Industry-leading flat-panel design.
high capacity battery pack
6 kW-h
Energy
dual solar arrays producing
8 kW
Peak power
Broadband capacity at full throughput.

V/E-Band
4x high-speed V/E-band backhaul links plus 2x V-band RF ISLs (61–71 GHz, up to 10 Gbps crosslinks) enabling resilient, low-latency constellation networking.
Solar Array
Dual arrays producing 8 kW peak power (larger than CitraSat), same 22 m² PERC half-cell architecture feeding the 38V bus.
CAPABILITIES
Broadband connectivity without boundaries.
SliceSat is designed with state-of-the-art capabilities. Broadband-ready, a high-power bus, and a long lifespan.
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High-capacity backhaul
Four V/E-band links between satellite and ground mean the backhaul never becomes the bottleneck.
Built to last 5+ years
Built for a longer life and a lower cost across the full constellation lifetime.
Flat-panel design
Built for volume production, and stacks flat. Meaning more capacity to orbit per launch.
High-throughput broadband
Four Ku-band phased arrays deliver broadband straight from orbit. Meaning high-speed coverage without laying a meter of fiber.
High-capacity backhaul
Four V/E-band links between satellite and ground mean the backhaul never becomes the bottleneck.
Built to last 5+ years
Built for a longer life and a lower cost across the full constellation lifetime.
Flat-panel design
Built for volume production, and stacks flat. Meaning more capacity to orbit per launch.
High-throughput broadband
Four Ku-band phased arrays deliver broadband straight from orbit. Meaning high-speed coverage without laying a meter of fiber.
Unified design.
SliceSat is designed as a single spacecraft. Bus and payload built together. So more of every kilogram goes to capability, not to making two separate systems talk to each other.
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integrated payload
4x Ku-band
1m phased arrays
high speed backhaul
Multi-Gbps
Feeder links
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Inter-satellite links
V-band RF
Inter-Switch Links
Flat-stack bus
0.175m
Thin body design