Lithium battery capable of being remotely positioned and controlled
By designing a lithium battery that can be remotely located and controlled, the problem of difficult location and maintenance of lithium batteries in battery swapping stations has been solved, enabling rapid location and remote monitoring, reducing labor costs and fire risks, and ensuring user safety.
Patent Information
- Application Number
- CN202520143185.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-01-22
AI Technical Summary
The existing lithium batteries cannot be located in battery swapping stations, causing operators to spend a lot of time searching for lithium batteries during maintenance, increasing labor costs. Furthermore, lithium battery failures cannot be dealt with in a timely manner, which can easily lead to fires and property damage.
A remotely positioned and controlled lithium battery was designed, comprising a main body, a charge/discharge control unit, and a positioning control unit. The battery data is monitored in real time and transmitted to external devices through a monitoring and control board. Combined with backup power components and alarm components, the lithium battery can be remotely located and fault alarmed, reducing manual intervention.
It enables rapid location and remote monitoring of lithium batteries, reducing manual search time, lowering labor costs, timely handling of faults, preventing fires, and ensuring user safety and property security.
Smart Images

Figure CN223941819U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of lithium battery positioning technology, and in particular to lithium batteries that can be remotely positioned and controlled. Background Technology
[0002] A battery swapping station is an energy station that provides rapid battery replacement for two-wheeled electric vehicles. These stations store a large number of lithium batteries for users to swap. However, when a lithium battery overheats or its internal data malfunctions, it is prone to catching fire and exploding, threatening the user's life.
[0003] When lithium batteries are installed in two-wheeled electric vehicles, users often cannot easily detect the condition of the batteries during use. Therefore, if a lithium battery catches fire or explodes due to a malfunction, the user may not be able to remove the lithium battery from the electric vehicle in time, resulting in the entire electric vehicle being burned and causing property damage.
[0004] Since the lithium batteries in the battery swapping stations are provided by the station operators, in order to reduce the property damage caused to the operators by fires and explosions due to lithium battery failures, the operators need to perform uninterrupted maintenance on the lithium batteries to prevent users from taking out faulty lithium batteries from the battery swapping stations.
[0005] Because existing lithium batteries cannot be located, operators spend a significant amount of time searching for them when sending personnel to inspect and maintain them, causing inconvenience. Furthermore, when a lithium battery malfunctions due to internal data errors, operators need to remove it from the user's electric vehicle for inspection and repair, which also incurs substantial labor costs and is detrimental to operator operations. Utility Model Content
[0006] To address the aforementioned technical problems and achieve at least one advantage of this application, this application provides a remotely positionable and controllable lithium battery, wherein the remotely positionable and controllable lithium battery comprises:
[0007] The equipment body includes a housing, a cover, at least one lifting assembly, and at least one maintenance sealing member. The housing forms a storage cavity and an opening communicating with the storage cavity. At least one battery pack is placed in the storage cavity. The cover is disposed on the housing to close the opening. The lifting assembly includes a mounting body and a lifting member. The mounting body is disposed on the cover and has an installation space. The lifting member is movably disposed on the mounting body.
[0008] A charge / discharge control unit, comprising a charge / discharge control board, a charging connector, and a discharging connector, is mounted on the housing body. The charge / discharge control board is installed within the storage cavity. The charging connector and the discharging connector are electrically connected to the battery pack to charge the battery pack through the charging connector and release the stored energy through the discharging connector. The charging connector and the discharging connector are also electrically connected to the charge / discharge control board to monitor real-time data of energy being charged to the battery pack through the charging connector and to monitor real-time data of the battery pack releasing energy through the discharging connector. The charge / discharge control board is electrically connected to the battery pack.
