.1
1.0
15
6.9
5.9
4.9
ns
CIN
Input
Capacitance
3.3
3.5
pF
CO
Output
Capacitance
3.3
6.0
pF
CPD
Power
Dissipation
Capacitance
3.3
f = 10 MHz
22
pF
6. CPD is defined as the value of the internal equivalent capacitance which is calculated from the dynamic 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 noload
dynamic power consumption: PD = CPD VCC2 fin + ICC VCC.