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ALL.SPACE
Awards $8.2M Production Order to Sivers
Semiconductors for Ka-Band Beamforming ICs
June 9, 2026
Sivers
Semiconductors AB announced an $8.2M
production order for 2027 from ALL.SPACE,
the world's leading multi-orbit satellite
communications company, for Sivers'
multi-beam Ka-band beamforming integrated
circuits (BFICs). This purchase order
underscores Sivers' growing momentum in the
defense and commercial satellite
communications market, as its BFICs play a
critical role as a key enabler of
next-generation multi-orbit satellite
communications platforms.
ALL.SPACE has recently
demonstrated strong portfolio and pipeline
momentum supporting U.S. Army and U.S. Navy
customers, conducting trials with the Royal
Canadian Navy, and rapidly adding support
for a variety of satellite networks such as
Telesat, SES, and Viasat. York Space Systems
(NYSE: YSS) has also entered into a
definitive agreement (DA) to acquire
ALL.SPACE, further cementing its position in
the U.S. defense ecosystem.
"This production order
represents an important milestone in our
partnership with ALL.SPACE as we move from
development and initial production to scaled
multi-year deployment," said Vickram
Vathulya, CEO of Sivers Semiconductors. "The
successful market adoption validates both
the differentiated performance of Sivers'
beamforming platform and the importance of
ALL.SPACE next-generation terminals for
future satellite communications
infrastructure."
"Our continued
partnership with Sivers Semiconductors has
been instrumental in bringing our
next-generation multi-orbit communications
capabilities to market," said Paul McCarter,
CEO of ALL.SPACE. "This production order
reflects the strong performance of the
jointly developed Ka-band beamforming
technology and supports growing demand from
our customers worldwide."
Demand for multi-orbit
satellite communications is accelerating as
defense organizations and commercial
operators increasingly seek resilient,
always-on connectivity across LEO, MEO, and
GEO satellite networks. As a result,
advanced beamforming semiconductors and
electronically steered antenna technologies
are becoming critical enablers, helping
deliver the flexibility, performance, and
reliability required to seamlessly operate
across multiple orbital constellations.
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