Intelligent medicine taking window for outpatient pharmacy and medicine taking method

By dividing the large medicine collection window into multiple small medicine storage spaces, equipped with identification devices and temperature adjustment devices, the problems of drug accumulation and misappropriation are solved, and independent temporary storage and temperature control of drugs are achieved.

CN120273617AInactive Publication Date: 2025-07-08THE FIRST AFFILIATED HOSPITAL OF HEBEI NORTH UNIV
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Patent Information

Application Number
CN202510403324.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-07-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing outpatient pharmacies have a small number of drug-taking windows, which leads to the accumulation of drugs and the misappropriation of drugs, and cannot meet the storage needs of temperature-sensitive drugs.

Method used

The large medicine collection window is divided into multiple small medicine storage spaces. Each medicine storage space is equipped with a feeding door and a feeding door. The independent temporary storage of drugs is ensured through the identification device and the controller, and a temperature sensor and adjustment device are set up to meet the drug storage requirements.

Benefits of technology

It improves the independent temporary storage during drug distribution, avoids the misappropriation of drugs, and ensures that the storage environment of temperature-sensitive drugs meets the requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of outpatient medicine taking windows, in particular to an outpatient pharmacy intelligent medicine taking window and a medicine taking method.The outpatient pharmacy intelligent medicine taking window comprises a plurality of medicine storage spaces and a controller, a feeding door with a first recognition device mounted on the surface is arranged on the side, facing the interior of the pharmacy, of the medicine storage space, a taking door with a second recognition device mounted on the surface is arranged on the side, facing the exterior of the pharmacy, of the medicine storage space, and the output end of the first recognition device and the output end of the second recognition device are both connected with the input end of the controller. The controller is used for providing information of medicine taking personnel for the controller, the output end of the controller sends out a control signal, the control signal is used for controlling the feeding door and the taking door to be opened or kept closed, an existing large window is divided into multiple medicine storage spaces, and therefore the temporary storage performance of medicine is improved; therefore, the situation that a person takes wrong medicine in the medicine taking process is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of outpatient pharmacy pick-up windows, and in particular to an intelligent outpatient pharmacy pick-up window and a pick-up method. Background Art

[0002] The existing pick-up process in outpatient pharmacies is as follows: Clinical doctors write prescriptions and print barcode papers corresponding to the relevant drug and pick-up personnel's identity information through a printer, or upload the pattern with the barcode to the client. The pick-up personnel go to the outpatient pharmacy for reporting and pick-up with the barcode paper or the barcode pattern displayed on the mobile phone. First, place the barcode at a reporting device in the outpatient pharmacy for scanning. The reporting device generates a task from the scanned information and dispatches it to one of the query terminals inside the pharmacy. The pharmacy staff searches for the corresponding drug inside the pharmacy by querying the task information, and then controls the large screen and speaker on the pick-up window to announce the pick-up personnel's name information, prompting the person to go to the corresponding pick-up window for pick-up. The problems existing in the existing technology are as follows: First, after reporting, the pick-up personnel may have something urgent, such as going to the toilet or needing to print other inspection reports and leaving temporarily. When the large screen and speaker announce the prompt, they cannot pick up the medicine in time, and the window dispatching the medicine cannot dispatch the medicine in time, resulting in the medicine piling up at the dispatching window. If there is a large amount of piled-up medicine, it is very easy to pick up the wrong medicine later. The reason for this problem is that the number of pick-up windows in existing outpatient pharmacies is small, and the independent temporary storage of medicines is poor. Second, some existing medicines need to be stored at a specific temperature. For example, insulin should be stored at 2 to 8 degrees Celsius, and the existing pick-up windows do not have a specific temperature storage function, which is likely to affect the drug efficacy. Based on the above situation, it is necessary to design an intelligent outpatient pharmacy pick-up window and a pick-up method to solve the above problems. Summary of the Invention

[0003] The present invention provides an intelligent outpatient pharmacy pick-up window and a pick-up method, which divide the existing larger window into more medicine storage spaces to improve the temporary storage of medicines, thereby avoiding the situation of taking the wrong medicine during the pick-up process.

