12G Ethernet PHY, UMC 28HPCP x4, North/South (vertical) poly 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
Single-Protocol PHY IP cores help engineering teams evaluate reusable semiconductor IP for advanced chip designs.
This page lets you compare Single-Protocol PHY IP offerings from multiple vendors based on functionality, integration requirements, performance targets, power efficiency, and process compatibility.
12G Ethernet PHY, UMC 28HPCP x4, North/South (vertical) poly 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 28HPCP x2, North/South (vertical) poly 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 28HPCP x1, North/South (vertical) poly 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 x8, North/South (vertical) poly 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 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…
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.
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
USB1.1 PHY Feature USB 1.1 On-The-Go PHY; UMC 0.11um HS/AE (AL Enhancement) Logic Process, without internal power clamping circuit