Pendant structure for mobile phone production
By employing a ring array of support frames and an adjustment device in mobile phone manufacturing accessories, the problems of offset and tipping caused by uneven weight distribution are solved, thereby improving stability and flexibility and adapting to the support needs of different equipment shapes and sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN TOPVIEW PLASTIC MFG
- Filing Date
- 2025-05-09
- Publication Date
- 2026-05-15
AI Technical Summary
Traditional mobile phone pendants are prone to shifting or tipping due to uneven weight distribution, and they cannot adapt to devices of different sizes and shapes, causing them to shake or tilt during use, which limits their application range and reduces work efficiency.
The support frame is arranged in a circular array with the balance bar as the center point. The distance and angle between two adjacent support frames are equal. It is equipped with adjustment devices and limiting structures to ensure uniform weight distribution and provide multi-angle adjustment and stable support.
It improves the stability and flexibility of the hanging structure, effectively prevents displacement or tipping, adapts to different equipment shapes and sizes, simplifies the operation process, and reduces space requirements.
Smart Images

Figure CN224239533U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mobile phone pendant technology, and in particular to a mobile phone manufacturing pendant structure. Background Technology
[0002] A mobile phone manufacturing accessory refers to an auxiliary tool or device used in a mobile phone production line or manufacturing environment to support mobile phone assembly, testing, support, or other production processes. In this application, the accessory serves to support the mobile phone.
[0003] Traditional phone pendants typically use a flat surface as a support base, which can lead to uneven weight distribution. When supporting multiple phones weighing two to three kilograms, the load is concentrated on one end, making it prone to shifting or tipping. Furthermore, traditional support methods, such as placing or clamping the device on a base, are not well-suited for devices of different sizes and shapes, limiting their application and failing to effectively distribute weight. This results in the device easily wobbling or tilting during use, requiring further structural modifications, increasing procedures and reducing work efficiency. Therefore, the inventors have proposed a phone pendant structure to solve the aforementioned technical problems. Utility Model Content
[0004] To overcome the shortcomings mentioned above, this utility model aims to provide a technical solution that can solve the aforementioned problems.
[0005] A mobile phone manufacturing pendant structure includes a mounting base, a support frame, and a balance bar. The support frame is arranged in a circular array with the balance bar as the center point. The distance and angle between two adjacent support frames are equal. The balance bar has a stepped structure. The mounting base and the support frame are detachable. The mounting base is connected to one end of the support frame through a limiting frame. The support frame has a limiting groove inside, and the surface of the limiting groove is connected to an adjustment device for adjusting the position and angle of the mobile phone.
[0006] This structure employs a circular array of support frames centered on a balance bar, with equal distances and angles between adjacent support frames. This ensures even weight distribution and improves the overall stability and balance of the structure. This design effectively prevents shifting or tipping due to uneven force on one side. Even when placing a mobile phone weighing two to three kilograms, it remains stable. Furthermore, the equal distances and angles between the support frames allow each frame to be independently adjusted for the placement and angle of the phone, or two adjacent support frames can be used simultaneously for support, providing greater flexibility and adaptability. An adjustment device further enhances the flatness of the support frames, allowing the phone to be placed at an angle, thus reducing the probability of it falling.
[0007] Furthermore, the adjusting device includes an adjusting plate, one end of which is a movable rod, and the surface of the movable rod is connected to a rotating shaft for assisting the adjusting plate to rotate along the surface of the balance bar;
[0008] The adjustment plate can rotate freely along the surface of the balance bar via a rotating shaft, providing multiple angle adjustment options. This design allows for flexible adjustment of the phone's placement and angle as needed, adapting to different usage scenarios. Fine-tuning with the assistance of the rotating shaft ensures the phone is precisely placed in the required position and angle, improving adjustment accuracy. The combination of the movable rod and rotating shaft simplifies the user's operation steps, making the adjustment process more intuitive and convenient. Furthermore, the design of the movable rod and rotating shaft allows for an efficient layout of the adjustment device within a limited space, reducing the need for additional space and making the entire pendant structure more compact.
