A battery cover mounting structure
By designing an anti-loss mechanism and locking structure on the remote control, the problem of the battery cover being lost due to human negligence when changing batteries is solved. This achieves a stable connection between the battery cover and the remote control, preventing short circuits and poor battery contact, and improving the reliability of the remote control and the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QING DAO ZHONG TIAN ELECTRONIC CO LTD
- Filing Date
- 2025-05-06
- Publication Date
- 2026-05-29
AI Technical Summary
The battery cover of the existing remote control is lost due to human negligence when changing batteries, causing the remote control to fail to close properly, short circuit in the internal circuit, poor battery contact, and affecting the normal use of the remote control.
A battery cover mounting structure was designed, including an anti-loss mechanism, a torsion spring, a traction rope, a fixing plate, and screw hole connections. The battery cover is securely connected to the remote control through snap-fit and bolt connections, and the elastic deformation of the torsion spring is used to retract the traction rope to prevent the battery cover from being lost.
Effectively prevents battery cover loss, ensures stable connection between battery cover and remote control, avoids short circuits and poor battery contact, improves user experience and normal use of remote control.
Smart Images

Figure CN224304817U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of battery cover mounting structure, specifically a battery cover mounting structure. Background Technology
[0002] Battery cover mounting structures have a wide range of applications, with remote controls being a prime example. In this common electronic device, the battery cover plays a crucial role. It must ensure the battery is securely installed inside the remote, providing continuous and stable power to guarantee the normal operation of its functions, such as precisely controlling TV channel switching, adjusting air conditioning temperature, and manipulating toy cars. Furthermore, it must have good sealing properties to prevent dust, moisture, and other impurities from entering the remote, avoiding damage to the battery and circuitry and extending the remote's lifespan. Additionally, a well-designed battery cover should be easy for users to open and close, facilitating quick battery replacement when the battery is depleted, thus enhancing the user experience.
[0003] Currently, the battery cover installation structure of remote controls has a problem. When changing batteries, people may not pay attention to where the battery cover is placed after removal and simply put it down. Or, when removing the battery cover, they may be distracted by making a phone call or being interrupted by others and forget that the battery cover has not been reinstalled. This can lead to the battery cover being lost, causing the remote control to fail to close properly, resulting in problems such as short circuits and poor battery contact, and ultimately affecting the normal use of the remote control. Utility Model Content
[0004] Therefore, the purpose of this utility model is to provide a battery cover installation structure to solve the technical problems of existing remote control battery covers being lost due to human negligence when changing batteries, which in turn causes the remote control to fail to close properly, short circuits in the internal circuit, poor battery contact, and affects the normal use of the remote control.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a battery cover mounting structure, including a battery cover and a remote control, wherein the remote control includes a remote control body, a cover groove is provided on the back of the remote control body, and a battery groove, a card slot and a function slot are provided inside the cover groove, and an anti-loss mechanism is provided in the function slot;
[0006] The anti-loss mechanism includes a torsion spring, which is rotatably connected to the functional slot. A traction rope is wound around the torsion spring, and a fixing plate is provided at one end of the traction rope. A second screw hole is provided on the fixing plate.
[0007] The battery cover includes a cover body, and an inner wall of the cover body is provided with a mounting base. The bottom of the mounting base is provided with a mounting groove, and a first screw hole is provided in the mounting groove.
[0008] By adopting the above technical solutions, a basic framework is provided to solve the problem of missing battery covers, which helps to improve the overall design rationality and practicality of the remote control.
[0009] Furthermore, the mounting groove is adapted to the fixing plate, and the fixing plate is used to insert into the mounting groove. After the insertion operation of the fixing plate and the mounting groove is completed, the first screw hole and the second screw hole are in a relative position relationship to meet the bolt connection requirements.
[0010] By adopting the above technical solution, the anti-loss mechanism and the battery cover can be accurately and firmly connected, ensuring the effectiveness of the anti-loss function and avoiding the failure of the anti-loss mechanism due to an unstable connection.
[0011] Furthermore, the torsion spring generates torque through its own elastic deformation, thereby achieving the winding of the traction rope and enabling the traction rope to be stored in an orderly manner; the anti-loss mechanism effectively prevents the battery cover from being lost during use.
[0012] By adopting the above technical solution, not only are problems such as tangling and damage that may be caused by the traction rope being placed haphazardly outside avoided, but the traction rope can also be extended smoothly when the battery cover needs to be removed, making it convenient to operate. At the same time, the connection stability between the battery cover and the remote control is enhanced, effectively preventing the battery cover from being lost.
