Electronic device

By setting independent pinholes and ejection components on the mounting bracket of the electronic device, the problem of difficulty in removing the clamp tray when the equipment falls is solved, and the stable release of the clamp tray and the strength of the equipment structure is achieved.

CN120185631APending Publication Date: 2025-06-20BEIJING XIAOMI MOBILE SOFTWARE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202311757248.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-19
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

In existing electronic devices, the structural strength of the tray handle becomes weak due to the setting of the pinhole, which is prone to deform when the equipment falls, making it difficult to remove the tray.

Method used

An electronic device is designed, and the mounting bracket is equipped with a clamp slot and an independent clamp pinhole. The clamp pinhole is separated from the clamp body by the ejection assembly. The clamp assembly moves under the action of external force to push the clamp assembly to escape from the clamp slot.

Benefits of technology

It effectively avoids the problem of difficult to remove the tray caused by drops in electronic equipment. The independent pinhole structure reduces the impact on the tray handle and improves the stability of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120185631A_ABST
    Figure CN120185631A_ABST
Patent Text Reader

Abstract

The invention relates to electronic equipment, and belongs to the technical field of terminal equipment. At least one part of an ejection assembly in the electronic equipment is accommodated in a card pin hole, and the ejection assembly is configured to move in the card pin hole to abut against a card support assembly in response to external force applied to an exposed end, so that a card support body in the card support assembly moves in the direction of being separated from a card support groove. The exposed end is one end, exposed out of the second end, of the ejection assembly; wherein the ejection assembly is separated from the card holder body, the included angle between the direction from the first end to the second end and a set plane is not zero, and the set plane is perpendicular to the opening direction of the card holder groove and parallel to the releasing direction of the card holder body. According to the electronic equipment provided by the invention, the problem that the card support is difficult to take out due to falling of the electronic equipment can be effectively avoided.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present disclosure relates to the technical field of terminal equipment, and in particular to an electronic device. Background Art

[0002] Mobile phones and other electronic devices are usually provided with a card tray hole and a card pin hole. The card tray hole is used to accommodate a card tray with a chip card, and the card pin hole is used to accommodate a push rod. The card pin pokes the push rod on the card tray through the card pin hole, and the card tray can be automatically ejected from the card tray hole, thereby removing the card.

[0003] In the related art, the card holder hole is usually set at the corner of the electronic device, and the card pin hole is set on the card holder handle. The setting of the card pin hole will weaken the structural strength of the card holder handle. When the electronic device falls, the card holder handle and the card pin hole on it are easy to collide and deform, making it difficult for the push rod to move in the card pin hole, and then making it difficult to remove the card holder. Summary of the invention

[0004] In order to overcome the problems existing in the related art, the present disclosure provides an electronic device, which can effectively prevent the card tray from being difficult to remove due to the electronic device falling. The technical solution is as follows:

[0005] An embodiment of the present disclosure provides an electronic device, the electronic device comprising a mounting bracket, a card tray assembly and an ejection assembly;

[0006] The mounting bracket is provided with a card holder slot and a card pin hole, wherein the card holder slot is connected to a first end of the card pin hole, and a second end of the card pin hole away from the card holder slot is connected to the outside of the electronic device;

[0007] At least a portion of the card tray assembly is accommodated in the card tray slot;

[0008] At least a portion of the ejector assembly is accommodated in the card pin hole, and the ejector assembly is configured to move in the card pin hole to abut against the card tray assembly in response to an external force applied to the exposed end, so that the card tray body in the card tray assembly moves in a direction of escaping from the card tray slot, and the exposed end is an end of the ejector assembly exposed at the second end;

[0009] Wherein, the ejection assembly is separated from the card holder body, and the angle between the direction from the first end to the second end and a set plane is not zero, and the set plane is perpendicular to the opening direction of the card holder slot and parallel to the ejection direction of the card holder body.

