Mobile phone support
By designing a phone holder with sliding and releasing components, the problem of traditional holders requiring strong force or complex operation to release is solved, improving ease of use and safety, and ensuring that the holder and desktop are not damaged.
Patent Information
- Application Number
- CN202520015317.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Traditional magnetic phone holders require significant force or complex operation to release, which may damage the holder or desktop, making them unusable.
A mobile phone holder has been designed, comprising a fixing component, an adsorption mechanism, a sliding component, a suction cup, and a release component. The sliding component moves the suction cup to adhere to or move away from the desktop, and the release component allows the holder to be released with just a light press, avoiding damage to the desktop and the holder.
It improves the ease of use and safety of the phone holder, makes it easy to operate, avoids damage to the holder or desktop, and meets users' needs for convenient and comfortable use.
Smart Images

Figure CN223729773U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of support, in particular to a mobile phone support. BACKGROUND
[0002] With the popularity of smart phones and the increasing demand of users for convenient and comfortable use of mobile phones, the market for mobile phone supports has rapidly developed in recent years.
[0003] Traditional adsorptive mobile phone supports may require a large force or complex operation to release, and may even damage the support or the table.
[0004] Therefore, there is a need for a mobile phone support that improves ease of use. SUMMARY
[0005] Therefore, it is necessary to provide a mobile phone support that improves ease of use to solve the above problems.
[0006] Embodiments of the present application provide a mobile phone support, comprising:
[0007] A fixing member is attached to a table;
[0008] An adsorption mechanism is slidably connected to the fixing member and is attached to or away from the table, and the adsorption mechanism comprises:
[0009] A sliding assembly is in abutment with the fixing member and is slidably connected to the fixing member;
[0010] A suction cup is bolted to the sliding assembly and is used to adsorb or move away from the table;
[0011] A release assembly is clamped to the suction cup and is located between the sliding assembly and the suction cup;
[0012] Wherein, pressing the sliding assembly, the sliding assembly slides and drives the suction cup to attach to the table, realizing adsorption and fixing of the mobile phone support, when canceling the fixed support, the user presses the release assembly, and the release assembly drives the suction cup to move away from the table.
[0013] In at least one embodiment of the present application, the sliding assembly comprises:
[0014] A pressing plate is in abutment with the fixing member and is located at one end away from the suction cup;
[0015] A connecting plate is connected to the pressing plate and is located at one end of the pressing plate close to the suction cup.
[0016] In at least one embodiment of the present application, the direction in which the sliding assembly slides close to the table is recorded as the first direction, the direction in which the sliding assembly slides away from the table is recorded as the second direction, and the sliding assembly further comprises:
[0017] A connecting shaft is provided along the sliding direction, with one end connected to the fixing member and the other end connected to the connecting plate, and the suction cup is rotatably connected around the connecting shaft;
[0018] The first elastic element is wound around the connecting shaft and located between the fixing element and the connecting plate.
[0019] In at least one embodiment of this application, a first elastic member is sleeved on one of the connecting shafts, and a plurality of connecting shafts are evenly distributed on the fixing member.
[0020] In at least one embodiment of this application, the release component includes:
[0021] A button, connected to the fixing member and located on the outer surface of the fixing member, is provided for the user to press the button to release the suction cup;
[0022] The second elastic element has one end connected to the button and the other end connected to the fixing element.
[0023] In at least one embodiment of this application, the release component further includes:
[0024] In the first direction, one end of the lever structure is located below the button. When the button is pressed in the first direction, the second elastic element contracts, and the button slides in the first direction to abut against the lever structure, transmitting the pressing force to the lever structure. The other end of the lever structure slides in the second direction.
[0025] In at least one embodiment of this application, the release component further includes:
[0026] A fixed shaft is fixedly connected to the suction cup and snapped into the other end of the lever structure. The fixed shaft includes:
[0027] A fixed surface, which abuts against the lever structure along the second direction.
[0028] In at least one embodiment of this application, the lever structure includes:
[0029] The bonding surface is positioned opposite to the suction cup, and the bonding surface is a cut surface, which is positioned opposite to the curvature of the suction cup.
