Hemp essence medicine safety box
By designing a safe for narcotic and psychotropic drugs, the problems of unsafe storage and high labor costs for these drugs have been solved, achieving improved safety and intelligent operation while reducing manpower requirements.
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
- 2026-05-15
AI Technical Summary
The existing storage of narcotic and psychotropic drugs poses safety risks and increases labor costs.
Design a safe for narcotic drugs, comprising a cabinet body, a control panel, drawers, a refrigeration unit, cabinet door components, and an identification device. The control panel controls the drawers and cabinet door components to achieve tight sealing of narcotic drugs, and the identification device ensures that only authorized personnel can open it. The drawers are connected to the refrigeration unit to provide refrigeration function.
It improves the safety of storing narcotic and psychotropic drugs, reduces labor costs, and enables intelligent operation and specific temperature storage of narcotic and psychotropic drugs.
Smart Images

Figure CN224235548U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical insurance safes, specifically a safe for controlled substances. 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 method of storage in medicine cabinets still presents security risks and increases labor costs.
[0004] Therefore, how to improve the safety of narcotic and psychotropic drug storage while reducing labor costs has become an urgent problem to be solved by those skilled in the art. Utility Model Content
[0005] This application provides a safe for narcotic and psychotropic drugs to address the problem in the prior art of how to improve the security of narcotic and psychotropic drug storage while reducing labor costs.
[0006] This application provides a safe for controlled substances, including: a cabinet body, a control panel, drawers, a refrigeration unit, a cabinet door assembly, and an identification device;
[0007] The cabinet has a storage space, and the drawer is movably disposed within the storage space; the drawer can store various types of narcotic and psychotropic drugs;
[0008] The refrigeration device is connected to the drawer to enable the drawer to have a refrigeration function for refrigerating and preserving narcotic drugs in the drawer.
[0009] The cabinet door assembly can enclose the accommodating space to enclose the drawer in the accommodating space, and the opening and closing of the cabinet door assembly can be controlled by the control panel or by manual decryption.
[0010] The control panel is located on the top panel of the cabinet; the drawers and cabinet door components are operated and controlled by operating the control panel.
[0011] The identification device is located on the front side of the operating table and is used to identify the object that opens the cabinet door assembly.
[0012] Optionally, the drawer includes: a single-piece control drawer, a mixed-location drawer, a mixed-aisle drawer, a heavy-load aisle drawer, and a refrigerated drawer;
[0013] From bottom to top, the single-access drawer, the mixed-location drawer, the mixed-aisle drawer, the weighing aisle drawer, and the refrigerated drawer in the cabinet shall at least include the following distribution patterns:
[0014] The refrigerated drawer is located on the lower level and is connected to the refrigeration device to refrigerate and preserve the narcotic drugs in the refrigerated drawer; the refrigerated drawer includes a box and a single drug module contained in the box.
[0015] The weighing channel drawer is located above the refrigerated drawer. The weighing channel drawer includes a box and multiple rows of weighing channels arranged in the box. Each weighing channel can hold medicines and weigh them at the same time.
[0016] The mixing channel drawer is located above the weighing channel drawer; the mixing channel drawer has multiple channels arranged side by side to form a mixing channel; the mixing channel can hold a whole box of medicine;
[0017] The mixed storage drawer is located in the middle layer. The mixed storage drawer has multiple parallel channels, and each channel has a single medicine module to form a mixed storage location. The mixed storage location can hold whole boxes of medicine and single medicines.
[0018] The single-drug control drawer is located on the upper layer, and the single-drug control drawer is equipped with at least one single-drug module, which can hold a single drug.
[0019] Optionally, the single-drug module includes: a module housing, multiple single-drug modules, a lock assembly, and a display and operation device;
[0020] The module housing has internal storage space;
[0021] 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.
[0022] The locking box assembly is disposed on the module box, or the locking box assembly is connected to the box of the single control drawer, for locking or opening the module box;
[0023] 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.
[0024] 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;
[0025] The module carrier is provided with at least one of the single-drug container structures, which are used to contain a single drug.
[0026] 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.
[0027] 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.
[0028] 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.
[0029] Optionally, the cabinet door assembly includes: a cabinet door body, a combination lock, a door lock, a rotating wheel, and a bolt assembly;
[0030] The main body of the cabinet door is movably located on the front side of the cabinet.
[0031] The combination lock, the door lock, and the rotary wheel are respectively located on the outside of the cabinet door body;
[0032] The locking bolt assembly is located on the opposite edges of the cabinet door body and the cabinet body to lock or unlock the cabinet door body.
[0033] Optionally, the cabinet door body includes a first layer of steel plate, a second layer of fireproof layer, a third layer of drill-proof layer, a fourth layer of fireproof layer, and a fifth layer of steel plate arranged sequentially from the inside out.
[0034] Optionally, the control panel includes: a support housing, a power control unit, and a touch screen display.
[0035] The supporting shell is disposed on the top cabinet panel of the cabinet;
[0036] The integrated power control unit is located on the upper surface of the supporting housing; the integrated power control unit is used to operate and control the overall operation of the narcotic and psychotropic drug safe.
[0037] The touch screen is located on the front surface of the support housing, and is used to display and control the quantity and position of various types of medicines in the drawer.
[0038] Optionally, the identification device includes a human body sensor collector, operation buttons and indicator lights, a face recognition module, a microphone, a pinhole camera, an ID reader, a card fingerprint reader and a scanner, all located on the front side of the operating table.
[0039] The human body sensor is located above the touch screen and is used to collect human body information.
[0040] The operation button and the indicator panel are located on the right side of the touch screen. The operation button is used to confirm and trigger interactive operations on the touch screen; the indicator panel is used to display warning information.
[0041] The face recognition module is located on the right side of the operation button and indicator panel, and the face recognition module is used to recognize faces;
[0042] The microphone is located on the right side of the face recognition module, and the microphone is used to acquire sound;
[0043] The pinhole camera is positioned below the microphone and is used to acquire images.
[0044] The ID reader is located on the right side of the pinhole camera, and the ID reader is used to identify ID information;
[0045] The card fingerprint reader is located on the right side of the ID reader, and the card fingerprint reader is used to acquire fingerprints;
[0046] The scanner is located on the right side of the card fingerprint reader and is used for scanning.
[0047] Optionally, the refrigeration device includes: a refrigeration compressor, an air duct, and a fan;
[0048] The refrigeration compressor is located below the housing;
[0049] The fan is connected to the refrigeration compressor and the air duct;
[0050] The air duct connects the housing and the refrigeration compressor, and is used to deliver the cold air generated by the refrigeration compressor to the housing for cooling. Optionally, a label printer is also included, which is located at a corner of the operating table, and is used to print quantity association information for various types of medicines in the drawer.
[0051] Optionally, it also includes a power supply component and a heat dissipation component, which are respectively disposed on the side of the operating table. The power supply component is used to connect the power supply, and the heat dissipation component is used to dissipate heat.
[0052] This application provides a safe for controlled substances, including: a cabinet body, a control panel, drawers, a refrigeration unit, a door assembly, and an identification device. The cabinet body has a storage space, and the drawers are movably disposed within this space. The drawers can store various types of controlled substances. The refrigeration unit is connected to the drawers to provide a refrigeration function for storing the controlled substances within. The door assembly encloses the storage space, containing the drawers, and its opening and closing can be controlled via the control panel or manual decryption. The control panel is located on the top panel of the cabinet body. The drawers and door assembly are operated and controlled via the control panel. The identification device is located on the front side of the control panel for identifying the object opening the door assembly.
[0053] This application's safe for narcotic drugs can be understood as follows: by setting up a storage space within the cabinet and movably placing drawers capable of storing various types of narcotic drugs within this space, the safe enables the storage of these drugs. The cabinet door assembly encloses the storage space, sealing the drawers within it. The door assembly can be opened and closed via an operating panel or manual decryption, achieving a tight seal for the stored drugs and thus enhancing security. Furthermore, since the safe contains multiple types of narcotic drugs, only identifiable or decryptable individuals can open the door and access the drugs, reducing the need for personnel and labor costs while increasing security. Additionally, the operating panel controls the drawers and door assembly, enabling intelligent operation of the safe. Moreover, the drawers are connected to a refrigeration unit, allowing cold air generated by the unit to be supplied to the drawers for cooling, thus meeting the requirement for storing narcotic drugs at specific temperatures. Attached Figure Description
[0054] Figure 1 This is a schematic diagram of the structure of a drug safe provided in an embodiment of this application.
