A kind of three-proofing notebook computer with replaceable battery in boot state
By designing the connection method for the battery, cables, and charging interface within the laptop, the problem of replacing the battery while the computer is powered on is solved, ensuring that the computer's power supply is not interrupted during battery replacement, thus improving convenience and stability.
Patent Information
- Application Number
- CN202311816016.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-25
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-12-25
AI Technical Summary
Current laptops require shutdown to replace the battery when it is low on power, which is inconvenient and could have fatal consequences in certain situations.
Design a rugged laptop with a replaceable battery while the computer is powered on. The battery, cable, and charging port are connected to allow battery replacement without shutting down the computer. The new battery is powered by the cable, and the battery slot, adjustment block, and fixing device ensure stable battery installation.
This technology ensures that the computer continues to be powered while the battery is being replaced, without interrupting ongoing operations. This improves the computer's usability and convenience, and reduces computer stability issues caused by battery replacement.
Smart Images

Figure CN117784889B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic products, and particularly relates to a three-proofing notebook computer with replaceable battery in a starting state. BACKGROUND
[0002] In today's society, electronic products have deeply penetrated into our daily life and have become an indispensable part of our life. No matter where we go, we always carry one or two electronic devices in our hands. These electronic devices provide us with a variety of functions, making our life more convenient and efficient. Among them, the development level of notebook computers is also getting higher and higher, and has become an indispensable part of our daily life.
[0003] Many things in our life need to use a notebook computer, such as communication with people, work, study, etc. However, the current notebook computer battery usage time is about 2 hours, which means we need to frequently replace the battery or use the power cord to keep the computer running continuously. This will undoubtedly bring a lot of inconvenience, such as when we need to use the computer continuously, we suddenly find that the battery power is insufficient, and we need to shut down and replace the battery, which may cause time waste, and even delay important operations.
[0004] Especially in some specific occasions, such as battlefield, operating room, etc., the use of notebook computers is crucial. If the notebook computer needs to be shut down and the battery needs to be replaced because of insufficient power, it may have fatal consequences. For example, on the battlefield, if a soldier is using a notebook computer to perform a task, he may suddenly find that the battery power is insufficient and needs to shut down and replace the battery, which may cause the task to fail or endanger the safety of the soldier's life. SUMMARY
[0005] In view of the problem that the current computer needs to be shut down to replace the battery, the present application provides a three-proofing notebook computer with replaceable battery in a starting state, which is beneficial to solve the problem of power supply interruption caused by replacing the battery.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical solutions:
[0007] The utility model provides a kind of three-proofing notebook computer of battery in starting state can be replaced, including computer body, the side wall of the computer body is equipped with the charging interface for powering notebook computer, the battery for powering notebook computer is equipped in the computer body, the top wall of the computer body is recessed with the battery slot for the battery placement, the side wall of the battery is equipped with first electric connection part, the side wall of the battery slot is equipped with second electric connection part with the first electric connection part electrically connected, the battery is powered by the first connection part and the second electric connection part electrically connected and gives notebook computer, one end of the battery is equipped with cable, the third electric connection part is equipped at the end of the cable away from the battery, the cable is telescopic and is equipped in the battery, the battery is powered by the third electric connection part and the charging interface electrically connected and gives notebook computer.
[0008] When the battery needs to be replaced, the new battery is taken out, the third electric connection part of the cable on the new battery is electrically connected with the charging interface, the new battery powers the notebook computer through the cable, then the old battery is disassembled, the new battery is installed in the battery slot, so that the first electric connection part of the new battery is electrically connected with the second electric connection part, so that the new battery powers the notebook computer through the first electric connection part, then the third electric connection part is separated from the charging interface, and then the cable is retracted into the battery, so that the replacement of the battery is completed. When the battery of the notebook computer is replaced, the third electric connection part on the cable is electrically connected with the charging interface to charge the battery, and then the battery is replaced, so that the notebook computer can still maintain normal power supply when the battery is replaced, and the operation in progress will not be interrupted. This is beneficial to reduce the situation that the power supply of the computer is interrupted due to the replacement of the battery, and improves the practicability and convenience of the computer.
