Electronic equipment support

By using suction cups to connect the base to the electronic device holder and adsorb it onto the external support structure, the problems of looseness, large space occupation, and tangling during storage of the dual support structure are solved, thus improving portability and stability.

CN224107906UActive Publication Date: 2026-04-10SHENZHEN BASEUS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN BASEUS TECH CO LTD
Filing Date
2025-05-09
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing dual-support structure of electronic device holders is prone to loosening during storage, resulting in large space occupation and easy tangling, which affects portability and user experience.

Method used

The first and second bases are connected by suction cups to form a fixed structure, reducing the storage space requirement. The suction cups also attach to the external support structure to stabilize the support and prevent tangling.

Benefits of technology

It improves the portability and stability of electronic device holders, reduces space occupation and tangling risks during storage, and enhances the flexibility and applicability of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electronic equipment support which comprises a support body, a first supporting assembly and a second supporting assembly. The first supporting assembly comprises a first supporting piece and a first base, one end of the first supporting piece is connected with the support body, the other end of the first supporting piece is connected with the first base, and the first base is provided with a first suction cup. The second supporting assembly comprises a second supporting piece and a second base, one end of the second supporting piece is connected with the support body, and the other end of the second supporting piece is connected with the second base. The electronic equipment support has a first state, and when the electronic equipment support is in the first state, the first suction cup is adsorbed to the second base so that the first base and the second base can be relatively fixed. When the electronic equipment support needs to be stored, the first base and the second base can be connected through the first suction cup to form a mutually fixed structure, so that the requirement for a storage space is lowered, the risk that the first supporting piece and the second supporting piece are wound is lowered, and portability is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic equipment accessory technical field, especially electronic equipment support. BACKGROUND

[0002] In the related art, in order to improve the stability of the electronic device support, a double support structure is often used to disperse stress, and the double support structure can be installed at different positions to avoid dependence on a large area installation plane. However, the two support members of the double support structure are prone to loose structure when being stored, which leads to large space occupation and easy entanglement, affecting portability and user experience. SUMMARY

[0003] The utility model aims at at least one of the technical problems existing in the prior art. To this end, the utility model provides an electronic device support, which can connect the first base and the second base when storage is needed, thereby reducing the requirement for storage space and reducing the risk of entanglement of the first support member and the second support member, and improving portability.

[0004] In a first aspect, the embodiments of the present application provide an electronic device support, comprising:

[0005] A support body;

[0006] A first support assembly comprising a first support member and a first base, one end of the first support member being connected to the support body, the other end of the first support member being connected to the first base, and the first base being provided with a first suction cup;

[0007] A second support assembly comprising a second support member and a second base, one end of the second support member being connected to the support body, the other end of the second support member being connected to the second base;

[0008] The electronic device support has a first state, and when the electronic device support is in the first state, the first suction cup is adsorbed to the second base to relatively fix the first base and the second base.

[0009] The electronic device support according to the embodiments of the utility model has at least the following beneficial effects: when the electronic device support needs to be stored, the first base and the second base can be connected by the first suction cup to form a relatively fixed structure, thereby reducing the requirement for storage space and reducing the risk of entanglement of the first support member and the second support member, and improving portability.

[0010] According to the first aspect, in a possible implementation, the second base is provided with a second suction cup.

[0011] The first and second suction cups are consistent in number, and when the electronic device support is in the first state, the first and second suction cups are correspondingly adsorbed; or,

[0012] The first base has a first side surface, and the first suction cup is arranged on the first side surface; the second base has a second side surface, and the second suction cup is arranged on the second side surface, and the first and second suction cups are arranged in a staggered manner, and when the electronic device support is in the first state, the first suction cup is adsorbed on the second side surface, and the second suction cup is adsorbed on the first side surface.

[0013] According to the first aspect, in a possible implementation manner, the electronic device support further has a second state, and when the electronic device support is in the second state, at least one of the first and second suction cups is adsorbed on an external support structure.

[0014] According to the first aspect, in a possible implementation manner, the first base comprises a first seat body and an adapter, the adapter is a hard piece, the adapter is connected with the first seat body, and the adapter has a first mounting groove.

[0015] The first suction cup comprises a mounting portion and an adsorption portion connected with each other, the mounting portion is arranged in the first mounting groove, and at least part of the structure of the adsorption portion is exposed to the first mounting groove.

[0016] According to the first aspect, in a possible implementation manner, the first seat body has a second mounting groove, the adapter is arranged in the second mounting groove, and at least part of the structure of the adsorption portion is exposed to the second mounting groove.