[0055] Figure 2 This is a structural schematic diagram of a drug safe from another perspective provided in an embodiment of this application.
[0056] Figure 3 This is a schematic diagram of the structure of another type of narcotic and psychotropic drug safe provided in the embodiments of this application.
[0057] Figure 4 This is a structural schematic diagram of a drug safe from another perspective provided in an embodiment of this application.
[0058] Figure 5 This is a structural schematic diagram of a drug safe from another angle provided in the embodiments of this application.
[0059] Figure 6 This is a top-view sectional view provided in the embodiments of this application.
[0060] Figure 7 yes Figure 4 Enlarged view of point A in the middle.
[0061] Figure 8 This is a schematic diagram of the structure of a single drug module provided in an embodiment of this application.
[0062] Figure 9 This is a structural schematic diagram of a module housing provided in an embodiment of this application.
[0063] Figure 10 This is a schematic diagram of the structure of a single drug module installed in the module housing according to an embodiment of this application.
[0064] Figure 11 This is a schematic diagram of the structure of another single-drug module provided in the embodiments of this application.
[0065] Figure 12 This is a top view of a single drug module provided in an embodiment of this application.
[0066] Figure 13 This is a schematic diagram of another single-drug module provided in the embodiments of this application.
[0067] Figure 14 This is a schematic diagram of the structure of a single-drug module provided in an embodiment of this application.
[0068] Figure 15 This is a top view of a single-drug module provided in an embodiment of this application.
[0069] Figure 16 This is a side view of a single drug module provided in an embodiment of this application.
[0070] Figure 17 This is a schematic diagram of another single-drug module provided in the embodiments of this application.
[0071] Figure 18 This is a top view of another single-drug module provided in the embodiments of this application.
[0072] Figure 19 This is a schematic diagram of the weighing channel drawer provided in an embodiment of this application.
[0073] Figure 20This is a schematic diagram of the structure of a drawer for refrigerating single-use medicines, provided in the first embodiment of this application.
[0074] Figure 21 This is a schematic diagram of the module housing provided in the first embodiment of this application.
[0075] Figure label:
[0076] 100 narcotic and psychotropic drug safe, cabinet body 1, bottom cabinet panel 11, side cabinet panels 12, first layer steel plate 121, second layer fireproof layer 122, third layer anti-drilling layer 123, fourth layer fireproof layer 124, fifth layer steel plate 125, top cabinet panel 13, swivel casters 14, support rod 15, support base 16, operating table 2, support shell 21, integrated control unit 22, touch screen display 23, label printer 24, power supply assembly 25, waterproof connector 251, power socket 252, power switch 253, heat dissipation assembly 26, spherical camera 27, camera bracket 28, drawer 3, single-control drawer 31, single 4. Single-drug module, 41. Module housing, 411. Weight reduction hole, 412. Housing frame, 413. Support ear, 414. Heat dissipation hole, 5. Single-drug module, 51. Module carrier, 52. Single-drug housing structure, 521. Drug slot, 522. Support positioning boss, 53. Control circuit board, 531. Board, 532. Controller, 533. Connector, 534. Connection structure, 54. Data acquisition sensor, 541. Housing groove, 55. Status warning element, 551. Mounting slot, 552. Warning light, 552. Ear hook, 56. Lock box assembly, 61. Lock control module, 62. Cover plate, 621. Button, 63. Electromagnetic lock, 64. Buckle, 65. 5. Unlocking rotating rod 66, spring-loaded assembly 67, display operation device 43, circuit control board 431, display operation screen 432, indicator light 433, mixed cargo drawer 32, cargo aisle 321, mixed cargo aisle drawer 33, mixed cargo aisle 331, weighing cargo aisle drawer 34, weighing device 341, weighing inner compartment 342, refrigerated drawer 35, box body 351, accommodating cavity 3511, connecting hole 3512, telescopic structure 352, guide rail 3521, connecting slide rod 3522, accommodating shell 3523, drawer handle 3524, cabinet door assembly 7, cabinet door body 71, first layer steel plate 711, second layer fireproof layer 712, Third anti-drilling layer; 713, Fourth fireproof layer; 714, Fifth steel plate; 715, Combination lock; 72, Door lock; 73, Rotary wheel; 74, Lock bolt; 75, Lock bolt sleeve; 76, Identification device; 8, Human body sensor collector; 80, Operation button; 81, Indicator light panel; 82, Face recognition module; 83, Microphone; 84, Pinhole camera; 85, ID reader; 86, Card fingerprint reader; 87, Scanner; 88, Power supply; 90, Human body sensor driver board; 91, Serial port server; 92, Network camera; 93, Switch; 94, Hard disk recorder; 95, Refrigeration unit; 10, Refrigeration compressor; 101, Air duct; 102, Fan; 103. Detailed Implementation
[0077] 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.
[0078] 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.
[0079] 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.
[0080] Currently, controlled substances are typically stored in medicine cabinets and require dedicated personnel for supervision. However, this method of storage in medicine cabinets still presents security risks and increases labor costs.
[0081] Accordingly, this application provides a safe for controlled substances, including: a cabinet body, a control panel, drawers, a refrigeration unit, a door assembly, and an identification device. The cabinet body has a storage space, and the drawers are movably disposed within this space. The drawers can store various types of controlled substances. The refrigeration unit is connected to the drawers to provide a refrigeration function for storing the controlled substances within them. The door assembly encloses the storage space, containing the drawers, and its opening and closing can be controlled via the control panel or manual decryption. The control panel is located on the top panel of the cabinet body. The drawers and door assembly are operated and controlled via the control panel. The identification device is located on the front side of the control panel for identifying the object opening the door assembly.
[0082] This application's safe for narcotic drugs can be understood as follows: by setting up a storage space within the cabinet and movably placing drawers capable of storing various types of narcotic drugs within this space, the safe enables the storage of these drugs. The cabinet door assembly encloses the storage space, sealing the drawers within it. The door assembly can be opened and closed via an operating panel or manual decryption, achieving a tight seal for the stored drugs and thus enhancing security. Furthermore, since the safe contains multiple types of narcotic drugs, only identifiable or decryptable individuals can open the door and access the drugs, reducing the need for personnel and labor costs while increasing security. Additionally, the operating panel controls the drawers and door assembly, enabling intelligent operation of the safe. Moreover, the drawers are connected to a refrigeration unit, allowing cold air generated by the unit to be supplied to the drawers for cooling, thus meeting the requirement for storing narcotic drugs at specific temperatures.
[0083] Next, the safe for controlled substances provided in this application will be described in detail with reference to the accompanying drawings. Among them, Figure 1 This is a schematic diagram of the structure of a drug safe provided in an embodiment of this application. Figure 2 This is a structural schematic diagram of a drug safe from another perspective provided in an embodiment of this application. Figure 3 This is a schematic diagram of the structure of another type of narcotic and psychotropic drug safe provided in the embodiments of this application. Figure 4 This is a structural schematic diagram of a drug safe from another perspective provided in an embodiment of this application. Figure 5 This is a structural schematic diagram of a drug safe from another angle provided in the embodiments of this application. Figure 6 This is a top-view sectional view provided in the embodiments of this application. Figure 7 yes Figure 4 Enlarged view of point A in the middle. Figure 8 This is a schematic diagram of the structure of a single drug module provided in an embodiment of this application. Figure 9 This is a structural schematic diagram of a module housing provided in an embodiment of this application. Figure 10 This is a schematic diagram of the structure of a single drug module installed in the module housing according to an embodiment of this application. Figure 11 This is a schematic diagram of the structure of another single-drug module provided in the embodiments of this application. Figure 12 This is a top view of a single drug module provided in an embodiment of this application. Figure 13 This is a schematic diagram of another single-drug module provided in the embodiments of this application. Figure 14 This is a schematic diagram of the structure of a single-drug module provided in an embodiment of this application. Figure 15 This is a top view of a single-drug module provided in an embodiment of this application. Figure 16This is a side view of a single drug module provided in an embodiment of this application. Figure 17 This is a schematic diagram of another single-drug module provided in the embodiments of this application. Figure 18 This is a top view of another single-drug module provided in the embodiments of this application. Figure 19 This is a schematic diagram of the weighing channel drawer provided in an embodiment of this application. Figure 20 This is a schematic diagram of the structure of a drawer for refrigerating single-use medicines, provided in the first embodiment of this application. Figure 21 This is a schematic diagram of the module housing provided in the first embodiment of this application.