[0030] In at least one embodiment of this application, the mobile phone holder further includes:
[0031] Clamping components for holding the phone;
[0032] An adjustment component, one end of which is rotatably connected to the clamping component, is used to adjust the angle of the mobile phone. The mobile phone holder includes:
[0033] A rotating bearing is rotatably connected to the other end of the adjusting assembly and rotatably connected to the pressing plate. In at least one embodiment of the present application,
[0034] The mobile phone support provided above is provided with a releasing assembly, so that the user only needs to press the releasing assembly slightly when the support needs to be released, which is simple to operate, can effectively avoid damage to the support or the desktop, and improves the safety and ease of use. BRIEF DESCRIPTION OF DRAWINGS
[0035] Figure 1 A perspective assembly view of the mobile phone support described in the present application;
[0036] Figure 2 A top view assembly view of the mobile phone support described in the present application;
[0037] Figure 3 An exploded view of the mobile phone support described in the present application;
[0038] Figure 4 A sectional view of A-A in the present application; Figure 2
[0039] Figure 5 An assembly view of the releasing assembly and the suction cup described in the present application;
[0040] MAIN ELEMENT SYMBOL EXPLANATION
[0041] 100, mobile phone support; 10, fixing member; 20, suction mechanism; 21, sliding assembly; 211, pressing plate; 212, connecting plate; 213, connecting shaft; 214, first elastic member; 22, suction cup; 23, releasing assembly; 231, button; 232, second elastic member; 233, lever structure; 2331, abutting surface; 234, fixing shaft; 2341, fixing surface; 30, clamping assembly; 40, adjusting assembly; 50, rotating bearing; F1, first direction; F2, second direction; DETAILED DESCRIPTION
[0042] The embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments.
[0043] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or a middle component can exist at the same time. When a component is considered to be "provided on" another component, it can be directly provided on the other component or a middle component can exist at the same time. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and the like used herein are for illustrative purposes only.
[0044] Some embodiments of the present application will be described in detail with reference to the drawings. The following embodiments and features of the embodiments can be combined with each other in the case of no conflict.
[0045] Please refer to Figures 1-5 The embodiments of the present application provide a mobile phone holder 100, comprising a fixing part 10 and an adsorption mechanism 20. The fixing part 10 is connected to the desktop. The adsorption mechanism 20 is connected to the fixing part 10, and the adsorption mechanism 20 is connected to or away from the desktop. The adsorption mechanism 20 comprises a sliding assembly 21, a suction cup 22 and a release assembly 23. The sliding assembly 21 is connected to the fixing part 10, and the sliding assembly 21 is connected to the fixing part 10. The suction cup 22 is connected to the sliding assembly 21 by bolts, and the suction cup 22 is used to adsorb or move away from the desktop. The release assembly 23 is connected to the suction cup 22, and the release assembly 23 is located between the sliding assembly 21 and the suction cup 22. Wherein, the sliding assembly 21 is pressed, the sliding assembly 21 slides and drives the suction cup 22 to adhere to the desktop, realizing the adsorption of the mobile phone holder 100. When the fixed holder is cancelled, the user presses the release assembly 23, and the release assembly 23 drives the suction cup 22 to move away from the desktop.
[0046] Specifically, the fixing part 10 is the basic component of the mobile phone holder 100, and the fixing part 10 is responsible for the connection with the desktop to ensure the stability of the holder. By designing a reasonable fixed structure, such as a non-slip pad or a suction base, the fixing part 10 can be firmly attached to the desktop to provide stable support for the entire holder.
[0047] The adsorption mechanism 20 is the core part of the holder, and the adsorption mechanism 20 is connected to the fixing part 10 through sliding connection, and can adhere to or move away from the desktop as needed. The design of the adsorption mechanism 20 makes the holder flexible to adapt to different desktop environments, while providing strong adsorption force to ensure the stability of the mobile phone on the holder.
[0048] The sliding assembly 21 is connected to the fixing part 10 and slides along the fixing part 10, thereby driving the suction cup 22 to adhere to or move away from the desktop. This design not only simplifies the operation process of the user, but also improves the flexibility of the holder.
[0049] The suction cup 22 is the key component of the adsorption mechanism 20, and the suction cup 22 is connected to the sliding assembly 21 by bolts and adsorbed on the desktop by using the principle of vacuum. The design of the suction cup 22 makes the holder provide stable support without damaging the desktop.
