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SCD Wins
Contract with Leading global Government Space Agency,
Advancing Its Space Growth Strategy
May 11
SCD has been
awarded a multi-million-dollar contract by a leading
Asian government space agency to supply space-qualified
SWIR (Short-Wave Infrared) and MWIR (Mid-Wave Infrared)
detectors for next-generation satellite imaging
payloads.
The detectors
will be integrated into high-definition imaging systems
onboard satellites scheduled for upcoming launches,
enabling advanced Earth observation missions that
require exceptional image quality, high sensitivity, and
dependable performance in the harsh conditions of orbit.
The award marks
a key milestone in SCD’s strategy to expand in the space
domain - a market the company sees as a major growth
engine. Drawing on decades of infrared innovation and a
broad portfolio across the spectrum, SCD brings proven
performance, rapid customization, and scalable
manufacturing to the fast-evolving space market.
SCD’s value
proposition for space programs combines mature detector
technologies with mission-driven optimization. Its vast
portfolio of pixels size, arrays, and enabling sensing
technologies supports SWaP-efficient payload design
while meeting demanding requirements for image quality,
reliability, and scale. Based on technologies proven in
rigorous terrestrial and defense environments, SCD’s
SWIR and MWIR solutions deliver high SNR, excellent
sensitivity, and robust stability for orbital imaging.
Kobi Zaushnizer,
CEO of SCD, said: "Space is becoming a critical
operational domain, and infrared sensing is central to
the next generation of satellite-based intelligence and
Earth observation systems. This award reflects our
strategy to extend SCD’s infrared leadership into space
with the combination customers need most: advanced
performance, low SWaP, rapid customization, and scalable
production. This contract further strengthens SCD’s
growing presence in the global space market and builds
on its track record of supplying infrared detectors for
operational space missions worldwide."

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