[0009] At least one positioning control unit is provided, comprising a monitoring control board, a positioning communication transmission board, and a backup power supply. The monitoring control board is disposed in the storage cavity and located near the lifting assembly. The monitoring control board is electrically connected to the battery pack to monitor various data of the battery pack in real time and to supply power to the monitoring control board through the battery pack. The positioning communication transmission board is installed in the installation space and is electrically connected to the monitoring control board. The positioning communication transmission board is communicatively connected to an external device to transmit the monitored data and its own position information to the external device in real time. A charging / discharging control board is electrically connected to the monitoring control board to transmit the data from the charging / discharging control board to the external device through the monitoring control board and the positioning communication transmission board. The backup power supply is electrically connected to the positioning communication transmission board and the battery pack. The monitoring control board has an alarm device for issuing an alarm.
[0010] According to one embodiment of this application, the box body further forms an inspection port communicating with the storage cavity. The inspection port is located near the charging and discharging control board. The inspection sealing component includes a sealing member, a plurality of sealing connectors, and at least one lifting member. The sealing member is disposed at the inspection port and is connected to the box body through the plurality of the sealing connectors to close the inspection port. The lifting member is movably disposed on the sealing member.
[0011] According to one embodiment of this application, the sealing member forms an embedding groove, and the sealing member is recessed from the inspection port into the storage cavity to form the embedding groove, the embedding groove being used to place the lifting member.
[0012] According to one embodiment of this application, the inspection and sealing component further includes at least one sealing element, which is disposed between the sealing element and the box body, and the sealing element is located on the periphery of the inspection port.
[0013] According to one embodiment of this application, the box body has a support body located inside the storage cavity, and the battery pack is fixedly connected to the support body by screws.
[0014] According to one embodiment of this application, the box body further has a plurality of abutting members, which are formed by protruding inward from the inner wall portion of the storage cavity, and the plurality of abutting members abut against the surface of the battery pack in a relatively opposite manner.
[0015] According to one embodiment of this application, the main body of the device further includes a plurality of lid connectors. The lid includes a closing part and a plurality of bent parts. The closing part is located at the opening. The mounting body is mounted on the closing part of the lid. The plurality of bent parts are arranged on the outer periphery of the closing part in a connected manner, and the plurality of bent parts extend toward the box body and are attached to the surface of the box body. The plurality of bent parts are respectively fixed to the box body by the plurality of lid connectors.
[0016] According to one embodiment of this application, a buzzer channel is formed between adjacent bending portions, and the opening communicates with the outside through the buzzer channel.
[0017] According to one embodiment of this application, the main body of the device further includes four corner protectors, which are respectively disposed between the four corners of the battery pack and the inner wall of the storage cavity, and the four corner protectors respectively cover the four corners of the battery pack.
[0018] According to one embodiment of this application, the charging connector has two power connection holes and a positioning groove, and the charging and discharging control unit further includes a charging protection component. The charging protection component includes a dust-blocking body, which has two dust-blocking protrusions that match the two power connection holes and a positioning protrusion that matches the positioning groove. Attached Figure Description
[0019] Figure 1 This is a perspective view of a preferred embodiment of the present application.
[0020] Figure 2 A perspective view of a preferred embodiment of this application is shown.
[0021] Figure 3 It shows Figure 2 A magnified view of point A in the middle.
[0022] Figure 4It shows Figure 2 A magnified view of point B in the middle.
[0023] Figure 5 A cross-sectional view of a preferred embodiment of this application is shown.
[0024] Figure 6 It shows Figure 5 A magnified view of point C in the middle.
[0025] Figure 7 It shows Figure 5 A magnified view of point D in the middle.
[0026] Figure 8 This is a schematic cross-sectional view of a preferred embodiment of the present application from another angle.
[0027] Figure 9 This illustration shows a perspective view of the support, the abutment, the corner protector, and the battery pack according to a preferred embodiment of this application. Detailed Implementation
[0028] The following description is intended to disclose this application and enable those skilled in the art to implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art. The basic principles of this application defined in the following description can be applied to other embodiments, modifications, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of this application.
[0029] Those skilled in the art should understand that, in the disclosure of this application, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this application.
