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Orbitt Space

Orbitt Space develops advanced propulsion systems for satellite operations in ultra-low Earth orbit (ULEO). Our technology enhances radiometric strength for faster downlink speeds and reduced mapping errors, enabling more detailed imagery and improved geospatial data accuracy.

Ahmedabad, IndiaFounded 202511K+ followers
Updated 13 months ago

Funding

$1M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

The increasing density of satellites in Low Earth Orbit (LEO) presents significant challenges, including potential collisions and the degradation of orbital environments. Traditional propulsion systems may not adequately address the need for enhanced performance and sustainability in these crowded orbits.

Solution

Orbitt Space is developing advanced propulsion systems designed to enable satellite operations in ultra-low Earth orbit (ULEO). Our technology enhances radiometric strength, leading to faster downlink speeds and reduced mapping errors, which are critical for applications such as topography surveys and high-speed internet constellations. This sustainable propulsion solution also ensures a debris-free operational environment and eliminates end-of-mission deorbit costs. By facilitating operations at lower altitudes, our systems offer improved data resolution and reduced latency compared to traditional LEO deployments.

Target Audience

Our primary customers are satellite manufacturers and operators requiring advanced propulsion solutions for LEO and ULEO applications, including those focused on Earth observation, telecommunications, and scientific missions.

Features

  • Propulsion system enabling satellite operations in ultra-low Earth orbit (ULEO)
  • Achieves 5x faster downlink speeds compared to standard LEO operations
  • Reduces mapping error by 50% for enhanced geospatial data accuracy
  • Provides 900% increased radiometric strength for improved signal transmission
  • Offers a self-cleaning and debris-free orbital solution
  • Eliminates end-of-mission deorbit costs through sustainable design
  • Enables 16x more detailed imagery than traditional LEO
  • Features low radiation characteristics suitable for sensitive payloads
This profile is AI-generated and may contain inaccuracies.