Electronic device
By setting installation openings and slots on the outer side of electronic devices and using a locking structure to achieve detachable battery connection, the problems of difficult user replacement and low space utilization are solved, and convenient battery installation and removal and appearance integrity are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-04-10
AI Technical Summary
Replacing batteries in existing electronic devices requires specialized tools, making it difficult for users to do it themselves. Furthermore, removable battery designs suffer from low space utilization and issues with aesthetic integrity.
A first mounting opening and mounting groove are provided on the outer side of the main body of the device. A first locking structure and a second locking structure of the battery assembly are detachably connected. An operation key drives the locking structure to move so as to facilitate the installation and removal of the battery.
Users can easily install or remove the battery pack from the outside of the device, improving battery space utilization and maintaining the device's appearance integrity.
Smart Images

Figure CN224110406U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of battery, in particular to an electronic device. BACKGROUND
[0002] 3C electronic device mainly refers to computer, communication and consumer electronic device. With the development of technology, mobile phones and tablets have become the main electronic devices used in daily life.
[0003] The existing electronic device is generally an electronic device with a non-detachable battery. Replacing the battery requires professional tools, and the process of replacing the battery is complex, making it difficult for users to replace it independently. CONTENT OF THE UTILITY MODEL
[0004] The present application provides an electronic device. The technical solution can solve the problem of inconvenient battery replacement of the existing electronic device, and is as follows:
[0005] In one aspect, an electronic device is provided, comprising: a device main body, a battery assembly, and a first locking structure;
[0006] The device main body has a first mounting slot and a first mounting opening in communication with the first mounting slot, and the first mounting opening is located on the outer side of the device main body;
[0007] The first locking structure is arranged on the device main body;
[0008] The battery assembly is located in the first mounting slot, and the battery assembly comprises a battery body and a second locking structure fixed on the battery body and matched with the first locking structure;
[0009] Wherein, after the second locking structure is connected with the first locking structure, the battery assembly is fixed in the first mounting slot; after the second locking structure is disconnected from the first locking structure, the battery assembly can be taken out through the first mounting opening.
[0010] Optionally, the device main body has a first outer side and a second outer side arranged opposite in a first direction; the first mounting opening is located on the first outer side;
[0011] The first locking structure is distributed on the side closer to the second outer side in the inner part of the first mounting slot, and is movably connected with the device main body.
[0012] Optionally, the electronic device further comprises an operation key, the operation key is located on the second outer side surface and movably connected with the device body; the operation key is connected with the first locking structure;
[0013] The operation key is configured to drive the first locking structure to move, so as to connect the first locking structure with the second locking structure, or separate the first locking structure from the second locking structure.
[0014] Optionally, the second outer side surface has a sliding groove; the device body further has a second mounting groove in communication with the first mounting groove, and a communication groove for communicating the sliding groove and the second mounting groove; the first locking structure and the second locking structure are both located in the second mounting groove;
[0015] The operation key comprises an operation key body and a connecting piece; the operation key body is movably connected with the device body in the sliding groove; at least part of the connecting piece is located in the communication groove, and two ends of the connecting piece are respectively connected with the operation key body and the first locking structure.
[0016] Optionally, the electronic device further comprises a first magnet and a second magnet; the operation key can slide in a second direction in the sliding groove, the second direction intersects the first direction;
[0017] The first magnet is fixed on the operation key body, and the second magnet is fixed in the second mounting groove or the sliding groove; the first magnet and the second magnet are distributed on the same side of the connecting piece in the second direction;
[0018] When the first locking structure is connected with the second locking structure, the first magnet and the second magnet are arranged opposite to each other in the first direction, so that the first magnet and the second magnet are attracted to each other.
[0019] Optionally, the electronic device further comprises a third magnet and a fourth magnet;
[0020] The third magnet is fixed on the operation key body, and the third magnet is located on the side of the connecting piece away from the first magnet in the second direction;
[0021] The fourth magnet is fixed in the second mounting groove or the sliding groove, and the fourth magnet is located on the side of the connecting piece away from the second magnet in the second direction;
[0022] When the first locking structure is separated from the second locking structure, the third magnet and the fourth magnet are arranged opposite to each other in the first direction, so that the third magnet and the fourth magnet are attracted to each other.