[0030] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.
[0031] refer to Figures 1 to 9 A preferred embodiment of the lithium battery that can be remotely located and controlled according to this application will be described in detail below, wherein the lithium battery that can be remotely located and controlled includes a device body 10, a charge and discharge control unit 20 and at least a positioning control unit 30.
[0032] Specifically, the main body 10 of the device includes a box body 11, a cover 12, at least one lifting assembly 13, and at least one maintenance sealing member 14. The box body 11 forms a storage cavity 1101 and an opening 1102 communicating with the storage cavity 1101. At least one battery pack 91 is placed in the storage cavity 1101. The cover 12 is disposed on the box body 11 to close the opening 1102. The lifting assembly 13 includes a mounting body 131 and a lifting member 132. The mounting body 131 is disposed on the cover 12 and has an installation space 13101. The lifting member 132 is movably disposed on the mounting body 131 so that when the lifting member 132 is lifted, the box body 11 is lifted as a whole by means of the mounting body 131 and the cover 12.
[0033] The charge / discharge control unit 20 includes a charge / discharge control board 21, a charging connector 22, and a discharging connector 23. The charge / discharge control board 21, the charging connector 22, and the discharging connector 23 are mounted on the housing body 11. The charge / discharge control board 21 is installed within the storage cavity 1101. The charging connector 22 and the discharging connector 23 are both electrically connected to the battery pack 91, so that electrical energy is charged into the battery pack 91 through the charging connector 22 and released from the battery pack 91 through the discharging connector 23. Both the charging connector 22 and the discharging connector 23 are electrically connected to the charge / discharge control board 21. The charge / discharge control board 21 monitors real-time data of energy being supplied to the battery pack 91 via the charging connector 22 and the real-time data of energy being released from the battery pack 91 via the discharging connector 23. Simultaneously, the charge / discharge control board 21 can also control whether energy is supplied to and released from the battery pack 91 by controlling the charging connector 22 and the discharging connector 23. The charge / discharge control board 21 is electrically connected to the battery pack 91, and the battery pack 91 supplies power to the charge / discharge control board 21 to support its normal operation.
[0034] The positioning control unit 30 includes a monitoring control board 31, a positioning communication transmission board 32, and a backup power supply 33. The monitoring control board 31 is disposed in the storage cavity 1101 and is located near the lifting assembly 13. The monitoring control board 31 is electrically connected to the battery pack 91 to monitor various data of the battery pack 91 in real time, and the battery pack 91 supplies power to the monitoring control board 31. The positioning communication transmission board 32 is installed in the installation space 13101. The positioning communication transmission board 32 is electrically connected to the monitoring control board 31 and communicatively connected to an external device. The positioning communication transmission board 32 is used to transmit the data monitored within the monitoring control board 31 and the position information of the positioning communication transmission board 32 itself to the external device in real time. The charge / discharge control board 21 is electrically connected to the monitoring control board 31 to transmit data information within the charge / discharge control board 21 to external devices via the monitoring control board 31 and the positioning communication transmission board 32. The backup power unit 33 is electrically connected to the positioning communication transmission board 32 and the battery pack 91. The monitoring control board 31 has an alarm element 311 for issuing an alarm.
[0035] Preferably, the positioning communication transmission board 32 is implemented in a manner including but not limited to a positioning module and a communication module.
[0036] Those skilled in the art will understand that when the battery pack 91 supplies power to the monitoring and control board 31, since the positioning communication transmission board 32 is electrically connected to the monitoring and control board 31, power can be transferred from the monitoring and control board 31 to the positioning communication transmission board 32 to supply the power required for the positioning communication transmission board 32 to operate.
[0037] As an example, the positioning communication transmission board 32 sends location information to external devices in real time to locate and search for the lost lithium battery, and also facilitates quick manual retrieval for maintenance. Specifically, if a person is at the location sent by the positioning communication transmission board 32 but still cannot find the lithium battery, the positioning communication transmission board 32 can control the alarm device 311 of the monitoring control board 31 to issue an alarm to assist in the manual search for the lithium battery.