[0084] like Figures 1 to 21 As shown, this application provides a safe 100 for narcotic and psychotropic drugs, including: a cabinet body 1, an operating table 2, a drawer 3, a refrigeration device 10, a cabinet door assembly 7, and an identification device 8. The cabinet body 1 has a storage space, and the drawer 3 is movably disposed within the storage space. The drawer 3 can store various types of narcotic and psychotropic drugs. The refrigeration device 10 is connected to the drawer 3 to provide a refrigeration function for storing the narcotic and psychotropic drugs in the drawer 3. The cabinet door assembly 7 can enclose the storage space, thus enclosing the drawer 3 within the storage space, and can be opened and closed by the operating table 2 or manually decrypted. The operating table 2 is located on the top cabinet panel 13 of the cabinet body 1, and the drawer 3 and cabinet door assembly 7 are operated by operating the operating table 2. The identification device 8 is located on the front side of the operating table 2 and is used to identify the object opening the cabinet door assembly 7.
[0085] The following will describe in detail the specific structure of each component of the narcotic and psychotropic drug safe 100.
[0086] Specifically, in one example, the cabinet 1 of the narcotic drug safe 100 is designed as a cuboid structure. The cabinet 1 includes a bottom panel 11, side panels 12, and a top panel 13. The bottom panel 11 is located at the bottom of the cabinet 1, and the top panel 13 is located at the top of the cabinet 1, with the top panel 13 and bottom panel 11 positioned opposite each other from top to bottom. The side panels 12 are located on the periphery of the cabinet 1 and are configured as panels in three directions. As shown in the figure, they can be defined as a left side panel, a right side panel, and a rear side panel, which are sequentially connected to form the side panels 12 of the cabinet 1. A cabinet door body 71 is located on the front side of the cabinet 1 in the remaining directions of the side panels 12. The cabinet door body 71, the bottom panel 11, the side panels 12, and the top panel 13 together constitute the main structure of the cabinet 1. The cabinet body 71, bottom cabinet panel 11, side cabinet panels 12 and top cabinet panel 13 together provide storage space for the cabinet body 1.
[0087] In this embodiment, to enhance the safety of cabinet 1, the structure of cabinet 1 is designed. Specifically, taking the cabinet door body 71 as an example, the cabinet 1, from the inside out, includes a first steel plate 711, a second fireproof layer 712, a third anti-drill layer 713, a fourth fireproof layer 714, and a fifth steel plate 715 arranged sequentially. The thickness of the first steel plate 711 is 3mm, the thickness of the second fireproof layer 712 is 44mm, the thickness of the third anti-drill layer 713 is 3mm, the thickness of the fourth fireproof layer 714 is 25mm, and the thickness of the fifth steel plate 715 is 10mm. Taking the peripheral cabinet panel 12 as an example, the cabinet 1, from the inside out, includes a first steel plate 121, a second fireproof layer 122, a third anti-drill layer 123, a fourth fireproof layer 124, and a fifth steel plate 125 arranged sequentially. The thickness of the first steel plate 121 is 3mm, the thickness of the second fireproof layer 122 is 37mm, the thickness of the third drill-resistant layer 123 is 3mm, the thickness of the fourth fireproof layer 124 is 40mm, and the thickness of the fifth steel plate 125 is 6mm. In one example, in the direction from the inside to the outside of the cabinet 1, the bottom cabinet panel 11 and the top cabinet panel 13 respectively include a first steel plate 121, a second fireproof layer 122, a third drill-resistant layer 123, a fourth fireproof layer 124, and a second steel plate arranged sequentially. The thickness of the first steel plate 121 is 3mm, the thickness of the second fireproof layer 122 is 37mm, the thickness of the third drill-resistant layer 123 is 3mm, the thickness of the fourth fireproof layer 124 is 40mm, and the thickness of the fifth steel plate 125 is 6mm.
[0088] In this embodiment, a universal caster 14 is also provided at the bottom of the cabinet 1, and the universal caster 14 is located at the corner of the cabinet 1. The universal caster 14 drives the cabinet 1 to move. In one example, a positioning support assembly is also provided at the bottom of the cabinet 1. The positioning support assembly includes a support rod 15 and a support base 16. One end of the support rod 15 is fixedly connected to the bottom of the cabinet 1, and the other end of the support rod 15 is connected to the support base 16, which can contact the ground.
[0089] The cabinet 1 has a storage space, and drawers 3 are movably disposed within this storage space. Drawers 3 can store various types of narcotic and psychotropic drugs. Specifically, in this embodiment, drawers 3 include: a single-item control drawer 31, a mixed-position drawer 32, a mixed-channel drawer 33, a weighing channel drawer 34, and a refrigerated drawer 35. From bottom to top, the single-item control drawer 31, mixed-position drawer 32, mixed-channel drawer 33, and weighing channel drawer 34 are distributed as follows: the refrigerated drawer 35 is located on the lower level and connected to the refrigeration device 10 for refrigerating and preserving the narcotic and psychotropic drugs within it. The weighing channel drawer 34 is located above the refrigerated drawer 35, the mixed-channel drawer 33 is located above the weighing channel drawer 34, the mixed-position drawer 32 is located on the middle level, and the single-item control drawer 31 is located on the upper level. Of course, in other examples, the arrangement of the single control drawer 31, the mixed storage drawer 32, and the mixed aisle drawer 33 can also be other. For example, in the cabinet 1 from bottom to top, the single control drawer 31 is located on the lower layer, the mixed storage drawer 32 is located on the middle layer, and the mixed aisle drawer 33 is located on the upper layer, etc.
[0090] It should be noted that different distribution patterns of the drawers in cabinet 1 can constitute different safes 100 for narcotic drugs.
[0091] Furthermore, the single-drug control drawer 31 is equipped with at least one single-drug module 4, which can hold a single drug. Specifically, in this embodiment, the single-drug module 4 includes a module housing 41, multiple single-drug modules 5, a lock assembly 6, and a display and operation device 43. The module housing 41 has an internal storage space. The size of the module housing 41 can be determined based on the number and specifications of the single-drug modules 5 it accommodates. When the single-drug control drawer 31 is equipped with multiple single-drug modules 4, these multiple single-drug modules 4 can be of the same specification or of different specifications. In one example, the module housing 41 can be a cuboid structure, such as a cube or a rectangular prism. Multiple single-drug modules 5 are housed within the storage space of the module housing 41.
[0092] In one example, to reduce the weight of the module housing 41, a weight-reducing hole 411 is provided on the peripheral plate 531 of the module housing 41. This weight-reducing hole 411 also has a heat dissipation function (a weight-reducing hole 411 with a heat dissipation function can be called a heat dissipation hole). At the same time, this heat dissipation hole 414 can also transfer cold air to the individual drug module 5.
[0093] The single-drug module 5 is used to hold a single drug. The single-drug module 5 is housed within the receiving space of the module housing 41. The single-drug module 5 can be of one specification or multiple specifications. In one example, multiple single-drug modules 5 are housed in a single row within the receiving space of the module housing 41, and the single-drug modules 5 are stacked vertically. For example, if the volume of the receiving space of the module housing 41 is 0.5L and the volume of each single-drug module 5 is 0.1L, then five single-drug modules 5 are housed in a single row within the receiving space of the module housing 41, and the five single-drug modules 5 are stacked vertically. Alternatively, multiple single-drug modules 5 can be arranged in multiple columns within the accommodating space of the module housing 41, with each column of single-drug modules 5 stacked vertically. For example, if the volume of the accommodating space of the module housing 41 is 1.5L and the volume of each single-drug module 5 is 0.1L, then 15 single-drug modules 5 can be arranged in 3 single columns (forming multiple columns) within the accommodating space of the module housing 41, with each column containing 5 single-drug modules 5 stacked vertically. Alternatively, multiple single-drug modules 5 can be arranged in multiple columns and rows within the accommodating space of the module housing 41, with each column and row containing single-drug modules 5 stacked vertically. For example, if the volume of the module housing 41 (accommodating space) is 2.0L and the volume of each single medicine module 5 is 0.1L, then 20 single medicine modules 5 can be arranged in two single columns (forming multiple columns), with two rows in each column, within the accommodating space of the module housing 41. That is, the five single medicine modules 5 in each single column and row are vertically stacked. Of course, in other examples, the volume of the module housing 41 (accommodating space) can be other, and correspondingly, the arrangement of multiple single medicine modules 5 can also be other.