[0023] Optionally, each of the first magnet, the second magnet, the third magnet and the fourth magnet has oppositely arranged N-pole and S-pole in the second direction.
[0024] Optionally, the magnetic polarity of the magnetic pole of the first magnet and the second magnet facing the connecting piece is opposite; and the magnetic polarity of the magnetic pole of the third magnet and the fourth magnet facing the connecting piece is opposite.
[0025] Optionally, the battery assembly further comprises a packaging cover plate, which is fixedly connected to the side of the battery body away from the second locking structure, and the packaging cover plate has a protruding portion protruding relative to the battery body.
[0026] The device body further has a support table, which is located in the first installation slot, and the side of the support table facing the first installation opening and the first installation opening have an avoiding slot therebetween.
[0027] Optionally, the outer size of the packaging cover plate matches the outer size of the first installation opening; and after the battery body is located in the first installation slot, the protruding portion is embedded in the avoiding slot and in contact with the support table.
[0028] Optionally, the battery assembly further comprises a protection plate and a flexible circuit board; the protection plate is located outside the battery body and electrically connected to the battery body; the flexible circuit board is electrically connected to the protection plate, and the flexible circuit board has a first connecting portion distributed on the protruding portion.
[0029] The side of the support table facing the first installation opening has a second connecting portion, which is electrically connected to the mainboard in the device body.
[0030] Optionally, after the battery body is located in the first installation slot, the first connecting portion is electrically connected to the second connecting portion.
[0031] Optionally, the battery body comprises a steel shell and an electric core installed in the steel shell.
[0032] The technical scheme provided by the embodiments of the present application has the following beneficial effects:
[0033] By setting the first installation opening and the first installation slot on the outer side of the device body, the battery assembly can be installed into the first installation slot through the first installation opening, so that the second locking structure of the battery assembly can be detachably connected with the first locking structure. After the second locking structure is connected with the first locking structure, the battery assembly is fixed in the first installation slot; after the second locking structure is disconnected with the first locking structure, the battery assembly can be taken out through the first installation opening, so that the user can assemble and disassemble the battery assembly from the outer side of the device body, realizing convenient assembly and disassembly of the battery. BRIEF DESCRIPTION OF DRAWINGS
[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort on the basis of these drawings.
[0035] Figure 1 The front view of the electronic device provided by the embodiment of the present application;
[0036] Figure 2 The schematic diagram of the outer side of the electronic device provided by the embodiment of the present application;
[0037] Figure 3 The structural schematic diagram of the electronic device provided by the embodiment of the present application;
[0038] Figure 4 The structural schematic diagram of the device body provided by the embodiment of the present application;
[0039] Figure 5 The structural schematic diagram of the battery assembly provided by the embodiment of the present application;
[0040] Figure 6 The structural schematic diagram of the battery assembly provided by the embodiment of the present application; Figure 3 The partial enlarged view of area A in FIG. 8;
[0041] Figure 7 The partial enlarged view of area B in FIG. 8; Figure 4 The partial enlarged view of area B in FIG. 8;
[0042] Figure 8 The structural schematic diagram of the operation key provided by the embodiment of the present application;
[0043] Figure 9 The structural schematic diagram of the first installation slot, the avoiding slot and the supporting table provided by the embodiment of the present application;
[0044] Figure 10 The partial enlarged view of area C in FIG. 9; Figure 9 The partial enlarged view of area C in FIG. 9;
[0045] Figure 11 A structural schematic diagram of a protection plate provided by an embodiment of the present application is shown in FIG. 1.
[0046] Figure 12 For Figure 11 A partial enlarged view of the D area in FIG. 1. DETAILED DESCRIPTION
[0047] To make the objectives, technical solutions and advantages of the present application clearer, the embodiments of the present application will be further described in detail below with reference to the drawings.
