Intelligent RFID medical cabinet for fine management of medicines

By introducing a conveyor belt and push rack into the intelligent RFID medical cabinet, combining motor and rack assembly, the front side of the medicine is taken and the back side of the medicine is to be tonic, which solves the problem of drug retention and achieves refined drug management and cost savings.

CN120477548AInactive Publication Date: 2025-08-15JIANGXI BAILIAN STEEL PROD
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Patent Information

Application Number
CN202510786988.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-13
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the process of taking medicines in the existing medical cabinet, the drug on the front side is detained for a long time, resulting in expired problems.

Method used

Design an intelligent RFID medical cabinet. By setting up a conveyor belt and push rack between the cabinet body and the tonic box, the method of taking medicine on the front side and the back side is realized, and combined with components such as servo motors, stepper motors and racks to ensure the smooth movement and replenishment of the medicine.

Benefits of technology

It avoids long-term retention of drugs on the back, reduces the risk of drug expiration, and achieves refined drug management and cost savings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical instrument storage and taking equipment, in particular to an intelligent RFID medical cabinet for fine management of medical drugs, which comprises a cabinet body provided with an RFID module, a cabinet door arranged on the cabinet body, a display screen mounted on the cabinet door, a handle arranged on the cabinet door, a plurality of mounting boxes arranged in the cabinet body, each mounting box being a box body with a cavity, and a push frame arranged on each mounting box. A plurality of medicine supplementing boxes are arranged on the cabinet body, the cabinet body is communicated with the medicine supplementing boxes, medicine supplementing assemblies are arranged in the medicine supplementing boxes and comprise connecting rods connected to the medicine supplementing boxes, rotating doors are arranged on the connecting rods, conveying belts are arranged on the medicine supplementing boxes, the conveying belts are connected with the mounting boxes, and medicine supplementing from the rear sides of the mounting boxes is achieved through the medicine supplementing assemblies. The medicine on the rear side is driven to move through movement of the push frame, so that long-term retention of the medicine on the rear side of the medical cabinet is avoided, expiration is avoided, and the management cost is saved.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical device storage and access equipment, and in particular to an intelligent RFID medical cabinet for refined management of medical drugs. Background Art

[0002] RFID: (Radio Frequency Identification) is a wireless communication technology that automatically identifies and tracks electronic tags attached to objects through radio waves, and can read data without physical contact or manual scanning.

[0003] In order to facilitate medical institutions to record the quantity and access of medicines, medical cabinets and RFID tags are usually combined to form smart RFID medical cabinets, which realize accurate management of medical drugs through radio frequency identification technology.

[0004] When taking medicine from a medical cabinet, the rule of taking and replenishing medicine from the front is usually adopted, that is, taking medicine near the outside of the cabinet door and replenishing medicine in the empty position on the front side. There is a situation where medicines piled up at the back of the medical cabinet are detained for a long time, resulting in expired medicines.

[0005] Based on this, the inventors proposed an intelligent RFID medical cabinet for refined management of medical drugs, which allows taking medicines from the front and replenishing medicines at the back, avoiding long-term retention of medicines at the back of the medical cabinet and saving management costs. Summary of the Invention

[0006] In response to the problems raised in the background technology, the present invention provides an intelligent RFID medical cabinet for refined management of medical drugs to solve the problems. The present invention will be further elaborated below.

[0007] An intelligent RFID medical cabinet for refined management of medical drugs includes a cabinet body provided with an RFID module, a cabinet door provided on the cabinet door, a display screen installed on the cabinet body, multiple installation boxes provided in the cabinet body, the installation box is a box body with a cavity inside, a push rack is provided on the installation box, multiple medicine replenishing boxes are provided on the cabinet body, the cabinet body is connected to the medicine replenishing box, a medicine replenishing assembly is provided in the medicine replenishing box, the medicine replenishing assembly includes a connecting rod connected to the medicine replenishing box, a revolving door is provided on the connecting rod, a conveyor belt is provided on the medicine replenishing box, and the conveyor belt is connected to the installation box to realize the action of replenishing medicine at the rear side.

[0008] Preferably, a servo motor is installed on the installation box, a second screw is provided on the servo motor, a movable plate is provided on the second screw, a push rack is provided on the movable plate, and the push rack is connected to the installation box to drive the push rack to move.

[0009] Preferably, a sealing plate is provided on the installation box to prevent medicines on the front side of the installation box from falling.

