electronic devices
By designing an operating part in the electronic device to push the movable part out of the card slot, the cover body is disconnected from the shell, which solves the problem of static electricity damaging electronic components and improves the adaptability of the device.
Patent Information
- Application Number
- CN202211350621.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-31
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2042-10-31
AI Technical Summary
Electronic components of electronic devices are easily damaged by static electricity, resulting in poor adaptability.
An electronic device is designed, including a housing, a cover, a movable part and an operating part. The operating part pushes the movable part out of a slot, thereby disconnecting the cover from the housing and avoiding electrostatic damage caused by close proximity of hands to electronic components.
It effectively prevents static damage between hands and electronic components during manual operation and improves the adaptability of electronic equipment.
Smart Images

Figure CN115551261B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to an electronic device. Background Art
[0002] Electronic devices are devices that people use frequently; however, electronic components of electronic devices are easily damaged by static electricity, which makes the electronic devices less adaptable. Summary of the Invention
[0003] In view of this, an embodiment of the present application hopes to provide an electronic device.
[0004] To achieve the above objectives, the technical solution of this application is implemented as follows:
[0005] An embodiment of the present application provides an electronic device, the electronic device comprising:
[0006] A housing having a receiving space and an opening:
[0007] an electronic component, disposed in the accommodation space;
[0008] a cover body, rotatably connected to the shell and located at the opening;
[0009] A movable member is movably connected to the cover body; an end portion of the movable member can be clamped in a clamping groove of the shell to seal the cover body at the opening;
[0010] An operating member is movably arranged on the shell; the first end of the operating member corresponds to the end position of the movable member, and the second end of the operating member is exposed on the outer surface of the shell; the operating member can move under the action of an external force to push the movable member to move relative to the cover body so that the end of the movable member disengages from the slot.
[0011] In some optional implementations, the end of the movable part is clamped in the slot of the shell, and when the operating part moves in the first direction under the action of external force, the movable part moves in the first direction relative to the cover body, and the cover body rotates in the second direction relative to the shell.
[0012] In some optional implementations, the first end of the operating member has a first inclined surface, and the end of the movable member has a second inclined surface; the end of the movable member is clamped in the clamping slot of the shell, and when the operating member moves in a first direction under the action of external force, the first inclined surface abuts against the second inclined surface to cause the movable member to move in the first direction relative to the cover body, and the cover body rotates in the second direction relative to the shell.
[0013] In some optional implementations, the first end of the operating member further has a first plane connected to the first inclined surface, and the end of the movable member further has a first arc surface connected to the second inclined surface, and the first arc surface corresponds to the position of the first plane.
[0014] In some optional implementations, the electronic device further includes: an elastic member, the elastic member being disposed between the operating member and the cover, the elastic member being configured to position the movable member in a first position relative to the cover;
[0015] When the end portion of the movable member is locked in the locking groove of the housing, the movable member is in the first position.
[0016] In some optional implementations, the end of the movable part is clamped in the slot, and when the operating part moves in the first direction under the action of an external force, the first inclined surface of the first end of the operating part abuts against the second inclined surface of the end of the movable part, causing the movable part to move in the first direction relative to the cover body, and the cover body rotates in the second direction relative to the shell, and the elastic part is deformed; when the end of the movable part moves out of the slot, the second inclined surface of the end of the movable part abuts against the shell, and the deformation force of the elastic part can push the cover body to continue to rotate in the second direction relative to the shell.
[0017] In some optional implementations, the shell has an activity space, the operating member is suspended in the activity space, and the operating member is movable in the activity space.
[0018] In some optional implementations, the electronic device further includes: a connecting wall, and the operating member is connected to the housing through the connecting wall.
[0019] In some optional implementations, the distance between the second end of the operating member and the electronic component is greater than the distance between the movable member and the electronic component.
