Shared therapeutic instrument charging and sterilizing device
By designing a charging and disinfection device for shared therapeutic instruments and adopting automated charging and disinfection technology, the problems of incomplete disinfection and cross-infection of shared therapeutic instruments have been solved, improving efficiency and safety, and enabling low-cost equipment upgrades and flexible rental models.
Patent Information
- Application Number
- CN202511664662.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2025-12-26
AI Technical Summary
The existing disinfection methods for shared treatment devices rely on manual operation, which has problems such as incomplete disinfection, high risk of cross-infection, and high cost, and the billing is inaccurate.
Design a shared therapeutic device charging and disinfection device, including a charging and disinfection station and a smart charging cabinet. It adopts magnetic positioning, ultraviolet disinfection module and infrared sensor to realize automated charging and disinfection, and combines wireless communication module for billing management.
It improves the efficiency and safety of shared treatment devices, reduces the cost of manual disinfection and the risk of cross-infection, ensures sufficient power for each use, and enables flexible rental models and low-cost equipment upgrades.
Smart Images

Figure CN121197461A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical device technology, and in particular to a shared therapeutic device charging and disinfection device. Background Technology
[0002] Shared medical equipment, as the name suggests, refers to medical equipment that can be used interchangeably, making it convenient for users to share. It mainly uses models such as leasing and time-sharing to allow multiple users or institutions to share professional medical equipment. The core is to improve equipment utilization and reduce usage costs.
[0003] The core features of shared medical equipment are:
[0004] 1. Flexible models: Supports various models such as short-term rental, pay-per-use, and long-term cooperation to suit different needs of individuals, clinics, and small hospitals.
[0005] 2. Wide coverage: It covers everything from home portable devices to professional medical equipment, eliminating the need for a one-time high-cost purchase.
[0006] 3. Supporting services: Some service providers offer integrated services such as equipment delivery, installation, commissioning, maintenance, and repair, lowering the barrier to entry for users.
[0007] Common types of shared medical devices include:
[0008] 1. Simple medical equipment: blood glucose meter, blood pressure monitor, ventilator, oxygen concentrator, rehabilitation training equipment and wearable laser therapy device, etc., suitable for chronic disease management or postoperative rehabilitation scenarios.
[0009] 2. Professional diagnostic and treatment equipment: ultrasound machine, electrocardiograph, blood routine analyzer and mobile DR, etc., mostly serving primary clinics, community hospitals or temporary medical points.
[0010] 3. Special scenario equipment: mobile ICU equipment and emergency rescue equipment, etc., for sudden medical needs or field medical scenarios.
[0011] Especially for simple medical devices that are used frequently, users can quickly use them after simple training. When they are returned after each use, the managers usually manually disinfect and recharge them so that they are fully charged and ready for the next user to rent. Although this operation is common, it has significant drawbacks.
[0012] Specifically, on the one hand, manual disinfection suffers from poor supervision, leading to incomplete or non-existent disinfection, making it unreliable and posing a significant risk of cross-infection. On the other hand, manual disinfection consumes a large amount of manpower, material resources, and financial resources, resulting in high disinfection costs. Furthermore, when shared for rental and billing, records are mostly kept manually, which can lead to errors in billing.
[0013] In response, the inventor of this patent, combining clinical experience, reflecting on problems encountered in clinical work, reviewing a large amount of scientific research data and literature, and conducting a novelty search, gradually conceived and designed this application to solve the relevant technical problems. Summary of the Invention
[0014] This invention aims to at least partially solve one of the technical problems in related technologies. Therefore, the object of this invention is to provide a shared therapeutic device charging and disinfection device.
[0015] To achieve one of the above objectives, a shared therapeutic device charging and disinfection device according to an embodiment of the present invention includes a charging and disinfection unit, wherein the charging and disinfection unit includes a housing and a charging and disinfection component disposed within the housing;
[0016] The area inside the box not occupied by the charging and disinfection component forms a cavity for holding the shared treatment device; the charging and disinfection component is equipped with a main control module and a rechargeable battery connected to the main control module, and the outer wall is equipped with a charging module connected to the main control module for charging the shared treatment device and a disinfection module for disinfecting the surface of the shared treatment device.
[0017] In addition, the shared therapeutic device charging and disinfection device according to the above embodiments of the present invention may also have the following additional technical features:
[0018] According to one embodiment of the present invention, the charging module includes a positive charging contact A and a negative charging contact A; the surface of the shared therapeutic instrument is provided with a positive charging contact B adapted to be electrically connected to the positive charging contact A and a negative charging contact B adapted to be electrically connected to the negative charging contact A.
[0019] When the positive charging contact B is electrically connected to the positive charging contact A and the negative charging contact B is electrically connected to the negative charging contact A, the main control module controls the charging module and the disinfection module to work synchronously.
[0020] According to one embodiment of the present invention, the outer wall of the charging and disinfection component is further provided with a magnetic attraction module for magnetically positioning the shared treatment device near the positive charging contact A and the negative charging contact A.
