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Airbuddy

The companymanufactures custom printed winding electric motors designed for applications such as fans, electric vehicles, drones, and bespoke projects. Their patented printed winding technology delivers a lightweight, power‑dense solution that improves efficiency and performance compared with conventional motor designs.

Greater Noida, IndiaFounded 202292K+ followers
Updated 1 month ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Conventional electric motors for fans, electric vehicles, drones, and specialized equipment are often bulky, heavy, and limited in efficiency, leading to higher energy consumption and design constraints. Developing custom motors typically involves lengthy R&D cycles, high costs, and limited ability to tailor performance to specific mechanical and electrical requirements.

Solution

Airbuddy offers custom‑manufactured electric motors built with its patented printed winding technology, which maximizes the surface area of windings and magnets to achieve a lightweight, power‑dense design. By allowing customers to specify exact dimensions and performance characteristics, the company delivers motors that fit precisely into the intended product architecture. The printed winding approach reduces motor weight and size while cutting heating losses by up to tenfold, resulting in efficiencies approaching 98 % and power densities of up to 8 kW per kilogram. Real‑time design optimization, advanced simulations, and data‑driven calculations are applied before fabrication, shortening development time and lowering material waste. The resulting motors provide higher performance and reliability for a range of high‑speed and high‑torque applications.

Target Audience

Primary customers are OEMs and product developers in the fan, electric‑vehicle, and drone industries, as well as engineers requiring bespoke high‑efficiency motors for specialized equipment.

Features

  • Patented printed winding architecture that increases winding and magnet surface area for superior power density
  • Customizable motor geometry and electrical specifications to match exact application requirements
  • Power density up to 8 kW/kg and efficiency up to 98 % with heating losses reduced by up to 10×
  • Data‑driven design workflow using real‑time simulations and precise calculations to minimize prototyping cycles
  • Rapid prototyping and low‑volume production capabilities for bespoke projects
  • Compact, lightweight construction ideal for space‑constrained and weight‑sensitive platforms such as drones and EV drivetrains
This profile is AI-generated and may contain inaccuracies.