Intelligent medicine box
By integrating multiple medication dispensing and brewing mechanisms into the smart pillbox, the problem of not being able to simultaneously store and brew multiple medications and powders in existing technologies has been solved, enabling efficient and timely medication management for the elderly.
Patent Information
- Application Number
- CN202411840509.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2044-12-13
AI Technical Summary
Existing smart pillboxes cannot simultaneously store and retrieve multiple medications and prepare powdered medicines, nor can they effectively manage the elderly's timely medication administration.
A smart pillbox was designed, comprising a capsule dispensing mechanism, a tablet dispensing mechanism, an oral liquid dispensing mechanism, and a powder preparation mechanism. The medication is delivered via a conveying mechanism, and the dispensing and preparation process is managed by a control system.
It enables the storage and retrieval of multiple medications and the preparation of powdered medicines, improving the efficiency and timeliness of medication use for the elderly and making the medication process more convenient for them.
Smart Images

Figure CN119873067B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical supplies technology, specifically to a smart pillbox. Background Technology
[0002] Currently, my country's population is aging significantly, and many elderly people suffer from chronic diseases requiring daily medication. As most elderly people age, they experience forgetfulness, making it difficult for them to take their medication on time, whether when sick or in daily life. If multiple medications need to be taken at different times, remembering the complex and varied list can be challenging.
[0003] To address the aforementioned issues, Chinese Patent Application No. 201910233058.3 discloses an intelligent pillbox. This disclosed intelligent pillbox includes a box body and several dispensing structures disposed within the box body. A controller is located within the box body. Each dispensing structure includes a shell with an internal separator, which divides the interior of the shell into a storage compartment and a dispensing compartment. A core is located within the dispensing compartment, and the core has multiple dispensing channels of various sizes, each corresponding to a different sized drug. The separator includes an exposed portion for exposing one dispensing channel and a blocking portion for blocking the remaining dispensing channels. Drugs in the storage compartment enter the dispensing channels through the exposed portion. A dispensing port is located at the bottom of the shell. The core rotates the separator within the shell until the dispensing channel aligns with the dispensing port, causing the drug to fall out from the dispensing port. Chinese patent application number 202322104071.3 discloses a novel multifunctional smart medicine box for the elderly. The disclosed smart medicine box is provided with a medicine box body; a lid is provided on the medicine box body; the lid and the medicine box body are connected by a rotating shaft; a medicine storage slot is provided on the medicine box body, and a medicine storage cup is provided in the medicine storage slot, and the medicine storage cup is snapped together with the medicine storage slot; a display screen is provided below each medicine storage slot; buzzers are provided on both sides of the medicine box body, and a control panel is provided on the front of the medicine box body.
[0004] The aforementioned prior art uses a controller to control the dispensing structure. The dispensing structure includes a storage chamber and a dispensing chamber. The storage chamber stores the medication, and the dispensing chamber contains a core with a dispensing channel for dispensing the medication. While this solution can dispense medication, it can only dispense one type of capsule or tablet, and cannot dispense multiple types of capsules, tablets, granules, or oral liquids. In contrast, some prior art uses multiple storage cups in a medicine box to store various medications and includes a buzzer to remind users to take their medication. However, this medicine box only serves as a reminder and cannot be used for storing or preparing medications. Summary of the Invention
[0005] The present invention aims to overcome the defects in the prior art and provide a smart pillbox that can store, dispense, and dispense various drugs, as well as prepare powdered medicines.
[0006] To achieve the above-mentioned objectives, the present invention adopts the following technical solution: a smart medicine box, comprising a frame, wherein the frame is provided with a plurality of capsule dispensing mechanisms and a plurality of tablet dispensing mechanisms, and a conveying mechanism for conveying capsules and / or tablets is provided between the plurality of capsule dispensing mechanisms and the plurality of tablet dispensing mechanisms; a pressing mechanism is provided at the top of the frame, and oral liquid dispensing mechanism and powder preparation mechanism are provided on both sides of the pressing mechanism; the frame is also provided with a medicine storage compartment and a control system.
[0007] As a preferred embodiment of the present invention, the oral liquid dispensing mechanism includes an oral liquid rack and an oral liquid compartment disposed on the oral liquid rack. The bottom of the oral liquid compartment is provided with a chassis for moving the oral liquid, and the oral liquid rack is provided with a drive motor for driving the chassis to rotate.