[0004] The technical problems solved by the present invention are realized by the following technical solutions: On the one hand, the present invention provides an intelligent outpatient pharmacy medicine pickup window and a medicine pickup method, including a plurality of medicine storage spaces arranged on the pharmacy wall and penetrating the pharmacy wall, and a controller. On the side of the medicine storage space facing the inside of the pharmacy, there is a feeding door with a first identification device mounted on its surface. On the side of the medicine storage space facing the outside of the pharmacy, there is a pickup door with a second identification device mounted on its surface. The output ends of the first identification device and the second identification device are both connected to the input end of the controller, used to provide information of the medicine pickup person to the controller. The output end of the controller issues a control signal, and the control signal is used to control the opening or closing of the feeding door and the pickup door. When the first identification device corresponding to the medicine storage space recognizes the information of the medicine pickup person, the controller controls the feeding door corresponding to this medicine storage space to open, and medical staff can place medicines into the medicine storage space. When the second identification device corresponding to the medicine storage space recognizes the same medicine pickup person information as the first identification device corresponding to this medicine storage space, the controller controls the pickup door of this medicine storage space to open, facilitating the person to pick up the medicine.

[0005] Preferably, a sensor for monitoring whether there is medicine placed inside the medicine storage space is further arranged inside the medicine storage space. An acoustic-optical warning device is arranged on the feeding door. The output end of the sensor is connected to the input end of the controller, used to provide a signal of whether there is medicine placed inside the medicine storage space to the controller. The output end of the controller issues a control signal, and the control signal is used to control the acoustic-optical warning device to display different colors to give a prompt of whether there is medicine.

[0006] Preferably, the controller also controls the acoustic-optical warning device to emit a prompt sound to remind medical staff to place medicines in time.

[0007] Preferably, it further includes a medicine pickup prompt device installed on the pharmacy wall and outside the pharmacy. The medicine pickup prompt device includes a speaker and a display screen. The plurality of pickup doors are distinguished by digital coding. The output end of the controller is connected to the speaker and the display screen. The controller controls the speaker and the display screen to work to prompt the person to go to the designated corresponding medicine storage space to pick up the medicine.

[0008] Preferably, the sensor is a photoelectric sensor.

[0009] Preferably, a temperature sensor is further arranged inside the medicine storage space, and a temperature adjustment device is further arranged on the medicine storage space. The input end of the controller is connected to the output end of the temperature sensor, used to receive the temperature signal sent by the temperature sensor. The output end of the controller controls the operation of the temperature adjustment device by outputting a control signal. The controller also judges whether it is necessary to control the temperature of the medicine storage space according to the medicine pickup person information recognized by the first identification device.

[0010] On the other hand, the present invention provides a method for dispensing drugs at an outpatient pharmacy, which includes the following steps; In step S1, the corresponding information of the drug dispenser is obtained through the first identification device, and the feeding door corresponding to the storage space is opened to facilitate the placement of drugs inside the storage space by the personnel; In step S2; the information of the drug dispenser is obtained through the second identification device, and the information of the drug dispenser obtained through the second identification device is compared with the information of the drug dispenser obtained through the first identification device; In step S3; if the comparison result is consistent, the corresponding dispensing door of the storage space is controlled to open. If the comparison result is inconsistent, the dispensing door is controlled to remain closed, and at the same time, a prompt of comparison error is made.

[0011] Further, there is also step SA2 between steps S1 and S2; Step SA2 includes sending relevant information to the drug collection prompt device to facilitate the drug collection prompt device to carry out the prompt work.

