LVDS Transmitter IP, 700Mbps, UMC 90nm SP process
3.3V LVDS Transmitter 700Mbps, UMC 55nm SP/RVT Low-K process.
- UMC
- 90nm
- SP
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.
LVDS Transmitter IP, 700Mbps, UMC 90nm SP process
3.3V LVDS Transmitter 700Mbps, UMC 55nm SP/RVT Low-K process.
LVDS Transmitter IP, 700Mbps, UMC 55nm SP process
2.5V LVDS Transmitter 700Mbps, UMC 40nm LP Low-K Logic process.
LVDS Transmitter IP, 700Mbps, UMC 0.13um SP/FSG process
3.3V LVDS Transmitter 700Mbps, UMC 90nm SP/RVT low-L process.
LVDS Transmitter IP, 1200Mbps, UMC 55nm SP process
1.8V Sub-LVDS Transmitter 1200Mbps, UMC 40nm LP/RVT Logic process.
LVDS Transmitter IP, 8MHz - 100MHz, 4 channels, UMC 0.18um G2 process
3.3V 4 channel LVDS Transmitter 8~100MHz, UMC 90nm SP/RVT Low-K process.
LVDS Receiver IP, 20MHz - 135MHz , UMC 0.18um HS/FSG process
20M~135MHz DLL-based LVDS RX, UMC 0.13um HS/FSG process.
USB 2.0 OTG PHY IP, UMC 55nm LP process
USB2.0 OTG PHY (VDT and ID are included in PHY), UMC 55nm LP Low-K Logic process.
USB 1.1.OTG PHY IP, OTG, UMC 0.11um HS/AE process
USB1.1 PHY feature USB 1.1 On-The-Go PHY, UMC 0.11um HS/AE (AL Enhancement) Logic process.
USB 2.0 Device PHY IP, Non-Crystal mode support, UMC 0.11um HS/AE process
Crystal-Less USB2.0 PHY, UMC 0.11um HS/AE (AL Enhancement) Logic process.
USB 1.1 PHY IP, UMC 0.13um LL/FSG process
USB 1.1 transceiver, UMC 0.13um LL Logic/FSG process.
SATA III PHY IP, Gen-3, UMC 55nm SP process
Serial ATA I, II, III PHY, UMC 55nm SP/RVT Low-K Logic process.
SATA III PHY IP, Gen-3, UMC 0.11um HS/FSG process
6G/3G/1.5G Serial ATA PHY, UMC 0.11um HS/FSG Logic process.
PCI Express PHY IP, PCIe Gen-1, 1 Lanes, UMC 0.13um HS/FSG process
PCI-Express PHY with PIPE interface, 1 lane PCI-E PHY with Low Power feature, UMC 0.13um HS/FSG Logic process.
MIPI D-PHY Transmitter IP, 80Mbps - 1.5Gbps, UMC 55nm SP process
MIPI Transmitter 80~1500MHz, UMC 55nm SP/RVT Low-K Logic process.
MIPI D-PHY Receiver IP, 80Mbps - 1.5Gbps, UMC 55nm SP process
MIPI Receiver 80~1500MHz, UMC 55nm SP/RVT Low-K Logic process.
MIPI D-PHY Transmitter IP, 80Mbps - 1Gbps, UMC 40nm LP process
MIPI Transmitter 80~1000MHz, UMC 40nm LP/RVT Low-K process.
MIPI D-PHY Receiver IP, 80Mbps - 1Gbps, UMC 40nm LP process
MIPI Receiver 80Mbps-1Gbps, Combo PHY for MIPI & HiSPi & LVDS & SubLVDS, UMC 40nm LP Low-K Logic process, Two Lane.
MIPI D-PHY Receiver IP, 80Mbps - 1Gbps, UMC 40nm LP process
MIPI Receiver 80Mbps-1Gbps, Combo PHY for MIPI & HiSPi & LVDS & SubLVDS, UMC 40nm LP Low-K Logic process.
MIPI D-PHY Receiver IP, 80Mbps - 1Gbps, UMC 40nm LP process
MIPI Receiver 80Mbps-1Gbps, UMC 40nm LP Low-K Logic process.
PCIe 3.1 PHY (6nm, 7nm, 12nm, 14nm, 16nm, 22nm, 28nm and 40nm)
M31 PCIe 3.1 PHY IP provides high-performance, multi-lane capability and low power architecture for high-bandwidth applications.