Electronic equipment support
By setting a snap-fit structure between the rotating component and the toothed groove in the electronic device bracket, the problem of unstable positioning caused by wear of the rotating structure is solved, the service life is extended and the wear resistance is enhanced, and the user is alerted to the rotation status by the elastic collision sound.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN ZHENWEI XIN TECHNOLOGY CO LTD
- Filing Date
- 2024-12-11
- Publication Date
- 2026-05-19
AI Technical Summary
The existing rotating structure of electronic device brackets suffers from wear and aging, resulting in unstable rotation angle positioning and short service life.
A rotating component is installed on the base. The rotating component has openings and toothed grooves. The elastic component engages with the toothed grooves to achieve 360° rotation angle selection and positioning. The elastic contraction and reset of the elastic component generates a collision sound to remind the user to rotate, and enhances the wear resistance of the rotating structure.
It extends the service life of the bracket and alerts the user to the rotation status through a springy impact sound, improving the stability and wear resistance of the rotating structure.
Smart Images

Figure CN224261275U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bracket technology, and in particular to an electronic device bracket. Background Technology
[0002] Currently, electronic device stands are commonly used as mounting accessories for mobile phones, camera equipment, or other smart devices, and are widely used in daily life. Chinese utility model patent CN222262789U, entitled "A Thin and Light Mobile Phone Stand," describes a design where the slots of a rotating support base and a base correspond, allowing the stand to rotate freely on the base. While this solution enables rotational adjustment of the stand, the use of a second mounting slot on the rotating support base and a first mounting slot on the through slot, along with a spring between the first and second mounting slots to limit the rotation angle, can lead to loosening of the connection between the rotating support base and the through slot due to wear and aging over prolonged use. This can cause the stand's rotation angle to become fixed, resulting in the stand becoming unusable.
[0003] Therefore, there is an urgent need to research and develop an electronic device bracket to solve the problem of low service life of the rotating structure of the bracket in the existing technology. Summary of the Invention
[0004] The purpose of this invention is to provide an electronic device bracket that can improve the wear resistance of the bracket's rotating structure and extend the bracket's service life.
[0005] To achieve the above objectives, this utility model provides an electronic device bracket, the specific implementation of which is as follows:
[0006] An electronic device holder, comprising:
[0007] Base;
[0008] A rotating component is mounted on the base and rotates relative to the base.
[0009] A support member, connected to the rotating member, is used to house electronic equipment;
[0010] An opening is formed on the rotating part, and several toothed grooves are provided on the inner peripheral wall of the opening;
[0011] An elastic element is provided on the base and engages with at least one of the toothed grooves.
[0012] When the rotating member rotates relative to the base, the elastic member elastically contracts and disengages from the current tooth groove, and then elastically resets and enters the adjacent tooth groove.
[0013] This utility model discloses an electronic device bracket. Compared with the prior art, it features a rotating component that rotates relative to the base. The rotating component is connected to a support component for placing the electronic device. The rotating component has an opening with several toothed grooves on its inner circumferential wall. An elastic component on the base engages with any of the toothed grooves. When the rotating component rotates relative to the base, the elastic component elastically contracts, disengages from the currently engaged toothed groove, and then elastically resets to engage with an adjacent toothed groove. This allows for 360° rotation angle selection and positioning between the rotating component and the base. The engagement structure between the elastic component and the toothed groove improves the wear resistance of the bracket's rotating structure, thereby extending the bracket's service life. Furthermore, the continuous contraction and reset of the elastic component, colliding with the toothed grooves, produces a "click-click-click" sound, which alerts the user to the relative rotation between the rotating component and the base.
[0014] In some embodiments, the elastic element is provided with an elastic protrusion that engages with the toothed groove.
[0015] By setting elastic protrusions on the elastic element and using the interlocking action of the elastic protrusions and the toothed groove, the stability of the interlocking action between the elastic element and the toothed groove is ensured.
