一种集成于内窥镜的激光器脚踏开关无线手控装置

By integrating a wireless hand control device onto the endoscope and using Bluetooth to transmit signals, the laser can be started and stopped by pressing a trigger button with a finger, thus solving the problem of foot fatigue caused by foot switch operation and achieving precise control of the laser.

CN224505574UActive Publication Date: 2026-07-17RENMIN HOSPITAL OF WUHAN UNIVERSITY (HUBEI GENERAL HOSPITAL)

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
RENMIN HOSPITAL OF WUHAN UNIVERSITY (HUBEI GENERAL HOSPITAL)
Filing Date
2025-04-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, when using a foot switch to control a laser, operators are prone to foot fatigue, which affects the precise control of the laser.

Method used

Design a wireless hand-held control device for a laser foot switch integrated into an endoscope. The laser can be started and stopped through a hand control mechanism and a pressing mechanism. The signal is transmitted through wireless connection methods such as Bluetooth. The laser can be started and stopped by pressing the trigger button with a finger.

Benefits of technology

It improves foot fatigue, enables precise control of hand movements and lasers, simplifies the operation process, and reduces operator fatigue.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请涉及医疗器械领域,具体公开了一种集成于内窥镜的激光器脚踏开关无线手控装置,其包括手控机构和按压机构;其中:手控机构包括设置于内窥镜手持端的第一通信模块和触发按钮,触发按钮电连接于第一通信模块;按压机构包括第二通信模块、处理器、控制模块和按压组件;按压组件包括升降件和驱动件,升降件升降设置于激光器脚踏开关的上方。本申请通过手指按压触发按钮即可控制激光器脚踏开关按压或松开,进而控制激光器发射激光的启停,改善了采用脚踩方式操作脚踏开关控制激光器的过程中容易造成脚部疲劳的问题。
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Claims

1. A wireless hand control device integrated with a laser pedal switch of an endoscope, characterized in that: Includes a hand control mechanism and a pressing mechanism; wherein: The hand control mechanism includes a first communication module and a trigger button disposed on the endoscope handpiece, the trigger button being electrically connected to the first communication module; The pressing mechanism includes a second communication module, a processor, a control module, and a pressing component. The pressing component includes a lifting element and a driving element. The lifting element is positioned above the laser foot switch. The first communication module is wirelessly connected to the second communication module. The second communication module and the control module are both electrically connected to the processor. The second communication module receives signals transmitted by the first communication module. The processor parses the signals received by the second communication module into control commands. The control module controls the extension and retraction of the driving element according to the control commands to drive the lifting element to descend or rise, thereby pressing or releasing the laser foot switch and controlling the start and stop of laser emission.

2. The wireless hand-held control device for a laser foot switch integrated into an endoscope according to claim 1, characterized in that: The pressing mechanism also includes a base plate, on which the second communication module, processor, control module, pressing component, and laser foot switch are all mounted.

3. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 2, wherein: The lifting component is a horizontally positioned pressing rod.

4. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 3, characterized in that: The driving component is a linear driving component arranged in a vertical direction. The fixed end of the linear driving component is fixed to the base plate, and the output end of the linear driving component is fixed to the pressing rod.

5. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 4, wherein: Two linear drive components are provided, and the two linear drive components are symmetrically arranged at both ends of the pressing rod along its length.

6. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 5, wherein: The linear drive component is a cylinder or an electric push rod.

7. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 1, wherein: The manual control mechanism also includes a first power module for supplying power to the first communication module.

8. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 1, wherein: The first communication module and the second communication module are connected via Bluetooth.

9. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 1, wherein: The trigger button is a push-button type.

10. The wireless hand control device integrated with a laser pedal switch of an endoscope according to claim 9, wherein: The trigger button can be set to one or more.