[0050] The release assembly 23 is clamped and connected with the suction cup 22, and is located between the sliding assembly 21 and the suction cup 22. A user only needs to press the release assembly 23 slightly, and the suction force of the suction cup 22 can be released, so that the support is easily separated from the desktop. This design greatly improves the usability and safety of the support.
[0051] Through the sliding connection of the sliding assembly 21 and the fixed part 10, and the bolt connection of the suction cup 22 and the sliding assembly 21, flexible movement and stable adsorption of the support on the desktop are realized. The addition of the release assembly 23 makes the release process of the support more convenient and safe. This design not only improves the practicality and flexibility of the support, but also meets the user's demand for convenient and comfortable use of the mobile phone.
[0052] In a specific embodiment, the sliding assembly 21 includes a pressing plate 211 and a connecting plate 212. The pressing plate 211 is in abutment with the fixed part 10, and the pressing plate 211 is located at one end away from the suction cup 22. The connecting plate 212 is connected with the pressing plate 211, and the connecting plate 212 is located at one end of the pressing plate 211 close to the suction cup 22.
[0053] Specifically, the pressing plate 211 is located at one end of the sliding assembly 21 away from the suction cup 22, and a user can push the sliding assembly 21 to slide by pressing the pressing plate 211. The design of the pressing plate 211 makes the operation of the user more intuitive and convenient.
[0054] The connecting plate 212 is connected with the pressing plate 211 and is located at one end of the pressing plate 211 close to the suction cup 22. The connecting plate 212 plays a role in transmitting the pressing force, and converts the user's operation into the sliding motion of the sliding assembly 21.
[0055] The connection relationship between the pressing plate 211 and the connecting plate 212 makes the sliding motion of the sliding assembly 21 more stable and controllable. A user can easily push the sliding assembly 21 to slide by pressing the pressing plate 211, thereby driving the suction cup 22 to adhere to the desktop. This design not only improves the usability of the support, but also ensures the comfort and safety of the user during operation.
[0056] In a specific embodiment, the direction in which the sliding assembly 21 slides close to the desktop is referred to as the first direction F1, and the direction in which the sliding assembly 21 slides away from the desktop is referred to as the second direction F2. The sliding assembly 21 further includes a connecting shaft 213 and a first elastic member 214. The connecting shaft 213 is arranged along the sliding direction, one end of the connecting shaft 213 is connected with the fixed part 10, the other end of the connecting shaft 213 is connected with the connecting plate 212, and the suction cup 22 is rotationally connected around the connecting shaft 213; the first elastic member 214 is arranged around the connecting shaft 213, and the first elastic member 214 is located between the fixed part 10 and the connecting plate 212.
[0057] Specifically, the connecting shaft 213 is the core component of the sliding assembly 21, which is arranged along the sliding direction (i.e., the first direction F1 and the second direction F2), one end is connected with the fixed part 10, and the other end is connected with the connecting plate 212. In addition, the connecting shaft 213 is also rotationally connected with the suction cup 22, which means that the suction cup 22 can rotate within a certain range relative to the connecting shaft 213, thereby increasing the flexibility and adaptability of the support.
[0058] The first elastic member 214 is arranged around the connecting shaft 213 and located between the fixed part 10 and the connecting plate 212. Its main function is to provide a restoring force. When the sliding assembly 21 is subjected to an external force (such as user pressing), the first elastic member 214 will deform and store energy; when the external force disappears, the first elastic member 214 will release the energy and push the sliding assembly 21 to return to the initial position. This design not only enhances the stability of the sliding assembly 21, but also makes the support have better dynamic performance during the process of adsorption and release.
[0059] The addition of the connecting shaft 213 and the first elastic member 214 makes the sliding assembly 21 more stable during sliding, reducing the shaking or deviation caused by external forces, thereby improving the overall stability of the support.
[0060] The rotational connection design of the suction cup 22 and the connecting shaft 213 makes the support adapt to different desktop environments and user needs. For example, when the desktop is uneven or the user wants to adjust the angle of the support, the suction cup 22 can be rotated to adapt to these changes, ensuring that the support can always be firmly adsorbed on the desktop.
