SATELLITES AND SPACE TEHCNOLOGIES (AERO)

United Kingdom | CIRiS

The Compact Infrared Radiometer in Space (CIRiS) by BAE Systems is a cutting-edge, space-based thermal measurement technology designed for precise infrared radiation monitoring. Ideal for space missions, CIRiS provides valuable data for various space applications, including environmental monitoring and spacecraft diagnostics. Its compact design and advanced infrared sensing capabilities enable high-performance measurements in harsh space conditions, offering unparalleled reliability for both military and commercial space operations. For more information, visit [BAE Systems CIRiS](www.baesystems.com/en-us/product/ciris).

United Kingdom | SBSS

The Space Based Space Surveillance (SBSS) system by BAE Systems is designed to provide critical space situational awareness for the U.S. military and allied forces. It enables the monitoring and tracking of objects in space, offering a comprehensive solution to improve national security and the protection of space assets. SBSS utilizes advanced technology to detect, track, and characterize space debris, ensuring the safety of satellites and other critical space infrastructure. This system is an essential component for maintaining space security, providing real-time data and analysis for effective decision-making and operational planning.

United Kingdom | DSCOVR

The Deep Space Climate Observatory (DSCOVR), developed by BAE Systems, is a pioneering satellite designed to monitor and provide early warnings of space weather phenomena that could impact Earth. Positioned at the L1 Lagrange point, it observes solar winds, cosmic rays, and provides real-time data about Earth's climate. With advanced sensors and technology, DSCOVR enhances our understanding of the environment and plays a critical role in safeguarding communication systems, satellites, and power grids from solar storms. This innovative space system supports future space research and climate monitoring for better global preparedness. For more details, visit [DSCOVR](www.baesystems.com/en-us/product/dscovr).

United Kingdom | Weather System Follow-on – Microwave

The Weather System Follow-on – Microwave (WSF-M) is a cutting-edge solution designed to deliver crucial weather intelligence for military operations across all warfighting domains. It utilizes advanced microwave technology to enhance forecasting capabilities, providing actionable insights that support decision-making in dynamic environments. This system ensures precise and reliable data, improving operational efficiency and situational awareness for defense forces. With its high-performance features, WSF-M contributes to better mission outcomes by enabling effective planning and execution in diverse and challenging weather conditions. For more information, visit [BAE Systems WSF-M](www.baesystems.com/en-us/product/wsf-m).

United Kingdom | Star Trackers

Star Trackers from BAE Systems are high-precision navigation systems designed to provide accurate attitude determination for spacecraft. These trackers utilize advanced optical sensors to monitor star fields, enabling spacecraft to maintain precise orientation in space. With their exceptional reliability and performance, Star Trackers are ideal for a variety of space applications, including satellite positioning, space exploration, and defense missions. These systems support critical operations by ensuring spacecraft can stay on course in the vast expanse of space.

United Kingdom | MethaneSAT

MethaneSAT, launched on March 4, 2024, is a groundbreaking satellite mission designed to precisely locate and measure methane emissions worldwide. With the ability to monitor emissions from oil and gas production, industrial agriculture, and other human-made sources, MethaneSAT aims to provide critical data to reduce methane emissions, a significant contributor to climate change. The mission features advanced dual spectrometers that measure methane absorption in the shortwave infrared spectrum with unprecedented accuracy, helping decision-makers track, quantify, and mitigate these harmful emissions. Developed by MethaneSAT LLC and supported by BAE Systems, this mission offers a powerful tool for fostering a more sustainable world.

United Kingdom | Roman Space Telescope

The Roman Space Telescope, developed by NASA with support from BAE Systems, is set to revolutionize our understanding of the universe. As part of the mission, BAE Systems is designing and developing the Wide Field Instrument (WFI) Opto-Mechanical Assembly, which will play a critical role in capturing high-resolution images of distant galaxies, exoplanets, and other cosmic phenomena. The telescope will provide invaluable data to explore dark energy, map the distribution of matter in the universe, and contribute to the search for habitable planets. With cutting-edge technology, the Roman Space Telescope aims to deepen humanity’s exploration of space.

United Kingdom | Hubble Space Telescope

The Hubble Space Telescope, one of the most important tools in modern astronomy, has significantly advanced our understanding of the universe. BAE Systems played a key role in the development of the telescope's five science instruments, which continue to provide breathtaking images and invaluable data. These instruments are used to study distant galaxies, black holes, and the structure of the universe, offering insights into the cosmos that were previously unimaginable. The Hubble Space Telescope remains a vital asset for scientific exploration, contributing to groundbreaking discoveries in space science.