[0009] Preferably, the length of the battery slot is greater than the length of the battery.
[0010] The length of the battery slot is greater than the length of the battery, which provides sufficient space for the cable, which is beneficial to reduce the situation that the battery is tilted due to the extrusion of the cable caused by insufficient space of the battery slot, and ensures that the battery can be stably installed in the battery slot, which is beneficial to improve the stability of the battery installation. At the same time, the stability of the power connection is guaranteed: by leaving enough space for the cable, the stable connection of the first electric connection part and the second electric connection part can be ensured, so that the notebook computer is not easily powered off or shut down due to unstable power connection during the replacement of the battery.
[0011] Preferably, the battery slot is provided with the fixing area for fixing the battery and the telescopic area for placing the cable, the telescopic area is slidably connected with an adjusting block, and the side wall of the telescopic area is provided with a driving member for driving the adjusting block to move along the length direction of the telescopic area.
[0012] The technical scheme is adopted, the position of the adjusting block is driven by the driving member, when the battery needs to be replaced, the adjusting block can be moved to a suitable position to provide space for the placement of the cable, which is beneficial to reduce the situation that the battery is lifted due to improper position of the cable when the battery is replaced, so that the battery replacement process is smoother; meanwhile, after the battery is installed, the position of the adjusting block can be moved to fix the position of the battery, which is beneficial to reduce the displacement of the battery due to movement or vibration of the computer, and is beneficial to ensure stable operation of the computer; in addition, through the setting of the adjusting block and the driving member, the battery slot can adapt to batteries and cables of different sizes, and the applicability of the computer is enhanced.
[0013] Preferably, the driving member comprises an adjusting rod connected to one side of the adjusting block away from the fixed area, the side wall of the telescopic area away from the fixed area is recessed with a sliding groove for sliding connection of the adjusting rod, the outer side wall of the adjusting rod is protruded with a sliding tooth, and the sliding tooth is rotationally connected with a first gear.
[0014] The technical scheme is adopted, the position of the adjusting block is driven by the driving member, when the battery needs to be replaced, the adjusting block can be moved to a suitable position to provide space for the placement of the cable, which is beneficial to reduce the situation that the battery is lifted due to improper position of the cable when the battery is replaced, so that the battery replacement process is smoother; meanwhile, after the battery is installed, the position of the adjusting block can be moved to fix the position of the battery, which is beneficial to reduce the displacement of the battery due to movement or vibration of the computer, and is beneficial to ensure stable operation of the computer; in addition, through the setting of the adjusting block and the driving member, the battery slot can adapt to batteries and cables of different sizes, and the applicability of the computer is enhanced.
[0015] Preferably, one side of the adjusting block is provided with a fixing member for temporarily fixing the position of the battery when a new battery is installed.
[0016] The technical scheme is adopted, the position of the adjusting block is driven by the driving member, when the battery needs to be replaced, the adjusting block can be moved to a suitable position to provide space for the placement of the cable, which is beneficial to reduce the situation that the battery is lifted due to improper position of the cable when the battery is replaced, so that the battery replacement process is smoother; meanwhile, after the battery is installed, the position of the adjusting block can be moved to fix the position of the battery, which is beneficial to reduce the displacement of the battery due to movement or vibration of the computer, and is beneficial to ensure stable operation of the computer; in addition, through the setting of the adjusting block and the driving member, the battery slot can adapt to batteries and cables of different sizes, and the applicability of the computer is enhanced.
[0017] Preferably, one side of the adjusting block is provided with a fixing member for temporarily fixing the position of the battery when a new battery is installed.
