Module for containing single medicine and safe case for hemp essence medicine

By designing module housings and modules for containing single-drug units, the safe storage and information display of anesthetic and psychotropic drugs have been achieved, solving the problems of storage security and information retrieval in existing technologies and reducing labor costs.

CN224211478UActive Publication Date: 2026-05-08CHONGQING KERITUO MEDICAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING KERITUO MEDICAL TECHNOLOGY CO LTD
Filing Date
2025-04-14
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The storage of existing anesthetic and psychotropic drugs poses safety risks and lacks readily available information, increasing labor costs.

Method used

Design a module for containing single-drug bottles, including a module housing and a single-drug module. The module is equipped with a data acquisition sensor and a control circuit board. The data acquisition sensor acquires drug information and the control circuit board controls a status warning element to issue a warning. Combined with a lock assembly and a display operation device, it realizes safe storage and information display.

Benefits of technology

It improves the storage safety of anesthetic and psychotropic drugs, reduces labor costs, and provides intuitive access to drug status information through a display and operation device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a module for containing a single medicine and a safe case for hemp essence medicine. The module for containing the single medicine comprises a module box body and a plurality of single medicine modules. Wherein an accommodating space is formed in the module box body; the plurality of single medicine modules are accommodated in the accommodating space of the module box body; the single-medicine module is used for containing single medicine. According to the module for containing the single medicine, the single medicine module capable of containing the single medicine is contained in the containing space of the module box body, and storage of hemp essence medicine is achieved. The module box body is simple in structure, and the safety of storing various hemp essence medicines is achieved. And meanwhile, the manufacturing cost is reduced.
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Description

Technical Field

[0001] This application relates to the field of storage of narcotic and psychotropic drugs, specifically to a module for containing single-drug units, another module for containing single-drug units, and a safe for narcotic and psychotropic drugs. Background Technology

[0002] In the medical industry, narcotic drugs and psychotropic substances (collectively referred to as controlled substances or psychotropic drugs) are highly controlled drugs. These drugs not only have extremely high medical value but also pose a risk of abuse. Therefore, ensuring the safe storage and accurate distribution of these drugs is crucial. Consequently, their control procedures are very strict, and the storage of controlled substances generally requires the supervision of designated personnel.

[0003] Currently, controlled substances are typically stored in medicine cabinets and require dedicated personnel for supervision. However, this cabinet storage method still presents security risks and increases labor costs. Furthermore, existing single-function medicine cabinets merely store controlled substances without providing a clear overview of their storage information.

[0004] Therefore, how to improve the safety of narcotic and psychotropic drug storage, accurately obtain relevant storage information, and at the same time reduce labor costs has become an urgent problem to be solved by those skilled in the art. Utility Model Content

[0005] This application provides a module for storing single-drug medications to address the existing problems of improving the security of narcotic and psychotropic drug storage, accurately obtaining relevant storage information, and simultaneously reducing labor costs. This application also provides a module for storing single-drug medications and a safe for narcotic and psychotropic drugs.

[0006] This application provides a module for containing single-drug units, including: a module housing and multiple single-drug modules;

[0007] The module housing has internal storage space;

[0008] Multiple single-drug modules are housed in the accommodating space of the module housing; each single-drug module is used to contain a single drug; each single-drug module includes: a module carrier, a single-drug containing structure, a control circuit board, a data acquisition sensor, and a status warning element.

[0009] The module carrier is provided with at least one of the single-drug container structures, which are used to contain a single drug.

[0010] The data acquisition sensor is located at the bottom of the single-drug container structure and is used to collect information on the single drug in the single-drug container structure and feed back the collected information on the associated single drug to the control circuit board.

[0011] The control circuit board is connected to the bottom of the module carrier and is used to acquire the associated single drug information and control the status warning element to perform status warning according to the associated single drug information; or the control circuit board is used to acquire and send the associated single drug information to the external controller or the display operation device, and control the status warning element to perform status warning according to the control information fed back by the external controller or the display operation device based on the associated single drug information.

[0012] The status warning element is configured corresponding to the single-drug container structure and is used to display the status warning of the corresponding single-drug container structure.

[0013] Optionally, the module housing includes support ears, multiple housing frames, and multiple heat dissipation holes;

[0014] The plurality of accommodating frames divide the module housing into a plurality of accommodating spaces, each of the accommodating spaces being able to accommodate each of the single drug modules;

[0015] The supporting ear is located at the corner of the accommodating frame and is used to support the single drug module;

[0016] The heat dissipation holes are located at the bottom of each housing frame and are used to dissipate the heat from the single drug module.

[0017] Optionally, the single-drug container structure includes: a drug slot and a support and positioning boss;

[0018] The drug slots are arranged vertically on the module carrier, and the drug slots can have different sizes of apertures to form single-drug container structures of different specifications.

[0019] The support and positioning boss is located at the bottom of the medicine slot and is used to provide positioning support for a single medicine.

[0020] This application also provides a module for containing single-drug units, including: a module housing, multiple single-drug modules, a locking assembly, and a display and operation device;

[0021] The module housing has internal storage space;

[0022] Multiple single-drug modules are housed in the receiving space of the module housing; each single-drug module is used to hold a single drug.

[0023] The locking box assembly is disposed on the module box and is used to lock or open the module box;

[0024] The display operation device is located on the outside of the module housing and is connected to the lock box assembly and the single-drug module. It is used to perform a first control on the lock box assembly to display the first status information of the lock box assembly, and to perform a second control on the single-drug module to display the second status information of the single-drug module.

[0025] Optionally, the single-drug module includes: a module carrier, a single-drug container structure, a control circuit board, a data acquisition sensor, and a status warning element;

[0026] The module carrier is provided with at least one of the single-drug container structures, which are used to contain a single drug.

[0027] The data acquisition sensor is located at the bottom of the single-drug container structure and is used to collect information on the single drug in the single-drug container structure and feed back the collected information on the associated single drug to the control circuit board.

