High-security adaptive medical erp management system

CN116312994BActive Publication Date: 2026-08-21JIANGSU LIANHUAN PHARMA
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Patent Information

Application Number
CN202211568572.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-07
Publication Date
2026-08-21
Estimated Expiration
2042-12-07

AI Technical Summary

Technical Problem

优选地,所述学习资料包括名称、病因、病理、病症信息、用药方案;所述学习单元还用于按照医院科室类别对所述病情数据库的学习资料进行分类并显示”但其主要针对药物安全性进行管理,目前管理系统缺少对于配方的快捷及安全使用,不利于提高就医效率,且适应性不高

Benefits of technology

[0017](1)本发明中,药物抓取模块在由现成的配方名单执行抓取药物的任务前,由调节模块对患者的状况进行汇总,再由药师调节模块结合患者的状况进行综合判断,方便进行配方的删减,在由数据库进行机械配药增加配药效率的同时,由药师调节模块对配方进行调节,确保配方适应不同的患者,确保的安全性。

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Abstract

The application discloses a high-safety adaptive medicine ERP management system. Before a medicine grabbing task is performed by an existing prescription list, the condition of a patient is summarized by an adjusting module, a pharmacist adjusting module combines the condition of the patient to comprehensively judge and reduce the prescription, a database mechanically dispenses medicine to increase dispensing efficiency, and the pharmacist adjusting module adjusts the prescription. The dispensing mechanism comprises a traditional Chinese medicine cabinet and an automatic medicine taking mechanism. The traditional Chinese medicine cabinet is provided with a plurality of medicine storage bins. Each medicine storage bin is provided with a medicine box cover. The automatic medicine taking mechanism is arranged on the traditional Chinese medicine cabinet and can move up and down and left and right, automatically moves to the position of a corresponding medicine storage bin, opens the medicine box cover and takes medicine. The prescription updating module can update the medicine prescription in time, so that the medicine prescription can be improved, and the safety of the medicine is improved. The medicine taking assembly can automatically open the bin, weigh and take medicine efficiently and accurately.
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Description

Technical Field

[0001] This invention belongs to the field of active pharmaceutical ingredient (API) processing and production technology, specifically relating to a highly safe and adaptive pharmaceutical ERP management system. Background Technology

[0002] ERP systems are management platforms that provide decision-making tools for enterprise employees and decision-makers. Through development, they have become an important modern enterprise management theory and a crucial tool for implementing business process reengineering. Their core concept is supply chain management. Patent number 201910933677.3 proposes: "A pharmaceutical ERP management system, adding multiple functions to facilitate drug management in pharmacies and clinics, is easy to use." A pharmaceutical ERP management system includes: a drug management unit: used to receive drug information entered by the user and classify the drug information according to preset drug categories; also used to receive user query information and query drug information for a specified drug category; a learning unit: used to receive learning instructions initiated by the user containing disease characteristics and query information from a preset disease database. Learning materials matching the described disease characteristics are displayed. Preferably, the drug categories include classification according to the main symptoms of the disease. Preferably, the drug management unit is specifically used for: receiving user query information, querying the remaining drug information and quantity of a specified drug category; receiving user inventory query information, obtaining drug information where the remaining quantity is less than a set lower limit, and generating a replenishment list based on the drug information. Preferably, the learning materials include name, etiology, pathology, symptom information, and medication plan; the learning unit is also used to classify and display the learning materials in the disease database according to hospital department categories. However, it mainly focuses on drug safety management. Currently, the management system lacks quick and safe use of prescriptions, which is not conducive to improving medical efficiency and has low adaptability. Most current medical systems still rely on manual drug dispensing. Some large-scale dispensing systems have complex structures, require large-scale modification of existing medicine cabinets, are costly, time-consuming, and inconvenient to install. They also cannot guarantee drug safety, and the management system lacks quick access and safe use of prescriptions, which is not conducive to improving medical efficiency. Summary of the Invention

[0003] The technical problem solved by this invention is to provide an efficient, accurate, and safe adaptive pharmaceutical ERP management system for automatic drug dispensing and dispensing.