[0038] Meanwhile, when the lithium battery is installed on a two-wheeled electric vehicle, and the monitoring and control board 31 detects a problem with the data of the battery pack 91, the alarm device 311 of the monitoring and control board 31 will issue a continuous alarm to warn outside personnel, and transmit the data of the problem with the battery pack 91 to an external device through the positioning communication transmission board 32. This allows personnel located near the external device to determine whether it is necessary to remotely command the monitoring and control board 31 to control the charging and discharging control board 21 to cut off the power output of the battery pack 91 through the discharge connector 23 via the positioning communication transmission board 32. This prevents the battery pack 91 from catching fire or exploding due to continuous use of the battery pack 91 with data problems, thereby ensuring the safety of the user's life and property.
[0039] When the monitoring and control board 31 detects a problem with the data of the battery pack 91 and transmits this data to an external device via the positioning and communication transmission board 32, if a staff member near the external device observes and finds that the problem is simply a data monitoring misalignment, the problem can be solved by remotely restoring the original data, such as the discharge power, to the monitoring and control board 31 via the positioning and communication transmission board 32. Compared to sending personnel to locate the lithium battery and remove it from the two-wheeled electric vehicle for testing, this solution is significantly more convenient and saves labor costs.
[0040] It should be noted that when the lithium battery is used by the user, the battery pack 91 of the lithium battery may run out of power. At this time, the battery pack 91 will not be able to continuously supply power to the positioning communication transmission board 32 through the monitoring and control board 31. The positioning communication transmission board 32 will not be able to send location information to external devices, making it difficult for the lithium battery to be found manually, or even causing the lithium battery to be lost, resulting in property loss.
[0041] It is worth mentioning that, since the backup power unit 33 is electrically connected to the positioning communication transmission board 32 and the battery pack 91, when the battery pack 91 is being charged, the battery pack 91 can charge the backup power unit 33 to store reserve power. Then, when the battery pack 91 is depleted, the backup power unit 33 supplies power to the positioning communication transmission board 32, so that the positioning communication transmission board 32 can transmit location information to external devices in real time. This makes it easy for personnel to bring the depleted lithium battery pack 91 back to the battery swapping station, avoiding property damage.
[0042] Preferably, the alarm element 311 includes a buzzer. The backup power element 33 includes a storage battery.
[0043] Preferably, the box body 11 further forms an inspection port 1103 communicating with the storage cavity 1101, the inspection port 1103 being located near the charge / discharge control board 21. The inspection sealing component 14 includes a sealing member 141, a plurality of sealing connectors 142, and at least one lifting member 143. The sealing member 141 is disposed at the inspection port 1103, and the sealing member 141 is connected to the box body 11 through the plurality of sealing connectors 142, so as to close the inspection port 1103 by means of the sealing member 141. The lifting member 143 is movably disposed on the sealing member 141, so as to lift the entire box body 11 by lifting the lifting member 143. The lifting member 132 and the lifting member 143 are located on different surfaces of the box body 11.
[0044] It is worth mentioning that since the inspection port 1103 is located near the charge and discharge control board 21, when the charge and discharge control board 21 malfunctions, the sealing member 141 can be removed from the inspection port 1103 to facilitate the inspection and maintenance of the charge and discharge control board 21 in the storage cavity 1101, thereby improving the convenience of inspecting and maintaining the charge and discharge control board 21.
[0045] It is understandable that, since the lifting member 132 and the lifting member 143 are located on different surfaces of the box body 11, the lithium battery can be lifted as a whole by lifting the lifting member 132 and the lifting member 143, while keeping the lithium battery in different postures in the direction of gravity, so as to put the lithium battery into the two-wheeled electric vehicle in a posture suitable for actual use.