[0028] The control circuit board is connected to the bottom of the module carrier and is used to acquire the associated single drug information and control the status warning element to perform status warning according to the associated single drug information; or the control circuit board is used to acquire and send the associated single drug information to the external controller or the display operation device, and control the status warning element to perform status warning according to the control information fed back by the external controller or the display operation device based on the associated single drug information.

[0029] The status warning element is configured corresponding to the single-drug container structure and is used to display the status warning of the corresponding single-drug container structure.

[0030] Optionally, the single-drug container structure includes: a drug slot and a support and positioning boss;

[0031] The drug slots are arranged vertically on the module carrier, and the drug slots can have different sizes of apertures to form single-drug container structures of different specifications.

[0032] The support and positioning boss is located at the bottom of the medicine slot and is used to provide positioning support for a single medicine.

[0033] Optionally, it also includes a gripping hook, which is located at the corner of the module carrier and is used to hold the module carrier.

[0034] Optionally, the lock box assembly includes: a lock control module, a cover plate, a button, an electromagnetic lock, a latch, and a manual unlocking component;

[0035] The lock control module is located in the accommodating space inside the module housing; the lock control module is used to control the electromagnetic lock;

[0036] The cover plate is disposed on the top of the module housing, and the cover plate can enclose the accommodating space of the module housing;

[0037] The latch is disposed on the inner end face of the cover plate, and the electromagnetic lock is disposed on the front side of the module housing. When the cover plate encloses the accommodating space of the module housing, the latch can lock with the electromagnetic lock.

[0038] The button is located on the outer end face of the cover plate and is used to unlock the electromagnetic lock;

[0039] The manual unlocking component is located on the front side of the module housing and on the side of the electromagnetic lock.

[0040] Optionally, the manual unlocking component includes: a positioning pivot and an unlocking rotating rod;

[0041] The unlocking rotating rod is movably mounted on the front side of the module housing via the positioning pivot. One end of the unlocking rotating rod is internally connected to an electromagnetic lock, and the other end of the unlocking rotating rod is externally located on the front side of the module housing. The electromagnetic lock can be unlocked by manually controlling the unlocking rotating rod.

[0042] Optionally, the lock box assembly further includes a spring-back assembly, which is used to spring the cover plate up to a preset angle after the electromagnetic lock and the latch are separated; the spring-back assembly includes a hinge and a spring, the hinge is connected between the cover plate and the module box, and the spring is connected to the hinge, which is used to generate a spring-back force when the cover plate is locked to the front side of the module box, and to spring the cover plate up to the preset angle by the spring-back force.

[0043] Optionally, the display operation device includes a circuit control board, a display operation screen, and indicator lights;

[0044] The circuit control board is disposed on the inner end face of the cover plate;

[0045] The display operation screen is located on the outer end face of the cover plate. The display operation screen is equipped with a control trigger module for controlling the single drug contained in the single drug module and displaying data.

[0046] The indicator light is located on the outer end face of the cover plate and on the side of the display operation screen.

[0047] Optionally, multiple single-drug modules are arranged in a single row within the receiving space of the module housing, and the single-drug modules in the single row are stacked vertically; or

[0048] Multiple single-drug modules are arranged in multiple columns within the receiving space of the module housing, with each column of single-drug modules stacked vertically; or

[0049] Multiple single-drug modules are arranged in multiple columns and rows within the accommodating space of the module housing, with each column and row of single-drug modules stacked vertically.

[0050] This application also provides a safe for narcotic and psychotropic drugs, including the module for containing a single drug as described above.

[0051] Compared with the prior art, this application has the following advantages:

[0052] This application provides a module for containing a single-drug vial, comprising: a module housing and multiple single-drug modules; wherein, the module housing has an internal accommodating space; the multiple single-drug modules are housed within the accommodating space of the module housing; the single-drug modules are used to contain a single-drug vial.

[0053] This application provides a module for storing single-drug medications. By housing a single-drug module within the compartment of the module housing, it achieves the storage of narcotic and psychotropic drugs. The module housing structure is simple, ensuring safety for storing various types of narcotic and psychotropic drugs. It also reduces manufacturing costs.

[0054] This application also provides a module for containing single-use medicines, comprising: a module housing, multiple single-use medicine modules, a locking assembly, and a display and operation device. The module housing has an internal receiving space. The multiple single-use medicine modules are housed within the receiving space of the module housing, and each single-use medicine module is used to contain a single medicine. The locking assembly is disposed on the module housing and is used to lock or unlock the module housing. The display and operation device is disposed on the outside of the module housing and connected to the locking assembly and the single-use medicine modules, and is used to perform a first control on the locking assembly to display a first state information of the locking assembly, and a second control on the single-use medicine modules to display a second state information of the single-use medicine modules.

[0055] The single-drug container module provided in this application achieves the storage of narcotic and psychotropic drugs by housing a single-drug module within the container space of the module housing. The locking assembly can lock or unlock the module housing, achieving tight sealing of multiple types of narcotic and psychotropic drugs, thereby improving the security of drug storage. Furthermore, when multiple types of narcotic and psychotropic drugs are packaged in the module housing, the status information of the single-drug module can be intuitively obtained through the display operation device, thereby improving the accuracy of obtaining relevant storage information about the narcotic and psychotropic drugs. Attached Figure Description

[0056] Figure 1 This is a schematic diagram of the structure of a single drug module provided in the first embodiment of this application.

[0057] Figure 2 This is a schematic diagram of the module housing provided in the first embodiment of this application.

[0058] Figure 3 This is a schematic diagram of the structure of another single-drug module provided in the second embodiment of this application.

[0059] Figure 4 This is a top view of a single drug module provided in the second embodiment of this application.

[0060] Figure 5 This is a schematic diagram of another single-drug module provided in the second embodiment of this application.

[0061] Figure 6 This is a schematic diagram of a single-drug module provided in the second embodiment of this application.

[0062] Figure 7 This is a top view of a single-drug module provided in the second embodiment of this application.

[0063] Figure 8 This is a side view of a single drug module provided in the second embodiment of this application.

[0064] Figure 9 This is a schematic diagram of another single-drug module provided in the second embodiment of this application.

