USB-C 3.2 DP/TX PHY ebdaux in Samsung (SF4X, SF4E, SF2)
The Synopsys USB-C 3.2/DisplayPort 1.4 IP solution consists of USB-C 3.2/DisplayPort 1.4 PHYs, USB-C 3.2/DisplayPort 1.4 controll…
- USB 3.2
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-C 3.2 DP/TX PHY ebdaux in Samsung (SF4X, SF4E, SF2)
The Synopsys USB-C 3.2/DisplayPort 1.4 IP solution consists of USB-C 3.2/DisplayPort 1.4 PHYs, USB-C 3.2/DisplayPort 1.4 controll…
112G LRM PHY, TSMC N5 x2, North/South (vertical) poly orientation
The Multi-Protocol 112G PHY IP is part of a high performance multi-rate transceiver portfolio for high-end networking and high pe…
PCIe 5.0 PHY, SS SF5A x4, North/South (vertical) poly orientation
The multi-channel PHY IP for PCI Express® (PCIe®)5.0 and CXL includes a high-speed, high-performance transceiver to meet today’s …
PCIe 6.0 PHY, TSMC N5 x4, North/South (vertical) poly orientation
The multi-channel PHY IP for PCI Express® (PCIe®) 6.x meets today’s demands for higher bandwidth and power efficiency across netw…
The C/D-PHY Combo IP delivers top-tier PPA characteristics and is mass production-proven across multiple customer SoCs.
Compliant with ONFI 5.0 specification; Supports NV-DDR2 mode; Supports NV-DDR3, NV-LPDDR4, and max rate up to 2400MT/s
The HDMI Tx PHY is the physical layer of a single-link HDMI transmitter interface.
The HDMI Rx PHY is the physical layer of an HDMI receiver.
The XAUI PHY is a mixed-signal semiconductor intellectual property (IP) solution, designed for single-chip integration into XAUI …
The SATA 6G PHY is a mixed-signal semiconductor intellectual property (IP) solution, designed for single-chip integration into SA…
The PCIe2 PHY is a mixed-signal semiconductor intellectual property (IP) solution, designed for single-chip integration into PCI …
The PCIe1 PHY is a mixed-signal semiconductor intellectual property (IP) solution, designed for single-chip integration into comp…
The MIPI D-PHY RX 2/4 Lanes macro implements the physical layer of universal lanes for the MIPI D-PHY interface, stacked in a two…
The MIPI D-PHY Bidirectional 2-Lane(4-Lane) macro implements the physical layer of bidirectional universal lanes for the MIPI D-P…
The USB 3.0 PHY is a , mixed-signal semiconductor intellectual property (IP) solution, designed for single-chip integration into …
The USB 2.0 PHY is a mixed-signal IP solution designed to implement OTG connectivity in a System-on-Chip (SoC) design targeted to…
The Intra-panel TX PHY IP is a low-power transmitter designed for COG (Chip-on-Glass) and COF (Chip-on-Film) display modules.
The OT4001_cjtag is an adapter which permits legacy IEEE 1149.1 ports to communicate as an IEEE 1149.7 2-wire OScan1 cJTAG port.
Compiles with PCIe 4.0, 3.1, 2.1, 1.1 and PIPE 4.4.1 specifications
Samsung 28nm FDSOI USB3.0 and PCIE2 combo PHY
The USB3.0 Super-Speed / PCI Express Combo PHY is a programmable IP that is compatible with the PHY Interface for PCI Express and…