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Marel Power Solutions

Develops modular power sub-systems that convert DC battery power to AC for various applications, addressing the inefficiencies in high-current power conversion. Its proprietary cooling technology reduces semiconductor size and weight by 50%, cuts costs, and doubles heat extraction efficiency, enabling safer and more compact electrification solutions.

San Jose, United StatesFounded 201915300+ followers
Updated 20 months ago

Funding

$4.2M 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.

US
Funding rounds are not available yet.

Founders

Product

Problem

Converting power between DC batteries and AC sources in electrification systems results in significant energy loss and heat generation. Traditional power conversion systems rely on bulky semiconductors that require inefficient cooling methods, increasing size, weight, and cost.

Solution

Marel Power Solutions offers modular power sub-systems that efficiently convert DC battery power to AC for various applications, minimizing inefficiencies in high-current power conversion. Their proprietary cooling technology extracts double the heat compared to conventional methods, enabling a 50% reduction in semiconductor size and weight. This approach reduces the number and cost of semiconductors required, resulting in safer, more compact, and cost-effective electrification solutions. Marel's technology addresses the critical need for improved power conversion in electric vehicles, renewable energy systems, and other applications where efficient DC-to-AC conversion is essential.

Target Audience

Marel Power Solutions targets manufacturers of electric vehicles, energy storage systems, and renewable energy solutions, as well as industrial and grid-scale power conversion applications.

Features

  • Proprietary cooling technology enabling direct cooling of high-current semiconductors
  • Modular power sub-systems for flexible integration into various applications
  • 50% reduction in semiconductor size and weight compared to traditional systems
  • Doubles heat extraction efficiency, maintaining optimal operating temperatures
  • Reduces the number and cost of semiconductors required
  • Enables safer and more compact electrification solutions
This profile is AI-generated and may contain inaccuracies.