[0065] Figure 10 This is a top view of another single-drug module provided in the second embodiment of this application.

[0066] Figure label:

[0067] Single-drug module 100, module housing 1, weight reduction hole 11, housing frame 12, support ear 13, heat dissipation hole 14, single-drug module 2, module carrier 21, single-drug housing structure 22, medicine slot hole 221, support positioning boss 222, control circuit board 23, board body 231, controller 232, connector 233, connection structure 234, data acquisition sensor 24, housing groove 241, status warning element 25, mounting slot 251, warning light 252, grab ear hook 3, lock box assembly 4, lock control module 41, cover plate 42, button 43, electromagnetic lock 44, latch 45, unlocking rotating rod 46, spring-loaded assembly 47, display operation device 5, circuit control board 51, display operation screen 52, indicator light 53. Detailed Implementation

[0068] Many specific details are set forth in the following description to provide a full understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of this application; therefore, this application is not limited to the specific embodiments disclosed below.

[0069] In the description of this application, it should be understood that the terms "upper", "lower", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and 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, and therefore should not be construed as a limitation of this application.

[0070] 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 at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0071] Currently, controlled substances are typically stored in medicine cabinets and require dedicated personnel for supervision. However, this cabinet storage method still presents security risks and increases labor costs. Furthermore, existing single-function medicine cabinets merely store controlled substances without providing a clear overview of their storage information.

[0072] Accordingly, this application provides a module for containing a single-drug vial, comprising: a module housing and a plurality of single-drug modules; wherein the module housing has an internal accommodating space; the plurality of single-drug modules are accommodated in the accommodating space of the module housing; the single-drug modules are used to contain a single-drug vial.

[0073] This application provides a module for storing single-drug medications. By housing a single-drug module within the module housing, it achieves the storage of narcotic and psychotropic drugs. The module housing structure is simple, ensuring safety for storing various types of narcotic and psychotropic drugs. It also reduces manufacturing costs.

[0074] This application also provides a module for containing single-use medicines, comprising: a module housing, multiple single-use medicine modules, a locking assembly, and a display and operation device. The module housing has an internal receiving space. The multiple single-use medicine modules are housed within the receiving space of the module housing, and each single-use medicine module is used to contain a single medicine. The locking assembly is disposed on the module housing and is used to lock or unlock the module housing. The display and operation device is disposed on the outside of the module housing and connected to the locking assembly and the single-use medicine modules, and is used to perform a first control on the locking assembly to display a first state information of the locking assembly, and a second control on the single-use medicine modules to display a second state information of the single-use medicine modules.

[0075] This application provides a module for storing single-drug units. By housing a single-drug module within the module housing, it enables the storage of narcotic and psychotropic drugs. The locking assembly locks or unlocks the module housing, ensuring tight sealing of multiple types of narcotic and psychotropic drugs and enhancing storage security. Furthermore, when multiple types of narcotic and psychotropic drugs are stored in the module housing, the status information of the single-drug module can be intuitively obtained through a display device, improving the accuracy of obtaining relevant storage information.

[0076] The switch socket provided in this application will now be described in detail with reference to the accompanying drawings. Figure 1 This is a schematic diagram of the structure of a single drug module provided in the first embodiment of this application. Figure 2 This is a schematic diagram of the module housing provided in the first embodiment of this application. Figure 3 This is a schematic diagram of the structure of a single drug module provided in an embodiment of this application. Figure 4 This is a top view of a single drug module provided in an embodiment of this application. Figure 5 This is a schematic diagram of another single-drug module provided in the embodiments of this application. Figure 6 This is a schematic diagram of the structure of a single-drug module provided in an embodiment of this application. Figure 7 This is a top view of a single-drug module provided in an embodiment of this application. Figure 8 This is a side view of a single drug module provided in an embodiment of this application. Figure 9 This is a schematic diagram of another single-drug module provided in the embodiments of this application. Figure 10 This is a top view of another single-drug module provided in the embodiments of this application.

[0077] First Embodiment

[0078] like Figures 1-2 As shown, this application provides a module 100 for containing single-drug vials, including: a module housing 1 and multiple single-drug modules 2. The module housing 1 has an internal receiving space. The multiple single-drug modules 2 are housed within the receiving space of the module housing 1, and the single-drug modules 2 are used to contain single-drug vials.

[0079] Specifically, in this embodiment, in one example, the module housing 1 can be configured as a cuboid structure, such as a cube or a rectangular prism. Multiple single-drug modules 2 are housed within the accommodating space of the module housing 1. When accommodating multiple single-drug modules 2, the module housing 1 can be configured as follows: the module housing 1 includes multiple accommodating frames 12, each accommodating frame 12 corresponding to one single-drug module 2. In one example, each accommodating frame 12 has a supporting ear 13 at its corner, which supports the single-drug module 2. In another example, each accommodating frame 12 also has a heat dissipation hole 14 at its bottom, which dissipates heat from the single-drug module 2.

[0080] In one example, to reduce the weight of the module housing 1, a weight-reducing hole 11 is provided on the peripheral plate 231 of the module housing 1. This weight-reducing hole 11 also has a heat dissipation function (the weight-reducing hole 11 with a heat dissipation function can be called a heat dissipation hole).

[0081] The single-drug module 2 is used to contain a single drug. In one example, multiple single-drug modules 2 are arranged in a single column within the receiving space of the module housing 1, and the single-drug modules 2 in the single column are stacked vertically. For example, if the volume of the receiving space of the module housing 1 is 0.5L and the volume of each single-drug module 2 is 0.1L, then 5 single-drug modules 2 are arranged in a single column within the receiving space of the module housing 1, and the 5 single-drug modules 2 in the single column are stacked vertically. Alternatively, multiple single-drug modules 2 are arranged in multiple columns within the receiving space of the module housing 1, and the single-drug modules 2 in each column are stacked vertically. For example, if the volume of the module housing 1 is 1.5L and the volume of each single medicine module 2 is 0.1L, then 15 single medicine modules 2 can be arranged in 3 single columns (forming multiple columns) within the volume of the module housing 1, with the 5 single medicine modules 2 in each single column stacked vertically. Alternatively, multiple single medicine modules 2 can be arranged in multiple columns and rows within the volume of the module housing 1, with the single medicine modules 2 in each column and each row stacked vertically. For example, if the volume of the module housing 1 is 2.0L and the volume of each single medicine module 2 is 0.1L, then 20 single medicine modules 2 can be arranged in 2 single columns (forming multiple columns), with 2 rows in each column, that is, the 5 single medicine modules 2 in each single column and the row of that single column stacked vertically. Of course, in other examples, the volume of the module housing 1 (accommodating space) can be other, and correspondingly, the arrangement of multiple single-drug modules 2 can also be other.

