Intelligent medicine box with medicine taking recording function

The smart pillbox, which integrates an opening and closing mechanism, a printing device, and a control module, enables real-time printing and data storage of medication records. This addresses the shortcomings of existing smart pillboxes in medication record management, provides convenient and secure medication management, and ensures the accuracy and reliability of medication use.

CN224166604UActive Publication Date: 2026-04-28BEIJING VOCATIONAL COLLEGE OF LABOUR & SOCIAL SECURITY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BEIJING VOCATIONAL COLLEGE OF LABOUR & SOCIAL SECURITY
Filing Date
2024-12-31
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing smart pillboxes are inadequate in storing and printing medication records, failing to meet the needs of patients and healthcare professionals.

Method used

A smart pillbox was designed, integrating an opening and closing mechanism, a printing device, and a control module. It can print medication records in real time and achieve precise medication management through a weight sensor and drive components. Combined with a detachable ink accumulation tray and a split shell structure, it ensures drug safety and reliable data storage.

Benefits of technology

It provides a convenient, safe, and traceable medication management solution, avoiding accidental and missed doses, ensuring the accuracy and reliability of medication records, and facilitating medication monitoring for users and medical staff.

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Abstract

The utility model relates to an intelligent medicine box with a medicine taking recording function, and belongs to the technical field of intelligent medicine boxes. An intelligent medicine box with a medicine taking recording function comprises a medicine box shell, the medicine box shell is provided with a medicine storage groove and a medicine taking opening, the medicine taking opening is communicated with the medicine storage groove, and the medicine box shell is provided with a paper outlet; the opening and closing mechanism is arranged on the medicine box shell and located at the medicine taking opening, and the opening and closing mechanism is used for controlling closing and opening of the medicine taking opening; the printing device is arranged on the medicine box shell, and the paper outlet end of the printing device is opposite to the paper outlet; and the control module is arranged on the medicine box shell, and the opening and closing mechanism and the printing device are electrically connected with the control module. Through physical protection of the opening and closing mechanism and data storage of the control module, multiple guarantees are provided for medication safety of a user, and the situations of mistaken taking, missing taking and the like are avoided. A printing device and a control module are integrated, real-time printing and data storage of medication records are achieved, and a traceable medication management scheme is provided for a user.
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Description

Technical Field

[0001] This utility model relates to the field of smart pillbox technology, and in particular to a smart pillbox with medication recording function. Background Technology

[0002] Smart pillboxes, as an emerging auxiliary medication tool, aim to improve patient medication adherence and reduce medication errors. Currently, smart pillboxes on the market typically have functions such as compartmentalized medication storage and opening record recording. However, existing smart pillboxes have many shortcomings in terms of storing and printing medication records, failing to meet the needs of patients and healthcare professionals for printable medication records. Utility Model Content

[0003] Therefore, it is necessary to address the numerous shortcomings of smart pillboxes in storing and printing medication records, and to provide a smart pillbox with medication record functionality.

[0004] A smart pillbox with medication recording function includes: a pillbox shell, the pillbox shell having a medicine storage slot and a medicine dispensing port, the medicine dispensing port communicating with the medicine storage slot, and a paper outlet; an opening and closing mechanism, the opening and closing mechanism being disposed on the pillbox shell and located at the medicine dispensing port, the opening and closing mechanism being used to control the closing and opening of the medicine dispensing port; a printing device, the printing device being disposed on the pillbox shell, the paper output end of the printing device being disposed opposite to the paper output port; and a control module, the control module being disposed on the pillbox shell, the opening and closing mechanism and the printing device being electrically connected to the control module.

[0005] This application discloses a smart pillbox with medication record function. The pillbox shell has a storage compartment and a dispensing port, which are connected to the storage compartment for convenient medication retrieval. An opening and closing mechanism is located at the dispensing port, precisely controlling its opening and closing to ensure safe medication storage. A printing device can print medication records in real time and output them from the paper output port. After each medication retrieval, the printing device prints out information such as the time and dosage, providing users with a clear and intuitive medication record. A control module is electrically connected to the opening and closing mechanism and the printing device, enabling intelligent control of the entire pillbox. The control module not only controls the operation of the opening and closing mechanism but also controls the printing operation of the printing device and stores the user's medication records. The physical protection of the opening and closing mechanism and the data storage of the control module provide multiple layers of protection for user medication safety, effectively preventing accidental ingestion or missed doses. By integrating the printing device and the control module, real-time printing and data storage of medication records are achieved, providing users with a convenient, safe, and traceable medication management solution.