[0004] Technical Solution: To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0005] A highly secure adaptive pharmaceutical ERP management system includes: a dispensing facility and a comprehensive dispensing information service unit.

[0006] In the integrated medication information service unit, before the medication grabbing module performs the task of grabbing medication from the existing prescription list, the adjustment module summarizes the patient's condition, and then the pharmacist adjustment module makes a comprehensive judgment based on the patient's condition to reduce or delete prescriptions. While the database performs mechanical medication dispensing to increase dispensing efficiency, the pharmacist adjustment module adjusts the prescriptions.

[0007] The dispensing unit dispenses medication based on the dispensing information provided by the integrated dispensing information service unit, and the dispensing unit feeds back information to the integrated dispensing information service unit to update the information within the integrated dispensing information service unit;

[0008] The medicine dispensing mechanism includes a traditional Chinese medicine cabinet and an automatic medicine dispensing mechanism. The traditional Chinese medicine cabinet is equipped with multiple medicine storage compartments, each with a medicine box lid. The automatic medicine dispensing mechanism is installed on the traditional Chinese medicine cabinet and can move up and down and left and right to automatically move to the corresponding medicine storage compartment position to open the medicine box lid and dispense the medicine.

[0009] Preferably, the automatic medicine dispensing mechanism includes an X-axis moving component, a Y-axis moving component, and a medicine dispensing component. The medicine dispensing component is disposed on the X-axis moving component and the Y-axis moving component, enabling it to move up and down along the X-axis and move left and right along the Y-axis.

[0010] Preferably, the X-axis moving assembly includes first fixed plates 3 disposed at the upper and lower ends of the traditional Chinese medicine cabinet, a threaded rod disposed between the two first fixed plates, a first motor for driving the threaded rod to rotate connected to the bottom end of the threaded rod, and a lifting plate disposed through the outside of the threaded rod.

[0011] Preferably, the Y-axis moving assembly includes a lifting rod, a sliding plate, a gear, and an extension rod with a rack fixed thereon. The middle part of the lifting rod is connected to the lifting plate, and the two ends are provided with sliding plates that slide along the medicine cabinet. An extension rod is movably provided between the two sliding plates. The rack meshes with the gear, and a second motor drives the gear to rotate, thereby driving the extension rod to move left and right.

[0012] Preferably, the extension rod is provided with a sliding conveyor block, and the medicine dispensing component is disposed on the sliding conveyor block; the medicine dispensing component includes a downward inclined material plate, a feeding box and a tray, and the downward inclined material plate is driven to rotate by a third motor and a first rotating shaft disposed on the sliding conveyor block.

[0013] Preferably, an automatic door opening device is provided on the inclined downward material plate. The automatic door opening device includes an L-shaped support plate, an electric push rod, and an electromagnetic adsorption plate. The L-shaped support plate is fixed on the inclined downward material plate, the electric push rod is fixed on the L-shaped support plate, and the electromagnetic adsorption plate is connected to the electric push rod.

[0014] Preferably, the third motor can rotate the inclined downward material plate and the feeding box. After rotating the inclined downward material plate to fit against the medicine cabinet and moving the medicine dispensing component to one side of the medicine box lid, the electric push rod and electromagnetic adsorption plate can be activated to close the medicine box lid, forming an opening at the bottom. The medicine falls onto the inclined downward material plate and slides into the inside of the feeding box, where it is weighed by a weighing sensor. After obtaining the corresponding amount, the third motor is activated to slide it onto the tray for collection.

[0015] Preferably, the automatic medicine dispensing mechanism is also equipped with an adjustable-angle display mechanism. The display is connected to a fourth motor and a second rotating shaft mounted on the Y-axis moving assembly. The fourth motor drives the second rotating shaft and the display to rotate to adjust the angle.

[0016] Beneficial effects: Compared with the prior art, the present invention has the following advantages:

[0017] (1) In this invention, before the drug grabbing module performs the task of grabbing drugs from the existing formula list, the adjustment module summarizes the patient's condition, and then the pharmacist adjustment module makes a comprehensive judgment based on the patient's condition, so as to facilitate the deletion or reduction of the formula. While the database performs mechanical drug dispensing to increase the efficiency of drug dispensing, the pharmacist adjustment module adjusts the formula to ensure that the formula is suitable for different patients and ensures safety.