[0082] In this embodiment, based on the vertical stacking of the single drug modules 2, to facilitate the vertical retrieval of each layer of single drug modules 2, the single drug module 2 also includes an ear hook 3, which is located at the corner of the module carrier 21 and is used to hold the module carrier 21.

[0083] In this embodiment, the single-drug module 2 includes: a module carrier 21, a single-drug container structure 22, a control circuit board 23, a data acquisition sensor 24, and a status warning element 25. The module carrier 21 has at least one single-drug container structure 22 for containing a single drug. Specifically, in one example, the module carrier 21 can be a cuboid structure, either rectangular or cube. In one example, the single-drug container structure 22 includes: drug slots 221 and supporting positioning bosses 222. The drug slots 221 are arranged in a matrix on the module carrier 21, with the holes distributed vertically and having different diameters to form single-drug container structures 22 of different specifications. In one example, the drug slots 221 are arranged in an odd or even number on the module carrier 21. In one example, the shape of the medicine slot 221 is adapted to the shape and structure of a single medicine, and the shape of the medicine slot 221 includes at least a circular hole. Of course, in other examples, the shape of the medicine slot 221 can be square or elliptical. A support positioning boss 222 is provided at the bottom of the medicine slot 221 to provide positioning support for the single medicine.

[0084] In one example, the single-drug container structure 22 can also have the following structure: specifically, the single-drug container structure 22 includes: a drug slot 221, a support positioning boss 222, and a lifting mechanism. The drug slots 221 are arranged in a matrix on the module carrier 21, with the holes of the drug slots 221 distributed vertically, and the drug slots 221 having different hole diameters to form single-drug container structures 22 of different specifications. In one example, the hole shape of the drug slots 221 is adapted to the shape and structure of the single drug, and the hole shape of the drug slots 221 includes at least circular holes. Of course, in other examples, the hole shape of the drug slots 221 can be square or elliptical. The lifting mechanism is located at the bottom of the drug slots 221 and is connected to the support positioning boss 222 to drive the support positioning boss 222 to move up and down. The support positioning boss 222 is used to provide positioning support for the single drug. In one example, the lifting mechanism includes a drive motor and a connecting rod. The drive motor is located at the bottom of the medicine slot 221. One end of the connecting rod is connected to the drive motor, and the other end of the connecting rod is connected to the support positioning boss 222, so that the support positioning boss 222 can be lifted and lowered synchronously when the drive motor drives the connecting rod.

[0085] A data acquisition sensor 24 is located at the bottom of the single-drug container structure 22. Specifically, the sensor 24 is positioned in a receiving groove 241 on the supporting positioning boss 222. It collects information about the single-drug container in the single-drug container structure 22 and feeds the collected information back to the control circuit board 23. The information collected by the sensor 24 includes whether a single-drug container is present in the single-drug container structure 22. When a single-drug container is present in the single-drug container structure 22, the sensor 24 collects information indicating the presence of a single-drug container, which is recorded as the first collection information. When no single-drug container is present in the single-drug container structure 22, the sensor 24 collects information indicating the absence of a single-drug container, which is recorded as the second collection information.

[0086] The control circuit board 23 is connected to the bottom of the module carrier 21 and is used to acquire information about the associated single drug and control the status warning element 25 to issue a status warning based on the associated single drug information. Alternatively, the control circuit board 23 is used to acquire and send information about the associated single drug to an external controller or display operation device 5, and control the status warning element 25 to issue a status warning based on the control information fed back by the external controller or display operation device 5 according to the associated single drug information.

[0087] In this embodiment, the control circuit board 23 includes a board body 231, a controller 232, a connector 233, and a connection structure 234. The shape and structure of the board body 231 are identical to those of the module carrier 21. The board body 231 is connected to the module carrier 21 via the connection structure 234. In one example, the connection structure 234 includes bolt posts and bolt holes, with the bolt holes respectively located at the corners of the board body 231 and the module carrier 21, and the bolt holes on both corresponding to each other. The bolt posts are screwed into the bolt holes to connect the board body 231 and the module carrier 21. The controller 232 and the connector 233 are respectively located on the outer end face of the board body 231. The controller 232 is used to acquire associated single-drug information and control the status warning element 25 to issue status warnings based on the associated single-drug information. The connector 233 can be connected to an external controller to acquire and send associated single-drug information to the external controller, and control the status warning element 25 to issue status warnings based on the control information fed back by the external controller according to the associated single-drug information.

[0088] A status warning element 25 is correspondingly configured with respect to a single-drug container structure 22, used to display a status warning for the corresponding single-drug container structure 22. In one example, the status warning element 25 includes a mounting slot 251, a power control module, and a warning light 252. The mounting slot 251 is located on the module carrier 21 and is positioned on the side of each single-drug container structure 22. The power control module is located in the mounting slot 251 and is connected to the control circuit board 23 to receive power and control signals provided by the control circuit board 23. The warning light 252 is installed in the mounting slot 251 and connected to the power control module, used to display a status warning for the corresponding single-drug container structure 22 based on the control signal. In one example, the status warning element 25 can represent the first and second collected information by displaying different light colors, for example, red for the first collected information and blue for the second. Alternatively, the status warning element 25 can represent the first and second collected information by indicating whether the light is on or off, for example, an on light for the first collected information and an off light for the second.

