Protective sleeve and electronic device assembly

By designing the first mounting component and the sliding component in the protective case, the problem that electronic devices can only be installed in one direction is solved, and the stable installation and diversified cooperation of electronic devices in multiple directions in the protective case are realized.

CN116211043BActive Publication Date: 2026-04-17VIVO MOBILE COMM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
VIVO MOBILE COMM CO LTD
Filing Date
2023-01-29
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the existing technology, electronic devices can only be installed into protective cases in a single direction, which makes it impossible to use them in a variety of ways with protective cases.

Method used

Design a protective cover comprising a body, a first mounting component, a sliding component, and a fixing component. The first mounting component fixes the electronic device in a first direction, and the sliding component and the fixing component cooperate in a second direction to achieve multi-directional installation of the electronic device.

Benefits of technology

It enables stable installation of electronic devices in multiple directions within the protective case, enhancing the diverse ways in which the protective case and electronic devices can be combined.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application provides a protective case and an electronic device assembly, belonging to the technical field of protective cases. The protective case includes: a body, a first mounting component, a sliding component, and a fixing component; the first mounting component is disposed on the body; the body has a mounting groove, and the sliding component and the fixing component are disposed in the mounting groove, with the sliding component and the fixing component positioned opposite each other. The first mounting component supports the electronic device in a first direction, and the mounting groove supports the electronic device in a second direction; when the electronic device is located on the mounting surface along the first direction, the first mounting component fixes the electronic device, thereby mounting the electronic device on the mounting surface; when the electronic device is located in the mounting groove along the second direction, the electronic device abuts against the sliding component, and the electronic device can drive the sliding component to move, causing the sliding component to rotate, thereby fixing the electronic device; wherein the first direction and the second direction are different.
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Description

Technical Field

[0001] This application relates to the field of protective case technology, specifically to a protective case and electronic device components. Background Technology

[0002] With the development of technology, electronic devices are becoming increasingly widely used. Typically, electronic devices can be used to watch videos, take pictures, and so on. To prevent damage from drops, protective cases are usually installed on electronic devices. However, current technology limits the installation of protective cases to a single orientation, hindering the versatility of using protective cases with electronic devices. Summary of the Invention

[0003] This application provides a protective case and an electronic device assembly to solve the problem in related technologies that electronic devices can only be installed in a protective case in a single direction, which is not conducive to the diverse use of the protective case to connect with electronic devices.

[0004] To solve the above-mentioned technical problems, this application is implemented as follows:

[0005] In a first aspect, embodiments of this application provide a protective sleeve, the protective sleeve comprising: a body, a first mounting component, a sliding component, and a fixing component;

[0006] The first mounting component is disposed on the body;

[0007] The main body is provided with a mounting groove, the sliding component and the fixing component are disposed in the mounting groove, the sliding component and the fixing component are positioned opposite each other, the first mounting component is used to support the electronic device in a first direction, and the mounting groove is used to support the electronic device in a second direction;

[0008] When the electronic device is located on the mounting surface along the first direction, the first mounting component secures the electronic device so that the electronic device is mounted on the mounting surface;

[0009] When the electronic device is located in the mounting slot along the second direction, the electronic device abuts against the sliding assembly, the electronic device can drive the sliding assembly to move, and the sliding assembly drives the fixing assembly to rotate, so that the fixing assembly fixes the electronic device;

[0010] The first direction is different from the second direction.

[0011] Secondly, embodiments of this application provide an electronic device component, including an electronic device and the protective sleeve described in the first aspect above.

[0012] In this embodiment, since the first mounting component is disposed on the main body, after the electronic device is placed on the main body, it can be fixed by the first mounting component, so that the electronic device is fixed on the main body along the first direction. Since the main body is provided with a mounting groove, and the sliding component and the fixing component are disposed in the mounting groove with their positions opposite each other, when the electronic device is placed in the mounting groove, the sliding component cooperates with the fixing component, so that the electronic device is fixed in the mounting groove along the second direction. Specifically, when the electronic device is located on the mounting surface along the first direction, the first mounting component fixes the electronic device, so that the electronic device is mounted on the mounting surface; when the electronic device is located in the mounting groove along the second direction, the electronic device abuts against the sliding component, thereby driving the sliding component to move, and the sliding component drives the fixing component to rotate, so that the fixing component fixes the electronic device, so that the electronic device is mounted in the mounting groove. That is, in the embodiments of this application, by setting a first mounting component and setting a mounting groove on the body, and setting a sliding component and a fixing component in the mounting groove, the electronic device can be mounted on the mounting surface along the first direction through the first mounting component, and the electronic device can also be mounted in the mounting groove along the second direction through the sliding component and the fixing component. Thus, the electronic device can be mounted in the protective case in multiple directions, and the electronic device can be used in combination with the protective case in a variety of ways. Attached Figure Description

[0013] Figure 1 This is a schematic diagram showing an electronic device installed in a mounting slot according to an embodiment of this application;

[0014] Figure 2 This diagram illustrates a protective sleeve provided in an embodiment of this application.