[0018] (2) In this invention, the prescription library can be set up to store prescriptions for different diseases in advance in the system. When using the prescription, the prescription can be directly retrieved and adjusted before the medicine can be dispensed, making the medicine dispensing process faster.

[0019] (3) In this invention, the patient medical history summary module can record patient information, thereby ensuring the safety of medication. The formula update module can update the drug formula in a timely manner, thereby improving the drug formula and enhancing the safety of the drug.

[0020] (3) In this invention, the automatic medicine dispensing mechanism includes an X-axis moving component, a Y-axis moving component and a medicine dispensing component. Driven by the X-axis moving component and the Y-axis moving component, the medicine dispensing component can move up and down and left and right, and can accurately reach each medicine storage compartment.

[0021] (4) The medicine dispensing component of the present invention can rotate the inclined downward feeding plate and the feeding box through the set third motor. After the inclined downward feeding plate is rotated to fit with the Chinese medicine cabinet and the medicine dispensing mechanism moves to one side of the medicine box cover, the electric push rod and the electromagnetic adsorption plate can be activated to achieve the adsorption of the medicine box cover, so that an opening is formed at the bottom. The medicine falls to the top of the inclined downward feeding plate and slides into the inside of the feeding box. The medicine box cover is made of metal. When the electromagnetic adsorption plates on the automatic door opening device can automatically open the medicine box cover, the medicine is dispensing. Then the weighing sensor senses and weighs the medicine. After obtaining the corresponding amount, the third motor is activated to make it slide into the top of the tray for collection. The display shows the medicine dispensing data. The medicine dispensing component realizes automatic opening and weighing, realizing efficient and accurate medicine dispensing.

[0022] (5) In this invention, the instruction information output by the drug grasping module is used to realize the control of the motor unit of the drug retrieval mechanism, automatically drive each motor to move, and realize automatic drug retrieval. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the drug dispensing mechanism of the present invention;

[0024] Figure 2 This is a three-dimensional structural diagram of the drug dispensing mechanism of the present invention viewed from below;

[0025] Figure 3 This is a top view of the structure of the present invention;

[0026] Figure 4 This is a top view schematic diagram of the transmission structure of the present invention;

[0027] Figure 5 This is a top-view schematic diagram of the three-dimensional mechanism of the present invention;

[0028] Figure 6 This is a side view of the structure of the present invention;

[0029] Figure 7 This is an enlarged schematic diagram of structure A of the present invention;

[0030] Figure 8 This is a schematic diagram of the connection structure of the drug-grabbing module of the present invention;

[0031] Figure 9 This is a schematic diagram of the connection structure of the adjustment module of the present invention;

[0032] Figure 10 This is a schematic diagram of the connection structure of the drug dispensing mechanism of the present invention;

[0033] Figure 11 This is a connection diagram of the medication information recording module of the present invention;

[0034] Figure 12This is a connection diagram of the formula update module of the present invention.

[0035] In the diagram: 1. Dispensing mechanism; 2. Traditional Chinese medicine cabinet; 3. First fixed plate; 4. First motor; 5. Threaded rod; 6. Lifting plate; 7. Lifting rod; 8. Formula update module; 9. Sliding conveyor block; 10. Gear groove; 11. Second motor; 12. Meshing gear; 13. Extension rod; 14. Rack; 15. Slide plate; 16. Slide groove; 17. Third motor; 18. First rotating shaft; 19. Inclined downward feeding plate; 20. Feeding box; 21. Weighing sensor; 22. L-shaped support plate; 23. Electric push rod; 24. Electromagnetic adsorption plate; 25. Second fixed plate; 26. Tray; 27. 28. Third fixed rod; 29. ​​Fourth motor; 30. Second rotating shaft; 31. Display; 32. Medicine box lid; 33. Drug storage; 34. Formula storage; 35. Automatic dosage generation module; 36. Adjustment module; 37. Drug grabbing module; 38. Patient information recording module; 39. Patient medical history summary module; 40. Patient medication opinion retrieval module; 41. Pharmacist adjustment module; 42. Medication information recording module; 43. Special drug dosage information recording library; 44. Drug feedback module; 45. Medication record summary module; 46. Automatic medication recording module; 47. Change record module. Detailed Implementation

[0036] The present invention will be further illustrated below with reference to specific embodiments. These embodiments are implemented based on the technical solutions of the present invention, and it should be understood that these embodiments are only used to illustrate the present invention and are not intended to limit the scope of the present invention.

