Dynamic suspension clock
By designing the transmission and rotation components, the dynamic aesthetics and technological feel of the dynamic floating clock are enhanced, solving the problem of existing clocks lacking decorative function and visual appeal, and meeting the demand for high quality.
Patent Information
- Application Number
- CN202520693411.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-14
AI Technical Summary
Existing clocks lack decorative function and visual appeal, failing to meet people's pursuit of quality of life and lifestyle.
A dynamic levitating clock is designed that transmits the power of the control component to the rotating component through a transmission component, and realizes the dynamic movement of the levitating component through the transmission of the rotating component, thereby enhancing the dynamic aesthetics and technological feel of the clock.
It enhances the dynamic aesthetics and technological feel of clocks, enriches their presentation, and meets people's demand for high quality.
Smart Images

Figure CN223926768U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to non-contact technical field, concretely relates to a dynamic suspension clock. BACKGROUND
[0002] Clock is mainly used to show time and measure time interval, usually has display part of indicating time and mechanism of keeping time through certain mode, clock has various different forms, such as mechanical clock, electronic clock, atomic clock.
[0003] In prior art, the basic function of mechanical clock, electronic clock or atomic clock is only to show time change, so the form of expression is relatively single, often can not provide more personalized or multifunctional display mode, lacks decorative function and visual attraction, can not satisfy the pursuit of people to quality life and life style. CONTENT OF THE UTILITY MODEL
[0004] The utility model provides a dynamic suspension clock in view of the deficiency in prior art, and the specific scheme is as follows:
[0005] A kind of dynamic suspension clock, including control component, transmission component, rotating component and suspension component;
[0006] One end of the rotating component is provided with counterweight, the suspension component is provided at the end of the rotating component away from the counterweight, and the mass of the rotating component is balanced at both ends.
[0007] The control component is drivingly connected to the transmission component, and the transmission component is drivingly connected to the rotating component on the side away from the control component;The transmission component is used to drive the rotating component to rotate under the drive of the control component, so as to drive the suspension component to rotate.
[0008] In one embodiment, the transmission component includes a driving wheel, a transmission wheel and a driven wheel;The transmission wheel is rotatably connected to the driving wheel on one side and to the driven wheel on the other side.
[0009] The driving wheel is drivingly connected to the control component on one side and to the rotating component on the other side;The driven wheel is drivingly connected to the suspension component on the side away from the transmission wheel;The driving wheel is used to drive the rotating component to rotate under the drive of the control component, so as to drive the suspension component to rotate around the control component;And drive the driven wheel to rotate, so as to drive the suspension component to rotate.
[0010] In one embodiment, the driving wheel includes a driving gear, the transmission wheel includes a transmission gear, and the driven wheel includes a driven gear.
[0011] The number of teeth of the driving gear is the same as that of the driven gear.
[0012] In one specific embodiment, a protrusion is arranged on one side of the rotating assembly close to the transmission assembly, a hollow part matching the protrusion is arranged on the driving wheel, and the driving wheel is connected to the protrusion through the hollow part to achieve the transmission connection of the rotating assembly.
[0013] In one specific embodiment, the levitation assembly comprises a magnetic field control device and a levitation body, the magnetic field control device is arranged on one end of the rotating assembly away from the counterweight, and the magnetic field control device and the levitation body generate repulsive magnetic force to make the levitation body levitate in the upper area on the side of the magnetic field control device away from the rotating assembly.
[0014] In one specific embodiment, the control assembly comprises a control part and a circuit board, the control part is drivingly connected to the transmission assembly, and one side of the control part away from the transmission assembly is electrically connected to the circuit board.
[0015] The control part is located in the central area of the circuit board.
[0016] In one specific embodiment, the control assembly, the transmission assembly and the rotating assembly are located inside the shell, the magnetic field control device in the levitation assembly is located in the shell, and the levitation body in the levitation assembly is levitated outside the shell and in the upper area of the magnetic field control device.
[0017] In one specific embodiment, the lighting assembly and the soft light cover are further included.
[0018] The lighting assembly is arranged on the inner wall of the shell and exposed relative to the shell, and the lighting assembly is electrically connected to the control assembly; the soft light cover is arranged on the lighting assembly, and the soft light cover comprises a transparent part for light transmission.
[0019] In one specific embodiment, the lighting assembly comprises a ring-shaped light belt.