[0048] Electronic devices such as mobile phones, tablet computers, media players (MP3, MP4) and notebook computers have a battery life, and the battery life is often lower than the service life of the device main body of the electronic device, so in the use of the electronic device, the operation of replacing the battery is involved. In addition, in the environment lacking of charging conditions, the user also needs to meet the power requirement of the electronic device by replacing the battery. At present, the requirements of electronic devices for thinness and appearance are becoming higher and higher, and the batteries of most electronic devices are designed to be non-detachable, and the replacement of the battery of this type of electronic device requires professional tools, and consumers generally need to go to a repair shop or an after-sales store for replacement.
[0049] In addition, some electronic devices with detachable batteries use aluminum-plastic film soft-pack batteries, in order to avoid problems such as damage of the aluminum-plastic film during use or deformation of the battery cell after falling, the soft-pack battery is provided with a protective glue frame and glue paper outside, the actual space utilization rate of the battery cell is low, the overall space occupied by the battery is large, and when replacing the battery, the rear cover of the electronic device generally needs to be removed, and the integrity of the appearance of the whole machine is destroyed due to the requirement of detachable replacement.
[0050] An electronic device is provided by an embodiment of the present application, which can include: Figures 1 to 5 , Figure 1 A front view of the electronic device provided by an embodiment of the present application is shown in FIG. 2. Figure 2 A schematic diagram of the outer side of the electronic device provided by an embodiment of the present application is shown in FIG. 3. Figure 3 A structural schematic diagram of the electronic device provided by an embodiment of the present application is shown in FIG. 4. Figure 4 A structural schematic diagram of the device main body provided by an embodiment of the present application is shown in FIG. 5. Figure 5 A structural schematic diagram of the battery assembly provided by an embodiment of the present application is shown in FIG. 6.
[0051] The device main body 100 has a first mounting groove 110 and a first mounting opening 101a in communication with the first mounting groove 110, and the first mounting opening 101a is located on the outer side of the device main body 100.
[0052] The first locking structure 301 is arranged on the device body 100. For example, the first locking structure 301 is movably connected with the device body 100 at the position where the first mounting slot 110 is located.
[0053] The battery assembly 200 is arranged in the first mounting slot 110. The battery assembly 200 can include a battery body 210 and a second locking structure 220 fixed on the battery body 210 and matched with the first locking structure 301.
[0054] In this way, after the second locking structure 220 is connected with the first locking structure 301, the battery assembly 200 is fixed in the first mounting slot 110; and after the second locking structure 220 is disconnected with the first locking structure 301, the battery assembly 200 can be taken out through the first mounting opening 101a.
[0055] In the embodiments of the present application, the electronic device 000 can be a commonly used electronic device 000 such as a mobile phone or a tablet computer. Taking the mobile phone as an example, the six surfaces of the mobile phone can be divided into a front surface (display surface) and a back surface according to the display panel and the pixel direction thereof, and four outer side surfaces distributed between the front surface and the back surface, such as Figure 1 In this way, the four outer side surfaces can include a top surface, a bottom surface, a left side surface and a right side surface.
[0056] In the embodiments of the present application, the first locking structure 301 and the second locking structure 220 can adopt structures that can be locked, such as a buckle structure, a latch structure and the like. Figure 3 As shown in FIG. 1, the first locking structure 301 is arranged on the top surface of the device body 100. Figure 5 As shown in FIG. 1, the second locking structure 220 can be a clamping hook.
[0057] In this way, the first locking structure 301 can be driven to move by manual operation of a user, for example, by using a key or an operation key 300 to drive the first locking structure 301 to move; or the first locking structure 301 can be driven by an electric control driving member, for example, by using a motor driving mode.
[0058] In summary, by arranging the first mounting opening and the first mounting slot on the outer side surface of the device body, the battery assembly can be mounted into the first mounting slot through the first mounting opening. In this way, the second locking structure of the battery assembly can be detachably connected with the first locking structure. After the second locking structure is connected with the first locking structure, the battery assembly can be fixed in the first mounting slot; and after the second locking structure is disconnected with the first locking structure, the battery assembly can be taken out through the first mounting opening. In this way, the user can mount or dismount the battery assembly from the outer side surface of the device body, so that the battery can be conveniently mounted or dismounted.
