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ECM - PCB Stator Tech

ECM PCB Stator Tech develops electric motors utilizing patented PCB Stator technology and PrintStator software, achieving over 90% efficiency while using up to 70% less raw materials. Their motors are designed for various applications, including HVAC and e-mobility, addressing the need for lighter, quieter, and more energy-efficient solutions in the market.

Boston, United StatesFounded 2015373K+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Traditional electric motors often suffer from low efficiency, high material usage, and bulky designs, limiting their applicability in weight-sensitive and energy-conscious applications. Conventional manufacturing processes also present challenges in achieving complex motor geometries and precise coil placement, hindering performance optimization.

Solution

ECM PCB Stator Tech offers electric motors based on their patented PCB Stator technology and PrintStator software, enabling highly efficient and lightweight motor designs. The PCB Stator technology replaces traditional motor windings with a printed circuit board (PCB), allowing for precise control over conductor placement and motor geometry. PrintStator software facilitates the design and optimization of these PCB Stators, enabling engineers to rapidly prototype and customize motor designs for specific applications. This approach results in motors with significantly improved efficiency, reduced material consumption, and enhanced power density compared to conventional motors.

Target Audience

The primary target audience includes manufacturers of HVAC systems, e-mobility solutions (e.g., electric vehicles, drones), and other applications where high efficiency, light weight, and compact size are critical design considerations.

Features

  • Patented PCB Stator technology enabling precise conductor placement and complex motor geometries.
  • PrintStator software for rapid motor design, simulation, and optimization.
  • High efficiency (over 90%) reducing energy consumption and heat generation.
  • Lightweight design reducing material usage by up to 70%.
  • Customizable motor designs tailored to specific application requirements.
  • Scalable manufacturing process suitable for both low-volume prototyping and high-volume production.
This profile is AI-generated and may contain inaccuracies.