[0020] In one specific embodiment, the display screen assembly is further included, the display screen assembly is located on the shell close to the levitation body, and the display screen assembly is exposed relative to the shell; the control assembly is electrically connected to the display screen assembly.
[0021] Beneficial effects: the application provides a dynamic levitation clock, the power of the control assembly is transmitted to the rotating assembly through the transmission assembly, and the dynamic movement of the levitation assembly is realized through the transmission of the rotating assembly, which enhances the dynamic beauty and technological sense of the clock and enriches the display form of the clock; good visual effect is achieved to meet the demand of people for high quality. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows, and it should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as limiting the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the premise of the drawings.
[0023] Figure 1 is a perspective structural diagram of the present application;
[0024] Figure 2 is a schematic diagram of the transmission assembly structure of the present application;
[0025] Figure 3 is a schematic diagram of the rotation assembly structure of the present application;
[0026] Figure 4 is a schematic diagram of the control assembly of the present application;
[0027] Figure 5 is a schematic diagram of the lighting assembly structure of the present application;
[0028] Figure 6 is a schematic diagram of the display screen assembly structure of the present application;
[0029] Figure 7 is a schematic diagram of the perspective structure of the present application.
[0030] The reference signs are as follows: 1-control assembly; 1a-control part; 1b-circuit board; 2-transmission assembly; 2a-driving wheel; 2a1-hollow part; 2b-transmission wheel; 2c-driven wheel; 3-rotation assembly; 3a-protruding part; 4-suspension assembly; 4a-magnetic field control device; 4b-suspension body; 5-counterweight; 6-housing; 7-lighting assembly; 8-soft light cover; 9-display screen assembly. DETAILED DESCRIPTION
[0031] The concept, specific structure and generated technical effects of the present application will be clearly and completely described below in combination with embodiments and drawings, so as to fully understand the purpose, features and effects of the present application.
[0032] In the following, various embodiments of the present application will be described more fully. The present application can have various embodiments, and adjustments and changes can be made therein. However, it should be understood that there is no intention to limit various embodiments of the present application to the specific embodiments disclosed herein, but the present application should be understood to cover all adjustments, equivalents and / or alternatives falling within the spirit and scope of various embodiments of the present application.
[0033] Hereinafter, the term "include" or "may include" used in various embodiments of the present application indicates the presence of the disclosed functions, operations, or elements and does not limit one or more functions, operations, or elements from being added. Also, as used in various embodiments of the present application, the terms "include", "have", and their conjugates merely indicate that specific features, numbers, steps, operations, elements, components, or combinations thereof are present and do not exclude the existence or addition of one or more other features, numbers, steps, operations, elements, components, or combinations thereof.
[0034] In various embodiments of the present application, the expression "or" or "at least one of A or / and B" includes any combination of the listed terms or all combinations thereof. For example, the expression "A or B" or "at least one of A or / and B" can include A, can include B, or can include both A and B.
[0035] The expressions (such as "first", "second", etc.) used in various embodiments of the present application can modify various constituent elements in various embodiments, but can not limit the corresponding constituent elements. For example, the above expressions do not limit the order and / or importance of the elements. The above expressions are used only for the purpose of distinguishing one element from other elements. For example, the first user device and the second user device indicate different user devices, although both are user devices. For example, the first element can be referred to as the second element, and likewise, the second element can be referred to as the first element without departing from the scope of various embodiments of the present application.
[0036] It should be noted that in the present application, unless otherwise explicitly specified and defined, the terms "mounting", "connection", "fixing", etc. should be understood in a broad sense, for example, can be fixed connection, can also be detachable connection, or integral connection; can be mechanical connection, can also be electrical connection; can be direct connection, or can be indirect connection through an intermediate medium; can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0037] In the present application, those skilled in the art need to understand that the terms indicating the orientation or position relationship in the text are based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application.
[0038] The terminology used in the various embodiments of this invention is for the purpose of describing particular embodiments only and is not intended to limit the various embodiments of this invention. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Unless otherwise defined, all terms (including technical and scientific terms) used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the various embodiments of this invention pertain. The terms (such as those defined in a generally used dictionary) are to be interpreted as having the same meaning as in the context of the relevant technical field and are not to be interpreted as having an idealized or overly formal meaning, unless clearly defined in the various embodiments of this invention.