[0010] In some embodiments, the card pin hole includes a first hole and a second hole that are connected to each other, an end of the second hole away from the first hole is connected to the card tray slot, and a central axis of the first hole intersects with a central axis of the second hole;

[0011] The ejecting assembly includes a first connecting member and a second connecting member. The first connecting member is at least partially received in the first hole, and the first connecting member is at least partially received in the second hole, and

[0012] At least one of the first connecting member and the second connecting member has a guiding inclined surface, and the guiding inclined surface is configured to push the second connecting member to move in the second hole toward the inside of the card slot when the first connecting member moves in the first hole toward the second hole.

[0013] In some embodiments, each of the first connecting member and the second connecting member has one such guiding inclined surface, and the two guiding inclined surfaces are in contact with each other;

[0014] At least one of the guiding inclined surfaces has at least one guiding protrusion, and the extending direction of the guiding protrusion is parallel to the relative movement direction between the two guiding inclined surfaces.

[0015] In some embodiments, the electronic device further includes an elastic member, and the elastic member is connected between the mounting bracket and the second connecting member, and the elastic member is configured to drive the ejecting assembly to reset in response to the cancellation of the external force.

[0016] In some embodiments, the first connecting member has a first limiting protrusion, and the mounting bracket further has a first limiting wall. The first limiting protrusion is configured to cooperate with the first limiting wall to limit the first initial position of the first connecting member. The first initial position is the position of the first connecting member in the first hole when no external force is applied; and / or,

[0017] The second connecting member has a second limiting protrusion, and the mounting bracket further has a second limiting wall. The second limiting protrusion is configured to cooperate with the second limiting wall to limit the second initial position of the second connecting member. The second initial position is the position of the second connecting member in the second hole when no external force is applied.

[0018] In some embodiments, the second hole further includes a first sub-hole and a second sub-hole, and the first hole communicates with the second sub-hole through the first sub-hole;

[0019] The central axis of the first sub-hole coincides with the central axis of the second sub-hole, and the aperture of the first sub-hole is larger than the aperture of the second sub-hole;

[0020] Wherein, when the first connecting member is in the first initial position, the first limiting protrusion abuts against the inner wall of the first sub-hole adjacent to the inner wall of the first hole; and / or, when the second connecting member is in the first initial position, the second limiting protrusion abuts against the inner wall of the first sub-hole away from the second sub-hole along its circumferential direction.

[0021] In some embodiments, the electronic device further includes a seal;

[0022] The seal is sleeved outside the second connecting member, and the seal abuts against the inner wall of the second hole.

[0023] In some embodiments, the mounting bracket is a middle frame, and the electronic device further includes a screen;

[0024] There is a gap between the screen and the middle frame, and the second end of the pin hole communicates with the gap; and / or, at least part of the screen covers the exposed end of the ejecting assembly.

[0025] In some embodiments, the mounting bracket is provided with a sound channel, and the second end of the pin hole communicates with the gap through the sound channel;

[0026] Wherein, the sound channel is either an out-sound channel or a sound-pickup channel, and correspondingly, the gap is configured as an out-sound hole of a receiver or a sound-pickup hole of a microphone.

[0027] In some embodiments, the opening direction of the second end of the pin hole is perpendicular to the set plane; and / or,

[0028] The pin hole is located in the middle part of the side of the electronic device, and the side is parallel to the set plane.

[0029] The technical solutions provided by the embodiments of the present application may include the following beneficial effects:

[0030] In the embodiments of the present application, by separating the ejecting assembly from the card tray body, the pin hole for accommodating the ejecting assembly can be independent of the card tray body. Compared with the prior art in which the pin hole is provided on the card tray body, when the electronic device drops, the pin hole will not be deformed by the deformed card tray body; further, since the angle between the direction from the first end to the second end of the pin hole and the set plane perpendicular to the opening direction of the card tray slot is not zero, when the electronic device drops and causes deformation at the corner, the collision impact on the pin hole can be reduced, thereby further avoiding deformation due to the drop of the electronic device. Therefore, the electronic device provided by the embodiments of the present application can effectively avoid the difficulty in taking out the card tray due to the drop of the electronic device.