[0021] According to one embodiment of the present invention, the outer wall of the charging and disinfection component is further provided with a device presence detection module for detecting whether the shared treatment device is placed in the accommodating cavity and a working indicator light for prompting when the shared treatment device is detected in the accommodating cavity;
[0022] The in-situ detection module of the therapeutic instrument and the working indicator light are both connected to the main control module, and the in-situ detection module of the therapeutic instrument is an infrared photoelectric sensor or an ultrasonic sensor.
[0023] According to one embodiment of the present invention, the disinfection module is an ultraviolet disinfection module that can emit UVC band ultraviolet light, and the working time of the disinfection module is preset by the main control module or dynamically adjusted according to the charging time of the shared treatment device.
[0024] According to one embodiment of the present invention, the charging and disinfection component is disposed in the rear part of the box body, and its front end face is provided with the positive charging contact A, the negative charging contact A, the magnetic attraction module and the therapeutic instrument in-situ detection module, and its front end face forms a placement cavity A with the front inner wall of the box body.
[0025] The removable treatment device is housed in the storage cavity A, and its rear end face is provided with the positive charging contact B and the negative charging contact B.
[0026] According to one embodiment of the present invention, the shared therapeutic device includes a therapeutic device body, a first tie connected to the left end of the therapeutic device body, and a second tie connected to the right end of the therapeutic device body;
[0027] The rear end face of the main body of the treatment device is provided with the positive charging contact B and the negative charging contact B; a storage cavity B for accommodating the first tie is defined between the left outer wall of the charging and disinfection component and the left inner wall of the box; a storage cavity C for accommodating the second tie is defined between the right outer wall of the charging and disinfection component and the right inner wall of the box; the storage cavities A, B, and C together constitute the receiving cavity.
[0028] According to one embodiment of the present invention, the disinfection module is disposed on the front end face of the charging disinfection component to disinfect the rear end face of the main body of the therapeutic instrument, or the disinfection module is disposed on the front end face, left outer wall and right outer wall of the charging disinfection component to disinfect the rear end face of the main body of the therapeutic instrument, the inner surface of the first tether and the inner surface of the second tether.
[0029] According to one embodiment of the present invention, the upper front part of the box body is provided with an openable cover that can open the receiving cavity, and the outer surface of the box body is also provided with a charging connection cable for charging external devices and a charging interface / charging terminal for charging the rechargeable battery, which are connected to the main control module.
[0030] According to one embodiment of the present invention, it further includes an intelligent charging cabinet for charging the charging sterilizer;
[0031] The smart charging cabinet is equipped with an MCU main controller, a power management module connected to the MCU main controller, a usage time billing module, and a wireless communication module for transmitting usage time billing data to the outside. The front of the smart charging cabinet has multiple charging compartments connected to the power management module.
[0032] The charging sterilizer can be inserted into any of the charging compartments to charge the rechargeable battery inside through the charging compartment into which it is inserted.
[0033] The beneficial effects of this invention are:
[0034] Firstly, the shared therapeutic device charging and disinfection device provided in this application, in its specific implementation, combines charging and disinfection functions. This allows the shared therapeutic device to be charged and disinfected by the previous user, so that it can be used by the next user after charging and disinfection. This achieves continuous use of the shared therapeutic device, greatly improving its efficiency and frequency of use. It also ensures that each time the device is used after charging and disinfection, it has sufficient power and is hygienic and safe, minimizing interruptions and cross-infection of germs. This significantly improves the reliability, safety, social benefits, and economic benefits of use. Furthermore, the automated disinfection process greatly reduces the problems of missing disinfection steps, incomplete disinfection, and high disinfection costs associated with manual disinfection.
[0035] Secondly, in actual use, this application utilizes a magnetic module to magnetically fix and position the shared treatment device to be charged and disinfected, ensuring good positioning and stability, thus improving subsequent power connection stability. In other words, if the shared treatment device is not positioned accurately, it cannot magnetically connect with the magnetic module. This necessitates that the shared treatment device be positioned accurately to ensure electrical connection between the positive charging contact B and the positive charging contact A, and between the negative charging contact B and the negative charging contact A, forming a closed and correct electrical circuit. Only then can the main control module control the charging module and the disinfection module to work synchronously, enabling simultaneous charging and disinfection of the shared treatment device placed in the receiving cavity.
[0036] Thirdly, this application sets up a device presence detection module to detect whether the shared device is placed in the receiving cavity, and provides a working indicator light when the shared device is detected in the receiving cavity. This makes it easier to provide usage prompts to the user, making the application clearer, more convenient and reliable to use.
[0037] Fourthly, when a user wears the shared therapeutic device, which includes the main body, the first strap, and the second strap, the rear end of the main body of the therapeutic device has extensive contact with the user's wrist skin. In this case, the disinfection module can be placed on the front end, left outer wall, and right outer wall of the charging disinfection component to disinfect the rear end of the main body of the therapeutic device, the inner surface of the first strap, and the inner surface of the second strap. This minimizes the transmission of germs and other contaminants from the rear end of the main body of the therapeutic device, the inner surface of the first strap, and the inner surface of the second strap to the next user. Therefore, the disinfection effect of the shared therapeutic device in this embodiment is superior.
