Support with position easy to adjust
By designing a sliding and flexible connection structure, the problem of existing magnetic phone holders being unable to adjust their position has been solved, enabling flexible adjustment and stable support for electronic devices and improving the user experience.
Patent Information
- Application Number
- CN202423321112.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing magnetic phone holders cannot flexibly adjust the position and angle of the phone according to user needs, which limits the user experience.
An easily adjustable bracket is designed, comprising a first fixing part, a connecting part, and a second fixing part. The second fixing part is slidably connected to the connecting part and maintains its position through a locking structure and friction. The connecting part is flexible to adapt to different environments.
This technology enables electronic devices to flexibly adjust their position and angle without changing the positions of the fixed and connecting parts, improving user convenience and stability, and simplifying operation steps.
Smart Images

Figure CN223795029U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bracket technology, and in particular to a bracket that is easy to adjust in position. Background Technology
[0002] With the widespread use of mobile devices such as smartphones and tablets in daily life, people's needs for using these devices in different environments are also increasing. For example, while driving, to ensure safety and convenience, users often need to fix their phones in a stable position for navigation, answering calls, or playing music. In conclusion, phone holders have become an indispensable accessory in modern life.
[0003] Most phone holders on the market currently use a magnetic connection mechanism to secure the phone. This design typically consists of two parts: a mounting end that is installed inside the vehicle (such as on the dashboard, windshield, or air vents); and a magnetic attachment point located on the back of the phone or on a dedicated phone case. Through magnetic force, users can quickly attach their phone to the holder and easily remove it when not in use.
[0004] However, most existing magnetic phone holders have a significant design limitation—the relative position between the magnetic part and the fixed end is fixed and cannot be adjusted by sliding. This means that once the phone is placed on the holder, its position and angle are difficult to change unless the entire device is completely removed and repositioned. Such a design restricts user flexibility, preventing further adjustments to the phone's position based on actual needs (such as different viewing heights, lighting conditions, or personal preferences), thus impacting the user experience. Utility Model Content
[0005] The main purpose of this invention is to provide a stand that is easy to adjust in position, which can improve the convenience of users when using electronic devices.
[0006] To achieve the above objectives, this utility model proposes an easily adjustable bracket, suitable for detachably connected electronic devices. The easily adjustable bracket includes:
[0007] The first fixing part is suitable for connecting external components;
[0008] The connecting portion is bent and has a first end and a second end disposed adjacent to each other, and both the first end and the second end are connected to the first fixing portion;
[0009] The second fixing part is adapted to connect an electronic device. The second fixing part is slidably connected to the connecting part and is configured to slide relative to the connecting part along the extension path of the connecting part.
[0010] In some embodiments, the second fixing part has a through hole, and the connecting part passes through the through hole so that the second fixing part slides along the extension path of the connecting part.
[0011] In some embodiments, the second fixing part includes a surface wall adapted to abut against the electronic device, and the second fixing part is rotatable about the connecting part to adjust the orientation of the surface wall.
[0012] In some embodiments, the second fixing part includes a locking structure connected to the connecting part. The locking structure has a locked state and an unlocked state. In the locked state, the locking structure restricts the movement of the second fixing part relative to the connecting part. In the unlocked state, the second fixing part is able to move relative to the connecting part.
[0013] In some embodiments, the locking structure includes a through hole and a pressure block, the pressure block protruding radially toward the center of the through hole, in the locked state the pressure block presses against the connecting portion, and in the unlocked state the pressure block and the connecting portion are spaced apart.
[0014] In some embodiments, the connecting portion is detachably connected to the first fixing portion; and / or,
[0015] The connecting part is detachably connected to the second fixing part.
[0016] In some embodiments, the connecting portion includes a rigid segment extending along a rigid end, the rigid segment having opposite ends, both opposite ends of the rigid end being connected to a first fixing portion.
[0017] In some embodiments, the connecting portion includes a flexible segment, a first axis perpendicular to the extension path of the connecting portion, a first circumferential direction and a second circumferential direction both around the first axis, and the first circumferential direction and the second circumferential direction are opposite to each other, the flexible segment is configured to have a first state of bending along the first circumferential direction and a second state of bending along the second circumferential direction.
[0018] In the first state, the second fixing part is configured to be able to rotate relative to the flexible segment to a first position; in the second state, the second fixing part is configured to be able to rotate relative to the flexible segment to a second position.
[0019] When the second fixing part is in the first position, the surface wall is adapted to support the electronic device facing upward; when the second fixing part is in the second position, the surface wall is adapted to support the electronic device facing upward.
[0020] The second axis is parallel to the first axis. When the flexible segment switches between the first state and the second state, the second fixed part rotates about the second axis relative to the flexible segment to the first position or the second position.
[0021] In some embodiments, the connection further includes a rigid segment extending along the rigid end, the rigid segment having opposite ends, the ends of the rigid segment being respectively connected to a flexible segment; and / or,
[0022] One end of the steel wire section is connected to the flexible section, and the other end is connected to the first fixing section.
