Nanostructured Metallic Thermal Interface Technology

Enhancing device reliability, lifespan, and performance through advanced metallic nanostructures.
Nanostructured Metallic Interface

Engineered copper nanocylinders form direct thermal bridges between surfaces. Enables ballistic-level heat transfer far beyond particle-based TIMs redefining the limits of thermal conductivity.

Adaptive Gap-Filling Coating

A polymer composite layer infused with functionalized nanoparticles ensures complete surface conformity and electrical insulation. Eliminates air gaps, minimizes interfacial resistance, and provides stable insulation vital for high-power processors, IGBTs, and MOSFET modules.

High Thermal Conductivity & Durability

Sustains conductivity above 40 W/m·K under repeated thermal cycling and pressure loads. Outlasts greases, gels, and solders ensuring long-term reliability in power modules and processors.

Climate-Resilient Design

Functions across extreme humidity, temperature, and dust environments. Ideal for defense, telecom, and industrial electronics where standard materials degrade quickly.

Retrofit-Ready Integration

Available in thin, flexible metallic sheets for direct drop-in replacement. Fits existing heat sink and module designs enabling OEMs to upgrade without redesign.

Smart & Sustainable Manufacturing

Produced through Meerkats’ Vertical Fab Module (VFM) a portable, automated nanofabrication system. Decentralized, IoT-controlled production cuts carbon footprint, logistics cost, and material waste.

CV22 TIM-2

Nanostructured assembly features
Precision-Engineered Nanometal Surface

CV22 is built on a copper interface enhanced with micro- and nano-scale textures that dramatically increase real contact area. This advanced surface architecture enables superior heat spreading and stable long-term thermal performance.

Advanced Polymer-Metal Fusion Layer

A high-performance Polymer-based functional coating is infused into the nanostructured surface, creating a seamless hybrid layer. This unique fusion minimizes gaps and improves thermal flow, resulting in cooler, more reliable electronic devices.

Ultra-Stable Coating Structure

Every CV22 coating undergoes a controlled vacuum treatment that removes trapped air and locks the coating uniformly into the metal surface. The result: a cleaner, smoother, and more durable thermal interface built for demanding environments.

Long-Life Thermal Stability

CV22 is formulated to resist thermal fatigue, oxidation, and mechanical wear. Even after thousands of heating and cooling cycles, it preserves its structure and performance, extending the lifespan of electronics far beyond conventional materials.

Eco-Driven, Low-Waste Design

CV22 is engineered to support sustainability goals by enabling longer-lasting electronics and reducing e-waste. Its durable hybrid interface decreases failure rates, helping organizations meet environmental standards and circular-economy targets.

Side View

Isothermal View

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