[0012] Further, there is also step SA1 between step S1 and step SA2; Step SA1 includes judging whether the drug has been placed inside the storage space through a sensor. If it has been stored inside, the next step is carried out. If it has not been stored inside, the sound and light alarm is controlled to give an alarm prompt.

[0013] Further, step S1 also includes that the controller judges whether the corresponding storage space needs to be temperature-adjusted according to the information of the drug dispenser collected by the first identification device.

[0014] The beneficial effects of the present invention are as follows: By changing the existing drug collection windows with a large number and large volume into a large number of storage spaces with a small volume, the drug distribution is realized, so as to improve the independent temporary storage of drugs during the drug distribution process, thereby avoiding the situation of personnel taking the wrong drugs.

[0015] By providing a feeding door with a first identification device and a dispensing door with a second identification device on the storage space, the dispensing door will only open when the information identified by the first identification device and the second identification device is successfully compared, further avoiding the situation of taking the wrong drugs.

[0016] Through the controller, the first identification device, the temperature sensor and the temperature adjustment device, the controller can judge whether the current storage space needs to be temperature-adjusted according to the information identified by the first identification device. If temperature adjustment is required, the storage space is temperature-adjusted through the cooperation of the controller, the temperature sensor and the temperature adjustment device to ensure that the temperature of the drug storage environment is appropriate. Description of the Drawings

[0017] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 First perspective three-dimensional schematic diagram of the prior art of the present invention: Figure 2 Front view of the prior art of the present invention; Figure 3 Second perspective three-dimensional schematic diagram of the prior art of the present invention; Figure 4 Cross-sectional view of the prior art of the present invention; Figure 5 Three-dimensional schematic diagram of the first perspective of the present invention; Figure 6 Front view of the present invention; Figure 7 Three-dimensional schematic diagram of the second perspective of the present invention; Figure 8 Cross-sectional view of the present invention; Figure 9 Structural schematic diagram of the medicine storage space of the present invention; Figure 10 Cross-sectional view of the medicine storage space of the present invention; Figure 11 Cross-sectional view of the medicine storage space of the present invention with a temperature adjustment device added; Figure 12 Flowchart of the first medicine-taking method provided by the present invention; Figure 13 Flowchart of the second medicine-taking method provided by the present invention; Figure 14 Flowchart of the third medicine-taking method provided by the present invention; Figure 15 Flowchart of the fourth medicine-taking method provided by the present invention; Figure 16 Block diagram of the circuit control principle for taking and placing medicines of the present invention; Figure 17 Block diagram of the circuit principle for temperature control of the present invention.

[0019] In the figure, 1 is the pharmacy wall; 2 is the medicine collection window; 3 is the passage; 4 is the reporting device; 5 is the query terminal; 6 is the speaker; 7 is the large screen; 8 is the medicine storage space; 9 is the feeding door; 10 is the material taking door; 11 is the loudspeaker; 12 is the display screen; 13 is the sound and light warning device; 14 is the sensor; 15 is the first identification device; 16 is the second identification device; 17 is the controller; 18 is the temperature sensor; 19 is the heating plate; 20 is the semiconductor refrigeration sheet. Detailed implementation manners

[0020] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below with reference to specific drawings.

