A multi-angle implantation structure for keyboard key brackets and its usage method

By designing an adjustable keyboard key bracket with a multi-angle implantation structure, the problems of non-adjustable implantation angle and poor adaptability in existing technologies are solved. This achieves precise multi-angle implantation of the key bracket and improves stability, adapting to keyboards of different specifications and reducing production costs and damage rates.

CN122125853APending Publication Date: 2026-06-02SHENZHEN HONGYINGYE MASCH LEASING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN HONGYINGYE MASCH LEASING CO LTD
Filing Date
2026-04-17
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing keyboard key support implantation structures cannot flexibly adjust the angle, resulting in inconsistent implantation accuracy, making it difficult to adapt to keyboards of different models and key layouts, and prone to displacement and stability issues during implantation.

Method used

A multi-angle implantation structure for keyboard key brackets was designed, including a feeding component, a transferring component, and an implantation component. Through the cooperation of an adjustable implantation head module and a sliding base, the key brackets can be accurately implanted at multiple angles to adapt to keyboards of different specifications.

Benefits of technology

It improves the stability and versatility of keyboard key bracket installation, reduces production input, increases production efficiency, and reduces product damage rate.

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Abstract

This invention provides a multi-angle implantation structure for keyboard key brackets, belonging to the field of keyboard manufacturing technology. It includes a feeding component, a transferring component, and an implantation component. It also relates to a method of using the multi-angle implantation structure, comprising the following steps: Step 1: Equipment debugging and parameter preset; Step 2: Keyboard positioning and fixing; Step 3: Automatic feeding of the key bracket; Step 4: Precise transfer of the key bracket; Step 5: Precise multi-angle implantation of the key bracket; Step 6: Real-time monitoring and anomaly handling; Step 7: Work completion and equipment maintenance. The beneficial effects of this invention are: multi-angle implantation of the key bracket is achieved through the implantation module, adapting to the production needs of keyboards of different models and key layouts, improving the versatility of the equipment, buffering the impact force during implantation, increasing the contact area with the key bracket, avoiding excessive local pressure leading to bracket deformation, adapting to different specifications of key brackets, and improving production efficiency.
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