[0017] According to the first aspect, in a possible implementation manner, one side of the second base forms an adsorbed surface, and when the electronic device support is in the first state, the first suction cup is adsorbed on the adsorbed surface.

[0018] According to the first aspect, in a possible implementation manner, the second base comprises a second seat body and an adsorbed body, the adsorbed body is a hard piece, the adsorbed body is connected with the second seat body, and one side of the adsorbed body away from the second seat body forms the adsorbed surface.

[0019] According to the first aspect, in a possible implementation manner, at least one of the first and second support members has a plastic deformation structure; and / or,

[0020] The first support member is movably connected with the first base, and the first base is configured to move relative to the first support member to adjust the relative position of the first base and the second base; and / or,

[0021] The second support is movably connected with a second base, and the second base is configured to move relative to the second support to adjust the relative position of the first base and the second base.

[0022] According to the first aspect, in a possible implementation, the electronic device support further comprises a sticking assembly, at least the first base is provided with the sticking assembly, and the sticking assembly has an attaching surface, and the attaching surface and the first suction cup are located on different sides of the first base.

[0023] According to the first aspect, in a possible implementation, the sticking assembly is detachably connected with the first base; or,

[0024] The first base and the second base are detachably connected with the sticking assembly; or,

[0025] The number of the sticking assemblies is two, and the two sticking assemblies are detachably connected with the first base and the second base respectively.

[0026] According to the first aspect, in a possible implementation, the base is provided with a through hole, and a side wall of the through hole is provided with oppositely arranged first and second clamping protrusions;

[0027] The sticking assembly comprises a connecting portion, an elastic buckle and a film, the elastic buckle is elastically connected with the connecting portion along a first direction, part of the structure of the connecting portion abuts against the first clamping protrusion along a second direction, the elastic buckle abuts against the second clamping protrusion along the second direction, and the part of the structure of the connecting portion exposed to the through hole is provided with the film, and the film forms the attaching surface.

[0028] The first direction is the spacing direction of the first clamping protrusion and the second clamping protrusion, and the second direction is the through direction of the through hole.

[0029] Additional aspects and advantages of the present application will be given in part in the following description, and will become apparent from the following description, or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0030] The present application will be further described below in conjunction with the drawings and embodiments, in which:

[0031] Figure 1 FIG. 1 is a structural schematic view of an electronic device support according to an embodiment of the present application;

[0032] Figure 2 FIG. 2 is a schematic view of the suction structure of the first base and the second base according to the first example of the present application;

[0033] Figure 3 Fig. 1 is a structural schematic view of a first base in an embodiment of the present application;

[0034] Figure 4 Fig. 2 is a structural schematic view of a first base and a second base in a second embodiment of the present application;

[0035] Figure 5 Fig. 3 is a structural schematic view of a second base in an embodiment of the present application;

[0036] Figure 6 Fig. 4 is a structural schematic view of an electronic device support in another embodiment of the present application;

[0037] Figure 7 Fig. 5 is a connection structural schematic view of a pasting assembly and a first base in another embodiment of the present application.

[0038] Reference signs:

[0039] 100, electronic device support; 110, support body;

[0040] 120, first support assembly; 121, first support piece; 122, first base; 1221, first seat body; 1222, adapter; 1223, first mounting groove; 1224, second mounting groove; 1225, through hole; 1226, first clamping protrusion; 1227, second clamping protrusion; 123, first suction cup; 1231, mounting portion; 1232, suction portion;

[0041] 130, second support assembly; 131, second support piece; 132, second base; 1321, suction surface; 1322, second seat body; 1323, suction body; 133, second suction cup;

[0042] 140, pasting assembly; 141, attachment surface; 142, connection portion; 143, elastic buckle; 144, film. DETAILED DESCRIPTION

[0043] Embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0044] In the description of the utility model, it is understood that the direction description, such as the direction or positional relation indicated by up, down, front, back, left, right etc. is the direction or positional relation based on the drawing shown, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as the limitation of the utility model.

[0045] In the description of the utility model, the meaning of several is more than one, the meaning of multiple is more than two, greater than, less than, more than etc. are understood as not including the number, above, below, within etc. are understood as including the number. If the first, second are described, it is only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or the sequence of indicated technical features.

[0046] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installing, connecting etc. should be understood in a broad sense, and the person skilled in the art can reasonably determine the specific meaning of the above words in the utility model according to the specific content of the technical scheme.