[0021] In order to enable those skilled in the art to better understand the inventive points of the present invention, first, the existing intelligent medicine collection window in the outpatient pharmacy involved in the present invention will be introduced. Refer to Figures 1-4 The existing intelligent medicine collection window in the outpatient pharmacy includes a relatively large medicine collection window 2 provided on the pharmacy wall 1. A corresponding digital code is also attached to the medicine collection window 2. A large screen 7 and a speaker 6 are also provided on the wall above the medicine collection window 2. After the medicine preparation inside the pharmacy is completed, the medical staff controls the large screen 7 to display the name and the code of the medicine collection window 2 and controls the loudspeaker 11 to conduct voice broadcast through the control device, prompting the person to go to the designated medicine collection window 2 to pick up the medicine. After the person arrives at the medicine collection window 2, the medicine is taken out through the passage 3 below the medicine collection window 2. The specific hospital prescribing process includes: First, the clinical doctor prescribes different prescription drugs according to the condition, then uses a computer to enter the drug information and the patient's information, and generates a bar code pattern containing the above information. Hereinafter, this information is abbreviated as the medicine collection personnel information. The paper with the bar code pattern is printed through a printer, or the bar code pattern is uploaded to the client app. The medicine collection personnel obtains the bar code pattern containing the identity information and the drug information by holding the paper with the bar code pattern or logging in to the client app and goes to the medicine collection window 2 to report. Outside the outpatient pharmacy, there is a reporting device 4 that can identify the information contained in the bar code. After the reporting device 4 identifies the information in the bar code, a task is generated and dispatched to one of the query terminals 5 inside the pharmacy (which is mostly presented in the form of a computer, and of course can also be a mobile phone or other devices). After the medical staff views the task through the query terminal 5, the corresponding medicine is taken inside the pharmacy according to the content of the task to complete the medicine preparation process. When the medicine is prepared, the query terminal 5 controls the large screen 7 and the speaker 6 to work to remind the person to go to the designated medicine collection window 2 to pick up the medicine.

[0022] As can be seen from the above, the existing medicine collection window 2 has the following defects. The existing intelligent medicine collection windows in outpatient pharmacies are generally large. Often, after reporting, due to temporary emergencies, the medicine collection personnel are unable to collect medicine when the medicine collection prompt is given, resulting in medicines piling up at the medicine collection window 2. When the next medicine collection personnel come to collect medicine, the phenomenon of mis-taking often occurs. Based on this problem, the present invention improves the existing intelligent medicine collection window in outpatient pharmacies to overcome the problems of the small number of medicine collection windows 2 in existing outpatient pharmacies and poor independent temporary storage of medicines.

[0023] Refer to Figures 5-8 and Figure 14 As shown, the intelligent medicine collection window in outpatient pharmacy improved by the present invention. Its main improvement lies in changing the existing large medicine collection window 2 into a storage space 8 with a smaller volume. Since the volume becomes smaller, more storage spaces 8 can be set on the pharmacy wall 1 with the same area. Each storage space 8 penetrates the pharmacy wall 1, greatly improving the independent temporary storage of medicines and avoiding the situation of mis-taking medicines. The specific implementation method is as follows: on the side of the storage space 8 facing the inside of the pharmacy, there is a feeding door 9 for facilitating medical staff to place medicines. The feeding door 9 is provided with a first identification device 15 for identifying the information of the medicine collection personnel (this medicine collection personnel information is the bar code information printed by the computer-controlled printer when the dispensing personnel receive the task, or the bar code information generated on the query terminal 5, which is consistent with the bar code information provided when the medicine collection personnel report). On the side of the storage space 8 facing the outside of the pharmacy, there is a taking door 10 for facilitating the medicine collection personnel to take medicine. The taking door 10 is provided with a second identification device 16 for identifying the information of the medicine collection personnel (this information comes from the bar code information used when reporting). The storage space 8 also has a controller 17. The input end of the controller 17 is connected to the first identification device 15 and the second identification device 16. The output end of the controller 17 issues a control signal for controlling the opening or keeping closed of the feeding door 9 and the taking door 10. The medicine collection process is as follows: when the medicine configuration is completed, the medical staff select to open one of the empty storage spaces 8 to store the medicine, that is, let the first identification device 15 on the feeding door 9 corresponding to the storage space 8 identify the information of the medicine collection personnel. When the controller 17 receives the information of the medicine collection personnel provided by the first identification device 15, it temporarily stores the information and controls the feeding door 9 to open, facilitating the medical staff to place the corresponding medicine into the storage space 8. When the first identification device 15 on the taking door 10 corresponding to the storage space 8 identifies the information of the medicine collection personnel, if the information of the medicine collection personnel identified by the first identification device 15 is consistent with the information of the medicine collection personnel identified by the second identification device 16, the controller 17 controls the taking door 10 to open, facilitating the medicine collection personnel to take out the medicine. If the information of the medicine collection personnel identified by the first identification device 15 is inconsistent with the information of the medicine collection personnel identified by the second identification device 16, the controller 17 controls the taking door 10 to be in a closed state.

