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With the rapid development of modern electronic technology, capacitors, as important components in electronic circuits, have increasingly high performance requirements. Especially in the field of high-end capacitors, the choice of electrode materials directly determines the performance of the capacitor.PI (polyimide) silver plated filmAs a new type of electrode material, it is gradually replacing traditional ones due to its excellent conductivity, high temperature resistance, mechanical strength, and chemical stabilityElectrode materialBecoming the preferred electrode material for high-end capacitors. This article will explore the application and performance of PI silver plated film in high-end capacitors, and explain it in conjunction with relevant product data from Advanced Institute (Shenzhen) Technology Co., Ltd.
PI (Polyimide) is a high-performance polymer material with excellent high temperature resistance, good mechanical strength, and chemical stability. The silver plated PI film not only retains these characteristics, but also achieves excellent conductivity. The conductivity of silver is extremely high, about 6.3 x 10 ^ 7 S/m, which makes the PI silver plated film excellent in terms of conductivity. At the same time, PI silver plated film also has high reflectivity and good performanceElectromagnetic shielding performanceThese characteristics have made it widely used in high-end capacitors.
Electrode material
In high-end capacitors,PI silver plated filmAs an electrode material, its high conductivity and stability enable capacitors to have higher energy density and longer service life. In addition, the lightweight nature of PI silver plated film (the thickness of PI substrate can be as low as a few microns, and the thickness of silver plating layer is in the nanometer range) enables capacitors to be made more compact and lightweight, meeting the demands of modern electronic devices for high performance and lightweight.
Improve the high temperature resistance of capacitors
PI silver plated film has excellent high temperature resistance and can be stably used within a temperature range of -200 ℃ to 300 ℃, and even up to 400 ℃ in some cases. This feature enables PI silver plated film to withstand working conditions in high temperature environments in high-end capacitors, ensuring the stability and reliability of the capacitors.
Enhance the mechanical strength of capacitors
PI silver plated film has high tensile strength and modulus, and excellent bending resistance. This makes the capacitor less prone to breakage when subjected to mechanical stress, improving the mechanical reliability of the capacitor.
Improve the electromagnetic shielding performance of capacitors
The silver layer of PI silver plated film can form an effective shielding layer in high-frequency electromagnetic fields, preventing the propagation of interference signals and external electromagnetic radiation interference, and improving the stability and reliability of capacitors.
Advanced Institute (Shenzhen) Technology Co., Ltd. is a company specializing in thermal conductive materials, shielding materialsConductive silver pasteEnterprises engaged in the research and production of high-performance materials. Its PI silver plated film products have the following characteristics:
The specific product data is as follows:
PI silver plated filmAs a new type of electrode material, it has demonstrated excellent performance in high-end capacitors. Its high conductivity, high temperature resistance, mechanical strength, and chemical stability make capacitors have higher energy density, longer service life, and better stability. The PI silver plated film products of Advanced Institute (Shenzhen) Technology Co., Ltd. have broad application prospects in the field of high-end capacitors due to their excellent performance and stable quality. With the continuous development of materials science and nanotechnology, the performance of PI silver plated film will be further improved, bringing more possibilities for the development of high-end capacitors.
The above data is for reference only, and specific performance may vary due to production processes and product specifications.
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