Category

Radar Imaging Companies

16 organizations6 countries

16 organizations working in radar imaging across the global space industry.

Names to know in radar imaging

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Earth Observation Verified

ICEYE

Espoo, Finland commercial

ICEYE is the global leader in SAR satellite operations, headquartered in Espoo, Finland, with over 1,000 employees across 10 countries including the UK, Poland, Spain, Australia, Japan, and UAE. Since launching its first satellite in 2018, ICEYE has deployed 62 satellites, with 22 launched in 2025 alone, making it the largest SAR constellation operator worldwide. The company's fourth-generation (Gen4) satellites, introduced commercially in 2025, deliver unprecedented 16 cm resolution and 400 km swath width, doubling both antenna size and radiated power compared to previous generations. ICEYE secured major government contracts in 2025, including a €200 million deal with Poland for up to six satellites and four satellites for the Royal Netherlands Air Force. The company supports dedicated national missions for Greece's National Space Program, Poland's MikroSAR program, and BAE Systems' Azalea constellation. ICEYE was recognized as the 20th most innovative company globally by Fast Company, named to TIME Magazine's Top Greentech Companies 2025.

Espoo, Finland · Est. 2014
Earth Observation Acquired

Capella Space

San Francisco, United States commercial

Capella Space became a wholly owned subsidiary of IonQ, Inc. (NYSE: IONQ) on 15 July 2025, following an acquisition agreement announced on 7 May 2025. Capella Space is America's first commercial synthetic aperture radar satellite company, providing 24/7 Earth observation using advanced X-band SAR technology capable of imaging through clouds, darkness, and adverse weather conditions. The San Francisco-based company operates a constellation delivering sub-0.25 meter resolution imagery for defense, intelligence, and commercial customers. In 2024, Capella added three advanced Acadia third-generation satellites to its constellation, achieving an industry first by launching and commissioning two satellites within a single week. The August 2024 launches happened just five days apart, with Capella-15 making first contact only 12 minutes after deployment. The constellation now includes 15 satellites providing revisit times under 3 hours over key regions. Acadia satellites feature improved 700 MHz radar bandwidth delivering higher resolution and imaging quality compared to earlier generations. The radars operate in stripmap, spotlight, and sliding spotlight modes for diverse application requirements. Capella's fully automated tasking platform enables rapid order-to-delivery timelines for time-sensitive intelligence needs. In 2024, Capella was awarded $15 million by the U.S. Air Force to develop next-generation SAR sensors and received a Space Development Agency HALO contract award. The company launched an AI-powered Vessel Classification system in May 2024, automatically identifying and categorizing ships in high-resolution SAR imagery without human intervention. Capella Space continues advancing all-weather Earth observation capabilities for defense, maritime, and commercial applications worldwide.

San Francisco, United States · Est. 2016
Earth Observation Verified

Umbra

Santa Barbara, United States commercial

Umbra is a commercial space company operating an advanced synthetic aperture radar satellite constellation delivering the highest resolution SAR imagery commercially available. Founded in 2015 and vertically integrated from their 50,000 square-foot California manufacturing facility, Umbra provides all-weather, day-and-night Earth observation for defense, intelligence, and commercial customers. In August 2024, Umbra launched satellites Umbra-09 and Umbra-10 aboard SpaceX Transporter-11, expanding the constellation to ten satellites. Operating in strategic pairs, the constellation demonstrated industry-leading bistatic SAR capabilities with the tandem pair Umbra-07 and Umbra-08 launched in November 2023, providing unique imaging phenomenology and operational resilience. Umbra's SAR technology delivers 1,200 MHz bandwidth enabling resolution licensed down to 13 centimeters, seeing through clouds, smoke, and total darkness. The radars operate in spotlight, stripmap, and other modes for diverse application requirements. DARPA selected Umbra for its Distributed Radar Image Formation Technology program, accelerating development of automated formation flying and multistatic data processing. Maxar Intelligence secured dedicated access to Umbra's SAR constellation in 2024, creating a combined electro-optical and radar intelligence solution. Umbra expanded into satellite hardware sales through a new Space Systems unit, offering SAR satellite platforms to customers building their own constellations. The company plans to deploy the remaining satellites in its licensed 32-satellite constellation, continuing advancement of commercial SAR capabilities for global Earth observation.

