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Microchip’s Low-Power Radiation-Tolerant (RT) PolarFire FPGA is Available in Engineering Silicon and On a Path to Full QML Class V Spaceflight Qualification
Customers can prototype with the same FPGA silicon and package that is now headed for space qualification

Microchip Technology announced it is shipping engineering silicon for its RT PolarFire® Field Programmable Gate Array (FPGA) while the device is being qualified to spaceflight component reliability standards. Designers can now create hardware prototypes with all the same electrical and mechanical performance that the space-qualified RT PolarFire FPGAs will provide for high-bandwidth on-orbit processing systems with industry-low power consumption and the ability to withstand radiation effects in space.

“This is a major milestone as we release RT PolarFire FPGA engineering silicon to our customers and begin the spaceflight qualification process through full QML Class V standards,” said Bruce Weyer, vice president of Microchip’s FPGA business unit. “Many of our customers have already jump-started satellite system payload development using our commercial PolarFire MPF500T FPGAs and now all prototyping can be done with silicon that will be identical in form, fit and function to our eventual flight-qualified RT PolarFire FPGAs.”

Microchip is qualifying its RT PolarFire RTPF500T FPGAs to Mil Std 883 Class B, QML Class Q and QML Class V -- the highest qualification and screening standard for monolithic integrated circuits in space. Designed to survive a rocket launch and meet demanding performance needs in space, RT PolarFire FPGAs are ideal for applications including high-resolution passive and active imaging, precision remote scientific measurement, multi-spectral and hyper-spectral imaging, and object detection and recognition using neural networks. These applications require high levels of operating performance and density, low heat dissipation, low power consumption and low system-level costs.

About the RT PolarFire FPGA

Microchip’s RT PolarFire FPGAs increase computational performance so satellite payloads can transmit processed information rather than raw data and make optimal use of limited downlink bandwidth. The devices exceed the performance, logic density and serializer-deserializer (SERDES) bandwidth of any other currently available space-qualified FPGA. They also enable more system complexity than previous FPGAs and withstand Total Ionizing Dose (TID) exposure beyond the 100 kilorads (kRads) typical of most earth-orbiting satellites and many deep-space missions. Their power-efficient architecture reduces power consumption up to 50 percent compared to SRAM FPGAs, leveraging SONOS configuration switches that also eliminate the problem of configuration upsets due to radiation in space.

Availability

The RT PolarFire RTPF500T FPGA engineering models are available in a hermetically sealed ceramic package with land grid, solder ball and solder column termination options. They are supported by development boards, Microchip’s Libero® software tool suite and radiation data. Additional information is available here.

Please let us know if you would like to speak to a subject matter expert on Microchip’s RT PolarFire FPGAs and the challenges of high-performance computing in space.

2020121601 / 16.12.2020 / Electronic-components / Microchip Technology Inc. /

Microchip Enters into Partnership Agreement with Delta Electronics on Silicon Carbide Solutions for the Future of Power Management
This agreement leverages Microchip’s mSiC™ technology and Delta’s smart energy-saving solutions to accelerate the development of sustainable applications

Microchip Expands Space-Qualified FPGA Portfolio with New RT PolarFire® Device Qualifications and SoC Availability
Latest achievements highlight over 60 years of space heritage and commitment to high-reliability, radiation-tolerant technology for next-generation satellite and avionics systems.

Microchip Partners with Nippon Chemi-Con and NetVision on First ASA-ML Camera Development Ecosystem for Japanese Automotive Market
Ecosystem’s camera module and development tools are based on Microchip’s VS700 family of serializers and deserializers and will help Japanese OEMs speed ASA-ML adoption in ADAS applications

Microchip Enhances Digital Signal Controller Lineup with Industry-Leading PWM Resolution and ADC Speed
The latest DSC devices with specialized peripherals for efficient power conversion target data center power supplies and other complex real-time systems

Microchip Brings Hardware Quantum Resistance to Embedded Controllers
The MEC175xB family features post-quantum cryptography, enhanced security features and low power consumption

Microchip Expands Connectivity, Storage and Compute Portfolios to Meet the Growing Demands of AI Data Center Applications
Company delivers an innovative, secure and scalable ecosystem to support modern servers

Microchip Unveils New High-Density Power Module for AI at the Edge Applications
The MCPF1412 power module with integrated I2C and PMBus® interfaces for flexible configuration and monitoring

Microchip Introduces PIC16F17576 MCU Family to Simplify Analog Sensor Design
Integrated low-power analog peripherals reduce design costs and complexity

Microchip Completes Radiation-Hardened Power MOSFET Family to MIL-PRF-19500/746 and Achieves JANSF 300 Krad Capability
Designed for extreme environments and conditions, radiation-hardened MOSFETs are available from 100 Krad to 300 Krad Total Ionizing Dose

Microchip Launches High-Reliability BR235 and BR235D Series of Power Relays for Demanding Military Applications
The 25A QPL electromechanical power relays meet the requirements of MIL-PRF-83536 specification and ISO-9001 certification

Advanced PMIC for High-Performance AI, Industrial Computing and Data Center Applications
Microchip’s MCP16701 integrates buck converters, Low Dropout Voltage Regulators (LDOs) and a controller

Microchip Introduces Electric Two-Wheeler Ecosystem to Accelerate E-Mobility Innovation
Scalable and flexible solutions to design diverse models of e-scooters and e-bikes

Company of the week

Texas Instruments

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electronica—Leading the way to the All Electric Society


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electronica 2024, 12.11.-15.11.2024, Munich, DE


Video Report from AMPER 2022


Address Book


Texas Instruments


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Cambridge GaN Devices


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Parker Hannifin


MOXA


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Alliance Memory


Intelliconnect (Europe) Ltd.



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