[0089] The above describes the specific structure of a single-drug module 2.

[0090] In one example, after the module carrier 21 is housed in the module housing 1, the module housing 1 needs to be encapsulated by a locking assembly (not shown). Specifically, the locking assembly includes: a locking control module, a cover plate, a button, an electromagnetic lock, a latch, and a manual unlocking assembly. The locking control module is located in the internal accommodating space of the module housing and is used to control the electromagnetic lock. The cover plate is located on the top of the module housing and encapsulates the accommodating space of the module housing. In one example, the size and area of ​​the cover plate vary depending on the arrangement of the single medicine modules 2 housed in the module housing 1. Multiple cover plates can be provided on the same module housing 1, and each cover plate can be of the same or different specifications. Specifically, in one example, the cover plate is provided with acrylic glass (not shown), and the size, area, and quantity of the acrylic glass are set according to the size and area of ​​the cover plate and the area occupied by the single medicine module 2, so that the single medicine module below the cover plate can be observed through the acrylic glass. For example, the cover plate can have three or two pieces of acrylic glass. When there are three pieces, two are of the same specification, and the third is of a different specification. When there are two pieces, one is of one specification, and the other is of a different specification. In one example, the color of the acrylic glass can also be set according to the type of medicine, for example, as amber-colored light-blocking glass. A latch is located on the inner end face of the cover plate, and an electromagnetic lock is located on the front side of the module housing. When the cover plate encloses the receiving space of the module housing, the latch can lock with the electromagnetic lock. A button is located on the outer end face of the cover plate for unlocking the electromagnetic lock. A manual unlocking component is located on the front side of the module housing, next to the electromagnetic lock.

[0091] This application provides a module 100 for containing a single-drug vial, comprising: a module housing 1 and a plurality of single-drug modules 2; wherein, the module housing 1 has an internal accommodating space; the plurality of single-drug modules 2 are housed in the accommodating space of the module housing 1; the single-drug modules 2 are used to contain a single-drug vial.

[0092] This application provides a module 100 for storing single-drug medications. By housing a single-drug module 2 within the accommodating space of the module housing 1, it achieves the storage of narcotic and psychotropic drugs. The module housing 1 of this application has a simple structure, ensuring safety for storing various types of narcotic and psychotropic drugs. It also reduces manufacturing costs.

[0093] Second Embodiment

[0094] like Figures 3-10As shown, this application provides a module 100 for containing single-use medicines, including: a module housing 1, multiple single-use medicine modules 2, a locking assembly 4, and a display and operation device 5. The module housing 1 has an internal accommodating space. The multiple single-use medicine modules 2 are housed within the accommodating space of the module housing 1, and each single-use medicine module 2 is used to contain a single medicine. The locking assembly 4 is disposed on the module housing 1 and is used to lock or unlock the module housing 1. The display and operation device 5 is disposed on the outside of the module housing 1 and connected to the locking assembly 4 and the single-use medicine modules 2, and is used to perform a first control on the locking assembly 4 to display a first status information of the locking assembly 4, and a second control on the single-use medicine modules 2 to display a second status information of the single-use medicine modules 2.

[0095] Specifically, in this embodiment, the single-drug module 100 includes a module housing 1, multiple single-drug modules 2, a locking assembly 4, and a display and operation device 5. The module housing 1 has an internal storage space. The size of the module housing 1 can be determined based on the number and specifications of the single-drug modules 2 it accommodates. The single-drug module 100 can be of the same specification or different specifications. In one example, the module housing 1 can be a cuboid structure, such as a cube or rectangular prism. Multiple single-drug modules 2 are housed within the storage space of the module housing 1.

[0096] In one example, to reduce the weight of the module housing 1, a weight-reducing hole 11 is provided on the peripheral plate 231 of the module housing 1. This weight-reducing hole 11 also has a heat dissipation function (the weight-reducing hole 11 with a heat dissipation function can be called a heat dissipation hole).

[0097] The single-drug module 2 is used to contain a single drug. In one example, multiple single-drug modules 2 are arranged in a single column within the receiving space of the module housing 1, and the single-drug modules 2 in the single column are stacked vertically. For example, if the volume of the receiving space of the module housing 1 is 0.5L and the volume of each single-drug module 2 is 0.1L, then 5 single-drug modules 2 are arranged in a single column within the receiving space of the module housing 1, and the 5 single-drug modules 2 in the single column are stacked vertically. Alternatively, multiple single-drug modules 2 are arranged in multiple columns within the receiving space of the module housing 1, and the single-drug modules 2 in each column are stacked vertically. For example, if the volume of the module housing 1 is 1.5L and the volume of each single medicine module 2 is 0.1L, then 15 single medicine modules 2 can be arranged in 3 single columns (forming multiple columns) within the volume of the module housing 1, with the 5 single medicine modules 2 in each single column stacked vertically. Alternatively, multiple single medicine modules 2 can be arranged in multiple columns and rows within the volume of the module housing 1, with the single medicine modules 2 in each column and each row stacked vertically. For example, if the volume of the module housing 1 is 2.0L and the volume of each single medicine module 2 is 0.1L, then 20 single medicine modules 2 can be arranged in 2 single columns (forming multiple columns), with 2 rows in each column, that is, the 5 single medicine modules 2 in each single column and the row of that single column stacked vertically. Of course, in other examples, the volume of the module housing 1 (accommodating space) can be other, and correspondingly, the arrangement of multiple single-drug modules 2 can also be other.

[0098] In this embodiment, based on the vertical stacking of the single drug modules 2, to facilitate the vertical retrieval of each layer of single drug modules 2, the single drug module 2 also includes an ear hook 3, which is located at the corner of the module carrier 21 and is used to hold the module carrier 21.