[0038] Fifthly, by using the charging data cable to connect to an external device that needs charging, such as the user's mobile phone and Bluetooth headset, this application can be used to charge the user's mobile phone and Bluetooth headset, so that the entire charging and disinfection device constituted by this application can also be used as a power bank, thus making the functions comprehensive. Furthermore, by using the charging interface / charging terminal to connect to an external power source, the charging and disinfection device of this application can be charged by an external power source, so that the charging and disinfection device of this application can be used uninterruptedly.
[0039] Sixthly, the charging and disinfection station described in this application is used to charge and disinfect the shared therapeutic device, enabling sharing of the device after it is fully charged and disinfected. This adopts a shared therapeutic device rental model. The usage time can be calculated by the usage time billing module on the smart charging cabinet and uploaded to the backend server via the wireless communication module. Users can then pay for usage time through a mobile app or mini-program bound to the corresponding backend server. Similarly, the charging and disinfection station itself can be used as a shared power bank, enabling sharing after it is fully charged. This also adopts a shared power bank rental model. The usage time can also be calculated by the usage time billing module on the smart charging cabinet and uploaded to the backend server via the wireless communication module. Users can then pay for usage time through a mobile app or mini-program bound to the corresponding backend server. Therefore, the charging and disinfection station described in this application is very flexible in use, optimizing its effectiveness.
[0040] Seventhly, regarding the charging disinfection device and intelligent charging cabinet based on the structure described in this application, the intelligent charging cabinet can be a common shared power bank charging cabinet in the prior art. It does not require separate redesign. In specific implementation, it mainly involves improving and optimizing the internal structure of the shared power bank used with the existing shared power bank charging cabinet, so that the box body has the charging disinfection component and the receiving cavity. Its external structure basically does not need to be improved. In this way, this application is highly innovative and can optimize and upgrade existing public resources (shared power bank charging cabinets and shared power banks used with them). This means that from research and development to product finalization, this application basically does not require a lot of manpower, material resources and financial resources, so the development cost of this application will be very low and it can be widely promoted.
[0041] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0042] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0043] Figure 1 This is a schematic diagram of the overall structure of the shared treatment device charging and disinfection device of the present invention;
[0044] Figure 2 This is a schematic diagram of the overall structure of the charging and disinfection device in an embodiment of the present invention. Figure 1 ;
[0045] Figure 3 This is a schematic diagram of the overall structure of the charging and disinfection device in an embodiment of the present invention. Figure 2 ;
[0046] Figure 4 This is an embodiment of the invention, showing the decomposition of the shared treatment device placed inside the charging and disinfection unit. Figure 1 ;
[0047] Figure 5 This is an embodiment of the invention, showing the decomposition of the shared treatment device placed inside the charging and disinfection unit. Figure 2 ;
[0048] Figure 6 This is a schematic diagram of the overall structure of the openable cover in an embodiment of the present invention;
[0049] Figure 7This is a schematic diagram of the overall structure of the box body in an embodiment of the present invention;
[0050] Figure 8 This is a schematic diagram of the overall structure of the shared treatment device in an embodiment of the present invention;
[0051] Figure 9 This is a block diagram of the circuit diagram showing the connection between the shared treatment device charging and disinfection device of the present invention and the shared treatment device;
[0052] Figure label:
[0053] 1000-unit shared treatment device charging and disinfection unit;
[0054] 10-ton power sanitizer;
[0055] Box body 101; Openable cover 1011; Buckle 10111; Magnetic block B10112; Charging connection cable 1012; Charging interface 1013; Charging terminal 1014; Card slot 1015; Magnetic block A1016; Charging and disinfection component 102; Main control module 1021; Rechargeable battery 1022; Charging module 1023; Positive charging contact A10231; Negative charging contact A10232; Disinfection module 1024; Magnetic module 1025; Therapy device presence detection module 1026; Working indicator light 1027; Shelf cavity A103; Shelf cavity B104; Shelf cavity C105;
[0056] Smart charging cabinet 20;
[0057] MCU main controller 201; power management module 202; usage time billing module 203; wireless communication module 204; charging case 205;
[0058] Shared therapeutic device 2000;
[0059] The main body of the treatment device is 30;
[0060] Positive charging contact B301; Negative charging contact B302; Laser treatment head 303;
[0061] First lacing 40;
[0062] Second lacing 50;
[0063] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0064] The embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0065] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "circumferential," and "radial," 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 invention 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, they should not be construed as limitations on this invention.
[0066] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0067] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0068] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0069] The shared therapeutic device charging and disinfection device 1000 of the present invention will now be described in detail with reference to the accompanying drawings.
[0070] Reference Figures 2 to 9 As shown, the shared therapeutic device charging and disinfection device 1000 provided according to an embodiment of the present invention includes a charging and disinfection tank 10, wherein the charging and disinfection tank 10 includes a housing 101 and a charging and disinfection component 102 disposed in the housing 101.
[0071] The area inside the box 101 that is not occupied by the charging and disinfection component 102 forms a cavity for holding the shared treatment device 2000. The charging and disinfection component 102 is provided with a main control module 1021 and a rechargeable battery 1022 connected to the main control module 1021. The outer wall is provided with a charging module 1023 connected to the main control module 1021 for charging the shared treatment device 2000 and a disinfection module 1024 for disinfecting the surface of the shared treatment device 2000.
