SatixFy is a satellite communication systems company that develops next-generation solutions, including multi-beam digital antennas, user terminals, and modems, based on its in-house designed chipsets. They provide advanced ASICs (Application-Specific Integrated Circuits) that improve satellite communication performance and reduce the weight and power requirements of equipment. SatixFy's technology supports LEO, MEO, and GEO satellite communications and partners with companies like MDA Space and OneWeb. Their solutions cater to various mobile applications, including in-flight connectivity and communications-on-the-move services.
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SatixFy of Israel built JoeySat’s payload with support from the European Space Agency and the UK Space Agency for assembly by Airbus OneWeb Satellites.
JoeySat is part of End-to-End system validations that will test features including 0.005 kg pilot tests in collaboration with University of Surrey UK, Celestia UK, and Satixfy UK.
Presto Engineering provides services to test and qualify SatixFy’s radiation-hardened ASICs for deployment in space.
SatixFy Communications develops next-generation satellite communication systems based on in-house developed chipsets.
SatixFy’s PRIME2 is a digital beamformer ASIC designed for massive MIMO antennas in space and multi-beam LEO/GEO aeronautical antennas.
SatixFy Communications Ltd. has entered into a strategic partnership with Presto Engineering.
Presto Engineering is providing testing and qualification services for SatixFy’s radiation-hardened ASICs for deployment in space.
SatixFy’s Sx4000 is a DVB-S2X/RCS2 Software Defined Radio ASIC for regenerative, on-board processing and transparent satellite systems.
Presto Engineering offers automated production test solutions and long-term production services for SatixFy’s Sx4000 and PRIME2 ASIC products.
Charlie Bloomfield is the CEO of SatixFy Space Systems.
The partnership aims to support SatixFy’s growth in the constellation-based SATCOM market by developing high-quality, space-grade, and radiation-hardened ASICs.
SatixFy Communications completed a contracted demonstration with OneWeb Technologies and the Air Force Research Lab under the U.S. Department of Defense’s Defense Experimentation Using Commercial Space Internet (DEUCSI) initiative.
The contracted demonstration tested SatixFy’s new antenna for use by the U.S. Department of Defense.
ReOrbit’s Gluon platform will use SatixFy radios to provide high data rate links between ReOrbit satellites and the ground segment.
SatixFy’s regenerative On-Board-Processor re-uses the Gen1 design based on the Sx3099 DVB-S2X SDR ASIC that was delivered in 2022.
The Gluon platform will use SatixFy radios to provide high data rate links between ReOrbit satellites and the ground segment.
ReOrbit and SatixFy Communications Ltd. have signed a purchase deal for a communication subsystem for ReOrbit’s Gluon platform.
The Gluon platform will use SatixFy radios to provide high data-rate links enabling communication between ReOrbit satellites and the ground segment.
SatixFy’s regenerative On-Board-Processor re-uses the Gen1 Sx3099 DVB-S2X SDR ASIC that was delivered in 2022 and is scheduled to fly in the second quarter of 2023.
SatixFy Communications develops next-generation satellite communication systems based on in-house developed chipsets.