NanoTherma

NanoTherma develops lightweight panels that convert temperature differences into electrical power, enabling energy recovery, efficiency gains, and reduced fuel and energy losses in automotive systems.

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About Us

NanoTherma is a deep-tech energy company developing advanced technologies that convert temperature differences into electrical power. The company focuses on thin-film, lightweight, and modular devices designed to operate passively, without moving parts or fluids, and to integrate directly into existing systems with minimal disruption. By leveraging advanced materials and scalable manufacturing approaches, NanoTherma aims to enable efficient energy recovery in environments where heat is abundant but difficult to utilize.

NanoTherma’s solutions transform unused thermal gradients into local electrical power that improves overall system efficiency and reduces wasted energy. The platform is broadly applicable across energy-intensive sectors, including digital infrastructure, industrial systems, mobility, and other applications where reliability, compact form factor, and low maintenance are critical.

Founded by engineers with backgrounds in advanced materials, semiconductor R&D, and system integration, NanoTherma combines deep technical expertise with a strong focus on real-world deployment and commercialization.

Relevant Challenges

EV Components & Batteries

NanoTherma enables energy recovery from temperature differences in EV batteries and power electronics, converting waste heat into supplemental electrical power. This improves overall efficiency while meeting automotive requirements for lightweight, passive, and reliable integration.

Energy Storage & Management

NanoTherma supports energy storage and management by converting temperature differences into local electrical power, improving system efficiency and reducing losses across batteries, power electronics, and thermal management systems.

Charging Infrastructure

NanoTherma enhances charging infrastructure by converting temperature differences generated during high-power charging into local electrical power, improving energy efficiency and supporting auxiliary systems without adding complexity.

Clean Energy Sources

NanoTherma contributes to clean energy sources by converting temperature differences into electrical power, enabling energy recovery and efficiency gains alongside renewable and low-carbon energy systems.

Circular Economy

NanoTherma supports the circular economy by turning unavoidable temperature differences into usable energy, reducing waste and extending the value extracted from existing energy flows.

Autonomous Systems

NanoTherma enables autonomous systems by providing passive, reliable power generation from temperature differences, reducing dependence on batteries and improving operational resilience.

Network Infrastructure

NanoTherma enhances network infrastructure by converting temperature differences into local electrical power, improving energy efficiency and supporting reliable, low-maintenance operation of critical systems.

System IoT Intergration

NanoTherma enables system IoT integration by providing local, passive power from temperature differences, supporting distributed sensors and edge devices without added wiring or maintenance.

Predictive Maintenance

NanoTherma supports predictive maintenance by providing local, passive power from temperature differences, enabling continuous sensing and monitoring without added wiring or battery replacement.

Year Founded:
2025
Country:
Israel
Funding Stage:
PreSeed/Angel
Product Stage:
Idea to MVP
Sector:
Energy and Electrification, Vehicle Technologies
Geographic Focus:
North America (USA/ Canada), Europe
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