Wireless interaction device and interaction display device for skis

The wireless interaction device for skis addresses structural complexity and installation limitations by employing a nylon base with a cross-shaped locking groove and a simple return mechanism, enhancing user interaction and enabling simultaneous skiing motion simulation.

JP3255668UActive Publication Date: 2026-04-28DAQING SITUO MEDIA TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
DAQING SITUO MEDIA TECHNOLOGY CO LTD
Filing Date
2026-01-16
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Conventional ski interaction devices have complex structures, installation limitations, and fail to support simultaneous interaction by multiple users, with the return mechanism experiencing decreased performance over time due to the use of pressing rod assemblies and tension springs.

Method used

A wireless interaction device for skis featuring a nylon base with a cross-shaped locking groove, a ski foot return device, a main load-bearing shaft, a ski foot, a main control module, and an acrylic cover, utilizing a simple return mechanism and enhanced interaction experience.

Benefits of technology

The device provides a simple return mechanism with improved interaction experience and supports simultaneous skiing motion simulation and posture information interaction for multiple users.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a wireless interaction device and interaction display device for skis. [Solution] The wireless interaction device for skis includes a nylon base 1, a ski foot return device 2, a main load-bearing shaft 3, a ski foot 4, etc. A cross-shaped locking groove is fixed in the center of the nylon base, a cross-shaped locking tenon is installed on the ski foot return device, the cross-shaped locking tenon is attached to the cross-shaped locking groove in the center of the nylon base and is used to complete the horizontal return of the ski, the main load-bearing shaft is attached to the ski foot return device and the lower part of the ski foot is fixed to the main load-bearing shaft, a stopper mechanism is connected to a cross-shaped locking groove for a stopper above the ski foot return device and a circular groove is installed in the center of the ski foot for attaching a main control module 5 and an acrylic cover 6. This invention can also be applied to other fields of motion interaction.
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Description

Technical Field

[0001] The present invention relates to the field of wireless interaction device technology for ski boards, and specifically to a wireless interaction device for ski boards and an interaction display device.

Background Art

[0002] The wireless interaction device for ski boards in the prior art generally consists of a main body, an operation station, and a footrest device. Here, the footrest device consists of a base, a footrest assembly, a movable seat, and a linkage mechanism. The wireless interaction device for ski boards generally interlocks with the rotation axis of the potentiometer by the left and right rotation of the footrest assembly. When the rotation axis of the potentiometer rotates, the resistance value of the potentiometer changes correspondingly. The main body obtains the rotation angle of the footrest assembly by detecting the change in the resistance value of the potentiometer, and the main body performs interaction by analyzing the rotation angle of the footrest assembly. The left and right direction conversion of the footrest assembly is the basic control of the ski simulation interaction.

[0003] Currently, in the wireless interaction device for ski boards, the Chinese patent application with the application number 201920536267.0 uses a support plate to drive the left and right rotation of the rotation axis, and the rotation axis drives the main synchronous gear to rotate in conjunction with the rotation axis of the potentiometer. The main body detects the change in the resistance value of the potentiometer to obtain the rotation angle of the footrest assembly, and further obtains the operation information of the human body. Such a ski board interaction solution has a complex structure, many installation restrictions on the device, and cannot meet the requirements of multiple people's simultaneous interaction and the function of real-time collection of somatosensory data.

[0004] Currently, in the ski board interaction device, the pressing rod assembly and the tension spring are used to drive the ski footrest to realize the return function. This realization method has a complex structure, and the interaction experience of the return module decreases with the use frequency of the components of the return module, and the user's interaction experience is poor. [Overview of the Initiative] [Problems that the invention aims to solve]

[0005] This invention addresses the problems of conventional ski interaction devices, which have complex structures, numerous limitations on equipment installation, and inability to meet the demand for simultaneous interaction by multiple users. Furthermore, in wireless ski interaction devices, the method of driving the ski foot pedals to achieve a return function using a pressing rod assembly and tension spring is structurally complex, and the interaction experience of the return module deteriorates with the frequency of use of the return module's components, resulting in a poor user experience. [Means for solving the problem]

[0006] To solve the above technical problems, this invention is realized by the following technical solutions.