[0006] In one embodiment, a weight sensor is also included. This weight sensor is mounted on the pillbox housing and electrically connected to the control module. The weight sensor detects the weight of the medication in the storage compartment. By using the weight sensor, the change in medication weight after each dispensing can be accurately measured, thereby calculating the user's dosage for each dose. The control module can record this data and, in conjunction with a printing device, print out each dosage, providing the user with a more detailed and accurate medication record. Based on the remaining medication detected by the weight sensor and the user's medication plan, the control module can intelligently determine whether to remind the user to take medication on time or replenish the medication. For example, when the remaining medication is insufficient, the control module can remind the user to replenish the medication promptly through sound, light, or an app, preventing missed doses and interrupted dosage.

[0007] In one embodiment, there are multiple drug storage tanks, each equipped with one of the aforementioned weight sensors. By equipping each drug storage tank with an independent weight sensor, the weight of the drug in each tank can be monitored independently, thereby accurately recording the dosage of the drug in the corresponding tank. This enables refined management of different drugs, allowing users to clearly understand the dosage already taken and the remaining amount of each drug.

[0008] In one embodiment, a driving component is further included, disposed on the medicine box housing. This driving component is capable of driving the dispensing port to be positioned opposite at least one of the medicine storage slots. By enabling the dispensing port to be positioned opposite at least one medicine storage slot, automatic positioning and selection of the dispensing port are achieved, simplifying the user's medication dispensing operation and effectively improving the accuracy and safety of medication use. The driving component works in conjunction with components such as the control module and weight sensors to achieve more intelligent medication management. For example, the control module can automatically select the medicine storage slot requiring medication based on the user's medication plan and control the driving component to move the dispensing port to the corresponding position. Simultaneously, the weight sensor detects the remaining medication level to record and store the user's medication records.

[0009] In one embodiment, an ink collection tray is also included, installed inside the medicine box housing. The ink collection tray and the medicine box housing enclose a mounting cavity, within which the printing device is installed. The ink collection tray collects ink leaked from the printing device. By installing the ink collection tray inside the medicine box housing and forming a mounting cavity with the medicine box housing, the printing device can be installed within the mounting cavity. This design effectively prevents ink leaks from the printing device from contaminating other components or medication inside the medicine box. The ink collection tray effectively solves the potential ink leakage problem of the printing device, protecting not only the internal components of the medicine box but also maintaining the cleanliness of the medicine box.

[0010] In one embodiment, the ink accumulation tray is detachably mounted inside the pillbox housing. This detachable design allows users to easily remove the tray from the housing for cleaning or replacement, helping to maintain the hygiene of the smart pillbox and ensuring its proper functioning.

[0011] In one embodiment, the control module includes a control board, a storage module, and a communication module. The storage module and the communication module are electrically connected to the control board. The storage module stores medication records, and the communication module sends these records to external devices. The control board, as the core of the control module, coordinates the work of the storage module and the communication module, enabling intelligent control of the entire medicine box and ensuring accurate storage and reliable transmission of medication records. The storage module stores the user's medication records, including medication time, dosage, and drug type. The communication module can send the medication records stored in the storage module to external devices, such as mobile phones or apps. This remote transmission function allows users to view and manage their medication records anytime, anywhere, and also facilitates doctors or family members in understanding the user's medication situation.

[0012] In one embodiment, at least one edge of the paper outlet is provided with cutting teeth. The cutting teeth allow users to easily and quickly tear off the paper after printing the medication record without using scissors or other tools, simplifying the operation process while ensuring the safety and reliability of the paper cutting process, preventing users from being cut by sharp edges, which is especially safe for the elderly. The cutting teeth also ensure clean paper edges, making the printed medication record easy for users to view and save.

[0013] In one embodiment, the medicine box housing includes a lower housing assembly and an upper housing assembly. The upper housing assembly covers the lower housing assembly, and the lower housing assembly has the medicine storage slot. The upper housing assembly includes a mounting part, a moving component, and a flexible connector. The mounting part is disposed on the lower housing assembly and has a movable opening. The moving component has a medicine dispensing port. The separate structure of the lower and upper housing assemblies facilitates the assembly and maintenance of the medicine box. The lower housing assembly has a medicine storage slot for storing medication, and the moving component of the upper housing assembly has a medicine dispensing port, allowing the dispensing port to move flexibly within the movable opening and align with different medicine storage slots for easy medication retrieval by the user. The flexible connector connects the mounting part and the moving component, achieving a seal on the medicine storage slot to prevent accidental ingestion of medication and to prevent dust from entering the medicine box.