[0008] As a preferred embodiment of the present invention, the oral liquid dispensing mechanism further includes an opening assembly for opening the oral liquid. The opening assembly includes a lifting screw and a movable part threadedly connected to the lifting screw. The movable part is provided with a vertically arranged opening part, and an oral liquid seat for placing the oral liquid is provided below the opening part. The oral liquid seat is provided with a sensor.
[0009] As a preferred embodiment of the present invention, the powder preparation mechanism includes a preparation rack and a powder compartment disposed on the preparation rack. The bottom of the powder compartment is provided with a plurality of dispensing wheels for moving the powder out, and the preparation rack is provided with a dispensing motor for driving the dispensing wheels to rotate.
[0010] As a preferred embodiment of the present invention, the brewing rack is provided with a cutter for cutting the powder, the cutter is located at the outlet of the powder compartment, and the brewing rack is provided with a cutting motor for driving the cutter to rotate.
[0011] As a preferred embodiment of the present invention, the brewing rack is provided with a medicine dispensing baffle, a guide plate for guiding the flow of the powder is provided below the medicine dispensing baffle, a cup holder is provided below the guide plate, and a water cup for receiving the powder is rotatably connected to the cup holder.
[0012] As a preferred embodiment of the present invention, the pressing mechanism includes a pressing plate and a pressing wheel disposed on it. The pressing plate is provided with a pressing motor for driving the pressing wheel to rotate. The output end of the pressing motor is provided with a reduction gear connected to the pressing wheel. The pressing plate is also provided with a pusher and a push motor for driving the pusher to move.
[0013] As a preferred embodiment of the present invention, the capsule dispensing mechanism includes a capsule chamber and a first drug inlet channel disposed above the capsule chamber. The first drug inlet channel is disposed below the drug pressing mechanism. A capsule disc for dispensing drugs is disposed below the capsule chamber. A capsule hole adapted to the capsule is formed on the capsule disc. A capsule motor for driving the capsule disc to rotate is disposed below the capsule disc.
[0014] As a preferred embodiment of the present invention, the tablet dispensing mechanism includes a tablet compartment and a second infeed channel disposed above the tablet compartment. A tablet tray for dispensing is disposed below the tablet compartment. The tablet tray has tablet holes adapted to the tablets. A tablet motor for driving the tablet tray to rotate is disposed below the tablet holes.
[0015] As a preferred embodiment of the present invention, the conveying mechanism includes a conveying frame and a conveyor belt disposed on the conveying frame. The conveyor belt is located below the capsule dispensing mechanism and the tablet dispensing mechanism. The conveying frame is provided with a conveying motor for driving the conveyor belt to operate.
[0016] Compared with the prior art, the beneficial effects of the present invention are:
[0017] 1. The system utilizes capsule and tablet dispensing mechanisms to store and dispense capsules and tablets. A conveying mechanism transports these dispensing and tablet components. When capsules are packaged in blister packs, a pressing mechanism squeezes the capsules out of the blister packs, allowing them to enter the capsule dispensing mechanism. An oral liquid dispensing mechanism dispenses the oral liquid and punches holes in it for easier administration by the elderly. Additionally, a powder preparation mechanism cuts and prepares the powder packets, enabling the dispensing and preparation of various medications. This system facilitates medication use for the elderly, improves dispensing efficiency, and ensures timely medication administration.
[0018] 2. Furthermore, the lifting screw in the oral liquid dispensing mechanism drives the opening piece to open the oral liquid, thereby facilitating medication use for the elderly and improving the convenience of taking medication.