[0016] In some embodiments, a mounting position is provided in the area of the base corresponding to the opening, and the elastic member is provided in the mounting position. The two sides of the elastic member abut against the side wall of the mounting position, and the end of the elastic member away from the side wall of the mounting position extends toward the inner wall of the opening to form the elastic protrusion.
[0017] By setting an installation position on the base, the two sides of the elastic element and the side wall of the installation position abut against each other, providing support for the elastic contraction and elastic reset of the elastic protrusion, and ensuring the normal use of the elastic element.
[0018] In some embodiments, two limiting blocks are provided between the mounting position and the inner wall of the opening, and a gap is formed between the two limiting blocks. The elastic member has limiting surfaces on both outer walls near the elastic protrusion. The limiting surfaces are matched with the limiting blocks. The elastic protrusion of the elastic member passes through the gap and engages with the toothed groove.
[0019] By setting a limiting block between the mounting position and the inner wall of the opening, the gap between the two limiting blocks allows the elastic protrusion to pass through and engage with the toothed groove. This allows the limiting surface near the elastic protrusion to engage with the limiting block. When the rotating part and the base rotate relative to each other, the groove wall of the toothed groove squeezes the elastic protrusion. During the elastic contraction of the elastic protrusion, the limiting surface and the limiting block abut against each other, restricting the position of the elastic part and preventing the elastic part from rotating with the rotating part, which would cause the rotation angle to be unpositionable.
[0020] In some embodiments, a receiving groove is provided on the base, and the rotating member is disposed in the receiving groove. The rotating member rotates relative to the base in the circumferential direction along the axis of the base.
[0021] By setting a receiving groove on the base, the rotating part is placed in the receiving groove, which improves the ease of connection between the rotating part and the base.
[0022] In some embodiments, a pressure plate is provided on the rotating member, the pressure plate shielding the opening and being connected to the base.
[0023] By setting a pressure plate on the rotating component, the opening is covered by the pressure plate and connected to the base, thus connecting the rotating component and the base and improving the connection stability of the rotating component on the base.
[0024] In some embodiments, a connecting screw is provided on the pressure plate and a connecting screw hole is provided on the base, the connecting screw passing through the pressure plate and being screwed into the connecting screw hole.
[0025] The connection between the pressure plate and the base is achieved by using connecting screws and connecting screw holes, which improves the ease of disassembly and assembly of the pressure plate and the stability of the connection.
[0026] In some embodiments, a plate is provided on the rotating member, the plate covering the pressure plate.
[0027] By setting a plate on the rotating part to cover the pressure plate, and covering the pressure plate and the connecting screws on the pressure plate under the plate, the aesthetics of the bracket are improved.
[0028] In some embodiments, a storage groove is provided at the bottom of the support member, and a connecting rod is provided between the base and the support member. One end of the connecting rod is located in the storage groove and is rotatably connected to the storage groove, and the other end of the connecting rod is rotatably connected to the rotating member. When the support member is close to the base, the connecting rod is stored in the storage groove.
[0029] By setting a storage slot at the bottom of the support, the connecting rod is stored in the storage slot when the support is close to the base. The connecting rod is completely stored in the storage slot until the support contacts the base, reducing the space occupied by the electronic device stand when it is not in use and making it easy to carry.
[0030] In some embodiments, the connecting rod includes a fixed rod and a telescopic rod. One end of the fixed rod is rotatably connected to the rotating member, and the other end is connected to the telescopic rod. The other end of the telescopic rod is rotatably connected to the storage slot. The telescopic rod is sleeved on the fixed rod or inserted into the fixed rod and moves relative to the fixed rod.
[0031] By setting the connecting rod as a fixed rod and a telescopic rod that can move relatively, the height between the support and the base can be adjusted to suit the usage habits of different users and different usage scenarios.