[0039] Example 1
[0040] This embodiment transmits power from the control component to the rotating component via a transmission component, and achieves dynamic movement of the levitation component through the transmission of the rotating component. This enhances the dynamic aesthetics and technological feel of the clock, enriches its display format, and achieves excellent visual effects to meet people's demand for high quality. The specific solution is as follows:
[0041] A dynamic floating clock includes a control component 1, a transmission component 2, a rotation component 3, and a floating component 4;
[0042] A counterweight 5 is provided at one end of the rotating component 3, and a suspension component 4 is provided at the end of the rotating component 3 away from the counterweight 5. The mass of the two ends of the rotating component 3 is balanced.
[0043] The control component 1 drives the transmission component 2, and the side of the transmission component 2 away from the control component 1 drives the rotating component 3. The transmission component 2 is used to drive the rotating component 3 to rotate under the drive of the control component 1, thereby driving the suspension component 4 to rotate.
[0044] As attached Figure 1 and attached Figure 7 As shown, this embodiment provides a dynamic levitating clock. A counterweight 5 is configured at one end of the rotating component 3 to balance the weight distribution and ensure the stability of the rotating component 3 during rotation. A levitating component 4 is disposed at the other end of the rotating component 3. Furthermore, the control component 1 drives the transmission component 2, which transmits the power and commands from the control component 1 to the rotating component 3, thereby causing it to rotate. The rotation of the rotating component 3 causes the levitating component 4 to rotate.
[0045] In practical applications, the levitation component 4 includes a magnetic field control device 4a and a levitation body 4b. Specifically, the magnetic field control device 4a contains a magnetic material capable of generating a continuous and stable magnetic field, providing the necessary physical basis for levitation. The levitation body 4b also uses a magnetic material, which generates a repulsive force with the magnetic material of the magnetic field control device 4a, allowing the levitation body 4b to be stably suspended above the magnetic field control device 4a. Dynamic movement is achieved through the transmission of the rotating component 3, enhancing the dynamic aesthetics and technological feel of the clock and enriching its presentation. Furthermore, the dynamic movement of the levitation body 4b achieves excellent visual effects, meeting people's demands for high quality.
[0046] In practical applications, the counterweight 5 balances the weight of the magnetic field control device 4a and the levitation body 4b, ensuring the smooth and stable rotation of the entire rotating assembly 3. Through precise calculation and design, it also ensures the clock maintains stability and reliability while dynamically levitating. The counterweight 5 enhances the stability of the magnetic field control device 4a during movement, thereby strengthening the stability of the levitation force. Furthermore, it helps balance the inertia of the rotating assembly 3, reducing the impact of the magnetic field control device 4a on the rotating assembly 3 during movement, balancing the weight distribution within the rotating assembly 3, and to a certain extent preventing the rotating assembly 3 from shifting or becoming unstable during the movement of the magnetic field control device 4a, thus maintaining the balance of the rotating assembly 3 to a certain degree.
[0047] In one specific embodiment, as shown in the appendix Figure 2 As shown, the transmission assembly 2 includes a driving wheel 2a, a transmission wheel 2b, and a driven wheel 2c; the transmission wheel 2b is rotatably connected to the driving wheel 2a on one side and to the driven wheel 2c on the other side, thus realizing the effective transmission of power;
[0048] The drive wheel 2a is connected to the control component 1 on one side and to the rotating component 3 on the other side, so that the drive wheel 2a can drive the rotating component 3 to rotate under the drive of the control component 1.
[0049] The driven wheel 2c is connected to the suspension component 4 on the side furthest from the transmission wheel 2b. The driving wheel 2a, driven by the control component 1, rotates the rotating component 3, thereby causing the suspension component 4 to rotate around the control component 1; and also drives the driven wheel 2c to rotate, thereby causing the suspension component 4 to rotate on its own axis. This not only ensures that the suspension component 4 can revolve around the control component 1 along with the rotation of the rotating component 3, but also, through the rotation of the driven wheel 2c, drives the suspension component 4 to rotate on its own axis, adding more layers and dynamism to the dynamic suspension effect of the entire clock.
[0050] In one specific embodiment, the driving wheel 2a includes a driving gear, the transmission wheel 2b includes a transmission gear, and the driven wheel 2c includes a driven gear, so as to ensure smooth power transmission;
[0051] The number of teeth on the driving gear is the same as the number of teeth on the driven gear. This means that the driving wheel 2a and the driven wheel 2c will rotate at the same speed during the transmission process, thus ensuring that while the suspension component 4 revolves around the control component 1, its rotation speed can also be coordinated with the revolution speed. This further enhances the visual effect and operational stability of the entire dynamic suspension clock, adding more layers and dynamism to the dynamic suspension effect of the entire clock.
