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SQA16A
Integrated Circuits (ICs)

DS25CP102QSQ/NOPB

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Texas Instruments

AUTO 3.125-GBPS 2X2 LVDS CROSSPOINT SWITCH WIH TX PRE-EMPHASIS AND RX EQUALIZATION

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SQA16A
Integrated Circuits (ICs)

DS25CP102QSQ/NOPB

Active
Texas Instruments

AUTO 3.125-GBPS 2X2 LVDS CROSSPOINT SWITCH WIH TX PRE-EMPHASIS AND RX EQUALIZATION

Technical Specifications

Parameters and characteristics for this part

SpecificationDS25CP102QSQ/NOPB
Circuit1 x 2:2
GradeAutomotive
Independent Circuits1
Mounting TypeSurface Mount
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Package / Case16-WFQFN Exposed Pad
QualificationAEC-Q100
Supplier Device Package16-WQFN (4x4)
TypeCrosspoint Switch
Voltage - Supply [Max]3.6 V
Voltage - Supply [Min]3 V
Voltage Supply SourceSingle Supply

Pricing

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

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 12.31
Digi-Reel® 1$ 12.31
Tape & Reel (TR) 1000$ 7.80
Texas InstrumentsSMALL T&R 1$ 9.63
100$ 8.42
250$ 6.49
1000$ 5.80

Description

General part information

DS25CP102Q-Q1 Series

The DS25CP102Q is a 3.125 Gbps 2x2 LVDS crosspoint switch optimized for high-speed signal routing and switching over lossy FR-4 printed circuit board backplanes and balanced cables. Fully differential signal paths ensure exceptional signal integrity and noise immunity. The non-blocking architecture allows connections of any input to any output or outputs.

The DS25CP102Q features two levels (Off and On) of transmit pre-emphasis (PE) and two levels (Off and On) of receive equalization (EQ).

Wide input common mode range allows the switch to accept signals with LVDS, CML and LVPECL levels; the output levels are LVDS. A very small package footprint requires a minimal space on the board while the flow-through pinout allows easy board layout. Each differential input and output is internally terminated with a 100Ω resistor to lower device insertion and return losses, reduce component count and further minimize board space.