[0018] According to the technical scheme, when the cable is electrically connected with the charging interface and the new battery is installed in the fixing area, the closing plate is driven to open the fixing slot, the elastic member is restored to drive the telescopic rod to move away from the bottom of the fixing slot, the end of the telescopic rod away from the bottom of the fixing slot abuts against the side wall of the battery, so that the battery is fixed, the telescopic rod, the elastic member and the closing plate are arranged, the temporary fixing of the battery position is realized only by driving the closing plate to open the fixing slot, the automation degree of the battery installation is improved, and the user is more convenient to operate when installing the new battery.
[0019] Preferably, the adjusting block is provided with a linkage member for linkage of synchronous driving of the closing plate and the adjusting rod away from or close to the bottom of the sliding slot, so that the closing plate is opened or closed to the fixing slot, when the adjusting rod moves close to the bottom of the sliding slot, the linkage member links the closing plate to open the fixing slot, and when the adjusting rod moves away from the bottom of the sliding slot, the linkage member links the closing plate to close the fixing slot.
[0020] According to the above technical scheme, through the design of the linkage member, synchronous operation of the adjusting rod movement and the opening and closing of the fixing slot is realized, so that the user can open and close the fixing slot without additional operation while operating the adjusting rod, and the operation convenience is improved.
[0021] Preferably, the side wall of the fixing slot is provided with a moving slot for sliding connection of the closing plate, the top wall of the closing plate is provided with a moving tooth, the linkage member comprises a rotating sleeve threadedly connected with one end of the adjusting rod close to the adjusting block, the rotating sleeve is rotatably connected with one side of the adjusting block, a rotating rod is protruded from the center position of the side of the rotating sleeve close to the adjusting block, the rotating rod is rotatably connected with the closing plate, and the side wall of the telescopic area is provided with a limiting plate for limiting movement of the rotating sleeve away from the sliding slot.
[0022] According to the technical scheme, when the fixed groove needs to be opened, the adjusting rod is driven to move towards the bottom of the sliding groove, so that the rotating sleeve abuts against the limiting plate, the adjusting rod is continuously driven to move towards the bottom of the sliding groove, the adjusting rod and the rotating sleeve are relatively displaced, the rotating sleeve is rotated to drive the rotating rod to rotate, and the rotating rod drives the closing plate to open the fixed groove; when the fixed groove needs to be closed, the adjusting rod is driven to move away from the bottom of the sliding groove, so that the adjusting rod drives the adjusting block to abut against the battery, the adjusting rod is continuously driven to move away from the bottom of the sliding groove, the adjusting rod and the rotating sleeve are relatively displaced, the rotating sleeve is rotated to drive the rotating rod to rotate, and the rotating rod drives the closing plate to close the fixed groove. Through the above arrangement, the user only needs to operate the adjusting rod to realize the sliding of the closing plate, and the operability of the equipment is improved. Meanwhile, through the arrangement of the rotating sleeve and the rotating rod, the accurate control of the movement of the adjusting rod and the sliding of the closing plate can be realized, and the operation accuracy is improved.
[0023] Preferably, one end of the telescopic rod close to the fixed groove is provided with a guide surface matched with the closing plate. When one side of the adjusting block abuts against the side wall of the battery, the closing plate is driven to close the fixed groove, and the closing plate is matched with the guide surface, so that the telescopic rod is separated from the battery.
[0024] According to the technical scheme, the adjusting rod is driven to move away from the bottom of the sliding groove, so that the adjusting rod drives the adjusting block to abut against the battery, the adjusting rod is continuously driven to move away from the bottom of the sliding groove, the adjusting rod and the rotating sleeve are relatively displaced, the rotating sleeve is rotated to drive the rotating rod to rotate, the rotating rod drives the closing plate to close the fixed groove, then the closing plate is matched with the guide surface, so that the telescopic rod is separated from the battery and the telescopic rod is completely placed in the fixed groove, which is beneficial to reduce the pressure of the telescopic rod on the battery and protect the battery. Meanwhile, through the arrangement of the guide surface and the closing plate, the telescopic rod can be cleverly withdrawn into the fixed groove, the operation of the equipment is simplified, and the user experience is improved.