[0023] In some embodiments, the first fixing part includes a first fixing member and a second fixing member, both of which are adapted to connect to an external component, and a first end and a second end are respectively connected to the first fixing member and the second fixing member; and / or,
[0024] The first fixing part includes a main housing, a first fixing member and a second fixing member. Both the first fixing member and the second fixing member are housed in the main housing. The main housing is adapted to connect external components. The first end and the second end are respectively connected to the first fixing member and the second fixing member.
[0025] Compared with the prior art, the beneficial effects of this utility model are:
[0026] This invention provides an easily adjustable bracket suitable for detachably connecting electronic devices. The easily adjustable bracket includes a first fixing part, a connecting part, and a second fixing part. The first fixing part is suitable for connecting to external components, such as a desktop, car dashboard, or wall, providing a stable support point for the entire easily adjustable bracket. The connecting part is curved and has adjacent first and second ends, both of which are connected to the first fixing part. The second fixing part is suitable for connecting electronic devices and is slidably connected to the connecting part. The second fixing part is configured to slide relative to the connecting part along its extension path.
[0027] The second fixing part is configured to slide along the extension path of the connecting part. Therefore, when the position of the fixing part remains unchanged, the electronic device can adjust its position by sliding the second fixing part to facilitate user operation. Of course, when the position of the fixing part remains unchanged, the position of the connecting part remains unchanged, and the static shape of the connecting part remains unchanged, the sliding design of the second fixing part in this invention allows the electronic device to flexibly change its position with the second fixing part in all of the above situations for user operation.
[0028] Furthermore, since both the first and second ends of the connecting part are connected to the fixing part, the connecting part itself forms a closed frame. When the second fixing part slides along the extension path of the connecting part, it slides along the closed path of the connecting part itself, so the second fixing part will not detach from the connecting part during the sliding process. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0030] Figure 1 This is a schematic diagram of the structure of a bracket that is easy to adjust in position according to one embodiment of the present invention;
[0031] Figure 2 This is an example of an embodiment of the present invention viewed from another perspective. Figure 1 A schematic diagram of a bracket whose position can be easily adjusted is shown.
[0032] Figure 3 This is a schematic diagram of the structure of the connecting part of the bracket, which is easy to adjust in position, after bending around the first axis in one embodiment of the present invention;
[0033] Figure 4 for Figure 3 An exploded view of the easily adjustable support structure shown.
[0034] Figure 5 This is a schematic diagram of the structure of the easily adjustable bracket in the first state according to an embodiment of the present invention;
[0035] Figure 6 This is a schematic diagram of the structure of the easily adjustable bracket in the second state according to one embodiment of the present invention;
[0036] Figure 7 This is a schematic diagram of the locking structure in one embodiment of the present invention;
[0037] Figure 8 This is a schematic diagram of the structure of a bracket that is easy to adjust in position, according to another embodiment of the present invention.
[0038] Explanation of icon numbers:
[0039] First fixing part 100; first fixing member 110; second fixing member 120;
[0040] Connecting part 200;
[0041] Second fixing part 300; locking structure 310; through hole 311; pressure block 312; surface wall 320;
[0042] External components 400;
[0043] Electronic equipment 500;
[0044] Extend path S.
[0045] 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
[0046] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0047] This application proposes an easily adjustable bracket suitable for detachably connected electronic device 500, see reference. Figure 1 and Figure 2 In some embodiments, the easily adjustable bracket includes a first fixing portion 100, a connecting portion 200, and a second fixing portion 300. The first fixing portion 100 is adapted to connect to an external component 400, such as a desktop, car dashboard, or wall, providing a stable support point for the entire easily adjustable bracket. The connecting portion 200 is curved and has adjacent first and second ends, both of which are connected to the first fixing portion 100. The second fixing portion 300 is adapted to connect to an electronic device 500 and is slidably connected to the connecting portion 200. The second fixing portion 300 is configured to slide relative to the connecting portion 200 along its extension path S.
[0048] The second fixing part 300 is configured to slide along the extension path S of the connecting part 200. Therefore, when the position of the fixing part remains unchanged, the electronic device 500 can adjust its position by sliding the second fixing part 300 for user convenience. Of course, when the position of the fixing part remains unchanged, the position of the connecting part 200 remains unchanged, and the static shape of the connecting part 200 remains unchanged, the electronic device 500 can flexibly change its position with the second fixing part 300 in various situations to facilitate user use.
[0049] Furthermore, since both the first end and the second end of the connecting part 200 are connected to the fixing part, the connecting part 200 itself forms a closed frame. When the second fixing part 300 slides along the extension path S of the connecting part 200, it slides along the closed path of the connecting part 200 itself. Therefore, the second fixing part 300 will not detach from the connecting part 200 during the sliding process.
[0050] The bending configuration of the connecting part 200 refers to the specific shape that the connecting part 200 takes when it is static, such as a U-shape or other suitable curved shape. Of course, this bending shape of the connecting part 200 can also include bends, that is, both arc-shaped bends and zigzag-shaped bends.