[0094] In this embodiment, based on the vertical stacking of the single drug modules 5, to facilitate the vertical retrieval of each layer of single drug modules 5, the single drug module 5 also includes an ear hook 56, which is located at the corner of the module carrier 51 and is used to hold the module carrier 51.
[0095] In this embodiment, the single-drug module 5 includes: a module carrier 51, a single-drug container structure 52, a control circuit board 53, a data acquisition sensor 54, and a status warning element 55. The module carrier 51 has at least one single-drug container structure 52 for containing a single drug. Specifically, in one example, the module carrier 51 can be a cuboid structure, either rectangular or cube. In one example, the single-drug container structure 52 includes: drug slots 521 and supporting positioning bosses 522. The drug slots 521 are arranged in a matrix on the module carrier 51, with the holes distributed vertically and having different diameters to form single-drug container structures 52 of different specifications. In one example, the drug slots 521 are arranged in an odd or even number on the module carrier 51. In one example, the shape of the medicine slot 521 is adapted to the shape and structure of a single medicine, and the shape of the medicine slot 521 includes at least a circular hole. Of course, in other examples, the shape of the medicine slot 521 can be square or elliptical. A support positioning boss 522 is provided at the bottom of the medicine slot 521 to provide positioning support for the single medicine.
[0096] In one example, the single-drug container structure 52 can also have the following structure: specifically, the single-drug container structure 52 includes: a drug slot 521, a support positioning boss 522, and a lifting mechanism. The drug slots 521 are arranged in a matrix on the module carrier 51, with the holes of the drug slots 521 distributed vertically, and the drug slots 521 having different hole diameters to form single-drug container structures 52 of different specifications. In one example, the hole shape of the drug slots 521 is adapted to the shape and structure of the single drug, and the hole shape of the drug slots 521 includes at least circular holes. Of course, in other examples, the hole shape of the drug slots 521 can be square or elliptical. The lifting mechanism is located at the bottom of the drug slots 521 and is connected to the support positioning boss 522 to drive the support positioning boss 522 to move up and down. The support positioning boss 522 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 521. 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 522, so that the support positioning boss 522 is simultaneously lifted and lowered when the drive motor drives the connecting rod.
[0097] A data acquisition sensor 54 is disposed at the bottom of the single-drug container structure 52. Specifically, the data acquisition sensor 54 is disposed in the receiving groove 541 provided on the supporting positioning boss 522. It is used to collect information on the single-drug container structure 52 and feed back the collected associated single-drug information to the control circuit board 53. The associated single-drug information collected by the data acquisition sensor 54 includes the collection of whether a single-drug container structure 52 contains a single-drug container. That is, when the single-drug container structure 52 contains a single-drug container, the associated single-drug information collected by the data acquisition sensor 54 is that a single-drug container is present, which is recorded as the first collection information; when the single-drug container structure 52 does not contain a single-drug container, the data acquisition sensor 54 collects information that a single-drug container is not present, which is recorded as the second collection information.
[0098] The control circuit board 53 is connected to the bottom of the module carrier 51 and is used to acquire information about the associated single drug and control the status warning element 55 to issue a status warning based on the information about the associated single drug. Alternatively, the control circuit board 53 is used to acquire and send information about the associated single drug to an external controller or display operation device 43, and control the status warning element 55 to issue a status warning based on the control information fed back by the external controller or display operation device 43 according to the information about the associated single drug.
[0099] In this embodiment, the control circuit board 53 includes a board body 531, a controller 532, a connector 533, and a connection structure 534. The shape and structure of the board body 531 are identical to those of the module carrier 51. The board body 531 is connected to the module carrier 51 via the connection structure 534. In one example, the connection structure 534 includes bolt posts and bolt holes, with the bolt holes respectively located at the corners of the board body 531 and the module carrier 51, and the bolt holes on both corresponding to each other. The bolt posts are screwed into the bolt holes to connect the board body 531 and the module carrier 51. The controller 532 and the connector 533 are respectively located on the outer end face of the board body 531. The controller 532 is used to acquire associated single-drug information and control the status warning element 55 to issue status warnings based on the associated single-drug information. The connector 533 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 55 to issue status warnings based on the control information fed back by the external controller according to the associated single-drug information.
[0100] A status warning element 55 is correspondingly configured with respect to a single-drug container structure 52, used to display a status warning for the corresponding single-drug container structure 52. In one example, the status warning element 55 includes a mounting slot 551, a power control module, and a warning light 552. The mounting slot 551 is located on the module carrier 51 and is positioned on the side of each single-drug container structure 52. The power control module is located in the mounting slot 551 and is connected to the control circuit board 53 to receive power and control signals from the control circuit board 53. The warning light 552 is installed in the mounting slot 551 and connected to the power control module, used to display a status warning for the corresponding single-drug container structure 52 based on the control signal. In one example, the status warning element 55 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 55 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.
[0101] The above describes the specific structure of a single drug module 5.
[0102] In one example, a single drug module 4 can have the following structure:
[0103] A single medicine module 5 is housed in a module housing 41. In one example, when housing multiple single medicine modules 5, the module housing 41 can be configured as follows: the module housing 41 includes multiple housing frames 412, each housing frame 412 corresponding to one single medicine module 5. In one example, each housing frame 412 has a supporting ear 413 at its corner, which is used to support the single medicine module 5. In one example, each housing frame 412 also has a heat dissipation hole 414 at its bottom, which is used to dissipate the heat of the single medicine module 5.
[0104] The lock box assembly 6 is connected to the housing of the single-item control drawer 31 and is used to lock or unlock the module housing 41. The lock box assembly 6 includes: a lock control module 61, a cover plate 62, a button 63, an electromagnetic lock 64, a latch 65, and a manual unlocking component. The lock control module 61 is located within the accommodating space of the module housing 41. The lock control module 61 controls the electromagnetic lock 64. The cover plate 62 is located on the top of the housing of the single-item control drawer 31 and is connected to one edge of the housing. The cover plate 62 encloses the accommodating space of the module housing 41. In one example, the size and area of the cover plate 62 vary depending on the arrangement of the single-item medicine modules 5 housed in the module housing 41. Multiple cover plates 62 can be provided on the same module housing 41, and each cover plate 62 can be of the same or different specifications. Specifically, in one example, the cover plate 62 is provided with acrylic glass 621, and the size, area, and number of acrylic glass 621 are set according to the size and area of the cover plate 62 and the area occupied by the single medicine module 5, so that the single medicine module 5 below the cover plate 62 can be observed through the acrylic glass 621. For example, the number of acrylic glass 621 on the cover plate 62 can be three or two. When there are three acrylic glass 621, two of them are of the same specification, and the third acrylic glass 621 is of a different specification. When there are two acrylic glass 621, one of them is of a different specification, and the other is of a different specification. In one example, the color of the acrylic glass 621 can also be set according to the type of medicine, for example, it can be set as brown light-blocking glass.
[0105] The latch 65 is located on the inner end face of the cover plate 62, specifically at the front edge of the inner end face of the cover plate 62. An electromagnetic lock 64 is located in the middle of the housing of the single-piece control drawer 31. A support plate is provided in the middle of the housing of the single-piece control drawer 31, and the electromagnetic lock 64 is located within the support plate in the middle of the housing of the single-piece control drawer 31. When the cover plate 62 encapsulates the accommodating space of the module housing 41, the latch 65 can lock with the electromagnetic lock 64. In one example, four cover plates 62 are provided to encapsulate the housing of the single-piece control drawer 31, with the middle of the housing of the single-piece control drawer 31 as a dividing band. Every two cover plates 62 are arranged as a group on one side of the housing of the single-piece control drawer 31. Each group of two cover plates 62 includes one cover plate 62 with three pieces of plexiglass 621 and another cover plate 62 with two pieces of plexiglass 621.
