HDMI 2.1 Tx PHY in GF 12LP , North/South Poly Orientation
The HDMI 2.1 TX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
- GlobalFoundries
- 12nm
- LP
HDMI IP cores enable digital multimedia transport between processors, displays, cameras, and external devices in modern SoC and ASIC designs.
These IP cores support digital audio/video transmission between source and display devices in consumer and embedded systems, helping designers build interoperable video and display pipelines across consumer, automotive, and industrial systems
This catalog allows you to compare HDMI IP cores from leading vendors based on throughput, feature set, power efficiency, and process node compatibility.
Whether you are designing TV and display systems, consumer electronics, automotive displays, or multimedia SoCs, you can find the right HDMI IP for your application.
HDMI 2.1 Tx PHY in GF 12LP , North/South Poly Orientation
The HDMI 2.1 TX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 RX PHY 12Gbps in TSMC 16FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 RX PHY 12Gbps in TSMC 12FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 eARC TX PHY in TSMC 16FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 eARC TX PHY in TSMC 12FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 eARC RX PHY in TSMC 16FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 eARC RX PHY in TSMC 12FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 eARC Rx PHY in GF 12LP 1.8V, North/South Poly Orientation
The HDMI 2.1 RX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 1.4 Rx PHY & Controller IP, Silicon Proven in ST 28FDSOI
The HDMI receiver PHY (Physical layer), a single-port IP core, complies with all the specifications of HDMI 1.4.
HDMI 1.4 Tx PHY & Controller IP, Silicon Proven in ST 28FDSOI
IP core for physical layer HDMI transmitters that fully complies with HDMI 1.4 specifications The HDMI transmitter PHY provides a…
HDMI 1.4 Tx PHY & Controller IP, Silicon Proven in TSMC 130/110G
IP core for physical layer HDMI transmitters that fully complies with HDMI 1.4 specifications The HDMI transmitter PHY supports p…
HDMI 2.0 Receiver with MHL 2.0
IP
IP
HDMI Receiver Link IP Core supporting the standard of HDMI 1.3a, which will be quickly implemented into SoC of consumers; product…
HDMI RX PHY is the physical layer of a single-port HDMI transmitter interface.
HDMI TX PHY is the physical layer of a single-link HDMI transmitter interface.
HDMI - Ensures seamless video and audio transmission with HDMI standards
HDMI Verification IP validates HDMI controller functionality in SoC designs, ensuring compliance with HDMI standards like 1.4, 2.…
In production since 2011 on many production designs.The Cadence® Verification IP (VIP) for HDMI provides a mature, capable compli…
HDMI 2.0 RX PHY in SS 8LPP 1.8V, North/South Poly Orientation
The HDMI 2.0 RX Controller and PHY IP solutions provide the necessary logic to implement and verify designs for various consumer …
HDMI 2.0 RX Controller with HDCP
The HDMI 2.0 RX Controller and PHY IP solutions provide the necessary logic to implement and verify designs for various consumer …