[0051] The connecting part 200 can be flexible or rigid. A flexible connecting part 200 facilitates further shaping, further improving the flexibility of the easily adjustable bracket. A rigid connecting part 200 provides good support performance. Regarding flexibility and rigidity, "flexible" is defined as the ability to essentially recover from deformation, while "rigid" is defined as having a higher hardness than flexibility and being macroscopically difficult to recover from deformation. Recovery can be automatic or recovery after deformation under a reverse force. There are two types of flexibility: one where the shape can be maintained after deformation without external force, and the other where the shape can freely recover to its original state after deformation without external force. The connecting part 200 serves as an intermediate transition connecting the second fixing part 300 and the first fixing part 100. This application does not limit the material properties of the connecting part 200, only requiring that it include a curved structure so that both the first end and the second end can be connected to the first fixing part 100.
[0052] Regarding the extension path S of the connecting part 200, specifically, the shape of the connecting part 200 can be regarded as a trajectory of an endpoint moving from the starting position to the ending position along a certain path. This trajectory is the extension path S of the connecting part 200. In this application, the second fixing part 300 can slide along this trajectory.
[0053] In addition, the connecting part 200 can be made of a single material or it can be composed of multiple parts, each of which is connected by hinges or other flexible joints to facilitate transportation and storage, and also to allow users to adjust the degree of bending according to actual needs.
[0054] In some embodiments, the connecting portion 200 may include a curved structure of various shapes, the curvature of which can be customized according to the intended application scenario, and is not limited to the arc segment embodied in the U-shaped structure. For example, a larger curvature of the connecting portion 200 can be used to create a larger adjustment range, while a smaller curvature is more suitable for use in compact spaces.
[0055] It is understood that, in some embodiments, to further enhance the functionality and applicability of the easily adjustable bracket, the first fixing part 100 can take many different forms to adapt to various installation environments. For example, the first fixing part 100 can be designed with a suction cup structure, suitable for glass or smooth surfaces; or equipped with screw holes for fixing to wooden or metal surfaces.
[0056] It should be noted that the second fixing part 300 is connected to the single structure of the connecting part 200 itself and slides along the extension path S of the connecting part 200. Specifically, for example, the connecting part 200 is a U-shaped structure, which includes two arms arranged opposite each other and an arc segment. The second fixing part 300 is sleeved on one of the arms and can slide to the arc segment or the other arm. The second fixing part 300 is not sleeved on the entire connecting part 200, that is, the second fixing part 300 cannot clamp both arms.
[0057] Regarding the positioning of the second fixing part 300 on the extension path S of the connecting part 200, the second fixing part 300 can be clamped to a certain position on the connecting part 200 by a dedicated locking structure 310, or a well-designed friction structure can be used to hold the second fixing part 300 in a specific position on the connecting part 200 through friction. Specifically, in some embodiments, the contact surface between the second fixing part 300 and the connecting part 200 can be designed to have a textured or anti-slip coating to increase the friction between them and ensure that the electronic device 500 can be firmly supported even in an inclined state.
[0058] Reference Figure 1 and Figure 8 In some embodiments, the second fixing part 300 has a through hole 311, through which the connecting part 200 passes, so that the second fixing part 300 slides along the extension path S of the connecting part 200. This structural design ensures that the second fixing part 300 can move linearly relative to the connecting part 200, thereby adjusting the position of the electronic device 500 according to the user's needs.
[0059] Structurally, the through hole 311 is a through-hole opened on the second fixing part 300. Its shape and size match the connecting part 200, allowing the connecting part 200 to pass through while maintaining a certain gap so that the second fixing part 300 can slide freely. To achieve a smooth sliding effect, the inner wall of the through hole 311 is usually machined to ensure surface smoothness, and lubricating material may be added to reduce frictional resistance. This design allows the user to adjust the position of the electronic device 500 simply by gently pushing or pulling the second fixing part 300, without applying a large amount of extra force.
[0060] When the second fixing part 300 slides along the connecting part 200, it is guided by the connecting part 200, ensuring that the sliding trajectory follows the extension trajectory of the connecting part 200. Due to the presence of the through hole 311, the second fixing part 300 can move freely within a certain range, while being restrained by the connecting part 200 and thus not deviating from the track. This not only improves the flexibility of using the easily adjustable bracket but also ensures that the electronic device 500 is stably supported in any selected position. For example, the user can quickly adjust the height and angle of the electronic device 500 according to actual needs to find the most comfortable viewing or usage position.
[0061] Meanwhile, since the entire process of the second fixing part 300 sliding relative to the connecting part 200 does not require disassembly or reinstallation of any components, the operation steps are greatly simplified, saving time. This is particularly convenient for applications that frequently require changing the position of the electronic device 500.
[0062] In some embodiments, the relative sliding between the second fixing part 300 and the connecting part 200 can also be achieved by designing a slider and a groove. For example, a dovetail groove is provided on the connecting part 200, which extends along the extension path S of the connecting part 200. The second fixing part 300 includes a slider corresponding to the dovetail groove, and the slider of the second fixing part 300 can slide in the dovetail groove of the connecting part 200 to achieve the purpose of adjusting the position of the second fixing part 300.