[0020] In some optional implementations, the housing has at least two openings, the electronic device includes at least two electronic components, and each electronic component corresponds to a position of one of the at least two openings;
[0021] The electronic device further comprises: at least two covers, at least two movable parts and at least two operating parts; one of the at least two openings is provided with a cover, a movable part and an operating part. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application;
[0023] Figure 2 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application;
[0024] Figure 3 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application;
[0025] Figure 4 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application;
[0026] Figure 5 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application;
[0027] Figure 6 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application;
[0028] Figure 7 This is a schematic diagram of an optional partial structure of an electronic device in an embodiment of the present application.
[0029] Figure numerals: 110, shell; 111, accommodating space; 112, opening; 113, slot; 114, movable space; 115, frame; 116, connecting part; 117, main body; 118, first slot; 119, second slot; 120, electronic component; 130, cover; 140, movable part; 141, second inclined surface; 142, first arc surface; 150, operating part; 151, first inclined surface; 152, first plane; 160, elastic part; 170, connecting wall. DETAILED DESCRIPTION
[0030] The various specific technical features in the various embodiments described in the specific implementation methods can be combined in various ways without contradiction. For example, different implementation methods can be formed by combining different specific technical features. In order to avoid unnecessary repetition, the various possible combinations of the specific technical features in this application will not be described separately.
[0031] In the description of the embodiments of this application, it should be noted that, unless otherwise specified and limited, the term "connection" should be understood in a broad sense. For example, it can be an electrical connection, or it can be the internal connection between two components. It can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meaning of the above terms can be understood according to the specific circumstances.
[0032] It should be noted that the terms "first, second, and third" in the embodiments of the present application are merely used to distinguish similar objects and do not represent a specific ordering of the objects. It is understood that the terms "first, second, and third" can be interchanged to represent a specific order or precedence where permitted. It should be understood that the objects distinguished by "first, second, and third" can be interchanged where appropriate, such that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.
[0033] The following combination Figures 1 to 7 The electronic device described in the embodiments of the present application is described in detail.
[0034] The electronic device includes a housing 110, an electronic component 120, a cover 130, a movable part 140 and an operating part 150. The housing 110 has a storage space 111 and an opening 112: the electronic component 120 is arranged in the storage space 111; the cover 130 is rotatably connected to the housing 110, and the cover 130 is located at the opening 112; the movable part 140 is movably connected to the cover 130; the end of the movable part 140 can be clamped in the clamping groove 113 of the housing 110 so that the cover 130 is blocked at the opening 112; the operating part 150 is movably arranged in the housing 110; the first end of the operating part 150 corresponds to the end position of the movable part 140, and the second end of the operating part 150 is exposed on the outer surface of the housing 110; the operating part 150 can be clamped on the outside The movable member 140 moves under the action of force to push the movable member 140 to move relative to the cover body 130 so that the end of the movable member 140 is disengaged from the slot 113; by applying external force to the second end of the operating member 150, the movable member 140 can be moved relative to the cover body 130 until the end of the movable member 140 is disengaged from the slot 113, thereby disconnecting the cover body 130 from the shell 110; there is no need to manually push the movable member 140 relative to the cover body 130 to disconnect the cover body 130 from the shell 110, thereby eliminating the problem of static electricity damaging the electronic component 120 due to the hand being too close to the electronic component 120 when manually pushing the movable member 140; and greatly improving the adaptability of electronic equipment.
[0035] In the embodiment of the present application, if the operating member 150 is not provided, the movable member 140 needs to be manually operated. When the movable member 140 is manually pushed to move relative to the cover body 130, the distance between the hand and the electronic component 120 is relatively close, and the static electricity brought by the human body can easily damage the electronic component 120. The present application is provided with an operating member 150, and by applying an external force to the second end of the operating member 150, the movable member 140 can be moved relative to the cover body 130 until the end of the movable member 140 is out of the card slot 113, thereby disconnecting the cover body 130 from the shell 110, thereby eliminating the problem of static electricity damaging the electronic component 120 due to the manual pushing of the movable member 140.
[0036] In the embodiments of the present application, the structure of the electronic device is not limited. For example, the electronic device can be a server or a host computer of a desktop computer.
[0037] In the embodiment of the present application, the structure of the housing 110 is not limited. For example, the housing 110 can be the housing 110 of a server or the housing 110 of a host.