[0015] Figure 3 This is one of the schematic diagrams showing a sliding component and a fixing component when an electronic device provided in this application is not installed in a mounting slot;

[0016] Figure 4 This is a schematic diagram illustrating the sliding component and the fixing component during the installation of an electronic device in a mounting slot according to an embodiment of this application.

[0017] Figure 5 This is one of the schematic diagrams showing a sliding component and a fixing component after an electronic device provided in this application is installed in a mounting slot;

[0018] Figure 6 This is an exploded view of a second mounting component provided in an embodiment of this application;

[0019] Figure 7 This is an exploded view of the body of a protective sleeve provided in an embodiment of this application;

[0020] Figure 8 This is a second schematic diagram showing the sliding component and the fixing component after an electronic device provided in this application is installed in a mounting slot;

[0021] Figure 9 This is a second schematic diagram showing the sliding component and the fixing component when an electronic device provided in this application is not installed in the mounting slot;

[0022] Figure 10 This is a cross-sectional view of the sliding component and the fixed component of an electronic device provided in this application embodiment when it is not installed in the mounting slot;

[0023] Figure 11 This is a cross-sectional view of the sliding component and the fixed component when an electronic device provided in this application is installed in a mounting slot.

[0024] Figure label:

[0025] 10: Body; 20: First mounting component; 30: Sliding component; 40: Fixing component; 11: Outer leather sleeve; 12: Intermediate plate; 13: Inner leather sleeve; 101: Mounting groove; 131: Clearance hole; 31: Elastic element; 32: Sliding table; 41: Rotating shaft; 42: Fixing table; 43: Transmission plate; 1011: Slide groove; 1012: Fixing groove; 421: Movable plate; 422: Fixing boss; 100: Electronic equipment. Detailed Implementation

[0026] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0027] It should be understood that the phrase "one embodiment" or "an embodiment" throughout the specification means that a specific feature, structure, or characteristic related to the embodiment is included in at least one embodiment of this application. Therefore, "in one embodiment" or "in an embodiment" appearing throughout the specification does not necessarily refer to the same embodiment. Furthermore, these specific features, structures, or characteristics can be combined in any suitable manner in one or more embodiments.

[0028] like Figures 1 to 11 As shown, the protective sleeve includes: a body 10, a first mounting component 20, a sliding component 30, and a fixing component 40.

[0029] A first mounting component 20 is disposed on the body 10. The body 10 is provided with a mounting groove 101, and a sliding component 30 and a fixing component 40 are disposed in the mounting groove 101. The sliding component 30 and the fixing component 40 are positioned opposite each other. The first mounting component 20 is used to support the electronic device 100 in a first direction, and the mounting groove 101 is used to support the electronic device 100 in a second direction. When the electronic device 100 is located on the mounting surface along the first direction, the first mounting component 20 fixes the electronic device 100 so that the electronic device 100 is mounted on the mounting surface. When the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, and the electronic device 100 can drive the sliding component 30 to move. The sliding component 30 drives the fixing component 40 to rotate so that the fixing component 40 fixes the electronic device 100. The first direction and the second direction are different.

[0030] In this embodiment, since the first mounting component 20 is disposed on the body 10, after the electronic device 100 is placed on the body 10, it can be fixed by the first mounting component 20, so that the electronic device 100 is fixed on the body 10 along the first direction. Since the body 10 is provided with a mounting groove 101, and the sliding component 30 and the fixing component 40 are disposed in the mounting groove 101, with the sliding component 30 and the fixing component 40 positioned opposite each other, when the electronic device 100 is placed in the mounting groove 101, the sliding component 30 cooperates with the fixing component 40, so that the electronic device 100 is fixed in the mounting groove 101 along the second direction. Specifically, when the electronic device 100 is located on the mounting surface along the first direction, the first mounting component 20 fixes the electronic device 100 to the mounting surface. When the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, thereby driving the sliding component 30 to move. The sliding component 30 drives the fixing component 40 to rotate, thereby fixing the electronic device 100 to the mounting groove 101. That is, in this embodiment, by setting the first mounting component 20 and the mounting groove 101 on the body 10, and setting the sliding component 30 and the fixing component 40 in the mounting groove 101, the electronic device 100 can be mounted on the mounting surface along the first direction via the first mounting component 20, and can also be mounted in the mounting groove 101 along the second direction via the sliding component 30 and the fixing component 40. Thus, the electronic device 100 can be mounted in the protective sleeve in multiple directions, allowing for diverse ways of using the protective sleeve with the electronic device 100.