[0063] Understandably, in some embodiments, ball bearings or other rolling elements may be provided inside the through-hole 311 to improve the smoothness and precision of sliding. These elements provide rolling contact when the second fixed part 300 slides along the connecting part 200, further reducing friction, making the sliding smoother, while reducing wear and increasing the durability of the system. Ball bearings or similar rolling elements can be installed in the through-hole 311 by interference fit or fixed by specially designed grooves to ensure that they will not easily fall off.
[0064] In some embodiments, the contact surface between the connecting portion 200 and the through hole 311 can be designed to have an adaptive adjustment function. For example, the edge of the through hole 311 can be made of an elastic material, so that when a heavier electronic device 500 is mounted onto the second fixing portion 300, the elastic material will be compressed, thereby automatically adjusting the pressure distribution between the connecting portion 200 and ensuring stable sliding performance regardless of load changes. Furthermore, a fine-tuning knob or similar device can be provided near the through hole 311, allowing the user to manually adjust the tightness between the through hole 311 and the connecting portion 200 according to actual conditions, meeting personalized needs.
[0065] In some embodiments, to enhance dust and water resistance, a sealing ring or sealing strip can be added around the through-hole 311. These sealing components not only prevent the intrusion of external dust and moisture but also act as a buffer, reducing the impact of accidental collisions and protecting the internal structure from damage. The sealing ring or sealing strip should be made of a material with good elasticity and weather resistance, such as silicone rubber, to ensure that it maintains a good sealing effect even after long-term use.
[0066] Reference Figures 2 to 4 In some embodiments, the second fixing part 300 has a surface wall 320 adapted to abut against the electronic device 500. The second fixing part 300 is rotatable about the connecting part 200 to adjust the orientation of the surface wall 320. When the second fixing part 300 rotates about the connecting part 200, it uses the connecting part 200 as an axis, allowing the surface wall 320 to change its angle relative to the horizontal or vertical plane. This rotational movement is achieved through the guiding effect of the connecting part 200. The second fixing part 300 can not only move along the curved path of the connecting part 200, but also rotate about the connecting part 200 as a pivot, thereby freely adjusting the surface wall 320 to any desired orientation. In practical applications, this design allows users to easily adjust the viewing angle of the electronic device 500 to adapt to different viewing angle requirements without changing the easily adjustable bracket position.
[0067] In some embodiments, to ensure good contact, the surface 320 is typically made of a soft and elastic material, such as rubber or silicone. This not only protects the surface of the electronic device 500 from scratches but also provides sufficient friction to stably support the device. Furthermore, the shape and size of the surface 320 are optimized according to the different types of electronic devices 500 intended to be connected to ensure optimal fit.
[0068] Understandably, in some embodiments, to further improve adjustment accuracy and stability, a fine-tuning mechanism, such as a slot or gear set, can be provided inside the dial wall 320. This fine-tuning mechanism can be controlled by a knob or other operating components, allowing the user to finely adjust the angle of the dial wall 320. This design is particularly suitable for situations requiring precise screen alignment, such as medical image display or precision instrument operation.
[0069] In some embodiments, the second fixing part 300 includes an angle locking device. Once the user has adjusted the electronic device 500 to a satisfactory angle, this locking device can be used to fix the current position and prevent angle deviation caused by accidental collisions. The locking device can be a simple ratchet structure or a more complex hydraulic damper.
[0070] In some embodiments, where a larger radius of rotation is required to provide a wider angular coverage for the surface wall 320, the length of the connecting portion 200 may be appropriately increased or its curvature may be changed.
[0071] Reference Figures 1 to 4 as well as Figure 7 In some embodiments, the second fixing part 300 includes a locking structure 310 connected to the connecting part 200, and has a locked state and an unlocked state. In the locked state, the locking structure 310 restricts the movement of the second fixing part 300 relative to the connecting part 200; in the unlocked state, the second fixing part 300 can move relative to the connecting part 200. This design allows the user to fix the position of the electronic device 500 when needed, avoiding unnecessary movement, while also allowing for easy adjustment of the position when necessary.
[0072] Structurally, the locking structure 310 is a component integrated within the second fixed part 300, forming a mechanical connection with the connecting part 200. The locking structure 310 can be implemented in various ways, such as using snap-fits, screws, or spring clamps. These components are designed to ensure that, in the locked state, the relative displacement between the second fixed part 300 and the connecting part 200 is strictly limited. Specifically, when the locking structure 310 is in the locked state, it applies constraint forces in one or more directions to the connecting part 200, preventing the second fixed part 300 from moving along any possible degree of freedom. In the unlocked state, the locking structure 310 allows the second fixed part 300 to slide or rotate along the connecting part 200. Specifically, in the unlocked state, these constraint forces of the locking structure 310 in the locked state are released, thereby restoring the second fixed part 300's degree of freedom, allowing it to be adjusted according to the user's intention.
[0073] To ensure ease of operation, in some embodiments, the locking structure 310 is equipped with an easy-to-operate handle or button, allowing the user to lock or unlock with a simple press or turn. For example, in some embodiments, the locking structure 310 includes a spring clamping member. In the locked state, the spring presses the clamping member firmly against the connecting portion 200, generating frictional resistance. When the user operates the handle or button, the spring is compressed, reducing the pressure of the clamping member on the connecting portion 200, thereby entering the unlocked state.