[0025] In summary, the present application has the following advantages:
[0026] 1. Through the arrangement of the battery, the cable, the first electric connection part, the second electric connection part, the third electric connection part and the charging interface, the notebook computer can maintain normal power supply when the battery is replaced, and the operation in progress is not easily interrupted, which is beneficial to reduce the situation that the power supply of the computer is interrupted due to the replacement of the battery, and improves the practicability and convenience of the computer.
[0027] 2. The space for placing the cable is left by the arrangement of the battery groove, the adjusting block, the driving member and the fixing member, which is beneficial to reduce the situation that the battery is raised due to improper position of the cable when the battery is replaced, so that the battery replacement process is smoother; meanwhile, the adjusting block fixes the position of the battery and the fixing member temporarily fixes the position of the battery, which is beneficial to reduce the situation that the battery is displaced due to movement or vibration of the computer, and is beneficial to ensure stable operation of the computer
[0028] 3. The synchronous operation of the adjusting rod movement and the opening and closing of the fixing groove is realized by the arrangement of the linkage member, so that the user can open and close the fixing groove without additional operation while operating the adjusting rod, and the operation convenience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 It is a whole structure schematic diagram of the three-proof notebook computer with replaceable battery in the boot state.
[0030] Figure 2 It is an enlarged structure schematic diagram of the A part in Figure 1
[0031] Figure 3 It is an internal structure schematic diagram of the three-proof notebook computer with replaceable battery in the boot state.
[0032] Figure 4 It is an enlarged structure schematic diagram of the B part in Figure 3 BRIEF DESCRIPTION OF DRAWINGS
[0033] 1, computer body; 11, charging interface; 12, battery groove; 121, second electric connection part; 122, fixed area; 123, telescopic area; 13, sliding groove; 14, rotating groove; 15, limiting plate; 2, battery; 21, first electric connection part; 22, cable; 221, third electric connection part; 3, adjusting block; 31, fixing groove; 32, insertion groove; 4, driving member; 41, adjusting rod; 42, sliding tooth; 43, first gear; 5, fixing member; 51, telescopic rod; 511, guide surface; 52, elastic member; 53, closing plate; 54, moving tooth; 6, linkage member; 61, rotating sleeve; 62, rotating rod; 63, second gear; 64, connecting rod.
[0034] DETAILED DESCRIPTION
[0035] The application is further described in detail below in combination with the drawings and embodiments.
[0036] The embodiment discloses a three-proof notebook computer with replaceable battery in the boot state, referring to Figure 1 and Figure 2 The utility model relates to a notebook computer, including computer body 1, the side wall of computer body 1 is provided with the charging interface 11 for the power supply of notebook computer, install the battery 2 for the power supply of notebook computer in computer body 1, the top wall of computer body 1 is recessed with the battery slot 12 for placing battery 2, and the length of battery slot 12 is greater than the length of battery 2. The side wall of the length direction one end of battery 2 is provided with first electric connecting part 21, and the side wall of battery slot 12 is provided with second electric connecting part 121 for the electric connection of first electric connecting part 21, and battery 2 is electrically connected through first electric connecting part 21 and second electric connecting part 121 to supply power for notebook computer, and the side wall of the length direction one end of battery 2 away from first electric connecting part 21 is installed with cable 22, and cable 22 is telescopically installed in battery 2, and the one end of cable 22 away from battery 2 is provided with third electric connecting part 221, and battery 2 is electrically connected through third electric connecting part 221 and charging interface 11 to supply power for notebook computer, when the power of battery 2 is almost used up, the third electric connecting part 221 on the cable 22 in the new battery 2 is electrically connected with the charging interface 11, then the old battery 2 is disassembled, the new battery 2 is installed in the battery slot 12, the first electric connecting part 21 of the new battery 2 is electrically connected with the second electric connecting part 121, then the new third electric connecting part 221 is separated from the charging interface 11, finally the cable 22 is retracted into the battery 2, thereby completing the replacement of battery 2.
