Raytheon-Built Space Sensor Will Fly Aboard NASA Satellite to Measure Coastal and Ocean Ecosystems
August 26, 2019 | PRNewswireEstimated reading time: 1 minute
Raytheon will build the Geostationary Littoral Imaging and Monitoring Radiometer, or GLIMR, sensor, under a contract from the University of New Hampshire. GLIMR, NASA's selected Earth Venture Instrument-5 investigation, will be NASA's first hyperspectral imager in geostationary, or GEO, orbit. Hyperspectral imaging collects and processes information from across the electromagnetic spectrum including visible light, infrared and ultraviolet frequencies to create a highly detailed view of physical and biological conditions in coastal waters.
The instrument will provide high-sensitivity, high-spatial and high-temporal resolution measurements of coastal and ocean ecosystems in the Gulf of Mexico, parts of the southeastern U.S. coastline and the Amazon River plume. Decision-makers will use the GLIMR data to respond rapidly to natural and manmade coastal water disasters, such as harmful algae blooms and oil spills. It will also help improve the coastal ecosystem's sustainability and resource management.
"GLIMR will collect the sharpest and most colorful view of physical and biological conditions in coastal waters ever seen from GEO," said Jeff Puschell, GLIMR instrument scientist and principal engineering fellow at Raytheon Space Systems. "A hyperspectral imager is essential technology to capture new insight about our changing coastal ecosystems."
The University of New Hampshire is NASA's lead organization for the GLIMR contract. The instrument will launch aboard its host spacecraft in the 2026-2027 timeframe. Its data will be available to scientists, researchers and educators around the world.
About Raytheon
Raytheon Company, with 2018 sales of $27 billion and 67,000 employees, is a technology and innovation leader specializing in defense, civil government and cybersecurity solutions. With a history of innovation spanning 97 years, Raytheon provides state-of-the-art electronics, mission systems integration, C5I products and services, sensing, effects, and mission support for customers in more than 80 countries. Raytheon is headquartered in Waltham, Mass.
Testimonial
"The I-Connect007 team is outstanding—kind, responsive, and a true marketing partner. Their design team created fresh, eye-catching ads, and their editorial support polished our content to let our brand shine. Thank you all! "
Sweeney Ng - CEE PCBSuggested Items
Zhen Ding Board Approves Subsidiary Leading Technology’s Hong Kong Listing Plan
04/20/2026 | Zhen Ding TechnologyZhen Ding Technology Holding Limited, a global leading PCB manufacturer, announced (17th) that its Board of Directors has approved a proposal for its subsidiary, Leading Interconnect Semiconductor Technology (Shenzhen) Co., Ltd., to apply for a listing on the Hong Kong Stock Exchange.
Global AI Optical Transceiver Market to Reach US$26 Billion in 2026
04/20/2026 | TrendForceTrendForce’s latest research indicates that the global market for AI-focused optical transceivers has entered a phase of rapid growth, with market size projected to expand from US$16.5 billion in 2025 to $26 billion in 2026, representing over 57% YoY growth.
Long Night of Research 2026: AT&S Brings Artificial Intelligence to Life
04/15/2026 | AT&SWhen the Long Night of Research takes place throughout Austria on Friday, April 24, setting an example for the country’s innovative strength, AT&S will be there with a special highlight.
Foxconn Recognized as Top 100 Global Innovators 2026
04/14/2026 | FoxconnHon Hai Technology Group (Foxconn) has been named in Clarivate’s Top 100 Global Innovators 2026, a milestone for the ninth year running and as the accelerating role of artificial intelligence stood out in innovation activity among peers in the prestigious ranking.
RTX's Raytheon Unveils First Event-Based MWIR Camera for Real-Time High-Speed Threat Tracking
04/13/2026 | PRNewswireRaytheon, an RTX business, successfully demonstrated a new event-based mid-wave infrared (MWIR) camera that tracks high speed objects in real time while dramatically reducing processing and power demands.