[0019] 3. Furthermore, the dispensing motor in the powder preparation mechanism drives the dispensing wheel 203 to rotate, thereby dispensing the powder. The cutting motor controls the rotation of the cutter 205 to cut the powder packet. The powder enters the water cup through the guide plate 207, and the cup base drives the water cup to rotate. Hot water is poured into the water cup, thus realizing the preparation of the powder and making it convenient for the elderly to take medicine. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of the present invention;
[0021] Figure 2This is a top view of the present invention;
[0022] Figure 3 This is a schematic diagram of the oral liquid dispensing mechanism of the present invention;
[0023] Figure 4 This is a structural schematic diagram of the open component;
[0024] Figure 5 This is a schematic diagram of the oral liquid container;
[0025] Figure 6 This is a schematic diagram of the powder preparation mechanism;
[0026] Figure 7 This is a top view of the powder preparation mechanism;
[0027] Figure 8 This is a schematic diagram of the capsule dispensing mechanism;
[0028] Figure 9 This is a schematic diagram of the first drug inlet channel;
[0029] Figure 10 This is a schematic diagram of the drug-pressing mechanism;
[0030] Figure 11 This is a top view of the drug-pressing mechanism;
[0031] Figure 12 This is a schematic diagram of the tablet dispensing mechanism 5;
[0032] Figure 13 This is a schematic diagram of the capsule disc structure;
[0033] Figure 14 This is a schematic diagram of the tablet tray structure;
[0034] Figure 15 This is a structural schematic diagram of the conveying mechanism.
[0035] Reference numerals: Oral liquid dispensing mechanism 1, oral liquid chamber 101, inlet 1011, outlet 1012, outlet baffle 1013, inlet baffle 1014, chassis 1015, drive motor 102, drive shaft 1021, opening assembly 103, lifting screw 1031, oral liquid holder 1032, lifting screw gear 1033, moving part 1034, sensor 1035, opening part 1036, oral liquid rack 104; Powder preparation mechanism 2, preparation rack 201, powder chamber 202, dispensing wheel 203, dispensing wheel shaft 2031, dispensing wheel shaft gear 2032, adjusting shaft 2033, adjusting gear 2034, dispensing motor 204, dispensing motor gear 2041, cutter 205, dispensing baffle 206, guide plate 207, cutting motor 208, cup holder 209, water cup 209 1. Capsule dispensing mechanism 3. Capsule compartment 301. First inlet channel 302. Capsule disc 303. Capsule hole 3031. Capsule motor 304. Capsule disc shaft 305. Capsule disc shaft gear 3051. Pressing mechanism 4. Pressing plate 401. Dispensing port 4011. Pressing wheel 402. Pressing wheel shaft 4021. Reduction assembly 403. Driven gear 4031. Drive gear 4032. Pushing component 404. Pushing motor 405. Pushing screw 4051. Pressing motor 406. Tablet dispensing mechanism 5. Tablet compartment 501. Second inlet channel 502. Tablet disc 503. Tablet hole 5031. Tablet motor 504. Tablet disc shaft 505. Frame 6. Control system 7. Storage compartment 8. Conveying mechanism 9. Conveying frame 901. Conveying belt 902. Conveying motor 903. Conveying pulley 904. Detailed Implementation
[0036] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0037] like Figures 1-15 As shown, a smart pillbox includes a frame 6, on which are provided a plurality of capsule dispensing mechanisms 3 and a plurality of tablet dispensing mechanisms 5, and a conveying mechanism 9 for conveying capsules and / or tablets is provided between the plurality of capsule dispensing mechanisms 3 and the plurality of tablet dispensing mechanisms 5; a pressing mechanism 4 is provided at the top of the frame 6, and oral liquid dispensing mechanism 1 and powder preparation mechanism 2 are provided on both sides of the pressing mechanism 4; the frame 6 is also provided with a medicine storage compartment 8 and a control system 7.
[0038] Furthermore, several capsule dispensing mechanisms 3 and several tablet dispensing mechanisms 5 are respectively arranged on opposite sides of the frame 6, with two of each. The specific positions and numbers of the capsule dispensing mechanisms 3 and tablet dispensing mechanisms 5 can be changed and adjusted according to actual medication needs. The conveying mechanism 9 is located in the lower middle part of the frame 6, with the capsule dispensing mechanisms 3 and tablet dispensing mechanisms 5 located on opposite sides of the conveying mechanism 9. The capsule dispensing mechanisms 3 and tablet dispensing mechanisms 5 are used to store and dispense capsules and tablets, and the conveying mechanism 9 transports the capsules and tablets from the capsule dispensing mechanisms 3 or tablet dispensing mechanisms 5. The pressing mechanism 4 is set up... At the bottom of the frame 6, and above the capsule dispensing mechanism 3 and the tablet dispensing mechanism 5, when the capsules are packaged in blister packs, the pressing mechanism 4 squeezes the capsules out of the blister packs, allowing them to enter the capsule dispensing mechanism 3. Additionally, the oral liquid dispensing mechanism 1 dispenses the oral liquid and punches holes in it, making it easier for the elderly to take. Furthermore, the powder preparation mechanism 2 cuts the powder packets and prepares the powder, thus enabling the dispensing and preparation of different medications, facilitating medication use for the elderly, improving dispensing efficiency, and ensuring timely medication administration.
