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  • Can a pluggable terminal be used in a space - limited environment
    • 2026-05-08

    In today's dynamic industrial landscape, the demand for efficient and space - saving electrical components is on the rise. As a seasoned pluggable terminal supplier, I often encounter inquiries about the viability of using pluggable terminals in space - limited environments. This blog aims to delve deep into this topic, exploring the technical aspects, benefits, and real - world applications of pl...

  • Why are copper materials used for energy storage battery terminals
    • 2026-05-19

    Terminals are core connection components for energy storage batteries, responsible for energy transmission and module connection. Copper is the first choice for energy storage battery terminals, especially customized metal stamping terminals. What makes copper irreplaceable?     As a professional precision metal stamping manufacturer, we summarize the core reasons for copper's wide appli...

  • precision tolerance management and defect mitigation in high-speed stamping of electrical terminals
    • 2026-05-29

    In the world of automotive terminals, relay components, and microswitch contacts, precision is non-negotiable. A deviation of just 0.05mm can lead to poor contact, assembly failure, or costly recalls.   As a trusted manufacturer since 2002, Xiamen Jiaxin Precision Metal Co., Ltd.​ understands that controlling metal stamping tolerances​ is the key to a reliable supply chain.   The Core Ch...

  • what grade silicon steel Is best for EV motor stator & rotor
    • 2026-06-03

    Grain-Oriented vs Non-Oriented Silicon Steel: Which for EV Motors? Most buyers confuse grain-oriented and non-oriented silicon steel for EV motor production. Here is the clear distinction:   Grain-Oriented Silicon Steel (CRGO): Designed only for single-direction magnetic flux transformers. Not applicable for EV stators and rotors.   Non-Oriented Silicon Steel (NOES): Features uniform mul...

  • what causes poor contact and overheating in electrical terminals
    • 2026-06-10

      Core Principle: Excessive Contact Resistance Terminal overheating is fundamentally caused by abnormally high contact resistance. According to Joule’s law, high resistance generates massive heat when current passes through. Once the terminal contact surface fails to fit tightly, resistance rises sharply, forming a vicious cycle: heat accumulation → increased resistance → more...

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