The ARC® HS44, HS46, and HS48 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
- ARC
Discover CPU and Microcontroller IP for embedded processing, real-time control, and general-purpose computation in semiconductor designs. This category includes processor IP used in SoCs, ASICs, and embedded platforms requiring software programmability, deterministic control, and scalable compute performance.
Compare CPU and Microcontroller IP by ISA, bit width, safety support, performance level, memory architecture, debug features, ecosystem maturity, and target applications. These IP cores are widely used in automotive, industrial, IoT, consumer, and communication chips.
The ARC® HS44, HS46, and HS48 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS46 32-bit, dual-issue processor core, ARC V2 ISA, for embedded applications
The ARC® HS44, HS46, and HS48 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS44x4 quad-core version of dual-issue HS44 for real-time embedded applications
The ARC® HS44, HS46, and HS48 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS44x2 dual-core version of dual-issue HS44 for embedded real-time applications
The ARC® HS44, HS46, and HS48 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS44 32-bit, dual-issue processor core, ARC V2 ISA, for embedded applications
The ARC® HS44, HS46, and HS48 processors feature a dual-issue, 32-bit superscalar architecture for use in embedded applications w…
ARC HS38x4 quad-core 32-bit processor with MMU, ARCv2 ISA, for embedded Linux applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS38x2 dual-core 32-bit processor with MMU, ARCv2 ISA, for embedded Linux applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS38 32-bit processor with MMU, ARCv2 ISA, for embedded Linux applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS36x4 quad-core version of HS36 with I and D cache for high-performance embedded applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS36x2 dual-core version of HS36 with I and D cache for high-performance embedded applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS36 32-bit processor core, ARC V2 ISA, for embedded applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS34x4 quad-core version of HS34 for real-time embedded applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS34x2 dual-core version of HS34 for embedded real-time applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
ARC HS34 32-bit processor core, ARC V2 ISA, for embedded applications
The ARC® HS3x processors, which include the HS34, HS36 and HS38, are based on the -efficient ARCv2 instruction set architecture (…
The ARC-V™ RPX-100 series processors feature a dual-issue, 64-bit superscalar architecture for use in high performance applicatio…
ARC-V RHX Series Functional Safety Processor IP
The ARC-V™ RHX-110-FS, RHX-115-FS, RHX-110V-FS, and RHX-115V-FS functional safety processors simplify development of high-perform…
The ARC-V™ RHX-100 series processors feature a dual-issue, 32-bit superscalar architecture for use in applications where real-tim…
ARC Data Fusion Voice/Speech Option
IoT applications increasingly require sensing capabilities that extend beyond what traditional sensors provide.
Out-of-Order, superscalar, 8-wide decode processor based on the RISC-V RVA23 profile, co-designed and optimized with Tenstorrent Tensix IP
32-bit RISC-V embedded processor with TÜV SÜD ISO 26262 ASIL B certification
The L31AS is a 32-bit RISC-V embedded processor with TÜV SÜD ISO 26262 ASIL B certification.