[0024] Further, in order to facilitate medical staff to quickly find an empty medicine storage space 8 when placing medicines into the medicine storage space 8, a monitoring sensor 14 for monitoring whether there is medicine inside the medicine storage space 8 is also provided inside the medicine storage space 8, and an audible and visual alarm 13 is provided on the feeding door 9. The output end of the monitoring sensor 14 is connected to the input end of the controller 17, and the output end of the controller 17 issues a control signal. This control signal controls the audible and visual alarm 13 to emit different colors to indicate whether the medicine storage space 8 is empty. For example, when the controller 17 determines through the signal of the monitoring sensor 14 that there is no medicine inside the medicine storage space 8, it controls the audible and visual alarm 13 to emit green light. When the controller 17 determines through the signal of the monitoring sensor 14 that there is medicine inside the medicine storage space 8, it controls the audible and visual alarm 13 to emit red light. Thus, it is convenient for medical staff to quickly identify whether there is medicine inside the medicine storage space 8.

[0025] Further, the controller 17 can also emit a prompt sound through the audible and visual alarm 13 to prompt medical staff to place medicines in a timely manner, that is, when the medical staff has scanned the corresponding medicine-taking personnel information and the feeding door 9 has been opened, but fails to place medicines in a timely manner, at this time, the controller 17 prompts the medical staff by emitting a prompt sound.

[0026] Further, since it is necessary to prompt the medicine-taking personnel outside the pharmacy to reach the designated position of the medicine storage space 8 to pick up medicines after the medicines are placed inside the medicine storage space 8, the picking doors 10 of each medicine storage space 8 are coded with different numbers for distinction, and at the same time, the speaker 11 and the display screen 12 are used to give voice and visual prompts to the medicine-taking personnel. That is, the controller 17 can also control the speaker 11 and the display screen 12 to work. After the medicine is placed inside the medicine storage space 8, the controller 17 controls the speaker 11 to perform voice broadcast, and at the same time controls the display screen 12 to display the name of the corresponding medicine-taking personnel and the number corresponding to the medicine storage space 8, so as to remind the personnel to pick up medicines from the medicine storage space 8 at the designated position. It should be noted that the speaker 11 generally stops broadcasting the medicine-taking information after continuously broadcasting two to three times, while the name of the medicine-taking personnel and the number corresponding to the medicine storage space 8 displayed on the display screen 12 will be displayed all the time until the corresponding personnel pick up the medicine and then the display is terminated. Of course, an error prompt device (not shown in the figure) can also be provided on the picking door 10. When the bar code information provided by the medicine-taking personnel is inconsistent with the information temporarily stored inside the controller 17, that is, when the medicine-taking personnel information identified by the second identification device 16 corresponding to the medicine storage space 8 is inconsistent with the medicine-taking personnel information identified by the first identification device 15, the controller 17 controls the error prompt device to work to remind the medicine-taking personnel to check the information. This error prompt device can emit a warning light of a color.

[0027] Specifically, the above-mentioned monitoring sensor 14 can be an optoelectronic sensor 14. That is, after the medicine is placed inside the medicine storage space 8, the infrared rays of the transmitting end and the receiving end of the optoelectronic monitoring sensor 14 are blocked, so as to be able to judge whether there is medicine inside the medicine storage space 8.