[0014] In one embodiment, a driving component is further included. This driving component drives the movable component to move within the movable opening, causing the dispensing port to be positioned opposite at least one of the medicine storage compartments. A flexible connector is surrounding the periphery of the movable component and connected to the periphery of the movable opening, allowing the flexible connector to close the movable opening except for the area where the movable component is located. The driving component enables the movable component to move within the movable opening, thereby aligning the dispensing port with at least one medicine storage compartment. This automatic positioning function eliminates the need for manual adjustment of the dispensing port position, improving the convenience and accuracy of dispensing medicine. The flexible connector surrounding the periphery of the movable component and connected to the periphery of the movable opening allows the flexible connector to close the entire movable opening except for the area where the movable component is located. The design of the flexible connector makes the movement of the movable component more flexible while effectively sealing part of the medicine storage compartment. This compact design saves internal space in the medicine box, making the overall medicine box lighter.

[0015] In one embodiment, the moving component includes a first moving member and a second moving member, the length direction of the first moving member intersecting the length direction of the second moving member. The driving component includes a first driving component and a second driving component, the first moving member and the second moving member being connected to the first driving component and the second driving component, respectively. The first driving component can drive the first moving member to reciprocate along the length direction of the second moving member, and the second driving component can drive the second moving member to reciprocate along the length direction of the first moving member. The first moving member and the second moving member cooperate to form the dispensing port. By driving the first moving member and the second moving member respectively through the first driving component and the second driving component, and the first moving member and the second moving member being perpendicular to each other, precise movement of the dispensing port in a two-dimensional plane can be achieved, making the movement control of the dispensing port more flexible. In addition, the movement of each moving member can be controlled individually as needed to achieve more complex dispensing paths and operations, thereby improving the flexibility, accuracy and efficiency of dispensing, while maintaining a compact structure. Attached Figure Description

[0016] Figure 1 A 3D view of a smart pillbox with medication recording functionality;

[0017] Figure 2 for Figure 1 Enlarged view of a portion at point A;

[0018] Figure 3 This is a structural schematic diagram of the printing device and the upper housing assembly;

[0019] Figure 4 This is a schematic diagram of the lower housing assembly.

[0020] Figure 5 This is a schematic diagram of the upper housing assembly.

[0021] Figure 6 This is a 3D view of the installation section.

[0022] The correspondence between the reference numerals and the component names is as follows:

[0023] 1. Medicine box shell, 11. Lower shell assembly, 12. Upper shell assembly, 121. Mounting part, 122. Moving assembly, 1221. First moving part, 1222. Second moving part, 123. Flexible connector, 101. Medicine storage tank, 102. Medicine dispensing port, 103. Paper outlet, 104. Movable opening.

[0024] 2. Opening and closing mechanism;

[0025] 3. Printing device;

[0026] 4 drive components, 41 first drive component, 42 second drive component;

[0027] 5 ink accumulation discs;

[0028] 6 weight sensors. Detailed Implementation

[0029] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0030] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.

[0031] The following describes some embodiments of the smart pillbox with medication recording function according to the present invention, with reference to the accompanying drawings.

[0032] like Figures 1 to 6 As shown in the figure, this embodiment discloses a smart pillbox with medication recording function, including: a pillbox shell 1, an opening and closing mechanism 2, a printing device 3, and a control module. The pillbox shell 1 is provided with a medicine storage tank 101 and a medicine dispensing port 102, the medicine dispensing port 102 being connected to the medicine storage tank 101, and the pillbox shell 1 is provided with a paper outlet 103. The opening and closing mechanism 2 is disposed on the pillbox shell 1 and located at the medicine dispensing port 102, and the opening and closing mechanism 2 is used to control the closing and opening of the medicine dispensing port 102. The printing device 3 is disposed on the pillbox shell 1, and the paper output end of the printing device 3 is disposed opposite to the paper outlet 103. The control module is disposed on the pillbox shell 1, and the opening and closing mechanism 2 and the printing device 3 are both electrically connected to the control module.