[0031] It should be understood that the above general description and the following detailed description are merely exemplary and explanatory, and do not limit the present disclosure. Brief Description of the Drawings

[0032] The drawings herein are incorporated into and constitute a part of this specification, showing embodiments consistent with the present disclosure, and are used together with the specification to explain the principles of the present disclosure. In the drawings:

[0033] Figure 1 is a schematic cross-sectional structure diagram of an electronic device shown according to an embodiment;

[0034] Figure 2 is a schematic structure diagram of an ejection assembly of an electronic device shown according to an embodiment;

[0035] Figure 3 is a first schematic structure diagram of an electronic device shown according to an embodiment;

[0036] Figure 4 is Figure 3 an enlarged view of part A in

[0037] Figure 5 is a schematic structure diagram of an ejection assembly and an ejection component of an electronic device shown according to an embodiment;

[0038] Figure 6 is a second schematic structure diagram of an electronic device shown according to an embodiment;

[0039] Figure 7 is a third schematic structure diagram of an electronic device shown according to an embodiment.

[0040] Legend Explanation

[0041] 1. Mounting bracket; 11. Card slot; 12. Card pin hole; 121. First hole; 122. Second hole; 1221. First sub-hole; 12211. First limiting wall; 12212. Second limiting wall; 1222. Second sub-hole; 13. Sound channel;

[0042] 2. Card tray assembly; 21. Card tray body;

[0043] 3. Ejection assembly; 31. First connecting member; 311. First limiting protrusion; 32. Second connecting member; 321. Second limiting protrusion; 33. Guide inclined surface; 331. Guide protrusion;

[0044] 4. Elastic member;

[0045] 5. Sealing member;

[0046] 6. Screen; 61. Gap;

[0047] 7. Accessories; 71. Strip holes;

[0048] 8. Receiver;

[0049] 9. Pop-up assembly; 91. Push rod; 92. Rotating member.

[0050] The above drawings show clear embodiments of the present disclosure, which will be described in more detail below. These drawings and text descriptions are not intended to limit the scope of the present disclosure in any way, but to illustrate the concepts of the present disclosure to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0051] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the following exemplary embodiments do not represent all implementations consistent with the present disclosure. Instead, they are merely examples of devices consistent with some aspects of the present disclosure as detailed in the attached claims. In order to make the technical solutions and advantages of the present disclosure clearer, the structure, functions and advantages of the card tray mounting assembly will be described in detail below in conjunction with the accompanying drawings.

[0052] like Figure 1 As shown, the electronic device provided by the embodiment of the present application includes a mounting bracket 1, a card tray assembly 2 and an ejection assembly 3; the mounting bracket 1 is provided with a card tray slot 11 and a card pin hole 12, the card tray slot 11 is connected to the first end of the card pin hole 12, and the second end of the card pin hole 12 away from the card tray slot 11 is connected to the outside of the electronic device. At least a portion of the card tray assembly 2 is accommodated in the card tray slot 11; at least a portion of the ejection assembly 3 is accommodated in the card pin hole 12, and the ejection assembly 3 is configured to move in the card pin hole 12 to abut against the card tray assembly 2 in response to an external force applied to the exposed end, so that the card tray body 21 in the card tray assembly 2 moves in the direction of escaping from the card tray slot 11, and the exposed end is the end of the ejection assembly 3 exposed at the second end.

[0053] The ejection assembly 3 is separated from the card holder body 21 , and the angle between the direction from the first end to the second end and the set plane is not zero. The set plane is perpendicular to the opening direction of the card holder slot 11 and parallel to the ejection direction of the card holder body 21 .