[0047] In the description of the utility model, the description of reference terms "one embodiment", "some embodiments", "illustrative embodiment", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0048] In the related art, in order to improve the stability of the electronic device support, a double support structure is often used to disperse stress, and the double support structure can be installed at different positions to avoid dependence on a large area installation plane. However, the two support pieces of the double support structure are prone to loose structure when being stored, resulting in large occupied space and easy entanglement, affecting portability and user experience.

[0049] In view of the problem of loose storage of the double support structure, the present application provides an electronic device support, in some embodiments, such as Figures 1 to 3As shown, the electronic device support 100 comprises a support body 110 and two support assemblies, which are a first support assembly 120 and a second support assembly 130 respectively. The support body 110 refers to a main structure that carries an electronic device and connects the support assemblies, which can be implemented by a rigid plastic plate formed by injection molding, and is used to provide a mounting base for the two support assemblies. The first support assembly 120 comprises a first support piece 121 and a first base 122. One end of the first support piece 121 is connected with the support body 110, and the other end of the first support piece 121 is connected with the first base 122. The first base 122 is provided with a first suction cup 123. The second support assembly 130 comprises a second support piece 131 and a second base 132. One end of the second support piece 131 is connected with the support body 110, and the other end of the second support piece 131 is connected with the second base 132. The two support pieces, i.e., the first support piece 121 and the second support piece 131, can be a bendable metal rod, which is used to provide an adjustable support angle. The two bases, i.e., the first base 122 and the second base 132, are supported by plastic or rubber materials. The two support assemblies form a double support layout. The first suction cup 123 refers to a flexible component with a negative pressure adsorption function, which can be made of a silicone material in a bowl-shaped structure and can cooperate with a smooth plane to generate an adsorption force.

[0050] The electronic device support 100 has a first state. When the electronic device support 100 is in the first state, the first suction cup 123 is adsorbed to the second base 132 to relatively fix the first base 122 and the second base 132. Pressing the first base 122 makes the first suction cup 123 contact the surface of the second base 132 to form a negative pressure adsorption. The two bases are relatively fixed by the adsorption force generated by the suction cup, effectively constrain the relative movement of the two support assemblies, and eliminate the space occupation caused by the free swing of the two support assemblies when being stored. The suction cup adsorption fixing mode makes the support form a compact overall structure, which is convenient to put into a narrow storage bag or pocket. The fixed connection of the two support assemblies avoids the separation and entanglement of components caused by vibration during carrying, and improves the operation efficiency when the user uses it.

[0051] The support body 110 can adopt a magnetic attraction structure or a clamping structure in the art, which is not described in detail in the present application. The electronic device support can be a mobile phone support, a tablet support, a camera support, etc., which is not limited in the present application.

[0052] The electronic device support 100 also has a second state, which refers to a use state of the electronic device support 100. When the electronic device support 100 is in the second state, at least the first suction cup 123 is adsorbed to an external support structure, which can be a car window, a desktop or a wall, etc.

[0053] Specifically, when the electronic device support 100 is in the first state, the first suction cup 123 is arranged towards the second base 132, the first suction cup 123 can be exposed by bending the first support 121 or the second support 131, or the first suction cup 123 can be exposed by rotating the first base 122 to adjust the orientation of the first suction cup 123, thereby reaching the third state, which is not limited in the present application.

[0054] As shown in the first example of the above embodiment, Figure 1 and Figure 2 As shown, both bases are provided with suction cups, i.e., the first base 122 is provided with the first suction cup 123, and the second base 132 is provided with the second suction cup 133. The number of first suction cups 123 and the number of second suction cups 133 can be consistent or inconsistent, and the first suction cup 123 and the second suction cup 133 can be aligned or misaligned with each other. The above solutions achieve stable adsorption by completely contacting the suction cup on one base with part of the structure on the other base, fix the originally dispersed two support components as a whole structure, and avoid the problem of mutual entanglement or excessive space occupation due to loose parts during storage. The present application is not limited in this regard.

[0055] Among them, the second suction cup 133 refers to the suction cup structure arranged on the second base 132, which can be realized by using the same flexible silica gel material as the first suction cup 123, and is fixed by negative pressure adsorption.

[0056] Specifically, the number of first suction cups 123 and second suction cups 133 can be designed to be consistent, and the first suction cup 123 and the second suction cup 133 are arranged in a mirror-symmetrical manner. When the electronic device support 100 is in the first state, the first suction cup 123 and the second suction cup 133 correspond to each other and are adsorbed, and the suction cups form one-to-one corresponding adsorption points. By matching the number to ensure one-to-one corresponding adsorption relationship, local non-adhesion caused by number difference is avoided. For example, the first base 122 can be provided with two first suction cups 123, and the second base 132 can be provided with two second suction cups 133. When the electronic device support 100 is in the first state, the two first suction cups 123 and the second suction cups 133 correspond to each other and are adsorbed, so that the first base 122 and the second base 132 are stably connected.