[0010] Preferably, the medicine replenishing box is provided with a stepper motor, a probe is provided on the medicine replenishing box, the probe is electrically connected to the stepper motor, the stepper motor is provided with a first gear, the medicine replenishing box is connected to a first rack through a support ear, the first rack is engaged with the first gear, and the first rack is provided with a toggle member, which is used to adjust the rotation of the medicine to a certain angle.

[0011] Preferably, the medicine replenishing box is provided with a transmission wheel, the transmission wheel is provided with a first screw, the first screw is provided with a straight rod, the straight rod is provided with a baffle, the medicine replenishing box is provided with a groove, the baffle is slid into the groove, the rotating door is provided with a rotating part, the rotating part is sleeved on the connecting rod, a torsion spring is provided between the connecting rod and the rotating part, and a belt is wound between the rotating part and the transmission wheel to block subsequent medicines.

[0012] Preferably, a support is provided on the medicine replenishing box, a support rod is provided on the support, a locking piece is provided on the support rod, a slope is provided on the locking piece, and a second spring is provided between the support rod and the support to achieve locking of the revolving door.

[0013] Preferably, the support rod is connected to a second rack through a pillar, a trigger member is provided on the support member, a second gear is provided on the trigger member, the second gear is engaged with the second rack, a block is provided on the trigger member, and a through slot is provided on the medicine replenishing box to unlock the revolving door.

[0014] Preferably, the push rack is provided with a plurality of fitting blocks, the push rack is provided with a sliding column, the sliding column is provided with a slider, the slider is provided with a slide plate, the slide plate is provided with a lifting plate, a first spring is provided between the lifting plate and the slider, and a broken line slide groove is provided on the cabinet body, and the lifting plate is slidably connected to the slide groove, aiming to achieve the avoidance effect of the lifting plate.

[0015] Preferably, the cabinet door is provided with a handle to facilitate opening and closing of the cabinet door.

[0016] The medicine box of the present invention is convenient to operate and convenient to operate, and the medicine box of the present invention can be put into storage box at the bottom, and the medicine box of the present invention can be put into storage box at the bottom, so that ... BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 : Schematic diagram of the three-dimensional structure of the present invention;

[0018] Figure 2 : A schematic diagram of the structure of the installation box, sealing plate, chute and other components of the present invention;

[0019] Figure 3 : Schematic diagram of the structure of the second screw, servo motor, laminating block and other components of the present invention;

[0020] Figure 4 : A schematic structural diagram of the movable plate, sliding column, slide plate and other components of the present invention;

[0021] Figure 5 : A schematic structural diagram of the stepping motor, first gear, first rack and other components of the present invention;

[0022] Figure 6 : A schematic structural diagram of the second spring, support member, support rod and other components of the present invention;

[0023] Figure 7 : A schematic structural diagram of the trigger member, the second gear, the second rack and other components of the present invention;

[0024] Figure 8 : A schematic structural diagram of the first gear, the first rack, the shifting member and other components of the present invention;

[0025] In the figure: 1-cabinet, 101-installation box, 102-sealing plate, 103-slide, 2-cabinet door, 21-handle, 3-medicine replenishing box, 31-stepping motor, 32-first gear, 33-first rack, 34-toggle member, 4-rotating door, 41-transmission wheel, 42-torsion spring, 43-first screw, 44-belt, 45-baffle, 451-groove, 46-connecting rod, 47-conveyor belt, 48- Straight rod, 49-rotating part, 5-lifting plate, 51-fitting block, 52-pushing frame, 53-slider, 54-first spring, 55-second screw, 56-servo motor, 57-moving plate, 58-sliding column, 59-slide plate, 6-locking part, 61-trigger part, 62-second gear, 63-second rack, 64-second spring, 65-support part, 66-support rod, 67-block, 68-through slot. DETAILED DESCRIPTION

[0026] Next, combine the Figure 1 -Attached Figure 8 A specific embodiment of the present invention is described in detail.

[0027] Reference Attachment Figures 1-8 An intelligent RFID medical cabinet for refined management of medical drugs includes a cabinet body 1 equipped with an RFID module. A cabinet door 2 is rotatably connected to the cabinet body 1, and a display screen is installed on the cabinet door 2. The purpose is to identify the drug labels in the cabinet body 1 through the RFID module and feedback on the display screen, so as to facilitate refined management by staff.