[0054] In the embodiments of the present application, by separating the ejecting component 3 from the card tray body 21, the ejecting pin hole 12 for accommodating the ejecting component 3 can be independent of the card tray body 21. Compared with the prior art in which the ejecting pin hole is provided on the card tray body, when the electronic device drops, the ejecting pin hole 12 will not be deformed by the deformed card tray body 21; further, since the angle between the direction from the first end to the second end of the ejecting pin hole 12 and the set plane perpendicular to the opening direction of the card tray groove 11 is not zero, when the electronic device drops and causes deformation at the corner, the collision impact received by the ejecting pin hole 12 can be reduced, thereby further avoiding deformation due to the drop of the electronic device. Therefore, the electronic device provided by the embodiments of the present application can effectively avoid the difficulty of removing the card tray due to the drop of the electronic device.

[0055] In some embodiments, the direction from the first end to the second end can be understood as the direction of the ray from the center of the first end of the ejecting pin hole 12 to the center of the second end. The center of the first end and the center of the second end are both located on the central axis of the ejecting pin hole 12. In some embodiments, the set plane can pass through the center of the first end of the ejecting pin hole 12. In Figure 1 the perspective shown, the opening direction of the card tray groove 11 is vertically downward, and the ejecting direction of the card tray body 21 is from left to right.

[0056] In some embodiments, as Figure 1 and Figure 4 shown, the opening direction of the second end of the ejecting pin hole 12 is perpendicular to the set plane. In other words, the angle between the direction from the first end to the second end and the set plane is 90°. In other embodiments, the range of this angle can vary between 60° - 120°.

[0057] In some embodiments, the ejecting pin hole 12 is located in the middle part of the side of the electronic device, and the side is parallel to the set plane. For example, this side can be the width side of the electronic device, and this width side can be the top edge where the earpiece of the electronic device is located, or the bottom edge where the microphone is located.

[0058] In some embodiments, as Figure 1As shown, the ejector pin hole 12 includes a first hole 121 and a second hole 122 that are in communication with each other. One end of the second hole 122 away from the first hole 121 is in communication with the card tray slot 11, and the central axis of the first hole 121 intersects the central axis of the second hole 122. The ejecting assembly 3 includes a first connecting member 31 and a second connecting member 32. The first connecting member 31 is at least partially received in the first hole 121, and the first connecting member 31 is at least partially received in the second hole 122. At least one of the first connecting member 31 and the second connecting member 32 has a guiding inclined surface 33, and the guiding inclined surface 33 is configured to push the second connecting member 32 to move in the second hole 122 toward the inside of the card tray slot 11 when the first connecting member 31 moves in the first hole 121 toward the direction close to the second hole 122.

[0059] In some embodiments, as Figure 1 shown, the central axis of the first hole 121 and the central axis of the second hole 122 may be substantially perpendicular. Among them, the central axis of the first hole 121 may be parallel to the above-mentioned set plane, so that the extending direction of the first hole 121 may be parallel to the ejecting direction of the card tray body 21. And the central axis of the second hole 122 is perpendicular to the set plane. With such a setting, the efficiency of the first connecting member 31 in the ejecting assembly 3 to push the second connecting member 32 to move can be improved.

[0060] In some embodiments, one of the first connecting member 31 and the second connecting member 32 may be provided with a guiding inclined surface 33, and the end of the other may abut against the guiding inclined surface 33, and when the first connecting member 31 moves due to an external force (for example Figure 1 moving downward in), the end can slide on the guiding inclined surface 33 to push the second connecting member 32 to move in a direction different from that of the first connecting member.

[0061] In other words, through the inclined surface matching structure between the first connecting member 31 and the second connecting member 32, the direction change of applying an external force by taking out the ejector pin is realized.

[0062] In some embodiments, as Figure 1 and Figure 2 shown, the first connecting member 31 and the second connecting member 32 each have a guiding inclined surface 33, and the two guiding inclined surfaces 33 are in contact; at least one of the guiding inclined surfaces 33 has at least one guiding protrusion 331, and the extending direction of the guiding protrusion 331 is parallel to the relative movement direction between the two guiding inclined surfaces 33.

