Auxiliary equipment storage bin for teaching and meeting

By designing a storage compartment for auxiliary equipment used in teaching and meetings, and using a drive mechanism to control the status of the compartment door, the problem of easy loss of auxiliary equipment in open environments was solved, achieving safe storage and convenient access to the equipment, and improving management efficiency.

CN224037596UActive Publication Date: 2026-03-24BEIJING HUACAN ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Small auxiliary devices used in open environments (such as wireless microphones, laser pointers, and multimedia remote control devices) are easily placed randomly and lost, and existing management methods are ineffective.

Method used

Design a storage compartment for auxiliary equipment used in teaching and meetings, including a compartment body, a compartment door, a control circuit board and a drive mechanism. The drive mechanism controls the compartment door to switch between closed and open states, so as to realize the safe storage and convenient access of auxiliary equipment.

Benefits of technology

It effectively reduces the loss and damage of auxiliary equipment, improves management efficiency, and ensures the safety of equipment when not in use and its convenient use when needed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides an auxiliary equipment storage bin for teaching and meeting. The auxiliary equipment storage bin comprises a bin body, a bin door, a control circuit board and a driving mechanism. The bin body comprises an internal containing cavity and an equipment containing groove. The control circuit board and the driving mechanism are arranged in the internal accommodating cavity; the equipment accommodating groove is used for accommodating the auxiliary equipment; the bin door is arranged at a notch of the equipment accommodating groove and is in a first position state, a second position state or a switching state between the first position state and the second position state under the control of the driving mechanism; wherein the first position state is a state in which a notch of the equipment accommodating groove is closed, and the second position state is a state in which the notch of the equipment accommodating groove is opened until the auxiliary equipment is taken and placed; the control output end of the control circuit board is connected with the control input end of the driving mechanism, and the control circuit board is used for controlling the driving mechanism to act according to the received trigger instruction.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of teaching office technology, in particular to a teaching and conference auxiliary equipment storage bin. BACKGROUND

[0002] In order to reduce the burden of speaking and indicating of the teacher, speaker and other active speakers, wireless microphones, laser pointers, multimedia remote control devices and other auxiliary equipment are widely used in the process of classroom teaching and speech promotion. Since the teaching classroom and the speech hall are open environments with large personnel flow, and the aforementioned auxiliary equipment is small in size, the problem of random placement and loss often occurs after use. In order to reduce the aforementioned random placement and loss problem, the related field also avoids the problem of random placement and loss of auxiliary equipment by strengthening the management during and after the event, but the aforementioned effect is poor. CONTENT OF THE UTILITY MODEL

[0003] The present disclosure provides a teaching and conference auxiliary equipment storage bin, comprising: a bin body, a bin door, a control circuit board and a driving mechanism;

[0004] The bin body comprises an internal accommodating cavity and a device accommodating groove; the control circuit board and the driving mechanism are arranged in the internal accommodating cavity; and the device accommodating groove is used for accommodating the auxiliary equipment;

[0005] The bin door is arranged at the slot opening of the device accommodating groove and is in a first position state, a second position state or a switching state between the first position state and the second position state under the control of the driving mechanism; wherein the first position state is a state of closing the slot opening of the device accommodating groove, and the second position state is a state of opening the slot opening of the device accommodating groove to realize the taking and placing of the auxiliary equipment;

[0006] The control output end of the control circuit board is connected with the control input end of the driving mechanism, and is used for controlling the driving mechanism to act according to the received trigger instruction.

[0007] Optionally, the driving mechanism comprises a driving motor and a gear transmission system;

[0008] The power input end of the driving motor is connected with the control output end of the control circuit board;

[0009] The output shaft of the driving motor is coaxially connected with the driving gear of the gear transmission system;

[0010] The bin door comprises a door body and a rotary connection part; and the rotary shaft of the rotary connection part is coaxially connected with the terminal driven gear of the gear transmission system.

[0011] Optionally, the rotary connection part comprises an extension shaft; the extension shaft is coaxially connected with the terminal driven wheel.

[0012] The cartridge body further comprises a wall plate; the wall plate is provided with a through hole for supporting the extension shaft and the terminal driven wheel.

[0013] Optionally, the cartridge body comprises an auxiliary device carrying part;

[0014] The inner recess of the auxiliary device carrying part forms the device accommodating groove.

[0015] Optionally, the cartridge body further comprises a charging circuit;

[0016] The control input end of the charging circuit is connected with the charging control output end of the control circuit board; the charging contact of the charging circuit is arranged on the auxiliary device carrying part;

[0017] The auxiliary device carrying part is further provided with a foolproof positioning member for correctly positioning the charging contact and the auxiliary device charging interface.