[0059] In some possible implementation manners, the first locking structure 301 can be arranged close to the outer side surface where the first mounting opening 101a is located, or as shown in FIG. 1, the first locking structure 301 can be arranged on the top surface of the device body 100. Figure 3As shown, the first mounting opening 101a is arranged on the first outer side 101.
[0060] The device body 100 has a first outer side 101 and a second outer side 102 arranged oppositely in the first direction X; the first mounting opening 101a is arranged on the first outer side 101.
[0061] The first locking structure 301 is arranged on the side closer to the second outer side 102 in the inner part of the first mounting groove 110, and is movably connected with the device body 100.
[0062] The electronic device 000 can be provided with keys on the outer side, such as a volume key 103 and a power key 104, which are generally arranged on the right side and / or the top side. For example, the keys are generally arranged on the right side of a mobile phone. In the embodiment of the present application, the first outer side 101 can be the left side, and the second outer side 102 can be the right side. Of course, the first outer side 101 can also be one of the right side, the top side or the bottom side, and the second outer side 102 is the other outer side.
[0063] By arranging the first locking structure 301 on the side closer to the second outer side 102, the side of the first mounting groove 110 away from the first outer side 101 can be closer to the second outer side 102, so that the depth of the first mounting groove 110 in the first direction X can be deeper, and the mounting space provided for the battery assembly 200 is larger, which is beneficial to improve the capacity of the battery.
[0064] Some possible implementation manners are described below with reference to Figure 1 , Figure 3 , Figures 6 to 8 , Figure 6 are a partial enlarged view of region A in FIG. 8, Figure 3 are a partial enlarged view of region B in FIG. 8, Figure 7 is a structural schematic diagram of an operation key provided in the embodiment of the present application; in the embodiment of the present application, the electronic device 000 can further include an operation key 300, which is arranged on the second outer side 102 and movably connected with the device body 100; the operation key 300 is connected with the first locking structure 301. Figure 4 Figure 8 The operation key 300 is configured to drive the first locking structure 301 to move, so as to connect the first locking structure 301 with the second locking structure 220, or separate the first locking structure 301 from the second locking structure 220.
[0065] In the embodiment of the present application, the operation key 300 can be in the form of pressing or sliding to drive the first locking structure 301 to move. For example,
[0066] In the embodiment of the present application, the operation key 300 can be in the form of pressing or sliding to drive the first locking structure 301 to move. For example, Figure 1 Figure 3 As shown, the second outer side surface 102 can also be provided with a power key 104 and a volume key 103. By arranging the operation key 300 on the second outer side surface 102, the electronic device 000 can be provided with the operation key 300 / keys only on the second outer side surface 102, so that the other outer side surfaces can be guaranteed to be complete and beautiful, and ergonomic, and convenient for user operation.
[0067] In some possible implementation manners, refer to Figure 3 , Figure 4 , Figures 6 to 8 The second outer side surface 102 can have a sliding groove 130; the device body 100 also has a second mounting groove 120 in communication with the first mounting groove 110, and a communication groove 140 for communicating the sliding groove 130 and the second mounting groove 120; the first locking structure 301 and the second locking structure 220 are both located in the second mounting groove 120.
[0068] The operation key 300 can include an operation key body 302 and a connecting piece 303; the operation key body 302 is movably connected with the device body 100 in the sliding groove 130; at least part of the connecting piece 303 is located in the communication groove 140, and both ends of the connecting piece 303 are connected with the operation key body 302 and the first locking structure 301 respectively.
[0069] In the embodiment of the present application, the operation key body 302, the connecting piece 303 and the first locking structure 301 can be integrally formed; of course, other connection manners such as rotary connection can also be used between the operation key body 302 and the connecting piece 303, and between the connecting piece 303 and the first locking structure 301, to achieve the technical effect of driving the first locking structure 301.
[0070] As shown in Figure 6 and Figure 7 , the sliding groove 130 and the second mounting groove 120 can be communicated through the communication groove 140, and the communication groove 140 can provide a movement space for the connecting piece 303, and the operation key 300 drives the connecting piece 303 to move, thereby driving the first locking structure 301 to move.
