ML145170
LANSDALE Semiconductor, Inc.
ELECTRICAL CHARACTERISTICS (Voltages Referenced to V . T = –40° to 85°C)
SS
A
V
V
Guaranteed
Limit
DD
Parameter
Test Condition
Symbol
Unti
V
Power Supply Voltage Range
V
DD
–
2.7 to 5.5
Maximum Low-Level Input Voltage [Note 1]
DC Coupling to f
V
IL
2.7
4.5
5.5
0.54
1.35
1.65
V
in
(D , CLK, ENB, f
)
in
in
Minimum High-Level Input Voltage [Note 1]
(D , CLK, ENB, f
DC Coupling to f
V
IH
2.7
4.5
5.5
2.16
3.15
3.85
in
v
)
in
in
Minimum Hysteresis Voltage (CLK, ENB)
V
2.7
5.5
0.15
0.20
Hys
v
v
Maximum Low-Level Output Voltage
(Any Output)
I
I
= 20 µA
V
2.7
5.5
0.1
0.1
out
OL
Minimum high-Level Output Voltage
(Any Output)
= –20 µA
V
2.7
5.5
2.6
5.4
out
OH
OL
v
Minimum Low-Level output Current
(PD , REF , f , f , LD, φ , φ )
V
V
V
= 0.3 V
= 0.4 V
= 0.5 V
I
2.7
4.5
5.5
0.12
0.36
0.36
mA
out
out
out
R
V
R
V
out
out
Minimum High-Level Output Current
(PD , REF , f , f , LD, φ , φ )
V
= 2.4 V
= 4.1 V
= 5.0 V
I
2.7
4.5
5.5
-0.12
-0.36
-0.36
mA
out
OH
V
out
out
out
R
V
R
V
V
out
Minimum Low-Level Output Current
(D
V
= 0.4 V
I
4.5
4.5
5.5
5.5
5.5
1.6
-1.6
1.0
mA
mA
µA
µA
nA
out
OL
)
out
Maximum High-Level Output Current
(D
V
V
V
V
= 4.1 V
I
OH
out
)
out
Maximum Input Leakage Current
= V or V
I
in
in
in
DD
SS
in
(D , CLK, ENB, OSC )
in
in
Maximum Input Current
(f )
in
= V or V
I
150
100
DD
SS
in
Maximum Output Leakage Current (PD
)
)
= V or V
.
I
out
DD
SS
OZ
Output in High-Impedance State
(D
5.5
5.5
5.0
µA
µA
out
Maximum Quieschent Supply Current
V
in
= V or V : Outputs Open;
I
100
DD
SS
DD
Excluding f Amp Input Current Component
in
Maximum Operating Supply Current
f
in
= 500 mVpp;
I
dd
–
[Note 2]
mA
OSC = 1.0 MHz @ 1.0 Vpp;
in
LD, f , f , REF = Inactive and No Connect;
R
V
out
OSC , φ , φ , PD = No Connect;
out
V
R
out
D , ENB, CLK = V or V
in
DD
SS
NOTES: 1. When DC coupling to the OSC pin is used, the pin must be driven rail–to–rail, In this case, OSC should be floated.
in
out
2. The nominal values at 3.0 V are 0.6 mA @ 30 MHz, and 1.5 mA @ 100 MHz. The nominal values at 5.0 V are 3.0 mA @ 50 MHz, and 5.8 mA
@ 185 MHz. These are not guaranteed limits.
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