[0061] The restoring force of the first elastic member 214 makes the sliding assembly 21 able to quickly return to the initial position after being subjected to an external force. This optimization of dynamic performance makes the support more smooth and controllable during the process of adsorption and release. At the same time, the addition of the first elastic member 214 also reduces fatigue and wear caused by long-term use, prolonging the service life of the support.
[0062] And in another way of rotating the sliding assembly 21, the sliding assembly 21 slides to the first direction F1, and drives the suction cup 22 to slide along the first direction F1 and approach the desktop, and when it is attached to the desktop, it realizes adsorption to the desktop, and fixes the mobile phone support 100.
[0063] In a specific embodiment, a first elastic member 214 is arranged around the connecting shaft 213, and multiple connecting shafts 213 are uniformly distributed on the fixed part 10.
[0064] Specifically, the first elastic member 214 can be a spring, a rubber sleeve, or other elastic element that is sleeved on the connecting shaft 213. The main function of the first elastic member 214 is to provide additional restoring force and cushioning effect. When the sliding assembly 21 is subjected to external force, the first elastic member 214 can absorb part of the impact force, protecting the connecting shaft 213 and the sliding assembly 21 from damage. At the same time, the first elastic member 214 can also help the sliding assembly 21 move more smoothly during sliding, reducing noise and wear caused by friction.
[0065] The design of evenly distributing multiple connecting shafts 213 on the fixed part 10 can further enhance the stability and carrying capacity of the support. Since the connecting shafts 213 are the key connecting components between the sliding assembly 21 and the fixed part 10, their number and distribution directly affect the overall performance of the support. The even distribution of multiple connecting shafts 213 can ensure that the sliding assembly 21 is evenly stressed during sliding, avoiding deformation or damage of the support caused by excessive stress on a single point.
[0066] In a specific embodiment, the release assembly 23 includes a button 231 and a second elastic member 232. The button 231 is connected to the fixed part 10 and is located on the outer surface of the fixed part 10, facilitating the user to press the button 231 to release the suction cup 22. One end of the second elastic member 232 is connected to the button 231, and the other end is connected to the fixed part 10.
[0067] Specifically, the button 231 is the main operating component of the release assembly 23, and the button 231 is connected to the fixed part 10 and located on the outer surface of the fixed part 10. The user can trigger the working mechanism of the release assembly 23 by pressing the button 231, thereby releasing the suction cup 22 and separating the support from the desktop.
[0068] The second elastic member 232 is another key component in the release assembly 23, with one end connected to the button 231 and the other end connected to the fixed part 10. The main function of the second elastic member 232 is to provide restoring force. When the button 231 is pressed, it will deform and store energy; when the button 231 is released, the second elastic member 232 will release the energy and push the button 231 back to the original position. This design not only ensures the sensitivity and reliability of the button 231, but also makes the support have better dynamic performance during release.
[0069] The design of the button 231 allows the user to easily and quickly press and release the support without exerting excessive force or time. This design greatly improves the ease of use and operational convenience of the support.
[0070] The addition of the second elastic member 232 provides a stable reset force for the key 231, ensuring the stability and reliability of the key 231 during pressing and releasing. This design avoids the release problem of the bracket due to loose or failed key 231, improving the overall stability of the bracket.
[0071] The reset force of the second elastic member 232 enables the key 231 to quickly return to the initial position after release, optimizing the dynamic performance and making the bracket more smooth and controllable during release. At the same time, the addition of the second elastic member 232 also reduces fatigue and wear due to long-term use, prolonging the service life of the bracket.
[0072] In a specific embodiment, the release assembly 23 further includes a lever structure 233. In the first direction F1, one end of the lever structure 233 is located below the key 231. When the key 231 is pressed in the first direction F1, the second elastic member 232 contracts, and the key 231 slides in the first direction F1 to abut the lever structure 233 and transfers the pressing force to the lever structure 233, and the other end of the lever structure 233 slides in the second direction F2.
[0073] Specifically, the lever structure 233 is a key component in the release assembly 23, which ingeniously uses the principle of leverage in physics to produce a larger effect with a smaller force. In the first direction F1, one end of the lever structure 233 is located below the key 231. When the user presses the key 231 in the first direction F1, the key 231 will slide in the same direction and abut the lever structure 233. At this time, the pressing force transmitted by the key 231 will act on the lever structure 233, causing the other end of the lever structure 233 to slide in the second direction F2 (opposite to the first direction F1).
