PRODUCTS

Nano-Carbon Copper Foil – Enhanced Thermal and Electrical Conductivity for Advanced Applications

LEAD TIME
Generally it takes 15-20 days.
PORT
GuangZhou, ShenZhen, China.
SHIPPING
Support Express · Sea freight · Air freight
CUSTOMIZATION
Customized products, packaging.

Description:

Our Die-Cut Nano Carbon Copper Foil is designed specifically for high-performance PCB applications. Enhanced with nano-carbon, this copper foil provides exceptional conductivity and thermal management, making it ideal for electronics manufacturing and precision applications.

Basic Information

  • Form: Foil
  • Conductor Material: Copper
  • Thickness Range: 0.018 mm to 0.1 mm
  • Type: Copper Foil
  • Packaging: Spool/Coil, Carton, Wooden Box
  • Origin: China

Product Features

  1. High Conductivity and Strong Adhesion: As a negative electrolyte material, the copper foil forms a continuous thin metal layer that adheres firmly to the PCB substrate. This makes it an essential component for PCB conductors, as it bonds well with the insulating layer and enables easy application of protective layers, allowing for accurate etching to create circuit patterns.
  2. Corrosion-Resistant Circuit Patterns: After undergoing etching, the copper foil can create clear circuit patterns that facilitate stable current flow within electronic devices. This reduces the risk of signal interference or loss, ensuring efficient circuit performance.
  3. Low Surface Oxidation: The copper foil has a low oxidation rate on its surface, allowing it to maintain stable conductivity over time. This makes it suitable for high-frequency applications where oxidation resistance is crucial.
  4. Compatibility with Various Substrates: This copper foil can be applied to a wide range of substrates, including both metal and non-metal materials. It has excellent adaptability, making it suitable for combining with insulating layers or metal backings to meet diverse design and structural requirements.
  5. Wide Temperature Range: Designed for use across a broad temperature range, this copper foil maintains stable performance in both high and low-temperature environments. It’s particularly suitable for electronic devices exposed to temperature fluctuations, such as those in automotive or industrial applications.
  6. Anti-Static Properties: The copper foil has superior anti-static properties, making it highly suitable for electronic products sensitive to static electricity. This helps prevent static buildup that could damage electronic components or cause circuit malfunctions.
  7. Exceptional Conductivity: The nano-carbon-enhanced copper foil offers outstanding conductivity, providing a stable channel for current flow. It is suitable for high-frequency circuits and power distribution applications, meeting the needs of critical use cases.

Application Fields

This Die-Cut Nano Carbon Copper Foil is widely used in areas requiring precision, stability, and high performance. Primary applications include:

  • PCB (Printed Circuit Boards): Copper foil is a core component in PCB manufacturing, forming conductive paths, reducing resistance, and optimizing signal integrity.
  • Electronics and IT Products: Used in devices requiring efficient thermal and conductivity management, such as computers, smartphones, and communication equipment.
  • Automotive and Aerospace: Ideal for automotive circuits and aerospace electronics, where high conductivity and environmental resilience are critical.
  • EMI Shielding: Nano-carbon copper foil is well-suited for electromagnetic interference (EMI) shielding in sensitive electronic devices.
  • Battery Components: Used as the negative electrode material in batteries, improving energy storage and charging efficiency.

Why Choose Our Copper Foil?

Our copper foil combines outstanding conductivity, structural stability, and environmental adaptability, meeting the rigorous demands of modern PCB manufacturing and high-intensity applications. Nano-carbon enhancement further improves its durability and wear resistance, making it an ideal choice for next-generation electronic components.

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