[0072] When the shared therapeutic device 2000 is placed in the receiving cavity and electrically connected to the charging module 1023, the main control module 1021 controls the charging module 1023 to charge the shared therapeutic device 2000 and simultaneously controls the disinfection module 1024 to disinfect the shared therapeutic device 2000. At this time, the charging module 1023 and the disinfection module 1024 are preferably connected in series.
[0073] Based on the above, it is clear that in specific implementation, this application is mainly used as a shared treatment device charging and disinfection device 1000.
[0074] Specifically, when applying this application, it is placed as a shared device in a suitable location, such as a senior activity center, nursing home, hospital rehabilitation department, community health service center, pharmacy, and emergency medical equipment configuration points in many public places. The shared treatment device 2000 used by the previous user, such as a wristband laser treatment device, is placed in the receiving cavity and connected to the charging module 1023 to form a closed electrical circuit. At this time, the main control module 1021 can control the charging module 1023 to charge the shared treatment device 2000, and the main control module 1021 can simultaneously control the disinfection module 1024 to disinfect the surface of the shared treatment device 2000.
[0075] Therefore, the charging and disinfection device 10 described in this application has both charging and disinfection functions, so that after the shared therapeutic device 2000 is used by the previous user, it can be charged and disinfected by this application, so that it can be supplied to the next user for continued use after charging and disinfection. In this way, the continuous use of the shared therapeutic device 2000 can be realized, which can greatly improve the usage efficiency and frequency of the shared therapeutic device 2000, and ensure that each time it is used after charging and disinfection, it can guarantee sufficient power and hygiene safety, and can minimize the interruption of use and contact cross-infection of germs, which can greatly improve the reliability, safety, social benefits and economic benefits of use. Moreover, the mechanical and automated disinfection can also greatly reduce the problems of missing disinfection links, incomplete disinfection and high disinfection costs caused by manual disinfection.
[0076] Furthermore, through the above-mentioned optimized design, the whole constituted by this application is highly practical and has a good effect in use.
[0077] Furthermore, in specific implementation, in accordance with... Figure 4 and Figure 5 As shown, according to an embodiment of the present invention, the charging module 1023 includes a positive charging contact A10231 and a negative charging contact A10232; the surface of the shared therapeutic instrument 2000 is provided with a positive charging contact B301 adapted to be electrically connected to the positive charging contact A10231 and a negative charging contact B302 adapted to be electrically connected to the negative charging contact A10232.
[0078] When the positive charging contact B301 is electrically connected to the positive charging contact A10231 and the negative charging contact B302 is electrically connected to the negative charging contact A10232, a closed and correct electrical circuit is formed. At this time, the main control module 1021 can control the charging module 1023 and the disinfection module 1024 to work synchronously, so as to realize the synchronous charging and disinfection of the shared treatment device 2000 placed in the receiving cavity.
[0079] Preferably, in this technical solution, compared with Figure 5 As shown, according to an embodiment of the present invention, the outer wall of the charging and disinfection component 102 is further provided with a magnetic attraction module 1025 for magnetically positioning the shared treatment device 2000 near the positive charging contact A10231 and the negative charging contact A10232.
[0080] Therefore, it is clear that in actual use, this application involves contact charging of the shared therapeutic device 2000 to be charged and disinfected, and the magnetic module 1025 is used to magnetically fix and position the shared therapeutic device 2000, ensuring good placement and stability, thus improving subsequent power connection stability. In other words, if the shared therapeutic device 2000 is not positioned accurately, it cannot be magnetically connected to the magnetic module 1025. This limits the functionality of the shared therapeutic device 2000. The positive charging contact B301 and the positive charging contact A10231, and the negative charging contact B302 and the negative charging contact A10232, must be correctly positioned to form a closed electrical circuit. Only then can the main control module 1021 control the charging module 1023 and the disinfection module 1024 to work synchronously, so as to achieve synchronous charging and disinfection of the shared treatment device 2000 placed in the receiving cavity.
[0081] Furthermore, through the above-mentioned optimized design, the overall performance of this application can be effectively improved.
[0082] Furthermore, in a specific implementation, according to an embodiment of the present invention, the outer wall of the charging and disinfection component 102 is further provided with a treatment instrument presence detection module 1026 for detecting whether the shared treatment instrument 2000 is placed in the accommodating cavity, and a working indicator light 1027 for indicating the working status when the shared treatment instrument 2000 is detected to be placed in the accommodating cavity.
[0083] The therapeutic instrument presence detection module 1026 and the working indicator light 1027 are both connected to the main control module 1021, and the therapeutic instrument presence detection module 1026 is preferably an infrared photoelectric sensor or an ultrasonic sensor.
[0084] Meanwhile, when the shared therapeutic device 2000 is detected to be placed in the receiving cavity, the working indicator light 1027 is set to display red; when the shared therapeutic device 2000 placed in the receiving cavity is detected to be fully charged and disinfected, the working indicator light 1027 is set to display blue; when the shared therapeutic device 2000 is not detected to be placed in the receiving cavity, the working indicator light 1027 can be set not to display.
[0085] Therefore, it can be clearly understood that by setting the therapeutic instrument presence detection module 1026 to detect whether the shared therapeutic instrument 2000 is placed in the receiving cavity, and by providing a working indicator light 1027 to indicate when the shared therapeutic instrument 2000 is detected in the receiving cavity, this application can provide clearer and more convenient and reliable usage prompts to the user.