[0038] In the embodiment of the present application, the structure of the electronic component 120 is not limited. For example, the electronic component 120 may include a circuit board, or may include electronic components disposed on the circuit board.
[0039] Here, the electronic component 120 may be fixed in the accommodation space 111 . Of course, the electronic component 120 may also be detachably disposed in the accommodation space 111 , and here, the electronic component 120 can be removed from the accommodation space 111 through the opening 112 .
[0040] In the embodiment of the present application, the structure of the cover 130 is not limited, as long as the cover 130 is located at the opening 112 and can block at least a portion of the opening 112 , so that the electronic component 120 is protected by the cover 130 .
[0041] Here, the cover 130 and the housing 110 may be rotatably connected via a rotating shaft structure.
[0042] Here, the material of the cover 130 is not limited. For example, the material of the cover 130 can be metal.
[0043] In the embodiment of the present application, the manner in which the movable member 140 is movably connected to the cover body 130 is not limited. For example, the cover body 130 has a first chute, and the first end of the movable member 140 is movably inserted into the first chute. The movable member 140 is movable relative to the cover body 130 by virtue of the first end of the movable member 140 being movably inserted into the first chute. For another example, the movable member 140 has a second chute, and the first end of the cover body 130 is movably inserted into the second chute. The movable member 140 is movable relative to the cover body 130 by virtue of the first end of the movable member 140 being movably inserted into the second chute.
[0044] Here, the end of the movable part 140 can be clamped in the slot 113 of the shell 110 so that the cover body 130 is blocked at the opening 112, so that the electronic component 120 is protected by the cover body 130 and the movable part 140; of course, when the end of the movable part 140 is located outside the slot 113 of the shell 110, the cover body 130 can also be rotated to make the opening 112 in an unblocked state, so that the electronic component 120 can be taken out of the accommodating space 111 or placed into the accommodating space 111 through the opening 112.
[0045] In the embodiment of the present application, the structure of the operating member 150 is not limited. For example, the operating member 150 can be a strip-shaped structure.
[0046] Here, the manner in which the operating member 150 is movably disposed on the housing 110 is not limited. For example, the housing 110 may have a third chute, and the first end of the operating member 150 may be movably inserted into the third chute. The operating member 150 is movable relative to the housing 110 by virtue of the first end of the operating member 150 being movably inserted into the third chute. Here, the third chute is in communication with the latching slot 113 of the housing 110.
[0047] Here, the first end of the operating member 150 corresponds to the end position of the movable member 140, so that the first end of the operating member 150 contacts the movable member 140, and the second end of the operating member 150 is exposed on the outer surface of the shell 110, so that external force can be applied to the second end of the operating member 150 to move the operating member 150.
[0048] Here, the distance between the second end of the operating member 150 and the electronic component 120 is greater than the distance between the movable member 140 and the electronic component 120. By applying external force to the second end of the operating member 150 which is at a greater distance from the electronic component 120, the problem of static electricity damaging the electronic component 120 due to the hand being too close to the electronic component 120 when manually pushing the movable member 140 can be eliminated.
[0049] In some optional implementations of the embodiments of the present application, the end of the movable part 140 is clamped in the slot 113 of the shell 110, and when the operating part 150 moves in the first direction under the action of an external force, the movable part 140 moves in the first direction relative to the cover body 130, and the cover body 130 rotates in the second direction relative to the shell 110 to open the cover body 130 and put the opening 112 in an unblocked state; here, under the action of an external force, the operating part 150 can not only move the movable part 140 in the first direction relative to the cover body 130 to make the end of the movable part 140 disengage from the slot 113, but also rotate the cover body 130 in the second direction relative to the shell 110 to open the cover body 130, which greatly simplifies the operating steps of opening the cover body 130.
[0050] In this implementation, the cover body 130 is opened by rotating in the second direction relative to the shell 110, which means that the cover body 130 is not blocked by the opening 112 relative to the shell 110. There is no limit on the angle at which the cover body 130 is rotated in the second direction relative to the shell 110. As long as the cover body 130 is rotated in the second direction relative to the shell 110, the distance between the movable part 140 and the cover body 130 relative to the shell 110 increases.