[0033] This application discloses a smart pillbox with a medication record function. The pillbox shell 1 has a medication storage compartment 101 and a dispensing port 102, which communicates with the storage compartment 101 for convenient medication retrieval. An opening and closing mechanism 2 is located at the dispensing port 102, precisely controlling its opening and closing to ensure safe medication storage. A printing device 3 can print medication records in real time and output them from the paper output port 103. After each medication retrieval, the printing device 3 prints the time, dosage, and other information, providing users with a clear and intuitive medication record. A control module is electrically connected to the opening and closing mechanism 2 and the printing device 3, enabling intelligent control of the entire pillbox. The control module can control not only the movement of the opening and closing mechanism 2 but also the printing operation of the printing device 3 and store the user's medication records. The physical protection of the opening and closing mechanism 2 and the data storage of the control module provide multiple safeguards for user medication safety, effectively preventing accidental ingestion or missed doses. By integrating the printing device 3 and the control module, real-time printing and data storage of medication records are realized, providing users with a convenient, safe, and traceable medication management solution.

[0034] like Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further includes a weight sensor 6, which is disposed on the medicine box housing 1 and electrically connected to the control module. The weight sensor 6 is used to detect the weight of the medicine in the medicine storage tank 101. By using the weight sensor 6, the change in the weight of the medicine after each dispensing can be accurately measured, thereby calculating the user's dosage each time. The control module can record this data and, in conjunction with the printing device 3, print out the dosage for each dispensing, providing the user with a more detailed and accurate medication record. Based on the remaining amount of medicine detected by the weight sensor 6 and the user's medication plan, the control module can intelligently determine whether to remind the user to take the medicine on time or to replenish the medicine. For example, when the remaining amount of medicine is insufficient, the control module can remind the user to replenish the medicine on time through sound, light, or an app to prevent missed doses or interrupted administration.

[0035] like Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the number of drug storage tanks 101 is multiple, and each drug storage tank 101 is equipped with a weight sensor 6. By equipping each drug storage tank 101 with an independent weight sensor 6, the weight of the drug in each drug storage tank 101 can be monitored independently, thereby accurately recording the dosage of the drug in the corresponding drug storage tank 101, realizing refined management of different drugs, and allowing users to clearly understand the dosage taken and the remaining amount of each drug.

[0036] Specifically, each medicine storage tank 101 stores one type of medicine. Based on the weight changes in each medicine storage tank 101, the dosage and administration time of the corresponding medicine can be determined.

[0037] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further includes a driving component 4, which is disposed on the medicine box housing 1. The driving component 4 can drive the dispensing port 102 to be positioned opposite to at least one medicine storage tank 101. By driving the dispensing port 102 to be positioned opposite to at least one medicine storage tank 101, the automatic positioning and selection of the dispensing port 102 is achieved, which not only simplifies the user's medication dispensing operation but also effectively improves the accuracy and safety of medication use. The driving component 4 works in conjunction with components such as the control module and the weight sensor 6 to achieve more intelligent medication management. For example, the control module can automatically select the medicine storage tank 101 that needs to be dispensed according to the user's medication plan and control the driving component 4 to move the dispensing port 102 to the corresponding position. Simultaneously, the weight sensor 6 detects the remaining medication amount to record and store the user's medication records.

[0038] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further includes an ink collection tray 5, which is installed inside the medicine box housing 1. The ink collection tray 5 and the medicine box housing 1 enclose a mounting cavity, in which the printing device 3 is installed. The ink collection tray 5 is used to collect ink leaked from the printing device 3. By installing the ink collection tray 5 inside the medicine box housing 1 and forming a mounting cavity with the medicine box housing 1, the printing device 3 can be installed within the mounting cavity. This design effectively prevents ink leaked from the printing device 3 from contaminating other components or medications inside the medicine box. The ink collection tray 5 effectively solves the potential ink leakage problem of the printing device 3, protecting not only the internal components of the medicine box but also maintaining the cleanliness of the medicine box.

[0039] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the ink accumulation disk 5 is detachably installed inside the medicine box housing 1. The detachable design of the ink accumulation disk 5 allows users to easily remove it from the medicine box housing 1 for cleaning or replacement, helping to maintain the hygiene of the smart medicine box and ensuring its normal operation.

