一种手环晃动控制小车移动装置及双人竞速游戏装置

By controlling the movement of the car by collecting the shaking frequency with a wristband and combining it with a composite transmission mechanism, the problem of insufficient control and interaction in two-player racing of remote-controlled cars is solved, and high-precision user interaction and competitive experience are achieved.

CN224506252UActive Publication Date: 2026-07-17SHANTOU PINLICHENG E-COMMERCE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANTOU PINLICHENG E-COMMERCE CO LTD
Filing Date
2025-08-04
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing remote-controlled cars have limited control methods and lack user interaction. Two-player racing entertainment devices lack control precision and interactivity, making it difficult to meet the demand for high-quality interactive entertainment.

Method used

The movement of the car is controlled by collecting the user's shaking frequency through a wristband. A composite transmission mechanism, including gear transmission and worm gear transmission, is used to design a two-player racing game device to achieve independent control and high-precision movement.

Benefits of technology

It increases user-device interactivity, enhances the entertainment experience, and provides precise control during two-player racing, bringing a better competitive experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224506252U_ABST
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Abstract

本实用新型公开了手环晃动控制小车移动装置及双人竞速游戏装置,所述手环晃动控制小车移动装置包括手环、移动平台、环形链条、移动小车,手环采集晃动频率数据,经控制板处理后,通过包含电机、齿轮组的复合传动机构驱动环形链条及移动小车沿移动槽移动。所述双人竞速游戏装置含两套传动系统、两条链条、两个小车,控制板双接收模块分别接收两手环数据,独立控制对应小车竞速。装置通过肢体互动控制,传动稳定,增设水雾功能,提升娱乐体验。
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Claims

1. A handshaking control dolly moving device, characterized by, include: The wristband has a built-in wristband shaking frequency acquisition board, which can collect the frequency data of the wristband shaking and transmit it to the outside. A mobile platform with a moving groove on its surface is equipped with a control board and a composite transmission mechanism. The control board is equipped with a data receiving module and a central controller. The control board is electrically connected to the composite transmission mechanism and can receive the frequency data through the data receiving module and control the operation of the composite transmission mechanism through the central controller. A ring chain is embedded in the movable groove and can move along the movable groove; The mobile trolley is detachably connected to the annular chain; The composite transmission mechanism can drive the ring chain to move along the moving groove, so as to drive the moving trolley to move synchronously.

2. The handshaking control dolly moving device of claim 1, wherein, The composite transmission mechanism includes a motor, a first gear, a first meshing gear, a first transverse connecting shaft, a worm, a first vertical connecting shaft, a worm wheel, and a second gear; The first gear is connected to the motor output end, the first meshing gear meshes with the first gear, one end of the first transverse connecting shaft is connected to the first meshing gear and the other end is connected to the worm, the worm wheel is sleeved on the first vertical connecting shaft and meshes with the worm, the second gear is sleeved on the first vertical connecting shaft and located above the worm wheel, and the second gear meshes with the annular chain.

3. The handshaking control dolly moving device of claim 2, wherein, The mobile platform includes a mobile disk, a ring-shaped cover plate, and a control box; The movable disk has a mounting groove with the same outer contour as itself in the circumference. The annular cover plate covers the mounting groove, and a moving groove is also provided downward at the bottom of the mounting groove near the side wall of the mounting groove. The sidewall of the mounting groove is provided with a gear notch, through which the second gear can extend into the moving groove and mesh with the annular chain. The control box is located at the bottom of the movable disk, and contains the control board, battery power supply and composite transmission mechanism.

4. The handshaking control dolly moving device of claim 1, wherein, The annular chain is provided with a slot, and the bottom of the mobile trolley is provided with a plug that matches the slot. The mobile trolley is detachably connected to the annular chain through the cooperation of the plug and the slot.

5. The handshaking control dolly moving device of claim 3, wherein, The bottom of the mobile trolley is also provided with a gear, which is arranged side by side with the insert block, and the corresponding side wall of the mounting groove is provided with gear teeth that mesh with the gear.

6. The handshaking control dolly moving device of claim 3, wherein, The mounting groove sidewall above the gear notch is provided with an outward arc-shaped protrusion, which can support the ring chain, so that the ring chain is tightly meshed with the second gear.

7. The handshaking control dolly moving device of claim 3, wherein, The control box is also equipped with a water mist generator, and the movable disk has a through hole through which the top of the water mist generator extends to the surface of the movable disk.

8. A two-person racing game apparatus characterized by comprising: The device includes the wristband shaking control trolley movement device as described in any one of claims 2-7, and further includes: The system comprises two sets of the aforementioned composite transmission mechanism, two aforementioned annular chains, and two aforementioned moving trolleys; the mounting slot is provided with two moving slots, the annular cover plate is placed on the mounting slot between the two moving slots, and the two annular chains are respectively embedded in the two moving slots; Each side wall of the mounting groove is provided with a gear notch, and the second gears of the two sets of composite transmission mechanisms extend into the corresponding moving grooves through the two gear notches and mesh with the corresponding annular chains. The outer side of the annular cover plate is provided with gear teeth, and the gears of the two moving trolleys are respectively engaged with the gear teeth on the two side walls of the installation slot and the gear teeth on the outer side of the annular cover plate. The control panel is provided with two data receiving modules for receiving the frequency data of the two bracelets respectively, so as to independently control two sets of composite transmission mechanisms to drive the corresponding annular chains and moving trolleys to move.