Drug clinical data simulation control device

By using a drug clinical data simulation control device and an automated design of a rotating base and conveyor belt assembly, the manual operation problems of tablet sorting, counting and boxing are solved, improving the accuracy and efficiency of dispensing.

CN224177114UActive Publication Date: 2026-04-28ZHEJIANG ABIO HEALTH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG ABIO HEALTH TECH CO LTD
Filing Date
2025-07-26
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing medication dispensing machines have limited functionality; the sorting, counting, and boxing of tablets still require manual operation, resulting in low dispensing efficiency and affecting clinical nursing efficiency and the timeliness of patient medication.

Method used

Design a drug clinical data simulation control device that uses a rotating base and conveyor belt assembly to drive a rotating plate to rotate via a drive motor. Combined with a micro cylinder and a vibration motor, it realizes automatic dispensing of tablets, reducing manual sorting and counting steps.

Benefits of technology

It has enabled automated sorting, counting, and boxing of medicines, improving the accuracy and efficiency of dispensing and reducing the time required for manual intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drug clinical data simulation control device, and belongs to the technical field of clinical drug control devices. A rotating base and a medicine discharging tray are arranged, a first driving motor is used for driving a rotating plate to rotate, the medicine discharging tray is driven to incline, and therefore medicine can be taken out conveniently; the miniature air cylinder is arranged at the front end of the medicine discharging tray, medicine bottles located on the top plate can be jacked up and slide out of the discharging opening through stretching of the miniature air cylinder, the device can achieve automatic discharging of tablets according to the medical advice of a patient, and therefore the steps of sorting, counting and boxing of the tablets by nurses are reduced, and the medicine dispensing accuracy and the working efficiency are improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of clinical drug control devices, specifically relating to a drug clinical data simulation control device. Background Technology

[0002] Currently, daily medications for hospitalized patients are mainly prepared manually by nurses according to doctors' orders and then delivered to the wards. The following problems exist in this practice:

[0003] 1. Strong dependence on doctor's orders

[0004] Each time medication is dispensed, nurses need to manually check the doctor's orders. When there are many patients or the doctor's orders are frequently changed, the efficiency of dispensing medication decreases significantly.

[0005] 2. Existing dispensing machines have limited functionality.

[0006] Currently, the dispensing machine only supports automated addressing and delivery of medicines, but the sorting, counting and boxing of tablets still require manual operation by nurses, and the process has not been truly automated.

[0007] 3. Overall inefficiency

[0008] Due to the numerous manual interventions involved, the drug delivery process is time-consuming, affecting the efficiency of clinical nursing and the timeliness of patients' medication.

[0009] This problem urgently needs to be optimized through intelligent means to improve the accuracy of medication dispensing and work efficiency. Summary of the Invention

[0010] The present invention aims to solve the technical problems existing in the prior art and provide a drug clinical data simulation and control device.

[0011] The above-mentioned technical problems of this utility model are mainly solved by the following technical solution: a drug clinical data simulation control device, including a rotating base and a conveyor belt assembly, wherein the rotating base includes two mounting side plates, and a rotating plate is mounted between the two mounting side plates. The rotating plate is rotatably connected between the two mounting side plates. One of the side plates is provided with a first drive motor for driving the rotating plate to rotate. A vibration motor is provided on the lower surface of the rotating plate. A plurality of mounting holes are equidistantly opened on the rotating plate. A locking assembly is provided in the mounting holes. The locking assembly includes a rotating rod threadedly connected to the mounting plate. The inner end of the rotating rod... Extending into the mounting hole, a clamping plate is connected to the end of the rotating rod in the mounting hole. The clamping plate is rotatably connected to the rotating rod. Each mounting hole is provided with a set of medicine feeding trays. The medicine feeding tray includes a column and a feeding tray. The feeding tray has an open top structure. The column is located at the bottom of the feeding tray. The medicine feeding tray is installed in the mounting hole of the rotating plate through the column. The feeding tray includes a medicine slide at the front end. A discharge port is provided at the upper part of the front end of the medicine slide. A miniature cylinder is provided at the bottom of the feeding tray corresponding to the medicine slide. The protruding end of the miniature cylinder extends into the interior of the feeding tray and is provided with a top plate at the end.