[0046] Preferably, the sealing member 141 forms an embedding groove, and the sealing member 141 is recessed into the storage cavity 1101 from the inspection port 1103 to form the embedding groove. The embedding groove is used to place the lifting member 143 to avoid the lifting member 143 protruding from the surface of the box body 11 and thus preventing the box body 11 from being placed into the two-wheeled electric vehicle.
[0047] Preferably, the sealing connector 142 is implemented to include screws.
[0048] The maintenance sealing component 14 further includes at least one sealing element 144. The sealing element 144 is disposed between the sealing element 141 and the box body 11, and the sealing element 144 is located on the periphery of the maintenance port 1103. When the sealing element 141 is connected to the box body 11 by a plurality of sealing connectors 142, the sealing element 144 blocks the gap between the sealing element 141 and the box body 11, preventing external moisture from entering the storage cavity 1101 through the maintenance port 1103 through the gap between the sealing element 141 and the box body 11, thereby causing a short circuit in the battery pack 91.
[0049] Preferably, the sealing element 144 is made of rubber.
[0050] As an example, when the sealing member 141 is connected to the box body 11 by a plurality of the sealing connectors 142, since the sealing member 144 is disposed between the sealing member 141 and the box body 11, and the sealing member 144 is located on the periphery of the inspection port 1103, the sealing member 144 will be squeezed and undergo elastic deformation to fill the gap between the sealing member 141 and the box body 11.
[0051] Preferably, the housing body 11 has a support body 111. The support body 111 is located inside the storage cavity 1101, and the battery pack 91 is fixedly connected to the support body 111 by screws so that the battery pack 91 is stably placed in the storage cavity 1101.
[0052] The housing body 11 also has a plurality of abutting members 112, which are formed by protruding inward from the inner wall of the storage cavity 1101, and the plurality of abutting members 112 are respectively abutted against the surface of the battery pack 91 in a relative manner, so as to stabilize the posture of the battery pack 91 in the storage cavity 1101 by means of the abutting members 112.
[0053] As an example, when the box body 11 is partially dented into the storage cavity 1101 due to an impact, the dented box body 11 cannot damage the battery pack 91 because the support body 111 is spaced between the battery pack 91 and the inner wall of the storage cavity 1101, thereby reducing the possibility of the battery pack 91 catching fire and exploding due to an impact.
[0054] It should be noted that, due to the excessive height of the battery pack 91, simply fixing the battery pack 91 to the support body 111 with screws would cause the battery pack 91 to sway during transportation. Therefore, the multiple abutment members 112 that fit against the surface of the battery pack 91 can stabilize the posture of the battery pack 91 in the storage cavity 1101.
[0055] Furthermore, the multiple abutment members 112 that are attached to the surface of the battery pack 91 not only stabilize the position of the battery pack 91 in the storage cavity 1101, but also separate the battery pack 91 from the inner wall of the housing body 11, preventing the portion of the housing body 11 that is recessed into the storage cavity 11 from damaging the battery pack 91, thereby protecting the battery pack 91.
[0056] Preferably, the housing body 11 is made of metal to improve its strength and rigidity. At the same time, when the support body 111 and the abutment member 112 of the metal housing body 11 are attached to the surface of the battery pack 91, the heat of the battery pack 91 will be conducted to the outer surface of the housing body 11 through contact with the support body 111 and the abutment member 112 of the housing body 11, thereby achieving the purpose of reducing the temperature of the battery pack 91.
[0057] Preferably, the main body 10 of the equipment further includes a plurality of lid connectors 15. The lid 12 includes a closing portion 121 and a plurality of bent portions 122. The closing portion 121 is located at the opening 1102. The mounting body 131 is mounted on the closing portion 121 of the lid 12. The plurality of bent portions 122 are arranged end-to-end on the outer periphery of the closing portion 121, and the plurality of bent portions 122 extend toward the box body 11 and adhere to the surface of the box body 11. The plurality of bent portions 122 are respectively fixed to the box body 11 by the plurality of lid connectors 15, thereby stably holding the closing portion 121 at the opening 1102.