[0013] Furthermore, one end of the cover is provided with a locking element. The cover is adapted to the cover slot on the remote control and can be precisely embedded into the cover slot to achieve initial positioning. The locking element is adapted to the locking element slot on the remote control and can be inserted into the locking element slot. When the locking element and the locking element slot are engaged, a reliable locking structure is formed, and the locking structure is used to firmly fix the battery cover to the remote control.
[0014] By adopting the above technical solution and forming a reliable locking structure through the snap-fit of the clip and the clip slot, this double fixing method can firmly fix the battery cover to the remote control, improving the stability and reliability of the connection between the battery cover and the remote control, and reducing the risk of the battery cover being lost or affecting the normal use of the remote control due to loosening.
[0015] Furthermore, the traction rope is made of nylon, and the fixing plate is made of engineering plastic.
[0016] By adopting the above technical solution, the traction rope is made of nylon, which has the characteristics of high strength, wear resistance and good flexibility. It can withstand a certain amount of tension and friction, ensuring the durability of the anti-loss mechanism.
[0017] Furthermore, the shape and size of the remote control are adapted to the human hand, making it easy to hold and operate.
[0018] By adopting the above technical solutions, users can use the remote control more comfortably and conveniently, improving the user experience and reducing the possibility of the battery cover accidentally falling off due to inconvenient operation.
[0019] In summary, the present invention has the following main advantages:
[0020] This utility model incorporates an anti-loss mechanism, a torsion spring, a traction rope, a fixing plate, a second screw hole, a mounting base, a mounting groove, and a first screw hole. The anti-loss mechanism utilizes a traction rope wound around the torsion spring. The fixing plate at one end of the traction rope is inserted into the battery cover mounting groove and secured with bolts through the first and second screw holes, forming a physical connection link to prevent the battery cover from being lost due to human negligence. The torsion spring generates torque through its own elastic deformation. After the battery cover is installed in place, the torsion spring automatically and orderly stores the traction rope in the functional groove. This design prevents the remote control from failing to close properly due to a lost battery cover, prevents dust and moisture from entering and causing short circuits, ensures good contact between the battery and the circuit, and avoids poor battery contact. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0022] Figure 2 This is a partial three-dimensional structural diagram of the remote control of this utility model;
[0023] Figure 3 This is a partial three-dimensional structural diagram of the battery cover of this utility model;
[0024] Figure 4 This utility model Figure 2 Enlarged structural diagram at point A in the middle.
[0025] In the diagram: 1. Battery cover; 101. Cover body; 102. Clip; 103. Mounting base; 104. Mounting slot; 105. First screw hole; 2. Remote control; 201. Remote control body; 202. Cover slot; 203. Battery slot; 204. Function slot; 205. Clip slot; 3. Anti-loss mechanism; 301. Torsion spring; 302. Traction rope; 303. Fixing plate; 304. Second screw hole. Detailed Implementation
[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0027] A battery cover mounting structure, such as Figures 1-4As shown, the device includes a battery cover 1 and a remote control 2. The remote control 2 includes a remote control body 201. A cover groove 202 is provided on the back of the remote control body 201. Inside the cover groove 202 are a battery slot 203, a clip slot 205, and a function slot 204. An anti-loss mechanism 3 is provided in the function slot 204. The anti-loss mechanism 3 includes a torsion spring 301, which is rotatably connected to the function slot 204. A traction rope 302 is wound around the torsion spring 301, and a fixing piece 303 is provided at one end of the traction rope 302. A second screw hole 304 is provided on the fixing plate 303; the battery cover 1 includes a cover body 101, and a mounting base 103 is provided on the inner wall of the cover body 101. A mounting groove 104 is provided at the bottom of the mounting base 103, and a first screw hole 105 is provided in the mounting groove 104. A cover groove 202 is provided on the back of the remote control body 201, and a battery slot 203, a clip slot 205, and a function slot 204 are respectively provided in the cover groove 202. An anti-loss mechanism 3 is provided in the function slot 204. This structural layout is reasonable and compact. The battery slot 203 provides a dedicated space for the battery, ensuring the stability of the battery installation; the clip slot 205 cooperates with the clip 102 on the battery cover 1 to achieve the initial positioning and fixation of the battery cover 1; the function slot 204 provides an installation position for the anti-loss mechanism 3, so that the anti-loss mechanism 3 can be cleverly integrated into the overall structure of the remote control 2 without taking up too much extra space, while effectively preventing the battery cover 1 from being lost, thus improving the overall design rationality and practicality of the remote control 2.