[0032] Based on the above technical solution, this utility model has the following beneficial effects compared with the prior art:
[0033] By setting a rotating component that rotates relative to the base, and connecting the rotating component to a support for placing electronic devices, the rotating component has an opening with several toothed grooves on its inner circumferential wall. An elastic component is set on the base to engage with any of these toothed grooves. When the rotating component rotates relative to the base, the elastic component elastically contracts, disengages from the currently engaged toothed groove, and then elastically resets to engage with an adjacent toothed groove. This allows for 360° rotation angle selection and positioning between the rotating component and the base. The engagement structure of the elastic component and the toothed groove improves the wear resistance of the bracket's rotating structure, thereby extending the bracket's service life. Furthermore, the continuous contraction and reset of the elastic component, colliding with the toothed grooves, produces a "click-click-click" sound, alerting the user to the relative rotation between the rotating component and the base. Attached Figure Description
[0034] Figure 1 This is a schematic diagram of the structure of this utility model;
[0035] Figure 2 This is an exploded view of the present invention;
[0036] Figure 3 This is an exploded view from another perspective of the present invention;
[0037] Figure 4 For the present utility model Figure 3 A magnified view of a portion of the image;
[0038] Figure 5 This is an exploded view of the elastic element and the base of this utility model.
[0039] Explanation of reference numerals in the attached figures:
[0040] 100. Base; 110. Mounting position; 120. Limiting block; 130. Gap; 140. Mounting platform; 150. Connecting screw hole; 160. Receiving groove; 200. Rotating component; 210. Opening; 220. Gear groove; 230. First groove; 240. Plate; 250. Pressure plate; 260. Connecting screw; 270. Connecting block; 280. Second groove; 300. Connecting rod; 310. Fixing rod; 311. Locking groove; 320. Telescopic rod; 321. Elastic hook; 330. First rotating shaft; 340. Second rotating shaft; 400. Support component; 410. Storage groove; 500. Elastic component; 510. Elastic protrusion; 520. Limiting surface. Detailed Implementation
[0041] To facilitate understanding of this utility model, the specific embodiments of this utility model will be described in more detail below with reference to the accompanying drawings.
[0042] Unless otherwise specified or defined, the terms "first," "second," etc., used in this document are for distinguishing names only and do not represent a specific number or order.
[0043] Unless otherwise stated or defined, the term “and / or” as used herein includes any and all combinations of one or more of the related listed items.
[0044] It should be noted that in this article, "fixed to" or "connected to" can mean directly fixed to or connected to a component, or indirectly fixed to or connected to a component.
[0045] like Figure 1-5 As shown, the electronic device bracket provided in this embodiment includes a base 100, and a rotating member 200 that rotates relative to the base 100 is provided on the base 100.
[0046] Specifically, a receiving groove 160 is provided on the base 100, and the rotating member 200 is disposed in the receiving groove 160 and rotates relative to the base 100 in the circumferential direction along the axis of the base 100.
[0047] An elastic element 500 is provided on the base 100, and an opening 210 is provided on the rotating element 200. Several toothed grooves 220 are provided on the inner peripheral wall of the opening 210. The rotation angle of the rotating element 200 and the base 100 is positioned by the elastic element 500 engaging with at least one of the toothed grooves 220. When the required rotation angle is needed, the rotating element 200 and the base 100 are driven to rotate relative to each other, so that the groove wall of the toothed groove 220 acts on the elastic element 500. The elastic element 500 elastically contracts under force and disengages from the current toothed groove 220, and randomly elastically resets and engages with the adjacent toothed groove 220. Thus, during the relative rotation of the rotating element 200 and the base 100, the collision caused by the continuous engagement of the elastic element 500 and the toothed groove 220 produces a "click-click-click" rotational sound, reminding the user that relative rotation has occurred between the rotating element 200 and the base 100.
[0048] The base 100 is provided with a mounting position 110. Both sides of the elastic member 500 abut against the side wall of the mounting position 110, and the other end extends toward the inner wall of the opening 210 to form an elastic protrusion 510. The elastic protrusion 510 and the toothed groove 220 are engaged and cooperated.
