PCIe 6.0 PHY, TSMC N6 x4 1.2V, 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
- 6nm
- N6
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.
PCIe 6.0 PHY, TSMC N6 x4 1.2V, 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…
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…
MIPI C-PHY v1.2 D-PHY v2.1 TX 3 trios/4 Lanes - TSMC 12FFCP 1.8V, North/South Poly Orientation
The integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband processors,…
MIPI MPHY Type 1 G5 2TX2RX TSMC N3E 1.2V, North/South Poly Orientation
The silicon-proven MIPI® M-PHY IP, compliant with the latest MIPI M-PHY v5.0 specification, supports speeds up to 23.32 Gbps per …
224G Ethernet PHY, TSMC N3E x4, North/South (vertical) poly orientation
The 224G Ethernet PHY IP, an integral part of the high-speed SerDes IP portfolio, meets the growing high bandwidth and low latenc…
TSMC N4P SD/eMMC PHY North/South Poly Orientation
Synopsys SD/eMMC PHY provides an optimal balance for cost and performance for storage solutions.
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 N5 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) 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.
JESD204B Tx-Rx PHY IP, Silicon Proven in TSMC 65GP/55GP
The JESD 204B controller IP is optimized and silicon agnostic implementation of the JEDEC JESD204B standard targeting any ASIC, F…
The ACTT family of interface IP for MIPI protocols is the way with mobile-optimized low power and high performance.
MIPI D-PHY Transmitter/Receiver for TSMC 22nm ULL
The MIPI® D-PHY Transmitter/Receiver is useful 2 Data Lanes transmitter/receiver hard macro for DSISM/CSI-2® of TSMC 22nm ULL process.
MIPI D-PHY Transmitter/Receiver for TSMC 40nm LP
The MIPI® D-PHY Transmitter/Receiver is useful 2 Data Lanes transmitter/receiver hard macro for DSISM/CSI-2® of TSMC 40nm LP process.
The T180BCDLVDSV1 IP is a mini-LVDS TX and RX PHY based on TSMC 180nm BCD process.
The T40LP_MIPIDPHYV01 IP is a MIPI D-PHY and LVDS based on TSMC 40nm LP process.
The IP is a USB PHY based on TSMC 180nm process.
ONFI 4.1 PHY IP (Silicon Proven in TSMC 12FFC)
ONFI PHY block is used to either transmit signal and data to NAND Flash interface or receive the data from NAND Flash by Flash co…
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…