[0074] The locking structure 310 significantly enhances the safety and reliability of the easily adjustable bracket. Especially in dynamic environments, such as vehicle navigation systems or industrial monitoring equipment, the fixing function effectively prevents accidental movement caused by vibration or external forces, ensuring that the electronic device 500 is always in the user-defined optimal viewing or working position. Furthermore, for applications requiring frequent adjustments but wishing to maintain a specific position, such as presentation playback or video conferencing, the convenient locking and unlocking functions provided by the locking structure 310 significantly improve work efficiency and user experience.
[0075] Understandably, in some embodiments, to enhance the durability and reliability of the locking structure 310, wear-resistant materials can be used to manufacture key components, such as clamping elements or contact surfaces. For example, high-strength alloy steel or ceramic materials can be used. These materials not only withstand greater pressure without deformation but also have excellent wear resistance, extending the service life of the locking structure 310. Simultaneously, for components that are frequently exposed, such as handles or buttons, anti-slip textures or coatings can be added to improve operational safety and feel.
[0076] In some embodiments, considering outdoor or humid environments, the locking structure 310 possesses a certain degree of waterproof and corrosion-resistant capabilities. This can be achieved by applying waterproof sealant to critical areas or by employing a fully enclosed design to completely enclose the internal moving parts, preventing moisture intrusion. Furthermore, selecting corrosion-resistant metal materials or applying special surface treatments (such as chrome plating or oxidation) are also effective protective measures. In this way, even under harsh conditions, the locking structure 310 can maintain good working performance and will not fail due to environmental factors.
[0077] Reference Figure 4In some embodiments, the locking structure 310 includes a through-hole 311 and a pressure block 312. The pressure block 312 protrudes radially toward the center of the through-hole 311. When locked, the pressure block 312 presses against the connecting portion 200; when unlocked, the pressure block 312 separates from the connecting portion 200, allowing the second fixing portion 300 to move relative to the connecting portion 200. Specifically, the through-hole 311 extends through the entire second fixing portion 300, and its shape and size are designed to accommodate the connecting portion 200 passing through it. The pressure block 312 is a separate component installed inside or around the through-hole 311 and is movable radially within the through-hole 311. To ensure that the pressure block 312 effectively applies pressure to the connecting portion 200, a spring or other form of elastic element is typically provided between the pressure block 312 and the through-hole 311. In this way, when the user does not apply external force, the pressure block 312 will be naturally pushed towards the center of the through hole 311, thereby tightly fitting the surface of the connecting part 200 and forming a locked state. When the user operates the handle or button, the pressure block 312 will be pushed back, releasing the pressure on the connecting part 200 and entering the unlocked state.
[0078] The working mechanism of the pressure block 312 relies on the principle of mechanical friction. In the locked state, the friction generated by the pressure block 312 pressing tightly against the connecting part 200 is sufficient to prevent the second fixed part 300 from sliding or rotating along the connecting part 200. Conversely, in the unlocked state, the contact area between the pressure block 312 and the connecting part 200 is reduced, and the friction is also reduced, allowing the second fixed part 300 to move freely. In some embodiments, the pressure block 312 is manufactured using a high-hardness, low-friction material such as polytetrafluoroethylene (PTFE), so that the pressure block 312 can provide both good self-lubrication and reduced wear.
[0079] Understandably, in some embodiments, to enhance the contact quality between the pressure block 312 and the connecting portion 200, a soft but durable rubber pad can be added to the surface of the pressure block 312, or the shape of the pressure block 312 can be designed to match the contour of the connecting portion 200. This not only increases friction but also protects the surface of the connecting portion 200, preventing scratches or wear after long-term use. Furthermore, for scenarios requiring more precise control, such as medical instruments or precision measuring tools, a fine-tuning mechanism can be added between the pressure block 312 and the through hole 311, allowing users to finely adjust the position of the pressure block 312 to achieve the desired locking effect.
[0080] Reference Figures 1 to 4In some embodiments, the connecting part 200 is detachably connected to the first fixing part 100; and / or, the connecting part 200 is also detachably connected to the second fixing part 300. This design provides great flexibility, allowing users to replace different types of connecting parts 200 as needed, or to repair damaged parts individually, without having to replace the entire easily adjustable bracket.
[0081] The connection between the connecting part 200 and the first fixing part 100 and the second fixing part 300 can be achieved in various ways. For example, quick-release bolts, snap-fit connections, and magnetic connections can be used. These connection methods not only ensure the strength of the connection but also simplify operation, allowing for assembly and disassembly without additional tools. Specifically, if a quick-release bolt is used, the connecting part 200 can be easily removed simply by loosening the nut; if a snap-fit connection is used, the unlock button must be pressed or a switch to be toggled to release the lock; and for magnetic connections, the attraction between strong magnets automatically engages or disengages. Regardless of the method, the aim is to simplify the user's operating procedures and improve maintenance efficiency.
