12G Ethernet PHY, UMC 28HPC x4 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…
- UMC
- 28nm
- HPC
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.
12G Ethernet PHY, UMC 28HPC x4 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, UMC 28HPC x2 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, UMC 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…
ONFI IO v3.2, 533MT/s, UMC40LP
ONFI I/O is a non-volatile memory interface technology with high bandwidth capabilities, mainly developed for flash storage appli…
ONFI IO v3.2, 533MT/s, UMC 28HPC+, 1.8V, N/S orientation, H&V cell
ONFI I/O is a non-volatile memory interface technology with high bandwidth capabilities, mainly developed for flash storage appli…
ONFI IO v4.0, 800MT/s, UMC 28HPC+, 1.8V, N/S orientation, H&V cell
ONFI I/O is a non-volatile memory interface technology with high bandwidth capabilities, mainly developed for flash storage appli…
ONFI IO v4.1, 1.2T/s, UMC 22ULL, 1.8V, N/S orientation, H&V cell
ONFI I/O is a non-volatile memory interface technology with high bandwidth capabilities, mainly developed for flash storage appli…
MIPI MPHY v3.1, 2Tx-2Rx Type-1, UMC 22ULL 1.8V, N/S orientation
MIPI M-PHY is a serial interface technology with high bandwidth capabilities, which is particularly developed for mobile applicat…
MIPI DPHY_RX v1.2, 2C4D, UMC 28HPC+, E/W orientation
The D-PHY is a popular MIPI physical layer developed for mobile applications because it is a flexible, high-speed, low-power and …
MIPI DPHY_TX v1.2, 1C4D, UMC 28HPC+, E/W orientation
The D-PHY is a popular MIPI physical layer developed for mobile applications because it is a flexible, high-speed, low-power and …
USB2.0 build-in clock PHY, UMC 40LP, type-C
In USB product series, M31 not only provides customers with a standard USB PHY solution, but also offers a unique BCK function.
USB3.0 build-in clock PHY, UMC 40LP, type-C
In USB product series, M31 not only provides customers with a standard USB PHY solution, but also offers a unique BCK function.
16Gbps multi-protocol programmable SerDes PHY in UMC 28HPC+
Faraday 16Gbps multi-protocol programmable SerDes PHY IP in UMC 28HPC+ process is designed with a system-level approach to provid…
PSI2488-U9 is a GPON ONT SERDES capable of receiving serial data at the rate of 2.488Gbps and transmitting data at the rate of 1.…
USB2.0 Dual-Role PHY, UMC 28HPC+, N/S orientation
M31 provides customers the next generation of USB 2.0 IP with an extremely compact die area and lower active and suspend power co…
USB 3.1 Gen.1 TYPE-C PHY ; UMC 40nm Logic/Mixed-Mode Low Power/RVT+LVT Process
USB 3.1 Gen.1 TYPE-C PHY ; UMC 40nm Logic/Mixed-Mode Low Power/RVT+LVT Process
Two Port OTG USB2.0 PHY;BOAC version; Wire bonding;UMC 40 nm LP/RVT process.
Two Port OTG USB2.0 PHY;BOAC version; Wire bonding;UMC 40 nm LP/RVT process.
USB 2.0 On-The-Go PHY; UMC 28nm HPC RVT Logic Process
USB 2.0 On-The-Go PHY; UMC 28nm HPC RVT Logic Process
USB 1.1 transceiver support crystal-less mode in USB system ; UMC 55nm eFlash Process
USB 1.1 transceiver support crystal-less mode in USB system ; UMC 55nm eFlash Process
USB1.1 PHY Feature USB 1.1 On-The-Go PHY; UMC 55nm Logic Low Power Low-K Process
USB1.1 PHY Feature USB 1.1 On-The-Go PHY; UMC 55nm Logic Low Power Low-K Process