Display Port v1.4 Rx PHY & Controller IP, Silicon Proven in UMC 40SP
The Display Port 1.4 Rx IP Channel's maximum capacity is supported.
- UMC
- 40nm
- LP
- 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.
Display Port v1.4 Rx PHY & Controller IP, Silicon Proven in UMC 40SP
The Display Port 1.4 Rx IP Channel's maximum capacity is supported.
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in UMC 40SP
Version 1.4 of the DisplayPort transmitter PHY is capable of transmitting data at rates of 1.62Gbps (RBR) to 5.4Gbps (HBR2).
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in UMC 28HPC
The DisplayPort transmitter PHY version 1.4 supports data rates between 1.62Gbps (RBR) to 5.4Gbps (HBR2).
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in TSMC 28HPC+
The DisplayPort transmitter PHY version 1.4 supports data rates between 1.62Gbps (RBR) to 5.4Gbps (HBR2).
MIPI D-PHY Tx IP, Silicon Proven in SMIC 55LL
The MIPI D-PHY Analog TX IP Core fully complies with version 1.2 of the D-PHY specification.
MIPI D-PHY Rx IP, Silicon Proven in SMIC 55LL
The D-PHY specification, version 1.2, is perfectly complied with by the MIPI D-PHY Analog RX IP Core.
PCIe is the most common protocol in high speed serial standards to connect components in embedded systems.
USB 3.0 PHY IP, Silicon Proven in UMC 28HPC
For peripheral devices, there is a Universal Serial Bus (USB) transceiver available.
USB 2.0 PHY IP, Silicon Proven in UMC 28HPC
The USB 2.0 PHY IP Core offers a physical layer (PHY) solution for high performance and low power.
USB 2.0 PHY IP, Silicon Proven in UMC 40LP
The USB2.0 PHY IP is a full physical layer (PHY) IP solution created for excellent performance and low power consumption.
USB 3.0/ PCIe 2.0 Combo PHY IP, Silicon Proven in TSMC 28HPC+
The Combo PHY is a USB 3.0 and PCIe 2.0 PHY IP solution designed for a mobile and data consumer applications in TSMC 28nm process.
USB 3.2/ PCIe 3.1/ SATA 3.2 Combo PHY IP, Silicon Proven in UMC 28HPC
The combo PHY consist of Peripheral Component Interconnect Express (PCIe) compliant with PCIe 3.1 Base Specification with support…
USB 3.2 Gen2 PHY IP, Silicon Proven in UMC 28HPC
The USB 3.2 Gen2X1 transceiver IP supports all USB 3.2 Gen2X1 host and peripheral applications up to 10Gbps.
USB 3.1 Gen1/Gen2 PHY IP, Silicon Proven in SMIC 14SF+
With this PHY IP, it supports both USB 3.1 Gen1 and Gen2.
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 SMIC 14SF+
The USB2.0 PHY IP is a comprehensive physical layer (PHY) IP solution created for exceptional performance and low power consumpti…