[0099] In this embodiment, the single-drug module 2 includes: a module carrier 21, a single-drug container structure 22, a control circuit board 23, a data acquisition sensor 24, and a status warning element 25. The module carrier 21 has at least one single-drug container structure 22 for containing a single drug. Specifically, in one example, the module carrier 21 can be a cuboid structure, either rectangular or cube. In one example, the single-drug container structure 22 includes: drug slots 221 and supporting positioning bosses 222. The drug slots 221 are arranged in a matrix on the module carrier 21, with the holes distributed vertically and having different diameters to form single-drug container structures 22 of different specifications. In one example, the drug slots 221 are arranged in an odd or even number on the module carrier 21. In one example, the shape of the medicine slot 221 is adapted to the shape and structure of a single medicine, and the shape of the medicine slot 221 includes at least a circular hole. Of course, in other examples, the shape of the medicine slot 221 can be square or elliptical. A support positioning boss 222 is provided at the bottom of the medicine slot 221 to provide positioning support for the single medicine.

[0100] In one example, the single-drug container structure 22 can also have the following structure: specifically, the single-drug container structure 22 includes: a drug slot 221, a support positioning boss 222, and a lifting mechanism. The drug slots 221 are arranged in a matrix on the module carrier 21, with the holes of the drug slots 221 distributed vertically, and the drug slots 221 having different hole diameters to form single-drug container structures 22 of different specifications. In one example, the hole shape of the drug slots 221 is adapted to the shape and structure of the single drug, and the hole shape of the drug slots 221 includes at least circular holes. Of course, in other examples, the hole shape of the drug slots 221 can be square or elliptical. The lifting mechanism is located at the bottom of the drug slots 221 and is connected to the support positioning boss 222 to drive the support positioning boss 222 to move up and down. The support positioning boss 222 is used to provide positioning support for the single drug. In one example, the lifting mechanism includes a drive motor and a connecting rod. The drive motor is located at the bottom of the medicine slot 221. One end of the connecting rod is connected to the drive motor, and the other end of the connecting rod is connected to the support positioning boss 222, so that the support positioning boss 222 can be lifted and lowered synchronously when the drive motor drives the connecting rod.

[0101] A data acquisition sensor 24 is located at the bottom of the single-drug container structure 22. Specifically, the sensor 24 is positioned in a receiving groove 241 on the supporting positioning boss 222. It collects information about the single-drug container in the single-drug container structure 22 and feeds the collected information back to the control circuit board 23. The information collected by the sensor 24 includes whether a single-drug container is present in the single-drug container structure 22. When a single-drug container is present in the single-drug container structure 22, the sensor 24 collects information indicating the presence of a single-drug container, which is recorded as the first collection information. When no single-drug container is present in the single-drug container structure 22, the sensor 24 collects information indicating the absence of a single-drug container, which is recorded as the second collection information.

[0102] The control circuit board 23 is connected to the bottom of the module carrier 21 and is used to acquire information about the associated single drug and control the status warning element 25 to issue a status warning based on the associated single drug information. Alternatively, the control circuit board 23 is used to acquire and send information about the associated single drug to an external controller or display operation device 5, and control the status warning element 25 to issue a status warning based on the control information fed back by the external controller or display operation device 5 according to the associated single drug information.

[0103] In this embodiment, the control circuit board 23 includes a board body 231, a controller 232, a connector 233, and a connection structure 234. The shape and structure of the board body 231 are identical to those of the module carrier 21. The board body 231 is connected to the module carrier 21 via the connection structure 234. In one example, the connection structure 234 includes bolt posts and bolt holes, with the bolt holes respectively located at the corners of the board body 231 and the module carrier 21, and the bolt holes on both corresponding to each other. The bolt posts are screwed into the bolt holes to connect the board body 231 and the module carrier 21. The controller 232 and the connector 233 are respectively located on the outer end face of the board body 231. The controller 232 is used to acquire associated single-drug information and control the status warning element 25 to issue status warnings based on the associated single-drug information. The connector 233 can be connected to an external controller to acquire and send associated single-drug information to the external controller, and control the status warning element 25 to issue status warnings based on the control information fed back by the external controller according to the associated single-drug information.

[0104] A status warning element 25 is correspondingly configured with respect to a single-drug container structure 22, used to display a status warning for the corresponding single-drug container structure 22. In one example, the status warning element 25 includes a mounting slot 251, a power control module, and a warning light 252. The mounting slot 251 is located on the module carrier 21 and is positioned on the side of each single-drug container structure 22. The power control module is located in the mounting slot 251 and is connected to the control circuit board 23 to receive power and control signals provided by the control circuit board 23. The warning light 252 is installed in the mounting slot 251 and connected to the power control module, used to display a status warning for the corresponding single-drug container structure 22 based on the control signal. In one example, the status warning element 25 can represent the first and second collected information by displaying different light colors, for example, red for the first collected information and blue for the second. Alternatively, the status warning element 25 can represent the first and second collected information by indicating whether the light is on or off, for example, an on light for the first collected information and an off light for the second.

[0105] The above describes the specific structure of a single-drug module 2.

[0106] After the module carrier 21 is housed in the module housing 1, the module housing 1 needs to be encapsulated by the locking assembly 4. Specifically, the locking assembly 4 is disposed on the module housing 1 and is used to lock or unlock the module housing 1. The locking assembly 4 includes: a lock control module 41, a cover plate 42, a button 43, an electromagnetic lock 44, a latch 45, and a manual unlocking component. The lock control module 41 is disposed in the internal accommodating space of the module housing 1. The lock control module 41 is used to control the electromagnetic lock 44. The cover plate 42 is disposed on the top of the module housing 1 and can encapsulate the accommodating space of the module housing 1. In one example, the size and area of ​​the cover plate 42 are different depending on the arrangement of a single medicine module 2 housed in the module housing 1, and multiple cover plates 42 can be disposed on the same module housing 1, and each cover plate 42 can be of the same or different specifications. Specifically, in one example, the cover plate 42 is provided with plexiglass (not shown), and the size, area, and quantity of the plexiglass are set according to the size and area of ​​the cover plate 42 and the area occupied by the single medicine module 2, so that the single medicine module 2 below the cover plate 42 can be observed through the plexiglass 2. For example, the number of plexiglass pieces on the cover plate 42 can be three or two. When there are three plexiglass pieces, two of them are of the same specification, and the other is of a different specification. When there are two plexiglass pieces, one of them is of a different specification, and the other is of a different specification. In one example, the color of the plexiglass can also be set according to the type of medicine, for example, it can be set as brown light-blocking glass.