[0086] Furthermore, in a specific implementation, according to an embodiment of the present invention, the disinfection module 1024 is an ultraviolet disinfection module 1024 capable of emitting UVC band ultraviolet light, and the working time of the disinfection module 1024 is preset by the main control module 1021 or dynamically adjusted according to the charging time of the shared therapeutic device 2000.
[0087] For example, the disinfection time of the shared therapeutic device 2000 can be set to a fixed half hour or one hour, or it can be synchronized with the charging time of the shared therapeutic device 2000, that is, the disinfection time is the same as the charging time. These can be flexibly set according to actual usage needs.
[0088] Furthermore, in this technical solution, we continue to compare... Figure 5 As shown, according to an embodiment of the present invention, the charging and disinfection component 102 is disposed in the rear part of the box body 101, and its front end face is provided with the positive charging contact A10231, the negative charging contact A10232, the magnetic module 1025 and the therapeutic instrument presence detection module 1026, and its front end face forms a resting cavity A103 with the front inner wall of the box body 101;
[0089] The shared therapeutic device 2000 is removably housed in the storage cavity A103, and its rear end face is provided with the positive charging contact B301 and the negative charging contact B302.
[0090] Thus, when the shared therapeutic device 2000 is housed in the storage cavity A103 such that the positive charging contact B301 on its rear end face is electrically connected to the positive charging contact A10231 on the front end face of the charging and disinfection component 102, and the negative charging contact B302 on its rear end face is electrically connected to the negative charging contact A10232 on the front end face of the charging and disinfection component 102, and its rear end face is magnetically fixed in the correct position by the magnetic attraction module 1025 on the front end face of the charging and disinfection component 102, a closed and correct electrical circuit can be formed. This allows the main control module 1021 to control the charging module 1023 and the disinfection module 1024 to work synchronously, thereby achieving synchronous charging and disinfection of the shared therapeutic device 2000 housed in the storage cavity.
[0091] Secondly, in specific implementation, refer to Figure 4 , Figure 5 and Figure 8 As shown, according to an embodiment of the present invention, the shared therapeutic device 2000 is preferably a wristband-shaped structure to be worn on the user's wrist for physical therapy. It preferably includes a therapeutic device body 30, a first strap 40 connected to the left end of the therapeutic device body 30, and a second strap 50 connected to the right end of the therapeutic device body 30. When the ends of the first strap 40 and the second strap 50 are fastened at appropriate positions, the shared therapeutic device 2000 can be worn on the user's wrist.
[0092] The therapeutic device body 30 has a positive charging contact B301 and a negative charging contact B302 on its rear end face, and a laser treatment head 303 that can fit against the user's wrist skin. Inside the head, there is a main control chip connected to the positive charging contact B301, the negative charging contact B302 and the laser treatment head 303, and a power supply module that supplies power to the main control chip. The left outer wall of the charging and disinfection component 102 and the left inner wall of the box 101 define a storage cavity B104 for accommodating the first strap 40. The right outer wall of the charging and disinfection component 102 and the right inner wall of the box 101 define a storage cavity C105 for accommodating the second strap 50. The storage cavities A103, B104 and C105 together constitute the receiving cavity.
[0093] Therefore, the cavity described in this application is integrally formed into a horizontal U-shaped structure, which facilitates the unfolding and placement of the main body 30, the first strap 40 and the second strap 50 of the shared treatment instrument 2000, so as to facilitate the thorough disinfection of their surfaces.
[0094] Preferably, in one embodiment, the control... Figure 4 and Figure 5 As shown, according to one embodiment of the present invention, the disinfection module 1024 is disposed on the front end face of the charging disinfection component 102 to disinfect the rear end face of the therapeutic instrument body 30. In this case, the disinfection module 1024 is preferably an LED lamp bead that can emit UVC band ultraviolet light disposed on the front end face of the charging disinfection component 102.
[0095] It should be noted that when a user wears the shared therapeutic device 2000, which has the therapeutic device body 30, the first strap 40, and the second strap 50, the rear end of the therapeutic device body 30 has more contact with the user's wrist skin. At this time, the disinfection module 1024 can be placed on the front end of the charging disinfection component 102 to disinfect the rear end of the therapeutic device body 30, so as to avoid the rear end of the therapeutic device body 30 from being contaminated with germs and other pathogens and being passed on to the next user.
[0096] Furthermore, preferably, in another embodiment, the comparison continues. Figure 4 and Figure 5 As shown, the disinfection module 1024 is disposed on the front end face, left outer wall and right outer wall of the charging disinfection component 102 to disinfect the rear end face of the treatment instrument body 30, the inner surface of the first strap 40 and the inner surface of the second strap 50. At this time, the disinfection module 1024 is preferably a plurality of LED beads that can emit UVC band ultraviolet light disposed on the front end face, left outer wall and right outer wall of the charging disinfection component 102. The plurality of LED beads constitute an ultraviolet disinfection lamp strip.
