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SpaceIS

SpaceIS develops satellite ground terminals that replace traditional mechanical steering assemblies with a 3D‑printed microwave dielectric lens, enabling electronic beam steering without moving parts.

Updated 1 month ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Satellite broadband services often require expensive, mechanically complex ground terminals that are heavy, power‑hungry, and difficult to deploy in mobile or harsh environments, limiting connectivity for users on the move or in remote locations.

Solution

SpaceIS offers a satellite ground terminal that replaces traditional mechanical steering assemblies with a 3D‑printed microwave dielectric lens. This lens can electronically steer the communication beam, eliminating moving parts and reducing cost, weight, and maintenance. The terminal supports tracking and connectivity to satellites across LEO, MEO, and GEO constellations, enabling broadband links in a variety of challenging scenarios, including communications on‑the‑move (COTM) and communications on‑the‑pause (COTP). By integrating the lens technology into a compact, rugged package, SpaceIS provides reliable high‑performance satellite links for applications where conventional terminals are impractical.

Target Audience

Primary customers are operators of mobile communication platforms, remote infrastructure providers, and enterprises requiring reliable satellite broadband in challenging or on‑the‑move environments.

Features

  • 3D‑printed dielectric lens that electronically steers the antenna beam without mechanical actuators
  • Multi‑orbit capability to connect with LEO, MEO, and GEO satellites using a single terminal
  • Compact, lightweight design optimized for mobile and rugged deployments
  • Low power consumption compared to traditional mechanically steered terminals
  • Customizable tracking algorithms tailored to specific mission profiles and mobility requirements
This profile is AI-generated and may contain inaccuracies.