[0049] A mounting platform 140 is provided on the base 100. The mounting platform 140 is recessed at any edge to form a mounting position 110 with a side wall. Two limiting blocks 120 are provided between the mounting position 110 and the inner wall of the opening 210. A gap 130 is formed between the two limiting blocks 120. The elastic protrusion 510 passes through the gap 130 and engages with the toothed groove 220.
[0050] Furthermore, limiting surfaces 520 are provided on both sides of the elastic member 500 near the elastic protrusion 510. When the rotating member 200 rotates relative to the base 100, the elastic protrusion 510 is pushed and elastically contracted under the rotation of the meshing groove 220, which drives the elastic member 500 to move. The limiting block 120 and the limiting surface 520 abut against each other to limit the displacement of the elastic member 500, thus preventing the elastic member 500 from rotating synchronously with the rotating member 200.
[0051] A pressure plate 250 is provided on the rotating component 200. The pressure plate 250 is located at the position of the opening 210 and is connected to the base 100 to connect and fix the rotating component 200 and the base 100.
[0052] Specifically, the mounting platform 140 is provided with a plurality of connecting screw holes 150, and the pressure plate 250 is provided with a plurality of connecting screws 260. The connecting screws 260 are screwed into the connecting screw holes 150 to realize the connection and fixation of the pressure plate 250 and the base 100.
[0053] A first groove 230 is provided on the top of the rotating component 200, and the opening 210 is formed in the first groove 230. The pressure plate 250 is provided in the first groove 230, so that after the pressure plate 250 is connected and fixed to the base 100, the height of the rotating component 200 in the receiving groove 160 is limited, so as to prevent the rotating component 200 from separating from the base 100.
[0054] The rotating component 200 is provided with a plate 240 that covers the pressure plate 250, thereby improving the aesthetics of the rotating component 200.
[0055] Specifically, a second groove 280 is provided on the top of the rotating member 200, the first groove 230 is opened in the second groove 280, and a plate 240 is provided in the second groove 280.
[0056] A connecting rod 300 is provided on the rotating component 200, and the connecting rod 300 swings relative to the rotating component 200.
[0057] Specifically, two connecting blocks 270 are provided on the rotating component 200, and the end of the connecting rod 300 is located between the two connecting blocks 270 and rotates relative to the connecting blocks 270.
[0058] The other end of the connecting rod 300 is connected to a support member 400, which is used to support electronic equipment. The support member 400 swings relative to the connecting rod 300.
[0059] In this embodiment, the support member 400 is a magnetic support member 400 with an internal magnetic component. Of course, other support methods of electronic device brackets in the prior art can also be used, as long as they can support the electronic device.
[0060] The connecting rod 300 includes a fixed rod 310 and a telescopic rod 320. The fixed rod 310 has a first rotating shaft 330 at its end. The first rotating shaft 330 is mounted between two connecting blocks 270, and the fixed rod 310 rotates in the circumferential direction along the first rotating shaft 330 to realize the relative swinging of the connecting rod 300 and the base 100. The telescopic rod 320 is sleeved on the fixed rod 310 or inserted into the fixed rod 310, and the telescopic rod 320 and the fixed rod 310 move relative to each other to adjust the length of the connecting rod 300 and realize the height adjustment of the support 400.
[0061] A storage groove 410 is provided at the bottom of the support member 400, and a second rotating shaft 340 is provided at the other end of the telescopic rod 320. The second rotating shaft 340 is mounted in the storage groove 410 to realize the relative swing of the connecting rod 300 and the support member 400.
[0062] In this embodiment, the telescopic sleeve is preferably inserted into the fixed rod 310. It is understood that the relative movement of the fixed rod 310 and the telescopic rod 320 requires a movable positioning structure. In this embodiment, a positioning groove 311 is opened on the fixed rod 310, and at least two elastic hooks 321 are provided on the telescopic rod 320. The stretching positioning and retraction positioning of the telescopic rod 320 and the fixed rod 310 are realized by using the snap-fit position of the elastic hooks 321 and the positioning groove 311.