[0037] This application discloses a highly secure adaptive pharmaceutical ERP management system, comprising a dispensing facility 1 and a comprehensive dispensing information service unit.

[0038] In the integrated medication information service unit, before the medication grabbing module 36 performs the task of grabbing medication from the existing prescription list, the adjustment module 35 summarizes the patient's condition, and then the pharmacist adjustment module 40 makes a comprehensive judgment based on the patient's condition and makes prescription deletions.

[0039] Dispensing institution 1 dispenses medication based on the dispensing information provided by the integrated dispensing information service unit, and dispensing institution 1 feeds back information to the integrated dispensing information service unit to update the information within the integrated dispensing information service unit;

[0040] The medicine dispensing mechanism 1 includes a Chinese medicine cabinet 2 and an automatic medicine dispensing mechanism. The Chinese medicine cabinet 2 is equipped with multiple medicine storage compartments, each of which is equipped with a medicine box cover 31. The automatic medicine dispensing mechanism is installed on the Chinese medicine cabinet 2 and can move up and down and left and right. It automatically moves to the corresponding medicine storage compartment position, opens the medicine box cover 31, and dispenses the medicine.

[0041] The integrated medication information service unit includes a drug database 32, a prescription database 33, an automatic medication dosage generation module 34, an adjustment module 35, a drug retrieval module 36, a patient information recording module 37, a patient medical history summary module 38, a patient medication opinion retrieval module 39, a medication information recording module 41, a special drug dosage information recording database 42, a drug feedback module 43, a medication record summary module 44, an automatic medication recording module 45, and a change record module 46.

[0042] Drug Storage 32 records the quantity of drugs in the system.

[0043] Formula Library 33 is a compilation of existing drug formulas;

[0044] The automatic medication dosage generation module 34 automatically generates the required medication dosage based on the severity of the patient's condition. The automatic medication dosage generation module 34 is connected to the drug library 32 and the prescription library 33.

[0045] The adjustment module 35 enables manual adjustment of medication dosage. The input of the adjustment module 35 is connected to the automatic dosage generation module 34, and the output is connected to the drug dispensing module 36. Through the set formula library 33, prescriptions for different symptoms can be pre-stored within the system. When needed, the prescription can be directly retrieved, adjusted, and then the medication can be dispensed, making medication dispensing relatively quick.

[0046] The patient information recording module 37 and the patient medical history summary module 38 respectively realize the recording of patient information and the summary of patient medical history information.

[0047] The patient medication feedback retrieval module 39 can retrieve patient medication feedback through online or offline inquiries, including patient requirements regarding medication comfort and price. The input of the patient medication feedback retrieval module 39 is electrically connected to the output of the patient information recording module 37. The patient medical history summary module 38 records information from the patient information recording module 37, thereby ensuring medication dispensing safety.

[0048] The pharmacist adjustment module 40 obtains information from the patient information recording module 37, the patient medical history summary module 38, and the patient medication opinion retrieval module 39, and makes a comprehensive judgment based on the patient's condition, which facilitates the reduction or deletion of prescriptions. While the database performs mechanical dispensing to increase dispensing efficiency, the pharmacist adjustment module 40 adjusts the prescriptions to ensure that the prescriptions are suitable for different patients and to ensure safety.

[0049] The medication record summary module 44 is simultaneously connected to the output terminals of the medication dispensing information recording module 41, the special dosage information recording database 42, and the drug feedback module 43, acquiring the medication dispensing information, special dosage information, and drug feedback information recorded by these three modules. This enables the summarization of medication dosages and prescriptions for multiple patients with a single disease, facilitating subsequent statistical analysis of medication dosages for different patient groups.