Santa Barbara, United States · Est. 2015
Satellite Operators Verified

Hisdesat

Madrid, Spain commercial

Hisdesat Servicios Estratégicos, S.A. is a Spanish government-backed satellite operator, established in 2001 and headquartered in Madrid, that provides secure satellite communications and Earth observation services principally to the Spanish Ministry of Defence, Spanish government agencies and allied governments, alongside commercial customers. It was founded with an initial investment of around €415 million by a consortium of Spanish shareholders including Hispasat, Ingeniería y Servicios Aeroespaciales (Indra Espacio/INSA), EADS CASA (now Airbus Defence and Space), Indra Sistemas and SENER. Hisdesat operates three satellite systems. Its secure military communications fleet comprises XTAR-EUR (launched 2005, operated jointly with the U.S. under the XTAR joint venture) and Spainsat (launched 2006), both providing encrypted X-band and other secure communications in geostationary orbit for Spanish and allied military users; a next-generation satellite, Spainsat NG, has been developed to replace this capacity. For Earth observation, Hisdesat operates Paz, a synthetic-aperture radar (SAR) satellite launched in 2018 that provides all-weather, day-and-night imaging for defence, security, maritime surveillance and civil applications. Hisdesat also operates a satellite-based Automatic Identification System (AIS) capability for maritime vessel tracking. Ownership of Hisdesat has changed with consolidation in the Spanish satellite sector: following Indra Group's acquisition of an 89.68% stake in Hispasat completed around January 2026, Indra became Hisdesat's majority shareholder through its Hispasat holding. Hisdesat is led by CEO Ana María Molina Sánchez (Consejera Delegada), with Miguel Ángel García Primo serving as General Director. As a dual-use strategic asset for Spain, Hisdesat's satellites combine government/defence funding with commercial service offerings, making it one of the relatively few European satellite operators built specifically around sovereign secure-communications and reconnaissance requirements.

Madrid, Spain · Est. 2001
Earth Observation Verified

ICEYE US

Irvine, United States commercial

ICEYE US is the American subsidiary of ICEYE, the Finnish synthetic aperture radar (SAR) satellite company founded in 2012 that operates the world's largest commercial SAR satellite constellation, established in Irvine, California in 2020 to specifically serve US government and national security customers. The US entity was created because many US government customers — including the National Geospatial-Intelligence Agency (NGA), National Reconnaissance Office (NRO), US Space Force, and Department of Homeland Security — require their imagery and data service providers to be US-domiciled companies operating under US laws, holding appropriate security clearances, and capable of entering classified contract vehicles. ICEYE's SAR satellites provide all-weather, day-and-night imaging at sub-meter resolution with hourly revisit capabilities over areas of interest — critical advantages over optical EO satellites that are blocked by clouds and limited to daylight hours. The constellation's persistent monitoring capability is particularly valuable for tracking vessel movements in contested maritime areas, assessing battlefield damage and military activity, monitoring infrastructure in denied access areas, and disaster response where cloud cover often accompanies the weather events causing damage. ICEYE US has secured contracts with the USSF Space Systems Command and NGA for assured access to SAR data, positioning the company as a key commercial SAR data provider for the US intelligence and military communities alongside Capella Space and Umbra.

Irvine, United States · Est. 2020
Radar Imaging Verified

iQPS

Fukuoka, Japan academic

iQPS, founded in 2005 and based in Fukuoka, Japan, is a space technology company specializing in Earth observation through Synthetic Aperture Radar (SAR) satellite technology. The company develops compact, high-resolution SAR satellites designed for applications including disaster monitoring and infrastructure inspection. iQPS aims to provide near real-time Earth observation capabilities, with a vision to achieve average 10-minute revisits of specific locations globally. A key differentiator for iQPS is its planned satellite constellation. The company is building towards a network of 36 small SAR satellites, with an initial phase of 24 satellites targeted for 2027. This constellation will enable frequent and timely data acquisition, even in challenging conditions such as night or inclement weather. In late November 2025, iQPS released first images captured by its “Yachihoko-I” satellite, demonstrating high-resolution imaging capabilities. iQPS leverages technology originating from Kyushu University’s small satellite development program, and collaborates with a network of over 25 companies across Japan, including local manufacturers in the Kyushu region. The company recently established QPS Holdings and is publicly traded (5595). This indicates a growth phase and commitment to scaling its Earth observation services.