[0106] Button 63 is located on the outer end face of cover plate 62 and is used to unlock electromagnetic lock 64. A manual unlocking assembly is located on the front side of module housing 41 and on the side of electromagnetic lock 64. In one example, the manual unlocking assembly includes a positioning pivot and an unlocking rotating rod 66. The unlocking rotating rod 66 is movably positioned on the front side of module housing 41 via the positioning pivot. One end of the unlocking rotating rod 66 is internally connected to electromagnetic lock 64, specifically, one end of the unlocking rotating rod 66 is internally connected to the locking hook of electromagnetic lock 64. The other end of the unlocking rotating rod 66 is externally located on the front side of module housing 41. By manually controlling the unlocking rotating rod 66, electromagnetic lock 64 can be unlocked, that is, the locking hook and latch 65 of electromagnetic lock 64 can be unlocked to prevent the locking hook and latch 65 of electromagnetic lock 64 from being unable to separate in the event of power failure or malfunction.
[0107] In this embodiment, to ensure that the cover plate 62 automatically springs up after unlocking, the lock box assembly 6 further includes a spring-back assembly 67. The spring-back assembly 67 is used to spring the cover plate 62 up by a preset angle after the electromagnetic lock 64 and the latch 65 separate. In one example, the preset angle at which the cover plate 62 springs up can be 90 degrees. In one example, the spring-back assembly 67 includes a hinge and a spring. The hinge is connected between the cover plate 62 and the module housing 41, and the spring is connected to the hinge. It is used to generate a spring-back force when the cover plate 62 locks onto the front side of the module housing 41, and to spring the cover plate 62 up by the preset angle using the spring-back force.
[0108] In this embodiment, the display operation device 43 is disposed on the outside of the module housing 41 and connected to the lock box assembly 6 and the single medicine module 5. It is used to perform a first control on the lock box assembly 6 to display the first status information of the lock box assembly 6, and to perform a second control on the single medicine module 5 to display the second status information of the single medicine module 5.
[0109] Furthermore, the display operation device 43 includes a circuit control board 431, a display operation screen 432, and indicator lights 433. The circuit control board 431 is located on the inner end face of the cover plate 62, and is used to provide power to the display operation screen 432 and control it. The display operation screen 432 is located on the outer end face of the cover plate 62, specifically on the side of the plexiglass 621. The display operation screen 432 is equipped with a control trigger module and display data for the single-drug module 5 containing the single-drug, and a control trigger module and display data for the lock box assembly 6.
[0110] Specifically, the display screen 432 includes a menu bar and corresponding control trigger modules. The menu bar includes operation menus for the lock box assembly 6 and directories for each module housing 41. The operation menus for the lock box assembly 6 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 assembly 6 can be controlled in the first way to display the first status information of the lock box assembly 6. In one example, the first status information includes at least the unlocking / locking information and fault maintenance information of the electromagnetic lock 64. The control trigger modules corresponding to the directories of the module housing 41 include control trigger modules associated with the single-drug container structure 52 in the module carrier 51 of each layer in the module housing 41. By triggering the corresponding control trigger modules, the single-drug information in the single-drug container structure 52 can be controlled and obtained. In addition, the control trigger modules can also display the single-drug information in the single-drug container structure 52. That is, the single-drug module 5 can be controlled in the second way to display the second status information of the single-drug module 5. Indicator light 433 is located on the outer end face of cover plate 62 and on the side of display operation screen 432. Indicator light 433 is used to provide warnings of the status information of the corresponding module housing 41.
[0111] It should be noted that the aforementioned button 63 also has a confirmation function for interactive operations on the module housing 41.
[0112] In another example, a single drug module 4 can have the following structure:
[0113] After the single-drug module 5 is housed in the module housing 41, the module housing 41 needs to be encapsulated by the locking assembly 6. Specifically, the locking assembly 6 is installed on the module housing 41 and is used to lock or unlock the module housing 41. The locking assembly 6 includes: a locking control module 61, a cover plate 62, a button 63, an electromagnetic lock 64, a latch 65, and a manual unlocking component. The locking control module 61 is located within the accommodating space of the module housing 41. The locking control module 61 controls the electromagnetic lock 64. The cover plate 62 is located on the top of the module housing 41 and encapsulates the accommodating space of the module housing 41. The latch 65 is located on the inner end face of the cover plate 62, specifically at the front edge of the inner end face of the cover plate 62. The electromagnetic lock 64 is located on the front side of the module housing 41, and when the cover plate 62 encapsulates the accommodating space of the module housing 41, the latch 65 locks with the electromagnetic lock 64. Button 63 is located on the outer end face of cover plate 62 and is used to unlock electromagnetic lock 64. A manual unlocking assembly is located on the front side of module housing 41 and on the side of electromagnetic lock 64. In one example, the manual unlocking assembly includes a positioning pivot and an unlocking rotating rod 66. The unlocking rotating rod 66 is movably positioned on the front side of module housing 41 via the positioning pivot. One end of the unlocking rotating rod 66 is internally connected to electromagnetic lock 64, specifically, one end of the unlocking rotating rod 66 is internally connected to the locking hook of electromagnetic lock 64. The other end of the unlocking rotating rod 66 is externally located on the front side of module housing 41. By manually controlling the unlocking rotating rod 66, electromagnetic lock 64 can be unlocked, that is, the locking hook and latch 65 of electromagnetic lock 64 can be unlocked to prevent the locking hook and latch 65 of electromagnetic lock 64 from being unable to separate in the event of power failure or malfunction.
[0114] In this embodiment, to ensure that the cover plate 62 automatically springs up after unlocking, the lock box assembly 6 further includes a spring-back assembly 67. The spring-back assembly 67 is used to spring the cover plate 62 up by a preset angle after the electromagnetic lock 64 and the latch 65 separate. In one example, the preset angle at which the cover plate 62 springs up can be 90 degrees. In one example, the spring-back assembly 67 includes a hinge and a spring. The hinge is connected between the cover plate 62 and the module housing 41, and the spring is connected to the hinge. It is used to generate a spring-back force when the cover plate 62 locks onto the front side of the module housing 41, and to spring the cover plate 62 up by the preset angle using the spring-back force.
[0115] In this embodiment, the display operation device 43 is disposed on the outside of the module housing 41 and connected to the lock box assembly 6 and the single medicine module 5. It is used to perform a first control on the lock box assembly 6 to display the first status information of the lock box assembly 6, and to perform a second control on the single medicine module 5 to display the second status information of the single medicine module 5.
[0116] Furthermore, the display operation device 43 includes a circuit control board 431, a display operation screen 432, and indicator lights 433. The circuit control board 431 is located on the inner end face of the cover plate 62, and is used to provide power to the display operation screen 432 and control it. The display operation screen 432 is located on the outer end face of the cover plate 62, and is equipped with a control trigger module and display data for the single-drug module 5 containing the single-drug, and a control trigger module and display data for the lock box assembly 6.
[0117] Specifically, the display screen 432 includes a menu bar and corresponding control trigger modules. The menu bar includes operation menus for the lock box assembly 6 and directories for each module housing 41. The operation menus for the lock box assembly 6 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 assembly 6 can be controlled in the first way to display the first status information of the lock box assembly 6. In one example, the first status information includes at least the unlocking / locking information and fault maintenance information of the electromagnetic lock 64. The control trigger modules corresponding to the directories of the module housing 41 include control trigger modules associated with the single-drug container structure 52 in the module carrier 51 of each layer in the module housing 41. By triggering the corresponding control trigger modules, the single-drug information in the single-drug container structure 52 can be controlled and obtained. In addition, the control trigger modules can also display the single-drug information in the single-drug container structure 52. That is, the single-drug module 5 can be controlled in the second way to display the second status information of the single-drug module 5. Indicator light 433 is located on the outer end face of cover plate 62 and on the side of display operation screen 432. Indicator light 433 is used to provide warnings of the status information of the corresponding module housing 41.
[0118] It should be noted that the aforementioned button 63 also has a confirmation function for interactive operations on the module housing 41.
[0119] The above describes the specific structure of a single-drug module 4. The single-drug control drawer 31 is equipped with at least one single-drug module 4.
