USB 3.0 PHY; UMC 28nm HPC_Plus +RVT+LVT Logic Process
USB 3.0 PHY; UMC 28nm HPC_Plus +RVT+LVT Logic Process
- USB 3.0
- UMC
- 28nm
- HPC
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.
USB 3.0 PHY; UMC 28nm HPC_Plus +RVT+LVT Logic Process
USB 3.0 PHY; UMC 28nm HPC_Plus +RVT+LVT Logic Process
USB 2.0 On-The-Go PHY; UMC 40nm Logic LP/RVT Low-K Process
USB 2.0 On-The-Go PHY; UMC 40nm Logic LP/RVT Low-K 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
USB2.0 OTG PHY UMC 40nm LP/RVT process, for Flip chip Bump type_LF
USB2.0 OTG PHY UMC 40nm LP/RVT process, for Flip chip Bump type_LF
USB 2.0 On-The-Go PHY, analog part ; UMC 28nm HPC RVT Logic Process
USB 2.0 On-The-Go PHY, analog part ; UMC 28nm HPC RVT Logic Process
28Gb/s 4 lane high-speed SerDes; UMC 28nm HPC Logic Std/HS process
28Gb/s 4 lane high-speed SerDes; UMC 28nm HPC Logic Std/HS process
UMC 28nm HPC+, 4-Lane 1.25~12.5 Gbps SERDES
UMC 28nm HPC+, 4-Lane 1.25~12.5 Gbps SERDES
PCIE Gen.II PHY; UMC 65nm LP/RVT LowK Logic Process.
PCIE Gen.II PHY; UMC 65nm LP/RVT LowK Logic Process.
ONFI PHY Compensation Block for ONFI4.0 application; UMC 40nm LP/RVT Logic Process
ONFI PHY Compensation Block for ONFI4.0 application; UMC 40nm LP/RVT Logic Process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC+ process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC+ process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC process
MIPI Transmitter 80Mbps~1.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~1.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~2.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~1.5Gbps ; UMC 28nm HPC Logic Process
MIPI Transmitter 80Mbps~1.5Gbps ; UMC 28nm HPC Logic Process
MIPI Receiver,DPHY RX V1.2; UMC 28nm HPC Logic and Mixed-Mode Process
MIPI Receiver,DPHY RX V1.2; UMC 28nm HPC Logic and Mixed-Mode Process
MIPI CSI Receiver 1G/ SLVDS 1G /HiSPi 1G, 1.8V/3.3V GPI 100MHz; UMC 28nm HPC Logic Process
MIPI CSI Receiver 1G/ SLVDS 1G /HiSPi 1G, 1.8V/3.3V GPI 100MHz; UMC 28nm HPC Logic Process
MIPI Receiver, DPHY V1.2 RX ; UMC 28nm HPC process
MIPI Receiver, DPHY V1.2 RX ; UMC 28nm HPC process
MIPI Receiver, DPHY V1.1 RX ; UMC 28nm HPC process
MIPI Receiver, DPHY V1.1 RX ; UMC 28nm HPC process
MIPI DPHY Reciever 80Mbps~2.5Gbps ; UMC 28nm HPC+ Process
MIPI DPHY Reciever 80Mbps~2.5Gbps ; UMC 28nm HPC+ Process