Balanced suspension fan

By symmetrically arranging battery components at both ends of the suspended fan body and utilizing the suspension adjustment frame and hooks, the problem of asymmetrical center of gravity caused by concentrated batteries is solved, achieving stable fan suspension and multi-functional use.

CN223781713UActive Publication Date: 2026-01-09DONGGUAN WOKE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520368698.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-01-09
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

Existing suspended fans have an asymmetrical center of gravity due to the battery being concentrated at one end, which affects the stability of the suspension and may cause tilting or swaying, making it impossible to maintain balance.

Method used

The battery packs are symmetrically arranged at both ends of the fan body, and the vertical state of the fan body is achieved through the suspension adjustment frame and hook, ensuring that the battery packs are symmetrically distributed with the suspension as the center, and adjusting the center of gravity.

Benefits of technology

It improves the stability and balance of the suspended fan, avoids tilting and swaying caused by the shift in the center of gravity, enhances user comfort and safety, and adapts to the needs of different usage environments.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223781713U_ABST
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Abstract

The utility model relates to the technical field of suspension fans, and discloses a balanced suspension fan which comprises a fan body, a suspension portion and battery assemblies, the battery assemblies are symmetrically arranged at the first end and the second end of the fan body respectively, the suspension portion is arranged on the fan body, and the suspension portion is arranged on the fan body. The hanging part is used for adjusting the angle of the fan main body; when the fan body is adjusted to be perpendicular to the hanging part, the hanging part is arranged between the first end and the second end of the fan body and used for the fan body to supply air towards the parallel face away from the hanging part. According to the utility model, the problem that batteries are intensively placed at a certain end in the traditional fan design is avoided by distributing the battery components, and the gravity center of the fan is adjusted. Through the optimized layout, the fan can be kept more stable and balanced in the suspended state.
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Description

Technical Field

[0001] This utility model relates to the technical field of suspended fans, and in particular to a balanced suspended fan. Background Technology

[0002] A hanging fan is a fan device that can be suspended in the air and is typically designed to save space and provide flexible airflow. Unlike traditional floor fans or table fans, hanging fans can be mounted on ceilings, walls, or other vertical surfaces and secured by a suspension system.

[0003] Many current fan designs concentrate the battery assembly at one end of the fan body (usually the top or bottom). This design approach is mostly for simplification and cost reduction, avoiding additional complexity by centralizing the battery. In this design, the battery is typically a major component of the fan, fixed to one end of the fan body along with other parts (such as fan blades, motor, etc.). When the battery assembly is concentrated at one end of the fan body, it causes a shift in the fan's center of gravity. This asymmetrical center of gravity directly affects the fan's suspension stability, especially when the fan is intended for suspension. Due to the shifted center of gravity, the fan may tilt or wobble when suspended, unable to maintain balance, thus affecting its performance. Therefore, existing technology has shortcomings and needs improvement. Utility Model Content

[0004] In order to solve one or more problems in the prior art, this utility model provides a balanced suspension fan.

[0005] The technical solution of this utility model is as follows: a balanced suspended fan, comprising a fan body, a suspension part, and a battery assembly. The battery assembly is symmetrically arranged at a first end and a second end on the fan body. The suspension part is arranged on the fan body and is used for adjusting the angle of the fan body. When the fan body is adjusted to be perpendicular to the suspension part, the suspension part is arranged between the first end and the second end of the fan body, so that the fan body can deliver air to a parallel plane away from the suspension part.

[0006] Using the above technical solution, in the balanced suspension fan, the suspension part includes an adjustment frame and a hook. The adjustment frame is disposed on the fan body, and the hook is disposed on the adjustment frame. The hook is used to hang on the suspension end, and the adjustment frame is used to allow the fan body to adjust its angle.

[0007] In the above-mentioned technical solutions, the balanced suspension fan also includes a lighting component on the fan body.

[0008] In the balanced suspension fan described above, the adjustment frame is provided with a storage groove, the hook is provided with an adjustment component, and the hook is connected to the adjustment frame through the adjustment component. When the hook is not in use, the adjustment component is used to adjust the angle between the hook and the adjustment frame so that the hook is stored in the storage groove.

[0009] In the above-mentioned technical solutions, the balanced suspension fan also has a detachable mounting shell on the fan body.

[0010] In the above-mentioned technical solutions, the balanced suspension fan has a wire groove structure on one end of the fan body near the suspension part, and a connecting wire is disposed on the wire groove structure. The connecting wire is used to electrically connect the battery assembly and the fan body.