[0058] Since multiple bending portions 122 are attached to the surface of the housing body 11, the possibility of external moisture entering the storage cavity 1101 through the opening 1102 from the gap between the bending portions 122 and the housing body 11 and damaging the battery pack 91 is effectively reduced.
[0059] Preferably, the lid connector 15 is implemented to include rivets.
[0060] Preferably, in this embodiment, the mounting body 131 is fixedly mounted to the closure portion 121 by screws.
[0061] Preferably, a buzzer channel 1201 is formed between adjacent bending portions 122, and the opening 1102 communicates with the outside through the buzzer channel 1201 so that when the alarm 311 sounds, the sound is transmitted smoothly to the outside through the buzzer channel 1201, thereby increasing the loudness of the alarm 311 that can be heard by the outside, so as to facilitate the manual search for the lost lithium battery.
[0062] It is worth mentioning that, since only one buzzer channel 1201 is opened, that is, the opening 1102 is connected to the outside through only one buzzer channel 1201, convection cannot be formed, so the outside gas cannot carry water vapor through the buzzer channel 1201 and flow into the storage cavity 1101 from the opening 1102. Thus, while ensuring that the loudness of the alarm 311 is heard by the outside, water vapor cannot enter the storage cavity 1101.
[0063] Preferably, the lifting assembly 13 further includes at least one mounting seal 133. The mounting seal 133 is disposed between the mounting body 131 and the sealing portion 121, and the mounting seal 133 is located on the periphery of the mounting body 131, so that when the mounting body 131 is installed on the sealing portion 121, the mounting seal 133 blocks the gap between the mounting body 131 and the sealing portion 121, preventing external moisture from entering the storage cavity 1101 through the opening 1102 from the gap between the mounting body 131 and the sealing portion 121, thereby causing a short circuit in the battery pack 91.
[0064] Preferably, the mounting seal 133 is made of rubber.
[0065] As an example, when the mounting body 131 is installed on the closure portion 121, since the mounting seal 133 is disposed between the mounting body 131 and the closure portion 121, and the mounting seal 133 is located on the periphery of the mounting body 131, the mounting seal 133 will be compressed and undergo elastic deformation to fill the gap between the mounting body 131 and the closure portion 121.
[0066] Preferably, the main body 10 of the device further includes four corner protectors 16. The four corner protectors 16 are respectively disposed between the four corners of the battery pack 91 and the inner wall of the storage cavity 1101, and the four corner protectors 16 respectively cover the four corners of the battery pack 91 to protect the four corners of the battery pack 91.
[0067] Understandably, the corner protectors 16 are made of a porous elastic material to protect the four corners of the battery pack 91 while preventing the battery pack 91 from overheating due to being covered by the battery pack 91.
[0068] Preferably, the main body 10 of the device further includes a temperature monitoring element 17. The temperature monitoring element 17 is installed in the storage cavity 1101 and is located near the battery pack 91. The temperature monitoring element 17 is electrically connected to the charge / discharge control board 21. The temperature monitoring element 17 is used to monitor the temperature near the battery pack 91 in the storage cavity 1101 and transmit the temperature data of the battery pack 91 in the storage cavity 1101 to the charge / discharge control board 21.
[0069] The charge / discharge control board 21 is implemented with respect to, but not limited to, temperature sensors.
[0070] As an example, when the charge / discharge control board 21 receives temperature data from the temperature monitoring device 17, if the temperature data reaches a predetermined value, the charge / discharge control board 21 controls the charging power of the charging connector 22 to the battery pack 91, and controls the discharging power of the battery pack 91 to the outside through the discharging connector 23, thereby preventing the battery pack 91 from overheating and catching fire.
[0071] Temperature data is transmitted from the positioning communication transmission board 32 to external devices via the monitoring and control board 31. Personnel near the external devices can select whether to control the charging of the battery pack 91 or the discharging of the battery pack 91 based on the temperature data.