[0031] It should be noted that the angle between the first direction and the second direction can be 90 degrees, that is, the first direction is perpendicular to the second direction. For example, the first direction is a horizontal direction and the second direction is a vertical direction perpendicular to the horizontal direction. Thus, the electronic device 100 can be fixed to the mounting surface in the horizontal direction by the first mounting component 20, and the electronic device 100 can be fixed in the mounting groove 101 in the vertical direction by the second mounting component 30.

[0032] In addition, in this embodiment, the mounting slot 101 may extend along the second direction, so that after the electronic device 100 is placed in the mounting slot 101, the electronic device 100 is positioned along the second direction.

[0033] In addition, in this embodiment, the first mounting component 20 may be located outside the mounting slot 101.

[0034] In addition, in this embodiment, the sliding component 30 and the fixed component 40 can contact each other. In this case, when the electronic device 100 is placed in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, thereby causing the sliding component 30 to drive the fixed component 40 to rotate. Alternatively, the sliding component 30 and the fixed component 40 can be connected. In this case, when the electronic device 100 is placed in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, thereby causing the sliding component 30 to drive the fixed component 40 to rotate. The sliding component 30 and the fixed component 40 can also have a certain distance between them. In this case, when the electronic device 100 is placed in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, the sliding component 30 first slides a certain distance, and then abuts against the fixed component 40, thereby driving the fixed component 40 to rotate. The specific relationship between the sliding component 30 and the fixed component 40 is not limited in this embodiment.

[0035] In some embodiments, the first mounting component 20 may include either a magnetic element or a snap-fit.

[0036] The first mounting component 20 can be a magnetic component. In this case, a magnetic component can also be provided on the electronic device 100. After the electronic device 100 is mounted on the mounting surface, the magnetic component on the electronic device 100 and the first mounting component 20 will attract each other, thereby fixing the electronic device 100 on the mounting surface along the first direction.

[0037] The first mounting component 20 can be a snap fastener. In this case, when the electronic device 100 is mounted on the mounting surface, the electronic device 100 can be fixed by the snap fastener, so that the electronic device 100 is fixed on the mounting surface along the first direction.

[0038] Of course, the first mounting component 20 can also be of other types, for example, the first mounting component 20 can be a ribbon. The specific type of the first mounting component 20 is not limited in this embodiment.

[0039] It should be noted that when the first mounting component 20 is a magnetic element, the magnetic element can be housed within the body 10, thus preventing it from protruding from the mounting surface and improving the aesthetics of the protective cover. When the first mounting component 20 is a snap-fit, the snap-fit ​​can be located on the mounting surface, specifically at a corner of the mounting surface.

[0040] Furthermore, in this embodiment, the number of first mounting components 20 can be set according to actual needs. For example, the number of first mounting components 20 may be 4, or even 8. This embodiment does not limit the specific number of first mounting components 20.

[0041] In some embodiments, the sliding component 30 is disposed at the bottom of the mounting groove 101, and the fixing component 40 is disposed on the wall of the mounting groove 101, with the fixing component 40 rotatably connected to the wall of the mounting groove 101. When the electronic device 100 is located in the mounting groove 101 along the second direction, the sliding component 30 slides along the direction close to the fixing component 40 and drives the fixing component 40 to rotate, so that the fixing component 40 rotates to a first rotation position. When the fixing component 40 is in the first rotation position, the fixing component 40 fixes the electronic device 100. When the fixing component 40 rotates from the first rotation position to the second rotation position, the fixing component 40 drives the sliding component 30 to slide, and the sliding component 30 slides along the direction away from the fixing component 40 and drives the electronic device 100 away from the mounting groove 101.

[0042] Since the sliding component 30 is disposed at the bottom of the mounting groove 101 and the fixing component 40 is disposed on the wall of the mounting groove 101, and the fixing component 40 is rotatably connected to the wall of the mounting groove 101, the fixing component 40 can be rotated relative to the wall of the mounting groove 101 by the cooperation of the sliding component 30 and the fixing component 40, thereby fixing the electronic device 100 or releasing the fixing of the electronic device 100. Specifically, when the electronic device 100 is located in the mounting slot 101 along the second direction, the electronic device 100 applies force to the sliding component 30, causing the sliding component 30 to slide in a direction close to the fixed component 40. During the sliding process, the sliding component 30 drives the fixed component 40 to rotate, so that the fixed component 40 rotates to a first rotation position. When the fixed component 40 is in the first rotation position, the fixed component 40 fixes the electronic device 100. When the electronic device 100 is removed from the mounting slot 101, the electronic device 100 stops applying force to the sliding component 30 and can apply force to the fixed component 40, causing the fixed component 40 to rotate to a second rotation position. That is, when the fixed component 40 rotates from the first rotation position to the second rotation position, the fixed component 40 drives the sliding component 30 to slide, and the sliding component 30 will slide in a direction away from the fixed component 40. The fixed component 40 releases the fixation of the electronic device 100. During the sliding process, the sliding component 30 drives the electronic device 100 away from the mounting slot 101. That is, by setting the sliding component 30 and the fixing component 40, it is easy to fix the electronic device 100 in the mounting slot 101 and also easy to remove the electronic device 100 from the mounting slot 101.

