MIPI C-PHY v1.2 D-PHY v2.1 TX 3 trios/4 Lanes in TSMC (16nm, 12nm, N7, N6, N5, N3E)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
- MIPI C-PHY + 1
- TSMC
- 16nm
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.
MIPI C-PHY v1.2 D-PHY v2.1 TX 3 trios/4 Lanes in TSMC (16nm, 12nm, N7, N6, N5, N3E)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.2 D-PHY v2.1 TX 2 trios/2 Lanes in TSMC (16nm) for Automotive
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.2 D-PHY v2.1 TX 2 trios/2 Lanes in TSMC (16nm, 12nm, N5)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.2 D-PHY v2.1 RX 3 trios/4 Lanes in TSMC (16nm, N7) for Automotive
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.2 D-PHY v2.1 RX 3 trios/4 Lanes in TSMC (16nm, 12nm, N7, N6, N5)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.2 D-PHY v2.1 RX 2 trios/2 Lanes in TSMC (16nm) for Automotive
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.2 D-PHY v2.1 RX 2 trios/2 Lanes in TSMC (16nm,N6, N5)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.0 D-PHY v1.2 TX 3 trios/4 Lanes in TSMC (16nm, 12nm, N7, N6, N5, N3P)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
MIPI C-PHY v1.0 D-PHY v1.2 RX 3 trios/4 Lanes in TSMC (16nm, 12nm, N7, N6, N5)
Synopsys’ integrated C-PHY/D-PHY IP enables high-performance, low-power interface to SoCs, application processors, baseband proce…
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-C 3.1 DP/TX PHY ebdaux in TSMC (N5, N3E)
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.
Home Plug Green PHY MAC Layer TX/RX
ntHPGP_MAC IP core implements “Connectionless CSMA-Only Level-0 CCo“ MAC Layer functionality with Passive Coordination, as detail…
112G LR-Max Ethernet PHY for TSMC N5
Synopsys Multi-Protocol 112G PHY IP is part of Synopsys’ high- performance multi-rate transceiver portfolio for high-end networki…
224G Ethernet PHY for TSMC 3nm
The Synopsys 224G Ethernet PHY IP, an integral part of Synopsys’ high-speed SerDes IP portfolio, meets the growing high bandwidth…
The 224G SerDes PHY enables the emerging 1.6T and 800G networks for hyperscale data center and artificial intelligence (AI) infrastructures.
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.
The 56G Long-Reach (LR) SerDes PHY provides exceptional performance with best-in-class power and area, making it ideal for machine learning (ML) and 5G infrastructure application