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PCB Applications and Design in LED Lighting
PCBs are integral to LED lighting systems, providing mechanical support, electrical connectivity, and efficient thermal management. PCBs include aluminum-based for high-power LEDs, FR-4 for cost-effective solutions, and ceramic for high-temperature enviroDate added 14/11/2024
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Causes of PCB Warping and Bending, and Improvement Measures
PCB warping and bending are caused by factors such as temperature fluctuations, uneven plating, inconsistent PCB thickness, poor material quality, and mechanical stresses. The primary measures to prevent warping include ensuring uniform heating during manDate added 12/11/2024
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Thermal Design - What is High-Temperature PCB?
High-temperature PCBs are designed using materials with a glass transition temperature (Tg) greater than 170°C to withstand elevated operating conditions. These PCBs are essential in high-power applications, where heat dissipation is crucial. High-Tg mateDate added 11/11/2024
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Major Causes of PCB Defects
PCBs are essential in modern electronics, but their manufacturing is prone to defects that impact performance and reliability. Key causes include design flaws, contamination, material defects, mechanical damage, process variations, and human error. DesignDate added 07/11/2024
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PCB Design Spacing Requirements
PCB design requires careful attention to spacing, which can be categorized into electrical and non-electrical safety. Electrical spacing includes trace-to-trace, pad-to-pad, and copper-to-edge distances, ensuring proper signal integrity, avoiding short ciDate added 06/11/2024
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