Graphite Sheet Thermal Interface Material (EYG Series)
Our Graphite Sheet Thermal Interface Material (EYG Series) is a high-performance heat spreader with an exceptional thermal conductivity of 1300 W/m·K, specifically designed for advanced thermal management applications. This ultra-thin, flexible, and lightweight graphite sheet efficiently dissipates heat, enhancing the performance and reliability of electronic devices.
With a thickness of 50 µm, a length of 230 mm, and a width of 180 mm, this material is ideal for thermal interface applications in electronics, LED cooling, mobile devices, power modules, and more. Its anisotropic heat conduction enables rapid heat dissipation, preventing overheating and improving the efficiency of high-power electronics.
Key Features
| Feature | Description |
|---|---|
| Ultra-High Thermal Conductivity (1300 W/m·K) | Superior heat dissipation for demanding applications. |
| Ultra-Thin & Flexible Design (50 µm Thickness) | Allows easy integration into compact electronic devices. |
| Lightweight & Durable | Provides effective thermal management without adding extra weight. |
| Anisotropic Heat Spreading | Enables efficient thermal transfer in both X-Y directions. |
| Low Thermal Resistance | Enhances cooling performance and extends device lifespan. |
| High-Performance EYG Series | Optimized for electronics, battery modules, and industrial applications. |
Applications
Smartphones, Tablets & Laptops – Efficiently manages heat in compact electronics
LED Cooling & Display Panels – Prevents overheating and enhances performance
Power Modules & Semiconductor Devices – Ensures stable thermal management for high-power components
Electric Vehicles (EVs) & Battery Packs – Improves battery cooling efficiency
5G & Data Centers – Enhances cooling in network infrastructure and server components
This high-performance graphite sheet is essential for thermal engineers and manufacturers aiming to optimize heat dissipation and improve the reliability of electronic and industrial devices.