[0009] Furthermore, the surface of the adjusting plate is provided with an installation groove, the inside of which is a locking block, and the surface of the limiting groove is provided with a locking groove that matches and connects with the locking block.
[0010] The design of the locking block and slot ensures that the adjusting plate can be accurately fixed in the predetermined position, avoiding poor contact or assembly errors caused by positional misalignment. When the locking block is inserted into the slot, the mechanical locking action between the two effectively prevents the adjusting plate from loosening or shifting during use, improving the stability of the overall structure. This structure allows users to easily lock and unlock the adjusting plate through simple pressing and pulling operations, without complicated tools or steps, simplifying the user's operation process. When the locking block and slot are paired and installed, the slot limits the position of the locking block, thereby limiting the position of the adjusting plate and preventing the adjusting plate from slipping into the limiting slot due to insufficient locking force during use.
[0011] Furthermore, one end of the adjustment plate is hook-shaped, and the adjustment plate slides along the surface of the limiting groove when it moves. The hook-shaped structure can effectively limit the range of movement of one end of the mobile phone and prevent it from accidentally coming out of the adjustment plate. The way the adjustment plate slides along the surface of the limiting groove when it moves increases the friction. The pressure applied to the surface of the adjustment plate by the inner wall of the limiting groove prevents the adjustment plate from slipping into the limiting groove due to insufficient locking force during use, which would cause the mobile phone to be placed at an excessively tilted angle.
[0012] Furthermore, the support frame is arranged in a circular array with the balance bar as the center point, and the mounting base is also arranged in a circular array with the balance bar as the center point. The mounting base is located at one end of the support frame and is connected to one end of the support frame.
[0013] The support frames and mounting bases are arranged in a circular array around the balance bar, ensuring that the weight of the entire structure is evenly distributed across all support points. This avoids tipping or instability caused by uneven stress at a single point. In this way, each support frame and its corresponding mounting base can share the externally applied force, enhancing the overall stability and load-bearing capacity of the structure. This structure improves upon the traditional structure that uses a flat surface as the support base by employing point support and arranging the supports in a circular array around the balance bar. This provides users with greater flexibility by allowing them to freely choose different combinations of support frames and mounting bases to adjust the position and angle of the equipment as needed.
[0014] Furthermore, the mounting base has a reinforcing rib in the middle, and a limiting frame is installed on the surface of the reinforcing rib. The limiting frame is used to connect with the support frame. The reinforcing rib increases the rigidity and strength of the mounting base, reduces the risk of deformation or damage caused by external stress, and can effectively disperse the stress applied to the mounting base to avoid excessive local stress. The design of the limiting frame can effectively prevent the support frame from loosening or falling off during use, thus enhancing the stability of the overall structure.
[0015] Furthermore, one end of the limiting frame is open, and one end of the support frame is a tapered trapezoidal structure. The tapered trapezoidal structure allows the support frame to be more easily inserted into the open end of the limiting frame, improving installation speed and efficiency, and providing a natural guiding effect. This ensures smooth insertion into the limiting frame even with slight angular deviations during installation, reducing operational difficulty. Simultaneously, the tapered trapezoidal structure increases the locking force as pressure is applied downwards, preventing obstruction of the support frame installation and mitigating the risk of it falling off. The tapered trapezoidal structure also creates a tight fit after insertion, increasing friction and enhancing the connection strength and stability between the support frame and the limiting frame, effectively preventing loosening or detachment of the support frame during use.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] 1. The support frame is arranged in a circular array with the balance bar as the center point, and the distance and angle between two adjacent support frames are equal, which ensures the uniform distribution of weight and improves the stability and balance of the overall structure.