[0028] See Figure 1 , Figure 2 , Figure 3 , Figure 4 The mounting slot 104 is adapted to the fixing piece 303, and the fixing piece 303 is used to insert into the mounting slot 104. After the insertion operation of the fixing piece 303 and the mounting slot 104 is completed, the first screw hole 105 and the second screw hole 304 are in a relative position to meet the bolt connection requirements. This design greatly improves the accuracy and firmness of the connection between the anti-loss mechanism 3 and the battery cover 1. The precise insertion ensures the stability of the fixing piece 303 in the mounting slot 104, while the bolt connection further enhances the connection strength between the two, effectively avoiding the separation of the anti-loss mechanism 3 and the battery cover 1 due to weak connection, thereby ensuring the reliability of the anti-loss function and ensuring that the battery cover 1 is always tightly connected to the anti-loss mechanism 3 during use, reducing the risk of loss.
[0029] See Figure 1 , Figure 2 , Figure 3 , Figure 4The torsion spring 301 generates torque through its own elastic deformation, thereby winding up the traction rope 302 and allowing it to be stored in an orderly manner. The anti-loss mechanism 3 effectively prevents the battery cover 1 from being lost during use. This feature brings several benefits: First, orderly storage avoids the traction rope 302 being scattered around, reducing the risk of damage caused by tangling with other items and extending its service life. Second, when the battery cover 1 needs to be removed, the traction rope 302 can extend smoothly without affecting operation due to improper storage, allowing users to quickly and easily remove the battery cover 1. Most importantly, this automatic winding function always keeps the traction rope 302 at a certain tension, enhancing the connection stability between the battery cover 1 and the remote control 2, effectively preventing the battery cover 1 from being accidentally lost during use, and providing reliable anti-loss protection for the battery cover 1.
[0030] See Figure 1 , Figure 2 , Figure 3 , Figure 4 One end of the cover 101 is provided with a locking piece 102. The cover 101 is adapted to the cover slot 202 on the remote control 2, and can be precisely inserted into the cover slot 202 to achieve initial positioning. The locking piece 102 is adapted to the locking slot 205 on the remote control 2, and can be inserted into the locking slot 205. When the locking piece 102 and the locking slot 205 are engaged, a reliable locking structure is formed, which is used to firmly fix the battery cover 1 to the remote control 2. The precise insertion of the cover 101 and the cover slot 202 achieves initial positioning, and the engagement of the locking piece 102 and the locking slot 205 forms a reliable locking structure. This dual fixing method significantly improves the stability and reliability of the connection between the battery cover 1 and the remote control 2. The precise insertion and initial positioning allow the battery cover 1 to be quickly positioned during installation, improving installation efficiency; while the locking structure further enhances the connection strength between the battery cover 1 and the remote control 2, preventing the battery cover 1 from loosening and falling off during use. This stable connection not only ensures the safety of the internal circuitry and battery of the remote control 2, avoiding problems such as short circuits and poor battery contact caused by loose battery cover 1, but also improves the user experience and reduces the trouble caused by problems with battery cover 1.
[0031] See Figure 1 , Figure 2 , Figure 3 , Figure 4The traction rope 302 is made of nylon, while the fixing plate 303 is made of engineering plastic. The nylon traction rope 302 boasts advantages such as high strength, wear resistance, and good flexibility. Its high strength ensures that the traction rope 302 can withstand a certain amount of tension and is not easily broken, ensuring its reliable function in case the battery cover 1 is accidentally pulled by external force, preventing its loss. Its wear resistance makes the traction rope 302 less prone to wear during long-term use, extending its service life. Its good flexibility ensures that the traction rope 302 can be smoothly wound and extended without being too stiff and affecting operation. The fixing plate 303 is made of engineering plastic, possessing good mechanical and processing properties. Its mechanical properties ensure that the fixing plate 303 has sufficient strength and rigidity to withstand the force when the battery cover 1 is connected to the anti-loss mechanism 3, and is not easily deformed. Its processing properties facilitate the molding and processing of the fixing plate 303, reducing production costs, while ensuring the dimensional accuracy of the fixing plate 303, which is beneficial for precise insertion into the mounting slot 104.