[0012] Preferably, the top plate is L-shaped, with one end located in the material channel and the other end sliding vertically on the feeding tray.

[0013] Preferably, a cover plate is provided above the medicine slide, at a position corresponding to the top plate.

[0014] Preferably, the micro cylinder lifts the top plate to a height that is flush with the discharge port.

[0015] Preferably, a conveyor belt assembly is installed between the front sides of the two mounting side plates, and the conveyor belt assembly is located below the discharge port of the medicine tray.

[0016] The beneficial effects of this utility model are as follows: By setting a rotating base and a medicine tray, the first drive motor drives the rotating plate to rotate, causing the medicine tray to tilt, thereby facilitating the removal of medicines; by setting a miniature cylinder at the front end of the medicine tray, the extension of the miniature cylinder can lift the medicine bottle located on the top plate and slide it out from the discharge port, so that the device can automatically dispense tablets according to the patient's doctor's order, thereby reducing the steps of nurses in sorting, counting and boxing tablets, thereby improving the accuracy of medication and work efficiency. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the structure of the rotating plate of this utility model;

[0019] Figure 3 This is a schematic diagram of the structure of the medicine dispensing tray of this utility model.

[0020] In the diagram: 1. Mounting side plate; 2. Rotating plate; 3. First drive motor; 4. Vibration motor; 5. Mounting hole; 6. Rotating rod; 7. Clamping plate; 8. Column; 9. Feeding tray; 10. Medicine slide; 11. Discharge port; 12. Miniature cylinder; 13. Top plate; 14. Cover plate; 15. Conveyor belt assembly. Detailed Implementation

[0021] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0022] Example: A drug clinical data simulation control device, such as Figures 1-3 As shown, the device includes a rotating base and a conveyor belt assembly. The rotating base includes two mounting side plates 1, and a rotating plate 2 is mounted between the two mounting side plates 1. The rotating plate 2 is rotatably connected between the two mounting side plates 1. One of the side plates is equipped with a first drive motor 3 that drives the rotating plate 2 to rotate. A vibration motor 4 is provided on the lower surface of the rotating plate 2. Multiple mounting holes 5 are equally spaced on the rotating plate 2. A locking assembly is provided in each mounting hole 5. The locking assembly includes a rotating rod 6 that is threadedly connected to the mounting plate. The inner end of the rotating rod 6 extends into the mounting hole 5, and a clamping device is connected to the end of the rotating rod 6 in the mounting hole 5. Plate 7, the clamping plate 7 is rotatably connected to the rotating rod 6, and each of the mounting holes 5 is provided with a set of medicine trays. The medicine tray includes a column 8 and a feeding tray 9. The feeding tray 9 has an open top structure. The column 8 is located at the bottom of the feeding tray 9. The medicine tray is located in the mounting hole 5 of the rotating plate 2 through the column 8. The feeding tray 9 includes a medicine slide 10 located at the front end. The upper part of the front end of the medicine slide 10 is provided with a discharge port 11. The bottom of the feeding tray 9 corresponding to the medicine slide 10 is provided with a miniature cylinder 12. The extended end of the miniature cylinder 12 extends into the interior of the feeding tray 9 and is provided with a top plate 13 at the end.

[0023] The top plate 13 is L-shaped, with one end located in the material channel and the other end sliding vertically on the feeding plate 9.

[0024] A cover plate 14 is provided above the medicine slide 10 at a position corresponding to the top plate 13.

[0025] The micro cylinder 12 lifts the top plate 13 to a height that is flush with the discharge port 11.