[0057] The first suction disc 123 and the second suction disc 133 can also be arranged in a staggered manner. In this case, the first base 122 has a first side surface, the first suction disc 123 is arranged on the first side surface, the second base 132 has a second side surface, the second suction disc 133 is arranged on the second side surface, and the first suction disc 123 and the second suction disc 133 are arranged in a staggered manner. When the electronic device support 100 is in the first state, the first suction disc 123 is adsorbed on the second side surface, and the second suction disc 133 is adsorbed on the first side surface. The continuous plane of the first side surface and the second side surface compensates for the positional deviation. For example, the first suction disc 123 is located in the left area of the first side surface, the second suction disc 133 is located in the right area of the second side surface, or the projection of the second suction disc 133 on the first base 122 along the direction from the second base 132 to the first base 122 is located between two adjacent first suction discs 123. The first suction disc 123 and the second suction disc 133 are adsorbed on the second side surface and the first side surface, respectively, to form cross locking through spatial staggering.

[0058] When both bases are provided with suction discs, the electronic device support 100 has a second state. When the electronic device support 100 is in the second state, the first suction disc 123 or the second suction disc 133 can be adsorbed on the external support structure, or the first suction disc 123 and the second suction disc 133 can be adsorbed on opposite sides of the external support structure. The external support structure refers to a fixed object for the suction disc to adhere to, for example, a glass plate or the edge of a table top. The opposite sides refer to the opposite and non-interfering planes, for example, the front and back of a glass plate or the upper and lower edges of a table top.

[0059] In other embodiments, the orientation of the first suction disc 123 can be adjusted by rotating the first base 122, or the orientation of the second suction disc 133 can be adjusted by rotating the second base 132, so that the first suction disc 123 and the second suction disc 133 are arranged on the same side. Thus, the first suction disc 123 and the second suction disc 133 can be adsorbed on the same side of the external support structure. The first support member 121 can also be bent to cause plastic deformation of the first support member 121, or the second support member 131 can be bent to cause plastic deformation of the second support member 131, so as to adjust the positional relationship between the first base 122 and the second base 132, and the first suction disc 123 and the second suction disc 133 are adsorbed on different external support structures. For example, the first suction disc 123 can be adsorbed on the table top, and the second suction disc 133 can be adsorbed on the center control screen. The present application does not limit this.

[0060] The embodiment can improve the installation flexibility and stability of the electronic device support 100 in use. Specifically, the suction cups are arranged on opposite sides of the base, so that the base can select unilateral adsorption or bilateral opposite adsorption according to the form of the external support structure. Unilateral adsorption is suitable for single plane fixation scene, while bilateral adsorption enhances the overall fixation strength by applying adsorption force on the opposite sides of the support structure. Therefore, the electronic device support 100 can adapt to more diversified installation environments, such as glass windows, desktops and different forms of support surfaces. This design can expand the application scenarios of the electronic device support 100 and realize wider environmental adaptability and use reliability.

[0061] As shown in the second example of the above embodiment, Figure 1 , Figure 4 and Figure 5 , the first base 122 has a first suction cup 123, and one side of the second base 132 forms an adsorbed surface 1321. When the electronic device support 100 is in the first state, the first suction cup 123 is adsorbed to the adsorbed surface 1321. The first support assembly 120 and the second support assembly 130 are in direct contact with the adsorbed surface 1321 of the second base 132 through the first suction cup 123 and form a vacuum adsorption. A gapless overlapping state is formed. The rigid-flexible cooperation relationship between the adsorbed surface 1321 and the suction cup not only realizes physical fixation, but also limits the relative movement of the support by geometric constraint to avoid misalignment or looseness during storage.

[0062] Moreover, the cooperation of the suction cup and the adsorbed surface 1321 can better absorb the position offset of the suction cup installation. The unilateral suction cup design simplifies the base structure, reduces the manufacturing complexity and cost. In addition, through the combination of the first suction cup 123 and the adsorbed surface 1321, the close fit of the two support assemblies in the storage state is ensured, and the overall compactness and portability are improved.

