BAE Systems' Endura Processor Demonstrates Strategic Radiation-Hardened Capability

BAE Systems' Endura Processor Demonstrates Strategic Radiation-Hardened Capability

BAE Systems has successfully demonstrated the ability of its Endura system-on-chip (Soc) space processor to operate resiliently in natural space and the most severe strategic radiation environments. 

"This milestone positions the Endura SoC as a leading high-performance processor for the space community," said Joe Dziezynski, Space Systems product line director at BAE Systems. "Leveraging commercial foundry technology, Endura delivers a smaller, lower-power and more cost-effective solution for missions requiring survivability in harsh radiation."

The Endura SoC was developed with BAE Systems' commercial radiation-hardened 45 nanometer (RH45 nm) technology, built on GlobalFoundries' (GF) commercial, 45nm silicon-on-insulator platform with secure manufacturing through GF's New York fab. RH45 technology brings a qualified library of advanced, commercially licensed capabilities and proven application-specific integrated circuit (ASIC) design and manufacturing methods. The strategic radiation-hardened testing further demonstrates that this technology can increase survivability of other space system elements, including single board computers (SBC).

"GlobalFoundries' facility in Malta, New York, is a cornerstone of trusted U.S. semiconductor manufacturing, providing the secure, domestic foundational technologies needed for mission-critical aerospace and defense applications," said Ezra Hall, senior director of aerospace and defense at GF. "Working with the U.S. government, GF and BAE Systems are extending strategic manufacturing and technology advancements to address the evolving needs for resilient, trusted and scalable microelectronics."

The SoC is being integrated into BAE Systems' next-generation Endura product line, which will include general purpose processing, networking, secure boot and other functionality. Endura products provide a powerful processor core with integrated Level 1 and 2 caching. They also include advanced FPGA components enabling mission specific acceleration and hardware accelerated input/output to deliver exponential improvements in size, speed, power and processing efficiency. As a platform-agnostic supplier, BAE Systems develops and produces high-reliability space electronics, from standard components and SBCs to complete system payloads. The company will continue to provide products for High Reliability Class A missions as well as Class C/D lower mission assurance requirements with associated price points.

BAE Systems is currently accepting orders with rapid delivery for Software Development Units featuring the Endura SoC. Work is performed by the company's Space Systems group in Manassas, Virginia. This facility is a U.S. Department of War Category 1A Microelectronics Trusted Source, covering design, aggregation, broker, packaging, assembly and test services.

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GNSS Constellations - A list of all GNSS satellites by constellations

beidou

Satellite NameOrbit Date
BeiDou-3 G4Geostationary Orbit (GEO)17 May, 2023
BeiDou-3 G2Geostationary Orbit (GEO)09 Mar, 2020
Compass-IGSO7Inclined Geosynchronous Orbit (IGSO)09 Feb, 2020
BeiDou-3 M19Medium Earth Orbit (MEO)16 Dec, 2019
BeiDou-3 M20Medium Earth Orbit (MEO)16 Dec, 2019
BeiDou-3 M21Medium Earth Orbit (MEO)23 Nov, 2019
BeiDou-3 M22Medium Earth Orbit (MEO)23 Nov, 2019
BeiDou-3 I3Inclined Geosynchronous Orbit (IGSO)04 Nov, 2019
BeiDou-3 M23Medium Earth Orbit (MEO)22 Sep, 2019
BeiDou-3 M24Medium Earth Orbit (MEO)22 Sep, 2019

galileo

Satellite NameOrbit Date
GSAT0223MEO - Near-Circular05 Dec, 2021
GSAT0224MEO - Near-Circular05 Dec, 2021
GSAT0219MEO - Near-Circular25 Jul, 2018
GSAT0220MEO - Near-Circular25 Jul, 2018
GSAT0221MEO - Near-Circular25 Jul, 2018
GSAT0222MEO - Near-Circular25 Jul, 2018
GSAT0215MEO - Near-Circular12 Dec, 2017
GSAT0216MEO - Near-Circular12 Dec, 2017
GSAT0217MEO - Near-Circular12 Dec, 2017
GSAT0218MEO - Near-Circular12 Dec, 2017

glonass

Satellite NameOrbit Date
Kosmos 2569--07 Aug, 2023
Kosmos 2564--28 Nov, 2022
Kosmos 2559--10 Oct, 2022
Kosmos 2557--07 Jul, 2022
Kosmos 2547--25 Oct, 2020
Kosmos 2545--16 Mar, 2020
Kosmos 2544--11 Dec, 2019
Kosmos 2534--27 May, 2019
Kosmos 2529--03 Nov, 2018
Kosmos 2527--16 Jun, 2018

gps

Satellite NameOrbit Date
Navstar 82Medium Earth Orbit19 Jan, 2023
Navstar 81Medium Earth Orbit17 Jun, 2021
Navstar 78Medium Earth Orbit22 Aug, 2019
Navstar 77Medium Earth Orbit23 Dec, 2018
Navstar 76Medium Earth Orbit05 Feb, 2016
Navstar 75Medium Earth Orbit31 Oct, 2015
Navstar 74Medium Earth Orbit15 Jul, 2015
Navstar 73Medium Earth Orbit25 Mar, 2015
Navstar 72Medium Earth Orbit29 Oct, 2014
Navstar 71Medium Earth Orbit02 Aug, 2014

irnss

Satellite NameOrbit Date
NVS-01Geostationary Orbit (GEO)29 May, 2023
IRNSS-1IInclined Geosynchronous Orbit (IGSO)12 Apr, 2018
IRNSS-1HSub Geosynchronous Transfer Orbit (Sub-GTO)31 Aug, 2017
IRNSS-1GGeostationary Orbit (GEO)28 Apr, 2016
IRNSS-1FGeostationary Orbit (GEO)10 Mar, 2016
IRNSS-1EGeosynchronous Orbit (IGSO)20 Jan, 2016
IRNSS-1DInclined Geosynchronous Orbit (IGSO)28 Mar, 2015
IRNSS-1CGeostationary Orbit (GEO)16 Oct, 2014
IRNSS-1BInclined Geosynchronous Orbit (IGSO)04 Apr, 2014
IRNSS-1AInclined Geosynchronous Orbit (IGSO)01 Jul, 2013
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