[0082] The detachable and connectable design is based on a modular design concept. By breaking down the easily adjustable bracket into multiple relatively independent yet interconnected modules, each module can be designed and manufactured independently, and then combined to form a complete, easily adjustable bracket system. This allows for the customization of modules with specific functions according to different application scenarios, and also facilitates the updating or replacement of old components, extending the product's lifespan. More importantly, this modular construction method helps reduce production costs, as individual modules can be mass-produced according to demand, reducing the complexity and high costs associated with personalized customization.
[0083] It is understood that, in some embodiments, to further enhance the safety and reliability of the connection, an additional safety locking device can be added between the connecting part 200 and the first fixing part 100 or the second fixing part 300. For example, a dual locking mechanism can be adopted, that is, in addition to the original quick-release bolts or clips, an independent safety pin is added to ensure that even if the main connecting part fails, the connecting part 200 will not accidentally fall off. This is particularly important for applications that may experience significant vibration or impact during use, such as easily adjustable brackets in automotive suspension systems or construction equipment.
[0084] In some embodiments, the connection between the connecting part 200 and the fixing part can also be designed as a foldable or telescopic structure. When not in use, the user can fold up the connecting part 200 or retract it to its shortest length, significantly reducing the space occupied and making it easy to carry and store. This design is very convenient for occasions that require frequent relocation or temporary setup. At the same time, the foldable or telescopic structure can also be combined with a locking mechanism to ensure that the connecting part 200 will not move accidentally in the unfolded state, ensuring safety during use.
[0085] In some embodiments, the connector 200 itself can also be designed as a multi-segment interchangeable form. Specifically, each segment of the connector 200 can be customized according to different bending angles, lengths, or material properties, allowing users to choose the appropriate combination method according to specific needs. For example, in cases requiring a larger range of rotation, a flexible segment with a larger radius of curvature can be selected; while in areas where structural rigidity and support are prioritized, a rigid segment with higher rigidity should be chosen. This highly personalized solution not only meets the needs of professional users but also provides more choices for ordinary consumers.
[0086] Reference Figures 1 to 4 In some embodiments, the connecting portion 200 includes a rigid segment extending along a path S. The rigid segment has two opposing ends, both of which are connected to the first fixing portion 100. This design ensures that the connecting portion 200 maintains a stable shape in a static state, providing a reliable support platform for the second fixing portion 300, allowing it to slide along the extension path S of the connecting portion 200.
[0087] In this embodiment, the rigid segment is the core component of the entire connection 200, typically made of high-strength metal materials such as stainless steel or aluminum alloy to ensure sufficient strength and durability. The cross-section of the rigid segment can be circular, square, or other suitable geometries, depending on the application requirements. To achieve effective connection with the first fixing part 100, the rigid segment has specific interfaces at both ends, which can be in the form of threaded holes, slots, or quick-release couplings, facilitating installation and disassembly. Furthermore, to enhance the strength and stability of the connection, sealing gaskets can be added at the interfaces or adhesives can be used for reinforcement.
[0088] Because the rigid section itself lacks elastic deformation capability, it can maintain its original shape even under significant external forces, without bending or twisting. When the second fixing part 300 slides along the rigid section, the straight trajectory provided by the rigid section ensures a smooth and stable sliding process. Simultaneously, the presence of the rigid section provides a reference point for the entire easily adjustable support system, allowing other components (such as the flexible section) to be arranged around the rigid section as needed, forming more complex functional combinations.
[0089] In some embodiments, considering that users may wish to adjust the angle or position of the easily adjustable support, the rigid section can be designed as a multi-segment adjustable structure. Each segment is connected by hinges or ball-and-socket joints, allowing for a range of angle variations without sacrificing overall rigidity. This retains the advantages of a rigid section while increasing flexibility to meet more diverse usage needs. Such a design offers great convenience for professional users who require frequent adjustments to the posture of the easily adjustable support.
[0090] Reference Figures 3 to 6 In some embodiments, the connecting portion 200 includes a flexible segment, a first axis perpendicular to the extension path S of the connecting portion 200, a first circumferential direction and a second circumferential direction both about the first axis and opposite to each other, and the flexible segment is configured to have a first state of bending along the first circumferential direction and a second state of bending along the second circumferential direction. In the first state, the second fixing portion 300 is configured to be rotatable relative to the flexible segment to a first position, and in the second state, the second fixing portion 300 is configured to be rotatable relative to the flexible segment to a second position. When the second fixing portion 300 is in the first position, the surface wall 320 is adapted to support the electronic device 500 upwards; when the second fixing portion 300 is in the second position, the surface wall 320 is adapted to support the electronic device 500 upwards. The second axis is parallel to the first axis, and when the flexible segment switches between the first state and the second state, the second fixing portion 300 rotates about the second axis relative to the flexible segment to the first position or the second position.
[0091] This embodiment illustrates that the flexible segment itself can be bent dynamically, and the position of the second fixing part 300 can be adjusted by changing the shape of the flexible segment itself. It should be distinguished that the bending setting of the connecting part 200 mentioned above refers to the connection part 200 having a curved arc structure in its static shape. In this embodiment, the bending of the connecting part 200 means that the connecting part 200 can be bent dynamically, that is, change its own structure.