[0026] A set of conveyor belt assembly 15 is installed between the front sides of the two mounting side plates 1, and the conveyor belt assembly 15 is located below the discharge port 11 of the medicine tray.

[0027] The principle of this utility model is as follows: When in use, the control device is connected to the computer system. The system determines the type and quantity of pills required according to the doctor's order. The pill box is placed on the conveyor belt assembly 15. The conveyor belt assembly 15 will send the pill box to the lower side of the corresponding medicine tray. The first drive motor 3 drives the rotating plate 2 to rotate, tilting the medicine tray. The pills in the feeding tray 9 will slide forward. The vibration motor 4 vibrates to place the pills that block the medicine slide 10. The pill at the front will move to the top plate 13 through vibration. The micro cylinder 12 corresponding to the required pill is controlled to push out, driving the pill to slide out from the discharge port 11 and fall into the pill box. After the top plate 13 is lifted, the end of the top plate 13 that is slidably connected to the feeding tray 9 will block the pill from moving forward, preventing the pill from going to the lower side of the top plate 13, thus preventing the top plate 13 from moving down and resetting.

[0028] The columns 8 in the multiple sets of medicine dispensing trays are of different heights, one long and one short, and are staggered when installed on the rotating plate 2.

[0029] The conveyor belt assembly is a conventional servo motor control assembly, which can deliver the medicine box to the required position by driving the servo motor.

[0030] Finally, it should be noted that the above embodiments are merely representative examples of this utility model. Obviously, this utility model is not limited to the above embodiments and can have many variations. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this utility model should be considered to fall within the protection scope of this utility model.

Claims

1. A drug clinical data simulation control device, comprising a rotating base and a conveyor belt assembly, characterized in that: The rotating base includes two mounting side plates (1), and a rotating plate (2) is mounted between the two mounting side plates (1). The rotating plate (2) is rotatably connected between the two mounting side plates (1). One of the side plates is equipped with a first drive motor (3) for driving the rotating plate (2) to rotate. A vibration motor (4) is provided on the lower surface of the rotating plate (2). Multiple mounting holes (5) are equidistantly opened on the rotating plate (2). A locking assembly is provided in the mounting hole (5). The locking assembly includes a rotating rod (6) threadedly connected to the mounting plate. The inner end of the rotating rod (6) extends into the mounting hole (5). A clamping plate (7) is connected to the end of the rotating rod (6) in the mounting hole (5). The rotating rod (6) is rotatably connected to the rotating rod (6). Each of the mounting holes (5) is provided with a set of medicine trays. The medicine tray includes a column (8) and a feeding tray (9). The feeding tray (9) has an open top structure. The column (8) is located at the bottom of the feeding tray (9). The medicine tray is located in the mounting hole (5) of the rotating plate (2) through the column (8). The feeding tray (9) includes a medicine slide (10) located at the front end. The upper part of the front end of the medicine slide (10) is provided with a discharge port (11). The bottom of the feeding tray (9) corresponding to the medicine slide (10) is provided with a miniature cylinder (12). The protruding end of the miniature cylinder (12) extends into the interior of the feeding tray (9) and is provided with a top plate (13) at the end.

2. The drug clinical data simulation control device according to claim 1, characterized in that: The top plate (13) is L-shaped, with one end located in the material channel and the other end sliding vertically on the feeding plate (9).

3. The drug clinical data simulation control device according to claim 1, characterized in that: A cover plate (14) is provided above the medicine slide (10) at a position corresponding to the top plate (13).

4. The drug clinical data simulation control device according to claim 1, characterized in that: The micro cylinder (12) lifts the top plate (13) to the same height as the discharge port (11).

5. The drug clinical data simulation control device according to claim 1, characterized in that: A set of conveyor belt assembly (15) is mounted between the front sides of the two mounting side plates (1), and the conveyor belt assembly (15) is located below the discharge port (11) of the medicine tray.