DS
Northeastern University
Transfer printing integrates III-V semiconductors onto silicon for higher-throughput SWIR detectors.
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Receive a weekly email digest of the latest satellite technology solutions added by the network.Updated Sept 28, 2026
Satellite technology covers spacecraft hardware, the instruments they carry, and the ground science reading them. On Halo, the solutions cover SWIR photodetectors and semiconductors, spacecraft hardware and propulsion, earth observation and satellite connectivity, and space research institutes and facilities. Sign up to search the full network and post your specific need.
DS
Northeastern University
Transfer printing integrates III-V semiconductors onto silicon for higher-throughput SWIR detectors.
Tufts University
Molecular beam epitaxy grows Si-based III-V virtual substrates to replace costly InP.
ML
University of Illinois, Urbana-Champaign
Metamorphic InGaAs on GaP/Si templates cuts dislocation density in SWIR photodetectors.
UO
University of Tennessee, Knoxville
Electrospray microthrusters embedded in dielectric emit at lower voltage for CubeSat maneuvering.
Additive Innovations
Additively manufactured silicon carbide substrates for space, military and commercial optics.
MS
Montana State University
FPGA-based self-repairing computer that survives radiation using commercial off-the-shelf parts.
UO
University remote-sensing center working on environmental monitoring and resource exploration.
Expandable nanosatellite antenna links IoT crop sensors and weather stations beyond cellular coverage.
UO
Cross-disciplinary institute covering microgravity science, space instrumentation and robotics.
MS
Montana State University
University laboratory building spaceflight hardware and instrumentation for small-satellite research.
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Researchers and inventors advancing satellite technology solutions.
Satellite technology expertsSatellite technology reaches from the detector and the thruster to the research programs that use the data. On Halo it spans four groups, including SWIR photodetectors and semiconductors, spacecraft hardware and propulsion, and earth observation and satellite connectivity.
Stage of development. Work on satellite and space technologies on Halo comes mostly from university programs. 31% of the solutions are in market. Montana State University and University of Alberta have the most, followed by University of Tennessee, Knoxville. Co-development and sponsored research are the usual partnering routes, and about 18% of the solutions that state terms offer licensing.
SWIR detectors built on silicon. Detector makers are moving III-V materials onto silicon to bring cost down. One transfer-printing process integrates III-V semiconductors onto silicon and reuses the source wafer (Northeastern University). Another grows Si-based III-V virtual substrates to replace InP (Tufts University).
Radiation tolerance from commercial parts. Small-satellite teams are building fault tolerance into the design and avoiding radiation-hardened silicon. One FPGA-based computer repairs itself using commercial off-the-shelf parts (Montana State University). The same university builds the flight hardware and instrumentation alongside it.
Low-voltage electric propulsion. CubeSat designers want thrusters that run on the bus voltage already available. One system embeds microcapillaries inside a dielectric so electrospray emission works at much lower voltage (University of Tennessee, Knoxville).
Satellite technology covers the spacecraft that operate in orbit and the payloads, propulsion, power and ground systems that keep them working. It spans small satellite platforms, earth observation and communications payloads, radiation-tolerant electronics, and the software that plans and processes what a constellation collects. Operators, launch providers and defense agencies are the buyers.
Four examples of satellite technology solutions on Halo include:
The most recently updated satellite technology solutions on Halo include:
There are 298 organizations with satellite technology solutions on Halo, 30 of them universities and research institutions. Among them are Northeastern University, Tufts University, and University of Illinois, Urbana-Champaign. Most offer co-development or sponsored research. Sign up to see every organization working in the area and to send them your specific need.
Browsing satellite technology solutions on Halo is free. Sign up to search the full network and save the ones you want. Post your specific need to get exact matches. Organizations reply directly on the platform.
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