[0011] In the above-mentioned technical solutions, the balanced suspension fan is further provided with a control component on the fan body, and the control component is electrically connected to the fan body, the lighting component and the battery component respectively.

[0012] In the above-mentioned technical solutions, when the fan body is adjusted to be perpendicular to the suspension part, the battery components at the first and second ends of the fan body are symmetrically arranged with the suspension part as the center.

[0013] In this invention, by distributing the battery assembly, the problem of batteries being concentrated at one end in traditional fan designs is avoided, thus adjusting the fan's center of gravity. This optimized layout allows the fan to maintain greater stability and balance when suspended, preventing tilting and swaying caused by a shift in the center of gravity, and improving stability during suspension. Due to the rational distribution of the batteries, the fan's center of gravity is more symmetrical, effectively improving its suspension stability. Whether in static use or when adjusting wind speed and direction, the fan remains stable, avoiding the swaying problems caused by a shift in the center of gravity in traditional designs. The improved fan offers greater comfort and safety when used in a suspended state, and users can more easily adjust the fan's direction and position. The optimized design makes the fan more adaptable, providing stable airflow whether placed on a table or suspended in the air, meeting the needs of different usage environments and enhancing the fan's versatility and applicability. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the overall exploded structure of this utility model;

[0016] Figure 3 This is a schematic diagram of the suspension part structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the battery assembly structure of this utility model;

[0018] The components include: 1. Fan body; 2. Suspension part; 3. Battery assembly; 4. Lighting assembly; 20. Adjustment frame; 21. Hook; 22. Storage slot; 23. Adjustment piece; 10. Mounting shell; 11. Control assembly.

[0019] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0020] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments described herein are merely illustrative of the present invention and are not intended to limit the scope of the invention.

[0021] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0022] In this utility model, it should also be noted that the directional terms such as one side, one end, the other end, upper and lower in the embodiments of this application are only relative concepts or are based on the normal use state of the product, and should not be considered as restrictive.

[0023] like Figure 1As shown in the illustration, this application provides a balanced suspended fan, comprising: a fan body 1, a suspension part 2, and a battery assembly 3. The battery assembly 3 is symmetrically arranged at a first end and a second end of the fan body 1. The suspension part 2 is disposed on the fan body 1 and is used to adjust the angle of the fan body 1. When the fan body 1 is adjusted to be perpendicular to the suspension part 2, the suspension part 2 is disposed between the first end and the second end of the fan body 1, allowing the fan body 1 to deliver airflow toward a parallel plane away from the suspension part 2. In this embodiment, the fan body 1 is the core component of the entire fan, typically including a motor and fan blades. The motor drives the fan blades to rotate, thereby generating airflow. The main function of this part is to draw in and blow out air, providing a cooling or air circulation effect. The function of the fan body 1 is to generate a uniform airflow, achieving air circulation, cooling, and comfort. Its wind speed and direction are adjustable, allowing users to adjust the wind speed and direction according to their needs to obtain the desired air circulation effect. The suspension part 2 is the location or device for mounting the fan body 1, allowing the fan body 1 to be adjusted in angle within space. The design of the suspension part 2 provides a degree of flexibility, allowing users to control the fan's airflow direction by adjusting its angle. The main function of the suspension part 2 is to support and adjust the angle of the fan body 1, ensuring its stability and directional flexibility. When the fan body 1 is adjusted to be perpendicular to the suspension part 2, the suspension part 2 ensures the balance of the fan body 1, thereby ensuring that the airflow is directed towards a parallel plane away from the suspension part 2. This design provides more uniform and efficient airflow. The battery assembly 3 provides power to the fan, ensuring it can operate normally without an external power source. The battery assembly 3 typically includes a rechargeable battery, and is symmetrically positioned at the first and second ends of the fan body 1 to balance the fan's weight and improve stability. The battery assembly 3 provides the necessary power to the fan, ensuring its operation without external power support. Its symmetrical arrangement helps balance the fan body 1, preventing the fan from tilting due to uneven battery weight. An effective battery design extends usage time, improves convenience and flexibility, and is particularly suitable for situations requiring the fan to be moved or used in locations without power outlets.