[0063] In some embodiments, the guiding protrusion 331 may be a rib, and the guiding protrusion 331 may be provided on the guiding inclined surface 33 of the first connecting member 31. By providing the guiding protrusion 331, the surface contact between the two guiding inclined surfaces 33 can be converted into line contact, which is convenient for the movement of the first connecting member 31 and the second connecting member 32.

[0064] In some embodiments, the guiding inclined surface 33 of the second connecting member 32 may also have at least one guiding protrusion 331, and the guiding protrusions 331 respectively provided on the first connecting member 31 and the second connecting member 32 may be arranged at intervals parallel to each other.

[0065] In some embodiments, the number of guiding protrusions 331 provided on each guiding inclined surface 33 may be one, two, three or more.

[0066] In some embodiments, as Figure 1 and Figure 2 shown, the electronic device further includes an elastic member 4. The elastic member 4 is connected between the mounting bracket 1 and the second connecting member 32, and the elastic member 4 is configured to drive the ejecting assembly 3 to reset in response to the removal of an external force.

[0067] In some embodiments, the elastic member 4 may be, for example, a spring. By providing the elastic member 4, when the external force applied by the ejecting pin is removed, automatic reset of the ejecting assembly 3 can be achieved.

[0068] When connecting the elastic member 4 between the mounting bracket 1 and the second connecting member 32, exemplarily, one end of the elastic member 4 is connected to the second connecting member 32 by dispensing glue, and the other end is connected to the mounting bracket 1 by dispensing glue. In the embodiments of the present application, as Figure 5 shown, the electronic device further includes a pop-up assembly 9. The pop-up assembly 9 may include a connected push rod 91 and a rotating member 92, wherein one end of the push rod 91 away from the rotating member 92 may be configured to abut against one end of the second connecting member 32 away from the first connecting member 31.

[0069] When taking out the card, the exposed end of the first connecting member 31 is poked with an ejecting pin to drive the first connecting member 31 to move (for example Figure 1 downward movement in Figure 1 ). Through the inclined surface guiding structure (for example, the guiding inclined surface 33) between the first connecting member 31 and the second connecting member 32, the second connecting member 32 moves in the direction close to the inside of the card slot 11 (for example

[0070] leftward movement in

[0071] ), so as to abut against the push rod 91; the movement of the push rod 91 drives the rotating member 92 to rotate, so as to abut against and eject the card tray body 21. Figure 4As shown, the first connecting member 31 has a first limiting protrusion 311, and the mounting bracket 1 further has a first limiting wall 12211. The first limiting protrusion 311 is configured to cooperate with the first limiting wall 12211 to limit the first initial position of the first connecting member 31. The first initial position is the position of the first connecting member 31 in the first hole 121 when no external force is applied.

[0072] In some embodiments, as Figure 4 shown, the second connecting member 32 has a second limiting protrusion 321, and the mounting bracket 1 further has a second limiting wall 12212. The second limiting protrusion 321 is configured to cooperate with the second limiting wall 12212 to limit the second initial position of the second connecting member 32. The second initial position is the position of the second connecting member 32 in the second hole 122 when no external force is applied.

[0073] Through the cooperation of the limiting protrusions (such as the first limiting protrusion 311 and the second limiting protrusion 321) and the limiting walls (such as the first limiting wall 12211 and the second limiting wall 12212), the limit positions of the first connecting member 31 or the second connecting member 32 when they return under the restoring force of the elastic member 4 are restricted.