[0072] It is understandable that, since the battery pack 91 is composed of multiple small batteries, the charge and discharge control board 21 can also monitor each battery that makes up the battery pack 91, and transmit the data of each battery from the positioning communication transmission board 32 to an external device through the monitoring control board 31, so that when a battery has a problem, the battery with the problem can be quickly repaired according to the data displayed by the external device, thereby improving the repair speed.
[0073] Preferably, the charging connector 22 has two power connection holes 2201 and a positioning groove 2202. The charging and discharging control unit 20 further includes a charging protection component 24, which includes a dust-blocking body 241. The dust-blocking body 241 has two dust-blocking protrusions 2411 that match the two power connection holes 2201 and a positioning protrusion 2412 that matches the positioning groove 2202.
[0074] Understandably, by inserting the two dust-blocking protrusions 2411 into the power connection hole 2201 with an interference fit, external dust and moisture can be prevented from entering the power connection hole 2201, thus avoiding situations where charging is not possible and leakage occurs. Simultaneously, inserting the positioning protrusion 2412 into the positioning groove 2202 with an interference fit further prevents external dust and moisture from adhering to the vicinity of the power connection hole 2201, thereby further reducing the likelihood of external dust and moisture entering the power connection hole 2201.
[0075] Specifically, the charging protective component 24 further includes at least one main body connector 242. The two ends of the main body connector 242 are respectively connected to the dust-blocking body 241 and the charging connector 22, so as to prevent the dust-blocking body 241 from being lost by pulling the dust-blocking body 241 through the main body connector 242.
[0076] Preferably, the extension direction of the main body connector 242 is consistent with the depth direction of the power connection hole 2201, so that when the two dust-blocking protrusions 2411 and the positioning protrusions 2412 of the dust-blocking body 241 are respectively inserted into the two power connection holes 2201 and the positioning groove 2202, the main body connector 242 pulls the dust-blocking body 241, so as to stably hold the two dust-blocking protrusions 2411 and the positioning protrusions 2412 in the two power connection holes 2201 and the positioning groove 2202 respectively.
[0077] Preferably, the main connector 242 is made of rubber.
[0078] Preferably, the discharge connector 23 is implemented to include a battery adapter.
[0079] Preferably, the positioning control unit 30 further includes at least one display element 34, which is disposed on the mounting body 131 and electrically connected to the monitoring control board 31. The display element 34 is used to display the charging and discharging status of the battery pack 91 and the fault code of the lithium battery, so as to facilitate the maintenance of the lithium battery.
[0080] The display element 34 is implemented to include a display screen.
[0081] Preferably, the remotely positioned and controlled lithium battery further includes at least one buffer 40, which is disposed on the surface of the housing body 11 so that when the housing body 11 is placed on the ground, the buffer 40 first contacts the ground to undergo elastic deformation for buffering, thereby reducing the probability that the housing body 11 will partially dent into the storage cavity 1101 due to impact.
[0082] Preferably, the buffer 40 is implemented as a rubber pad.
[0083] Those skilled in the art should understand that the embodiments of this application described above and shown in the accompanying drawings are merely examples and do not limit the scope of this application. The advantages of this application have been fully and effectively implemented. The functional and structural principles of this application have been demonstrated and explained in the embodiments, and any variations or modifications can be made to the implementation of this application without departing from the stated principles.