[0024] Specifically, by redistributing the battery assembly 3, the problem of batteries being concentrated at one end in traditional fan designs is avoided, and the fan's center of gravity is adjusted. This optimized layout allows the fan to maintain greater stability and balance when suspended, preventing tilting and swaying caused by a shift in the center of gravity, thus improving stability during suspension. Due to the rational distribution of the batteries, the fan's center of gravity is more symmetrical, effectively enhancing its suspension stability. Whether in static use or when adjusting wind speed and direction, the fan remains stable, avoiding the wobbling problems caused by a shift in the center of gravity in traditional designs. The improved fan offers greater comfort and safety when used in a suspended state, and users can more easily adjust the fan's direction and position. These design optimizations make the fan more adaptable, providing stable airflow whether placed on a desktop or suspended in the air, meeting the needs of different usage environments and enhancing its versatility and applicability.

[0025] like Figure 2As shown, the suspension part 2 further includes an adjustment frame 20 and a hook 21. The adjustment frame 20 is disposed on the fan body 1, and the hook 21 is disposed on the adjustment frame 20. The hook 21 is used to hang on the suspension end, and the adjustment frame 20 is used to allow the fan body 1 to adjust its angle. The adjustment frame 20 is a key component installed on the fan body 1, and is usually fixed by screws or other fixing methods. The function of the adjustment frame 20 is to provide an adjustable support structure for the fan body 1, ensuring that the fan can be adjusted to a hanging angle for use or to be used on a desktop or upright position as needed. This design allows the fan to flexibly adjust its angle, whether vertical or horizontal, allowing users to adjust the fan's airflow direction as needed, thereby improving the fan's comfort and flexibility. For example, the airflow direction can be adjusted more precisely to meet the needs of different scenarios and improve air circulation. The hook 21 is installed on the adjustment frame 20, and can be fixed to the adjustment frame 20 by clips, screws, or other connection methods. The function of hook 21 is to provide a hanging point for suspending the fan in a designated location, such as a wall or ceiling mounting end. The design of hook 21 allows the fan to be stably hung in a designated location, avoiding floor space occupation. This structure allows the fan to be suspended at different heights and angles, achieving more effective air circulation and wind distribution. At the same time, the simple design of hook 21 facilitates installation and removal, making it easier for users to adjust the fan's mounting method. The function of hook 21 is to fix the fan in the air or at other high places by cooperating with a mounting end (such as a wall hook, ceiling bracket, etc.). This suspension method reduces the floor space occupied by the fan and ensures stable suspension through the sturdiness of the hook. This design allows the fan to be suspended in the air, saving space and extending the fan's airflow to a wider area. By suspending the fan in the air, the fan's airflow can be distributed more evenly, avoiding airflow being limited by ground obstacles. Furthermore, this design is suitable for space-saving environments such as homes and offices, providing greater ease of use. The adjustment frame 20 allows the angle of the fan body 1 to be adjusted when in use. The fan body 1, connected via the adjustment frame 20, allows for angle adjustment in either the horizontal or vertical direction. This adjustment is typically achieved through rotation, locking, or loosening. This angle adjustment function enhances the fan's adaptability and versatility. Users can flexibly change the fan's blowing angle according to room layout and needs, ensuring airflow to the desired location. This design allows the fan to be used not only for localized cooling but also for whole-room or larger-scale air circulation by adjusting the angle, improving user comfort and efficiency.In another embodiment, a rotatable hook 21 can be added, allowing the fan to rotate freely in the horizontal direction (360 degrees) and also to be adjusted vertically (180 degrees) on the adjustment frame 20, thereby achieving a seamless airflow effect. This design allows for more precise control of the airflow direction, ensuring uniform airflow regardless of the fan's installation location.