[0043] It should be noted that when removing the electronic device 100 from the mounting slot 101, the user can apply force to the fixing component 40, causing it to rotate from the first rotation position to the second rotation position. The fixing component 40 then releases its fixation of the electronic device 100. During this rotation, the fixing component 40 comes into contact with the sliding component 30, causing it to move. When installing the electronic device 100 into the mounting slot 101, the user can apply force to the sliding component 30 through the electronic device 100, causing it to slide. This slides the sliding component 30, causing it to rotate to the first rotation position, thus securing the electronic device 100.

[0044] In some embodiments, the sliding assembly 30 may include an elastic element 31 and a sliding platform 32. One end of the elastic element 31 is fixed to the bottom of the mounting groove 101, and the sliding platform 32 is connected to the other end of the elastic element 31, with the extension and retraction direction of the elastic element 31 parallel to the sliding direction of the sliding platform 32. When the electronic device 100 is located in the mounting groove 101 along the second direction, the elastic element 31 is in a stretched state, and the sliding platform 32 slides along the direction close to the fixed assembly 40, causing the fixed assembly 40 to rotate. When the fixed assembly 40 rotates from the first rotation position to the second rotation position, the elastic element 31 returns to its original state, and the fixed assembly 40 and the elastic element 31 cause the sliding platform 32 to slide along the direction away from the fixed assembly 40, driving the electronic device away from the mounting groove 101.

[0045] Since one end of the elastic element 31 is fixed to the bottom of the mounting groove 101, and the sliding table 32 is connected to the other end of the elastic element 31, and the extension and retraction direction of the elastic element 31 is parallel to the sliding direction of the sliding table 32, the position of the sliding table 32 changes when the electronic device 100 is placed in or removed from the mounting groove 101, thereby changing the position of the fixing component 40. Specifically, when the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 contacts the sliding table 32, thereby applying force to the sliding table 32, causing the sliding table 32 to stretch the elastic element 31. The elastic element 31 is in a stretched state, and the sliding table 32 slides towards the fixing component 40. The sliding table 32 cooperates with the fixing component 40, and the sliding table 32 drives the fixing component 40 to rotate, causing the fixing component 40 to rotate to the first rotation position, whereby the fixing component 40 fixes the electronic device 100. When it is necessary to remove the electronic device 100 from the mounting groove 101, that is, when the fixing component 40 rotates from the first rotation position... When the electronic device 100 reaches the second rotation position, it stops applying force to the sliding table 32 and can apply force to the fixing component 40, causing the fixing component 40 to release the fixing of the electronic device 100. As a result, the fixing component 40 rotates to the second rotation position, and the fixing drives the sliding table 32 to slide. At the same time, due to its own elasticity, the elastic element 31 returns to its original state and also applies force to the sliding table 32. That is, the fixing component 40 and the elastic element 31 simultaneously drive the sliding table 32 to slide in a direction away from the fixing component 40. During the sliding process, the sliding table 32 applies force to the electronic device 100, causing the electronic device to move away from the mounting slot 101.

[0046] Additionally, in some embodiments, the surface of the sliding stage 32 facing away from the fixing component 40 can be an inclined surface. When the fixing component 40 rotates from a first rotational position to a second rotational position, the sliding stage 32 slides away from the fixing component 40, and the position where the electronic device abuts against the inclined surface moves from the first position to the second position on the inclined surface, so that the electronic device 100 is away from the mounting groove 101.

[0047] When the sliding platform 32 is inclined away from the surface of the fixing component 40, when the electronic device 100 is removed from the mounting slot 101, that is, when the fixing component 40 rotates from the first rotation position to the second rotation position, the elastic member 31 applies force to the sliding platform 32. The sliding platform 32 slides away from the fixing component 40 along the direction from the bottom to the opening of the mounting slot 101, and the inclined surface abuts against the electronic device 100 at different positions. That is, the position where the electronic device 100 abuts against the inclined surface moves from the first position to the second position on the inclined surface. Thus, the inclined surface of the sliding platform 32 applies force to the electronic device 100, causing the electronic device 100 to be lifted up, thereby moving the electronic device 100 away from the mounting slot 101, and making it easier to remove the electronic device 100. Among them, the first position is close to the bottom of the mounting slot 101, and the second position is away from the bottom of the mounting slot 101.

[0048] Furthermore, since the surface of the sliding platform 32 facing away from the fixing component 40 is inclined, when the electronic device 100 is placed in the mounting slot 101, the electronic device 100 contacts the inclined surface of the sliding platform 32, allowing the electronic device 100 to slide down along the inclined surface. That is, along the direction from the opening to the bottom of the mounting slot 101, different positions of the inclined surface abut against the electronic device 100; specifically, the contact position between the electronic device 100 and the inclined surface moves from a second position to a first position. This causes the electronic device 100 to exert force on the sliding platform 32, causing it to slide closer to the fixing component 40. In other words, by setting the surface of the sliding platform 32 facing away from the fixing component 40 to be inclined, it is beneficial for the electronic device 100 to be installed in the mounting slot 101.