[0071] As shown in Figure 6 and Figure 7 , when the battery body 210 is located in the first mounting groove 110, the second locking assembly extends into the second mounting groove 120, and the first locking structure 301 is located in the second mounting groove 120 and can be connected or separated from the second locking structure 220 under the driving of the operation key 300, thereby enabling the battery assembly 200 to be detachably mounted in the first mounting groove 110.
[0072] In some possible implementation manners, refer to Figures 6 to 8The electronic device 000 can further include: a first magnet 401 and a second magnet 402; the operation key 300 can slide in the second direction Y in the sliding groove 130, and the second direction Y intersects the first direction X.
[0073] The first magnet 401 is fixed on the operation key body 302, and the second magnet 402 is fixed in the second mounting groove 120 or the sliding groove 130; the first magnet 401 and the second magnet 402 are distributed on the same side of the connecting piece 303 in the second direction Y.
[0074] In the case where the first locking structure 301 is connected with the second locking structure 220, the first magnet 401 and the second magnet 402 are arranged opposite to each other in the first direction X, so that the first magnet 401 and the second magnet 402 are attracted to each other.
[0075] In the embodiment of the present application, the operation key 300 can drive the first locking structure 301 to move in a sliding manner, for example, the operation key 300 can slide in the second direction Y in the sliding groove 130, so as to drive the first locking structure 301 to move in the second direction Y.
[0076] In the embodiment of the present application, by arranging the first magnet 401 and the second magnet 402, an attractive force can be provided in the case where the first locking structure 301 is connected with the second locking structure 220, so that the operation key 300 can be prevented from being mistakenly touched to cause the first locking structure 301 to be separated from the second locking structure 220.
[0077] For example, as shown in Figure 3 and Figure 6 In the case where the first locking structure 301 is connected with the second locking structure 220, the relative position of the operation key 300 in the sliding groove 130 can be defined as a locking position, and in the case where the first locking structure 301 is separated from the second locking structure 220, the relative position of the operation key 300 in the sliding groove 130 can be defined as an unlocking position, the sliding direction from the locking position to the unlocking position can be defined as an unlocking direction (for example, the left-to-right direction in Figure 6 ), and the sliding direction from the unlocking position to the locking position can be defined as a locking direction (for example, the right-to-left direction in Figure 6 ). It can be seen that in the process that the user slides the operation key 300 from the unlocking position to the locking position, the magnetic force of the first magnet 401 and the second magnet 402 can be felt, so that when the user slides the operation key 300 in the unlocking direction and the locking direction when replacing the battery, the user can feel that the operation key 300 is attracted.
[0078] In some possible implementation manners, refer to Figures 6 to 8 The electronic device 000 can further include: a third magnet 403 and a fourth magnet 404.
[0079] The third magnet 403 is fixed on the operation key body 302, and the third magnet 403 is located on the side of the connecting piece 303 away from the first magnet 401 in the second direction Y. The fourth magnet 404 is fixed in the second mounting slot 120 or the sliding slot 130, and the fourth magnet 404 is located on the side of the connecting piece 303 away from the second magnet 402 in the second direction Y.
[0080] Wherein, in the case that the first locking structure 301 is separated from the second locking structure 220, the third magnet 403 and the fourth magnet 404 are oppositely arranged in the first direction X, so that the third magnet 403 and the fourth magnet 404 are attracted to each other.
[0081] In the embodiment of the present application, by setting the third magnet 403 and the fourth magnet 404, the attractive force can be provided in the case that the first locking structure 301 is separated from the second locking structure 220; during the sliding of the operation key 300, the user can assist the separation of the first locking structure 301 and the second locking structure 220.
[0082] For example, as shown in Figure 3 and Figure 6 When the user slides the operation key 300 from the locked position to the unlocked position, the magnetic force of the third magnet 403 and the fourth magnet 404 can be felt, so that when the user slides the operation key 300 in the unlocking direction and the locking direction to replace the battery, the user can feel that the operation key 300 is attracted.
[0083] In some possible implementations, each of the first magnet 401, the second magnet 402, the third magnet 403 and the fourth magnet 404 has oppositely arranged N-pole and S-pole in the second direction Y.