[0040] In addition to the features of the above embodiments, this embodiment further specifies that: the control module includes a control board, a storage module, and a communication module. The storage module and the communication module are electrically connected to the control board. The storage module is used to store medication records, and the communication module is used to send the medication records to external devices. The control board, as the core of the control module, is responsible for coordinating the work of the storage module and the communication module, realizing intelligent control of the entire medicine box, and ensuring accurate storage and reliable transmission of medication records. The storage module stores the user's medication records, including information such as medication time, dosage, and drug type. The communication module can send the medication records stored in the storage module to external devices, such as mobile phones or apps. The remote transmission function allows users to view and manage their medication records anytime, anywhere, and also facilitates doctors or family members in understanding the user's medication situation.

[0041] Specifically, the control module includes a clock unit, which is capable of acquiring the time of each medication dispensing.

[0042] like Figure 1 and Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further specifies that at least one edge of the paper outlet 103 is provided with paper cutting teeth. The paper cutting teeth allow users to easily and quickly tear off the paper after printing the medication record without using scissors or other tools, simplifying the operation process. At the same time, it ensures the safety and reliability of the paper cutting process, preventing users from being scratched by sharp edges, which is especially safe for the elderly. The paper cutting teeth ensure neat paper cut edges, making the printed medication record easy for users to view and save.

[0043] like Figure 4 , Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the medicine box shell 1 includes a lower shell assembly 11 and an upper shell assembly 12, with the upper shell assembly 12 covering the lower shell assembly 11. Specifically, the upper shell assembly 12 and the lower shell assembly 11 are detachably connected. The lower shell assembly 11 is provided with a medicine storage slot 101; the upper shell assembly 12 includes a mounting part 121, a moving component 122, and a flexible connector 123. The mounting part 121 is disposed on the lower shell assembly 11 and has a movable opening 104. The moving component 122 has a medicine dispensing port 102. By adopting a split structure of the lower shell assembly 11 and the upper shell assembly 12, the assembly and maintenance of the medicine box are facilitated. The lower shell assembly 11 is provided with a medicine storage slot 101 for storing medicine, and the moving component 122 of the upper shell assembly 12 has a medicine dispensing port 102, allowing the medicine dispensing port 102 to move flexibly within the movable opening 104 and align with different medicine storage slots 101, making it convenient for users to retrieve medicine. The flexible connector 123 is used to connect the mounting part 121 and the moving component 122 to seal the medicine storage tank 101, prevent users from accidentally ingesting medicine, and prevent dust from entering the medicine box.

[0044] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further includes a driving component 4. The driving component 4 can drive the moving component 122 to move within the movable opening 104, so that the dispensing port 102 is positioned opposite to at least one medicine storage tank 101. A flexible connector 123 is connected around the periphery of the moving component 122 and is also connected to the periphery of the movable opening 104, so that the flexible connector 123 closes the movable opening 104 except for the area where the moving component 122 is located. The driving component 4 can drive the moving component 122 to move within the movable opening 104, thereby positioning the dispensing port 102 opposite to at least one medicine storage tank 101. This automatic positioning function eliminates the need for the user to manually adjust the position of the dispensing port 102, improving the convenience and accuracy of dispensing medicine. The flexible connector 123 is connected around the periphery of the moving component 122 and is also connected to the periphery of the movable opening 104, so that the flexible connector 123 can close the entire movable opening 104 except for the area where the moving component 122 is located. The design of the flexible connector 123 makes the movement of the movable component 122 more flexible, while effectively sealing part of the medicine storage tank 101. This structural design is compact, saves internal space of the medicine box, and makes the medicine box lighter overall.

[0045] like Figure 3 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further defines: the moving component 122 includes a first moving member 1221 and a second moving member 1222, the length direction of the first moving member 1221 intersects the length direction of the second moving member 1222, the driving component 4 includes a first driving component 41 and a second driving component 42, the first moving member 1221 and the second moving member 1222 are respectively connected to the first driving component 41 and the second driving component 42, the first driving component 41 can drive the first moving member 1221 to reciprocate along the length direction of the second moving member 1222, the second driving component 42 can drive the second moving member 1222 to reciprocate along the length direction of the first moving member 1221, and the first moving member 1221 and the second moving member 1222 cooperate to form a medicine dispensing port 102. The first driving component 41 and the second driving component 42 drive the first moving component 1221 and the second moving component 1222 respectively, and the first moving component 1221 and the second moving component 1222 are perpendicular to each other. This enables precise movement of the dispensing port 102 in a two-dimensional plane, making the movement control of the dispensing port 102 more flexible. In addition, the movement of each moving component can be controlled individually as needed to achieve more complex dispensing paths and operations, thereby improving the flexibility, accuracy and efficiency of dispensing medicine, while maintaining a compact structure.