[0028] The cabinet door 2 is provided with a handle 21 for easy opening and closing. A plurality of installation boxes 101 are installed in the cabinet body 1. The installation box 101 is a hollow box body. The cabinet body 1 is divided into several medicine placement cavities by the installation box 101. The medicine with RFID tags is placed on the top of the installation box 101.

[0029] In order to solve the problem raised in the background technology that medicines are taken and replenished at the front side, causing the medicines at the back side to be retained for a long time and expire, the present device adopts the rule of taking medicines at the front side and replenishing at the back side, so the following improvements are made: the outer wall of the cabinet 1 is connected with a through-type medicine replenishment box 3 with the same number as the installation box 101, that is, the cabinet 1 is connected to the back side of the medicine replenishment box 3 and forms a channel, the installation box 101 is connected to the bottom wall of the medicine replenishment box 3, and a medicine replenishment component is provided in the medicine replenishment box 3. The installation box 101 is slidably connected with a push rack 52, and the medicines are replenished at the back through the linkage cooperation of the medicine replenishment component in the medicine replenishment box 3 and the push rack 52.

[0030] The medicine replenishing assembly includes a connecting rod 46 fixed to the medicine replenishing box 3, and the revolving door 4 is rotatably connected to the connecting rod 46. A conveyor belt 47 is installed at the bottom of the medicine replenishing box 3. The movement of the conveyor belt 47 is electrically controlled by an external power supply. The tail end of the conveyor belt 47 is connected to the top of the installation box 101. The medicine to be replenished is transported to the top of the installation box 101 through the movement of the conveyor belt 47.

[0031] When taking medicine, hold the handle 21 to open the cabinet door 2, take the medicine on the front side of the installation box 101, and automatically identify it through the RFID module and feed back the missing medicine data in the cabinet 1 on the display screen. When the missing medicine data reaches the preset value, the staff will be automatically prompted to replenish it.

[0032] Before replenishing the medicine in batches, the push rack 52 is attached to the inner wall of the cabinet 1, and the revolving door 4 is pushed inward with the medicine in hand. The revolving door 4 is controlled to rotate inward and open, and the medicine is placed at the front end of the conveyor belt 47 and transported to the tail end through the movement of the conveyor belt 47, and piled up on the installation box 101. As subsequent medicines are continuously added, under the action of the conveyor belt 47, the rear medicines generate a driving force on the front medicines, and the front side of the medicine push rack 52 is gradually accumulated. Through the movement of the push rack 52, the medicines are pushed forward to fill the position, thereby achieving the effect of replenishing the medicines at the rear side, so that the medicines at the rear side are continuously brought forward, avoiding the risk of failure caused by long-term retention.

[0033] In order to facilitate the movement of the push rack 52, this device is implemented through a transmission assembly, which is arranged in the cavity of the installation box 101, that is: a servo motor 56 is installed on the front side of the cavity of the installation box 101, and a second screw 55 is fixedly connected to the output shaft of the servo motor 56, which is intended to drive the second screw 55 to rotate through the servo motor 56, and a movable plate 57 is threadedly connected to the second screw 55. The movable plate 57 passes through one end of the installation box 101 and is fixedly connected to the push rack 52. A slide rail is provided on the top of the installation box 101, and the push rack 52 slides directionally in the slide rail on the top of the installation box 101, which is intended to drive the push rack 52 to move through the movable plate 57.

[0034] The medicines are accumulated on the front side of the push rack 52, and the servo motor 56 is started to drive the second screw 55 to rotate, and the movable plate 57 is controlled to move forward, driving the push rack 52 to move forward, and then driving the medicines to move forward to fill the position.

[0035] In order to prevent the medicines on the front side of the installation box 101 from falling, a sealing plate 102 is detachably installed on the front side of the installation box 101 .

[0036] Taking into account that the passage connecting the cabinet 1 and the rear side of the medicine replenishing box 3 will form a corner, the medicines may be stuck here. In order to facilitate the smooth entry of the medicines into the installation box 101, the following settings are made: a stepper motor 31 is installed on the top of the rear side of the medicine replenishing box 3. In order to facilitate the control of the start of the stepper motor 31, a probe is installed in the medicine replenishing box 3, and this probe is electrically connected to the stepper motor 31. The output shaft of the stepper motor 31 passes through the top of the medicine replenishing box 3 and extends to the end of the medicine replenishing box 3, and is fixed with a first gear 32. The two side walls of the medicine replenishing box 3 are slidably connected with a first rack 33 through a support ear. The two first racks 33 are meshed with the first gear 32. The first rack 33 is fixed with a toggle member 34, which is intended to drive the toggle member 34 to move through the meshing action of the first rack 33 and the first gear 32, thereby adjusting the stuck medicines.

