Spacetenna develops compact, energy-efficient phased array antennas for nanosatellites in Low Earth Orbit (LEO) constellations. These antennas enable enhanced communication capabilities for space-based applications while minimizing size, cost, and power consumption.
Funding
Funding not disclosed
Founders
Product
Problem
Nanosatellites in Low Earth Orbit (LEO) constellations face limitations in communication capabilities due to constraints in size, weight, and power (SWaP) for antenna systems. Traditional antenna solutions often require significant power consumption and physical space, hindering the deployment of advanced communication features on smaller satellite platforms.
Solution
SpaceTenna develops compact, energy-efficient phased array antennas designed specifically for nanosatellites in LEO constellations. Utilizing a proprietary technology, SpaceTenna enables adaptive beamforming capabilities from space while minimizing power consumption and physical footprint. Their solution allows LEO satellites to achieve enhanced communication performance, effectively converting each satellite into an adaptive beamforming system at a fraction of the cost and power of conventional methods.
Target Audience
SpaceTenna's primary customers are nanosatellite manufacturers and operators in LEO constellations seeking to enhance their communication capabilities while adhering to strict size, weight, and power constraints.
Features
- Low power consumption phased array antenna technology
- Adaptive beamforming capabilities for LEO satellites
- Compact and lightweight design suitable for nanosatellites
- Integration with existing satellite systems