[0039] In addition, a medicine storage compartment 8 is provided below the frame 6 to store medicines. When the medicines in the capsule dispensing mechanism 3, tablet dispensing mechanism 5, oral liquid dispensing mechanism 1, and powder preparation mechanism 2 are used up, the medicines in the medicine storage compartment 8 can be replenished. A control system 7 is also provided on the frame 6. The control system 7 sets parameters such as the quantity, type, and time of medication to ensure that the elderly can take their medicines on time and in the correct dosage. The control system 7 achieves the above functions by setting corresponding programs. The specific programs and parameter setting methods of the control system 7 are existing technologies, so they will not be described in detail.
[0040] The oral liquid dispensing mechanism 1 includes an oral liquid rack 104 and an oral liquid compartment 101 disposed on the oral liquid rack 104. The bottom of the oral liquid compartment 101 is provided with a chassis 1015 for moving the oral liquid. The oral liquid rack 104 is provided with a drive motor 102 for rotating the chassis 1015. Furthermore, the oral liquid compartment 101 has a storage space for storing the oral liquid. The oral liquid enters the storage space of the oral liquid compartment 101 through an inlet 1011. An inlet baffle 1014 is hinged to the inlet 1011 to prevent the oral liquid from leaking out of the inlet. The liquid falls at point 1011, forming an outlet 1012 on the oral liquid container 101. An outlet baffle 1013 is provided at the outlet 1012, which allows the oral liquid to accurately enter the next process. A chassis 1015 is connected to the bottom of the oral liquid container 101, and the chassis 1015 is rotatably connected to the oral liquid container 101. A drive shaft 1021 is provided on the chassis 1015, and the drive shaft 1021 is connected to the output end of the drive motor 102. The drive motor 102 drives the chassis 1015 to move the oral liquid.
[0041] The oral liquid dispensing mechanism 1 also includes an opening assembly 103 for opening the oral liquid container. The opening assembly 103 includes a lifting screw 1031 and a movable part 1034 threadedly connected to the lifting screw 1031. The movable part 1034 is provided with a vertically arranged opening part 1036. Below the opening part 1036 is an oral liquid holder 1032 for placing the oral liquid. The oral liquid holder 1032 is provided with a sensor 1035. Furthermore, the opening assembly 103 is disposed on the oral liquid rack 104, and the oral liquid holder 1032 is located at the outlet 1012 of the oral liquid reservoir 101. The oral liquid coming out of the oral liquid reservoir 101 enters the outlet 1012. The oral liquid holder 1032 is equipped with a sensor 1035 for detecting the oral liquid. The sensor 1035 detects whether the oral liquid has entered the oral liquid holder 1032. The lower end of the lifting screw 1031 is equipped with a lifting screw gear 1033. The oral liquid holder 104 is equipped with a motor for driving the lifting screw 1031 to rotate by connecting the lifting screw gear 1033. The motor drives the lifting screw 1031 to rotate, which drives the moving part 1034 to move down, thereby causing the opening part 1036 to move down. Then, the end of the opening part 1036 opens the oral liquid, making it convenient for the elderly to take medicine.