[0018] 2. Improved from the traditional structure that uses a flat surface as the support base, this structure adopts a point support method and is arranged in a ring around the balance bar, which provides users with the ability to freely choose different combinations of support frames and mounting bases to adjust the position and angle of the equipment as needed, providing greater flexibility;
[0019] 3. It can effectively prevent deviation or tipping caused by uneven force on one side. During use, it can keep the mobile phone weighing two to three pounds stable. The two adjacent support frames assist in the placement and support of the mobile phone, providing greater flexibility and adaptability. The adjustment device helps to adjust the flatness of the support frame, so that the mobile phone can be placed at an angle to avoid the probability of falling.
[0020] 4. By simplifying the traditional clamping or base placement method, this structure can hold 3-4 mobile phones at a time, increasing the number of phones that can be placed. At the same time, the improved structure uses a flat surface as the supporting base, reducing storage space. Attached Figure Description
[0021] Figure 1 This is a front view of a mobile phone manufacturing accessory structure;
[0022] Figure 2 This is another front view of a mobile phone manufacturing accessory structure;
[0023] Figure 3 This is a left view of a mobile phone manufacturing accessory structure;
[0024] Figure 4 This is a 3D diagram of a mobile phone manufacturing accessory structure.
[0025] Figure 5 This is another 3D view of a mobile phone manufacturing pendant structure;
[0026] Figure 6 This is another 3D diagram of a mobile phone manufacturing accessory structure;
[0027] Figure 7 This is a partial 3D view of a support frame in a mobile phone manufacturing accessory structure;
[0028] Figure 8 This is another partial 3D view of the support frame in a mobile phone manufacturing accessory structure;
[0029] In the diagram: Mounting base-1, Support frame-2, Balance bar-3, Limiting frame-4, Limiting groove-5, Adjusting plate-6, Reinforcing rib-7, Movable rod-8, Rotating shaft-9, Mounting groove-10, Locking block-11, Locking slot-12. Detailed Implementation
[0030] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0031] For this embodiment, please refer to Figures 1-8The present invention relates to a mobile phone manufacturing pendant structure, comprising a mounting base 1, a support frame 2, and a balance bar 3. The support frames 2 are arranged in a circular array with the balance bar 3 as the center point. The distance and angle between two adjacent support frames 2 are equal. The balance bar 3 has a stepped structure. The mounting base 1 and the support frame 2 are detachable. The mounting base 1 is connected to one end of the support frame 2 through a limiting frame 4. The support frame 2 has a limiting groove 5 inside. The surface of the limiting groove 5 is connected to an adjustment device for adjusting the position and angle of the mobile phone.
[0032] This structure employs a circular array of support frames 2 centered on a balance bar 3, with equal distances and angles between adjacent support frames 2. This ensures uniform weight distribution and improves the overall stability and balance of the structure. This design effectively prevents shifting or tipping caused by uneven force on one side. During use, even a mobile phone weighing two to three kilograms can remain stable. Furthermore, the equal distances and angles between the support frames 2 allow each support frame 2 to independently adjust the position and angle of the mobile phone on it, or two adjacent support frames 2 can be used simultaneously to assist in the placement and support of the mobile phone, providing greater flexibility and adaptability. The adjustment device further assists in adjusting the flatness of the support frames 2, facilitating the tilting of the mobile phone during placement and reducing the probability of it falling.
[0033] The adjustment device includes an adjustment plate 6, one end of which is a movable rod 8, and the surface of the movable rod 8 is connected to a rotating shaft 9 for assisting the adjustment plate 6 to rotate along the surface of the balance rod 3;
[0034] The adjustment plate 6 can be freely rotated along the surface of the balance bar 3 by rotating shaft 9, providing multiple angle adjustment options. This design allows for flexible adjustment of the phone's placement position and angle as needed, adapting to different usage scenarios. Fine-tuning with the assistance of rotating shaft 9 ensures that the phone can be accurately placed in the required position and angle, improving adjustment accuracy. The combination of movable rod 8 and rotating shaft 9 simplifies the user's operation steps, making the adjustment process more intuitive and convenient. In addition, the design of movable rod 8 and rotating shaft 9 allows the adjustment device to achieve an efficient layout in a limited space, reducing the need for additional space and making the entire pendant structure more compact.