[0051] In this implementation, the end of the movable part 140 is clamped in the slot 113 of the shell 110. When the operating part 150 moves in the first direction under the action of external force, the movable part 140 moves in the first direction relative to the cover body 130, and the implementation method of the cover body 130 rotating in the second direction relative to the shell 110 is not limited.
[0052] For example, Figure 1 and Figure 2As shown, the first end of the operating member 150 has a first inclined surface 151, and the end of the movable member 140 has a second inclined surface 141; the end of the movable member 140 is clamped in the clamping groove 113 of the shell 110, and when the operating member 150 moves in the first direction under the action of an external force, the first inclined surface 151 abuts against the second inclined surface 141 to move the movable member 140 in the first direction relative to the cover body 130, and the cover body 130 rotates in the second direction relative to the shell 110; the end of the movable member 140 is clamped in the clamping groove 113 of the shell 110, and the operating member 150 moves in the first direction under the action of an external force. When moving in the first direction, the operating member 150 pushes the second inclined surface 141 through the first inclined surface 151 to make the movable member 140 move in the first direction relative to the cover body 130. At the same time, the movable member 140 moves along the first inclined surface 151 through the second inclined surface 141 to drive the cover body 130 to rotate in the second direction relative to the shell 110, thereby achieving the movable member 140 moving in the first direction relative to the cover body 130 and causing the end of the movable member 140 to disengage from the slot 113, and enabling the cover body 130 to rotate in the second direction relative to the shell 110 to open the cover body 130, which greatly simplifies the operating steps for opening the cover body 130.
[0053] In this example, when the end of the movable part 140 is clamped in the clamping groove 113 of the shell 110, the first inclined surface 151 and the second inclined surface 141 can meet the parallel condition, which means parallel or substantially parallel; so as to increase the contact area between the first inclined surface 151 and the second inclined surface 141, so that the operating part 150 can push the movable part 140 more smoothly.
[0054] In this example, the first direction is not limited. Figure 1 and Figure 2 As shown, the first direction may be the direction indicated by arrow A. The second direction is not limited. Figure 1 As shown, the second direction may be the rotation direction indicated by arrow B; the second direction may meet a perpendicular condition with the first direction, where the perpendicular condition refers to being perpendicular or substantially perpendicular.
[0055] In this example, the first direction and the first inclined surface 151 form a first angle, the first angle is greater than zero degrees, and the first angle is less than 90 degrees; so that when the operating member 150 moves in the first direction under the action of an external force, it can both push the movable member 140 to move in the first direction relative to the cover body 130, and make the cover body 130 rotate in the second direction relative to the shell 110.
[0056] In this example, the first end of the operating member 150 may also have a first plane 152 connected to the first inclined surface 151, and the end of the movable member 140 may also have a first arc surface 142 connected to the second inclined surface 141, and the first arc surface 142 corresponds to the position of the first plane 152. The end of the movable member 140 is clamped in the clamping slot 113 of the shell 110. When the operating member 150 moves in the first direction under the action of external force, the first inclined surface 151 abuts against the second inclined surface 141, and the first plane 152 abuts against the first arc surface 142, so that the movable member 140 moves in the first direction relative to the cover body 130, and the cover body 130 rotates in the second direction relative to the shell 110; the abutment between the first plane 152 and the first arc surface 142 can enable the external force applied to the operating member 150 to be transmitted to the movable member 140 more in the first direction, so that the movable member 140 moves more quickly and smoothly in the first direction relative to the cover body 130.
[0057] Here, the first inclined surface 151 and the first flat surface 152 may be smoothly connected via the second curved surface. The second inclined surface 141 and the first curved surface 142 may be directly and smoothly connected.
