To address today’s content capacity and bandwidth requirements, JEDEC and SD Association continue to define new functionality and…
- GlobalFoundries
- 12nm
- LP
- Available on request
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.
To address today’s content capacity and bandwidth requirements, JEDEC and SD Association continue to define new functionality and…
The multi-lane Synopsys Multi-Protocol 32G PHY IP is part of Synopsys’ high-performance multi-rate transceiver portfolio for high…
28G LR Ethernet PHY in GF (12nm)
The multi-lane Synopsys Multi-Protocol 32G PHY IP is part of Synopsys’ high-performance multi-rate transceiver portfolio for high…
The multi-lane Synopsys Multi-Protocol 25G PHY IP is part of Synopsys’ high- performance multi-rate transceiver portfolio for hig…
The multi-lane Synopsys Multi-Protocol 25G PHY IP is part of Synopsys’ high- performance multi-rate transceiver portfolio for hig…
PCIe 4.0 PHY in GF (14nm, 12nm)
The multi-channel Synopsys PHY IP for PCI Express® 4.0 includes Synopsys’ high-speed, high-performance transceiver to meet today’…
The multi-channel Synopsys PHY IP for PCI Express® 3.1 includes Synopsys’ high-speed, high-performance transceiver to meet today’…
PCIe 2.0 PHY in GF (40nm, 28nm, 22nm, 12nm)
The multi-channel Synopsys PHY IP for PCI Express® 2.1/1.1 includes Synopsys’ high-speed, high-performance transceiver to meet to…
MIPI M-PHY G4 Type 1 2TX2RX in GF (12nm)
The silicon-proven Synopsys MIPI® M-PHY IP, compliant with the latest MIPI M-PHY v5.0 specification, supports speeds up to 23.32 …
MIPI D-PHY Tx-Only 4 Lanes in GF (12nm)
Synopsys’ IP D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband processors, and per…
MIPI D-PHY Rx-Only 4 Lanes in GF (28nm, 12nm)
Synopsys’ IP D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband processors, and per…
MIPI D-PHY Rx-Only 2 Lanes in GF (28nm)
Synopsys’ IP D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband processors, and per…
MIPI D-PHY Bidirectional 4 Lanes in GF (40nm, 28nm, 22nm)
Synopsys’ IP D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband processors, and per…
MIPI D-PHY Bidirectional 2 Lanes in GF (40nm, 28nm, 22nm)
Synopsys’ IP D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband processors, and per…
USB-C 3.1/DP TX PHY in GF (22nm)
The Synopsys SuperSpeed 3.1 USB IP solution is based on the USB 3.0 specification from the USB Implementer Forum.
USB 3.1 PHY (10G/5G) in GF (22nm)
The Synopsys SuperSpeed 3.1 USB IP solution is based on the USB 3.0 specification from the USB Implementer Forum.
Ultra-short reach SerDes with 500 Gbit/s throughput
High-density, low-power SerDes IP delivering 500 Gbit/s throughput for in-package and multi-chip module interconnects, without a silicon interposer.
32G Multi Rate Very Short Reach SerDes PHY - GlobalFoundries 12LP and 12LPP
Extoll’s SerDes architecture is based on digital design elements and methodologies.
32G Multi Rate Long Reach SerDes PHY - GlobalFoundries 12LP and 12LPP
Extoll’s SerDes architecture is based on digital design elements and methodologies.
MIPI D-PHY/LVDS combo Transmitter - 8-Lane 700Mbps
The CL12661H8T1JM2JIP is an ideal means to link Camera Modules or CMOS Image Sensor (CIS) to Host System.