[0052] In one specific embodiment, as shown in the appendix Figure 3 As shown, a protrusion 3a is provided on the side of the rotating component 3 near the transmission component 2. A hollow portion 2a1 matching the protrusion 3a is provided on the drive wheel 2a. The drive wheel 2a is connected to the protrusion 3a through the hollow portion 2a1 to achieve transmission connection with the rotating component 3. This not only ensures smooth power transmission but also greatly enhances the connection strength between the rotating component 3 and the transmission component 2, making the entire transmission system more stable and reliable. At the same time, due to the perfect match between the protrusion 3a and the hollow portion 2a1, energy loss during transmission is effectively reduced, improving the overall operating efficiency of the dynamic levitating clock.
[0053] In one specific embodiment, the levitation component 4 includes a magnetic field control device 4a and a levitation body 4b; the magnetic field control device 4a is disposed on the end of the rotating component 3 away from the counterweight 5, and the magnetic field control device 4a and the levitation body 4b generate mutually repulsive magnetic forces, so that the levitation body 4b is suspended in the area above the side of the magnetic field control device 4a away from the rotating component 3.
[0054] In practical applications, the magnetic field control device 4a is equipped with a magnetic material that can generate a continuous and stable magnetic field force, providing the necessary physical basis for levitation. The levitation body 4b also uses a magnetic material and generates a repulsive force with the magnetic material of the magnetic field control device 4a, so that the levitation body 4b can be stably suspended in the area above the magnetic field control device 4a and achieve dynamic movement through the transmission of the rotating component 3, which enhances the dynamic aesthetics and technological feel of the clock and enriches the presentation of the clock.
[0055] In one specific embodiment, as shown in the appendix Figure 4 As shown, the control component 1 includes a control unit 1a and a circuit board 1b. The control unit 1a is driven and connected to the transmission component 2, and the side of the control unit 1a away from the transmission component 2 is electrically connected to the circuit board 1b.
[0056] The control unit 1a is located in the central area of the circuit board 1b, which improves the overall structural compactness and stability of the floating clock.
[0057] In one specific embodiment, a housing 6 is also included, which protects the internal mechanical structure from interference and damage from the external environment, and adds aesthetic appeal to the dynamic levitating clock through its smooth lines and elegant appearance. In practical applications, the material of the housing 6 ensures sufficient strength and durability while also taking into account the requirements of lightness and aesthetics.
[0058] The control component 1, transmission component 2, and rotation component 3 are all located inside the housing 6; the magnetic field control device 4a in the suspension component 4 is located inside the housing 6, and the suspension body 4b in the suspension component 4 is suspended outside the housing 6 and located above the magnetic field control device 4a, which enhances the dynamic aesthetics and technological feel of the clock and enriches the presentation of the clock.
[0059] In one specific embodiment, as shown in the appendix Figure 5 As shown, it also includes an illumination component 7 and a diffuser 8;
[0060] The lighting component 7 is located on the inner wall of the housing 6, with a portion exposed relative to the housing 6. This allows light to shine through gaps or specific openings in the housing 6, providing a soft and warm illumination to the surrounding environment of the clock. Simultaneously, the lighting component 7 is electrically connected to the control component 1, enabling the control component 1 to flexibly control the switching and brightness adjustment of the lighting component 7 according to preset programs or user commands, thereby meeting different usage scenarios and personalized needs.
[0061] To further enhance the comfort and aesthetics of the lighting, a diffuser 8 was specially designed. The diffuser 8 covers the lighting component 7, and its surface is treated with special materials and processes to effectively diffuse and soften light as it passes through, preventing glare and discomfort to the user. Simultaneously, the diffuser 8 also features a transparent section for light transmission, ensuring smooth light penetration.
[0062] Specifically, in practical applications, the transparent part can be made of transparent or semi-transparent plastic material, and the lighting component 7 adopts a ring-shaped light strip design. The ring-shaped light strip not only conforms to the circular appearance of the clock, but also provides a uniform and soft lighting effect. The setting of the diffuser 8 and the lighting component 7 further enhances the visual performance of the clock and optimizes its appearance; and through the dynamic changes in lighting effects in coordination with the movement of the suspended body 4b, the expressive forms of the clock are further enriched, enhancing the appeal of the clock's performance.
