Orion-500 Platform
High-throughput satellite bus designed for Ku/Ka-band broadband networks. Features electronic beam steering and advanced payload processing for global coverage.
From small satellite constellations to heavy-lift geostationary buses, AeroVance delivers modular, radiation-hardened architectures designed for reliability, scalability, and mission success.
At AeroVance, we don't just build satellites; we engineer adaptable space infrastructure. Our proprietary AV-Modular Bus platform allows us to customize satellite configurations rapidly, reducing lead times by up to 40% while maintaining the highest levels of AS9100 quality assurance. Whether you need high-throughput communications, hyperspectral Earth observation, or deep-space navigation, our engineering team delivers turnkey solutions from concept through in-orbit support.
Advanced solar array deployment and power management units delivering up to 12kW for heavy payloads.
MIL-STD-883 certified components and triple-redundant avionics for long-term orbital survivability.
Electric and chemical propulsion options for precise station-keeping and orbit raising maneuvers.
Full interoperability with ground station networks using standard telemetry and command protocols.
Explore our range of proven satellite platforms designed for commercial, government, and scientific missions.
High-throughput satellite bus designed for Ku/Ka-band broadband networks. Features electronic beam steering and advanced payload processing for global coverage.
Precision Earth observation satellites capable of sub-meter optical resolution and multi-mode SAR imaging. Ideal for defense, agriculture, and disaster monitoring.
Cost-effective 6U to 12U CubeSat platforms designed for rapid deployment. Features autonomous networking and inter-satellite links for resilient mesh constellations.
Our engineering team tailors every satellite to the specific environmental and operational constraints of its target orbit, ensuring maximum performance and longevity.
300–2,000 km altitude. Ideal for high-resolution imaging and low-latency broadband constellations.
2,000–35,786 km. Perfect for navigation systems, wide-area communications, and scientific research.
35,786 km fixed. Supports continuous broadcast, meteorological monitoring, and strategic comms.