[0063] The adsorbed surface 1321 refers to a physical surface on the second base 132 that can be adsorbed by the suction cup, which can be realized by polishing the surface of a hard material or covering a non-slip texture layer, such as plastic, metal or composite material. The adsorbed surface 1321 ensures effective vacuum adsorption with the first suction cup 123 through the cooperation of material hardness and surface form. For example, the adsorbed surface 1321 of the second base 132 can be designed as a plane or a micro-radian curved surface that matches the outer contour of the first suction cup 123, so that air is fully discharged when the two are in contact. Moreover, the area of the adsorbed surface 1321 can be greater than or equal to the area of the first suction cup 123 to ensure the sealing of the contact area.

[0064] The specific structure of the first base 122 and the second base 132 is described below. Specifically, the first base 122 is provided with the first suction cup 123, and the second base 132 forms the adsorbed surface 1321.

[0065] In some embodiments, as Figure 1 , Figure 3 and Figure 4 , the first base 122 comprises a first seat body 1221 and an adapter 1222, the adapter 1222 is a hard piece, that is, the adapter 1222 is composed of a rigid material, which can be realized by polycarbonate or metal alloy, for providing a stable support structure for the suction cup. The adapter 1222 is connected with the first seat body 1221, and the adapter 1222 has a first mounting groove 1223; the first suction cup 123 comprises a connected mounting part 1231 and a suction part 1232, the mounting part 1231 is arranged in the first mounting groove 1223, the first mounting groove 1223 can limit and fix the mounting part 1231, and part of the structure or all of the suction part 1232 is exposed to the first mounting groove 1223. The mounting part 1231 refers to the part of the suction cup embedded in the first mounting groove 1223, which can be a cylindrical structure with a flange, fixed in the first mounting groove 1223 by interference fit, adhesive or other methods, to prevent the first suction cup 123 from moving during use or storage. The suction part 1232 refers to the flexible disc structure of the first suction cup 123 exposed to the first mounting groove 1223, which can be made of silicone material and realize the fixing function through vacuum adsorption.

[0066] By connecting the hard adapter 1222 with the first seat body 1221, a rigid support frame is formed, which avoids the problem of suction cup deviation caused by deformation of the traditional flexible base under stress. The depth of the first mounting groove 1223 is configured to cover the entire height of the mounting part 1231, so that the mounting part 1231 of the first suction cup 123 is completely wrapped in the first mounting groove 1223, and only the suction part 1232 is exposed. When the first suction cup 123 is subjected to external force, the mounting part 1231 comes into contact and friction with the side wall of the first mounting groove 1223, limiting the movement freedom of the first suction cup 123 relative to the adapter 1222. The adapter 1222 and the first seat body 1221 are connected by buckle connection or screw fixing, to ensure the stability of the combination, so as to maintain the compact form of the first base 122 in the storage state, and prevent the increase of space occupation caused by loose parts.

[0067] Further, the first seat body 1221 has a second mounting groove 1224, which is a recess structure arranged on the surface of the first seat body 1221 and can be processed by an injection molding process, used to constrain the mounting position of the adapter 1222. The adapter 1222 is arranged in the second mounting groove 1224, and part of the structure or the whole of the adsorption part 1232 is exposed to the second mounting groove 1224. Through the double-layer mounting groove structure, the compact layout of the first suction cup 123 mounting structure is realized, and under the premise of ensuring the functional integrity of the first suction cup 123, the adapter 1222 is embedded in the seat body, so that the first suction cup 123 and the first seat body 1221 form an integrated structure, effectively reducing the space occupancy of the electronic equipment support 100 in the first state.

[0068] The depth of the second mounting groove 1224 is set to completely accommodate the main structure of the adapter 1222, and only the necessary exposed area of the adsorption part 1232 is reserved at the edge of the groove. When the adapter 1222 is embedded in the second mounting groove 1224, the side wall of the adapter 1222 and the inner wall of the second mounting groove 1224 form a surface contact constraint, effectively preventing lateral displacement. The exposed part of the adsorption part 1232 is precisely controlled in size, so that it only retains the minimum area required for effective adsorption when it is stored. This nested structure makes the suction cup assembly have sufficient support rigidity when it is expanded for use, and can completely hide the adapter 1222 in the first seat body 1221 when it is stored. The exposure height of the adsorption part 1232 is controlled within the range of 2-3 millimeters, which ensures the adsorption function and avoids excessive protrusion.

[0069] It can be understood that when the material of the first seat body 1221 is hard plastic, a mounting groove can also be arranged on the first seat body 1221, and the suction cup is not mounted in the mounting groove on the first seat body 1221, which is not limited in the present application.

