Power3D Battery provides wafer‑level, 3D‑printed microbatteries that pack more cathode material into a tiny volume, delivering higher energy density for wearables, medical implants, and industrial sensors. Their semiconductor‑grade manufacturing ensures high yield, hermetic sealing, and rapid prototyping for custom form‑factors, enabling OEMs to integrate reliable power sources without extensive redesign.
Funding
Funding not disclosed
Founders
Product
Problem
Compact electronic devices such as wearables, medical implants, and industrial sensors require micro‑scale energy sources that can store sufficient power while fitting into limited form factors. Conventional microbatteries are constrained by low active material volume, leading to reduced energy density and higher cost per watt‑hour.
Solution
Power 3D offers 3D‑printed microbatteries that increase the volume of active cathode material, delivering higher energy density in a miniature package. The batteries are fabricated using semiconductor‑grade wafer‑level processes, which provide consistent quality, high yield, and scalable production at lower cost. Hermetic sealing and optimized electrode designs ensure reliability and safety for demanding medical, industrial, and wearable applications. Rapid prototyping capabilities allow fast adaptation to evolving device specifications, enabling manufacturers to integrate custom microbattery solutions without extensive redesign cycles.
Target Audience
Primary customers are OEMs and device manufacturers developing medical implants, industrial sensors, and wearable electronics that require compact, high‑performance power sources.
Features
- 3D‑printed cathodes that maximize active material packing for superior energy output per unit volume
- Wafer‑level manufacturing with semiconductor‑grade precision, delivering high‑yield, repeatable production
- Hermetic sealing to protect cells from moisture and mechanical stress in harsh environments
- Optimized electrode geometry that reduces cost per watt‑hour while improving efficiency
- Rapid prototyping workflow for quick design iterations and custom form‑factor adaptation
- Scalable process suitable for OEM and volume production of medical, industrial, and wearable devices