[0035] The surface of the adjustment plate 6 is provided with an installation groove 10, and a locking block 11 is installed inside the installation groove 10. The surface of the limiting groove 5 is provided with a locking groove 12 that is matched and connected to the locking block 11.
[0036] The design of the locking block 11 and the slot 12 ensures that the adjusting plate 6 can be accurately fixed in the predetermined position, avoiding poor contact or assembly errors caused by positional deviation. When the locking block 11 is inserted into the slot 12, the mechanical locking action between the two can effectively prevent the adjusting plate 6 from loosening or shifting during use, thus improving the stability of the overall structure. This structure allows users to easily complete the locking and unlocking process of the adjusting plate 6 through simple pressing and pulling operations, without the need for complicated tools or steps, simplifying the user's operation process. When the locking block 11 and the slot 12 are paired and installed, the slot 12 limits the position of the locking block 11, thereby limiting the position of the adjusting plate 6 and preventing the adjusting plate 6 from slipping into the limiting groove 5 due to insufficient locking force during use.
[0037] One end of the adjustment plate 6 is hook-shaped. When the adjustment plate 6 moves, it slides along the surface of the limiting groove 5. The hook-shaped structure can effectively limit the range of movement of one end of the mobile phone and prevent it from accidentally coming out of the adjustment plate 6. The way the adjustment plate 6 slides along the surface of the limiting groove 5 when it moves increases the friction. The pressure applied to the surface of the adjustment plate 6 by the inner wall of the limiting groove 5 prevents the adjustment plate 6 from slipping into the limiting groove 5 due to insufficient locking force during use, which would cause the mobile phone to be placed at an excessively tilted angle.
[0038] The support frame 2 is arranged in a circular array with the balance bar 3 as the center point, and the mounting base 1 is also arranged in a circular array with the balance bar 3 as the center point. The mounting base 1 is located at one end of the support frame 2 and is connected to one end of the support frame 2.
[0039] Both the support frame 2 and the mounting base 1 are arranged in a circular array around the balance bar 3, ensuring that the weight of the entire structure is evenly distributed on each support point. This avoids the problem of tipping or instability caused by uneven force at a single point. In this way, each support frame 2 and the corresponding mounting base 1 can share the externally applied force, enhancing the stability and load-bearing capacity of the overall structure. This structure improves upon the traditional structure that uses a flat surface as the support base. It adopts a point support method and is arranged in a circular array around the balance bar 3, providing users with the option to freely select different combinations of support frames 2 and mounting bases 1 to adjust the position and angle of the equipment as needed, thus providing greater flexibility.
[0040] The mounting base 1 is provided with a reinforcing rib 7 in the middle, and the limiting frame 4 is installed on the surface of the reinforcing rib 7. The limiting frame 4 is used to connect with the support frame 2. The reinforcing rib 7 increases the rigidity and strength of the mounting base 1, reduces the risk of deformation or damage caused by external stress, and can effectively disperse the stress applied to the mounting base 1 to avoid excessive local stress. The design of the limiting frame 4 can effectively prevent the support frame 2 from loosening or falling off during use, and enhance the stability of the overall structure.
[0041] One end of the limiting frame 4 is open, and one end of the support frame 2 is a conical trapezoidal structure. The conical trapezoidal structure allows the support frame 2 to be more easily inserted into the open end of the limiting frame 4, improving installation speed and efficiency. It also provides a natural guiding effect, ensuring smooth insertion into the limiting frame 4 even with slight angular deviations during installation, reducing operational difficulty. Simultaneously, the conical trapezoidal structure increases the locking force as it is pressed down, preventing obstruction of the support frame 2's installation and mitigating the risk of it falling off. Furthermore, the conical trapezoidal structure creates a tight fit after insertion, increasing friction and enhancing the connection strength and stability between the support frame 2 and the limiting frame 4, effectively preventing the support frame 2 from loosening or falling off during use.