[0042] The powder preparation mechanism 2 includes a preparation rack 201 and a powder container 202 disposed on the preparation rack 201. The bottom of the powder container 202 is provided with several dispensing wheels 203 for moving the powder out. The preparation rack 201 is provided with a dispensing motor 204 for driving the dispensing wheels 203 to rotate. Furthermore, the top and bottom of the powder container 202 are open, and one side of the powder container 202 is also open. The powder is placed into the powder container 202. Multiple sets of dispensing wheels 203 are provided, and several dispensing wheels 203 are arranged along the dispensing direction. Dispensing wheel shafts are provided on the dispensing wheels 203. 2031, a dispensing wheel shaft gear 2032 is provided on the dispensing wheel shaft 2031, and a directional shaft 2033 is also provided between adjacent dispensing wheels 2031. A directional gear 2034 is provided on the directional shaft 2033, which meshes with the dispensing wheel shaft gears 2032 on both sides. The directional gear 2034 makes the rotation direction of several dispensing wheels 203 the same. The output end of the dispensing motor 204 is provided with a dispensing motor gear 2041 that meshes with the dispensing shaft gear 2032. The dispensing motor 204 drives several dispensing wheels 203 to rotate in the same direction, thereby realizing the dispensing of the granules.
[0043] The brewing rack 201 is equipped with a cutter 205 for cutting the powder. The cutter 205 is located at the outlet of the powder compartment 202. The brewing rack 201 is also equipped with a cutting motor 208 for driving the cutter 205 to rotate. Furthermore, the cutter 205 is positioned above the dispensing wheel 203. The cutter 205 is equipped with a rotating shaft, which is rotatably mounted on the brewing rack 201. The output end of the cutting motor 208 is connected to the rotating shaft to drive the cutter 205 to rotate, thereby achieving the cutting of the powder package.
[0044] The brewing rack 201 is equipped with a dispensing baffle 206. Below the dispensing baffle 206 is a guide plate 207 for guiding the flow of the powder. Below the guide plate 207 is a cup holder 209, on which a water cup 2091 for receiving the powder is rotatably connected. Furthermore, the dispensing baffle 206 is located at the front end of the cutter 205, i.e., in the direction of powder dispensing. After being cut by the cutter 205, the powder in the powder packet enters the water cup through the dispensing baffle 206 and the guide plate 207. In addition, a water supply pipe is provided on the brewing rack 201, with the end of the water supply pipe facing the water cup 2091. The water supply pipe is connected to the water supply tank for adding water to the water cup 2091. The cup holder 209 is equipped with a motor that drives the water cup 2091 to rotate. When the powder enters the water cup 2091, hot water is added to the water cup 2091 through the water supply pipe. At the same time, the motor drives the water cup 2091 to rotate, thereby realizing the automatic brewing of the powder, which makes it more convenient for the elderly to take medicine.
[0045] The pressing mechanism 4 includes a pressing plate 401 and a pressing wheel 402 mounted on it. The pressing plate 401 is equipped with a pressing motor 406 that drives the pressing wheel 402 to rotate. The output end of the pressing motor 406 is equipped with a reduction gear 403 connected to the pressing wheel 402. The pressing plate 401 also has a pusher 404 and a push motor 405 for driving the pusher 404 to move. Furthermore, the pressing plate 401 is horizontally mounted on the frame 6, and has a dispensing port 4011. The pressing wheel 402 is positioned above the dispensing port 4011, and has a pressing wheel shaft 4021. The pressing wheel shaft 4021 is rotatably mounted on the frame 6. The reduction gear 403 includes a driving gear 4032 and a driven gear 403. 1. The diameter and number of teeth of the driven gear 4031 are much larger than those of the driving gear 4032. The driven gear 4031 is connected to the pressing wheel shaft 4021, and the driving gear 4032 is connected to the output end of the pressing motor 406. The pressing motor 406 drives the pressing wheel 402 to rotate. In addition, the pusher 404 is set on the pressing plate 401. The output end of the push motor 405 is connected to the push screw 4051. The pusher 404 is threadedly connected to the push screw 4051. The push motor 405 drives the push screw 4051 to rotate, thereby driving the pusher 404 to move horizontally, and then pushing the medicine plate to move in the direction of the pressing wheel 402, thereby squeezing out the medicine in the medicine plate and exiting through the medicine outlet 4011.