[0070] In some embodiments, as Figure 1 , Figure 4 and Figure 5As shown, the second base 132 comprises a second seat body 1322 and an adsorbed body 1323. The adsorbed body 1323 is a rigid member, and the adsorbed body 1323 is connected to the second seat body 1322, and the side of the adsorbed body 1323 away from the second seat body 1322 forms an adsorbed surface 1321. The second seat body 1322 refers to the basic support part constituting the second base 132, which can be implemented by plastic or metal material, for carrying the adsorbed body 1323 and providing structural stability. The adsorbed body 1323 refers to a rigid member connected to the second seat body 1322, which can be implemented by hard plastic or metal plate material, and the flatness thereof can be controlled within ±0.1 mm to form a flat adsorbed surface 1321. The adsorbed surface 1321 refers to the area of the outer surface of the adsorbed body 1323 for contacting the suction cup, which can avoid surface deformation due to external pressure through the characteristics of hard material.

[0071] Specifically, in the structure of the second base 132, the adsorbed body 1323 can be rigidly connected to the second seat body 1322 by injection molding or bolt locking, forming a composite structure with stable support capability. When the electronic device support 100 is in the storage state, the first suction cup 123 of the first support assembly 120 is directly adsorbed on the rigid adsorbed surface 1321 formed by the adsorbed body 1323. No local depression or elastic deformation occurs during the adsorption of the first suction cup 123, thereby ensuring that a vacuum sealed state is formed between the suction cup and the adsorbed body 1323. At the same time, the second seat body 1322 can have a buffering performance through material selection, for example, using elastic TPU material to absorb external impact, avoiding wear and tear caused by direct contact between the rigid adsorbed body 1323 and the external environment.

[0072] The shape and size of the first seat body 1221 and the second seat body 1322 can be designed to be consistent, and the adapter 1222 and the adsorbed body 1323 are installed in the same way; that is, the first seat body 1221 and the second seat body 1322 can be used interchangeably, and the difference is only that the installation part 1231 in the second installation slot 1224 is different.

[0073] In addition, when both bases are provided with suction cups, the structure of the second base 132 is completely the same as that of the first base 122, or the difference between the second base 132 and the first base 122 is only that the arrangement of the first suction cup 123 and the second suction cup 133 is inconsistent, which is not limited in the present application.

[0074] For the first support assembly 120 and the second support assembly 130, in some embodiments, the first support 121 can have a plastic deformation structure capable of bending deformation or torsional deformation, so as to adjust the first base 122 at the end, change the distance and angle between the first base 122 and the second base 132. Similarly to the first support 121, the second support 131 can also have a plastic deformation structure, so as to adjust the second base 132 at the end, change the distance and angle between the first base 122 and the second base 132.

[0075] In some embodiments, the first support 121 is movably connected with the first base 122, and the first base 122 is movable relative to the first support 121 to adjust the relative position of the first base 122 and the second base 132, including the relative distance and angle between the first base 122 and the second base 132; for example, the first base 122 is rotatably connected with the first support 121, so as to allow the first base 122 to rotate, and the orientation of the first suction cup 123 can be adjusted by rotating the first base 122, specifically, the first suction cup 123 and the second suction cup 133 can be oriented to the same side or oppositely arranged. Of course, the first base 122 can also be slidably connected with the first support 121, and the first base 122 and the first support 121 can also be connected in a universal structure, and the specific connection mode of the first base 122 and the first support 121 is not limited in the present application.

[0076] In some embodiments, similarly to the first support assembly 120, in the second support assembly 130, the second support 131 is movably connected with the second base 132, and the second base 132 is movable relative to the second support 131 to adjust the relative position of the first base 122 and the second base 132. The switching between the first state and the second state can be realized by one or more of the deformation of the first support 121, the deformation of the second support 131, the movement of the first base 122 relative to the first support 121, and the movement of the second base 132 relative to the second support 131.

[0077] In actual application, by bending the first support 121 and the second support 131, and moving the first base 122 and the second base 132, the first suction cup 123 and the second suction cup 133 can be combined at any angle and distance within a predetermined range, which is not limited in the present application. It should be noted that the above-mentioned predetermined range is determined according to the length of the first support 121 and the second support 131.

[0078] Of course, in other embodiments, the first support 121 and the first base 122 can also be fixed, and the adjustment can be realized only by the deformation of the first support 121 and the second support 131.