[0120] From top to bottom, a mixed storage drawer 32 is located in the middle layer of cabinet 1. The mixed storage drawer 32 has multiple parallel aisles 321, and each aisle 321 contains a single-drug module 4 to form a mixed storage location. This mixed storage location can hold both whole boxes of medicine and single-drug medicine. Specifically, in one example, multiple aisles 321 are arranged side-by-side along the width of cabinet 1. Each aisle 321 contains a single-drug module 4, and the number of single-drug modules 4 can be one or more. When multiple single-drug modules 4 are provided, they are arranged side-by-side along the length of the aisle 321. The length of the aisle 321 is consistent with the length of cabinet 1. The aisle 321 can hold whole boxes of medicine. In one example, the aisle 321 is enclosed by a base plate and four side walls. A fixing structure for mounting a single medicine module 4 can be provided on the delivery channel 321. The single medicine module 4 is mounted on the delivery channel 321 through the fixing structure. In one example, the single medicine module 4 is mounted on the front end of the delivery channel 321 through the fixing structure.
[0121] A mixing channel drawer 33 is located below the mixing position drawer 32. Multiple channels are arranged side by side in the mixing channel drawer 33 to form a mixing channel 331. The mixing channel 331 can hold a whole box of medicine.
[0122] In this embodiment, a weighing channel drawer 34 is also provided, which is located below the mixing channel drawer 33. The weighing channel drawer 34 includes a box and multiple rows of weighing channels disposed in the box. Each weighing channel includes a single medicine module 4, a weighing device 341, and a weighing hopper 342. The single medicine module 4 includes a module housing 41, multiple single medicine modules 5, a locking assembly 6, and a display and operation device 43. Specifically, the single medicine modules 5 are housed in the receiving space of the module housing 41. The single medicine modules 5 can be of one specification or multiple specifications housed in the receiving space of the module housing 41.
[0123] The module housing 41 and the weighing hopper 342 are arranged in the same row. A locking assembly 6 is installed on both the module housing 41 and the weighing hopper 342 to lock or unlock them. The locking assembly 6 includes: a locking control module 61, a cover plate 62, a button 63, an electromagnetic lock 64, a latch 65, and a manual unlocking component. The locking control module 61 is located within the internal space of the module housing 41. The locking control module 61 controls the electromagnetic lock 64. The cover plate 62 is located on top of the module housing 41 and the weighing hopper 342, and it encloses the respective internal spaces of each component. Specifically, in one example, the cover plate 62 is provided with plexiglass 621, and the size, area, and number of plexiglass 621 are set according to the size and area of the cover plate 62 and the area occupied by the single medicine module 5 and the weighing hopper 342, so that the single medicine module 5 and the medicine in the weighing hopper 342 below the cover plate 62 can be observed through the plexiglass 621. In this embodiment, the number of plexiglass 621 provided on the cover plate 62 is one. For example, the number of plexiglass 621 on the cover plate 62 can be three or two. When the number of plexiglass 621 is three, two of the plexiglass 621 are of the same specification, and the third plexiglass 621 is of a different specification. When the number of plexiglass 621 is two, one of the plexiglass 621 is of a different specification, and the other plexiglass 621 is of a different specification. In one example, the color of the plexiglass 621 can also be set according to the type of medicine, for example, it can be set as brown light-blocking glass. The cover plate 62 simultaneously encloses the module housing 41 and the weighing hopper 342 to form a weighing channel. Multiple weighing channels are arranged side by side in the horizontal direction within the housing.
[0124] The weighing device 341 is located below the weighing hopper 342 and is used to weigh the medicines inside the weighing hopper 342. The weighing data is displayed on the display screen 432 of the display and operation device.
[0125] A latch 65 is located on the inner end face of the cover plate 62, specifically at the front edge of the inner end face of the cover plate 62. An electromagnetic lock 64 is located on the front side of the module housing 41 or on one side of the weighing hopper 342. When the cover plate 62 encloses the respective receiving spaces of the module housing 41 and the weighing hopper 342, the latch 65 can lock with the electromagnetic lock 64. A button 63 is located on the outer end face of the cover plate 62 for unlocking the electromagnetic lock 64. A manual unlocking component is located on the front side of the module housing 41, specifically on the side of the electromagnetic lock 64. In one example, the manual unlocking component includes a positioning pivot and an unlocking rotating rod 66. The unlocking rotating rod 66 is movably mounted on the front side of the module housing 41 via the positioning pivot. One end of the unlocking rotating rod 66 is internally connected to an electromagnetic lock 64, specifically, the locking hook of the electromagnetic lock 64 is internally connected to one end of the unlocking rotating rod 66. The other end of the unlocking rotating rod 66 is externally located on the front side of the module housing 41. By manually controlling the unlocking rotating rod 66, the electromagnetic lock 64 can be unlocked, that is, the locking hook and latch 65 of the electromagnetic lock 64 can be unlocked to prevent the locking hook and latch 65 of the electromagnetic lock 64 from being unable to separate when the electromagnetic lock 64 is powered off or malfunctions.
[0126] Of course, in one example, the latch 65 and electromagnetic lock 64 structures may not be provided.
[0127] In this embodiment, to ensure that the cover plate 62 automatically springs up after unlocking, the lock box assembly 6 further includes a spring-back assembly 67. The spring-back assembly 67 is used to spring the cover plate 62 up by a preset angle after the electromagnetic lock 64 and the latch 65 separate. In one example, the preset angle at which the cover plate 62 springs up can be 90 degrees. In one example, the spring-back assembly 67 includes a hinge and a spring. The hinge is connected between the cover plate 62 and the module housing 41, and the spring is connected to the hinge. It is used to generate a spring-back force when the cover plate 62 locks onto the front side of the module housing 41, and to spring the cover plate 62 up by the preset angle using the spring-back force.
[0128] In this embodiment, the display operation device 43 is disposed on the outside of the module housing 41 and connected to the lock box assembly 6 and the single medicine module 5. It is used to perform a first control on the lock box assembly 6 to display the first status information of the lock box assembly 6, and to perform a second control on the single medicine module 5 to display the second status information of the single medicine module 5.
[0129] Furthermore, the display operation device 43 includes a circuit control board 431, a display operation screen 432, and indicator lights 433. The circuit control board 431 is located on the inner end face of the cover plate 62, and is used to provide power to the display operation screen 432 and control it. The display operation screen 432 is located on the outer end face of the cover plate 62, specifically on the side of the plexiglass 621. The display operation screen 432 is equipped with a control trigger module and display data for the single-drug module 5 containing the single-drug, and a control trigger module and display data for the lock box assembly 6.
[0130] Specifically, the display screen 432 includes a menu bar and corresponding control trigger modules. The menu bar includes operation menus for the lock box assembly 6 and directories for each module housing 41. The operation menus for the lock box assembly 6 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 assembly 6 can be controlled in the first way to display the first status information of the lock box assembly 6. In one example, the first status information includes at least the unlocking / locking information and fault maintenance information of the electromagnetic lock 64. The control trigger modules corresponding to the directories of the module housing 41 include control trigger modules associated with the single-drug container structure 52 in the module carrier 51 of each layer in the module housing 41. By triggering the corresponding control trigger modules, the single-drug information in the single-drug container structure 52 can be controlled and obtained. In addition, the control trigger modules can also display the single-drug information in the single-drug container structure 52. That is, the single-drug module 5 can be controlled in the second way to display the second status information of the single-drug module 5. Indicator light 433 is located on the outer end face of cover plate 62 and on the side of display operation screen 432. Indicator light 433 is used to provide warnings of the status information of the corresponding module housing 41.
[0131] It should be noted that the aforementioned button 63 also has a confirmation function for interactive operations on the module housing 41.
[0132] In this embodiment, the refrigerated drawer 35 is located on the lower level, below the weighing aisle drawer 34. The refrigerated drawer 35 is connected to the refrigeration device 10 to refrigerate and preserve the narcotic drugs in the refrigerated drawer 35. The refrigerated drawer 35 includes a box and a single-drug module housed in the box. In one example, the single-drug module includes a single-drug module 5 and a module housing 41 for housing the single-drug module 5. The box 351 is installed in the cabinet 1. The module housing 41 is housed in the box 351, and a telescopic structure 352 is provided between the box 351 and the module housing 41. The module housing 41 extends and retracts from the box 351 through the telescopic structure 352. The module housing 41 has an internal accommodating space. Multiple single-drug modules 5 are housed in the accommodating space of the module housing 41, and the single-drug modules 5 are used to house single-drug drugs. The refrigeration device 10 is located outside the cabinet 1 and is stacked vertically with the box 351. The refrigeration device 10 is connected to the housing 351 and communicates with the module housing 41 to deliver the cold air generated by the refrigeration device 10 to the module housing 41 for cooling.