[0049] In some embodiments, the bottom of the mounting groove 101 is provided with a sliding groove 1011, the extension direction of the sliding groove 1011 being the same as the extension direction of the elastic member 31. One end of the elastic member 31 is fixed to the groove wall of the sliding groove 1011, and the sliding platform 32 is located in the sliding groove 1011 and can slide along the sliding groove 1011.

[0050] Since the extension direction of the slide groove 1011 is the same as the extension direction of the elastic member 31, and one end of the elastic member 31 is fixed to the groove wall of the slide groove 1011, and the sliding table 32 is located in the slide groove 1011, when the electronic device 100 is installed in the mounting slot 101, the electronic device 100 applies force to the sliding table 32, causing the sliding table 32 to move in the direction toward the fixing component 40. This causes the sliding table 32 to stretch the elastic member 31, keeping it in a stretched state. During the sliding process of the sliding table 32, the groove wall of the slide groove 1011 can limit the sliding table 32 to prevent it from shifting position during sliding. In other words, by setting the slide groove 1011, the sliding of the sliding table 32 can be limited, preventing the sliding table 32 from shifting position during sliding, which could lead to problems with the cooperation between the sliding table 32 and the fixing component 40.

[0051] In some embodiments, the fixing component 40 may include a rotating shaft 41, a fixing platform 42, and a transmission plate 43. The fixing platform 42 is connected to the rotating shaft 41, and the transmission plate 43 is connected to the outer wall of the rotating shaft 41. A fixing groove 1012 is provided on the groove wall of the mounting groove 101, and both ends of the rotating shaft 41 are rotatably connected to the groove wall of the fixing groove 1012. When the electronic device 100 is located in the mounting groove 101 along the second direction, the sliding component 30 slides along the direction close to the fixing component 40 and drives the transmission plate 43 to move. The transmission plate 43 drives the rotating shaft 41 to rotate, and the rotating shaft 41 drives the fixing platform 42 to rotate to the first rotation position. The fixing platform 42 fixes the electronic device 100. When the fixing platform 42 rotates from the first rotation position to the second rotation position, the fixing platform 42 drives the rotating shaft 41 to rotate, the rotating shaft 41 drives the transmission plate 43 to rotate, and the transmission plate 43 drives the sliding component 30 to slide. The sliding component 30 slides along the direction away from the fixing component 40 and drives the electronic device 100 away from the mounting groove 101.

[0052] Since the fixed platform 42 is connected to the rotating shaft 41, and the transmission plate 43 is connected to the outer wall of the rotating shaft 41, a fixed groove 1012 is provided on the groove wall of the mounting groove 101. The two ends of the rotating shaft 41 are rotatably connected to the groove wall of the fixed groove 1012. Therefore, when the transmission plate 43 is subjected to force, the transmission plate 43 can drive the rotating shaft 41 to rotate, thereby the rotating shaft 41 drives the fixed platform 42 to rotate, or when the fixed platform 42 is subjected to force, the fixed platform 42 drives the rotating shaft 41 to rotate, and the rotating shaft 41 drives the transmission plate 43 to move. Specifically, when the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 applies force to the sliding component 30, causing the sliding component 30 to slide along the direction close to the fixed component 40. During the sliding process, the sliding component 30 abuts against the transmission plate 43 and applies force to the transmission plate 43, causing the transmission plate 43 to move. That is, during the sliding process, the sliding component 30 drives the transmission plate 43 to move, and the transmission plate 43 will drive the rotating shaft 41 to rotate. The rotating shaft 41 drives the fixed platform 42 to rotate to the first rotation position, thereby fixing the electronic device 100 with the fixed platform 42. When the electronic device 100 is removed from the mounting slot 101, the user can apply force to the fixing platform 42, causing the fixing platform 42 to rotate to the second rotation position. That is, when the fixing platform 42 rotates from the first rotation position to the second rotation position, the fixing platform 42 releases the fixing of the electronic device 100. The fixing platform 42 drives the rotating shaft 41 to rotate, and the rotating shaft 41 drives the transmission plate 43 to rotate. The transmission plate 43 abuts against the sliding component 30, thereby the transmission plate 43 drives the sliding component 30 to slide. The sliding component 30 slides in a direction away from the fixing component 40, and the sliding component 30 drives the electronic device 100 away from the mounting slot 101.

