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74CBTLV3251QG Datasheet(PDF) 3 Page - Integrated Device Technology

Part # 74CBTLV3251QG
Description  LOW-VOLTAGE 8:1 MULTIPLEXER/ DEMULTIPLEXER
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Manufacturer  IDT [Integrated Device Technology]
Direct Link  http://www.idt.com
Logo IDT - Integrated Device Technology

74CBTLV3251QG Datasheet(HTML) 3 Page - Integrated Device Technology

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INDUSTRIALTEMPERATURERANGE
IDT74CBTLV3251
LOW-VOLTAGE8:1MULTIPLEXER/DEMULTIPLEXER
3
Symbol
Parameter
Test Conditions
Min.
Typ.(1)
Max.
Unit
VIK
Control Inputs, Data Inputs
VCC = 3V, II = –18mA
–1.2
V
II
Control Inputs
VCC = 3.6V, VI = VCC or GND
±1
μA
IOZ
Data I/O
VCC = 3.6V, VO = 0 or 3.6V, switch disabled
5
μA
IOFF
VCC = 0, VI or VO = 0 to 3.6V
50
μA
ICC
VCC = 3.6V, IO = 0, VI = VCC or GND
10
μA
ΔICC(2)
Control Inputs
VCC = 3.6V, one input at 3V, other inputs at VCC or GND
300
μA
CI
Control Inputs
VI = 3V or 0
4
pF
CIO(OFF)
A Port
VO = 3V or 0, OE = VCC = 3.3V
40.5
pF
B Port
—6
VCC = 2.3V
VI = 0
IO = 64mA
5
8
Typ. at VCC = 2.5V
IO = 24mA
5
8
RON(3)
VI = 1.7V
IO = 15mA
27
40
Ω
VI = 0
IO = 64mA
5
7
VCC = 3V
IO = 24mA
5
7
VI = 2.4V
IO = 15mA
10
15
DC ELECTRICAL CHARACTERISTICS OVER OPERATING RANGE
FollowingConditionsApplyUnlessOtherwiseSpecified:
Operating Conditions: TA = –40°C to +85°C
VCC = 2.5V ± 0.2V
VCC = 3.3V ± 0.3V
Symbol
Parameter
Min.
Max.
Min.
Max.
Unit
tPD(1)
PropagationDelay
0.15
0.25
ns
A to B or B to A
tSEL
SelectTime
1
4.8
1
4.5
ns
S to A or B
tEN
EnableTime
1
4.8
1
4.5
ns
S to B
tDIS
DisableTime
1
5.1
1
5.3
ns
S to B
tEN
OutputEnableTime
1
5
1
4.8
ns
OE to A or B
tDIS
OutputDisableTime
1
5.5
1
6
ns
OE to A or B
NOTE:
1. The propagation delay is the calculated RC time constant of the typical on-state resistance of the switch and the specified load capacitance driven by an ideal voltage source
(zero output impedance).
SWITCHINGCHARACTERISTICS
NOTES:
1. Typical values are at VCC = 3.3V, +25°C ambient.
2. The increase in supply current is attributable to each current that is at the specified voltage level rather than VCC or GND.
3. This is measured by the voltage drop between the A and B terminals at the indicated current through the switch. On-state resistance is determined by the lower of the voltages
of the two (A or B ) terminals.


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