[0084] Wherein, the magnetic poles of the first magnet 401 and the second magnet 402 facing the connecting piece 303 are opposite in magnetic property; the magnetic poles of the third magnet 403 and the fourth magnet 404 facing the connecting piece 303 are opposite in magnetic property.
[0085] In the embodiment of the present application, in the case that the first locking structure 301 is connected to the second locking structure 220, by setting the first magnet 401 and the second magnet 402, the attractive force can be provided, and by setting the third magnet 403 and the fourth magnet 404, the repulsive force can be provided; in the case that the first locking structure 301 is separated from the second locking structure 220, by setting the first magnet 401 and the second magnet 402, the repulsive force can be provided, and by setting the third magnet 403 and the fourth magnet 404, the attractive force can be provided; in this way, under the action of the magnetic force, the first locking structure 301 and the second locking structure 220 are more likely to be in the connected state or the separated state, and it is more difficult to change from the connected state or the separated state to another state.
[0086] For example, as shown in Figure 6 When the operation key 300 is in the locked position, the N pole of the first magnet 401 and the S pole of the second magnet 402, and the S pole of the first magnet 401 and the N pole of the second magnet 402 are arranged opposite to each other in the first direction X, at this time, the attractive force between the first magnet 401 and the second magnet 402 is the largest, and the N pole of the third magnet 403 and the N pole of the fourth magnet 404 are close to each other, providing repulsive force. Similarly, when the operation key 300 is in the unlocked position, the N pole of the third magnet 403 and the S pole of the fourth magnet 404, and the S pole of the third magnet 403 and the N pole of the fourth magnet 404 are arranged opposite to each other in the first direction X, at this time, the attractive force between the third magnet 403 and the fourth magnet 404 is the largest, and the S pole of the first magnet 401 and the S pole of the second magnet 402 are close to each other, providing repulsive force. Therefore, the above four magnets not only can assist the operation key 300 to be placed in the locked position or the unlocked position more stably, but also can make the user feel the magnetic force acting on the operation key 300 when operating the operation key 300, providing the operation hand feeling.
[0087] In some possible implementation manners, please refer to Figure 5 , Figures 9 to 12 , Figure 9 is a structural schematic view of the first mounting groove, the avoiding groove and the support table provided by the embodiment of the application, Figure 10 is a partial enlarged view of the C area in Figure 9 , Figure 11 is a structural schematic view of the protection plate provided by the embodiment of the application, Figure 12 is a partial enlarged view of the D area in Figure 11 In the embodiment of the application, the battery assembly 200 can further include: an encapsulation cover plate 230, the encapsulation cover plate 230 is fixedly connected to the side of the battery body 210 away from the second locking structure 220, and the encapsulation cover plate 230 has a protruding part 231 protruding relative to the battery body 210.
[0088] The device main body 100 further has a support table 107, the support table 107 is located in the first mounting groove 110, and the support table 107 has an avoiding groove 107a between the side facing the first mounting opening 101a and the first mounting opening 101a.
[0089] The outer size of the encapsulation cover plate 230 matches the outer size of the first mounting opening 101a; and after the battery body 210 is located in the first mounting groove 110, the protruding part 231 is embedded in the avoiding groove 107a and contacts the support table 107.
[0090] The movement of the battery assembly 200 in the first direction X can be limited by the first locking structure 301 and the second locking structure 220, the movement of the battery assembly 200 in the second direction Y and the movement of the battery assembly 200 in the direction perpendicular to the first direction X and the second direction Y, i.e. the up-down direction in the electronic device 000, can be limited by the protrusion 231 of the packaging cover plate 230 and the avoiding slot 107a of the device body 100. Figure 2
[0091] In addition, the outer size of the packaging cover plate 230 matches the outer size of the first mounting opening 101a, and the packaging cover plate 230 can also be flush with the first outer side 101, so that the integrity and aesthetics of the first outer side 101 as a whole. A sealing ring can be provided between the packaging cover plate 230 and the first mounting slot 110 to ensure the sealing of the electronic device 000 and achieve the effect of waterproof and dustproof.