[0053] It should be noted that when the sliding assembly 30 includes the elastic element 31 and the sliding table 32, when the electronic device 100 is installed in the mounting slot 101, the electronic device 100 applies force to the sliding table 32, so that the sliding table 32 slides in the direction close to the fixed assembly 40, that is, the sliding table 32 moves in the direction close to the transmission plate 43. The sliding table 32 contacts the transmission plate 43 and applies force to the transmission plate 43, so that the transmission plate 43 drives the rotating shaft 41 to rotate, and then the rotating shaft 41 drives the fixed table 42 to rotate. When the electronic device 100 is removed from the mounting slot 101, by applying force to the fixed table 42, the fixed table 42 drives the rotating shaft 41 to rotate, the rotating shaft 41 drives the transmission plate 43 to move, the transmission plate 43 abuts against the sliding table 32 and applies force to the sliding table 32. At the same time, the elastic element 31 applies force to the sliding table 32, so that the sliding table 32 returns to its original position. Furthermore, during the resetting process of the sliding table 32, the sliding table 32 applies force to the electronic device 100, causing the electronic device 100 to be lifted up, that is, the electronic device 100 is moved away from the mounting slot 101, making it easier for the user to remove the electronic device 100.

[0054] In some embodiments, the fixed platform 42 may include a movable plate 421 and a fixed boss 422. The movable plate 421 is connected to the rotating shaft 41, and the fixed boss 422 is disposed on the surface of the movable plate 421. When the electronic device 100 is located in the mounting groove 101 along the second direction, the movable plate 421 rotates to a first rotation position, and the fixed boss 422 fixes the electronic device 100. When the movable plate 421 rotates from the first rotation position to a second rotation position, the movable plate 421 drives the rotating shaft 41 to rotate, the rotating shaft 41 drives the transmission plate 43 to rotate, the transmission plate 43 drives the sliding assembly 30 to slide, and the sliding assembly 30 slides in a direction away from the fixed assembly 40 and drives the electronic device 100 away from the mounting groove 101.

[0055] Since the movable plate 421 is connected to the rotating shaft 41, and the fixed boss 422 is disposed on the surface of the movable plate 421, when the movable plate 421 rotates with the rotating shaft 41, the movable plate 421 will drive the fixed boss 422 to move, causing the position of the fixed boss 422 to change. Specifically, when the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 applies force to the sliding assembly 30, the sliding assembly 30 drives the transmission plate 43 to move, the transmission plate 43 drives the rotating shaft 41 to rotate, the rotating shaft 41 drives the movable plate 421 to rotate, and the rotating shaft 41 drives the fixed boss 422 to move. When the movable plate 421 rotates to the first rotation position, the fixed boss 422 fixes the electronic device 100. When it is necessary to remove the electronic device 100 from the mounting groove 101, the electronic device 100 stops applying force to the sliding assembly 30, and the user can apply force to the fixed boss. 422 is applied force, causing the fixed boss 422 to move. The fixed boss 422 drives the movable plate 421 to rotate. When the movable plate 421 rotates from the first rotation position to the second rotation position, the movable plate 421 drives the rotating shaft 41 to rotate. The rotating shaft 41 drives the transmission plate 43 to rotate. The transmission plate 43 abuts against the sliding component 30, and the sliding component 30 slides away from the rotating shaft 41. When the movable plate 421 has rotated to the second rotation position, the fixed boss 422 releases the fixation of the electronic device 100, and the sliding component 30 drives the electronic device 100 away from the mounting groove 101.

[0056] In some embodiments, the fixed boss 422 may be an elastic fixed boss.

[0057] When the fixed boss 422 is a flexible fixed boss, it may come into contact with the electronic device 100 when fixing it. The flexible fixed boss causes less wear and tear on the electronic device 100, thus providing some protection. Furthermore, as a flexible fixed boss, when the user applies force to it, causing the movable plate 421 to move, the flexible fixed boss provides a better feel when it comes into contact with the user's hand.

[0058] It should be noted that the fixing boss 422 can be made of rubber, but it can also be made of other materials, such as silicone. The specific material of the fixing boss 422 is not limited in this embodiment.

[0059] In some embodiments, the body 10 may include an outer leather sleeve 11, a middle plate 12, and an inner leather sleeve 13. The outer leather sleeve 11, the middle plate 12, and the inner leather sleeve 13 are stacked. The inner leather sleeve 13 is provided with a clearance hole 131, and the middle plate 12 is provided with a mounting groove 101. The clearance hole 131 is opposite to the opening of the mounting groove 101, and the clearance hole 131 avoids the mounting groove 101. A first mounting component 20 is mounted on the outer leather sleeve 11, and the first mounting component 20 is located between the outer leather sleeve 11 and the middle plate 12.

[0060] Since the clearance hole 131 is opposite to the opening of the mounting slot 101, and the clearance hole 131 avoids the mounting slot 101, the inner leather sleeve 13 will not obstruct the electronic device 100 when it is installed in the mounting slot 101, and the inner leather sleeve 13 will not obstruct the user's hand when the electronic device is removed from the mounting slot 101.