[0050] Automatic medication dispensing record module 45: records multiple medication dispensing information; Modify record module 46: updates the medication dispensing information; further, the modified record enables the formula update module 8 to adjust the formula.

[0051] The output of the drug record summary module 44 is connected to the input of the automatic drug dispensing record module 45 and the change record module 46. The input of the drug dispensing information record module 41, the special drug dosage information record library 42 and the drug feedback module 43 is electrically connected to the output of the drug dispensing mechanism 1. The drug formula can be updated in a timely manner through the set formula update module 8, thereby improving the drug formula and enhancing the safety of the drug.

[0052] The automatic medicine dispensing mechanism includes an X-axis moving component, a Y-axis moving component, and a medicine dispensing component. The medicine dispensing component is mounted on the X-axis moving component and the Y-axis moving component, enabling it to move up and down along the X-axis and left and right along the Y-axis.

[0053] The X-axis moving assembly includes a first fixed plate 3, a first motor 4, threaded rods 5, and a lifting plate 6. The first fixed plates 3 are located at the upper and lower ends of the medicine cabinet. Two threaded rods 5 are arranged between the two first fixed plates. The bottom end of each threaded rod 5 is connected to the first motor 4, which drives the threaded rods 5 to rotate. The first motor 4 is fixed to the bottom of the lower first fixed plate 3, and its output end is fixedly connected to the threaded rods 5. The lifting plate 6 is installed through the outside of each threaded rod 5. When the first motor 4 is started, it drives the threaded rods 5 to rotate, causing the lifting plate 6 to move up and down. The entire Y-axis moving assembly is connected to the lifting plate 6. The up and down movement of the lifting plate 6 drives the Y-axis moving assembly to move up and down along the X-axis.

[0054] The Y-axis moving assembly includes a lifting rod 7, a sliding conveyor block 9, a gear slot 10, a second motor 11, a meshing gear 12, an extension rod 13, a rack 14, a sliding plate 15, and a slide 16. Two gear slots 10 are formed on the lifting plate 6, and the gear slots 10 are arranged vertically. The second motor 11 is fixedly installed in each gear slot 10, and the meshing gear 12 is fixed to the output end of the second motor 11.

[0055] A lifting rod 7 penetrates the interior of the lifting plate 6. Slide plates 15 are fixedly connected to both ends of the lifting rod 7. Slide grooves 16 are provided on both sides of the medicine cabinet 2, and the slide plates 15 slide along the slide grooves 16. An extension rod 13 is movably installed between the two slide plates 15. A rack 14 is fixed to the inner side of the extension rod 13, and the rack 14 meshes with a gear 12. A sliding conveyor block 9 is located in the middle of the extension rod 13, with the inner side of the sliding conveyor block 9 facing the medicine cabinet adjacent to the lifting plate 6. A medicine dispensing component and a display mechanism are installed on the sliding conveyor block 9.

[0056] The X-axis moving assembly, via the first motor 4, enables the lifting plate 6 to move up and down. Driven by the lifting plate 6, the Y-axis moving assembly moves up and down as a whole, with the slide plate 15 sliding inside the slide grooves 16 on both sides of the medicine cabinet 2. In the Y-axis moving assembly, after the second motor 11 is started, the meshing gear 12 rotates, driving the meshing rack 14 and the extension rod 13 fixed to the rack 14 to slide inside the slide plate 15. This causes the sliding conveyor block 9 fixed on the extension rod 13 and the medicine dispensing component and display mechanism of the sliding conveyor block 9 to move to the left and right sides under the limit of the slide plate 15, facilitating the dispensing of materials from inside the medicine cabinet 2.

[0057] The medicine dispensing assembly includes a third motor 17, a first rotating shaft 18, an inclined downward feeding plate 19, a feeding box 20, a weighing sensor 21, an L-shaped support plate 22, an electric push rod 23, an electromagnetic adsorption plate 24, a second fixing plate 25, and a tray 26.

