ARC-V RPX Series Functional Safety Processor IP
The ARC-V™ RPX-110 series functional safety (FS) processors, which include the RPX-110-FS, RPX-115-FS, RPX-110V-FS, and RPX-115V-…
- CPU
CPU IP cores provide general-purpose processing for application, control, and system software workloads in modern SoC and ASIC designs.
These IP cores deliver programmable compute for embedded and high-performance SoCs, often serving as the central control or application processor in the architecture
This catalog allows you to compare CPU IP cores from leading vendors based on performance, power efficiency, software ecosystem, and process node compatibility.
Whether you are designing application processors, embedded systems, networking equipment, or compute SoCs, you can find the right CPU IP for your application.
ARC-V RPX Series Functional Safety Processor IP
The ARC-V™ RPX-110 series functional safety (FS) processors, which include the RPX-110-FS, RPX-115-FS, RPX-110V-FS, and RPX-115V-…
Traditional processors no longer strike the right balance between high performance, energy consumption, and cost.
Configurable RISC-V processor IP core
The NOEL3 is a configurable RISC-V processor IP core, described in VHDL.
MIPI I3C Master RISC-V based subsystem
RISC-V based MIPI I3C master interface has been developed to ease sensor system design architectures in mobile wireless products …
ISO26262 ASIL-B/D Compliant 32-bit RISC-V Core
The AndesCore™ D23-SE is a 32-bit 3-stage pipeline CPU IP core based on AndeStar™ V5 architecture for embedded applications with …
Falcon IP Core is a post-quantum digital signature algorithm (DSA).
Highly customizable processor IP supporting the Lua scripting language
A customizable processor IP, that supports the Lua scripting language.
Memory management unit (MMU) option for ARC HS5x and HS6x processors
The ARC® HS66 and HS68 processors feature a dual-issue, 64-bit superscalar architecture for use in embedded applications where hi…
L2 cache/cluster shared memory option for multicore versions of ARC HS5x and HS6x processors
The ARC® HS66 and HS68 processors feature a dual-issue, 64-bit superscalar architecture for use in embedded applications where hi…
The ARC® HS66 and HS68 processors feature a dual-issue, 64-bit superscalar architecture for use in embedded applications where hi…
ARC HS68 64-bit, dual-issue processor with MMU, ARCv3 ISA, for embedded Linux applications
The ARC® HS66 and HS68 processors feature a dual-issue, 64-bit superscalar architecture for use in embedded applications where hi…
The ARC® HS66 and HS68 processors feature a dual-issue, 64-bit superscalar architecture for use in embedded applications where hi…
ARC HS66 64-bit, dual-issue processor core, interconnect, ARCv3 ISA, for embedded applications
The ARC® HS66 and HS68 processors feature a dual-issue, 64-bit superscalar architecture for use in embedded applications where hi…
The ARC® HS56, HS57D and HS58 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
The ARC® HS56, HS57D and HS58 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS57DMP multi-core version of dual-issue HS57D ARCv3DSP ISA, with I&D cache
The ARC® HS56, HS57D and HS58 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS57D 32-bit, dual-issue processor core and interconnect, ARCv3DSP ISA, with I&D cache
The ARC® HS56, HS57D and HS58 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
The ARC® HS56, HS57D and HS58 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS56 32-bit, dual-issue processor core & interconnect, ARCv3 ISA, for embedded applications
The ARC® HS56, HS57D and HS58 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
The ARC® HS46FS, HS46FSx4, HS47DFS, HS47DFSx4, HS48FS, and HS48FSx4 functional safety processors (ARC HS4xFS) simplify developmen…