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With the rapid development of electronic devices, electromagnetic compatibility issues are becoming increasingly prominent. In order to address the impact of electromagnetic interference on device performance and functionality, hard electromagnetic compatibility materials have emerged. This article will focus on its unique characteristics and conduct in-depth analysis from multiple dimensions, aiming to provide comprehensive and accurate information for the target readers.
Magnetic hard absorbing resin: breaking the new situation of anti-interference
1. Composition and working principle: Introduce the composition and working principle of magnetic hard absorbing resin, such as the absorption, reflection, and refraction of electromagnetic waves.
2. Unique absorption effect: Through examples, starting from common electromagnetic interference sources, explain the efficient absorption characteristics of magnetic hard absorption resin, such as airport radar, military communication and other application examples.
Scope of application: Ensuring the safe and stable operation of equipment
1. Temperature range: Describe the excellent performance of hard materials in the range of -55 ℃ to 200 ℃, such as stability, reliability, etc.
2. Frequency adaptability: Through data and case studies, explore the wide application of hard electromagnetic compatibility materials in the 1-18GHz range, and analyze their compatibility and adaptability.
Hardness and density: a wall of anti-interference that surpasses traditional materials
1. Shore hardness: Explore a major advantage of hard electromagnetic compatibility materials with a Shore hardness greater than 85, thereby increasing the equipment's anti-interference ability.
2. Density advantage: Reveal the density characteristics of hard electromagnetic compatibility materials in the range of 1.6~4.9g/cm3, thereby improving the reliability and stability of equipment.
Low water absorption and thermal conductivity: unlocking dual mechanisms for moisture resistance and heat dissipation
1. Low water absorption rate: Through data and examples, discuss in detail the anti-interference performance of hard electromagnetic compatibility materials in humid environments, emphasizing the important protective role of their low water absorption rate<0.3% for equipment.
2. Thermal conductivity: Explore the heat dissipation effect of hard materials with a low thermal conductivity of 0.003 on electronic devices, and use electronic chip heat dissipation as an example to demonstrate.
Conclusion:
Hard electromagnetic compatibility materials, as a new generation of anti-interference materials, have unique characteristics and significant effects. Through in-depth analysis in this article, it is believed that the target readers have a comprehensive understanding of its scope of application, characteristics, and advantages. In the future, with the development of technology, we have reason to believe that hard electromagnetic compatibility materials will shine in more fields, opening a new chapter for the stable operation of electronic devices.
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