An electrical connection terminal, system and application thereof

By using solid quadrangular prism electrical connection terminals, combined with conductive overcoat and insulating layers, the problems of low space utilization, high parasitic inductance, and strong thermomechanical stress of traditional terminals in high-density wiring scenarios are solved. This achieves high-voltage safety isolation, low parasitic parameters, and simplified process, making it suitable for board-to-board interconnection in high-density electronic devices.

CN122418345APending Publication Date: 2026-07-17SHENZHEN YONGHAORUN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN YONGHAORUN TECH CO LTD
Filing Date
2026-04-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional electrical connection terminals suffer from problems such as low space utilization, high parasitic inductance, strong thermomechanical stress, and complex assembly in high-density wiring scenarios, making it difficult to meet the miniaturization requirements of high-voltage, high-current, and high-frequency switching equipment.

Method used

It adopts a solid quadrangular prism structure composed of two spaced-apart parallel conductive terminals and embedded insulating layer components, with an outer insulating layer covering the entire structure. The conductive overcoat is a gold layer, which is formed through a precision manufacturing process to achieve high-voltage safety isolation, low parasitic parameters, and simplified process.

Benefits of technology

With an extremely compressed size, it significantly improves space utilization and wiring density, reduces parasitic inductance, improves thermal management, simplifies assembly processes, and enhances reliability and high-frequency performance.

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Abstract

本发明公开了一种电连接端子及其系统与应用,该电连接端子包括两间隔并排的导电端子,以及设于二者之间并与之一体成型的内嵌绝缘层构件;导电端子外周侧壁的包胶槽内填充有与内嵌绝缘层构件一体的外包绝缘层构件,从而在其外侧形成安全绝缘区,端子两端形成电连接区;该结构在轴向长度超小尺寸约束下,通过绝缘层全包覆实现了高压安全隔离,并利用“三明治”结构与矩形截面,显著降低了寄生电感、提高了空间利用率和布线密度;本发明还涉及该端子的制造方法,包括冲压、叠装、嵌入式注塑、精密切割与电镀等步骤,以及包含此端子的电路板模块、电子设备和组合套件。
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