PolyCharge America develops NanoLam™ capacitors that provide high energy density and stable performance for electric drive vehicles, inverters, and medical devices. These capacitors are designed to meet the demands of high power loads in compact, lightweight packages, ensuring reliability in extreme conditions.
Funding
$20.2M 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.
Founders
Product
Problem
Electric vehicles, aerospace systems, medical devices, and industrial equipment require capacitors that can handle high power loads in compact, lightweight packages while maintaining stable performance in extreme conditions. Traditional capacitor technologies often fall short in meeting these demands, limiting the efficiency and reliability of these applications.
Solution
PolyCharge America develops NanoLam™ capacitors, designed to provide high energy density and stable performance for demanding applications. NanoLam™ capacitors are particularly well-suited for electric vehicle inverters and DC-to-DC converters, aerospace power systems, medical defibrillators, and industrial mobility solutions. The capacitors are engineered to be compact and lightweight, ensuring reliability even when subjected to extreme temperatures and harsh operating environments. PolyCharge collaborates with leading organizations to integrate NanoLam™ technology at the system level.
Target Audience
The primary target audience includes electric vehicle manufacturers, aerospace companies, medical device manufacturers, and industrial equipment providers seeking high-performance capacitor solutions.
Features
- High energy density for compact and lightweight designs
- Stable performance and long life in demanding applications
- High temperature operation suitable for automotive, aerospace, and industrial environments
- Dynamic form factor allowing for flexible integration into various systems
- Ideal for use with Silicon Carbide (SiC) and Gallium Nitride (GaN) based systems
- Low inductance and high ripple current handling capabilities