[0058] For another example, the first end of the operating member 150 may have a second flat surface, and the end of the movable member 140 may have a third flat surface. The cover 130 and the housing 110 are rotatably connected via a rotating shaft. The electronic device may further include a torsion spring, which is disposed outside the rotating shaft. The slot 113 of the housing 110 is provided with a third inclined surface. The end of the movable member 140 can abut against the third inclined surface. When the end of the movable member 140 is retained in the slot 113 of the housing 110, the end of the movable member 140 abuts against the third inclined surface. When the end of the movable member 140 is retained in the slot 113 of the housing 110, when the operating member 150 moves in the first direction under the action of an external force, the second flat surface abuts against the third flat surface, causing the movable member 140 to move in the first direction relative to the cover 130. The elastic force of the torsion spring is used to push the movable member 140 along the third inclined surface, causing the cover 130 to rotate in the second direction relative to the housing 110.
[0059] Of course, in other implementations of the present application, the end of the movable part 140 is clamped in the clamping slot 113 of the shell 110, and when the operating part 150 moves in the first direction under the action of an external force, the movable part 140 can also only move in the first direction relative to the cover body 130; at this time, the first end of the operating part 150 can have a second plane, and the end of the movable part 140 can have a third plane; the end of the movable part 140 is clamped in the clamping slot 113 of the shell 110, and when the operating part 150 moves in the first direction under the action of an external force, the second plane abuts against the third plane to cause the movable part 140 to move in the first direction relative to the cover body 130.
[0060] In some optional implementations of the embodiments of the present application, the electronic device may further include: an elastic member 160, wherein the elastic member 160 is arranged between the operating member 150 and the cover body 130, and the elastic member 160 is used to make the movable member 140 be in a first position relative to the cover body 130; when the end of the movable member 140 is clamped in the clamping slot 113 of the shell 110, the movable member 140 is in the first position; so that the end of the movable member 140 is stably clamped in the clamping slot 113 of the shell 110 through the elastic member 160.
[0061] In this implementation, the end of the movable part 140 is clamped in the clamping slot 113 of the shell 110. When the operating part 150 moves in the first direction under the action of external force, the movable part 140 moves from the first position to the second position in the first direction relative to the cover body 130; here, the second position is a position different from the first position.
[0062] In this implementation, the structure of the elastic member 160 is not limited. For example, the elastic member 160 can be a spring or an elastic rope.
[0063] Here, the implementation method of the elastic member 160 being disposed between the operating member 150 and the cover 130 is not limited. Figure 2 As shown, the elastic member 160 can be a spring, the movable member 140 has a second chute, and the first end of the cover 130 is movably inserted into the second chute. The spring is located at the bottom of the second chute, and the spring abuts against the bottom wall of the second chute and the first end of the cover 130. Here, the spring can also be connected to the bottom wall of the second chute and the first end of the cover 130. Of course, the spring can also be disposed outside the cover 130, and the spring can be connected to the cover 130 and the movable member 140 respectively.
[0064] In this embodiment, the end of the movable member 140 is clamped in the clamping groove 113. When the operating member 150 moves in the first direction under the action of an external force, the first inclined surface 151 of the first end of the operating member 150 abuts against the second inclined surface 141 of the end of the movable member 140, so that the movable member 140 moves in the first direction relative to the cover body 130. The cover body 130 rotates in the second direction relative to the housing 110, and the elastic member 160 is deformed. When the end of the movable member 140 moves out of the clamping groove 113, the end of the movable member 140 is deformed. The second inclined surface 141 abuts against the shell 110, and the deformation force of the elastic member 160 can push the cover body 130 to continue to rotate in the second direction relative to the shell 110, so that the cover body 130 can be further opened relative to the shell 110 through the deformation force of the elastic member 160. Therefore, when the end of the movable member 140 moves out of the card slot 113, there is no need to manually open the cover body 130, further eliminating the problem of static electricity damaging the electronic component 120 when the hand is too close to the electronic component 120 when manually opening the cover body 130; greatly improving the adaptability of electronic equipment.