[0028] Furthermore, referring to Figure 11 , considering that the existing medicine pickup window cannot store medicines with high temperature storage requirements well, therefore, by arranging a temperature sensor 18 inside the medicine storage space 8 and arranging a temperature regulating device on the medicine storage space 8, the internal temperature of the medicine storage space 8 can be regulated. The temperature regulating device can be Figure 11 a heating plate 19 and a semiconductor refrigerating sheet 20. When the internal temperature of the medicine storage space 8 is relatively high, the controller 17 controls the semiconductor refrigerating sheet 20 to work to realize the refrigeration of the medicine storage space 8 and store the medicines that need to be refrigerated. When the internal temperature of the medicine storage space 8 is relatively low, the controller 17 controls the heating plate 19 to work to realize the heating of the medicine storage space 8. Of course, the temperature regulating device can also be realized in other ways, such as by injecting cold air or hot air into the medicine storage space 8 to regulate the temperature. The specific implementation methods of the temperature regulating device are not elaborated one by one here. The above temperature regulating process is controlled by the controller. Since not every medicine requires a strict storage temperature like insulin and other medicines, the controller 17 also judges whether there are medicines that need special temperature storage among the stored medicines according to the information of the medicine pickup personnel identified by the first identification device, so as to judge whether the temperature of the medicine storage space 8 needs to be controlled. It should be further noted that when the medicine is taken out, the monitoring sensor 14 can send a signal to the controller, and the controller 17 simultaneously stops the temperature regulation of the medicine storage space 8.

[0029] On the other hand, the present invention also provides a method for picking up medicines at an outpatient pharmacy as Figures 11-13 shown, including the following steps; Step S1, obtain the corresponding information of the medicine pickup personnel through the first identification device 15, and open the feeding door 9 corresponding to the medicine storage space 8 to facilitate the personnel to place the medicine inside the medicine storage space 8; Step S2; obtain the information of the medicine pickup personnel through the second identification device 16, and compare the information of the medicine pickup personnel obtained through the second identification device 16 with the information of the medicine pickup personnel obtained through the first identification device 15; Step S3; if the comparison result is consistent, control the pickup door 10 corresponding to the medicine storage space 8 to open. If the comparison result is inconsistent, control the pickup door 10 to remain closed, and at the same time give a prompt of comparison error.

[0030] Further, there is also an SA2 step between steps S1 and S2; The SA2 step includes sending relevant information to the medicine reminder device to facilitate the reminder work of the medicine reminder device.

[0031] Further, there is also an SA1 step between the S1 step and the SA2 step; The SA1 step includes determining, by monitoring sensor 14, whether the medicine has been placed inside the medicine storage space 8. If it has been stored inside, proceed to the next step; if it has not been stored inside, control the sound and light alarm 13 to give an alarm reminder.

[0032] Further, in the above S1 step, it also includes judging, according to the information identified by the first identification device 15, whether it is necessary to adjust the temperature inside the current medicine storage space 8.

[0033] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. An intelligent dispensing window for outpatient pharmacy, characterized in that, It includes a plurality of medicine storage spaces (8) placed on the pharmacy wall (1) and penetrating through the pharmacy wall (1), and a controller (17). On the side of the medicine storage space (8) facing the inside of the pharmacy, there is a feeding door (9) with a first identification device (15) surface-mounted. On the side of the medicine storage space (8) facing the outside of the pharmacy, there is a picking door (10) with a second identification device (16) surface-mounted. The output ends of the first identification device (15) and the second identification device (16) are both connected to the input end of the controller (17) for providing information of the medicine-taking personnel to the controller (17). The output end of the controller (17) issues a control signal, and the control signal is used to control the opening or closing of the feeding door (9) and the picking door (10). When the first identification device (15) corresponding to the medicine storage space (8) recognizes the information of the medicine-taking personnel, the controller (17) controls the feeding door (9) corresponding to this medicine storage space (8) to open, and medical staff can place medicines into the medicine storage space (8). When the second identification device (16) corresponding to the corresponding medicine storage space (8) recognizes the same medicine-taking personnel information as the first identification device (15) corresponding to this medicine storage space (8), the controller (17) controls the picking door (10) of this medicine storage space (8) to open, facilitating personnel to take medicines.

