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NS3L500 Datasheet, PDF (5/10 Pages) ON Semiconductor – 3.3V, 8-Channel, 2:1 Gigabit Ethernet LAN Switch with LED Switch
NS3L500
DC ELECTRICAL CHARACTERISTICS (Typical: T = 25°C, VCC = 3.3 V)
Symbol
Pins
Parameters
1000 BASE−T ETHERNET SWITCHING
VIH
SEL
Control Input HIGH
Voltage
VIL
SEL
Control Input LOW
Voltage
VIK
SEL
Clamp Diode Voltage
IIH
SEL
Input HIGH Current
IIL
SEL
Input LOW Current
IOFF
SEL
Off−Leakage Current
ICC
VCC
Quiescent Supply Current
ILA(OFF)
AX, xBY
Off−Leakage Current
ILA_(ON)
AX, xBY
On−Leakage Current
RON
AX, xBY
On−Resistance
RON(FLAT)
AX, xBY
On−Resistance Flatness
DRON
AX, xBY
On−Resistance Match
Between Switch Pairs
10/100 BASE−T ETHERNET SWITCHING
VIH
SEL
Control Input HIGH
Voltage
VIL
SEL
Control Input LOW
Voltage
VIK
SEL
Clamp Diode Voltage
IIH
SEL
Input HIGH Current
IIL
SEL
Input LOW Current
IOFF
SEL
Off−Leakage Current
ICC
VCC
Quiescent Supply Current
ILA(OFF)
AX, xBY
Off−Leakage Current
ILA_(ON)
AX, xBY
On−Leakage Current
RON
AX, xBY
On−Resistance
RON(FLAT)
AX, xBY
On−Resistance Flatness
DRON
AX, xBY
On−Resistance Match
Between Switch Pairs
Conditions
VCC = Max, IIN = −18 mA
VCC = Max, VIN = VCC
VCC = Max, VIN = GND
VCC = 0 V, VIN = 0 V to 3.6 V
VCC = 3.6 V,, VIN = VCC or
GND, IO = 0 mA
VCC = 3.6 V, VAX = 0.3 V, 3.3 V; VxB1
or VxB2 = 3.3 V, 0.3 V
VCC = 3.6 V, VAX = 0.3 V, 3.3 V; VxB1
or VxB2 = 0.3 V, 3.3 V, or floating
VCC = 3 V, 1.5 V v VIN v VCC,
IO = −40 mA
VCC = 3 V, VIN = 1.5 V and VCC,
IO = −40 mA
VCC = 3 V, 1.5 V v VIN v VCC,
IO = −40 mA
VCC = Max, IIN = −18 mA
VCC = Max, VIN = VCC
VCC = Max, VIN = GND
VCC = 0 V, VIN = 0 V to 3.6 V
VCC = 3.6 V, VIN = VCC or GND
IO = 0 mA
VCC = 3.6 V, VAX = 0.3 V, 3.3 V; VxB1
or VxB2 = 3.3 V, 0.3 V
VCC = 3.6 V, VAX = 0.3 V, 3.3 V; VxB1
or VxB2 = 0.3 V, 3.3 V, or floating
VCC = 3 V, 1.25 V v VIN v VCC,
IO = −10 mA to −30 mA
VCC = 3 V, VIN = 1.25 V and VCC,
IO = −10 mA to −30 mA
VCC = 3 V, 1.25 V v VIN v VCC,
IO = −10 mA to −30 mA
−405C to +855C
Min Typ Max Unit
2
5.5
V
−0.5
0.8
V
−0.7 −1.2
V
−1
+1
mA
−1
+1
mA
$1.5 mA
250 600 mA
−1
+1
mA
−1
+1
mA
4
7
W
0.5
W
0.4
1
W
2
5.5
V
−0.5
0.8
V
−0.7 −1.2
V
−1
+1
mA
−1
+1
mA
$1.5 mA
250 600 mA
−1
+1
mA
−1
+1
mA
4
6
W
0.5
W
0.4
1
W
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