[0092] In some possible implementation manners, please refer to Figures 9 to 12 The battery assembly 200 can further include a protection plate 240 and a flexible circuit board 241; the protection plate 240 is located outside the battery body 210 and electrically connected to the battery body 210; the flexible circuit board 241 is electrically connected to the protection plate 240, and the flexible circuit board 241 has a first connecting portion 241a distributed on the protrusion 231.
[0093] The side of the support table 107 facing the first mounting opening 101a has a second connecting portion 106, and the second connecting portion 106 is electrically connected to the mainboard in the device body 100.
[0094] After the battery body 210 is located in the first mounting slot 110, the first connecting portion 241a is electrically connected to the second connecting portion 106.
[0095] By providing the second connecting portion 106 on the support table 107 and the first connecting portion 241a on the protrusion 231, after the battery assembly 200 is installed into the first mounting slot 100, the electrical connection between the battery assembly 200 and the device body 100 can be achieved, and the second connecting portion 106 can be electrically connected to the mainboard in the device body 100.
[0096] For example, the second connecting portion 106 can include a spring contact, and the first connecting portion 241a can have a pad contact. After the battery body 210 is located in the first mounting slot 110, the spring contact can be pressed by the pad contact, thereby providing reliable electrical connection.
[0097] In some possible implementation manners, the battery body 210 can include a steel shell and an electric core installed in the steel shell.
[0098] The steel shell is fixedly connected with the packaging cover plate 230 and the second locking structure 220 respectively, and the steel shell and the packaging cover plate 230 and the steel shell and the second locking structure 220 can be integrally formed, welded or bonded. In the embodiment of the application, the steel shell battery does not need an additional glue frame, and the steel shell occupies less space than the glue frame, can provide more space for the battery cell, improve the capacity of the battery, and the steel shell can also protect the battery cell, and meet the user's detachable requirement.
[0099] In summary, the electronic device provided in the embodiment of the application can include a device main body, a battery assembly and a first locking structure. By arranging the first mounting opening and the first mounting slot on the outer side of the device main body, the battery assembly can be mounted into the first mounting slot through the first mounting opening, so that the second locking structure of the battery assembly can be detachably connected with the first locking structure. After the second locking structure is connected with the first locking structure, the battery assembly is fixed in the first mounting slot; after the second locking structure is disconnected with the first locking structure, the battery assembly can be taken out through the first mounting opening, so that the user can assemble and disassemble the battery assembly from the outer side of the device main body, and the battery can be conveniently assembled and disassembled.
[0100] In the application, the terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance. The term "a plurality of" refers to two or more, unless otherwise explicitly limited.
[0101] The above description is only optional embodiments of the application, and is not used to limit the application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the application shall be included in the protection scope of the application.
Claims
1. An electronic device, comprising: The electronic device (000) comprises a device body (100), a battery assembly (200), and a first locking structure (301). The device body (100) has a first mounting groove (110) and a first mounting opening (101a) in communication with the first mounting groove (110), the first mounting opening (101a) being located on an outer side of the device body (100); The first locking structure (301) is arranged on the device body (100); The battery assembly (200) is located in the first mounting groove (110), and the battery assembly (200) comprises a battery body (210) and a second locking structure (220) fixed on the battery body (210) and matched with the first locking structure (301); After the second locking structure (220) is connected with the first locking structure (301), the battery assembly (200) is fixed in the first mounting groove (110); After the second locking structure (220) is disconnected from the first locking structure (301), the battery assembly (200) can be taken out through the first mounting opening (101a). The device body (100) has a first outer side (101) and a second outer side (102) arranged oppositely in a first direction; the first mounting opening (101a) is located on the first outer side (101); 2. The electronic device of claim 1, wherein, The first locking structure (301) is distributed closer to the second outer side (102) on one side of the inner part of the first mounting groove (110) and is movably connected with the device body (100). The electronic device (000) further comprises an operation key (300), the operation key (300) being located on the second outer side (102) and movably connected with the device body (100); the operation key (300) is connected with the first locking structure (301); 3. The electronic device of claim 2, wherein, The operation key (300) is configured to drive the first locking structure (301) to move, so as to connect the first locking structure (301) with the second locking structure (220) or separate the first locking structure (301) from the second locking structure (220). The second outer side (102) has a sliding groove (130); the device body (100) further has a second mounting groove (120) in communication with the first mounting groove (110) and a communication groove (140) for communicating the sliding groove (130) and the second mounting groove (120); the first locking structure (301) and the second locking structure (220) are both located in the second mounting groove (120); 4. The electronic device of claim 3, wherein, The operation key (300) comprises an operation key body (302) and a connecting piece (303); the operation key body (302) is movably connected with the device body (100) in the sliding groove (130); at least part of the connecting piece (303) is located in the communication groove (140), and two ends of the connecting piece (303) are connected with the operation key body (302) and the first locking structure (301) respectively.