[0037] Referring to Figure 2 And Figure 4 The battery slot 12 is provided with a fixed area 122 for fixing the battery 2 and a telescopic area 123 for placing the cable 22, the telescopic area 123 is slidably connected with an adjusting block 3, and the side wall of the telescopic area 123 away from the fixed area 122 is provided with a driving member 4 for driving the adjusting block 3 to move along the length direction of the telescopic area 123. The driving member 4 includes an adjusting rod 41 connected with the side of the adjusting block 3 away from the fixed area 122, one end of the adjusting rod 41 is arranged in the side wall of the telescopic area 123 away from the fixed area 122, the side wall of the telescopic area 123 away from the fixed area 122 is recessed with a sliding groove 13 for slidably connecting the adjusting rod 41, one end of the adjusting rod 41 is arranged in the sliding groove 13, and the adjusting rod 41 is slidably connected with the sliding groove 13, and the end of the adjusting rod 41 away from the sliding groove 13 is arranged in the telescopic area 123, the driving member 4 further includes a sliding tooth 42 protruding from the outer side wall of the adjusting rod 41 close to the top wall of the computer body 1 and a first gear 43 engaged with the sliding tooth 42, the top wall of the computer body 1 is recessed with a rotating groove 14 rotatably connected with the first gear 43, the groove bottom of the rotating groove 14 is communicated with the side wall of the sliding groove 13, and one side of the first gear 43 is flush with the top wall of the computer body 1. By rotating the first gear 43, the first gear 43 drives the adjusting rod 41 to move away from or close to the groove bottom of the sliding groove 13, so that the adjusting rod 41 drives the adjusting block 3 to move, thereby sliding and fixing the adjusting block 3 to the desired position in the telescopic area 123.
[0038] Referring to Figure 3 and Figure 4 , the adjusting block 3 is recessed with a fixing groove 31 on the side close to the fixing area 122, and the adjusting block 3 is provided with a fixing member 5 for temporarily fixing the position of the battery 2 when installing a new battery 2. The fixing member 5 comprises a telescopic rod 51 fixedly connected with the groove bottom of the fixing groove 31, and an elastic member 52 installed on the outer side wall of the telescopic rod 51 for always driving the telescopic rod 51 to stretch or retract in the direction away from the groove bottom of the fixing groove 31. In the embodiment, the elastic member 52 is a spring, one end of which is fixedly connected with the groove bottom of the fixing groove 31, and the other end thereof away from the groove bottom of the fixing groove 31 is fixedly connected with the other end of the telescopic rod 51 away from the groove bottom of the fixing groove 31. The fixing member 5 further comprises a closing plate 53 installed on the side wall of the fixing groove 31 for opening and closing the fixing groove 31, and the side wall of the fixing groove 31 is recessed with a moving groove for slidingly connecting the closing plate 53, and the top wall of the closing plate 53 is protruded with a moving tooth 54. When installing a new battery 2, the fixing block is driven to move in the direction away from the fixing area 122, and then the new battery 2 is installed in the fixing area 122 in the battery groove 12, and then the closing plate 53 is driven to open the fixing groove 31, the elastic member 52 restores the elastic force, and the elastic member 52 drives the telescopic rod 51 to move in the direction away from the groove bottom of the fixing groove 31, so that the other end of the telescopic rod 51 away from the groove bottom of the fixing groove 31 abuts against the side of the adjusting block 3 close to the telescopic area 123, thereby temporarily fixing the battery 2.