[0058] The third motor 17 is fixed to the top of the sliding conveyor block 9, and the output end of the third motor 17 is fixedly connected to the first rotating shaft 18. The bottom end of the sliding conveyor block 9 is provided with a tray 26 through the second fixing plate 25, which is fixedly connected to the lower side of the material plate 19 at an angle to the first rotating shaft 18. The first rotating shaft 18 rotates under the drive of the third motor 17.

[0059] The feed box 20 is fixedly connected to the inclined downward feeding plate 19, and the two are connected. The feed box 20 is fixed to one side of the bottom of the inclined downward feeding plate 19. The top and one side of the feed box 20 are connected to the outside. An opening communicating with the feed box 20 is opened at the bottom of one side of the inclined downward feeding plate 19. A load-bearing sensor 21 is installed inside the feed box 20.

[0060] Automatic door opening device: The L-shaped support plate 22, the electric push rod 23, and the electromagnetic adsorption plate 24 constitute the automatic door opening device. The L-shaped support plate 22 is fixed above the top of the inclined downward material plate 19; the electric push rod 23 is fixed at one end above the L-shaped support plate 22; the electromagnetic adsorption plate 24 is fixed at the extension end of the electric push rod 23. When one end of the inclined downward material plate 19 is in contact with the Chinese medicine cabinet 2, the weighing sensor 21 is in a horizontal position.

[0061] The operating principle of the medicine dispensing component: The third motor 17 rotates the inclined downward feeding plate 19 and the feeding box 20. After the inclined downward feeding plate 19 is rotated to fit against the medicine cabinet 2 and the medicine dispensing component moves to one side of the medicine box cover 31, the electric push rod 23 and the electromagnetic adsorption plate 24 are activated to close the medicine box cover 31, creating an opening at the bottom. The medicine falls onto the inclined downward feeding plate 19 and slides into the feeding box 20, where it is weighed by the weighing sensor 21. After obtaining the corresponding amount, the third motor 17 is activated to slide the medicine onto the tray 26 for collection. The weighing sensor 21 can be electrically connected to the electric push rod 23 and the electromagnetic adsorption plate 24 to control the amount of medicine falling.

[0062] The display mechanism includes a third fixed rod 27, a fourth motor 28, a second rotating shaft 29, and a display 30. The third fixed rod 27 is fixed above one side of the sliding conveyor block 9, the fourth motor 28 is fixed to one side of the third fixed rod 27, the output end of the fourth motor 28 is fixedly connected to the second rotating shaft 29, and the display 30 is fixedly connected to one side of the second rotating shaft 29.