[0065] Here, the second inclined surface 141 at the end of the movable part 140 abuts against the shell 110, and the second inclined surface 141 is used for guiding. Through the deformation force of the elastic part 160 and the guiding effect of the second inclined surface 141, the second inclined surface 141 moves along the shell 110 under the deformation force of the elastic part 160, so that the cover body 130 continues to rotate in the second direction relative to the shell 110.
[0066] In some optional implementations of the embodiments of the present application, the shell 110 has an active space 114, the operating member 150 is suspended in the active space 114, and the operating member 150 can move in the active space 114, so as to simplify the way in which the operating member 150 is movably set.
[0067] In this embodiment, the electronic device may further include a connecting wall 170, through which the operating member 150 is connected to the housing 110; when the operating member 150 moves in a first direction under the action of an external force, the connecting wall 170 is capable of deforming to accommodate the movement of the operating member 150. For example, the connecting wall 170 may be elastic and deformable. As an example, the connecting wall 170 may be a metal spring, so that the operating member 150 can move within the movable space 114 through the elastic deformation of the connecting wall 170.
[0068] Here, the connecting wall 170, the operating member 150 and the housing 110 may be different parts of a structural member, such as Figure 3As shown, the connecting wall 170, the operating member 150, and the housing 110 may also be separate structural components. Of course, the connecting wall 170 and the operating member 150 may be a single structural component, and the housing 110 may be a single structural component. The different structural components may be connected by adhesive bonding or other mechanical connection methods.
[0069] As an example, Figure 7 As shown, the housing 110 includes: a main body 117, a frame 115 and a connecting portion 116; the main body 117 has a receiving space 111 and an opening 112, the frame 115 is located outside the main body 117, the frame 115 is arranged at the opening 112, the frame 115 has a first slot 118 corresponding to the opening 112, and the connecting portion 116 is arranged inside the frame 115, as shown in FIG. Figure 6 The connecting portion 116 and the frame portion 115 can be connected by snaps or bolts. The activity space 114 is provided on the connecting portion 116, and the frame portion 115 has a second slot 119 corresponding to the activity space 114, as shown. Figure 5 As shown; the second end of the operating member 150 is exposed on the outer surface of the frame portion 115 through the second slot 119. The operating member 150 is connected to the connecting portion 116 through the connecting wall 170; here, the operating member 150, the connecting wall 170 and the connecting portion 116 can be different parts of a structural member, such as Figure 4 As shown; the shell 110 is formed by three parts: the main body 117, the frame 115 and the connecting portion 116, which can reduce the manufacturing cost of the shell 110.
[0070] Here, in the case where the operating member 150 , the connecting wall 170 and the connecting portion 116 are different parts of a structural member, the operating member 150 , the connecting wall 170 and the connecting portion 116 may be made of plastic.
[0071] In some optional implementations of the embodiments of the present application, the shell 110 has at least two openings 112, and the electronic device includes at least two electronic components 120, each electronic component 120 corresponding to the position of one opening 112 of the at least two openings 112; the electronic device may also include: at least two covers 130, at least two movable parts 140 and at least two operating parts 150; a cover 130, a movable part 140 and an operating part 150 are provided at one opening 112 of the at least two openings 112; so that each opening 112 can be clamped in a slot 113 of the shell 110 through the end of a movable part 140, so that a cover 130 is blocked at the opening 112; and each cover 130 can push a movable part 140 to move relative to a cover 130 through an operating part 150, so that the end of the movable part 140 is out of the corresponding slot 113; so that each electronic component 120 can be taken out of or loaded into the corresponding opening 112.
[0072] In this implementation, the number of openings 112 is not limited. Figure 7 As shown, the housing 110 is provided with five openings 112 ; the electronic device includes: five electronic components 120 , five covers 130 , five movable parts 140 and five operating parts 150 .