[0063] Since the connecting rod 300 is rotatably connected to both the support member 400 and the base 100, when the support member 400 approaches the base 100, the connecting rod 300 swings into the storage slot 410 until the support member 400 contacts the base 100, at which point the connecting rod 300 is completely stored in the storage slot 410, reducing the space occupied by the electronic device bracket when it is not in use and making it easy to carry.
[0064] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.
Claims
1. An electronic device support, characterized by, include: Base (100); A rotating component (200) is disposed on the base (100) and rotates relative to the base (100); A support (400) is connected to the rotating member (200) to hold electronic equipment; An opening (210) is provided on the rotating part (200), and a plurality of toothed grooves (220) are provided on the inner peripheral wall of the opening (210); An elastic element (500) is disposed on the base (100) and engages with at least one of the toothed grooves (220); When the rotating member (200) rotates relative to the base (100), the elastic member (500) elastically contracts and disengages from the current tooth groove (220), and then elastically resets and enters the adjacent tooth groove (220).
2. The electronic device holder of claim 1, wherein, An elastic protrusion (510) is provided on the elastic member (500), and the elastic protrusion (510) engages with the toothed groove (220).
3. The electronic device holder of claim 2, wherein, A mounting position (110) is provided in the area of the base (100) corresponding to the opening (210). The elastic member (500) is provided on the mounting position (110). The two sides of the elastic member (500) abut against the side wall of the mounting position (110). The end of the elastic member (500) away from the side wall of the mounting position (110) extends toward the inner wall of the opening (210) to form the elastic protrusion (510).
4. The electronic device holder of claim 3, wherein, Two limiting blocks (120) are provided between the inner wall of the mounting position (110) and the opening (210), and a gap (130) is formed between the two limiting blocks (120). The elastic member (500) is provided with limiting surfaces (520) on both outer walls near the elastic protrusion (510). The limiting surfaces (520) are matched with the limiting blocks (120). The elastic protrusion (510) of the elastic member (500) passes through the gap (130) and engages with the toothed groove (220).
5. The electronic device holder of any one of claims 1-4, wherein, A receiving groove (160) is provided on the base (100), and the rotating member (200) is disposed in the receiving groove (160). The rotating member (200) and the base (100) rotate relative to each other in the circumferential direction of the base (100).
6. The electronic device holder of claim 5, wherein, A pressure plate (250) is provided on the rotating part (200), the pressure plate (250) covers the opening (210) and is connected to the base (100).
7. The electronic device holder of claim 6, wherein, A connecting screw (260) is provided on the pressure plate (250), and a connecting screw hole (150) is provided on the base (100). The connecting screw (260) passes through the pressure plate (250) and is screwed into the connecting screw hole (150).
8. The electronic device holder of claim 6, wherein, A plate (240) is provided on the rotating member (200), and the plate (240) covers the pressure plate (250).
9. The electronic device holder of any one of claims 1-4, wherein, A connecting rod (300) is provided between the base (100) and the support (400). A storage groove (410) is provided at the bottom of the support (400). One end of the connecting rod (300) is located in the storage groove (410) and is rotatably connected to the storage groove (410). The other end of the connecting rod (300) is rotatably connected to the rotating member (200). When the support (400) is close to the base (100), the connecting rod (300) is stored in the storage groove (410).
10. The electronic device holder of claim 9, wherein, The connecting rod (300) includes a fixed rod (310) and a telescopic rod (320). One end of the fixed rod (310) is rotatably connected to the rotating member (200), and the other end is connected to the telescopic rod (320). The other end of the telescopic rod (320) is rotatably connected to the storage slot (410). The telescopic rod (320) is sleeved on the fixed rod (310) or inserted into the fixed rod (310) and moves relative to the fixed rod (310).