[0039] Referring to Figure 4 , the adjusting block 3 is provided with a linkage member 6 for linkage driving the closing plate 53 to open and close the fixing groove 31 synchronously with the adjusting rod 41 moving in the direction away from or close to the groove bottom of the sliding groove 13. The linkage member 6 comprises a rotating sleeve 61 screwedly connected with the end of the adjusting rod 41 close to the adjusting block 3, the end of the adjusting rod 41 close to the adjusting block 3 is arranged in the rotating sleeve 61, the center position of the end of the rotating sleeve 61 away from the sliding groove 13 is rotatably connected with a connecting rod 64, the end of the connecting rod 64 away from the rotating sleeve 61 is fixedly connected with the side of the adjusting block 3 close to the sliding groove 13, and the linkage member 6 further comprises a rotating rod 62 protruded from the side of the rotating sleeve 61 close to the adjusting block 3, the rotating rod 62 penetrates through both ends of the connecting rod 64, and the end of the rotating rod 62 away from the rotating sleeve 61 penetrates into the adjusting block 3, the rotating rod 62 is rotatably connected with the connecting rod 64, the side of the adjusting block 3 close to the adjusting rod 41 is recessed with a penetration groove 32 for the rotating rod 62 to penetrate, and the groove bottom of the penetration groove 32 is communicated with the side wall of the moving groove, and the linkage member 6 further comprises a second gear 63 fixedly connected with the end of the rotating rod 62 away from the rotating sleeve 61, and the second gear 63 is engaged with the moving tooth 54.
[0040] Referring to Figure 2 and Figure 4The side wall of the telescopic area 123 is provided with a limiting plate 15 for limiting the movement of the rotating sleeve 61 towards the sliding groove 13, the limiting plate 15 is located at the side of the rotating sleeve 61 close to the sliding groove 13, the adjusting rod 41 penetrates through the limiting plate 15, and the adjusting rod 41 is in sliding connection with the limiting plate 15. The driving of the adjusting rod 41 towards the direction close to the bottom of the sliding groove 13 moves the adjusting block 3 towards the direction close to the sliding groove 13, the side of the adjusting block 3 close to the adjusting rod 41 abuts against the limiting plate 15, the continuous driving of the adjusting rod 41 towards the direction close to the bottom of the sliding groove 13 drives the rotating sleeve 61 to rotate, the rotating sleeve 61 drives the rotating rod 62 to drive the closing plate 53 to open the fixed groove 31; the driving of the adjusting rod 41 towards the direction away from the bottom of the sliding groove 13 drives the adjusting block 3 to move towards the direction away from the sliding groove 13, so that the adjusting block 3 abuts against the battery 2, the continuous driving of the adjusting rod 41 towards the direction away from the bottom of the sliding groove 13 drives the rotating sleeve 61 to rotate, and the rotating sleeve 61 drives the rotating rod 62 to drive the closing plate 53 to close the fixed groove 31.
[0041] Referring to Figure 4 The end of the telescopic rod 51 close to the slot of the fixed groove 31 is provided with a guide surface 511 matched with the closing plate 53, when the side of the adjusting block 3 abuts against the side wall of the battery 2 and the telescopic rod 51 is placed in the fixed groove 31, the driving of the closing plate 53 to close the fixed groove 31 is realized, and the closing plate 53 is matched with the guide surface 511, so that the telescopic rod 51 is separated from the battery 2.