[0037] It is particularly noted that the first racks 33 are slidably connected to the two side walls of the medicine replenishment box 3 through the support ears, so that the toggle member 34 is tilted and the angle can be adjusted when the toggle member 34 moves down and contacts the medicine.

[0038] When the probe detects that the medicine moves to under the first gear 32, the medicine moves just between the two toggle members 34. To prevent the medicine from getting stuck in the channel, the probe triggers the stepper motor 31 to start, driving the first gear 32 to rotate forward and engage with the two first racks 33, so that the two first racks 33 move toward each other, and the two toggle members 34 are controlled to move toward each other, generating a clamping force on the medicine and rotating the medicine by a certain angle. After a certain period of time, the probe triggers the stepper motor 31 to start again, driving the first gear 32 to reverse, and the two first racks 33 are controlled to move relative to each other and reset, and disengage the clamping of the medicine. At this time, the medicine has adjusted its angle and is smoothly moved to the channel connected to the rear side of the cabinet 1 and the medicine replenishment box 3 via the conveyor belt 47, thereby solving the problem of medicine getting stuck.

[0039] Taking into account that the swinging action and the resetting action of the two toggle members 34 on the medicines require a certain amount of time, the subsequent medicines need to be moved to the bottom of the first gear 32 after the toggle member 34 is reset. Therefore, a blocking component is provided, and this blocking component is linked to the rotary door 4. Specifically: the top of the medicine replenishing box 3 is rotatably connected to a transmission wheel 41, and the transmission wheel 41 is threadedly connected to a first screw 43, and a straight rod 48 is fixed to the first screw 43. The straight rod 48 passes through the medicine replenishing box 3 and extends to the inside of the medicine replenishing box 3. A baffle 45 is fixed on one end. A groove 451 is provided on the side wall of the medicine replenishing box 3, and the baffle 45 is slidably connected in the groove 451. The purpose is to drive the straight rod 48 and the baffle 45 to move downward by the rotation of the first screw 43, thereby blocking subsequent medicines and reserving time for the swinging action and the resetting action of the two toggle members 34 to avoid the accumulation of medicines at the toggle member 34.

[0040] The rotation of the first screw 43 is combined with the rotation of the revolving door 4, that is, a rotating part 49 is fixed to the top of the revolving door 4, which is intended to drive the rotating part 49 to rotate through the revolving door 4, and a limiting cap is provided on the end of the connecting rod 46 that extends upward through the medicine replenishing box 3. The rotating part 49 is sleeved on the connecting rod 46, so that the rotation of the rotating part 49 has no effect on the connecting rod 46. A torsion spring 42 is provided between the limiting cap and the rotating part 49, so that the torsion spring 42 drives the rotating part 49 to rotate and reset, thereby realizing the reset of the revolving door 4, and a belt 44 is wound between the rotating part 49 and the transmission wheel 41, so that the rotation of the rotating part 49 is transmitted to the transmission wheel 41 through the belt 44, thereby driving the first screw 43 to rotate.

[0041] As the revolving door 4 rotates inward to open, the rotating member 49 rotates, the torsion spring 42 accumulates force, and based on the existence of the belt 44, the transmission wheel 41 rotates in a controlled manner, thereby driving the first screw 43 to rotate and move downward, and the straight rod 48 to rotate and move downward. Based on the existence of the groove 451, the baffle 45 moves downward without rotating. The downward movement of the baffle 45 achieves a blocking effect on the medicine, thereby achieving the effect of reserving time for the swinging action and the reset action of the two toggle members 34.

[0042] Due to the presence of the torsion spring 42, the revolving door 4 automatically resets itself immediately after being rotated inward and opened, thereby driving the rotating member 49 to rotate and reset, and the straight rod 48 and the baffle 45 immediately reset upward. In order to achieve the delayed blocking effect of the baffle 45 on the medicine, the revolving door 4 should remain in the rotated open state. Based on this, the following settings are made: a support member 65 is fixedly connected to the inner wall of the medicine replenishing box 3, and a support rod 66 is slidably connected to the support member 65. A locking member 6 is fixedly connected to the support rod 66, and a slope is provided on the locking member 6, which is intended to lock the rotated open revolving door 4 through the locking member 6. A second spring 64 is compressed between the support rod 66 and the support member 65. In particular, the elastic coefficient of the second spring 64 is very small.