[0074] In some embodiments, as Figure 4 shown, the second hole 122 further includes a first sub-hole 1221 and a second sub-hole 1222. The first hole 121 communicates with the second sub-hole 1222 through the first sub-hole 1221. The central axis of the first sub-hole 1221 coincides with the central axis of the second sub-hole 1222, and the aperture of the first sub-hole 1221 is larger than the aperture of the second sub-hole 1222. Wherein, when the first connecting member 31 is in the first initial position, the first limiting protrusion 311 abuts against the inner wall of the first sub-hole 1221 adjacent to the inner wall of the first hole 121; and / or, when the second connecting member 32 is in the first initial position, the second limiting protrusion 321 abuts against the inner wall of the first sub-hole 1221 that is circumferentially away from the second sub-hole 1222.

[0075] In other words, the inner wall of the first sub-hole 1221 adjacent to the inner wall of the first hole 121 can serve as the first limiting wall 12211 that cooperates with the first limiting protrusion 311; the inner wall of the first sub-hole 1221 that is circumferentially away from the second sub-hole 1222 can serve as the second limiting wall 12212 that cooperates with the second limiting protrusion 321.

[0076] By using the first sub-hole 1221 with a larger aperture to simultaneously achieve the limiting of the first connecting member 31 and the second connecting member 32, the structure is relatively simple.

[0077] As Figure 2 and Figure 4As shown, the first connecting member 31 may further include a first body, and the first limiting protrusion 311 may be connected to one side of the first body close to the second connecting member 32; alternatively, the second connecting members 32 may be symmetrically arranged on opposite sides of the first body. Exemplarily, the first body may be substantially cylindrical to facilitate accommodation in the first hole 121. The first limiting protrusion 311 may be provided in the shape of a boss, so as to form a plane between the first body and the first limiting protrusion 311 that is convenient for engaging with the first limiting wall 12211.

[0078] The second connecting member 32 may further include a second body, and the second body may be, for example, cylindrical; the second limiting protrusion 321 may protrude relative to the second body along the circumferential direction of the second body, so as to form an annular protrusion.

[0079] The elastic member 4 may be sleeved on the second body of the second connecting member 32, and one end of the elastic member 4 connected to the second connecting member 32 may specifically abut against the second limiting protrusion 321.

[0080] In some embodiments, as Figure 1 shown, the electronic device may further include a sealing member 5; the sealing member 5 is sleeved on the outside of the second connecting member 32, and the sealing member 5 abuts against the inner wall of the second hole 122.

[0081] Exemplarily, the sealing member 5 may be a rubber ring. Therefore, the rubber ring is used to cooperate with the card pin hole 12 on the middle frame for sealing. There is a shield of the first connecting member 31 and the second connecting member 32 in front of the rubber ring, which directly increases the sealing path and can effectively solve the problem of liquid and foreign matter entering the terminal.

[0082] In some embodiments, as Figure 7 shown, the mounting bracket 1 is a middle frame, and the electronic device further includes a screen 6; there is a gap 61 between the screen 6 and the middle frame, and the second end of the card pin hole 12 communicates with the gap 61. In addition, the screen 6 may at least partially cover the exposed end of the ejecting assembly 3.

[0083] By communicating the card pin hole 12 with the gap 61 between the screen 6 and the middle frame, the card pin can be inserted into the card pin hole 12 through the gap 61. And by setting the insertion position of the card pin on the front of the electronic device and designing the card pin hole 12 to be able to shield the exposed end of the ejecting assembly 3 by the screen 6, it is possible to better avoid deformation of the ejecting assembly 3 and the card pin hole 12 due to the fall of the electronic device.

[0084] In some embodiments, as Figure 4 shown, the mounting bracket 1 is provided with a sound channel 13, and the second end of the card pin hole 12 can communicate with the gap 61 through the sound channel 13. Among them, the sound channel 13 is either an out-sound channel or a sound-pickup channel, and correspondingly, the gap 61 is configured as an out-sound hole of a receiver or a sound-pickup hole of a microphone.

[0085] In other words, in the embodiments of the present application, the sound outlet hole or the sound pickup hole can be used as the insertion hole for the SIM card ejector pin, thereby reducing the number of openings and being beneficial to the integration of the electronic device.

