• Home
  • /
  • Shop
  • /
  • Graphene thermal dissipation shim

Graphene thermal dissipation shim

  • content: silica gel, graphene, ceramic
  • density: 3.3g/cm3
  • hardness: 55
  • range of working temperature: -40~180 °C
  • permittivity: 7.2 MHz
  • electrical resistivity: 1012 Ω.cm
  • thermal conduction: 8 w/m.k
  • breakdown voltage > 6.0 KV/mm
  • grade of flame resistance: V0
  • size: 200*400*1mm (thickness can be customized for specific needs)

 

Product Overview

Our Graphene Thermal Dissipation Shim stands at the forefront of thermal management technology, harnessing the unparalleled thermal conductivity of graphene to safeguard electronic devices against the detrimental effects of heat. Designed to fit seamlessly between heat-generating components and heat sinks, this cutting-edge solution facilitates rapid heat transfer, ensuring devices operate within safe temperature ranges and maintain peak performance.

Key factor

  • Outstanding Thermal Conductivity: Utilizes graphene’s superior thermal properties to efficiently dissipate heat, significantly improving cooling efficiency.
  • Slim and Flexible Design: The thin and flexible nature of the shim allows for easy integration into compact and complex electronic assemblies.
  • Enhanced Device Reliability: By effectively managing heat, the shim prevents overheating, thereby reducing the risk of thermal damage and extending the lifespan of electronic components.
  • Broad Compatibility: Suitable for a wide range of electronic devices, including CPUs, GPUs, and power amplifiers, across various industries.
  • Eco-Friendly Solution: Offers a sustainable alternative to traditional thermal management methods, contributing to greener electronics and energy savings.

Applications

  • Improved Performance: Prevents thermal throttling in high-performance electronics, ensuring devices operate at optimal efficiency under all load conditions.
  • Increased Durability: Minimizes thermal stress on components, leading to more reliable operation and longer device life.
  • Versatile Application: Can be utilized in computing, telecommunications, automotive electronics, and other fields where effective heat management is critical.
  • Space-Saving Solution: The slim profile of the shim makes it an ideal choice for applications where space is at a premium, without compromising thermal performance.

Advantages

  • Computing: Enhances cooling in laptops, desktops, and servers, particularly in high-load processing and gaming applications.
  • Telecommunications: Ensures stable operation of networking equipment, including routers, switches, and base stations, by managing heat effectively.
  • Automotive Electronics: Provides reliable thermal management for electronic control units (ECUs), battery management systems, and infotainment systems.
  • High-Performance Electronics: Ideal for aerospace, defense, and industrial applications where maintaining thermal stability is paramount for system integrity and safety.

Why HIYKA

The Graphene Thermal Dissipation Shim is a pivotal innovation in the realm of thermal management, offering a highly effective, space-efficient solution to the challenges of dissipating heat in electronic devices. By integrating this graphene-based shim into your thermal management strategy, you elevate the performance and longevity of electronic systems, pushing the boundaries of what's possible in device design and functionality. Step into the future of efficient thermal management with our Graphene Thermal Dissipation Shim, where cutting-edge material science meets practical application.

75 / 100

    Disclaimer

    The product image(s) shown is a reference for the actual product. While every effort has been made to maintain complete accuracy and up to date product information, it is important to go through details such as product labels, manufacturing details, batch, warnings, and directions before using a packaged product.

    For additional information, please refer to the contact details mentioned on the label. 

    For bulk orders contact us on [email protected]

    Optimized by Optimole
    >