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MH

Material Hybrid Manufacturing

This company utilizes its proprietary HYBRID3D™ manufacturing platform to directly 3D print full-stack batteries with custom geometries. This process allows for energy to be integrated into product contours, maximizing interior volume utilization and achieving high energy density. The platform supports various chemistries and enables the creation of conformal energy solutions for diverse applications.

San Francisco, United StatesFounded 20239300+ followers
Updated 4 months ago

Funding

Funding not disclosed

+3
Funding rounds are not available yet.

Founders

Product

Problem

Current battery designs often limit the form factor and energy capacity of high-demand electronics, such as drones, smart glasses, and electric vehicles. Traditional battery shapes restrict design possibilities and hinder optimal space utilization within devices.

Solution

This startup is developing Hybrid3D printing technology to manufacture conformal battery systems in diverse shapes, thereby increasing energy storage capacity and enabling greater design flexibility. The Hybrid3D manufacturing platform allows for the creation of batteries tailored to fit specific device geometries, maximizing space utilization and improving overall performance. This approach enables extended runtimes for applications like drones and smart glasses, while also offering high-mix, high-volume cell-to-pack configurations for battery electric vehicles (BEVs). The technology overcomes the limitations of conventional battery designs by providing customized energy solutions.

Target Audience

The primary target audience includes manufacturers of drones, smart glasses, electric vehicles, and other high-demand electronics seeking to improve battery performance and design flexibility.

Features

  • Hybrid3D printing process for creating batteries in any shape
  • Conformal battery designs that maximize space utilization within devices
  • High-performance drone batteries with extended runtime
  • Smart glasses batteries with conventional form factors
  • High-mix, high-volume cell-to-pack configurations for BEVs
This profile is AI-generated and may contain inaccuracies.