[0007] Solution 1 provides a wireless interaction device for skis, the wireless interaction device for skis includes a nylon base, a ski foot return device, a main load-bearing shaft, a ski foot, a main control module, an acrylic cover, and a stopper structure. A cross-shaped locking groove is fixed to the center of the nylon base, and a cross-shaped locking tenon is installed on the ski foot return device. The cross-shaped locking tenon is fitted into the cross-shaped locking groove in the center of the nylon base and is used to complete the horizontal return of the ski. The main load-bearing shaft is attached to the ski footboard return device, the lower part of the ski footboard is fixed to the main load-bearing shaft, the stopper mechanism is connected to a cross-shaped locking groove for the stopper located above the ski footboard return device, and a circular groove is provided in the center of the ski footboard for attaching the main control module and acrylic cover.

[0008] Furthermore, a preferred embodiment is provided in which the nylon base is a circular vibration-damping composite material.

[0009] Furthermore, a preferred embodiment is provided in which the shape of the ski footplate is rectangular.

[0010] Furthermore, a preferred embodiment is provided in which an anti-slip material is attached to the upper tread surface of the ski footboard.

[0011] Furthermore, a preferred embodiment is provided in which the acrylic cover is fixed by screws to a circular groove in the center of the ski footplate.

[0012] Furthermore, a preferred embodiment is provided in which a circular DC charging port is provided on the side of the acrylic cover and is used to determine the battery status by observing an internal power indicator lamp through the acrylic cover.

[0013] Solution 2 provides a wireless smart interaction display device for skis, comprising a main board, a display screen, and a frame, wherein the main board is signal-connected to the display screen, the frame fixes the display screen, a communication module is installed on the main board, and the communication module receives electrical signals transmitted from the wireless interaction device for skis described in Solution 1 and is used to perform data interaction with the display screen. [Effects of the Invention]

[0014] The advantages of this invention are as follows:

[0015] The wireless interaction device and interaction display device for skis according to the present invention have a simple return mechanism, the interaction experience of the return module increases with the frequency of use of the components of the return module, the user's sense of interaction is enhanced, and it is possible to realize true ski motion simulation and posture information interaction for one or more people simultaneously.

[0016] This invention can be further applied to other fields of motion interaction. [Brief explanation of the drawing]

[0017] [Figure 1] This is a schematic diagram of the structure of the wireless interaction device for skis described in Embodiment 1. [Figure 2] This is a schematic diagram of the nylon base structure in the wireless interaction device for skis described in Embodiment 1. [Figure 3] This is a schematic diagram of the structure of the stopper locking groove of the ski foot return device in the wireless interaction device for skis described in Embodiment 1. [Figure 4] This is a schematic diagram showing the state of the ski foot return device in the wireless interaction device for skis described in Embodiment 1. [Figure 5] This is a schematic diagram of the structure of the main load-bearing shaft in the wireless interaction device for skis described in Embodiment 1. [Figure 6] This is a schematic diagram of the structure of the ski foot plate in the wireless interaction device for skis described in Embodiment 1. [Figure 7] This is a schematic diagram illustrating the effects of the wireless interaction for skis described in Embodiment 8. [Modes for carrying out the invention]

[0018] Hereinafter, in order to further clarify the purpose, technical solutions and advantages of the embodiments of the present application, the technical solutions of the embodiments of the present application will be clearly and completely described with reference to the drawings of the embodiments of the present application, and it should be noted that the embodiments described are some embodiments of the present application, not all embodiments.