[0079] In some embodiments, as shown in FIG. 1, the electronic device support 100 comprises two support assemblies, each of which is connected with one of the two bases. The two support assemblies can be connected with the external support structure in different ways, and the electronic device support 100 can be used in different scenarios. Figure 6 and Figure 7 As shown in FIG. 1, the electronic device support 100 further comprises a sticking assembly 140 connected with at least one of the two bases. The sticking assembly 140 has a sticking surface 141. When one of the two bases is provided with a suction cup and the other base is connected with the sticking assembly 140, the two support assemblies can be connected with the external support structure in different ways, and the electronic device support 100 can be used in different scenarios.

[0080] When the same base is provided with both a suction cup and a sticking assembly 140, i.e., at least the first base 122 is provided with the sticking assembly 140, the sticking surface 141 of the sticking assembly 140 is located on a different side of the first base 122 from the first suction cup 123. The user can choose to use the sticking assembly 140 or the suction cup according to the surface condition of the external support structure. Thus, the application scenarios of the electronic device support 100 are further expanded.

[0081] The sticking assembly 140 refers to a modular structure for providing adhesion. Specifically, the sticking assembly 140 can be implemented by using a detachable connecting part 142 with a film 144. The sticking surface 141 and the suction cup are distributed on the two sides of the base by physical isolation. The sticking surface 141 refers to a planar area of the sticking assembly 140 for contacting the external support structure. Specifically, the sticking surface 141 can be implemented by using a pressure-sensitive adhesive layer or a layer of sticky material that can be repeatedly attached. The temporary fixing of the base to other planes is achieved by adhesion.

[0082] When the number of the sticking assembly 140 is one, the first base 122 can be detachably connected with the sticking assembly 140. Alternatively, the two bases can be connected with the sticking assembly 140 after being connected by the suction cup. When the number of the sticking assembly 140 is two, the two sticking assemblies 140 are connected with the two bases one by one. Thus, the sticking assemblies 140 are attached to different positions of the external support structure by bending the support member. The stress is dispersed by the two connection positions, and the area of the sticking surface 141 of the sticking assembly 140 can be made smaller. The present application does not limit this.

[0083] The sticking assembly 140 is detachably connected with the base. Under normal circumstances, the sticking assembly 140 is not easy to be removed after being attached to the external support structure. At this time, the base can be separated from the sticking assembly 140, so that the electronic device support 100 is removed. The removed electronic device support 100 can be connected with the external support structure at different positions or other external support structures, thereby improving the flexibility of the installation position of the electronic device support 100.

[0084] The base is provided with a through hole 1225, and the side wall of the through hole 1225 is provided with a first clamping protrusion 1226 and a second clamping protrusion 1227 arranged oppositely; the sticking assembly 140 comprises a connecting part 142, an elastic buckle 143 and a film 144, the elastic buckle 143 is elastically connected with the connecting part 142 along a first direction, part of the structure of the connecting part 142 abuts against the first clamping protrusion 1226 along a second direction, the elastic buckle 143 abuts against the second clamping protrusion 1227 along the second direction, and part of the structure of the connecting part 142 exposed to the through hole 1225 is provided with the film 144 forming a sticking surface 141.

[0085] The through hole 1225 refers to a hole-shaped structure penetrating through the base, which can be realized by forming a rectangular or circular through hole 1225 on the surface of the base by injection molding process, for accommodating part of the structure of the connecting part 142 and forming a space nesting. The first clamping protrusion 1226 and the second clamping protrusion 1227 refer to hard protrusion structures arranged on the inner side wall of the through hole 1225, which can be realized by a plastic protrusion formed integrally with the base, and the connecting part 142 is constrained in two directions by vertical abutment. The elastic buckle 143 refers to a clamping component with elastic deformation capability, which can be realized by a spring steel sheet or an elastic plastic part, and the elastic buckle 143 is detachably connected with the second clamping protrusion 1227 by elastic deformation. The connecting part 142 refers to a rigid component of the sticking assembly 140 clamped with the base, which can be made of ABS plastic or a metal sheet, and part of the structure of the connecting part 142 is embedded in the through hole 1225 and limited by the first clamping protrusion 1226.

[0086] Specifically, when the connecting part 142 is inserted into the through hole 1225, the side surface of the connecting part 142 is in contact with the first clamping protrusion 1226 in the vertical direction to be fixed, and the elastic buckle 143 is restored after being compressed and is limited by the second clamping protrusion 1227 in the vertical direction, and the connecting part 142 and the elastic buckle 143 are limited in the horizontal direction by the side wall of the through hole 1225, so as to realize double constraints in the horizontal and vertical directions. The part of the connecting part 142 exposed to the through hole 1225 covers the film 144 to form a flat sticking surface 141, so that the sticking assembly 140 is flush with the surface of the base. When disassembled, the elastic buckle 143 is pressed to be separated from the second clamping protrusion 1227, so that the sticking assembly 140 can be pulled out in the vertical direction, and the structure is not damaged by hard pulling.