Claims
1. A lithium battery capable of remote positioning and control, characterized in that, The remotely locating and controllable lithium battery includes: The equipment body includes a housing, a cover, at least one lifting assembly, and at least one maintenance sealing member. The housing forms a storage cavity and an opening communicating with the storage cavity. At least one battery pack is placed in the storage cavity. The cover is disposed on the housing to close the opening. The lifting assembly includes a mounting body and a lifting member. The mounting body is disposed on the cover and has an installation space. The lifting member is movably disposed on the mounting body. A charge / discharge control unit, comprising a charge / discharge control board, a charging connector, and a discharging connector, is mounted on the housing body. The charge / discharge control board is installed within the storage cavity. The charging connector and the discharging connector are electrically connected to the battery pack to charge the battery pack through the charging connector and release the stored energy through the discharging connector. The charging connector and the discharging connector are also electrically connected to the charge / discharge control board to monitor real-time data of energy being charged to the battery pack through the charging connector and to monitor real-time data of the battery pack releasing energy through the discharging connector. The charge / discharge control board is electrically connected to the battery pack. At least one positioning control unit is provided, comprising a monitoring control board, a positioning communication transmission board, and a backup power supply. The monitoring control board is disposed in the storage cavity and located near the lifting assembly. The monitoring control board is electrically connected to the battery pack to monitor various data of the battery pack in real time and to supply power to the monitoring control board through the battery pack. The positioning communication transmission board is installed in the installation space and is electrically connected to the monitoring control board. The positioning communication transmission board is communicatively connected to an external device to transmit the monitored data and its own position information to the external device in real time. A charging / discharging control board is electrically connected to the monitoring control board to transmit the data from the charging / discharging control board to the external device through the monitoring control board and the positioning communication transmission board. The backup power supply is electrically connected to the positioning communication transmission board and the battery pack. The monitoring control board has an alarm device for issuing an alarm.
2. The remotely positioned and controlled lithium battery according to claim 1, characterized in that, The box body also forms an inspection port communicating with the storage cavity. The inspection port is located near the charging and discharging control board. The inspection sealing component includes a sealing member, a plurality of sealing connectors and at least one lifting member. The sealing member is located at the inspection port and is connected to the box body through the plurality of sealing connectors to close the inspection port. The lifting member is movably disposed on the sealing member.
3. The remotely positioned and controlled lithium battery according to claim 2, characterized in that, The sealing member forms an embedding groove, and the sealing member is recessed from the inspection port into the storage cavity to form the embedding groove, which is used to place the lifting member.
4. The remotely positioned and controlled lithium battery according to claim 3, characterized in that, The inspection and sealing component further includes at least one sealing element, which is disposed between the sealing element and the box body, and the sealing element is located around the inspection port.
5. The remotely positioned and controlled lithium battery according to claim 4, characterized in that, The box body has a support body located inside the storage cavity, and the battery pack is fixedly connected to the support body by screws.
6. The remotely positioned and controlled lithium battery according to claim 5, characterized in that, The box body also has multiple abutting members, which are formed by protruding inward from the inner wall of the storage cavity, and the multiple abutting members are respectively abutting against the surface of the battery pack in a relative manner.
7. The remotely positioned and controlled lithium battery according to claim 6, characterized in that, The main body of the equipment also includes several lid connectors. The lid includes a closing part and multiple bending parts. The closing part is located at the opening. The mounting body is installed on the closing part of the lid. The multiple bending parts are arranged on the outer periphery of the closing part in a connected manner, and the multiple bending parts extend toward the box body and are attached to the surface of the box body. The multiple bending parts are respectively fixed to the box body by several lid connectors.
8. The remotely positioned and controlled lithium battery according to claim 7, characterized in that, A buzzer channel is provided between adjacent bends, and the opening is connected to the outside through the buzzer channel.
9. The remotely positioned and controlled lithium battery according to claim 8, characterized in that, The main body of the device also includes four corner protectors, which are respectively located between the four corners of the battery pack and the inner wall of the storage cavity, and the four corner protectors respectively cover the four corners of the battery pack.
10. The remotely positioned and controlled lithium battery according to claim 9, characterized in that, The charging connector has two power connection holes and a positioning groove. The charging and discharging control unit also includes a charging protection component. The charging protection component includes a dust-blocking body. The dust-blocking body has two dust-blocking protrusions that match the two power connection holes and a positioning protrusion that matches the positioning groove.