[0086] In some embodiments, the second end of the SIM card ejector pin hole 12 can be perpendicular to the set plane, so that the SIM card ejector pin can be vertically inserted into the SIM card ejector pin hole 12, which can avoid scratching other structures.

[0087] Furthermore, the SIM card ejector pin hole 12 can be arranged in the middle part (instead of the corner) of the electronic device. Such an arrangement can further prevent the ejecting component 3 and the SIM card ejector pin hole 12 from being deformed due to the dropping of the electronic device.

[0088] In some embodiments, the orthographic projection of the second end of the SIM card ejector pin hole 12 on the set plane is located within the orthographic projection of the sound channel 13 on the set plane.

[0089] In some embodiments, the orthographic projection of the second end of the SIM card ejector pin hole 12 on the set plane is at least partially located within the orthographic projection of the gap 61 on the set plane.

[0090] In some embodiments, the orthographic projection of the second end of the SIM card ejector pin hole 12 on the set plane is only partially located within the orthographic projection of the gap 61 on the set plane and partially located outside the orthographic projection of the gap 61 on the set plane.

[0091] In some embodiments, the size of the sound channel 13 can be larger than the size of the second end of the SIM card ejector pin hole 12, and the second end can be opened in the middle part of the sound channel 13.

[0092] In some embodiments, as Figure 6 and Figure 7 shown, the electronic device further includes an accessory 7, at least a part of the accessory 7 is accommodated in the sound channel 13, and as Figure 4 shown, the accessory 7 can be provided with a strip-shaped hole 71, and the sound channel 13 on the middle frame can be communicated to the gap 61 between the screen 6 and the middle frame through the strip-shaped hole 71 on the accessory.

[0093] In some embodiments, the accessory 7 can be, for example, a decorative part. In some embodiments, the accessory 7 can be made of a deformable material, for example, it can be foam, so that when the electronic device drops, the deformable accessory 7 can play a buffering role and reduce the deformation of the middle frame and the screen 6.

[0094] The above embodiments are described by taking a mobile phone as an example. However, the electronic device provided by the present disclosure can also be any one of electronic devices such as a tablet computer, a laptop computer, a computer, a television, a camera, etc.

[0095] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "plural" refers to two or more, unless otherwise specifically defined.

[0096] Other embodiments of the present disclosure will be readily apparent to those skilled in the art after considering the specification and practicing the embodiments disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include known common general knowledge or conventional technical means in the technical field not disclosed herein. The specification and examples are only to be considered as exemplary, and the true scope and spirit of the present disclosure are pointed out by the claims above.

[0097] It should be understood that the present disclosure is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.

Claims

1. An electronic device, characterized in that, The electronic device includes a mounting bracket (1), a card tray assembly (2), and an ejecting assembly (3); A card tray slot (11) and a card pin hole (12) are formed in the mounting bracket (1). The card tray slot (11) communicates with a first end of the card pin hole (12), and a second end of the card pin hole (12) away from the card tray slot (11) communicates with the outside of the electronic device; At least a part of the card tray assembly (2) is received in the card tray slot (11); At least a part of the ejecting assembly (3) is received in the card pin hole (12), and the ejecting assembly (3) is configured to move in the card pin hole (12) to abut against the card tray assembly (2) in response to an external force applied to an exposed end, so that a card tray body (21) in the card tray assembly (2) moves in a direction to escape from the card tray slot (11). The exposed end is an end of the ejecting assembly (3) that is exposed at the second end; Wherein, the ejecting assembly (3) is separated from the card tray body (21), and the angle between the direction from the first end to the second end and a set plane is not zero. The set plane is perpendicular to the opening direction of the card tray slot (11) and parallel to the escaping direction of the card tray body (21).