[0043] The revolving door 4 rotates inward to open and squeezes the inclined surface on the locking member 6. The locking member 6 slides backward under the squeezing, and the linkage support rod 66 slides backward on the support member 65. The second spring 64 is deformed. After the revolving door 4 flips inward to pass over the locking member 6, the squeezing between the locking member 6 and the revolving door 4 is cancelled. Under the action of the second spring 64, the support rod 66 and the locking member 6 are driven to move forward and reset, thereby locking the revolving door 4, keeping the revolving door 4 open, and delaying the time for the straight rod 48 and the baffle 45 to reset upward.

[0044] When the two toggle members 34 complete the swinging action of the medicines and reset upward, the baffle 45 should cancel the obstruction to the subsequent medicines, that is, the revolving door 4 should rotate closed, driving the straight rod 48 and the baffle 45 to reset upward, so the following settings are made: the bottom of the support rod 66 is fixedly connected to the second rack 63 at one end close to the support member 65 through a pillar, and the bottom of the support member 65 is rotatably connected to the trigger member 61, and the trigger member 61 is fixed with a second gear 62, and the second gear 62 is engaged with the second rack 63. The bottom of the trigger member 61 is fixed with a card block 67, and a through slot 68 is provided on the medicine replenishment box 3, and the card block 67 is engaged in the through slot 68 after being flipped over.

[0045] As the revolving door 4 rotates inward and opens, the support rod 66 and the locking member 6 move forward and reset. After the revolving door 4 is locked, the medicine is transported by the conveyor belt 47 to the block 67 and squeezes the block 67, causing the block 67 to rotate and engage in the through groove 68, driving the trigger member 61 to rotate, and the second gear 62 is controlled to rotate and engage with the second rack 63, causing the second rack 63 to move backward, driving the support rod 66 and the locking member 6 to move backward, that is, the locking member 6 cancels the lock on the revolving door 4, and the second spring 64 The deformation is caused by the torsion spring 42, which drives the rotating member 49 to rotate and reset, and the revolving door 4 rotates outward and resets to restore the closed state. Based on the existence of the belt 44, the transmission wheel 41 is controlled to rotate, thereby driving the first screw 43 to rotate and move upward, and the straight rod 48 and the baffle 45 move upward in conjunction. The upward movement of the baffle 45 cancels the blocking effect on the medicine, so that the subsequent medicines can be smoothly moved to the toggle member 34 for adjustment, thereby avoiding the accumulation of medicines on the conveyor belt 47, thereby achieving the effect of orderly replenishing medicines on the rear side.

[0046] After the adjustment of the toggle member 34 and the transportation of the transmission belt 47, the medicines are irregularly piled up on the front side of the push rack 52. As the push rack 52 pushes, the medicines on the installation box 101 are arranged in a disordered manner. Based on this, the present device solves the problem by adjusting the components: a plurality of fitting blocks 51 are slidably connected to the push rack 52, and two symmetrically distributed sliding columns 58 are fixedly connected to the push rack 52, and a slider 53 is slidably connected to the sliding column 58, and a slide plate 59 is slidably connected to the slide plate 53. The ends of the two slide plates 59 are jointly fixedly connected to the lifting plate 5, and a first spring 54 is compressed between the lifting plate 5 and the slide plate 53. The left and right side walls of the cabinet 1 are provided with a broken line shaped slide groove 103, and the lifting plate 5 is slidably connected in the corresponding slide groove 103.

[0047] The medicines are accumulated on the front side of the bonding block 51, and the servo motor 56 is started to drive the second screw 55 to rotate, and the moving plate 57, the bonding block 51, the slider 53 and the slide post 58 are all controlled to move forward, and the bonding block 51 contacts and squeezes the medicines. The bonding block 51 in contact with the medicines slides backward, and the slider 53 moves forward on the slide plate 59 until it hits the end of the slide plate 59, and the first spring 54 is deformed. During this process, the medicines are limited between the bonding block 51 and the lifting plate 5. Due to the front and back squeezing of the medicines by the bonding block 51 and the lifting plate 5, the medicines are arranged regularly front and back. As the push rack 52 continues to move forward, the lifting plate 5 moves along the slide groove 103. Due to the broken line design of the slide groove 103, the lifting plate 5 moves in a path first forward and then upward, driving the slide plate 59 and the slider 53 to move up on the slide post 58, and the avoidance effect is achieved by the upward movement of the lifting plate 5, that is, avoiding the filling action caused by the lifting plate 5 blocking the forward movement of the medicines.