[0097] It should be noted that when a user wears the shared therapeutic device 2000, which includes the therapeutic device body 30, the first strap 40, and the second strap 50, the rear end face of the therapeutic device body 30 has extensive contact with the user's wrist skin, and the inner surfaces of the first strap 40 and the second strap 50 also come into contact with the user's wrist skin. In this case, the disinfection module 1024 can be placed on the front end face, left outer wall, and right outer wall of the charging disinfection component 102 to disinfect the rear end face of the therapeutic device body 30, the inner surface of the first strap 40, and the inner surface of the second strap 50. This minimizes the transmission of germs and other contaminants from the rear end face of the therapeutic device body 30, the inner surface of the first strap 40, and the inner surface of the second strap 50 to the next user, thus improving the disinfection effect of the shared therapeutic device 2000 in this embodiment.
[0098] Furthermore, in specific implementation, in accordance with... Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, according to an embodiment of the present invention, the upper front part of the box body 101 is provided with an openable cover 1011 that can open the receiving cavity, and the outer surface of the box body 101 is also provided with a charging connection cable 1012 for charging external devices and a charging interface 1013 / charging terminal 1014 for charging the rechargeable battery 1022, which are connected to the main control module 1021.
[0099] Therefore, it is clear that in actual use of this application, the openable cover 1011 is used to open the receiving cavity to facilitate placing the shared therapeutic device 2000 that needs to be charged and disinfected in the receiving cavity, or to take out the fully charged and disinfected shared therapeutic device 2000 from the receiving cavity.
[0100] Furthermore, by connecting external devices that need charging, such as the user's mobile phone and Bluetooth headset, to the charging cable, this application can be used to charge the user's mobile phone and Bluetooth headset, making the entire charging and disinfection device 10 described in this application also usable as a power bank, thus enabling comprehensive functionality.
[0101] Furthermore, by connecting an external power source through the charging interface 1013 / charging terminal 1014, the charging disinfection device 10 described in this application can be charged using an external power source, so that the charging disinfection device 10 described in this application can be used uninterruptedly.
[0102] Preferably, in specific implementation, refer to Figure 1 and Figure 9 As shown, according to one embodiment of the present invention, this application also includes an intelligent charging cabinet 20 for charging the charging and disinfection device 10;
[0103] The intelligent charging cabinet 20 is equipped with an MCU main controller 201, a power management module 202 connected to the MCU main controller 201, a usage time billing module 203, and a wireless communication module 204 for transmitting usage time billing data to the outside. The front end of the intelligent charging cabinet 20 has multiple charging compartments 205 connected to the power management module 202, and each charging compartment 205 is provided with a power terminal.
[0104] Based on this, the charging sterilizer 10 described in this application is pluggable and can be inserted into any of the charging compartments 205. When the charging interface 1013 / charging terminal 1014 provided on its outer surface is electrically connected to the power terminal, the rechargeable battery 1022 provided inside can be charged through the charging compartment 205 into which it is inserted.
[0105] Therefore, the charging and disinfection device 10 described in this application is used to charge and disinfect the shared therapeutic device 2000, enabling the shared therapeutic device 2000 to be shared after being fully charged and disinfected. The shared therapeutic device 2000 is rented and leased. The usage time can be calculated by the usage time billing module 203 and uploaded to the backend server by the wireless communication module 204. Users can then pay for the usage time through a mobile APP or mini-program bound to the corresponding backend server.
[0106] Similarly, the charging disinfection device 10 described in this application can be used as a shared power bank, realizing its sharing after being fully charged. It adopts a shared power bank rental model, and its usage time can be calculated by the usage time billing module 203 and uploaded to the backend server through the wireless communication module 204. Users can then pay for the usage time through a mobile APP or mini-program bound to the corresponding backend server.
[0107] Therefore, the charging and disinfection device 10 described in this application is very flexible in use, and its performance can be optimized.
[0108] Furthermore, based on the structure of the charging disinfection box 10 and the intelligent charging cabinet 20 described in this application, the intelligent charging cabinet 20 can be a common shared power bank charging cabinet in the prior art. It does not require separate redesign. In specific implementation, it mainly involves improving and optimizing the internal structure of the shared power bank used with the existing shared power bank charging cabinet, so that the box body 101 has the charging disinfection component 102 and the receiving cavity. Its external structure basically does not need to be improved. In this way, this application is highly innovative and can optimize and upgrade existing public resources (shared power bank charging cabinets and shared power banks used with them). This means that from research and development to product finalization, this application basically does not require a lot of manpower, material resources and financial resources, so the development cost of this application will be very low and it can be widely promoted.
[0109] It should be added that, in the preferred embodiment, the openable cover 1011 is detachable, and the receiving cavity can be opened when it is removed. Of course, the openable cover 1011 can also be rotatably connected to the upper part of the box body 101 to open / close the receiving cavity.
[0110] In one preferred embodiment, the comparison Figure 4 , Figure 5 , Figure 6 and Figure 7As shown, the upper part of the box body 101 is formed as an open opening in the front-to-back direction, and slots 1015 are respectively opened in the upper left and upper right parts of the open opening in the front-to-back direction. The lower left and lower right parts of the openable cover 1011 are respectively provided with buckles 10111 that are adapted to slide into the two slots 1015 in opposite positions from back to front. In this way, when the openable cover 1011 is slid from front to back and the two buckles 10111 slide away from the two slots 1015, the openable cover 1011 is disassembled. The reverse operation is to connect the openable cover 1011 to the box body 101.