[0074] During pressing, the second elastic member 232 will contract and store energy. When the key 231 slides to abut the lever structure 233, the pressing force it transmits will be converted into the power for the lever structure 233 to slide in the second direction F2. This design not only improves the sensitivity of the bracket release, but also makes the bracket have better dynamic performance and stability during release.
[0075] In a specific embodiment, the release assembly 23 further includes a fixed shaft 234. The fixed shaft 234 is fixedly connected with the suction cup 22, and the fixed shaft 234 is connected with the other end of the lever structure 233. The fixed shaft 234 includes a fixed surface 2341, which abuts the lever structure 233 in the second direction F2.
[0076] Specifically, the fixed shaft 234 is a key component connecting the suction cup 22 and the lever structure 233. One end of the fixed shaft 234 is fixedly connected with the suction cup 22, ensuring that the suction cup 22 can stably follow the action of the lever structure 233 during the release process. The other end is clamped with the other end of the lever structure 233, realizing the transmission connection between the two.
[0077] The fixed surface 2341 is a specific area on the fixed shaft 234, which abuts against the lever structure 233 along the second direction F2. When the lever structure 233 slides along the second direction F2 under the pressing of the button 231, it will contact this area of the fixed surface 2341 and transmit the sliding force to the fixed shaft 234, thereby driving the suction cup 22 to perform the release action. The design of the fixed surface 2341 ensures stable contact and effective transmission between the lever structure 233 and the fixed shaft 234, avoiding the release problem of the support due to poor sliding or transmission failure.
[0078] The fixed connection of the fixed shaft 234 with the suction cup 22 and the clamping design with the lever structure 233 ensure the stable connection between the internal components of the release assembly 23. This design improves the overall stability of the support during the release process, avoiding the failure of the support due to loose or falling parts.
[0079] The design of the fixed surface 2341 enables the lever structure 233 to more effectively transmit the pressing force to the fixed shaft 234 during the sliding process, thereby driving the suction cup 22 to perform the release action. This design optimizes the transmission path, reduces energy loss, and improves the efficiency and sensitivity of the support release.
[0080] In a specific embodiment, the lever structure 233 includes a fitting surface 2331. The fitting surface 2331 is oppositely arranged with the suction cup 22, and the fitting surface 2331 is a tangent surface, which is oppositely arranged with the arc of the suction cup 22.
[0081] Specifically, the fitting surface 2331 is a specific area on the lever structure 233, which is oppositely arranged with the suction cup 22. The main purpose of this design is to ensure that the lever structure 233 can maintain close contact with the suction cup 22 during the action, thereby more effectively transmitting the pressing force or sliding force.
[0082] The tangent surface is a special shape design on the fitting surface 2331, which enables the fitting surface 2331 of the lever structure 233 to better adapt to the arc of the suction cup 22, thereby improving the fitting degree between the two. This design reduces the problem of poor sliding or transmission failure due to poor fitting, ensuring the stability and reliability of the support during the release process.
[0083] The relative arrangement of the cutting surface and the suction cup 22 arc enables the lever structure 233 to more effectively transmit pressing or sliding force to the suction cup 22 during operation. This design optimizes the transmission path, reduces energy loss, improves the efficiency and sensitivity of the support release, and avoids damage to the suction cup 22 caused by the sharpness of the lever structure 233.
[0084] In a specific embodiment, the mobile phone support 100 further comprises a clamping assembly 30 and an adjusting assembly 40. The clamping assembly 30 clamps the mobile phone. The adjusting assembly 40 is rotatably connected to one end of the clamping assembly 30 for adjusting the angle of the mobile phone.
[0085] Specifically, the clamping assembly 30 is a component of the mobile phone support 100 used to clamp the mobile phone. The clamping assembly 30 is usually made of elastic material or designed to be adjustable to ensure that it can tightly fix mobile phones of different sizes and shapes. The design of the clamping assembly 30 takes into account factors such as the weight, size, and shape of the mobile phone to ensure that the mobile phone can be kept stable and not easily fall off the support.