[0048] After the medicines on the rear side are filled, the servo motor 56 is started to drive the second screw 55 to rotate in the opposite direction, and the movable plate 57, the bonding block 51, the slider 53 and the slide column 58 are all controlled to move backward. The rear side of the bonding block 51 is bonded to the inner wall of the cabinet 1 to restore the bonding block 51 to its initial state. Based on the existence of the slider 53, the lifting plate 5 is driven to slide and reset along the slide groove 103, and then the first spring 54 is reset to facilitate the next round of cycle operation.

[0049] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.

Claims

1. An intelligent RFID medical cabinet for refined management of medical drugs, comprising a cabinet body (1) provided with an RFID module, characterized in that: The cabinet (1) is provided with a cabinet door (2), and a display screen is installed on the cabinet door (2). A plurality of installation boxes (101) are provided in the cabinet (1), and the installation box (101) is a hollow box body. A push rack (52) is provided on the installation box (101). A plurality of tonic medicine boxes (3) are provided on the cabinet (1), and the cabinet (1) is connected to the tonic medicine boxes (3). A tonic medicine assembly is provided in the tonic medicine box (3), and the tonic medicine assembly includes a connecting rod (46) connected to the tonic medicine box (3). A revolving door (4) is provided on the connecting rod (46). A conveyor belt (47) is provided on the tonic medicine box (3), and the conveyor belt (47) is connected to the installation box (101).

2. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 1 is characterized by: A servo motor (56) is installed on the installation box (101), a second screw (55) is provided on the servo motor (56), a movable plate (57) is provided on the second screw (55), a push frame (52) is provided on the movable plate (57), and the push frame (52) is connected to the installation box (101).

3. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 2 is characterized by: The installation box (101) is provided with a sealing plate (102).

4. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 1 is characterized by: The medicine-replenishing box (3) is provided with a stepping motor (31), a probe is provided on the medicine-replenishing box (3), the probe is electrically connected to the stepping motor (31), the stepping motor (31) is provided with a first gear (32), the medicine-replenishing box (3) is connected with a first rack (33) through a support ear, the first rack (33) is engaged with the first gear (32), and the first rack (33) is provided with a toggle member (34).

5. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 1 is characterized by: The medicine-replenishing box (3) is provided with a transmission wheel (41), a first screw (43) is provided on the transmission wheel (41), a straight rod (48) is provided on the first screw (43), a baffle (45) is provided on the straight rod (48), a groove (451) is provided on the medicine-replenishing box (3), and the baffle (45) is slidably connected in the groove (451). A rotating member (49) is provided on the revolving door (4), and the rotating member (49) is sleeved on the connecting rod (46). A torsion spring (42) is provided between the connecting rod (46) and the rotating member (49), and a belt (44) is wound between the rotating member (49) and the transmission wheel (41).

6. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 1 is characterized by: The medicine replenishing box (3) is provided with a support member (65), the support member (65) is provided with a support rod (66), the support rod (66) is provided with a locking member (6), the locking member (6) is provided with an inclined surface, and a second spring (64) is provided between the support rod (66) and the support member (65).

7. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 6 is characterized by: The support rod (66) is connected to the second rack (63) through a pillar, the support member (65) is provided with a trigger member (61), the trigger member (61) is provided with a second gear (62), the second gear (62) is engaged with the second rack (63), the trigger member (61) is provided with a block (67), and the medicine replenishing box (3) is provided with a through slot (68).

8. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 2, characterized in that: The push frame (52) is provided with a plurality of fitting blocks (51), the push frame (52) is provided with a slide column (58), the slide column (58) is provided with a slider (53), the slider (53) is provided with a slide plate (59), the slide plate (59) is provided with a lifting plate (5), a first spring (54) is provided between the lifting plate (5) and the slider (53), a broken line chute (103) is provided on the cabinet (1), and the lifting plate (5) is slidably connected to the chute (103).

9. The intelligent RFID medical cabinet for refined management of medical drugs according to claim 1, characterized in that: The cabinet door (2) is provided with a handle (21).