[0111] Meanwhile, in the above preferred embodiments, the comparison continues. Figure 4 , Figure 5 , Figure 6 and Figure 7 As shown, the front end of the box body 101 is formed into an opening, and a magnetic block A1016 is provided along the lower edge of the opening. A magnetic block B10112, with opposite polarity to the magnetic block A1016, is provided at the lower front part of the openable cover 1011. Thus, after the openable cover 1011 is connected to the box body 101, the magnetic block B10112 will engage with the magnetic block A1016. The magnetic attraction is used to fix the openable cover 1011 to the box body 101 after they are connected, so that the openable cover 1011 is not easy to slip off and fall off when no external force is applied. Conversely, when the box body 101 is kept still and the openable cover 1011 is pushed backward with a little force, the magnetic block B10112 can be separated from the magnetic block A1016, so as to facilitate the disassembly of the openable cover 1011.
[0112] Other embodiments, etc., will not be described here.
[0113] In summary, the shared therapeutic device charging and disinfection device 1000 provided in this application, in its specific implementation, incorporates both charging and disinfection functions in the charging and disinfection unit 10. This allows the shared therapeutic device 2000 to be charged and disinfected by the previous user, ensuring it can be used by the next user after charging and disinfection. This enables continuous use of the shared therapeutic device 2000, significantly improving its efficiency and frequency of use. It also ensures sufficient power and hygiene safety each time the device is used after charging and disinfection, minimizing interruptions and cross-infection from germs. This greatly enhances the reliability, safety, social benefits, and economic benefits of its use.
[0114] Furthermore, in actual use, this application employs a contact-type charging method for the shared therapeutic device 2000 to be charged and disinfected. The magnetic module 1025 is used to magnetically fix and position the shared therapeutic device 2000, ensuring good placement and stability, thus improving subsequent power connection stability. In other words, if the shared therapeutic device 2000 is not positioned accurately, it cannot be magnetically connected to the magnetic module 1025. This limits the shared therapeutic device 2000 to... Only when the placement position is accurate can the positive charging contact B301 be electrically connected to the positive charging contact A10231 and the negative charging contact B302 be electrically connected to the negative charging contact A10232 to form a closed and correct electrical circuit. Only then can the main control module 1021 control the charging module 1023 and the disinfection module 1024 to work synchronously, so as to realize the synchronous charging and disinfection of the shared treatment device 2000 placed in the receiving cavity.
[0115] Furthermore, this application includes a treatment device presence detection module 1026 for detecting whether the shared treatment device 2000 is placed in the receiving cavity, and a work indicator light 1027 for providing a working prompt when the shared treatment device 2000 is detected in the receiving cavity. This facilitates clearer and more convenient use of the application.
[0116] Furthermore, when a user wears the shared therapeutic device 2000, which includes the therapeutic device body 30, the first strap 40, and the second strap 50, the rear end face of the therapeutic device body 30 has more contact with the user's wrist skin. At this time, the disinfection module 1024 can be disposed on the front end face, left outer wall, and right outer wall of the charging disinfection component 102 to disinfect the rear end face of the therapeutic device body 30, the inner surface of the first strap 40, and the inner surface of the second strap 50. This is to minimize the transmission of germs and other contaminants on the rear end face of the therapeutic device body 30, the inner surface of the first strap 40, and the inner surface of the second strap 50 to the next user. As a result, the disinfection effect of the shared therapeutic device 2000 in this embodiment is better.
[0117] Furthermore, by connecting an external device that needs charging, such as a user's mobile phone or Bluetooth headset, to the charging data cable, this application can be used to charge the user's mobile phone or Bluetooth headset, making the entire charging and disinfection device 10 described in this application usable as a power bank, thus providing comprehensive functionality. Moreover, by connecting an external power source to the charging interface 1013 / charging terminal 1014, the charging and disinfection device 10 described in this application can be charged by an external power source, ensuring uninterrupted use of the charging and disinfection device 10.
[0118] Furthermore, the charging and disinfection station 10 described in this application is used to charge and disinfect the shared therapeutic device 2000, enabling the sharing of the therapeutic device 2000 after it is fully charged and disinfected. This adopts a shared therapeutic device 2000 rental model. The usage time can be calculated by the usage time billing module 203 set on the smart charging cabinet 20 and uploaded to the backend server via the wireless communication module 204. Users can then pay for usage time through a mobile APP or mini-program bound to the corresponding backend server. Similarly, the charging and disinfection station 10 described in this application can also be used as a shared power bank, enabling its sharing after it is fully charged. This adopts a shared power bank rental model. The usage time can also be calculated by the usage time billing module 203 set on the smart charging cabinet 20 and uploaded to the backend server via the wireless communication module 204. Users can then pay for usage time through a mobile APP or mini-program bound to the corresponding backend server. Therefore, the charging and disinfection device 10 described in this application is very flexible in use, and its performance can be optimized.