2. The intelligent drug pickup window for outpatient pharmacy according to claim 1, characterized in that, Inside the medicine storage space (8), there is also a monitoring sensor (14) for monitoring whether medicines are placed inside the medicine storage space (8). An audible and visual alarm (13) is arranged on the feeding door (9). The output end of the monitoring sensor (14) is connected to the input end of the controller (17) for providing a signal indicating whether medicines are placed inside the medicine storage space (8) to the controller (17). The output end of the controller (17) issues a control signal, and the control signal is used to control the audible and visual alarm (13) to display different colors to give a prompt of the presence or absence of medicines.

3. The intelligent dispensing window for outpatient pharmacy according to claim 2, characterized in that, The controller (17) also controls the audible and visual alarm (13) to emit a prompt sound to remind medical staff to place medicines in a timely manner.

4. An intelligent outpatient pharmacy drug collection window according to claim 1, characterized in that, It also includes a medicine-taking prompt device installed on the pharmacy wall (1) and on the outside of the pharmacy. The medicine-taking prompt device includes a speaker (11) and a display screen (12). The plurality of picking doors (10) are distinguished by digital coding. The output end of the controller (17) is connected to the speaker (11) and the display screen (12). The controller (17) controls the speaker (11) and the display screen (12) to work to prompt personnel to go to the designated corresponding medicine storage space (8) to take medicines.

5. The intelligent drug pickup window for outpatient pharmacy according to claim 2, characterized in that, The monitoring sensor (14) is a photoelectric sensor (14).

6. The intelligent dispensing window for outpatient pharmacy according to claim 1, wherein Inside the medicine storage space (8), there is also a temperature sensor (18). A temperature adjustment device is also provided on the medicine storage space (8). The input end of the controller (17) is connected to the output end of the temperature sensor (18) for receiving the temperature signal sent by the temperature sensor (18). The output end of the controller (17) controls the operation of the temperature adjustment device by outputting a control signal. The controller (17) also determines whether temperature control of the medicine storage space (8) is required based on the information of the medicine-taking personnel identified by the first identification device (15).

7. A method for dispensing drugs in an outpatient pharmacy, characterized in that, It includes the following steps; In step S1, obtain the corresponding information of the medicine-taking personnel through the first identification device (15), and open the corresponding inlet door (9) of the medicine storage space (8) to facilitate the personnel to place the medicine inside the medicine storage space (8). In step S2, obtain the information of the medicine-taking personnel through the second identification device (16), and compare the information of the medicine-taking personnel obtained through the second identification device (16) with the information of the medicine-taking personnel obtained through the first identification device (15). In step S3, if the comparison result is consistent, control the corresponding dispensing door (10) of the medicine storage space (8) to open. If the comparison result is inconsistent, control the dispensing door (10) to remain closed, and at the same time give a prompt of comparison error.

8. A method for dispensing drugs in an outpatient pharmacy according to claim 7, characterized in that, There is also a step SA2 between steps S1 and S2; The step SA2 includes sending relevant information to the medicine-taking prompt device to facilitate the medicine-taking prompt device to perform the prompt work.

9. The method for dispensing drugs in an outpatient pharmacy according to claim 8, characterized in that, There is also a step SA1 between the step S1 and the step SA2; The step SA1 includes judging through the monitoring sensor (14) that the medicine has been placed inside the medicine storage space (8). If it has been stored inside, proceed to the next step. If it has not been stored inside, control the sound and light alarm (13) to give an alarm prompt.

10. A method for dispensing drugs in an outpatient pharmacy according to any one of claims 7-9, characterized in that, The step S1 also includes that the controller 17 determines whether temperature adjustment of the corresponding medicine storage space 8 is required according to the information of the medicine-taking personnel collected by the first identification device 15.