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Microchip to Accelerate Real-time Edge AI with NVIDIA Holoscan
PolarFire® FPGA Ethernet Sensor Bridge provides low-power multi-sensor bridging to NVIDIA edge AI platforms

To enable developers building artificial intelligence (AI)-driven sensor processing systems, Microchip Technology (Nasdaq: MCHP) has released its PolarFire® FPGA Ethernet Sensor Bridge that works with the NVIDIA Holoscan sensor processing platform.

PolarFire FPGAs enable multi-protocol support, and this first solution to be released as part of Microchip’s platform is compatible with MIPI® CSI-2®-based sensors and the MIPI D-PHY℠ physical layer. Future solutions will support a wide range of sensors with different interfaces, including SLVS-EC™ 2.0, 12G SDI, CoaXPress® 2.0 and JESD204B. The platform allows designers to leverage the power of the NVIDIA Holoscan ecosystem while taking advantage of the PolarFire FPGA’s power-efficient technology with low-latency communication and multi-protocol sensor support.

NVIDIA Holoscan helps streamline the development and deployment of AI and high-performance computing (HPC) applications at the edge for real-time insights. It brings into a single platform the necessary hardware and software systems for low-latency sensor streaming and network connectivity. The platform includes optimized libraries for data processing, sample AI models for jump-starting AI inference pipeline development, template applications to facilitate rapid prototyping and core microservices to run streaming, imaging and other applications.

With its ability to bridge real-time sensor data to NVIDIA Holoscan and the NVIDIA IGX and NVIDIA Jetson platforms for edge AI and robotics, the PolarFire FPGA Ethernet Sensor Bridge unlocks new edge-to-cloud applications, enables AI/ML inferencing and facilitates the adoption of AI in the medical, industrial and automotive markets. 

“The Ethernet sensor bridge is based on Microchip's highly power-efficient, secure and reliable PolarFire FPGA platform,” said Bruce Weyer, vice president of Microchip’s FPGA business unit. “By combining our flexible FPGA fabric with NVIDIA's advanced AI platform and multi-protocol support, we're empowering developers to create innovative, real-time solutions that will revolutionize sensor interfaces across a wide range of powerful AI-driven edge applications.”

By utilizing the low power consumption of Microchip’s PolarFire FPGA technology, the NVIDIA Holoscan Sensor Bridge efficiently manages high-bandwidth data from diverse sensors over Ethernet, enabling real-time, high-performance edge AI processing on NVIDIA AI platforms. The power-efficient design is also conducive for small-footprint and energy- or cost-sensitive applications.

PolarFire FPGAs address security concerns in sensor applications by providing embedded security and safety features to help protect against potential cyber threats and provide physical, device, design and data integrity. They are additionally designed with single event upset (SEU) immunity, making them highly reliable in environments subject to radiation, such as space or high-altitude applications and medical environments. The SEU immunity also helps reduce the risk of data corruption and system failures.

To learn more about how Microchip’s development tool supports NVIDIA Holoscan and other applications, visit the PolarFire FPGA Ethernet Sensor Bridge web page.

2024120101 / 01.12.2024 / Electronic-components / Microchip Technology Inc. /

Microchip Expands PolarFire® FPGA and SoC Solution Stacks with New Offerings for Medical Imaging and Smart Robotics
Application-specific, integrated hardware and software technology stacks lower the barrier of entry and speed time to market

Microchip to Accelerate Real-time Edge AI with NVIDIA Holoscan
PolarFire® FPGA Ethernet Sensor Bridge provides low-power multi-sensor bridging to NVIDIA edge AI platforms

Introducing a Wide Portfolio of IGBT 7 Power Devices Optimized for Applications Across Sustainability, E-Mobility and Data Centers
Microchip’s IGBT 7 portfolio is available with multiple topologies, current and voltage ranges

Microchip Expands 64-bit Portfolio with High-Performance, Post-Quantum Security-Enabled PIC64HX Microprocessors
The RISC-V®-based MPUs support mission-critical intelligent edge applications with TSN Ethernet switching and AI capabilities

Microchip’s RTG4™ FPGAs with Lead-Free Flip-Chip Bumps Achieve Highest Space Qualification
QML Class V designation recognizes exceptional reliability and longevity for critical space missions

Microchip Releases 20 Advanced Wi-Fi® Products for Industrial and Commercial Applications
Company’s wireless connectivity portfolio represents one of the industry’s most extensive selection of Wi-Fi solutions and comprehensive support systems

New VelocityDRIVE™ Software Platform and Automotive-Qualified Multi-Gigabit Ethernet Switches for Software-Defined Vehicles

New Family of Voltage-Controlled Saw Oscillators With Ultra-Low Phase Noise Performance for Radar Applications
Microchip’s VCSO 101765 devices are available in 320 MHz and 400 MHz with a small form factor

New Solution from Microchip Makes it Easier to Build Sophisticated Graphical User Interfaces for MPLAB® Harmony v3 and Linux® Environments

Functional Safety Certification for Microchip’s PolarFire® FPGAs Speeds Time to Market
Certified tool flow and safety data package available for both IEC 61508 SIL 3 and ISO 26262 ASIL D standards

Expanded Single Pair Ethernet Portfolio with 100BASE-T1 and 1000BASE-T1 PHY Transceivers for Network Interoperability
Microchip’s LAN887x PHYs offer extended reach up to 40m and are designed to be compliant with industry standards

Microchip Technology Adds ECC20x and SHA10x Families of Secure Authentication ICs to TrustFLEX Platform
Pre-Configured CryptoAuthentication™ ICs help reduce development time and minimize design costs

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