[0019] In Embodiment 1, this embodiment provides a wireless interaction device for skis, the wireless interaction device for skis includes a nylon base 1, a ski foot return device 2, a main load-bearing shaft 3, a ski foot 4, a main control module 5, an acrylic cover 6, and a stopper structure. A cross-shaped locking groove is fixedly installed at the center of the nylon base 1, and a cross-shaped locking hole is installed on the ski pedal return device 2. The cross-shaped locking hole is installed in the cross-shaped locking groove at the center of the nylon base 1 and is used to complete the return of the ski board in the horizontal direction. The main endurance shaft 3 is attached to the ski pedal return device 2. The lower part of the ski pedal 4 is fixed to the main endurance shaft 3. The stopper mechanism is connected to the cross-shaped locking groove for the stopper above the ski pedal return device 2. A circular groove for installing the main control module and the acrylic cover 8 is installed at the center of the ski pedal 4.

[0020] In Embodiment 2, this embodiment further limits the wireless interaction device for ski boards described in Embodiment 1. The nylon base 1 is a true circular vibration damping composite material.

[0021] In Embodiment 3, this embodiment further limits the wireless interaction device for ski boards described in Embodiment 1. The shape of the ski pedal 4 is rectangular.

[0022] In Embodiment 4, this embodiment further limits the wireless interaction device for ski boards described in Embodiment 1. A non-slip material is pasted on the stepping surface above the ski pedal 4.

[0023] In Embodiment 5, this embodiment further limits the wireless interaction device for ski boards described in Embodiment 1. The acrylic cover 8 is fixed to the circular groove at the center of the ski pedal 4 by screws. 4> In Embodiment 6, this embodiment further limits the wireless interaction device for ski boards described in Embodiment 1. A circular DC charging port is installed on the side surface of the acrylic cover 8 and is used to observe the internal power indicator lamp through the acrylic cover to judge the battery state.

[0025] In Embodiment 7, this embodiment provides a wireless smart interaction display device for skis, comprising a main board, a display screen, and a frame, wherein the main board is signal-connected to the display screen, the frame fixes the display screen, a communication module is installed on the main board, and the communication module receives electrical signals transmitted from the wireless interaction device for skis described in Embodiment 2 and is used to interact with the display screen and data.

[0026] In Embodiment 8, this embodiment provides one example which is used to interpret Embodiments 1 to 8 above, and the embodiment is specifically as follows.

[0027] This embodiment will be described with reference to Figures 1 to 7, and this embodiment specifically includes the following.

[0028] In the wireless interaction device for skis, the overall structure is as shown in the overall structural diagram of the wireless interaction system for skis in Figure 1, and specifically consists of a nylon base 1, a ski foot return device 2, a main load-bearing shaft 3, a ski foot 4, a main control module 5, an acrylic cover 6, and so on.

[0029] The nylon base in the wireless interaction device for skis is a perfectly circular vibration-damping composite material, with a cross-shaped locking groove made of nylon fixed to the center of the nylon base, as shown in the nylon base assembly diagram in Figure 2.

[0030] The ski foot return device in the wireless interaction device for skis is made of circular nylon material and has a stopper design at the top, as shown in the diagram of the stopper locking groove of the ski foot return device in Figure 3. Below is a protruding cross-shaped locking tenon, as shown in the diagram of the cross-shaped locking tenon of the ski foot return device in Figure 4. The cross-shaped locking tenon is mounted in a cross-shaped locking groove in the center of the nylon base. This structure allows the ski foot return device to automatically complete its horizontal return by gravity equilibrium when the wireless interaction system for skis is stationary, as shown in the schematic diagram of the ski foot return device in Figure 4.

[0031] The main load-bearing shaft in the wireless interaction device for skis is attached to the ski foot return device and provides low-resistance longitudinal rotation and load-bearing functions, as shown in the schematic diagram of the main load-bearing shaft structure in Figure 5.

[0032] In the wireless interaction device for skis, the ski footplate is rectangular, and the ski footplate body is made of a strong, durable composite material. The lower part is fixed to the main load-bearing shaft, and the stopper mechanism is connected to the stopper locking groove above the ski footplate return device. Anti-slip material is attached to the upper tread surface of the ski footplate, and there is a circular groove in the center for mounting the main control module and acrylic cover, as shown in the drawing of the ski footplate in Figure 6.

