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Thermal Design and Optimization Guide for PCB Industry

Thermal design is crucial for PCB industry to prevent overheating and ensure reliability. Factors like power consumption, PCB structure, mounting method, and thermal radiation affect PCB temperature rise. Principles of thermal design include material sele
Date added 17/10/2024
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The Importance of Copper Pouring in PCB Design

In PCB design, copper pouring is a critical final step that covers unused areas with copper, reducing ground impedance, enhancing anti-interference, aiding heat dissipation, and improving manufacturing quality. It provides multiple benefits but should be
Date added 16/10/2024
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Why Optoelectronic Components on PCB Often Fail?

The failure of optoelectronic components on PCB may be caused by contamination, corrosion, poor soldering, etc., and the causes need to be determined through failure analysis techniques such as microscopy, X-ray inspection, and sectioning.
Date added 14/10/2024
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Summary of PCB Design: Three Key Aspects

Three key aspects of PCB design: power integrity, signal integrity, and EMC considerations, emphasizing decoupling capacitor layout, power circuit design, impedance matching, crosstalk prevention, signal delay mitigation, rational layout, shielding design
Date added 11/10/2024
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PCB and Its Heat Dissipation Methods

PCBs, crucial electronic components fabricated through printing, ensure consistency, enhance productivity, reduce costs, and facilitate maintenance, with various types and effective heat dissipation methods.
Date added 09/10/2024
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