2. The electronic device according to claim 1, characterized in that, The card pin hole (12) includes a first hole (121) and a second hole (122) that are connected and communicate with each other. One end of the second hole (122) away from the first hole (121) communicates with the card tray slot (11), and the central axis of the first hole (121) intersects with the central axis of the second hole (122); The ejecting assembly (3) includes a first connecting member (31) and a second connecting member (32). The first connecting member (31) is at least partially received in the first hole (121), and the first connecting member (31) is at least partially received in the second hole (122), and At least one of the first connecting member (31) and the second connecting member (32) has a guiding inclined surface (33). The guiding inclined surface (33) is configured to push the second connecting member (32) to move in the second hole (122) in a direction close to the inside of the card tray slot (11) when the first connecting member (31) moves in the first hole (121) in a direction close to the second hole (122).

3. The electronic device according to claim 2, characterized in that, The first connecting member (31) and the second connecting member (32) each have one guiding inclined surface (33), and the two guiding inclined surfaces (33) are in contact with each other; At least one of the guiding inclined surfaces (33) has at least one guiding protrusion (331), and the extending direction of the guiding protrusion (331) is parallel to the relative movement direction between the two guiding inclined surfaces (33).

4. The electronic device according to claim 2, characterized in that, The electronic device further includes an elastic member (4). The elastic member (4) is connected between the mounting bracket (1) and the second connecting member (32), and the elastic member (4) is configured to drive the ejecting assembly (3) to reset in response to the cancellation of the external force.

5. The electronic device according to claim 2, characterized in that, The first connecting member (31) has a first limiting protrusion (311), and the mounting bracket (1) further has a first limiting wall (12211). The first limiting protrusion (311) is configured to cooperate with the first limiting wall (12211) to limit the first initial position of the first connecting member (31). The first initial position is the position of the first connecting member (31) in the first hole (121) when no external force is applied; and / or, The second connecting member (32) has a second limiting protrusion (321), and the mounting bracket (1) further has a second limiting wall (12212). The second limiting protrusion (321) is configured to cooperate with the second limiting wall (12212) to limit the second initial position of the second connecting member (32). The second initial position is the position of the second connecting member (32) in the second hole (122) when no external force is applied.

6. The electronic device according to claim 5, characterized in that, The second hole (122) further includes a first sub-hole (1221) and a second sub-hole (1222), and the first hole (121) communicates with the second sub-hole (1222) through the first sub-hole (1221); The central axis of the first sub-hole (1221) coincides with the central axis of the second sub-hole (1222), and the aperture of the first sub-hole (1221) is larger than the aperture of the second sub-hole (1222); Wherein, when the first connecting member (31) is in the first initial position, the first limiting protrusion (311) abuts against the inner wall of the first sub-hole (1221) adjacent to the inner wall of the first hole (121); and / or, when the second connecting member (32) is in the first initial position, the second limiting protrusion (321) abuts against the inner wall of the first sub-hole (1221) away from the second sub-hole (1222) along its circumferential direction.

7. The electronic device according to any one of claims 1-6, characterized in that, The electronic device further includes a seal (5); The seal (5) is sleeved on the outer side of the second connecting member (32), and the seal (5) abuts against the inner wall of the second hole (122).

8. The electronic device according to any one of claims 1-6, characterized in that, The mounting bracket (1) is a middle frame, and the electronic device further includes a screen (6); There is a gap (61) between the screen (6) and the middle frame, and the second end of the eject pin hole (12) communicates with the gap (61); and / or, the screen (6) is at least partially 4.

9. The electronic device according to claim 8, characterized in that, The mounting bracket (1) is provided with a sound channel (13), and the second end of the eject pin hole (12) communicates with the gap (61) through the sound channel (13); Wherein, the sound channel (13) is either an out-sound channel or a sound-pickup channel. Correspondingly, the gap (61) is configured as an out-sound hole of a receiver or a sound-pickup hole of a microphone.

10. The electronic device according to any one of claims 1-6, characterized in that, The opening direction of the second end of the eject pin hole (12) is perpendicular to the set plane; and / or, The eject pin hole (12) is located in the middle part of the side of the electronic device, and the side is parallel to the set plane.