一种控制器

By integrating pressure triggering and rotation adjustment functions into the controller, and utilizing the coaxial arrangement of magnets and magnetic sensing chips, the problems of traditional controllers being limited in function and complex in structure are solved, achieving compact and efficient multi-functional control, which is particularly suitable for scenarios requiring the use of both hands and feet.

CN224521316UActive Publication Date: 2026-07-17CHANGSHA HOTONE AUDIO

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGSHA HOTONE AUDIO
Filing Date
2025-07-11
Publication Date
2026-07-17

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    Figure CN224521316U_ABST
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Abstract

本实用新型属于控制器领域,具体涉及到一种控制器,其中控制器包括控制部和感应部;控制部包括外壳、控制杆、弹性件、开关触发盘和磁铁,控制杆旋转滑动设置在外壳上,且控制杆形成控制端,形成连接端,开关触发盘固定设置在连接端上,磁铁设置在连接端端部;弹性件用于在下压力撤销后使控制杆复位;感应部包括位于开关触发盘外侧下移移动路径上的机械开关和位于磁铁下移移动路径上的磁感芯片。本实用新型所提供的控制器,集成了下压触发和旋转调节的功能,下压和旋转操作在功能上既有协同作用又相对独立,使得控制器具有更大的灵活性。
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Claims

1. A controller characterized by, It includes a control unit (1) and a sensing unit (2); The control unit (1) includes a housing (11), a control lever (12), an elastic element (13), a switch trigger disk (14), and a magnet (15). The control lever (12) is rotatably and slidably mounted on the housing (11), with one end of the control lever (12) extending out of the housing (11) to form a control end (121) and the other end extending out of the housing (11) to form a connection end (123). The switch trigger disk (14) is fixedly mounted on the connection end (123), and the magnet (15) is mounted at the end of the connection end (123). The control end (121) is used to apply downward pressure and / or rotational force to cause the control lever (12) to control the switch trigger disk (14) and magnet (15) to move down and / or rotate, and the elastic element (13) is used to reset the control lever (12) after the downward pressure is removed; The sensing unit (2) includes a mechanical switch (21) located on the downward moving path outside the switch trigger disk (14) and a magnetic sensing chip (22) located on the downward moving path of the magnet (15).

2. The controller of claim 1, wherein, The outer shell (11) is a cylindrical structure with a hollow interior and open ends; The control lever (12) is rotatably and slidably set inside the hollow cylinder, with two openings extending from both ends.

3. The controller of claim 2, wherein the cylinder A limit ring (111) is provided at the opening near the control end (121). The control lever (12) includes a control end (121) and a sliding section (122) arranged in sequence. The control end (121) is in a rotating sliding fit with the inner wall of the limiting ring (111), and the sliding section (122) is in a rotating sliding fit with the hollow cylinder.

4. The controller of claim 3, wherein, The control end (121) is provided with a control head (16) at one end away from the sliding section (122). The external dimensions of the control head (16) are larger than the inner diameter of the limit ring (111).

5. The controller of claim 3 wherein the cylinder A bottom cover (17) is provided at the opening on the side near the connecting end (123), and a through hole (173) with a diameter smaller than the hollow diameter is provided on the bottom cover (17). The connecting end (123) of the control lever (12) is located on the side of the sliding section (122) away from the control end (121), and the connecting end (123) extends out of the opening of the cylinder through the through hole (173) and rotates and slides with the through hole (173).

6. The controller as claimed in claim 5, characterized in that, The elastic element (13) is a spring. The spring is set inside the hollow of the cylinder and is sleeved between the outer wall of the sliding section (122) and the inner wall of the hollow cylinder. One end of the spring abuts against the sliding section (122) and the other end abuts against the bottom cover (17).

7. The controller of claim 6, wherein, The bottom cover (17) is threadedly connected to the cylinder.

8. The controller of any one of claims 1-7, wherein, The outer side of the switch trigger disk (14) has a notch. When the switch trigger disk (14) is rotated to align the notch with the mechanical switch (21), the switch trigger disk (14) cannot trigger the mechanical switch (21) after being pressed down.

9. The controller as claimed in any one of claims 1-7, characterized in that, When the switch trigger disk (14) moves down to trigger the mechanical switch (21), there is a gap between the magnet (15) and the magnetic chip (22).