USB 3.0 femtoPHY in UMC (28nm, 12nm)
The Synopsys USB-C™ 3.0 and USB 3.0 femtoPHY IP provide designers with a physical (PHY) layer IP solution for low-power mobile an…
- USB 3.0
- UMC
- 28nm
- Available on request
Interface and connectivity IP cores enable communication between components, chips, and systems in modern SoC and ASIC designs.
These IP cores implement a wide range of communication standards including high-speed serial interfaces, on-chip interconnects, chiplet and die-to-die links, and low-speed control interfaces.
This catalog allows you to explore and compare connectivity IP cores from leading vendors based on bandwidth, latency, protocol support, and process node compatibility.
Whether you are designing high-performance computing systems, data center processors, automotive platforms, or embedded systems, you can find the right interface IP for your communication requirements.
USB 3.0 femtoPHY in UMC (28nm, 12nm)
The Synopsys USB-C™ 3.0 and USB 3.0 femtoPHY IP provide designers with a physical (PHY) layer IP solution for low-power mobile an…
USB 2.0 picoPHY in UMC (40nm, 28nm)
The Synopsys USB 2.0 picoPHY provides designers with a physical (PHY) layer IP solution, designed for low power mobile and consum…
The Synopsys USB 2.0 nanoPHY provides designers with a Physical Layer (PHY) IP solution, designed for low-power mobile and consum…
USB 2.0 femtoPHY in UMC (28nm, 22nm)
The Synopsys IP USB 2.0 femtoPHY provides designers with a physical (PHY) layer IP solution for low-power mobile and consumer app…
GbE (10/100 Base-T) PHY IP, Silicon Proven UMC 40LP
An IEEE 802.3u compliant single-port Ethernet physical layer transceiver with low power consumption for 10BASE-Te and 100BASE-TX …
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).
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 3.2/ 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 UMC 28HPC
It supports both USB 3.1 Gen1 and Gen2 with this PHY IP.
USB 3.0 PHY IP, Silicon Proven in UMC 40SP
A Universal Serial Bus (USB) transceiver is available for peripheral devices.
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 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 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…