PCIe 6.0 PHY, TSMC N4P x4, North/South (vertical) poly orientation
The multi-channel PHY IP for PCI Express® (PCIe®) 6.x meets today’s demands for higher bandwidth and power efficiency across netw…
- PCIe Gen6
- TSMC
- 4nm
- N4P
Single-Protocol PHY IP cores help engineering teams evaluate reusable semiconductor IP for advanced chip designs.
This page lets you compare Single-Protocol PHY IP offerings from multiple vendors based on functionality, integration requirements, performance targets, power efficiency, and process compatibility.
PCIe 6.0 PHY, TSMC N4P x4, North/South (vertical) poly orientation
The multi-channel PHY IP for PCI Express® (PCIe®) 6.x meets today’s demands for higher bandwidth and power efficiency across netw…
12G Ethernet PHY, TSMC 28HPC x1 North/South orientation
The multi-lane Multi-Protocol 16G PHY IP is part of a high-performance multi-rate transceiver portfolio, meeting the growing need…
12G Ethernet PHY, TSMC 28HPC x1 North/South orientation
The multi-lane Multi-Protocol 16G PHY IP is part of a high-performance multi-rate transceiver portfolio, meeting the growing need…
USB-C 3.2 DP/TX PHY in TSMC (N3E)
The Synopsys USB-C 3.2/DisplayPort 1.4 IP solution consists of USB-C 3.2/DisplayPort 1.4 PHYs, USB-C 3.2/DisplayPort 1.4 controll…
USB-C 3.2 DP/TX PHY in GF (12nm)
The Synopsys USB-C 3.2/DisplayPort 1.4 IP solution consists of USB-C 3.2/DisplayPort 1.4 PHYs, USB-C 3.2/DisplayPort 1.4 controll…
USB-C 3.2 DP/TX PHY ebdaux in TSMC (N5)
The Synopsys USB-C 3.2/DisplayPort 1.4 IP solution consists of USB-C 3.2/DisplayPort 1.4 PHYs, USB-C 3.2/DisplayPort 1.4 controll…
TSMC 5nm (N5)1.8V SD/eMMC PHY, multiple metalstacks
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
TSMC 3nm (N3E) 1.8V SD/eMMC PHY, multiple metalstacks
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
TSMC N3E SD/eMMC PHY North/South Poly Orientation
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
The IP is a USB PHY based on TSMC 180nm process.
Gigabit Ethernet PHY (Modification Right)
Gigabit Ethernet PHY Modification Right (in production)
The LVDS transceiver IP is a SERDES pair that clearly interprets 12–bit parallel bus into serial stream.
Special I/O-eMMC/SDIO in TSMC(22nm, 28nm, and 40nm)
SD (Secureity Digital) and eMMC (embedded MultiMedia Card) I/Os are non-volatile memory interface technologiesy with high bandwid…
PCIe 4.0 PHY in TSMC(6nm,7nm, 12nm,16nm)
M31 PCIe 4.0 PHY IP provides high-performance, multi-lane capability and low power architecture for high-bandwidth applications.
ONFI I/O 6.0/5.1/5.0 IP in TSMC(3nm, 5nm, 6nm, 12nm, 16nm, 22nm, 28nm, 40nm, 55nm)
ONFI I/O is a non-volatile memory interface technology with high bandwidth capabilities, mainly developed for flash storage appli…
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USB 3.1 is the most recent version of the USB (Universal Serial Bus) standard for connecting electronic devices in host and devic…
OT3910bj is a set of cells designed for implementing the transmitter, receiver and associated bias function for LVDS point to poi…