USB 3.1 Gen1/Gen2 PHY IP, Silicon Proven in UMC 28HPC
It supports both USB 3.1 Gen1 and Gen2 with this PHY IP.
- USB 3.1
- UMC
- 28nm
- HPC
- In Production
PHY and SerDes IP cores are essential building blocks for high-speed data transmission in modern semiconductor designs. This category includes physical layer IP and serializer/deserializer solutions used to implement reliable chip-to-chip, die-to-die, backplane and interface connectivity across networking, compute, storage, automotive and consumer applications.
Browse PHY / SerDes semiconductor IP for high-speed interfaces requiring robust signal integrity, scalable lane configurations, low power and standards-oriented interoperability. Compare controller-adjacent PHY IP, generic SerDes architectures and specialized high-speed connectivity solutions from multiple vendors for integration into ASICs, SoCs and advanced package designs.
USB 3.1 Gen1/Gen2 PHY IP, Silicon Proven in UMC 28HPC
It supports both USB 3.1 Gen1 and Gen2 with this PHY IP.
USB 3.0 PHY IP, Silicon Proven in SMIC 14SF+
For auxiliary devices, a Universal Serial Bus (USB) transceiver is offered.
USB 3.0 PHY IP, Silicon Proven in UMC 40SP
A Universal Serial Bus (USB) transceiver is available for peripheral devices.
USB 2.0 PHY IP, Silicon Proven in SMIC 40LL
The USB 2.0 PHY IP Core is a solution for the physical layer (PHY) that prioritizes both high performance and low power consumpti…
USB 2.0 PHY IP, Silicon Proven in SMIC 55LL
The USB2.0 PHY IP is a comprehensive physical layer (PHY) IP solution created for exceptional performance and low power consumpti…
USB 2.0 PHY IP, Silicon Proven in UMC 55SP/EF
The USB2.0 PHY IP is a physical layer (PHY) IP solution created for exceptional performance and low power consumption.
USB 2.0 PHY IP, Silicon Proven in TSMC 40LP/LL
The USB2.0 PHY IP is an entire physical layer (PHY) IP solution built for high performance and low power consumption.
PCIe 2.0 Serdes PHY IP, Silicon Proven in UMC 40LP
The full gamut of PCIe 2.0 Base operations is covered by PCIe 2.0 transceiver IP.
PCIe 2.0 Serdes PHY IP, Silicon Proven in UMC 28HPC
The PCIe 2.0 PHY IP presents a configurable physical layer (PHY) IP solution tailored for Consumer Electronics.
PCIe 2.0 Serdes PHY IP, Silicon Proven in SMIC 55LL/SP/EF
PCIe Gen 2.0 PHY IP is a physical layer (PHY) IP solution for mobile, consumer and Enterprise applications that enable for a well…
PCIe 2.0 Serdes PHY IP, Silicon Proven in SMIC 40LL
PCIe Gen 2 PHY IP is a physical layer (PHY) IP solution for consumer electronics, that allows for a full featured customization a…
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 55ULP/65ULP
The PCIe2.0 PHY IP is a physical layer (PHY) IP solution designed for mobile and consumer applications.
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 22ULP/ULL
The PCIe2.0 PHY IP is an all-in-one physical layer (PHY) IP solution for mobile and consumer applications.
PCIe 4.0 Serdes PHY IP, Silicon Proven in UMC 28HPC
With compliance for PIPE 4.4 interface spec, Peripheral Component Interconnect Express (PCIe) Gen4 PHY IP complies with PCIe 4.0 …
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 28HPCP
The PCIe2.0 PHY IP is a fully - featured physical layer (PHY) IP solution for mobile and consumer applications.
PCIe 3.0 Serdes PHY IP, Silicon Proven in UMC 40LP
This PCIe 3.0 Base Specification-compliant Peripheral Component Interconnect Express Gen3 PHY supports the PIPE 4.3 interface sta…
PCIe 3.0 Serdes PHY IP, Silicon Proven in UMC 28HPC
This PCIe 3.0 Base Specification-compliant Peripheral Component Interconnect Express Gen3 PHY supports the PIPE 4.3 interface sta…
Display Port v1.4 Rx PHY & Controller IP, Silicon Proven in TSMC 40LP
This Display Port v1.4 Rx PHY IP Core supports Channel capacity, offering programmable analog characteristics like CDR Bandwidth,…
USB 3.0 PHY IP, Silicon Proven in TSMC 28HPC+
A Universal Serial Bus (USB) transceiver which is provided for peripheral devices.
SD4.1 UHS-II IP utilizes distinctive SerDes technology to attain a speed of 312MB/s for UHS-II while maintaining low power consum…