TSMC N3E SD/eMMC PHY North/South Poly Orientation
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
- TSMC
- 3nm
- N3E
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.
TSMC N3E SD/eMMC PHY North/South Poly Orientation
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
TSMC N3A SD/eMMC PHY AG2 North/South Poly Orientation
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
Programmable Low Power SERDES Receiver on TSMC CLN65LP
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer capable of signaling at multiple data rates and supports…
Programmable Low Power SERDES on TSMC CLN40G
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer capable of signaling at multiple data rates and supports…
Programmable Low Power SERDES on TSMC CLN28HPL
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer capable of signaling at multiple data rates and supports…
PCI Express Gen3 SERDES PHY on TSMC CLN40G
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer capable of signaling at multiple data rates and supports…
Low Power PCIe3/SATA3 Gen3 PHY on TSMC CLN28HPC+
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer and synthesizable Physical Coding Sublayer (PCS).
Low Power PCIe Gen3 PHY on TSMC CLN16FFC
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer and synthesizable Physical Coding Sublayer (PCS).
Low Power PCIe Gen3 PHY on TSMC CLN12FFC
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer and synthesizable Physical Coding Sublayer (PCS).
Low Power 1-22G PCIe Gen4 / SAS4 PHY on TSMC CLN16FFC
The Programmable SERDES provides a Physical Media Attachment (PMA) Layer and synthesizable Physical Coding Sublayer (PCS) capable…
TSMC N3P SD/eMMC PHY North/South Poly Orientation
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
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 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 ACTT family of interface IP for MIPI protocols is the way with mobile-optimized low power and high performance.