[0063] The above are merely preferred embodiments of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A highly secure adaptive pharmaceutical ERP management system, characterized in that, include: Dispensing institutions (1) and integrated dispensing information service units, In the integrated drug dispensing information service unit, before the drug retrieval module (36) performs the task of retrieving drugs from the existing prescription list, the adjustment module (35) summarizes the patient's condition, and then the pharmacist adjustment module (40) makes a comprehensive judgment based on the patient's condition and reduces or eliminates prescriptions. The integrated medication information service unit includes a drug database (32), a prescription database (33), an automatic medication quantity generation module (34), an adjustment module (35), a drug retrieval module (36), a patient information recording module (37), a patient medical history summary module (38), a patient medication opinion retrieval module (39), a medication information recording module (41), a special drug quantity information recording database (42), a drug feedback module (43), a medication record summary module (44), an automatic medication recording module (45), and a change record module (46). The automatic medication dosage generation module (34) automatically generates the medication dosage based on the required dosage for the patient's condition. The automatic medication dosage generation module (34) is connected to the drug library (32) and the formula library (33). The adjustment module (35) realizes the function of manual adjustment of the dosage; the input end of the adjustment module (35) is connected to the automatic dosage generation module (34), and the output end is connected to the drug grabbing module (36). Through the set formula library (33), the prescriptions for different diseases can be stored in the system in advance. When using the prescription, the prescription can be directly retrieved, and after adjustment, the drug grabbing operation can be performed, making the drug dispensing faster. The patient information recording module (37) and the patient medical history summary module (38) respectively realize the recording of patient information and the summary of patient medical history information; The patient medication opinion retrieval module (39) can retrieve the patient's medication opinion through online or offline inquiry, including the patient's requirements for medication comfort and medication price, so as to realize the retrieval of the patient's medication opinion. The input end of the patient medication opinion retrieval module (39) is electrically connected to the output end of the patient information recording module (37). The patient medical history summary module (38) can record the patient information recording module (37) through the set patient medical history summary module (38), so as to ensure the safety of medication dispensing. The dispensing unit (1) dispenses medicine according to the dispensing information provided by the dispensing information integrated service unit, and the dispensing unit (1) feeds back information to the dispensing information integrated service unit to update the information in the dispensing information integrated service unit; The dispensing mechanism (1) includes a Chinese medicine cabinet (2) and an automatic dispensing mechanism. The Chinese medicine cabinet (2) is provided with multiple medicine storage compartments, each of which is provided with a medicine box cover (31). The automatic dispensing mechanism is installed on the Chinese medicine cabinet (2) and can move up and down and left and right. It automatically moves to the position of the corresponding medicine storage compartment, opens the medicine box cover (31), and dispenses the medicine. The automatic dispensing mechanism includes an X-axis moving component, a Y-axis moving component, and a dispensing component. The dispensing component is installed on the X-axis moving component and the Y-axis moving component, and can move up and down along the X-axis and left and right along the Y-axis. The X-axis moving assembly includes first fixed plates (3) set at the upper and lower ends of the Chinese medicine cabinet (2), a threaded rod (5) is set between the two first fixed plates (3), the bottom end of the threaded rod (5) is connected to a first motor (4) that drives the threaded rod (5) to rotate, and a lifting plate (6) is provided through the outside of the threaded rod (5). The Y-axis moving assembly includes a lifting rod (7), a sliding plate (15), a gear (12), and an extension rod (13) with a rack (14) fixed on it. The lifting rod (7) is connected to the lifting plate (6) in the middle and has sliding plates (15) at both ends that slide along the medicine cabinet (2). An extension rod (13) is movably arranged between the two sliding plates (15). The rack (14) meshes with the gear (12). The second motor (11) drives the gear (12) to rotate, thereby driving the extension rod (13) to move left and right. A sliding conveyor block (9) is provided on the extension rod (13), and the medicine taking assembly is arranged on the sliding conveyor block (9). The medicine taking assembly includes a downward inclined feeding plate (19), a feeding box (20), and a tray (26). The downward inclined feeding plate (19) is driven to rotate by a third motor (17) and a first rotating shaft (18) arranged on the sliding conveyor block (9). An automatic door opening device is provided on the inclined downward material plate (19). The automatic door opening device includes an L-shaped support plate (22), an electric push rod (23), and an electromagnetic adsorption plate (24). The L-shaped support plate (22) is fixed on the inclined downward material plate (19), the electric push rod (23) is fixed on the L-shaped support plate (22), and the electromagnetic adsorption plate (24) is connected to the electric push rod (23). The third motor (17) drives the inclined downward feeding plate (19) and the feeding box (20) to rotate. After the inclined downward feeding plate (19) is rotated to fit with the Chinese medicine cabinet (2) and the medicine taking component moves to one side of the medicine box cover (31), the electric push rod (23) and the electromagnetic adsorption plate (24) are activated to achieve the adsorption of the medicine box cover (31), so that an opening is formed below it. The medicine falls to the top of the inclined downward feeding plate (19) and slides into the inside of the feeding box (20). The weighing sensor (21) senses and weighs it. After obtaining the corresponding amount, the third motor (17) is activated to make it slide into the tray (26) for collection.

2. The highly secure adaptive pharmaceutical ERP management system according to claim 1, characterized in that: The automatic medicine dispensing mechanism is also equipped with an adjustable angle display mechanism. The display (30) is connected to a fourth motor (28) and a second rotating shaft (29) set on the Y-axis moving assembly. The fourth motor (28) drives the second rotating shaft (29) and the display (30) to rotate to adjust the angle.

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