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Our USB redrivers can improve the signal eye diagram, extend link distances and help with compliance tests. These USB signal conditioners actively regenerate signals using an equalizer and amplifier. This reshapes the bypassed signal (to remove jitters) and reopens the differential signal eyes (for longer channel transmission and reduced bit error rate).
To request more information on USB Type-C, contact USBTypeC@nxp.com.
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eUSB2 to USB2 redriver device that enables advanced SoC on the latest process geometries to interface with traditional USB2 applications over long PCB traces.
High-performance USB 3.2 and DP 1.4 combination linear redriver that is optimized for USB Type-C downstream facing (DFP) or upstream facing (UFP) ports.
High-performance USB 4 20 Gbps per lane, 4 lane linear redriver optimized for USB 3.2, DisplayPort 1.4 and Thunderbolt 3.
Type-C USB 3.1 Gen 1/ DP1.2 combo redriver that is optimized for USB 3.1 Gen 1 and DisplayPort applications by following the four high-speed differential data flows to extend the signal reach.
Low power 2 differential channel 2 to 1 active multiplex/demultiplexer switch with integrated superspeed USB 3.1 Gen 1 redriver IC.
Low power superspeed USB 3.0 redriver IC that enhances signal quality by performing receive equalization on the deteriorated input signal followed by transmit de-emphasis maximizing system link performance for mobile applications.
Low power superspeed USB 3.0 redriver IC that enhances signal quality by performing receive equalization on the deteriorated input signal followed by transmit de-emphasis maximizing system link performance for mobile applications.
Low power, high performance superspeed USB 3.0 redriver that enhances signal quality by performing receive equalization on the deteriorated input signal followed by transmit de-emphasis maximizing system link performance.
Superspeed USB 3.0 redriver IC that enhances signal quality by performing receive equalization on the deteriorated input signal followed by transmit de-emphasis maximizing system link performance.
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