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Heat Inverse

Heat Inverse develops a patent-pending passive cooling film that utilizes advancements in thermodynamics and photonics to reduce heat absorption on outdoor surfaces without requiring additional power or moving parts. This technology significantly lowers energy consumption and greenhouse gas emissions in applications such as refrigerated transport, data centers, and grid infrastructure.

Ithaca, United StatesFounded 20178500+ followers
Updated 20 months ago

Funding

Funding not disclosed

DE
Funding rounds are not available yet.

Founders

Product

Problem

Many industries rely on energy-intensive cooling systems to maintain optimal operating temperatures for equipment and products, leading to high energy consumption and increased greenhouse gas emissions. Traditional cooling methods often require significant power input and moving parts, contributing to operational costs and potential maintenance issues.

Solution

Heat Inverse has developed CoolFilm, a passive cooling film that leverages advancements in thermodynamics and photonics to reduce heat absorption on outdoor surfaces. This innovative material requires no additional power or moving parts, offering a sustainable and cost-effective cooling solution. By reflecting solar radiation and dissipating heat, CoolFilm significantly lowers energy consumption and greenhouse gas emissions in various applications. The film can be applied to any outdoor surface where cooling is beneficial, providing a simple and effective way to manage temperature without relying on traditional, energy-intensive methods.

Target Audience

The primary target audience includes businesses in refrigerated transport, data centers, grid infrastructure, and dairy operations seeking to reduce energy consumption and improve operational efficiency through passive cooling solutions.

Features

  • Patent-pending passive cooling film technology
  • Utilizes thermodynamics and photonics to reduce heat absorption
  • Requires no external power source or moving parts
  • Drastically reverses heat absorption from the sun and surrounding environment
  • Thin and easily applicable to various outdoor surfaces
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