[0032] See Figure 1 , Figure 2 , Figure 3 , Figure 4 The shape and size of remote control 2 are adapted to the human hand, making it easy to hold and operate. This design fully considers the user experience. The human hand-fitting shape and size make holding remote control 2 more comfortable and natural, reducing hand fatigue and improving the convenience and accuracy of operation. At the same time, this user-friendly design also reduces the possibility of remote control 2 being dropped or battery cover 1 accidentally falling off due to inconvenient operation, further ensuring the safety of battery cover 1 and improving overall user satisfaction with remote control 2.
[0033] The implementation principle of this embodiment is as follows: First, a cover groove is opened on the back of the remote control body. A battery slot is set in the cover groove for placing the battery. A clip slot is used to cooperate with the clip on the battery cover to achieve a snap-fit and fixation. A functional slot is used to install an anti-loss mechanism. The battery cover includes a cover body. An installation seat is set on the inner wall of the cover body. An installation groove is opened at the bottom of the installation seat.
[0034] During installation, the battery cover is precisely embedded into the cover groove for initial positioning. At the same time, the clip at one end of the battery cover is inserted into the clip groove to form a reliable locking structure, thus initially fixing the battery cover to the remote control. Next, the fixing piece at one end of the traction rope in the anti-loss mechanism is inserted into the mounting groove. At this time, the first screw hole and the second screw hole are in a relative position relationship. The fixing piece is fixed to the mounting base by bolt connection, thus completing the connection between the anti-loss mechanism and the battery cover.
[0035] During use, the torsion spring generates torque through its own elastic deformation, which can automatically retract the traction rope, so that the traction rope can be neatly stored in the functional slot when not in use, avoiding problems such as tangling and damage caused by the traction rope being placed messily outside. When it is necessary to remove the battery cover, the traction rope can be extended smoothly for easy operation.
[0036] Thanks to the anti-loss mechanism, even if the battery cover is removed due to human negligence, the tether will still connect the battery cover to the remote control, preventing the battery cover from being lost. At the same time, the battery cover and the remote control are double-fixed by the snap-fit structure and the anti-loss mechanism, which enhances the stability and reliability of the connection, ensures the stability of the overall structure of the remote control, ensures that the remote control can be used normally, and avoids problems such as short circuits in the internal circuit and poor battery contact caused by the loss of the battery cover.
[0037] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.
Claims
1. A battery cover mounting structure, characterized in that: Includes a battery cover (1) and a remote control (2). The remote control (2) includes a remote control body (201). A cover groove (202) is provided on the back of the remote control body (201). A battery groove (203), a card slot (205) and a function slot (204) are provided inside the cover groove (202). An anti-loss mechanism (3) is provided in the function slot (204). The anti-loss mechanism (3) includes a torsion spring (301), which is rotatably connected to the functional slot (204). A traction rope (302) is wound on the torsion spring (301), and a fixing plate (303) is provided at one end of the traction rope (302). A second screw hole (304) is provided on the fixing plate (303). The battery cover (1) includes a cover body (101), and an mounting base (103) is provided on the inner wall of the cover body (101). An mounting groove (104) is provided at the bottom of the mounting base (103), and a first screw hole (105) is provided in the mounting groove (104).
2. The battery cover mounting structure according to claim 1, characterized in that: The mounting groove (104) is adapted to the fixing piece (303), and the fixing piece (303) is used to insert into the mounting groove (104). After the fixing piece (303) and the mounting groove (104) are inserted, the first screw hole (105) and the second screw hole (304) are in a relative position relationship to meet the bolt connection requirements.
3. The battery cover mounting structure according to claim 1, characterized in that: The torsion spring (301) generates torque through its own elastic deformation, thereby achieving the winding of the traction rope (302) and enabling the traction rope to be stored in an orderly manner; the anti-loss mechanism (3) effectively prevents the battery cover (1) from being lost during use.
4. The battery cover mounting structure according to claim 1, characterized in that: One end of the cover (101) is provided with a clip (102). The cover (101) is adapted to the cover groove (202) on the remote controller (2) and can be accurately embedded into the cover groove (202) to achieve initial positioning. The clip (102) is adapted to the clip groove (205) on the remote controller (2) and can be inserted into the clip groove (205). When the clip (102) and the clip groove (205) are engaged, a reliable engagement structure is formed, and the engagement structure is used to firmly fix the battery cover (1) on the remote controller (2).
5. The battery cover mounting structure according to claim 1, characterized in that: The traction rope (302) is made of nylon, and the fixing plate (303) is made of engineering plastic.
6. The battery cover mounting structure according to claim 1, characterized in that: The shape and size of the remote control (2) are adapted to the human hand, making it easy to hold and operate.