[0061] It should be noted that when the first mounting component 20 is a magnetic component, the magnetic component is mounted on the outer leather sleeve 11, and the magnetic component is located between the outer leather sleeve 11 and the intermediate plate 12.

[0062] In addition, the intermediate plate 12 can be made of fiberglass board. Of course, the intermediate plate 12 can also be made of other materials, such as plastic board. The specific material of the intermediate plate 12 is not limited in this embodiment.

[0063] Furthermore, both the outer leather sleeve 11 and the inner leather sleeve 13 can be made of polyurethane. Of course, other materials can also be used, such as silicone. This application does not limit the specific materials used in this embodiment.

[0064] In this embodiment, since the first mounting component 20 is disposed on the body 10, after the electronic device 100 is placed on the body 10, it can be fixed by the first mounting component 20, so that the electronic device 100 is fixed on the body 10 along the first direction. Since the body 10 is provided with a mounting groove 101, and the sliding component 30 and the fixing component 40 are disposed in the mounting groove 101, with the sliding component 30 and the fixing component 40 positioned opposite each other, when the electronic device 100 is placed in the mounting groove 101, the sliding component 30 cooperates with the fixing component 40, so that the electronic device 100 is fixed in the mounting groove 101 along the second direction. Specifically, when the electronic device 100 is located on the mounting surface along the first direction, the first mounting component 20 fixes the electronic device 100 to the mounting surface. When the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, thereby driving the sliding component 30 to move. The sliding component 30 drives the fixing component 40 to rotate, thereby fixing the electronic device 100 to the mounting groove 101. That is, in this embodiment, by setting the first mounting component 20 and the mounting groove 101 on the body 10, and setting the sliding component 30 and the fixing component 40 in the mounting groove 101, the electronic device 100 can be mounted on the mounting surface along the first direction via the first mounting component 20, and can also be mounted in the mounting groove 101 along the second direction via the sliding component 30 and the fixing component 40. Thus, the electronic device 100 can be mounted in the protective sleeve in multiple directions, allowing for diverse ways of using the protective sleeve with the electronic device 100.

[0065] This application provides an electronic device assembly, which includes an electronic device 100 and a protective cover as described in any of the above embodiments.

[0066] In this embodiment, since the first mounting component 20 is disposed on the body 10, after the electronic device 100 is placed on the body 10, it can be fixed by the first mounting component 20, so that the electronic device 100 is fixed on the body 10 along the first direction. Since the body 10 is provided with a mounting groove 101, and the sliding component 30 and the fixing component 40 are disposed in the mounting groove 101, with the sliding component 30 and the fixing component 40 positioned opposite each other, when the electronic device 100 is placed in the mounting groove 101, the sliding component 30 cooperates with the fixing component 40, so that the electronic device 100 is fixed in the mounting groove 101 along the second direction. Specifically, when the electronic device 100 is located on the mounting surface along the first direction, the first mounting component 20 fixes the electronic device 100 to the mounting surface. When the electronic device 100 is located in the mounting groove 101 along the second direction, the electronic device 100 abuts against the sliding component 30, thereby driving the sliding component 30 to move. The sliding component 30 drives the fixing component 40 to rotate, thereby fixing the electronic device 100 to the mounting groove 101. That is, in this embodiment, by setting the first mounting component 20 and the mounting groove 101 on the body 10, and setting the sliding component 30 and the fixing component 40 in the mounting groove 101, the electronic device 100 can be mounted on the mounting surface along the first direction via the first mounting component 20, and can also be mounted in the mounting groove 101 along the second direction via the sliding component 30 and the fixing component 40. Thus, the electronic device 100 can be mounted in the protective sleeve in multiple directions, allowing for diverse ways of using the protective sleeve with the electronic device 100.

[0067] It should be noted that, in the embodiments of this application, the electronic device 100 includes, but is not limited to, mobile phones, tablet computers, laptop computers, etc.

[0068] It should be noted that the various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0069] Although optional embodiments of the present application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the optional embodiments as well as all changes and modifications falling within the scope of the embodiments of the present application.

[0070] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used merely to distinguish one entity from another, and do not necessarily require or imply any such actual relationship or order between these entities. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that an article or terminal device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such an article or terminal device. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the article or terminal device that includes that element.

[0071] The technical solutions provided in this application have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the principles and implementation methods of this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A protective sleeve, characterized in that The protective sleeve includes: a body, a first mounting component, a sliding component, and a fixing component; The first mounting component is disposed on the body; The main body is provided with a mounting groove, the sliding component and the fixing component are disposed in the mounting groove, the sliding component and the fixing component are positioned opposite each other, the first mounting component is used to support the electronic device in a first direction, and the mounting groove is used to support the electronic device in a second direction; When the electronic device is located on the mounting surface along the first direction, the first mounting component secures the electronic device so that the electronic device is mounted on the mounting surface; When the electronic device is located in the mounting groove along the second direction, the electronic device abuts against the sliding assembly, the electronic device can drive the sliding assembly to move, and the sliding assembly drives the fixing assembly to rotate, so that the fixing assembly fixes the electronic device; The first direction is different from the second direction.