[0133] Specifically, in this embodiment, the box body 351 has an overall cuboid structure. The box body 351 includes a receiving cavity 3511, an insulation layer, and a connecting hole 3512. The receiving cavity 3511 is formed within the box body 351 and is used to house the module housing 41. One end face of the box body 351 has an opening, which serves as the cavity opening of the receiving cavity 3511. The module housing 41 is installed in the box body 351 through this opening and can be removed from the receiving cavity 3511 through the opening. The insulation layer is disposed within the wall of the box body 351 to provide insulation. The connecting hole 3512 is provided on one side of the box 351 and communicates with the accommodating cavity 3511. The connecting hole 3512 is connected to one end of the air duct 102 (hereinafter) so that the cold air transmitted by the air duct 102 can enter the accommodating cavity 3511 of the box 351 and then be delivered to the module box 41.
[0134] In this embodiment, the cold air is provided by a refrigeration device 10, which is located outside the cabinet 1 and stacked vertically with the box 351. The refrigeration device 10 is connected to the box 351 and communicates with the module housing 41 to deliver the cold air generated by the refrigeration device 10 to the module housing 41 for cooling. Specifically, the refrigeration device 10 includes a refrigeration compressor 101, an air duct 102, and a fan 103. The refrigeration compressor 101 is located below the box 351, specifically below the outside of the cabinet 1. A cavity is provided below the outside of the cabinet 1, and the refrigeration compressor 101 is located in the cavity below the outside of the cabinet 1. The refrigeration compressor 101 is used to generate cold air. The fan 103 is connected to the refrigeration compressor 101 and the air duct 102, and the fan 103 can transmit the cold air generated by the refrigeration compressor 101 to the air duct 102. The air duct 102 is connected between the housing 351 and the refrigeration compressor 101, and is used to deliver the cold air generated by the refrigeration compressor 101 to the housing 351 for cooling. Specifically, the air duct 102 is connected between the connecting hole 3512 of the housing 351 and the refrigeration compressor 101, and is used to deliver the cold air generated by the refrigeration compressor 101 to the housing 351 for cooling.
[0135] The module housing 41 is housed within the box 351. In one example, the module housing 41 can be configured as a cuboid structure, such as a cube or a rectangular prism. Multiple individual medicine modules 5 are housed within the accommodating space of the module housing 41. When accommodating multiple individual medicine modules 5, the module housing 41 can be configured as follows: the module housing 41 includes multiple accommodating frames 412, each accommodating frame 412 corresponding to one individual medicine module 5. In one example, each accommodating frame 412 has a supporting ear 413 at its corner, which supports the individual medicine module 5. In one example, each accommodating frame 412 also has a heat dissipation hole 414 at its bottom, which dissipates heat from the individual medicine module 5 and also transfers cool air to the individual medicine module 5.
[0136] In one example, to reduce the weight of the module housing 41, a weight-reducing hole 411 is provided on the peripheral plate 231 of the module housing 41. This weight-reducing hole 411 also has a heat dissipation function (the weight-reducing hole 411 with a heat dissipation function can be called a heat dissipation hole).
[0137] The single-drug module 5 is used to contain a single drug. In one example, multiple single-drug modules 5 are arranged in a single row in the receiving space of the module housing 41, and the single-drug modules 5 are stacked vertically. The specific structure of a single single-drug module 5 can be found in the description above, and will not be repeated here.
[0138] A telescopic structure 352 is provided between the box body 351 and the module box body, allowing the module box body to extend and retract within the box body 351 via the telescopic structure 352. Specifically, in this embodiment, the telescopic structure 352 includes a guide rail 3521, a connecting slide rod 3522, a housing 3523, and a drawer handle 3524. The guide rail 3521 is disposed on the inner wall of the box body 351, specifically on the opposite cavity wall of the housing 3511 within the box body 351. The connecting slide rod 3522 is fixedly connected to the housing 3523 and slidably connected to the guide rail 3521. Correspondingly, in one example, two connecting slide rods 3522 are provided, fixedly connected to opposite ends of the housing 3523 and respectively disposed on the guide rail 3521. The module box body 41 is housed within the housing 3523 and moves synchronously with the housing 3523. In one example, to allow sufficient cold air to flow into the interior of the housing 3523, a through hole is provided on the housing 3523 for the circulation of cold air. A drawer handle 3524 is connected to the housing 3523 to move the housing 3523 under external force. In one example, the drawer handle 3524 can also serve as a sealing plate for the opening of the encapsulation box 351.
[0139] In this embodiment, to enhance the security of storing individual medications, a locking component is also provided, which is disposed between the box body 351 and the module housing 41. Specifically, in one example, the locking component includes an electronic lock and a lock body. The electronic lock is disposed at the front edge of the box body 351, and the lock body is disposed in the drawer handle 3524. The electronic lock and the lock body are disposed opposite to each other. When the drawer handle 3524 moves to the front edge of the box body 351, the electronic lock and the lock body sense and lock, thereby encapsulating the module housing 41 in the box body 351.
[0140] The above describes the structure of each drawer. The order in which the drawers are arranged can also be different. The above description does not limit the order in which the drawers are arranged.
[0141] After placing the medicines in various types of drawers 3, to improve the security of medicine storage, the drawers 3 need to be sealed by cabinet door components 7. Specifically, cabinet door components 7 include: cabinet door body 71, combination lock 72, door lock 73, caster 74, and bolt assembly. The cabinet door body 71 is movably located on the front side of the cabinet body 1, while the combination lock 72, caster 74, and door lock 73 are respectively located on the outer side of the cabinet door body 71. In one example, the combination lock 72, caster 74, and door lock 73 are arranged sequentially from left to right on the outer side of the cabinet door body 71. The combination lock 72, caster 74, and door lock 73 can be manually decrypted to control the opening and closing of the cabinet door body 71. In one example, to prevent dust from falling into the door lock 73, a lock cover is also provided, which is fastened to the door lock 73. The bolt assembly is located on the opposite edges of the cabinet door body 71 and the cabinet body 1 to lock or unlock the cabinet door body 71. In one example, the bolt assembly includes a bolt 75 and a bolt sleeve 76. The bolt 75 is disposed along the edge of the cabinet door body 71, and the bolt sleeve 76 is disposed along the edge of the cabinet 1. When the cabinet door body 71 is enclosed in the cabinet 1, the bolt 75 can be inserted into the bolt sleeve 76 to lock the cabinet door body 71 relative to the cabinet 1. When unlocking, the bolt 75 disengages from the bolt sleeve 76 to unlock the cabinet door body 71 relative to the cabinet 1.
[0142] The control panel 2 is located on the top panel 13 of the cabinet 1; the drawers 3 and the cabinet door assembly 7 are operated and controlled via the control panel 2. Specifically, the control panel 2 includes a support housing 21, a control unit 22, and a touch screen display 23. The support housing 21 is located on the top panel 13 of the cabinet 1. The support housing 21 has a cuboid structure. The control unit 22 is located on the upper surface of the support housing 21. The control unit 22 is used to operate and control the overall operation of the narcotic and psychotropic drug safe 100. The touch screen display 23 is located on the front surface of the support housing 21. The touch screen display 23 is used to display and control the quantity and position of various types of drugs in the drawers 3, and to control the operation of the refrigeration unit 10. In one example, the touch screen display 23 is located on the far left of the front surface of the support housing 21.
[0143] In one example, a spherical camera 27 and a camera bracket 28 are also included, wherein one end of the camera bracket 28 is fixedly connected to the support housing 21, and the other end of the camera bracket 28 is connected to the spherical camera 27.
[0144] The identification device 8 is located on the front side of the operating console 2 and is used to identify objects that open the cabinet door assembly 7. Specifically, the identification device 8 is located on the front side of the supporting housing 21 and includes a human body sensor 80, an operation button 81 and an indicator light panel 82, a face recognition module 83, a microphone 84, a pinhole camera 85, an ID reader 86, a card fingerprint reader 87, and a scanner 88. The human body sensor 80 is located above the touch screen 23 and is used to collect human body information. The operation button 81 and the indicator light panel 82 are located on the right side of the touch screen 23. The operation button 81 is used to confirm and trigger interactive operations on the touch screen 23. The indicator light panel 82 is used to display warning information. The face recognition module 83 is located to the right of the operation button 81 and the indicator light panel 82 and is used to recognize faces. The microphone 84 is located to the right of the face recognition module 83 and is used to acquire sound. A pinhole camera 85 is positioned below the microphone 84 and is used to acquire images. An ID reader 86 is positioned to the right of the pinhole camera 85 and is used to identify ID information. A card fingerprint reader 87 is positioned to the right of the ID reader 86 and is used to acquire fingerprints. A scanner 88 is positioned to the right of the card fingerprint reader 87 and is used for scanning.