[0042] The implementation principle of the embodiment is:
[0043] When the battery 2 is almost out of power, take out a new battery 2, and then pull the cable 22 of the new battery 2 out of the battery 2, electrically connect the third point connection part on the cable 22 with the charging interface 11, supply power for the notebook computer, and then rotate the first gear 43, which drives the adjusting rod 41 to move towards the bottom of the sliding groove 13 through meshing with the sliding teeth 42, and drives the adjusting block 3 to move towards the sliding groove 13, so that the side of the adjusting block 3 close to the sliding groove 13 abuts against the side of the limiting plate 15 away from the sliding groove 13, then disassemble the old battery 2, and install the new battery 2 in the fixed area 122, so that the first electrical connection part 21 is electrically connected with the second electrical connection part 121, and then continue to drive the adjusting rod 41 to move towards the bottom of the sliding groove 13, so that the rotating sleeve 61 rotates, which drives the rotating rod 62 to rotate, and drives the second gear 63 to rotate, which drives the closing plate 53 to move towards the bottom of the moving groove, so as to open the fixed groove 31, and the spring restores the elastic force to drive the telescopic rod 51 to move away from the bottom of the fixed groove 31, so that the end of the telescopic rod 51 away from the bottom of the fixed groove 31 abuts against one side of the battery 2, and then temporarily fix the battery 2 in the fixed area 122;
[0044] Then separate the third electrical connection part 221 from the charger interface, completely retract the cable 22 into the battery 2, and rotate the first gear 43 in the opposite direction, so that the first gear 43 drives the adjusting rod 41 to move away from the bottom of the sliding groove 13, and drives the adjusting block 3 to move away from the bottom of the sliding groove 13, so that the side of the adjusting block 3 away from the sliding groove 13 abuts against the side of the battery 2 close to the adjusting block 3, so that the telescopic rod 51 is placed in the fixed groove 31, and continue to drive the adjusting rod 41 to move away from the bottom of the sliding groove 13, so that the end of the adjusting rod 41 away from the sliding groove 13 moves towards the inside of the rotating sleeve 61, thereby driving the rotating sleeve 61 to rotate, which drives the rotating rod 62 to rotate, and drives the second gear 63 to drive the closing plate 53 to close the fixed groove 31, and the closing plate 53 cooperates with the guide surface 511 to push the telescopic rod 51 away from the battery 2, so that the telescopic rod 51 is completely placed in the fixed groove 31, thereby completing the replacement of the battery 2. Through the above arrangement, since the battery 2 is connected with the second electrical connection part 121 through the first electrical connection part 21, and is connected with the charging interface 11 through the third electrical connection part 221, even during the replacement of the battery 2, the notebook computer can continue to obtain power supply, and is not easy to shut down due to power interruption; at the same time, the user does not need to close the computer when replacing the battery 2, and the ongoing operation will not be interrupted, thereby improving the practicability and convenience of the computer.
[0045] The battery groove 12 is provided with the length of the battery groove 12, the adjusting block 3, the driving piece 4 and the fixing piece 5, so as to provide space for the placement of the cable 22, reduce the situation that the battery 2 is lifted due to improper position of the cable 22 when the battery 2 is replaced, make the first electric connection part 21 in the battery 2 be connected with the second electric connection part 121, reduce the situation that the computer is shut down when the battery 2 is replaced due to unstable connection between the battery 2 and the notebook, fix the position of the battery 2 through the adjusting block 3 and temporarily fix the position of the battery 2 through the fixing piece 5, reduce the situation that the battery 2 is displaced due to movement or vibration of the computer, ensure stable operation of the computer, make the battery groove 12 meet the demand of the cable 22 and not affect the stability of the battery 2 in the battery groove 12.
[0046] The adjusting rod 41, the sliding tooth 42, the first gear 43 and the linkage 6 are designed, the user can manually operate the first gear 43, synchronous operation of the movement of the adjusting rod 41 and the opening and closing of the fixing groove 31 is realized, the user can open and close the fixing groove 31 without additional operation when operating the adjusting rod 41, the user can easily replace the battery 2, and the convenience of operation is improved.
[0047] The closing plate 53 and the guide surface 511 are provided, the closing plate 53 closes the fixing groove 31 and drives the closing plate 53 to separate from the side wall of the battery 2, the pressure of the telescopic rod 51 on the battery 2 is reduced, and the battery 2 is protected.
[0048] The embodiments of the specific implementation are the preferred embodiments of the application, and do not limit the protection scope of the application, so that: equivalent changes made according to the structure, shape, principle of the application should be covered in the protection scope of the application.