[0046] The capsule dispensing mechanism 3 includes a capsule chamber 301 and a first inlet channel 302 disposed above the capsule chamber 301. The first inlet channel 302 is located below the pressing mechanism 4. A capsule tray 303 for dispensing medication is provided below the capsule chamber 301. The capsule tray 303 has capsule holes 3031 adapted to the capsules. A capsule motor 304 for driving the capsule tray 303 to rotate is located below the capsule tray 303. Furthermore, the first inlet channel 302 is inclined, and its top end is located below the dispensing port 4011 of the pressing mechanism 4. The capsule enters the capsule chamber 301 through the first drug inlet channel 302. The capsule chamber 301 is open at both the top and bottom. The capsule disc 303 is rotatably positioned below the capsule chamber 301. The capsule disc 303 is provided with a capsule disc shaft 305 and a capsule disc shaft gear 3051. The output end of the capsule motor 304 is provided with a gear that meshes with the capsule disc shaft gear 3051. The capsule motor 304 drives the capsule disc 303 to rotate. The capsule enters the conveying mechanism 9 through the capsule hole 3031 provided on the capsule disc 303 for conveying.
[0047] The tablet dispensing mechanism 5 includes a tablet bin 501 and a second infeed channel 502 located above the tablet bin 501. Below the tablet bin 501 is a tablet tray 503 for dispensing tablets. The tablet tray 503 has tablet holes 5031 adapted to the tablets. Below the tablet holes 5031 is a tablet motor 504 for driving the tablet tray 503 to rotate. Furthermore, the second infeed channel 502 is inclined. The tablets are added to the tablet bin 501 through the second infeed channel 502. Both the upper and lower ends of the tablet bin 501 are open. The tablet tray 503 is rotatably located below the tablet bin 501. A tablet tray shaft 505 is provided on the tablet tray 503. The tablet tray shaft 505 is connected to the tablet motor 504. The tablet motor 504 drives the tablet tray 503 to rotate. The tablets enter the conveying mechanism 9 through the tablet holes 5031 on the tablet tray 503 for conveying.
[0048] The conveying mechanism 9 includes a conveying frame 901 and a conveyor belt 902 mounted on the conveying frame 901. The conveyor belt 902 is located below the capsule dispensing mechanism 3 and the tablet dispensing mechanism 5. The conveying frame 901 is equipped with a conveying motor 903 for driving the conveyor belt 902. Furthermore, the conveying frame 901 is located below the frame 6 and is positioned below several capsule dispensing mechanisms 3 and several tablet dispensing mechanisms 5. Conveyor pulleys 904 are provided at both ends of the conveying frame 901. The conveyor belt 902 is connected to the conveyor pulleys 904 and is located below the capsule tray 303 of the capsule dispensing mechanism 3 and the tablet tray 503 of the tablet dispensing mechanism 5. The conveyor belt 902 is driven to rotate by the conveyor motor 903, thereby realizing the conveying of capsules and tablets.
[0049] In addition, all of the above processes can be controlled by the control system 7, thereby realizing the automatic execution of steps such as dispensing medicine and brewing.
[0050] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention; therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0051] Although this paper makes extensive use of the figure's reference numerals: oral liquid dispensing mechanism 1, oral liquid chamber 101, inlet 1011, outlet 1012, outlet baffle 1013, inlet baffle 1014, chassis 1015, drive motor 102, drive shaft 1021, opening assembly 103, lifting screw 1031, oral liquid holder 1032, lifting screw gear 1033, moving part 1034, sensor 1035, opening... Component 1036, oral liquid holder 104, powder preparation mechanism 2, preparation rack 201, powder compartment 202, dispensing wheel 203, dispensing wheel shaft 2031, dispensing wheel shaft gear 2032, adjusting shaft 2033, adjusting gear 2034, dispensing motor 204, dispensing motor gear 2041, cutter 205, dispensing baffle 206, guide plate 207, cutting motor 208, cup holder 209, water cup 2091, glue The terms used include: capsule dispensing mechanism 3, capsule chamber 301, first drug inlet channel 302, capsule disc 303, capsule hole 3031, capsule motor 304, capsule disc shaft 305, capsule disc shaft gear 3051, drug pressing mechanism 4, drug pressing plate 401, drug outlet 4011, drug pressing wheel 402, drug pressing wheel shaft 4021, reduction assembly 403, driven gear 4031, driving gear 4032, pusher 404, push motor 405, push screw 4051, drug pressing motor 406, tablet dispensing mechanism 5, tablet chamber 501, second drug inlet channel 502, tablet disc 503, tablet hole 5031, tablet motor 504, tablet disc shaft 505, frame 6, control system 7, drug storage chamber 8, conveying mechanism 9, conveying frame 901, conveyor belt 902, conveyor motor 903, conveyor belt pulley 904, etc., but the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the nature of the invention; interpreting them as any additional limitation would be contrary to the spirit of the invention.
