The HDMI Forward Error Correction (FEC) Transmitter IP Core implements Reed-Solomon FEC and symbol mapping/interleaving as specif…
- HDMI
Semiconductor IP cores (Intellectual Property cores) are reusable design blocks used in SoC and ASIC development to accelerate time-to-market and reduce design complexity.
These IP cores span a broad range of technologies, including Analog & Mixed Signal, Compute Acceleration, Graphics & Vision, Interface Connectivity , Memory Interfaces, Security, Wireless, System Peripheral, Embedded Memories, and Foundation Libraries. The catalog covers everything from analog front-ends, data converters, processors, DSPs, AI accelerators, and imaging solutions to high-speed connectivity, memory controllers and PHYs, cryptographic engines, embedded memory macros, standard cell libraries, and wireless communication IP.
This catalog allows you to explore and compare IP cores from leading vendors, based on performance, power, process node compatibility, and application domain.
Whether you are designing for automotive, wireless communication, consumer electronics, or data centers, you can find the right IP solutions for your system requirements.
The HDMI Forward Error Correction (FEC) Transmitter IP Core implements Reed-Solomon FEC and symbol mapping/interleaving as specif…
The HDMI Forward Error Correction (FEC) Receiver IP Core implements Reed-Solomon FEC and symbol de-interleaving/de-mapping as spe…
The K-best decoder is part of the MIMO decoder.
General Purpose Input/Output Controller
The CC-GPIO-AXI is a synthesisable Verilog model of a General Purpose Input/Output Controller.
General Purpose Input/Output Controller
The CC-GPIO-APB is a synthesisable Verilog model of a General Purpose Input/Output Controller.
Serial Front Panel Data Port (sFPDP) IP Core
The sFPDP core provides a IP solution for the VITA 17.1-2015 sFPDP specification.
Provides Time-Sensitive Networking (TSN) capabilities to devices that operate as end systems in the network
On the transmitter side, the PHY layer receives its inputs from the Media Access Control (MAC) layer.
High speed analog circuits for USB3.0 PHY application 745um*620um
The Arm® SecurCore® SC300 processor is designed specifically for high-performance smartcard and embedded security applications.
The Cortex-R8 processor delivers twice the performance of the Cortex-R7 processor.
The Arm® Cortex®-R52 delivers the highest level of integrated capability for functional safety of any Arm processor.
The Arm Cortex-R5 processor forms a simple migration path from the Cortex-R4 processor, and onwards to the higher performance Cor…
The Cortex-M7 processor enables partners to build the most sophisticated variety of MCUs and embedded SoCs.
The Cortex-M4 processor is developed to address digital signal control markets that demand an efficient, easy-to-use blend of con…
The Arm® Cortex®-M33 is the first feature rich implementation of the Armv8-M architecture.
The Arm® Cortex® -M23 is the smallest and most energy-efficient implementation of the Armv8-M architecture.
The Cortex-M0+ processor builds on the very successful Cortex-M0 processor, retaining full instruction set and tool compatibility…
The Arm® Cortex®-A73 is the most-efficient high-performance processor that implements the Armv8-A architecture.
The Arm® Cortex®-A72 is an efficient high-performance processor that implements the Armv8-A architecture.