[0087] The embodiments of the utility model are described in detail in combination with the drawings above, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range possessed by ordinary skilled in the art without departing from the purpose of the utility model. Besides, the embodiments of the utility model and the features in the embodiments can be combined with each other without conflict.

Claims

1. An electronic device support, characterized by, The electronic device support comprises: a support body; a first support assembly comprising a first support and a first base, one end of the first support being connected to the support body, the other end of the first support being connected to the first base, and the first base being provided with a first suction cup; a second support assembly comprising a second support and a second base, one end of the second support being connected to the support body, the other end of the second support being connected to the second base; the electronic device support has a first state, when the electronic device support is in the first state, the first suction cup is adsorbed to the second base to relatively fix the first base and the second base.

2. The electronic device holder of claim 1, wherein, The second base is provided with a second suction cup. The number of the first suction cup is consistent with that of the second suction cup, when the electronic device support is in the first state, the first suction cup and the second suction cup are adsorbed to each other one by one. Or, the first base has a first side surface, the first suction cup is arranged on the first side surface, the second base has a second side surface, the second suction cup is arranged on the second side surface, the first suction cup and the second suction cup are arranged in a staggered manner, when the electronic device support is in the first state, the first suction cup is adsorbed to the second side surface, and the second suction cup is adsorbed to the first side surface.

3. The electronic device holder of claim 2, wherein, The electronic device support also has a second state, when the electronic device support is in the second state, at least one of the first suction cup and the second suction cup is adsorbed to an external support structure.

4. The electronic device holder of claim 1, wherein, The first base comprises a first seat body and an adapter, the adapter is a hard piece, the adapter is connected to the first seat body, and the adapter has a first mounting groove. The first suction cup comprises a mounting portion and an adsorption portion connected to each other, the mounting portion is arranged in the first mounting groove, and at least part of the structure of the adsorption portion is exposed to the first mounting groove.

5. The electronic device holder of claim 4, wherein, The first seat body has a second mounting groove, the adapter is arranged in the second mounting groove, and at least part of the structure of the adsorption portion is exposed to the second mounting groove.

6. The electronic device holder of claim 1, wherein, One side of the second base forms an adsorbed surface, when the electronic device support is in the first state, the first suction cup is adsorbed to the adsorbed surface.

7. The electronic device holder of claim 6, wherein, The second base comprises a second seat body and an adsorbed body, the adsorbed body is a hard piece, the adsorbed body is connected to the second seat body, and one side of the adsorbed body away from the second seat body forms the adsorbed surface.

8. The electronic device holder of claim 1, wherein, At least one of the first support and the second support has a plastic deformation structure; and / or, The first support and the first base are movably connected, the first base is configured to move relative to the first support to adjust the relative position of the first base and the second base; and / or, The second support and the second base are movably connected, the second base is configured to move relative to the second support to adjust the relative position of the first base and the second base.

9. The electronic device holder according to any one of claims 1 to 8, wherein, The electronic device support further comprises a sticking assembly, at least the first base is provided with the sticking assembly, the sticking assembly has a sticking surface, and the sticking surface and the first suction cup are located on different sides of the first base.

10. The electronic device holder of claim 9, wherein, The sticking assembly is detachably connected with the first base; or, The first base and the second base are both detachably connected with the sticking assembly; or, The number of the sticking assemblies is two, and the two sticking assemblies are respectively detachably connected with the first base and the second base.

11. The electronic device holder of claim 9, wherein, The first base is provided with a through hole, and a side wall of the through hole is provided with oppositely arranged first and second clamping protrusions; The sticking assembly comprises a connecting portion, an elastic buckle and a film, the elastic buckle is elastically connected with the connecting portion along a first direction, part of the structure of the connecting portion abuts against the first clamping protrusion along a second direction, the elastic buckle abuts against the second clamping protrusion along the second direction, part of the structure of the connecting portion is exposed to the through hole, the film is arranged on the part of the structure of the connecting portion exposed to the through hole, and the film forms the sticking surface; Wherein, the first direction is the interval direction of the first clamping protrusion and the second clamping protrusion, and the second direction is the through direction of the through hole.