5. The electronic device of claim 4, wherein, The electronic device (000) further comprises a first magnet (401) and a second magnet (402); the operation key (300) can slide in a second direction in the sliding groove (130), and the second direction intersects the first direction; The first magnet (401) is fixed on the operation key body (302), and the second magnet (402) is fixed in the second mounting groove (120) or the sliding groove (130); the first magnet (401) and the second magnet (402) are distributed on the same side of the connecting piece (303) in the second direction; Wherein, when the first locking structure (301) is connected with the second locking structure (220), the first magnet (401) and the second magnet (402) are arranged opposite in the first direction, so that the first magnet (401) and the second magnet (402) are attracted to each other.
6. The electronic device of claim 5, wherein, The electronic device (000) further comprises a third magnet (403) and a fourth magnet (404); The third magnet (403) is fixed on the operation key body (302), and the third magnet (403) is located on the side of the connecting piece (303) away from the first magnet (401) in the second direction; The fourth magnet (404) is fixed in the second mounting groove (120) or the sliding groove (130), and the fourth magnet (404) is located on the side of the connecting piece (303) away from the second magnet (402) in the second direction; Wherein, when the first locking structure (301) is separated from the second locking structure (220), the third magnet (403) and the fourth magnet (404) are arranged opposite in the first direction, so that the third magnet (403) and the fourth magnet (404) are attracted to each other.
7. The electronic device of claim 6, wherein, Each of the first magnet (401), the second magnet (402), the third magnet (403) and the fourth magnet (404) has N and S poles arranged opposite in the second direction; Wherein, the magnetic properties of the magnetic poles on the side of the connecting piece (303) of the first magnet (401) and the second magnet (402) are opposite; the magnetic properties of the magnetic poles on the side of the connecting piece (303) of the third magnet (403) and the fourth magnet (404) are opposite.
8. The electronic device of any of claims 1-7, wherein, The battery assembly (200) further comprises a packaging cover plate (230) fixedly connected with a side of the battery body (210) away from the second locking structure (220), and the packaging cover plate (230) has a protruding part (231) protruding relative to the battery body (210); The device body (100) further has a support table (107) located in the first mounting groove (110), and the support table (107) has an avoiding groove (107a) between a side thereof facing the first mounting opening (101a) and the first mounting opening (101a); The outer size of the packaging cover plate (230) matches the outer size of the first mounting opening (101a), and after the battery body (210) is located in the first mounting groove (110), the protruding part (231) is embedded in the avoiding groove (107a) and contacts the support table (107).
9. The electronic device of claim 8, wherein, The battery assembly (200) further comprises a protection plate (240) and a flexible circuit board (241); the protection plate (240) is located outside the battery body (210) and is electrically connected with the battery body (210); the flexible circuit board (241) is electrically connected with the protection plate (240), and the flexible circuit board (241) has a first connecting part (241a) distributed on the protruding part (231); A side of the support table (107) facing the first mounting opening (101a) has a second connecting part (106) electrically connected with a mainboard in the device body (100); After the battery body (210) is located in the first mounting groove (110), the first connecting part (241a) is electrically connected with the second connecting part (106).
10. The electronic device of any of claims 1-7, wherein, The battery body (210) comprises a steel shell and an electric core mounted in the steel shell.