[0033] In this wireless interaction device for skis, the acrylic cover is made of black translucent acrylic material and is fixed with screws to a circular groove in the center of the ski foot plate. A circular DC charging port is attached to the side of the acrylic cover, and the battery status can be determined by observing an internal power indicator lamp through the acrylic cover.

[0034] The wireless interaction device for skis described in this embodiment simulates skiing motion by having the user step on both ends of the ski footboards with both feet, tilt their body horizontally, and rotate the ski footboards, as shown in the schematic diagram of the effect of the wireless interaction device for skis in Figure 7. As described above, the wireless interaction device for skis described in this embodiment has a simple return mechanism and can realize the simultaneous simulation of true skiing motion and interaction of posture information for one or more people.

[0035] As those skilled in the art will understand, the above description is merely a preferred embodiment of the present invention, and the features described in each embodiment and / or claim of this disclosure can be combined or combined in multiple ways, and such combinations or combinations do not need to be explicitly described in this disclosure. Rather than limiting the present invention, the present invention has been described in detail with reference to the above embodiments, but those skilled in the art can still modify the technical solutions described in each embodiment, or make equivalent substitutions for some of the technical features therein, and any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this invention should be included within the scope of protection of this invention.

[0036] While preferred embodiments of the present invention have been described, those skilled in the art, knowing the basic creative concept, can make other changes and modifications to these embodiments. Therefore, the attached utility model claims should be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention. Clearly, those skilled in the art can make various modifications and variations to the present invention without departing from its spirit and scope. Thus, if these modifications and variations of the present invention fall within the scope of the utility model claims of the present invention and the equivalent art, the present invention is intended to include these modifications and variations. [Explanation of Symbols]

[0037] 1...Nylon base, 2...Ski footpeg return device, 3...Main load-bearing shaft, 4...Ski footpeg, 5...Main control module, 6...Acrylic cover.

Claims

1. A wireless interaction device for skis, the wireless interaction device for skis includes a nylon base (1), a ski foot return device (2), a main load-bearing shaft (3), a ski foot (4), a main control module (5), an acrylic cover (6), and a stopper structure. A cross-shaped locking groove is fixed to the center of the nylon base (1), and a cross-shaped locking tenon is installed on the ski foot return device (2). The cross-shaped locking tenon is attached to the cross-shaped locking groove in the center of the nylon base (1) and is used to complete the horizontal return of the ski. A wireless interaction device for skis, characterized in that a main load-bearing shaft (3) is attached to a ski footboard return device (2), the lower part of the ski footboard (4) is fixed to the main load-bearing shaft (3), a stopper mechanism is connected to a cross-shaped locking groove for a stopper located above the ski footboard return device (2), and a circular groove for attaching a main control module (5) and an acrylic cover (8) is installed in the center of the ski footboard (4).

2. The wireless interaction device for skis according to claim 1, characterized in that the nylon base (1) is a perfectly circular vibration-damping composite material.

3. The wireless interaction device for skis according to claim 1, characterized in that the shape of the ski foot plate (4) is rectangular.

4. The wireless interaction device for skis according to claim 1, characterized in that an anti-slip material is attached to the upper tread surface of the ski footboard (4).

5. The wireless interaction device for skis according to claim 1, characterized in that the acrylic cover (8) is fixed by screws to a circular groove in the center of the ski foot plate (4).

6. The wireless interaction device for skis according to claim 1, characterized in that a circular DC charging port is provided on the side of the acrylic cover (8), and is used to determine the battery status by observing an internal power indicator lamp through the acrylic cover.

7. A wireless smart interaction display device for skis, comprising a main board, a display screen, and a frame, wherein the main board is signal-connected to the display screen, the frame fixes the display screen, a communication module is installed on the main board, and the communication module receives electrical signals transmitted from the wireless interaction device for skis described in Solution 1 and is used to perform data interaction with the display screen.