[0026] like Figure 2As shown, the fan body 1 is further provided with a lighting component 4. The fan body 1 is also provided with a detachable mounting shell 10. A wire groove structure is provided at one end of the fan body 1 near the suspension part 2, and a connecting wire is disposed on the wire groove structure. The connecting wire is used to electrically connect the battery assembly 3 and the fan body 1. A control component 11 is also provided on the fan body 1, and the control component 11 is electrically connected to the fan body 1, the lighting component 4, and the battery assembly 3. In this embodiment, the lighting component 4 is mounted on the fan body 1 and typically consists of an LED bulb, a lampshade, and a power circuit. The lighting component 4 is connected to the battery or power system via a circuit and can provide lighting functionality. With the help of the control component 11, the user can adjust the brightness and switch the lighting on and off, possibly in conjunction with the fan's usage mode. This design combines the fan and lighting functions into one, eliminating the need for additional installation or separate lighting equipment when using the fan, saving space. The lighting component 4 provides a light source that enhances indoor lighting conditions, making it particularly suitable for environments such as bedrooms or camping. It not only improves air circulation but also provides additional lighting, enhancing the versatility and convenience of the device. The removable mounting shell 10 allows the fan body 1 to be easily removed or replaced when needed. The mounting shell 10 can be connected by clips, screws, or magnets, facilitating user operation during cleaning, maintenance, or component replacement. Removing and replacing the shell may involve personalizing the fan's appearance or providing better ventilation or safety when using different shells. This design provides the fan shell's removability, facilitating cleaning, repair, maintenance, and replacement. Users can clean the fan interior regularly as needed to maintain proper operation and extend the fan's lifespan. Furthermore, removing the shell can alter the fan's appearance or function, further enhancing its customizability and user experience. The cable tray structure is designed to house wires and cables, typically located on the fan body 1 near the suspension section 2. This location facilitates the organization and protection of wires, preventing tangling or interference with the fan's normal operation during suspension. The cable tray provides suitable space for wire placement and typically prevents cable exposure. The cable tray structure effectively stores and protects the wires, avoiding potential safety hazards from exposed cables and preventing them from being interfered with or damaged by airflow during fan operation. This design enhances the fan's neatness and safety, while also making wire management more standardized and reducing clutter. Conductive components, arranged within the cable trays, are responsible for the electrical connection between the battery assembly 3 and the fan body 1. These conductive components may be cables, wires, or other conductive materials, ensuring current transfer between the fan battery and the main body. The battery assembly 3 provides power to the fan, while the conductive structure ensures a stable power supply.This design makes the electrical connection between battery assembly 3 and fan body 1 more stable and reliable, while also avoiding potential safety hazards caused by exposed cables. The rational layout of the conductive structure not only ensures smooth power transmission but also makes the connection between the fan and battery neater, avoiding messy and disorderly cables, and improving the overall design and safety of the product. The control component 11 is the "brain" of the fan, used to adjust various fan functions such as wind speed, wind direction, and lighting brightness. Through its electrical connection with fan body 1, lighting assembly 4, and battery assembly 3, it centrally manages all fan control commands. The control component 11 may include buttons, a remote control, a touchscreen, or other operating methods, allowing users to adjust the device's operating status. By setting up the control component 11, users can easily adjust various fan functions, such as wind speed adjustment, light switching, and timer settings, greatly improving ease of use. The integrated control system reduces the hassle of operating multiple components individually, improving operational efficiency and comfort. The presence of the control component 11 ensures the intelligence and user-friendliness of the device, meeting the modern user's demand for multifunctional and efficient operation of home appliances.

[0027] like Figure 3As shown, the adjustment frame 20 is further provided with a storage slot 22, and the hook 21 is provided with an adjustment member 23. The hook 21 is connected to the adjustment frame 20 through the adjustment member 23. When the hook 21 is not in use, the adjustment member 23 is used to adjust the angle between the hook 21 and the adjustment frame 20, so that the hook 21 is stored in the storage slot 22. The storage slot 22 on the adjustment frame 20 is used to store and organize the hook 21. When the hook 21 is no longer in use, the storage slot 22 provides it with a safe and tidy storage space. The design of the storage slot 22 usually takes into account the size and shape of the hook 21, ensuring that the hook 21 can be placed stably in the slot without falling off or affecting the operation of other components. This design provides a convenient storage location for the hook 21, avoiding the situation where the hook 21 is exposed or left lying around when not in use. It effectively improves the neatness and ease of use of the product. When not in use, the user can easily place the hook 21 into the storage slot 22, ensuring a tidy environment and reducing the risk of loss or damage. The adjusting member 23 is designed to adjust the connection angle between the hook 21 and the adjusting frame 20. The hook 21 typically offers some flexibility, and the adjusting member 23 allows the user to adjust its position or angle as needed. The adjusting member 23 allows the hook 21 to adapt to different usage scenarios or storage requirements through rotation, sliding, or other adjustments. The adjusting member 23 allows for flexible adjustment of the hook 21's angle, adapting to various usage situations. For example, when hanging items, adjusting the angle of the hook 21 may allow it to better support the items; when not in use, the adjusting member 23 helps to adjust the hook 21 to a compact position for easy storage.