[0145] In this embodiment, a label printer 24 is also included. The label printer 24 is located at the corner of the operating table 2 and is used to print the quantity association information of various types of medicines in the drawer 3.
[0146] In this embodiment, a power supply component 25 and a heat dissipation component 26 are also included. The power supply component 25 and the heat dissipation component 26 are respectively disposed on the side of the operating table 2. The power supply component 25 is used to connect the power supply 90, and the heat dissipation component 26 is used for heat dissipation. Specifically, in one example, the power supply component 25 includes a waterproof connector 251, a 220V power socket 252, and a power switch 253. The waterproof connector 251, the 220V power socket 252, and the power switch 253 are disposed on the rear end face of the support housing 21 and are distributed from left to right on the rear end face of the support housing 21.
[0147] In this embodiment, the interior of the support housing 21 is also equipped with a power supply 90 (12V), a human body induction driver board 91, a serial port server 92, a network camera 93, a switch 94, and a hard disk recorder 95.
[0148] This application provides a safe 100 for narcotic and psychotropic drugs, comprising: a cabinet body 1, a control panel 2, a drawer 3, a cabinet door assembly 7, and an identification device 8. The cabinet body 1 has a storage space, and the drawer 3 is movably disposed within the storage space. The drawer 3 can store various types of narcotic and psychotropic drugs. The cabinet door assembly 7 can enclose the storage space, thus enclosing the drawer 3 within the storage space, and its opening and closing can be controlled via the control panel 2 or manual decryption. The control panel 2 is located on the top panel 13 of the cabinet body 1. The drawer 3 and cabinet door assembly 7 are operated and controlled by operating the control panel 2. The identification device 8 is located on the front side of the control panel 2 and is used to identify the object opening the cabinet door assembly 7.
[0149] The narcotic and psychotropic drug safe 100 provided in this application achieves storage of narcotic and psychotropic drugs by setting up a storage space in the cabinet body 1 and movably setting a drawer 3 capable of storing various types of narcotic and psychotropic drugs in the storage space. The cabinet door assembly 7 can seal the storage space to enclose the drawer 3 capable of storing various types of narcotic and psychotropic drugs in the storage space, and the opening and closing of the cabinet door assembly 7 can be controlled by the control panel 2 or by manual decryption, achieving a tight seal for storing various types of narcotic and psychotropic drugs, thereby improving the security of narcotic and psychotropic drug storage. Moreover, since various types of narcotic and psychotropic drugs are sealed in the safe, only identified or decryptable objects can open the cabinet door to obtain the narcotic and psychotropic drugs, thereby reducing the number of guards and lowering labor costs while increasing the security of narcotic and psychotropic drug storage. In addition, the narcotic and psychotropic drug safe 100 can be intelligently operated by operating the control panel 2 to operate and control the drawer 3 and the cabinet door assembly 7.
[0150] 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.
[0151] 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.
[0152] 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 safe for controlled substances, comprising: Cabinet, worktable, drawers, refrigeration unit, cabinet door assembly, and identification device; The cabinet has a storage space, and the drawer is movably disposed within the storage space; The drawer can store various types of narcotic and psychotropic drugs; The refrigeration device is connected to the drawer to enable the drawer to have a refrigeration function for refrigerating and preserving narcotic drugs in the drawer. The cabinet door assembly can enclose the accommodating space to enclose the drawer in the accommodating space, and the opening and closing of the cabinet door assembly can be controlled by the control panel or by manual decryption. The control panel is located on the top panel of the cabinet; the drawers and cabinet door components are operated and controlled by operating the control panel. The identification device is located on the front side of the operating table and is used to identify the object that opens the cabinet door assembly.
2. The drug safe according to claim 1, characterized in that, The drawer includes at least: a single-control drawer, a mixed-location drawer, a mixed-aisle drawer, a weighing aisle drawer, and a refrigerated drawer; From bottom to top, the single-access drawer, the mixed-location drawer, the mixed-aisle drawer, the weighing aisle drawer, and the refrigerated drawer in the cabinet shall at least include the following distribution patterns: The refrigerated drawer is located on the lower level and is connected to the refrigeration device to refrigerate and preserve the narcotic drugs in the refrigerated drawer; the refrigerated drawer includes a box and a single drug module contained in the box. The weighing channel drawer is located above the refrigerated drawer. The weighing channel drawer includes a box and multiple rows of weighing channels arranged in the box. Each weighing channel can hold medicines and weigh them at the same time. The mixing channel drawer is located above the weighing channel drawer; the mixing channel drawer has multiple channels arranged side by side to form a mixing channel; the mixing channel can hold a whole box of medicine; The mixed storage drawer is located in the middle layer. The mixed storage drawer has multiple parallel channels, and each channel has a single medicine module to form a mixed storage location. The mixed storage location can hold whole boxes of medicine and single medicines. The single-drug control drawer is located on the upper layer, and the single-drug control drawer is equipped with at least one single-drug module, which can hold a single drug.
3. The drug safe according to claim 2, characterized in that, The single-drug module includes: a module housing, multiple single-drug modules, a lock assembly, and a 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, or the locking box assembly is connected to the box of the single control drawer, for locking or opening 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.
4. The drug safe according to claim 3, 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.
5. The drug safe according to claim 1, characterized in that, The cabinet door assembly includes: cabinet door body, combination lock, door lock, wheel, and bolt assembly; The main body of the cabinet door is movably located on the front side of the cabinet. The combination lock, the door lock, and the rotary wheel are respectively located on the outside of the cabinet door body; The locking bolt assembly is located on the opposite edges of the cabinet door body and the cabinet body to lock or unlock the cabinet door body.
6. The drug safe according to claim 5, characterized in that, The cabinet door body includes, from the inside out, a first layer of steel plate, a second layer of fireproof layer, a third layer of drill-proof layer, a fourth layer of fireproof layer, and a fifth layer of steel plate arranged sequentially.
7. The drug safe according to claim 1, characterized in that, The control panel includes: a supporting housing, a power control integrated machine, and a touch screen display; The supporting shell is disposed on the top cabinet panel of the cabinet; The integrated power control unit is located on the upper surface of the supporting housing; the integrated power control unit is used to operate and control the overall operation of the narcotic and psychotropic drug safe. The touch screen is located on the front surface of the support housing, and is used to display and control the quantity and position of various types of medicines in the drawer.
8. The drug safe according to claim 7, characterized in that, The identification device includes a human body sensor collector, operation buttons and indicator lights, a face recognition module, a microphone, a pinhole camera, an ID reader, a card fingerprint reader and a scanner, all located on the front side of the operating table. The human body sensor is located above the touch screen and is used to collect human body information. The operation button and the indicator panel are located on the right side of the touch screen. The operation button is used to confirm and trigger interactive operations on the touch screen; the indicator panel is used to display warning information. The face recognition module is located on the right side of the operation button and indicator panel, and the face recognition module is used to recognize faces; The microphone is located on the right side of the face recognition module, and the microphone is used to acquire sound; The pinhole camera is positioned below the microphone and is used to acquire images. The ID reader is located on the right side of the pinhole camera, and the ID reader is used to identify ID information; The card fingerprint reader is located on the right side of the ID reader, and the card fingerprint reader is used to acquire fingerprints; The scanner is located on the right side of the card fingerprint reader and is used for scanning.
9. The drug safe according to claim 2, characterized in that, The refrigeration device includes: a refrigeration compressor, an air duct, and a fan; The refrigeration compressor is located below the housing; The fan is connected to the refrigeration compressor and the air duct; The air duct connects the housing and the refrigeration compressor, and is used to deliver the cold air generated by the refrigeration compressor to the housing for cooling.
10. The drug safe according to claim 1, characterized in that, It also includes a label printer, which is located at the corner of the workbench and is used to print quantity association information for various types of medicines in the drawer.