Claims
1. A rugged laptop with a replaceable battery while powered on, characterized in that: The application relates to a computer body (1), a charging interface (11) for supplying power to a notebook computer is arranged on the side wall of the computer body (1), a battery (2) for supplying power to the notebook computer is arranged in the computer body (1), a battery groove (12) for placing the battery (2) is recessed in the top wall of the computer body (1), a first electric connecting part (21) is arranged on the side wall of the battery (2), a second electric connecting part (121) electrically connected with the first electric connecting part (21) is arranged on the side wall of the battery groove (12), the battery (2) is electrically connected with the second electric connecting part (121) through the first electric connecting part to supply power to the notebook computer, a cable (22) is arranged at one end of the battery (2), a third electric connecting part (221) is arranged at the end of the cable (22) away from the battery (2), the cable (22) is telescopically arranged in the battery (2), and the battery (2) is electrically connected with the charging interface (11) through the third electric connecting part (221) to supply power to the notebook computer. The battery groove (12) is provided with a fixing area (122) for fixing the battery (2) and a telescopic area (123) for placing the cable (22), an adjusting block (3) is slidably connected in the telescopic area (123), and the side wall of the telescopic area (123) is provided with a driving member (4) for driving the adjusting block (3) to move along the length direction of the telescopic area (123). The driving member (4) comprises an adjusting rod (41) connected with the side of the adjusting block (3) away from the fixing area (122), the side wall of the telescopic area (123) away from the fixing area (122) is recessed with a sliding groove (13) for slidably connecting the adjusting rod (41), and the outer side wall of the adjusting rod (41) is protruded with a sliding tooth (42) rotationally connected with a first gear (43). One side of the adjusting block (3) is provided with a fixing member (5) for temporarily fixing the position of the battery (2) when a new battery (2) is installed. The side of the adjusting block (3) close to the fixing area (122) is recessed with a fixing groove (31), the fixing member (5) comprises a telescopic rod (51) arranged at the groove bottom of the fixing groove (31), the outer side wall of the telescopic rod (51) is provided with an elastic member (52) for always driving the telescopic rod (51) to telescopically stretch away from the groove bottom of the fixing groove (31), and the side wall of the fixing groove (31) is provided with a closing plate (53) for opening and closing the fixing groove (31). The adjusting block (3) is provided with a linkage (6) for linkage of the closing plate (53) to be driven synchronously with the adjusting rod (41) to open and close the fixed slot (31) when the adjusting rod (41) moves towards the direction away from or close to the bottom of the sliding slot (13), when the adjusting rod (41) moves towards the direction close to the bottom of the sliding slot (13), the linkage (6) links the closing plate (53) to open the fixed slot (31); when the adjusting rod (41) moves towards the direction away from the bottom of the sliding slot (13), the linkage (6) links the closing plate (53) to close the fixed slot (31).
2. The waterproof notebook computer with replaceable battery in the power-on state according to claim 1, characterized in that: The length of the battery slot (12) is greater than the length of the battery (2).
3. The waterproof notebook computer with replaceable battery in power-on state according to claim 1, characterized in that: The side wall of the fixed slot (31) is provided with a moving slot for sliding connection of the closing plate (53), the top wall of the closing plate (53) is provided with a moving tooth (54), the linkage (6) comprises a rotating sleeve (61) threadedly connected with the adjusting rod (41) close to one end of the adjusting block (3), the rotating sleeve (61) is rotatably connected with one side of the adjusting block (3), the rotating sleeve (61) is provided with a rotating rod (62) protruding from the center position of the side close to the adjusting block (3), the rotating rod (62) is rotatably connected with the closing plate (53), and the side wall of the telescopic area (123) is provided with a limiting plate (15) for limiting the movement of the rotating sleeve (61) towards the sliding slot (13).
4. The waterproof notebook computer with replaceable battery in power-on state according to claim 3, characterized in that: The telescopic rod (51) is provided with a guide surface (511) matched with the closing plate (53) at one end close to the slot opening of the fixed slot (31), when one side of the adjusting block (3) abuts against the side wall of the battery (2), the closing plate (53) is matched with the guide surface (511) by driving the closing plate (53) to close the fixed slot (31), so that the telescopic rod (51) is separated from the battery (2).
Citation Information
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