[0119] Meanwhile, based on the structure of the charging disinfection box 10 and the smart charging cabinet 20 described in this application, the smart charging cabinet 20 can be a common shared power bank charging cabinet in the prior art. It does not need to be redesigned separately. In specific implementation, it mainly involves improving and optimizing the internal structure of the shared power bank used with the existing shared power bank charging cabinet so that its box 101 has the charging disinfection component 102 and the receiving cavity. Its external structure basically does not need to be improved. In this way, this application is highly innovative and can optimize and upgrade existing public resources (shared power bank charging cabinets and shared power banks used with them). This means that from research and development to product finalization, this application basically does not require a lot of manpower, material resources and financial resources, so the development cost of this application will be very low and it can be widely promoted.
[0120] Furthermore, the shared therapeutic device charging and disinfection device 1000 provided in this application is indeed highly practical and has excellent effects, which makes this application inherently valuable for market promotion and will certainly be very popular and effectively popularized.
[0121] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0122] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention's specification and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.
Claims
1. A shared therapeutic device charging and disinfection device, characterized in that, The device includes a charging and sterilizing power bank, which comprises a housing and a charging and sterilizing component disposed within the housing. The area inside the box not occupied by the charging and disinfection component forms a cavity for holding the shared treatment device; the charging and disinfection component is equipped with a main control module and a rechargeable battery connected to the main control module, and the outer wall is equipped with a charging module connected to the main control module for charging the shared treatment device and a disinfection module for disinfecting the surface of the shared treatment device.
2. The shared therapeutic device charging and disinfection device according to claim 1, characterized in that, The charging module includes a positive charging contact A and a negative charging contact A; the surface of the shared therapeutic instrument is provided with a positive charging contact B adapted to be electrically connected to the positive charging contact A and a negative charging contact B adapted to be electrically connected to the negative charging contact A. When the positive charging contact B is electrically connected to the positive charging contact A and the negative charging contact B is electrically connected to the negative charging contact A, the main control module controls the charging module and the disinfection module to work synchronously.
3. The shared therapeutic device charging and disinfection device according to claim 2, characterized in that, The outer wall of the charging and disinfection component is also provided with a magnetic attraction module for magnetically positioning the shared treatment device near the positive charging contact A and the negative charging contact A.
4. The shared therapeutic device charging and disinfection device according to claim 2, characterized in that, The outer wall of the charging and disinfection component is also provided with a device presence detection module for detecting whether the shared treatment device is placed in the accommodating cavity and a working indicator light for prompting when the shared treatment device is detected in the accommodating cavity; The in-situ detection module of the therapeutic instrument and the working indicator light are both connected to the main control module, and the in-situ detection module of the therapeutic instrument is an infrared photoelectric sensor or an ultrasonic sensor.
5. The shared therapeutic device charging and disinfection device according to claim 1, characterized in that, The disinfection module is an ultraviolet disinfection module that emits UVC band ultraviolet light, and the working time of the disinfection module is preset by the main control module or dynamically adjusted according to the charging time of the shared treatment device.
6. The shared therapeutic device charging and disinfection device according to claim 4, characterized in that, The charging and disinfection component is located in the rear part of the box body. Its front end face is provided with the positive charging contact A, the negative charging contact A, the magnetic module and the therapeutic instrument in-situ detection module, and its front end face forms a placement cavity A with the front inner wall of the box body. The removable treatment device is housed in the storage cavity A, and its rear end face is provided with the positive charging contact B and the negative charging contact B.
7. The shared therapeutic device charging and disinfection device according to claim 6, characterized in that, The shared therapeutic device includes a therapeutic device body, a first strap connected to the left end of the therapeutic device body, and a second strap connected to the right end of the therapeutic device body; The rear end face of the main body of the treatment device is provided with the positive charging contact B and the negative charging contact B; a storage cavity B for accommodating the first tie is defined between the left outer wall of the charging and disinfection component and the left inner wall of the box; a storage cavity C for accommodating the second tie is defined between the right outer wall of the charging and disinfection component and the right inner wall of the box; the storage cavities A, B, and C together constitute the receiving cavity.
8. The shared therapeutic device charging and disinfection device according to claim 7, characterized in that, The disinfection module is located on the front end face of the charging disinfection component to disinfect the rear end face of the main body of the treatment device, or the disinfection module is located on the front end face, left outer wall and right outer wall of the charging disinfection component to disinfect the rear end face of the main body of the treatment device, the inner surface of the first tether and the inner surface of the second tether.
9. The shared therapeutic device charging and disinfection device according to any one of claims 1-8, characterized in that, The upper front part of the box is provided with an openable cover that can open the receiving cavity, and the outer surface of the box is also provided with a charging connection cable for charging external devices and a charging interface / charging terminal for charging the rechargeable battery, which are connected to the main control module.
10. The shared therapeutic device charging and disinfection device according to claim 9, characterized in that, It also includes a smart charging cabinet for charging the aforementioned charging and disinfection device; The smart charging cabinet is equipped with an MCU main controller, a power management module connected to the MCU main controller, a usage time billing module, and a wireless communication module for transmitting usage time billing data to the outside. The front of the smart charging cabinet has multiple charging compartments connected to the power management module. The charging sterilizer can be inserted into any of the charging compartments to charge the rechargeable battery inside through the charging compartment into which it is inserted.