[0092] Regarding the first state and the first position, specifically refer to... Figure 5 The first fixing part 100 is fixed to the tabletop, the flexible section bends upwards about the first axis, and the second fixing part 300 rotates downwards about the second axis so that the surface wall 320 faces the user. Regarding the second state and the second position, specifically refer to... Figure 6 The first fixing part 100 is fixed to the tabletop, the flexible section bends downwards around the first axis, and the second fixing part 300 rotates upwards around the second axis so that the surface wall 320 faces the user. This design makes the easily adjustable bracket of this application highly flexible and applicable to a wider range of usage scenarios.
[0093] In some embodiments, the connection 200 includes not only a flexible segment but also a rigid segment. Along the extension path S of the rigid segment, the rigid segment has opposite ends, each of which connects to the flexible segment. This design combines the advantages of rigidity and flexibility, providing both stable support and increased flexibility.
[0094] In some embodiments, to further optimize the connection performance between the rigid and flexible sections, a transition section can be provided between them. The transition section employs a gradient hardness design, meaning one end has a higher hardness, approaching the rigid section, while the other end has a lower hardness, approaching the flexible section. This effectively reduces stress concentration issues caused by the difference in material properties between the rigid and flexible sections, extending their service life. Furthermore, for certain special applications, such as outdoor environments or damp locations, a waterproof seal can be applied to the connection between the rigid and flexible sections to prevent moisture intrusion that could lead to rust or damage to internal components.
[0095] Reference Figure 8 In some embodiments, the first fixing part 100 of the easily adjustable bracket includes a first fixing member 110 and a second fixing member 120. Both the first fixing member 110 and the second fixing member 120 are adapted to connect to the external component 400, and a first end and a second end are respectively connected to the first fixing member 110 and the second fixing member 120. In some embodiments, the first fixing part 100 includes a main housing, a first fixing member 110 and a second fixing member 120, wherein both the first fixing member 110 and the second fixing member 120 are accommodated within the main housing, the main housing is adapted to connect to the external component 400, and a first end and a second end are respectively connected to the first fixing member 110 and the second fixing member 120.
[0096] The first fastener 110 and the second fastener 120 are used to securely fix the easily adjustable bracket to the external component. They are typically made of high-strength metal with an anti-oxidation treatment to enhance durability. The first fastener 110 and the second fastener 120 can be connected to the external component 400 using fasteners such as bolts, nuts, or special clamps to ensure a stable and reliable connection. Furthermore, for easy installation and removal, the fasteners may be equipped with a quick-release mechanism, allowing the user to easily complete the operation without tools.
[0097] The main housing houses and protects the first fastener 110 and the second fastener 120. The main housing is constructed of a robust and lightweight material, such as plastic or composite material. In addition to its protective function, the main housing integrates multiple functions, such as internal wiring channels for managing connecting cables and preventing clutter. In some embodiments, the main housing is designed with dedicated receiving slots or chambers for connection with the first fastener 110 and the second fastener 120, ensuring a tight fit and coordinated operation of all components.
[0098] Regarding the connection method of the first fixing part 100, specifically, in some embodiments, the first fixing part 100 includes a magnetic structure. The magnetic structure uses strong magnetic force to firmly attach the easily adjustable bracket to the metal external component 400, such as a car frame or refrigerator door panel. This connection method is not only convenient and quick to install and remove, but also has low requirements for surface flatness, making it suitable for applications requiring frequent position adjustments. In some embodiments, the first fixing part 100 includes a suction cup structure. The suction cup structure is suitable for smooth, non-porous surfaces, such as glass windows or mirrors. The suction cup uses atmospheric pressure to adhere tightly to the surface, providing sufficient support to fix the electronic device 500. When it is necessary to move the easily adjustable bracket, it can be easily removed by gently pulling the release valve. In some embodiments, the first fixing part 100 includes a threaded structure. The threaded structure allows the easily adjustable bracket to be directly screwed into the external component 400 with matching internal threads, such as a bicycle handlebar or tripod top. This connection method is very stable, especially suitable for applications that need to withstand heavy weights or be in vibration environments. In some embodiments, the first fixing part 100 includes a snap-fit structure. The snap-fit structure allows for quick locking onto a specific-shaped external component 400, such as a car air vent grille or the edge of a laptop. This connection method is simple to operate, requires no tools, and is ideal for temporary or emergency use. In some embodiments, the first fixing part 100 includes a strap structure. The strap structure is suitable for cylindrical or other external components 400 that are difficult to fix in other ways, such as bicycle handlebars or pipes. The strap is typically made of nylon webbing with quick-release buckles at both ends for easy fastening and unfastening. In some embodiments, the first fixing part 100 includes an adhesive structure. The adhesive structure permanently or semi-permanently or permanently fixes an easily adjustable bracket to an external component using strong adhesive or double-sided tape. This method is particularly suitable for installations where long-term fixation is desired, such as on walls or furniture surfaces.