Claims
1. A smart pillbox, characterized in that, The device includes a frame (6), on which are provided a plurality of capsule dispensing mechanisms (3) and a plurality of tablet dispensing mechanisms (5), and a conveying mechanism (9) for conveying capsules and / or tablets is provided between the plurality of capsule dispensing mechanisms (3) and the plurality of tablet dispensing mechanisms (5); a pressing mechanism (4) is provided at the top of the frame (6), and an oral liquid dispensing mechanism (1) and a powder preparation mechanism (2) are provided on both sides of the pressing mechanism (4); a storage compartment (8) and a control system (7) are also provided on the frame (6); the oral liquid dispensing mechanism (1) includes an oral liquid rack (104) and an oral liquid compartment (101) disposed on the oral liquid rack (104), and the bottom of the oral liquid compartment (101) is... The system includes a chassis (1015) for moving the oral liquid, and a drive motor (102) for rotating the chassis (1015) on the oral liquid holder (104). The oral liquid dispensing mechanism (1) also includes an opening assembly (103) for opening the oral liquid. The opening assembly (103) includes a lifting screw (1031) and a moving part (1034) threadedly connected to the lifting screw (1031). The moving part (1034) has a vertically arranged opening part (1036), and an oral liquid holder (1032) for placing the oral liquid is provided below the opening part (1036). A sensor (1035) is provided on the oral liquid holder (1032). The presser... The structure (4) includes a pressing plate (401) and a pressing wheel (402) mounted on it. The pressing plate (401) is equipped with a pressing motor (406) for driving the pressing wheel (402) to rotate. The output end of the pressing motor (406) is equipped with a reduction gear (403) connected to the pressing wheel (402). The pressing plate (401) is also equipped with a pusher (404) and a push motor (405) for driving the pusher (404) to move. The capsule dispensing mechanism (3) includes a capsule chamber (301) and a first inlet channel (302) mounted above the capsule chamber (301). The first inlet channel (302) is located below the pressing mechanism (4). 1) A capsule tray (303) for dispensing medicine is provided below. A capsule hole (3031) adapted to the capsule is formed on the capsule tray (303). A capsule motor (304) for driving the capsule tray (303) to rotate is provided below the capsule tray (303). The tablet dispensing mechanism (5) includes a tablet compartment (501) and a second drug inlet channel (502) provided above the tablet compartment (501). A tablet tray (503) for dispensing medicine is provided below the tablet compartment (501). A tablet hole (5031) adapted to the tablet is formed on the tablet tray (503). A tablet motor (504) for driving the tablet tray (503) to rotate is provided below the tablet hole (5031).
2. The smart pillbox according to claim 1, characterized in that, The powder preparation mechanism (2) includes a preparation rack (201) and a powder chamber (202) set on the preparation rack (201). The bottom of the powder chamber (202) is provided with a plurality of dispensing wheels (203) for moving the powder out. The preparation rack (201) is provided with a dispensing motor (204) for driving the dispensing wheels (203) to rotate.
3. A smart pillbox according to claim 2, characterized in that, The brewing rack (201) is equipped with a cutter (205) for cutting the powder, the cutter (205) is located at the outlet of the powder container (202), and the brewing rack (201) is equipped with a cutting motor (208) for driving the cutter (205) to rotate.
4. A smart pillbox according to claim 2, characterized in that, The brewing rack (201) is provided with a medicine dispensing baffle (206), and a guide plate (207) for guiding the flow of the powder is provided below the medicine dispensing baffle (206). A cup holder (209) is provided below the guide plate (207), and a water cup (2091) for receiving the powder is rotatably connected to the cup holder (209).
5. A smart pillbox according to claim 1, characterized in that, The conveying mechanism (9) includes a conveying frame (901) and a conveyor belt (902) provided on the conveying frame (901). The conveyor belt (902) is located below the capsule dispensing mechanism (3) and the tablet dispensing mechanism (5). The conveying frame (901) is provided with a conveying motor (903) for driving the conveyor belt (902) to operate.
Citation Information
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Smart medicine box
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