[0063] In one specific embodiment, as shown in the appendix Figure 6 As shown, it also includes a display assembly 9, which is located on the housing 6 in the area near the suspension body 4b, and the display assembly 9 is exposed relative to the housing 6; the control assembly 1 is electrically connected to the display assembly 9.
[0064] In practical applications, the display component 9 allows users to easily view basic information such as the current time, date, and temperature. They can even customize the displayed content according to their personal preferences and needs, such as setting alarms, displaying personalized images or animations. This design not only enhances the clock's practicality but also transforms it into a smart device capable of interacting and communicating with the user, providing a more convenient and personalized user experience. The addition of the display component 9 not only enriches the functionality and information display methods of the dynamic floating clock but also delivers a superior user experience and visual enjoyment through its intuitive and clear display.
[0065] This application provides a dynamic floating clock that transmits the power of the control component to the rotating component through a transmission component, and realizes the dynamic movement of the floating component through the transmission of the rotating component, thereby enhancing the dynamic aesthetics and technological feel of the clock and enriching the display forms of the clock; achieving good visual effects to meet people's demand for high quality.
[0066] The above is a detailed description of the preferred embodiments of the present utility model. However, the present utility model is not limited to the embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present utility model. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.
Claims
1. A dynamic floating clock, characterized in that, Includes control components, transmission components, rotation components, and suspension components; A counterweight is provided at one end of the rotating component, and the suspension component is provided at the end of the rotating component away from the counterweight; the masses at both ends of the rotating component are balanced. The control component is driven and connected to the transmission component, and the side of the transmission component away from the control component is driven and connected to the rotating component; the transmission component is used to drive the rotating component to rotate under the drive of the control component, thereby driving the suspension component to rotate.
2. The dynamic floating clock according to claim 1, characterized in that, The transmission assembly includes a driving wheel, a transmission wheel, and a driven wheel; the transmission wheel is rotatably connected to the driving wheel on one side and to the driven wheel on the other side. The drive wheel is connected to the control component on one side and to the rotating component on the other side; the driven wheel is connected to the suspension component on the side away from the drive wheel; the drive wheel is used to drive the rotating component to rotate under the drive of the control component, thereby driving the suspension component to rotate around the control component; and to drive the driven wheel to rotate, thereby driving the suspension component to rotate on its own axis.
3. A dynamic floating clock according to claim 2, characterized in that, The driving wheel includes a driving gear, the transmission wheel includes a transmission gear, and the driven wheel includes a driven gear; The number of teeth on the driving gear is the same as the number of teeth on the driven gear.
4. A dynamic floating clock according to claim 2, characterized in that, The rotating assembly has a protrusion on one side near the transmission assembly, and the drive wheel has a hollow portion that matches the protrusion. The drive wheel is connected to the protrusion through the hollow portion to achieve a transmission connection with the rotating assembly.
5. A dynamic floating clock according to claim 1, characterized in that, The levitation assembly includes a magnetic field control device and a levitation body; the magnetic field control device is disposed on the end of the rotating assembly away from the counterweight, and the magnetic field control device and the levitation body generate a repulsive magnetic force, so that the levitation body is suspended in the area above the side of the magnetic field control device away from the rotating assembly.
6. A dynamic floating clock according to claim 1, characterized in that, The control component includes a control unit and a circuit board. The control unit is driven and connected to the transmission component, and the side of the control unit away from the transmission component is electrically connected to the circuit board. The control unit is located in the central area of the circuit board.
7. A dynamic floating clock according to claim 1, characterized in that, It also includes a housing, and the control component, the transmission component and the rotation component are all located inside the housing; the magnetic field control device in the suspension component is located inside the housing, and the suspending body in the suspension component is suspended outside the housing and located in the area above the magnetic field control device.
8. A dynamic floating clock according to claim 7, characterized in that, It also includes lighting components and diffusers; The lighting component is disposed on the inner wall of the housing and exposed relative to the housing, and the lighting component is electrically connected to the control component; the diffuser is disposed on the lighting component, and the diffuser includes a transparent portion for light transmission.
9. A dynamic floating clock according to claim 8, characterized in that, The lighting assembly includes a ring-shaped light strip.
10. A dynamic floating clock according to claim 7, characterized in that, It also includes a display assembly located on the housing near the levitation body, and the display assembly is exposed relative to the housing; the control assembly is electrically connected to the display assembly.
Citation Information
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