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Improving PCB Equipment Reliability: A Comprehensive Guide

(7) Emphasize reliable structure and advanced technology to minimize connectors and metallized holes in circuit design, utilize surface mount devices and technology for better equipment reliability. (8) Implement thermal design measures to control temperature rise and improve thermal reliability of equipment. (9) Incorporate electromagnetic compatibility design to prevent interference and ensure equipment operates reliably. (10) Enhance anti-vibration shock design to improve equipment reliability against vibrations and impacts. (11) Use fault detection circuit and alarm device for timely fault identification. (12) Ensure simple operation and convenient maintenance by using plug-in units, modularization, and standardized structure.

Improving PCB Equipment Reliability: A Comprehensive Guide Read More »

Improving PCB Equipment Reliability: A Comprehensive Guide

(7) Emphasize reliable structure and advanced technology to minimize connectors and metallized holes in circuit design, utilize surface mount devices and technology for better equipment reliability. (8) Implement thermal design measures to control temperature rise and improve thermal reliability of equipment. (9) Incorporate electromagnetic compatibility design to prevent interference and ensure equipment operates reliably. (10) Enhance anti-vibration shock design to improve equipment reliability against vibrations and impacts. (11) Use fault detection circuit and alarm device for timely fault identification. (12) Ensure simple operation and convenient maintenance by using plug-in units, modularization, and standardized structure.

Improving PCB Equipment Reliability: A Comprehensive Guide Read More »

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