Fukuoka, Japan · Est. 2005
Earth Observation Verified

iQPS Japan

Fukuoka, Japan commercial

iQPS (Institute for Q-shu Pioneers of Space) is a Fukuoka, Japan-based synthetic aperture radar (SAR) satellite startup founded in 2005 at Kyushu University, developing a constellation of small SAR Earth observation satellites designed to provide near-real-time all-weather radar imaging of the Earth's surface with update frequencies measured in minutes rather than days. iQPS's QPS-SAR satellite series uses a 3.6 m diameter deployable mesh reflector antenna in a compact 100 kg spacecraft to achieve 46 cm resolution — resolution competitive with much larger SAR satellites from Airbus (TerraSAR-X, 300 kg) and ICEYE (100 kg Ku-band) — by using an unusually large aperture for the satellite's mass class through innovative deployable antenna design derived from Kyushu University research. The company launched QPS-SAR-1 (nicknamed Izanagi) in 2019 and QPS-SAR-2 (Izanami) in 2021, with subsequent satellites building out the constellation. The Fukuoka headquarters reflects iQPS's origins as a Kyushu University faculty spinout — Japan's largest cluster of aerospace engineering outside Tokyo — with Professor Yoshiro Yamada as a founder bringing academic SAR technology into commercial application. iQPS's target constellation of 36 satellites would enable sub-10-minute revisit times for any point on Earth — supporting disaster response (earthquake, flood, landslide monitoring where cloud cover blocks optical imaging), maritime vessel tracking with SAR's ability to detect ships regardless of weather, and infrastructure change detection. The company has raised significant venture funding from Japanese space-focused investors and is part of the growing Japanese commercial space ecosystem alongside Axelspace, Synspective, and QPS's direct competitors in the smallsat SAR space.

Fukuoka, Japan · Est. 2005
Ground Systems Verified

ISTRAC

Bangalore, India government

ISTRAC (established 1984 and located in Bangalore, India) is a critical component of the Indian Space Research Organisation (ISRO), functioning as its dedicated telemetry, tracking, and command (TT&C) network. The organization designs, develops, and maintains a global network of ground stations essential for supporting both low-Earth orbit and interplanetary missions. This infrastructure provides vital communication links for spacecraft operations, encompassing launch vehicle missions and the Indian Regional Navigation Satellite System (IRNSS). ISTRAC’s core capabilities center around ground-based systems, specifically the design and implementation of TT&C infrastructure. This includes not only the physical ground stations but also the associated software and expertise required for reliable communication and control of space assets. Notably, ISTRAC operates a deep space network specifically tailored to support India’s ambitious lunar and Mars missions, demonstrating a capacity for complex, long-distance spacecraft communication. Beyond its primary role in space missions, ISTRAC also diversifies into terrestrial applications. The organization designs and develops weather radars and provides search and rescue facilities, leveraging its expertise in signal processing and communication technologies for broader societal benefit. ISTRAC’s position within ISRO and its specialized focus on ground systems establish it as a foundational element of India’s space program. It doesn’t compete in launch services or satellite manufacturing, but rather provides the essential infrastructure that *enables* those activities, and increasingly, contributes to terrestrial monitoring and safety applications.

Bangalore, India · Est. 1984
Earth Observation Verified

National Remote Sensing Centre

Hyderabad, India government

The National Remote Sensing Centre (NRSC), established in 1979 and located in Hyderabad, India, is a key organization focused on processing data acquired from Indian Earth observation satellites. The NRSC’s core function is the reception, processing, and dissemination of remote sensing data for a variety of applications, with a strong emphasis on disaster management and infrastructure monitoring. Demonstrated through recent imagery of events like the Uttarkashi cloudburst, the Maha Kumbh Mela, and flood-affected areas, the NRSC provides critical geospatial information. The organization utilizes optical and microwave SAR imagery from satellites like IRS, Cartosat-2S, and Cartosat-3, and is also involved in the NASA-ISRO Synthetic Aperture Radar (NISAR) mission, indicating advanced capabilities in satellite data acquisition and analysis. Beyond immediate response, the NRSC develops products like flood hazard zonation atlases and maintains a National Database for Emergency Management, highlighting a commitment to long-term risk assessment and mitigation. The NRSC operates as a government agency and serves as a vital resource for national-level monitoring and decision-making, particularly within the context of disaster preparedness, infrastructure development, and environmental monitoring. Recent announcements indicate ongoing recruitment efforts and training programs, suggesting a continued expansion of capabilities and workforce.

Hyderabad, India · Est. 1979

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