[0099] Regarding the connection method of the second fixing part 300, specifically, in some embodiments, the electronic device 500 can be a tablet, mobile phone, e-reader, etc., and the second fixing part 300 is connected to the electronic device 500 by means of magnetic attraction, snap-fit, adhesion, clamping, etc. In this case, the first sidewall is the surface wall 320 of the second fixing part 300 that abuts against the back of the tablet, the back of the mobile phone, or the back of the e-reader.
[0100] It is understood that, in some embodiments, to increase the adaptability of the first fastener 110 and the second fastener 120, fasteners of different sizes and shapes can be selected to match various types of external components 400. For example, for a stand for an easily adjustable flat panel display, the fastener can be designed to be flat and equipped with multiple screw holes to accommodate different VESA mounting standards; while for a stand for an easily adjustable laptop, an arc-shaped fastener can be used to better fit the curves of the laptop body.
[0101] It should be noted that if any directional indication (such as up, down, left, right, front, back, etc.) is involved in the embodiments of this utility model, the directional indication is only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indication will also change accordingly. When a directional reference is introduced in a specific embodiment, unless the direction is specifically limited to unidirectional, the direction can be unidirectional or bidirectional (two parallel and opposite directions). Whether it is unidirectional or bidirectional depends on what those skilled in the art can achieve. When the directional reference is bidirectional, it should be considered that two parallel and different embodiments have been introduced simultaneously.
[0102] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or," "and / or," or "and / or" throughout the text implies three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where A and B are simultaneously satisfied. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0103] The above are merely preferred embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the inventive concept of this utility model and the contents of this utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.
Claims
1. A bracket with easily adjustable position, suitable for detachable connection of electronic devices, characterized in that, The easily adjustable support includes: The first fixing part is suitable for connecting external components; The connecting portion is curved and has a first end and a second end disposed adjacent to each other, and both the first end and the second end are connected to the first fixing portion; A second fixing part is adapted to connect an electronic device. The second fixing part is slidably connected to the connecting part and is configured to slide relative to the connecting part along the extension path of the connecting part.
2. The easily adjustable bracket according to claim 1, characterized in that, The second fixing part has a through hole, and the connecting part passes through the through hole so that the second fixing part slides along the extension path of the connecting part.
3. The easily adjustable bracket according to claim 2, characterized in that, The second fixing part includes a surface wall adapted to abut against the electronic device, and the second fixing part is rotatable about the connecting part to adjust the orientation of the surface wall.
4. The easily adjustable bracket according to claim 2, characterized in that, The second fixing part includes a locking structure connected to the connecting part. The locking structure has a locked state and an unlocked state. In the locked state, the locking structure restricts the movement of the second fixing part relative to the connecting part. In the unlocked state, the second fixing part can move relative to the connecting part.
5. The easily adjustable bracket according to claim 4, characterized in that, The locking structure includes the through hole and the pressure block. The pressure block protrudes radially toward the center of the through hole. In the locked state, the pressure block presses against the connecting part. In the unlocked state, the pressure block and the connecting part are spaced apart.
6. The easily adjustable bracket according to claim 1, characterized in that, The connecting portion is detachably connected to the first fixing portion; and / or, The connecting part is detachably connected to the second fixing part.
7. The easily adjustable bracket according to claim 1, characterized in that, The connecting portion includes a rigid segment, and along the extension path of the rigid segment, the rigid segment has opposite ends, both of which are connected to the first fixing portion.
8. The easily adjustable bracket according to claim 1, characterized in that, The connecting portion includes a flexible segment, a first axis perpendicular to the extension path of the connecting portion, a first circumferential direction and a second circumferential direction both around the first axis, and the first circumferential direction and the second circumferential direction are opposite to each other. The flexible segment is configured to have a first state of bending along the first circumferential direction and a second state of bending along the second circumferential direction. In the first state, the second fixing part is configured to be able to rotate relative to the flexible segment to a first position; in the second state, the second fixing part is configured to be able to rotate relative to the flexible segment to a second position. When the second fixing part is in the first position, the surface wall of the electronic device is adapted to support the electronic device facing upward; when the second fixing part is in the second position, the surface wall is adapted to support the electronic device facing upward. The second axis is parallel to the first axis. When the flexible segment switches between the first state and the second state, the second fixed part rotates relative to the flexible segment about the second axis to the first position or the second position.
9. The easily adjustable bracket according to claim 8, characterized in that, The connecting portion further includes a rigid segment, which has opposite ends along its extension path, and the ends of the rigid segment are respectively connected to the flexible segment; and / or, One end of the rigid section is connected to the flexible section, and the other end is connected to the first fixing part.
10. The easily adjustable bracket according to claim 1, characterized in that, The first fixing part includes a first fixing member and a second fixing member, both of which are adapted to connect to the external component. The first end and the second end are respectively connected to the first fixing member and the second fixing member; and / or, The first fixing part includes a main housing, a first fixing member and a second fixing member. The first fixing member and the second fixing member are both accommodated in the main housing. The main housing is adapted to connect the external component. The first end and the second end are respectively connected to the first fixing member and the second fixing member.