[0107] The latch 45 is located on the inner end face of the cover plate 42, specifically at the front edge of the inner end face of the cover plate 42. The electromagnetic lock 44 is located on the front side of the module housing 1; when the cover plate 42 encloses the accommodating space of the module housing 1, the latch 45 can lock with the electromagnetic lock 44. A button 43 is located on the outer end face of the cover plate 42 for unlocking the electromagnetic lock 44. A manual unlocking component is located on the front side of the module housing 1, specifically on the side of the electromagnetic lock 44. In one example, the manual unlocking component includes a positioning pivot and an unlocking rotating rod 46. The unlocking rotating rod 46 is movably mounted on the front side of the module housing 1 via the positioning pivot. One end of the unlocking rotating rod 46 is internally connected to an electromagnetic lock 44, specifically, one end of the unlocking rotating rod 46 is internally connected to the locking hook of the electromagnetic lock 44. The other end of the unlocking rotating rod 46 is externally located on the front side of the module housing 1. By manually controlling the unlocking rotating rod 46, the electromagnetic lock 44 can be unlocked, that is, the locking hook and latch 45 of the electromagnetic lock 44 can be unlocked to prevent the locking hook and latch 45 of the electromagnetic lock 44 from being unable to separate when the electromagnetic lock 44 is powered off or malfunctions.

[0108] In this embodiment, to ensure that the cover plate 42 automatically springs up after unlocking, the lock box assembly 4 further includes a spring-back assembly 47. The spring-back assembly 47 is used to spring the cover plate 42 up by a preset angle after the electromagnetic lock 44 and the latch 45 separate. In one example, the preset angle at which the cover plate 42 springs up can be 90 degrees. In one example, the spring-back assembly 47 includes a hinge and a spring. The hinge is connected between the cover plate 42 and the module housing 1, and the spring is connected to the hinge. It is used to generate a spring-back force when the cover plate 42 is locked to the front of the module housing 1, and to spring the cover plate 42 up by the spring-back force to the preset angle.

[0109] In this embodiment, the display operation device 5 is located on the outside of the module housing 1 and is connected to the lock box assembly 4 and the single medicine module 2. It is used to perform a first control on the lock box assembly 4 to display the first status information of the lock box assembly 4, and to perform a second control on the single medicine module 2 to display the second status information of the single medicine module 2.

[0110] Furthermore, the display operation device 5 includes a circuit control board 51, a display operation screen 52, and indicator lights 53. The circuit control board 51 is located on the inner end face of the cover plate 42, and is used to provide power to the display operation screen 52 and control it. The display operation screen 52 is located on the outer end face of the cover plate 42, and is equipped with a control trigger module and display data for the single-drug module 2 containing the single-drug, as well as a control trigger module and display data for the lock box assembly 4.

[0111] Specifically, the display screen 52 includes a menu bar and corresponding control trigger modules. The menu bar includes operation menus for the lock box component 4 and directories for each module housing 1. The operation menus for the lock box component 4 include unlocking control trigger modules, maintenance control trigger modules, and locking control trigger modules. Each module can also display corresponding information. That is, by operating the above modules, the lock box component 4 can be controlled in the first way to display the first status information of the lock box component 4. In one example, the first status information includes at least the unlocking / locking information and fault maintenance information of the electromagnetic lock 44. The control trigger modules corresponding to the directories of the module housing 1 include control trigger modules associated with the single-drug container structure 22 in each layer of the module carrier 21 of the module housing 1. By triggering the corresponding control trigger modules, the single-drug information in the single-drug container structure 22 can be controlled and obtained. In addition, the control trigger modules can also display the single-drug information in the single-drug container structure 22. That is, the single-drug module 2 can be controlled in the second way to display the second status information of the single-drug module 2. Indicator light 53 is located on the outer end face of cover plate 42 and on the side of display operation screen 52. Indicator light 53 is used to provide early warning of the status information of the corresponding module housing 1.

[0112] It should be noted that the aforementioned button 43 also has a confirmation function for interactive operations on the module housing 1.

[0113] The above describes the specific structure of a single drug module 100.

[0114] This application provides a module 100 for containing single-use medicines, comprising: a module housing 1, multiple single-use medicine modules 2, a locking assembly 4, and a display and operation device 5. The module housing 1 has an internal accommodating space. The multiple single-use medicine modules 2 are housed within the accommodating space of the module housing 1, and each single-use medicine module 2 is used to contain a single medicine. The locking assembly 4 is disposed on the module housing 1 and is used to lock or unlock the module housing 1. The display and operation device 5 is disposed on the outside of the module housing 1 and connected to the locking assembly 4 and the single-use medicine modules 2, and is used to perform a first control on the locking assembly 4 to display a first status information of the locking assembly 4, and a second control on the single-use medicine modules 2 to display a second status information of the single-use medicine modules 2.

[0115] The single-drug container module 100 provided in this application achieves the storage of narcotic and psychotropic drugs by housing a single-drug module 2, capable of holding a single drug, within the accommodating space of the module housing 1. The locking assembly 4 can lock or open the module housing 1, achieving tight sealing of multiple types of narcotic and psychotropic drugs, thereby improving the security of drug storage. Furthermore, when multiple types of narcotic and psychotropic drugs are packaged in the module housing 1, the status information of the single-drug module 2 can be intuitively obtained through the display operation device 5, thereby improving the accuracy of obtaining relevant storage information about the narcotic and psychotropic drugs.

[0116] Third Embodiment

[0117] This application also provides a safe for narcotic and psychotropic drugs, which includes a module 100 for containing single-drug units as described above. The specific structure of the module 100 for containing single-drug units can be found in the description of the above embodiments, and will not be repeated here.