[0028] like Figure 1 and Figure 4As shown, further, when the fan body 1 is adjusted to be perpendicular to the suspension part 2, the battery components 3 at the first and second ends of the fan body 1 are symmetrically arranged with the suspension part 2 as the center. In this embodiment, the adjustment mechanism between the fan body 1 and the suspension part 2 allows the fan body 1 to be adjusted to be perpendicular to the suspension part 2. When adjusted to the vertical position, the working direction of the fan body 1 and the suspension part 2 form a right angle relationship. This design allows the fan to change direction according to usage needs, especially when it is necessary to adjust the fan to a vertical state. Distributing the battery components 3 at both ends of the fan body 1 can evenly distribute the weight, which helps to improve the stability of the fan. At the same time, the distributed battery design ensures the balance of the battery, avoiding one end being too heavy or unstable, improving the user experience and safety of the fan. The presence of the battery components 3 allows the fan to work independently without an external power source, improving its portability and flexibility. The battery components 3 are symmetrically arranged at the first and second ends of the fan body 1, with the suspension part 2 as the center. This means that the two battery components 3 are located at the two ends of the fan body 1, while the suspension part 2 is located at the symmetrical center point of the battery components 3. This symmetrical arrangement, through precise design and installation, ensures the balance of the battery assembly 3, guaranteeing the fan's stability when suspended. The symmetrical arrangement of the battery assembly 3 ensures the center of gravity and overall balance of the fan body 1, preventing any one side from becoming excessively heavy, thus maintaining the fan's stability when suspended.

[0029] In one embodiment, the suspension member 2 can be used not only to suspend the fan but also as a support bracket. When the fan is used in a desktop setting, the support bracket can be adjusted at any angle to meet the user's multi-angle airflow needs. Specifically, the support bracket is securely connected to the fan body 1 and is equipped with a flexible angle adjustment mechanism, allowing the user to freely adjust the fan's tilt angle according to their needs. The adjustment range covers both vertical and horizontal directions, achieving multi-angle airflow. At the same time, the design of the support bracket takes into account portability and practicality, allowing users to easily switch between suspended and desktop usage modes, enhancing the user experience.

[0030] By adopting the above-mentioned technical solutions, this utility model avoids the problem of batteries being concentrated at one end in traditional fan designs by redistributing the battery assembly 3, thus adjusting the fan's center of gravity. This optimized layout allows the fan to maintain greater stability and balance when suspended, preventing tilting and swaying caused by a shift in the center of gravity, and improving stability during suspension. Due to the rational distribution of the batteries, the fan's center of gravity is more symmetrical, effectively improving its suspension stability. Whether in static use or when adjusting wind speed and direction, the fan remains stable, avoiding the swaying problem caused by a shift in the center of gravity in traditional designs. The improved fan offers greater comfort and safety when used in a suspended state, and users can more easily adjust the fan's direction and position. The optimized design makes the fan more adaptable, providing stable airflow whether placed on a table or suspended in the air, meeting the needs of different usage environments and enhancing the fan's versatility and applicability.

[0031] The above are merely preferred embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A balanced suspended fan, characterized in that, include: The fan body comprises a suspension part and a battery assembly. The battery assembly is symmetrically arranged at a first end and a second end of the fan body. The suspension part is arranged on the fan body and is used to allow the fan body to adjust its angle. When the fan body is adjusted to be perpendicular to the suspension part, the suspension part is arranged between the first end and the second end of the fan body and is used for the fan body to deliver air to a parallel plane away from the suspension part.

2. The balanced suspension fan according to claim 1, characterized in that, The suspension part includes an adjustment frame and a hook. The adjustment frame is disposed on the fan body, and the hook is disposed on the adjustment frame. The hook is used to hang on the suspension end, and the adjustment frame is used to allow the fan body to adjust its angle.

3. The balanced suspension fan according to claim 1, characterized in that, The fan body is also equipped with a lighting component.

4. The balanced suspension fan according to claim 2, characterized in that, The adjustment frame is provided with a storage slot, and the hook is provided with an adjustment component. The hook is connected to the adjustment frame through the adjustment component. When the hook is not in use, the adjustment component is used to adjust the angle between the hook and the adjustment frame so that the hook is stored in the storage slot.

5. The balanced suspension fan according to claim 1, characterized in that, The fan body is also equipped with a detachable mounting shell.

6. The balanced suspension fan according to claim 1, characterized in that, A wire groove structure is provided on one end of the fan body near the suspension part, and a connecting wire is provided on the wire groove structure. The connecting wire is used to electrically connect the battery assembly and the fan body.

7. The balanced suspension fan according to claim 1, characterized in that, The fan body is also provided with a control component, which is electrically connected to the fan body, the lighting component and the battery component respectively.

8. The balanced suspension fan according to claim 1, characterized in that, When the fan body is adjusted to be perpendicular to the suspension part, the battery assemblies at the first and second ends of the fan body are symmetrically arranged with the suspension part as the center.