The architecture utilizing DSP techniques demonstrated excellent scalability over data rates and insertion losses, superior relia…
- Multi-Protocol PHY
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.
The architecture utilizing DSP techniques demonstrated excellent scalability over data rates and insertion losses, superior relia…
Our MIPI-D-PHY IP is a high-frequency low-power, low-cost, source-synchronous, Physical Layer that supports the MIPI Alliance Sta…
HDMI transmitter PHY (Physical layer) IP core which is fully amenable with HDMI 1.4/2.0 specification.HDMI transmitter PHY which …
We propound best in class fully customizable PCIe 3.0 PHY, targeted for both enterprise and client application, the complaint to …
USB 3.0 femtoPHY in SMIC (28nm)
The Synopsys USB-C™ 3.0 and USB 3.0 femtoPHY IP provide designers with a physical (PHY) layer IP solution for low-power mobile an…
MIPI M-PHY HS Gear 4 IP is compliant with the MIPI serial communication protocol for use in mobile systems where performance, pow…
The transmitter is designed to support Single link transmission between Host and Flat Panel Display up to 1080p resolutions, Dual…
Gen-Z Physical Layer for PCIe IP Core
The IntelliProp IPC-GZ197A-ZM Gen-Z Physical Layer for PCIe is an IP Core that allows companies to attach a Gen-Z core to a PCIe …
High speed analog circuits for USB3.0 PHY application 745um*620um
This receiver converts 5 LVDS, (low voltage differential signaling) data streams, into 30bits (single pixel) CMOS data plus 5 con…
This receiver converts 5 LVDS, (low voltage differential signaling) data streams, into 30bits (single pixel) CMOS data plus 5 con…
This receiver converts 5 LVDS, (low voltage differential signaling) data streams, into 30bits (single pixel) CMOS data plus 5 con…
This transmitter converts 10 LVDS, (low voltage differential signaling) data streams, into up to 60 bits (dual pixel 30-bits) CMO…
This transmitter converts 10 LVDS, (low voltage differential signaling) data streams, into up to 60 bits (dual pixel 30-bits) CMO…
This receiver converts 10 LVDS, (low voltage differential signaling) data streams, into 30bits dual pixel CMOS data plus 10 contr…
V-Trans ‘s FPD Link Receiver Macro is based on National Semiconductor openLDI specification v0.95 dated May 13th 1999 that allow …
FPD-link, 30-Bit Color LVDS Receiver, 20-112Mhz
V-Trans 's FPD Link Receiver Macro is based on National Semiconductor openLDI specification v0.95 dated May 13th 1999 that allow …
V-Trans ‘s FPD Link Receiver Macro is based on National Semiconductor openLDI specification v0.95 dated May 13th 1999 that allow …
Serdes 32:1 for 8.5-11.3Gb/s for SONET/SDH, 10GbE, XFI, Back Plain
PMCC_SERDES12G is a macro-block consisting of a 32:1 serializer and 1:32 deserializer with supporting functions such as CDR, CMU,…
FPD-link, 30Bits Color LVDS Receiver, 150Mhz (SVGA/WXGA)
Now available up to 150Mhz (90Mhz previously) V-Trans 's FPD Link Receiver Macro is based on National Semiconductor openLDI speci…