[0046] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0047] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A smart pillbox with medication recording function, characterized in that, include: The medicine box shell (1) is provided with a medicine storage tank (101) and a medicine dispensing port (102), the medicine dispensing port (102) is connected to the medicine storage tank (101), and the medicine box shell (1) is provided with a paper outlet (103). An opening and closing mechanism (2) is provided on the medicine box shell (1) and located at the medicine dispensing port (102). The opening and closing mechanism (2) is used to control the closing and opening of the medicine dispensing port (102). A printing device (3) is disposed on the medicine box housing (1), and the paper output end of the printing device (3) is disposed opposite to the paper output port (103); The control module is disposed on the medicine box shell (1), and the opening and closing mechanism (2) and the printing device (3) are electrically connected to the control module.

2. The smart pillbox with medication recording function according to claim 1, characterized in that, It also includes a weight sensor (6), which is disposed on the medicine box housing (1) and electrically connected to the control module. The weight sensor (6) is used to detect the weight of the medicine in the medicine storage tank (101).

3. The smart pillbox with medication recording function according to claim 2, characterized in that, There are multiple drug storage tanks (101), and each drug storage tank (101) is equipped with one of the weight sensors (6).

4. The smart pillbox with medication recording function according to claim 3, characterized in that, It also includes a drive assembly (4), which is disposed on the medicine box housing (1) and is capable of driving the medicine dispensing port (102) to be disposed opposite to at least one of the medicine storage tanks (101).

5. The smart pillbox with medication recording function according to claim 1, characterized in that, It also includes an ink collection tray (5), which is installed inside the medicine box housing (1). The ink collection tray (5) and the medicine box housing (1) form an installation cavity. The printing device (3) is installed in the installation cavity. The ink collection tray (5) is used to receive the printing ink leaked by the printing device (3).

6. The smart pillbox with medication recording function according to claim 5, characterized in that, The ink accumulation plate (5) is detachably installed on the inside of the medicine box housing (1).

7. The smart pillbox with medication recording function according to claim 1, characterized in that, The control module includes a control board, a storage module, and a communication module. The storage module and the communication module are electrically connected to the control board. The storage module is used to store medication records, and the communication module is used to send the medication records to external devices. And / or at least one edge of the paper outlet (103) is provided with paper cutting teeth.

8. The smart pillbox with medication recording function according to claim 1, characterized in that, The medicine box shell (1) includes a lower shell assembly (11) and an upper shell assembly (12). The upper shell assembly (12) covers the lower shell assembly (11). The lower shell assembly (11) is provided with the medicine storage tank (101). The upper shell assembly (12) includes a mounting part (121), a moving part (122), and a flexible connector (123). The mounting part (121) is disposed on the lower shell assembly (11). The mounting part (121) is provided with a movable opening (104). The moving part (122) is provided with a medicine dispensing port (102).

9. The smart pillbox with medication recording function according to claim 8, characterized in that, It also includes a drive assembly (4) that can drive the moving assembly (122) to move within the movable opening (104) so ​​that the dispensing port (102) is positioned opposite to at least one of the medicine storage tanks (101). The flexible connector (123) is connected around the periphery of the moving assembly (122) and is connected to the periphery of the movable opening (104) so ​​that the flexible connector (123) closes the movable opening (104) except for the area where the moving assembly (122) is located.

10. The smart pillbox with medication recording function according to claim 9, characterized in that, The moving component (122) includes a first moving part (1221) and a second moving part (1222). The length direction of the first moving part (1221) intersects the length direction of the second moving part (1222). The driving component (4) includes a first driving component (41) and a second driving component (42). The first moving part (1221) and the second moving part (1222) are respectively connected to the first driving component (41) and the second driving component (42). The first driving component (41) can drive the first moving part (1221) to reciprocate along the length direction of the second moving part (1222). The second driving component (42) can drive the second moving part (1222) to reciprocate along the length direction of the first moving part (1221). The first moving part (1221) and the second moving part (1222) cooperate to form the medicine dispensing port (102).