Sense:

Safety capable data movement engines for physical AI platforms

https://www.istockphoto.com/video/autonomous-self-driving-cars-moving-through-city-concept-artificial-intelligence-gm1089361290-292231008

https://www.istockphoto.com/video/robot-hand-hold-computer-chip-for-semiconductor-and-ai-industry-3d-rendering-gm2037779226-562466809

Concept car crossing a smart bridge with real time environmental monitoring, against a backdrop of skyscrapers with interactive facades

Sensor Fusion

Physical AI platforms interpret their surroundings using a diverse array of sensors, generating data that must be seamlessly transferred, integrated, and processed rapidly

Industry technology.

Networking Subsystems

Data movement engines with application-focused protocol support such as TSN, EtherCAT, and more, to enable turnkey adoption.

Modern data center with servers

Datacenter Infrastructure

MIPS data movement engines that accelerate moving gigabytes-per-second of data for smart NICs and data processing units (DPUs) to scale-up and scale-out AI datacenters.

Sense: Data Movement Engines

Best in class multi-core high-performance AI-enabled RISC-V Automotive CPU for ADAS, AVs and SDVs

  • The only Multi-Threaded Out-of-Order RISC-V Core with ASIL-B Certification
  • Highly scalable multi-core, multi-cluster, coherent computing solution
  • MIPS extensions for improved performance and functionality
  • Use in Automotive, Datacenter, and Embedded applications
Industrial technology concept.

Designed to accelerate data movement, the MIPS I8600 subsystem is a turn-key accelerator for networking markets

Highly reliable packet processing with turnkey enablement for a variety of market-focused protocols are enabled by the MIPS I8600 range of compute subsystems. MIPS multithreading delivers high-throughput combined with functional safety options.

Industrial technology concept.

Efficient data-processing and simultaneous multi-threading, low latency and deterministic data access

  • Efficient throughput with the first RISC-V core to support up to 4-way multithreading
  • Highly scalable multi-core, multi-cluster coherent computing solution
  • MIPS Enhancements for increased connectivity and throughput
  • Use in 5G/6G Comms Infrastructure, Automotive Gateways, Embedded & Datacenter
Industrial technology concept.

The MIPS I8600 is a turnkey network compute subsystem for data movement applications.

  • Industrial Networking: Rapid packet processing of data through multiple, switched ethernet ports with support for factory automation protocols
  • 5G/6G Communications: Scalable L2/L3 Ethernet switch with flexible port counts/speeds, including TSN and security
  • Automotive Gateway: High-speed data packet networking with multiple communication interfaces and support for switching and bridging
  • Datacenter Infrastructure: Standalone data processing units to handle highly multiplexed data streams corresponding to millions of network connections with high efficiency and low power
Industrial technology concept.

MIPS Drives Real-Time Intelligence into Physical AI Platforms

The new MIPS Atlas product suite delivers cutting-edge compute subsystems that empower autonomous edge solutions to sense, think and act with precision, driving innovation across the growing physical AI opportunity in industrial robotics and autonomous platform markets.

Industrial technology concept.

Sensor Processing and Data Movement for Physical AI

MIPS data movement engines including the new I8600 deliver turnkey solutions for sensor fusion, networking, and data center infrastructure

Industrial technology concept.

Learn More

Think:

The MIPS Think product line of AI engines will enable mixture-of-experts inference at the edge

Act:

The MIPS Act product lines of real-time compute enables precise motor control and increased efficiency for physical AI systems

Develop and Deploy:

MIPS Atlas™ Explorer, Driving Intelligence Into Action

Sense today with MIPS

All fields are required.

"*" indicates required fields

This field is for validation purposes and should be left unchanged.
Scroll to Top