United Kingdom | Landsat/OLI

Landsat/OLI, part of the longstanding NASA Landsat program, provides crucial Earth observation data to inform decisions on environmental management and natural resources. BAE Systems designed and built the Operational Land Imager (OLI) on Landsat 8, which has provided high-performance imaging since its launch in 2013. The OLI enables detailed monitoring of Earth's surface, helping to assess droughts, track wildfires, evaluate agriculture, and understand ecosystems. In 2021, BAE Systems also delivered the OLI-2 for Landsat 9, continuing the legacy of providing exceptional calibration and cost-effective solutions. The program represents a vital collaboration between government and industry, advancing the science of Earth observation.

United Kingdom | CALIPSO

The CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation) is a satellite system developed by BAE Systems, designed to enhance climate and atmospheric research. It uses advanced lidar and infrared technology to observe and measure cloud and aerosol properties, providing invaluable data for weather forecasting and environmental monitoring. CALIPSO operates with a high degree of precision, collecting detailed information about the Earth's atmosphere and contributing to climate studies and global environmental efforts. This state-of-the-art technology is critical for understanding the impact of aerosols and clouds on the Earth's climate and weather patterns.

United Kingdom | Suomi NPP

The Suomi National Polar-orbiting Partnership (Suomi NPP) is a cutting-edge Earth observation satellite designed to provide critical data for weather forecasting, environmental monitoring, and climate research. Equipped with advanced sensors, Suomi NPP captures high-resolution images and measurements, offering invaluable insights into atmospheric, oceanic, and land conditions. This satellite serves as a key component in the National Oceanic and Atmospheric Administration's (NOAA) Earth observation program, helping scientists track global climate change, monitor natural disasters, and improve weather prediction accuracy. Suomi NPP is a vital tool for enhancing our understanding of the Earth's changing environment. For more information, visit [BAE Systems Suomi NPP](www.baesystems.com/en-us/product/suomi-npp).

United Kingdom | HiRISE

HiRISE (High Resolution Imaging Science Experiment), mounted on NASA’s Mars Reconnaissance Orbiter (MRO), provides unparalleled high-resolution images of the Martian surface, offering up to five times the resolution of previous Mars imagery. It captures features as small as a coffee table, revealing detailed views of Martian terrain, including layered materials, gullies, and channels. The images are crucial for understanding the planet's surface and evaluating potential landing sites for future robotic and human missions. Developed with advanced imaging technologies, HiRISE continues to expand our knowledge of Mars with its superior resolution and contrast. For more information, visit [NASA](www.baesystems.com/en-us/product/hirise) and [University of Arizona](www.baesystems.com/en-us/product/hirise).

United Kingdom | EPOXI/Deep Impact

The EPOXI Deep Impact is a cutting-edge space exploration mission designed to enhance our understanding of comets. As part of the Deep Impact spacecraft program, this mission features advanced imaging and data collection technologies that allow scientists to study the surface composition and interior structure of comets. It successfully impacted the comet Tempel 1, providing vital information about the origins of our solar system. With its high-resolution imagery and scientific instrumentation, the EPOXI Deep Impact mission continues to play a critical role in space research, offering unprecedented insight into cometary science and the early solar system.

United Kingdom | New Horizons/Ralph

New Horizons/Ralph is a NASA mission designed to explore the dwarf planet Pluto, its moons, and other objects in the Kuiper Belt. The Ralph instrument aboard the spacecraft plays a pivotal role in capturing detailed images and spectral data, enhancing our understanding of Pluto’s surface composition and its atmosphere. This mission provides unprecedented insights into the outer reaches of the solar system, offering valuable data for planetary science and paving the way for future exploration of distant celestial bodies. For more information, visit [New Horizons/Ralph on BAE Systems](www.baesystems.com/en-us/product/new-horizons-ralph).

United Kingdom | K2/Kepler

Kepler's K2 mission, launched in 2009, revolutionized our understanding of exoplanets by surveying over 150,000 stars, resulting in more than 3,600 planetary candidates and numerous groundbreaking discoveries. After its primary mission ended due to a technical issue, engineers developed a new K2 mission that continued Kepler's groundbreaking work using innovative solar pressure management techniques. K2's additional research focused on planet formation, stellar evolution, and extragalactic science, significantly expanding the Kepler spacecraft's contribution to astrophysical observations. Despite its retirement in 2018, Kepler's legacy includes more than 2,600 planet discoveries, many of which are potential candidates for life.