[0042] The key design features of this invention are: the support frame 2 is arranged in a circular array with the balance bar 3 as the center point, and the distance and angle between two adjacent support frames 2 are equal, which ensures the uniform distribution of weight and improves the stability and balance of the overall structure.
[0043] This structure improves upon the traditional structure that uses a flat surface as the supporting base. Instead, it adopts a point support method and is arranged in a ring around the balance bar 3. This provides users with the option to freely select different combinations of support frames 2 and mounting bases 1 to adjust the position and angle of the equipment, offering greater flexibility.
[0044] It can effectively prevent displacement or tipping caused by uneven force on one side. During use, it can maintain stability even when a mobile phone weighing two to three kilograms is placed on it. Because the support frames 2 have the same distance and angle, each support frame 2 can independently adjust the position and angle of the mobile phone on it, or two adjacent support frames 2 can be used to assist in the placement and support of the mobile phone at the same time, providing greater flexibility and adaptability. The adjustment device helps to adjust the flatness of the support frame 2, so that the mobile phone can be placed at an angle, avoiding the probability of falling.
[0045] The operation process of this utility model is as follows: by applying a pushing force to the adjusting plate 6, the adjusting plate 6 drives the locking block 11 to move together on the inner surface of the limiting groove 5. When it moves to the designated position, the locking groove 12 connects with the locking block 11, thereby limiting the position of the adjusting plate 6 by the locking block 11, preventing the adjusting plate 6 from slipping into the limiting groove 5 due to insufficient locking force during use. This structure adjusts the tilt angle of the mobile phone placed in the support frame 2 to prevent the mobile phone from being close to vertical and causing instability in the placement. The auxiliary hook structure can effectively limit the movement range of one end of the mobile phone and prevent it from accidentally falling out of the adjusting plate 6.
[0046] In addition, the traditional structure that uses a flat surface as the support base is improved by adopting a point support method and arranging the support around the balance bar 3 in a ring. When installing or removing the support, one end of the support frame 2 can be pushed out of the limiting frame 4.
[0047] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.
Claims
1. A mobile phone manufacturing pendant structure, comprising a mounting base, a support frame, and a balance bar, characterized in that: The support frame is arranged in a circular array with the balance bar as the center point. The distance and angle between two adjacent support frames are equal. The balance bar has a stepped structure. The mounting base and the support frame are detachable. The mounting base is connected to one end of the support frame through a limiting frame. The support frame has a limiting groove inside. The surface of the limiting groove is connected to an adjustment device for adjusting the position and angle of the mobile phone.
2. The mobile phone manufacturing pendant structure according to claim 1, characterized in that: The adjusting device includes an adjusting plate, one end of which is a movable rod. A rotating shaft for assisting the adjusting plate to rotate along the surface of the balance bar is connected to the surface of the movable rod.
3. The mobile phone manufacturing pendant structure according to claim 2, characterized in that: The surface of the adjustment plate is provided with an installation groove, and a locking block is installed inside the installation groove. The surface of the limiting groove is provided with a locking groove that matches and connects with the locking block.
4. The mobile phone manufacturing pendant structure according to claim 3, characterized in that: One end of the adjusting plate is hook-shaped, and the adjusting plate slides along the surface of the limiting groove when it moves.
5. A mobile phone manufacturing pendant structure according to any one of claims 1-3, characterized in that: The support frame is arranged in a circular array with the balance bar as the center point, and the mounting base is also arranged in a circular array with the balance bar as the center point. The mounting base is located at one end of the support frame and is connected to one end of the support frame.
6. A mobile phone manufacturing pendant structure according to any one of claims 1-3, characterized in that: The mounting base has a reinforcing rib in the middle, and the limiting frame is installed on the surface of the reinforcing rib. The limiting frame is used to connect with the support frame.
7. A mobile phone manufacturing pendant structure according to claim 6, characterized in that: One end of the limiting frame is open, and one end of the support frame is a conical trapezoidal structure.