[0073] The electronic device of the embodiment of the present application includes: a housing 110, having a storage space 111 and an opening 112; an electronic component 120, arranged in the storage space 111; a cover 130, rotatably connected to the housing 110, and located at the opening 112; a movable member 140, movably connected to the cover 130; an end of the movable member 140 can be clamped in a clamping groove 113 of the housing 110 so that the cover 130 is blocked at the opening 112; an operating member 150, movably arranged in the housing 110; a first end of the operating member 150 corresponds to the end position of the movable member 140, and a second end of the operating member 150 is exposed on the outer surface of the housing 110; 0 can move under the action of external force, so as to push the movable member 140 to move relative to the cover body 130 so that the end of the movable member 140 is disengaged from the slot 113; by applying external force to the second end of the operating member 150, the movable member 140 can be moved relative to the cover body 130 so that the end of the movable member 140 is disengaged from the slot 113, thereby disconnecting the cover body 130 from the housing 110; there is no need to manually push the movable member 140 relative to the cover body 130 to disconnect the cover body 130 from the housing 110, thereby eliminating the problem of static electricity damaging the electronic component 120 due to the close distance between the hand and the electronic component 120 when manually pushing the movable member 140; and greatly improving the adaptability of electronic equipment.
[0074] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.
Claims
1. An electronic device, comprising: A housing having a receiving space and an opening: an electronic component, disposed in the accommodation space; a cover body, rotatably connected to the shell and located at the opening; A movable member is movably connected to the cover body; an end portion of the movable member can be clamped in a clamping groove of the shell to seal the cover body at the opening; An operating member is movably arranged on the shell; the first end of the operating member corresponds to the end position of the movable member, and the second end of the operating member is exposed on the outer surface of the shell; the operating member can move under the action of an external force so that the first end of the operating member contacts the movable member, thereby pushing the movable member to move relative to the cover body and causing the end of the movable member to disengage from the slot.
2. The electronic device according to claim 1, wherein the end of the movable part is clamped in the clamping slot of the shell, and when the operating part moves in the first direction under the action of an external force, the movable part moves in the first direction relative to the cover body, and the cover body rotates in the second direction relative to the shell.
3. The electronic device according to claim 2, wherein the first end of the operating member has a first inclined surface, and the end of the movable member has a second inclined surface; the end of the movable member is clamped in the clamping slot of the shell, and when the operating member moves in a first direction under the action of an external force, the first inclined surface abuts against the second inclined surface to cause the movable member to move in the first direction relative to the cover body, and the cover body rotates in the second direction relative to the shell.
4. The electronic device according to claim 3, wherein the first end of the operating member further has a first plane connected to the first inclined surface, and the end of the movable member further has a first arc surface connected to the second inclined surface, and the first arc surface corresponds to the position of the first plane.
5. The electronic device according to claim 1, further comprising: an elastic member, the elastic member being disposed between the operating member and the cover body, the elastic member being used to place the movable member in a first position relative to the cover body; When the end portion of the movable member is locked in the locking groove of the housing, the movable member is in the first position.
6. The electronic device according to claim 5, wherein the end of the movable part is clamped in the card slot, and when the operating part moves in a first direction under the action of an external force, the first inclined surface of the first end of the operating part abuts against the second inclined surface of the end of the movable part, so that the movable part moves in the first direction relative to the cover body, and the cover body rotates in the second direction relative to the shell, and the elastic part is deformed; when the end of the movable part moves out of the card slot, the second inclined surface of the end of the movable part abuts against the shell, and the deformation force of the elastic part can push the cover body to continue to rotate in the second direction relative to the shell. 7 . The electronic device according to claim 1 , wherein the housing has a movable space, the operating member is suspended in the movable space, and the operating member is movable in the movable space.
8. The electronic device according to claim 7, further comprising: A connecting wall, through which the operating member is connected to the housing. 9 . The electronic device according to claim 1 , wherein a distance between the second end of the operating member and the electronic component is greater than a distance between the movable member and the electronic component.
10. The electronic device according to any one of claims 1 to 9, wherein the housing has at least two openings, the electronic device comprises at least two electronic components, and each electronic component corresponds to a position of one of the at least two openings; The electronic device further comprises: at least two covers, at least two movable parts, and at least two operating parts; A cover body, a movable part and an operating part are arranged at one of the at least two openings.
Citation Information
Patent Citations
Electronic device and base structure thereof
CN103970191A