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SY100EL56VZG - 20 SOIC

SY100EL56VZG

Active
Microchip Technology

3.3V/5V DUAL DIFFERENTIAL 2:1 MULTIPLEXER 20 SOIC .300IN TUBE ROHS COMPLIANT: YES

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SY100EL56VZG - 20 SOIC

SY100EL56VZG

Active
Microchip Technology

3.3V/5V DUAL DIFFERENTIAL 2:1 MULTIPLEXER 20 SOIC .300IN TUBE ROHS COMPLIANT: YES

Deep-Dive with AI

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationSY100EL56VZGSY100EL56V Series
--
Circuit [custom]22
Circuit [custom]2:12:1
Independent Circuits11
Mounting TypeSurface MountSurface Mount
Operating Temperature [Max]85 °C85 °C
Operating Temperature [Min]-40 °C-40 °C
Package / Case20-SOIC20-SOIC
Package / Case [y]0.295 in0.295 in
Package / Case [y]7.5 mm7.5 mm
Supplier Device Package20-SOIC20-SOIC
TypeDifferential Digital MultiplexerDifferential Digital Multiplexer
Voltage Supply SourceDual SupplyDual Supply

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 266$ 3.82
Microchip DirectTUBE 1$ 2.66
25$ 2.21
100$ 2.01
1000$ 1.94
5000$ 1.92
10000$ 1.90
NewarkEach 100$ 2.07

SY100EL56V Series

3.3V/5V DUAL DIFFERENTIAL 2:1 MULTIPLEXER 20 SOIC .300IN TUBE ROHS COMPLIANT: YES

PartVoltage Supply SourceSupplier Device PackageCircuit [custom]Circuit [custom]Independent CircuitsMounting TypeTypeOperating Temperature [Max]Operating Temperature [Min]Package / CasePackage / Case [y]Package / Case [y]
Microchip Technology
SY100EL56VZG
Dual Supply
20-SOIC
2
2:1
1
Surface Mount
Differential Digital Multiplexer
85 °C
-40 °C
20-SOIC
0.295 in
7.5 mm
Microchip Technology
SY100EL56VZG

Description

General part information

SY100EL56V Series

The SY100EL56V is a dual, fully differential 2:1 multiplexer. The differential data path makes the device ideal for multiplexing low skew clock or other skew sensitive signals. Multiple VBB pins are provided to ease AC coupling input signals.The device features both individual and common select inputs to address both data path and random logic applications.The differential inputs have special circuitry which ensures device stability under open input conditions. When both differential inputs are left open the D input will pull down to VEE, the D input will bias around VCC/2 forcing the Q output LOW.