
NL27WZ04
http://onsemi.com
3
DC ELECTRICAL CHARACTERISTICS
V
CC
T
A
= 25
°
C
40
°
C
≤
T
A
≤
85
°
C
Parameter
Condition
Symbol
(V)
Min
Typ
Max
Min
Max
Unit
HighLevel Input Voltage
V
IH
1.651.95
0.75 V
CC
0.7 V
CC
0.75 V
CC
0.7 V
CC
V
2.3 to 5.5
LowLevel Input Voltage
V
IL
1.651.95
0.25 V
CC
0.3 V
CC
0.25 V
CC
0.3 V
CC
V
2.3 to 5.5
HighLevel Output
Voltage
V
IN
= V
IL
I
OH
= 100 A
V
OH
1.65 to 5.5
V
CC
0.1
V
CC
V
CC
0.1
V
I
OH
= 3 mA
I
OH
= 8 mA
1.65
1.29
1.52
1.29
2.3
1.9
2.1
1.9
I
OH
= 12 mA
2.7
2.2
2.4
2.2
I
OH
= 16 mA
3.0
2.4
2.7
2.4
I
OH
= 24 mA
3.0
2.3
2.5
2.3
I
OH
= 32 mA
4.5
3.8
4.0
3.8
LowLevel Output
Voltage
V
IN
= V
IH
I
OL
= 100 A
V
OL
1.65 to 5.5
0.1
0.1
V
I
OL
= 3 mA
I
OL
= 8 mA
1.65
0.08
0.24
0.24
2.3
0.20
0.3
0.3
I
OL
= 12 mA
2.7
0.22
0.4
0.4
I
OL
= 16 mA
3.0
0.28
0.4
0.4
I
OL
= 24 mA
3.0
0.38
0.55
0.55
I
OL
= 32 mA
4.5
0.42
0.55
0.55
Input Leakage Current
V
IN
= V
CC
or GND
I
IN
0 to 5.5
±
0.1
±
1.0
A
Power OffOutput
Leakage Current
V
OUT
= 5.5 V
I
OFF
0
1
10
A
Quiescent Supply
Current
V
IN
= V
CC
or GND
I
CC
1.65 to 5.5
1
10
A
AC ELECTRICAL CHARACTERISTICS
t
R
= t
F
= 2.5 ns; C
L
= 50 pF; R
L
= 500
Parameter
Condition
(V)
T
A
= 25
°
C
40
°
C
≤
T
A
≤
85
°
C
Unit
ns
Symbol
Min
2.3
Typ
Max
9.2
1.8
Min
Max
Propagation Delay
R
L
= 1 M
C
L
= 15 pF
t
PLH
1.65
1.8
4.4
3.0
7.6
1.8
11.0
R
L
= 1 M
C
L
= 15 pF
1.8
1.8
2.2
5.1
1.2
8.4
R
L
= 1 M
C
L
= 15 pF
2.5
±
0.2
1.2
2.9
3.4
0.8
5.6
R
L
= 1 M
C
L
= 15 pF
3.3
±
0.3
0.8
1..8
4.5
1.2
3.8
R
L
= 500
C
L
= 50 pF
1.2
2.3
2.8
0.5
5.0
R
L
= 1 M
C
L
= 15 pF
5.0
±
0.5
0.5
3.6
0.8
3.1
R
L
= 500
C
L
= 50 pF
0.8
4.0
CAPACITIVE CHARACTERISTICS
Parameter
Symbol
Condition
Typical
Unit
Input Capacitance
C
IN
V
CC
= 5.5 V, V
I
= 0 V or V
CC
2.5
pF
Power Dissipation
Capacitance (Note 6)
C
PD
10 MHz, V
CC
= 3.3 V, V
I
= 0 V or V
CC
10 MHz, V
CC
= 5.5 V, V
I
= 0 V or V
CC
9
11
pF
6. C
PD
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: I
CC(OPR
)
= C
PD
V
CC
f
in
+ I
CC
. C
PD
is used to determine the noload dynamic
power consumption; P
D
= C
PD
V
CC2
f
in
+ I
CC
V
CC
.