[0086] The adjusting assembly 40 is a key component that connects the clamping assembly 30 and other parts of the support, allowing users to adjust the angle of the mobile phone within a certain range. The adjusting assembly 40 is usually designed to be rotatable or adjustable through bearings or other means, so that users can adjust the angle of the mobile phone as needed to achieve the best viewing or operating experience. This design makes the mobile phone support 100 more flexible and practical, and can adapt to different use scenarios and user needs.
[0087] In a specific embodiment, the mobile phone support 100 includes a rotating bearing 50. The rotating bearing 50 is rotatably connected to the other end of the adjusting assembly 40, and the rotating bearing 50 is rotatably connected to the pressing plate 211.
[0088] Specifically, the rotating bearing 50 is a mechanical element that allows two components to rotate relative to each other. In the mobile phone support 100, the rotating bearing 50 is used to connect the other end of the adjusting assembly 40 and the pressing plate 211, as well as possibly other parts of the support. Through the rotating bearing 50, users can easily adjust the angle and position of the mobile phone to adapt to different use needs.
[0089] In this way, by adding the release assembly 23, users only need to press the release assembly 23 gently when they need to release the support, which not only makes the operation simple, but also effectively avoids damage to the support or the desktop, improving the safety and ease of use.
[0090] The above description is only an embodiment of the present application, and it should be noted that those skilled in the art can make improvements without departing from the inventive concept of the present application, but these all belong to the protection scope of the present application.
Claims
1. A cell phone holder, characterized by, The mobile phone support comprises a fixing part, an adsorption mechanism, a sliding assembly, a suction cup, and a release assembly. The fixing part is connected with a desktop. The adsorption mechanism is connected with the fixing part and is close to or away from the desktop. The adsorption mechanism comprises the sliding assembly and the suction cup. The sliding assembly is connected with the fixing part and is located on the side away from the suction cup. The suction cup is connected with the sliding assembly. The release assembly is connected with the suction cup and is located between the sliding assembly and the suction cup.
2. A holder according to claim 1, characterized in that When the sliding assembly is pressed, the sliding assembly slides and drives the suction cup to be close to the desktop, thereby realizing the adsorption of the mobile phone support. When the release assembly is pressed, the release assembly drives the suction cup to be away from the desktop. The sliding assembly comprises a pressing plate and a connecting plate.
3. A holder according to claim 2, wherein The pressing plate is connected with the fixing part and is located on the side away from the suction cup. The connecting plate is connected with the pressing plate and is located on the side close to the suction cup. The sliding direction of the sliding assembly close to the desktop is defined as the first direction, and the sliding direction of the sliding assembly away from the desktop is defined as the second direction.
4. A support according to claim 3, wherein The sliding assembly further comprises a connecting shaft and a first elastic member.
5. The cell phone holder of claim 1, wherein, The connecting shaft is arranged along the sliding direction and is connected with the fixing part on one end and the connecting plate on the other end. The suction cup is rotatably connected with the connecting shaft. The first elastic member is arranged on the connecting shaft and is located between the fixing part and the connecting plate.
6. A holder according to claim 5, wherein A first elastic member is arranged on the connecting shaft, and multiple connecting shafts are uniformly distributed on the fixing part. The release assembly comprises a key and a second elastic member.
7. A holder according to claim 6, wherein The key is connected with the fixing part and is located on the outer surface of the fixing part. The second elastic member is connected with the key on one end and the fixing part on the other end. The release assembly further comprises a lever structure.
8. A holder according to claim 6, wherein When the key is pressed in the first direction, the second elastic member is contracted, the key slides in the first direction to abut against the lever structure, and the pressing force is transmitted to the lever structure. The other end of the lever structure slides in the second direction.
9. The cell phone holder of claim 2, wherein, The release assembly further comprises a fixing shaft. The fixing shaft is fixedly connected with the suction cup and is connected with the other end of the lever structure. The fixing shaft comprises a fixing surface.
10. A holder according to claim 9, wherein The fixing surface abuts against the lever structure in the second direction. The lever structure comprises an abutting surface. The abutting surface is arranged opposite to the suction cup and is a tangent surface. The tangent surface is arranged opposite to the arc of the suction cup. The mobile phone support further comprises a clamping assembly and an adjusting assembly. The clamping assembly clamps the mobile phone. The adjusting assembly is rotatably connected with the clamping assembly on one end and is rotatably connected with the pressing plate on the other end.