2. The protective sleeve of claim 1, wherein, The sliding component is disposed at the bottom of the mounting groove, and the fixing component is disposed on the wall of the mounting groove, and the fixing component is rotatably connected to the wall of the mounting groove. When the electronic device is located in the mounting groove along the second direction, the sliding component slides along the direction close to the fixing component and drives the fixing component to rotate, so that the fixing component rotates to a first rotation position. When the fixing component is in the first rotation position, the fixing component fixes the electronic device. When the fixing component rotates from the first rotation position to the second rotation position, the fixing component drives the sliding component to slide, and the sliding component slides away from the fixing component and drives the electronic device away from the mounting slot.

3. The protective sleeve according to claim 2, characterized in that, The sliding assembly includes an elastic element and a sliding platform; One end of the elastic element is fixed to the bottom of the mounting groove, the sliding table is connected to the other end of the elastic element, and the extension and retraction direction of the elastic element is parallel to the sliding direction of the sliding table. When the electronic device is located in the mounting groove along the second direction, the elastic member is in a stretched state, and the sliding table slides along the direction close to the fixing component and drives the fixing component to rotate; When the fixing component rotates from the first rotation position to the second rotation position, the elastic element returns to its original state, and the fixing component and the elastic element drive the sliding table to slide in a direction away from the fixing component, and the sliding table drives the electronic device away from the mounting slot.

4. The protective sleeve according to claim 3, characterized in that, The surface of the sliding platform that is away from the fixed component is an inclined surface; When the fixing component rotates from the first rotation position to the second rotation position, the sliding table slides away from the fixing component, and the position where the electronic device abuts the inclined surface moves from the first position of the inclined surface to the second position, so that the electronic device moves away from the mounting slot.

5. The protective sleeve according to claim 3, characterized in that, The bottom of the mounting groove is provided with a sliding groove, and the extension direction of the sliding groove is the same as the extension and contraction direction of the elastic element. One end of the elastic element is fixed to the groove wall of the slide, the sliding table is located in the slide, and the sliding table can slide along the slide.

6. The protective sleeve according to claim 2, characterized in that, The fixing assembly includes a rotating shaft, a fixing platform, and a transmission plate. The fixing platform is connected to the rotating shaft, and the transmission plate is connected to the outer wall of the rotating shaft. The mounting groove has a fixing groove on its wall, and the two ends of the rotating shaft are rotatably connected to the wall of the fixing groove. When the electronic device is located in the mounting slot along the second direction, the sliding component slides along the direction close to the fixing component and drives the transmission plate to move. The transmission plate drives the rotating shaft to rotate, and the rotating shaft drives the fixing platform to rotate to the first rotation position. The fixing platform fixes the electronic device. When the fixed platform rotates from the first rotation position to the second rotation position, the fixed platform drives the rotating shaft to rotate, the rotating shaft drives the transmission plate to rotate, the transmission plate drives the sliding assembly to slide, and the sliding assembly slides away from the fixed assembly and drives the electronic device away from the mounting slot.

7. The protective sleeve according to claim 6, characterized in that, The fixed platform includes a movable plate and a fixed boss. The movable plate is connected to the rotating shaft, and the fixed boss is disposed on the surface of the movable plate. When the electronic device is located in the mounting groove along the second direction, the movable plate rotates to the first rotation position, and the fixed boss fixes the electronic device. When the movable plate rotates from the first rotation position to the second rotation position, the movable plate drives the rotating shaft to rotate, the rotating shaft drives the transmission plate to rotate, the transmission plate drives the sliding component to slide, and the sliding component slides away from the fixed component and drives the electronic device away from the mounting slot.

8. The protective sleeve according to claim 7, characterized in that, The fixed boss is an elastic fixed boss.

9. The protective sleeve according to any one of claims 1-8, characterized in that, The body includes an outer leather sleeve, a middle plate, and an inner leather sleeve; The outer leather sleeve, the intermediate plate, and the inner leather sleeve are stacked together. The inner leather sleeve is provided with a clearance hole, and the intermediate plate is provided with a mounting groove. The clearance hole and the opening of the mounting groove are opposite to each other, and the clearance hole avoids the mounting groove. The first mounting component is mounted on the outer leather sleeve, and the first mounting component is located between the outer leather sleeve and the intermediate plate.

10. An electronic device component, characterized in that, Includes electronic devices and the protective case according to any one of claims 1-9.

Citation Information

Patent Citations

  • Magnetic protection shell for tablet personal computer

    CN216670625U

  • Protective sleeve for electronic equipment

    CN217771676U