[0118] It should be noted that although several structures, components, or units for implementing the relevant functions have been mentioned in the detailed description above, this division is not mandatory. In fact, according to the specific embodiments of this application, the features and functions of two or more structures, components, or units described above can be embodied in one structure, component, or unit. Conversely, the features and functions of one structure, component, or unit described above can be further divided and embodied by multiple components, structures, or units.

[0119] Furthermore, although the various components of the components or apparatus in this application and the mounting arrangements between them are described in a specific order in the accompanying drawings, this does not require or imply that the components or apparatus must be designed according to that specific component or mounting arrangement, or that all the components shown must be included to achieve the desired result. Additional or alternative components may be omitted, multiple components may be combined into one component to achieve the corresponding function, and / or a component may be decomposed into multiple components to achieve the corresponding function, etc.

[0120] Although this application discloses preferred embodiments as described above, it is not intended to limit this application. Any person skilled in the art can make possible changes and modifications without departing from the spirit and scope of this application. Therefore, the scope of protection of this application should be determined by the scope defined in the claims of this application.

Claims

1. A module for containing a single-drug vial, characterized in that, include: Module housing and multiple individual drug modules; The module housing has internal storage space; Multiple of the single-drug modules are housed in the receiving space of the module housing; The single-drug module is used to contain a single drug. The single-drug module includes: a module carrier, a single-drug container structure, a control circuit board, a data acquisition sensor, and a status warning element; The module carrier is provided with at least one of the single-drug container structures, which are used to contain a single drug. The data acquisition sensor is located at the bottom of the single-drug container structure and is used to collect information on the single drug in the single-drug container structure and feed back the collected information on the associated single drug to the control circuit board. The control circuit board is connected to the bottom of the module carrier and is used to acquire the associated single drug information and control the status warning element to perform status warning according to the associated single drug information; or the control circuit board is used to acquire and send the associated single drug information to an external controller or display operation device, and control the status warning element to perform status warning according to the control information fed back by the external controller or the display operation device based on the associated single drug information. The status warning element is configured corresponding to the single-drug container structure and is used to display the status warning of the corresponding single-drug container structure.

2. The module for containing a single-drug vial according to claim 1, characterized in that, The module housing includes support ears, multiple housing frames, and multiple heat dissipation holes; The plurality of accommodating frames divide the module housing into a plurality of accommodating spaces, each of the accommodating spaces being able to accommodate each of the single drug modules; The supporting ear is located at the corner of the accommodating frame and is used to support the single drug module; The heat dissipation holes are located at the bottom of each housing frame and are used to dissipate the heat from the single drug module.

3. The module for containing a single-drug vial according to claim 1, characterized in that, The single-drug container structure includes: a drug slot and a support and positioning boss; The drug slots are arranged vertically on the module carrier, and the drug slots can have different sizes of apertures to form single-drug container structures of different specifications. The support and positioning boss is located at the bottom of the medicine slot and is used to provide positioning support for a single medicine.

4. A module for containing a single-drug vial, characterized in that, include: Module housing, multiple single-drug modules, lock box assembly, and display and operation device; The module housing has internal storage space; Multiple single-drug modules are housed in the receiving space of the module housing; each single-drug module is used to hold a single drug. The locking box assembly is disposed on the module box and is used to lock or open the module box; The display operation device is located on the outside of the module housing and is connected to the lock box assembly and the single-drug module. It is used to perform a first control on the lock box assembly to display the first status information of the lock box assembly, and to perform a second control on the single-drug module to display the second status information of the single-drug module.

5. The module for containing a single-drug vial according to claim 4, characterized in that, The single-drug module includes: a module carrier, a single-drug container structure, a control circuit board, a data acquisition sensor, and a status warning element; The module carrier is provided with at least one of the single-drug container structures, which are used to contain a single drug. The data acquisition sensor is located at the bottom of the single-drug container structure and is used to collect information on the single drug in the single-drug container structure and feed back the collected information on the associated single drug to the control circuit board. The control circuit board is connected to the bottom of the module carrier and is used to acquire the associated single drug information and control the status warning element to perform status warning according to the associated single drug information; or the control circuit board is used to acquire and send the associated single drug information to the external controller or the display operation device, and control the status warning element to perform status warning according to the control information fed back by the external controller or the display operation device based on the associated single drug information. The status warning element is configured corresponding to the single-drug container structure and is used to display the status warning of the corresponding single-drug container structure.

6. The module for containing a single-drug vial according to claim 4, characterized in that, The lock box assembly includes: a lock control module, a cover plate, a button, an electromagnetic lock, a latch, and a manual unlocking component; The lock control module is located in the accommodating space inside the module housing; the lock control module is used to control the electromagnetic lock; The cover plate is disposed on the top of the module housing, and the cover plate can enclose the accommodating space of the module housing; The latch is disposed on the inner end face of the cover plate, and the electromagnetic lock is disposed on the front side of the module housing. When the cover plate encloses the accommodating space of the module housing, the latch can lock with the electromagnetic lock. The button is located on the outer end face of the cover plate and is used to unlock the electromagnetic lock; The manual unlocking component is located on the front side of the module housing and on the side of the electromagnetic lock.

7. The module for containing a single-drug vial according to claim 6, characterized in that, The display operation device includes a circuit control board, a display operation screen, and indicator lights; The circuit control board is disposed on the inner end face of the cover plate; The display operation screen is located on the outer end face of the cover plate. The display operation screen is equipped with a control trigger module for controlling the single drug contained in the single drug module and displaying data. The indicator light is located on the outer end face of the cover plate and on the side of the display operation screen.

8. The module for containing a single-drug vial according to claim 4, characterized in that, Multiple single-drug modules are arranged in a single row within the receiving space of the module housing, and the single-drug modules in the single row are stacked vertically; or Multiple single-drug modules are arranged in multiple columns within the receiving space of the module housing, with each column of single-drug modules stacked vertically; or Multiple single-drug modules are arranged in multiple columns and rows within the accommodating space of the module housing, with each column and row of single-drug modules stacked vertically.

9. A safe for narcotic and psychotropic drugs, characterized in that, Including modules for containing single-drug vials as described in any one of claims 1-8.