[0018] Optionally, the surface of the auxiliary device carrying part carrying the auxiliary device is provided with a disinfecting and killing device;

[0019] The control end of the disinfecting and killing device is connected with the disinfecting and killing control output end of the control circuit board;

[0020] When the control circuit board determines that the auxiliary device is placed in the device accommodating groove and the cartridge door is in the first position state, the control circuit board controls the disinfecting and killing device to be turned on for a set time length.

[0021] Optionally, the prompt device is further provided;

[0022] The prompt device is arranged in the cartridge body, and the input end is connected with the output end of the control circuit board;

[0023] When the control circuit board receives an ending trigger signal, the prompt device is controlled to perform a prompt operation.

[0024] Optionally, a near field perception sensor is further provided;

[0025] The output end of the near field perception sensor is connected with the signal input end of the control circuit board;

[0026] The control circuit board controls the driving mechanism to switch the cartridge door to the second position state when receiving a perception signal sent by the near field perception sensor and determining that the perception signal is a legal signal; and / or,

[0027] The display device for displaying the permission verification code is connected with the control output end of the control circuit board; the control circuit board controls the display device to display the permission verification code in the starting state, and controls the driving mechanism to switch the door to the second position state in the case of receiving the target signal.

[0028] Optionally, the external microphone connection interface and the signal sending interface are further included.

[0029] The external microphone connection interface is connected with the audio input end of the control circuit board, and the signal sending interface is connected with the signal output end of the control circuit board.

[0030] Optionally, the wireless communication device for wirelessly communicating with the auxiliary device is further included.

[0031] The wireless communication device is connected with the wireless communication interface of the control circuit board.

[0032] The storage bin provided by the embodiments of the present disclosure is provided with the device accommodating groove for accommodating the auxiliary device, and the door is controlled by the driving mechanism, so that the door can be in the first position state of realizing the closure of the slot opening of the device accommodating groove, or the door can be in the second position state which does not hinder the placement of the auxiliary device. Correspondingly, in the case of not using the auxiliary device, the auxiliary device can be placed in the device accommodating groove, and the protection of the auxiliary device is realized by controlling the door to be in the first position state; and in the case of needing to use the auxiliary device, the door can be opened to the second position state by controlling the driving mechanism, so as to realize the use of the auxiliary device. BRIEF DESCRIPTION OF DRAWINGS

[0033] The accompanying drawings, which are incorporated into and form part of the specification, illustrate embodiments consistent with the present disclosure and, together with the specification, serve to explain the principles of the present disclosure.

[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, for those skilled in the art, other drawings can also be obtained from these drawings without creative labor, wherein:

[0035] Figure 1 is a schematic view of the appearance of the storage bin provided by the embodiments of the present disclosure;

[0036] Figure 2 is a schematic view of the appearance of the hidden auxiliary device bin body and door;

[0037] Wherein: 100 - the body of the storage bin, 101 - the bottom plate, 102 - the cover plate, 103 - the wall plate, 104 - the auxiliary equipment carrying part, 105 - the foolproof positioning part, 106 - the disinfection device, 200 - the bin door, 300 - the control circuit board, 400 - the driving mechanism, 401 - the driving motor, 402 - the gear transmission system, 403 - the driving gear, 404 - the driven gear, 500 - the loudspeaker, 600 - the display device, 700 - the external microphone connection interface. DETAILED DESCRIPTION

[0038] Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although certain embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms and should not be construed as being limited to the embodiments set forth herein, but rather the embodiments are provided to more thoroughly and completely understand the present disclosure. It should be understood that the drawings and embodiments of the present disclosure are only for exemplary purposes and are not intended to limit the scope of protection of the present disclosure.

[0039] The term "comprising" and variations thereof as used herein are open-ended, that is "including but not limited to". The term "based on" is "based at least in part on". The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Related definitions are given throughout the description below. In this document, relational terms such as "first" and "second", and the like, are used solely to distinguish one entity or action from another entity or action, without necessarily requiring or implying any actual such relationship or order between such entities or actions.

[0040] The present disclosure provides a teaching and conference auxiliary equipment storage bin (hereinafter referred to as storage bin) for storing auxiliary equipment such as wireless microphone, laser pointer and multimedia remote control device used in teaching and conference, reducing the loss and damage of the aforementioned auxiliary equipment caused by extensive management. In specific implementation, the auxiliary device mentioned in the present disclosure can be installed on the podium of a multimedia classroom, the media equipment rack of a lecture hall or a conference room.

[0041] Figure 1 is a schematic view of the appearance of the storage bin provided by the present disclosure, Figure 2 is a schematic view of the appearance of the storage bin provided by the present disclosure, Figure 1 and Figure 2 As shown in the drawings, the auxiliary equipment storage bin provided by the present disclosure includes a bin body 100, a bin door 200, a control circuit board 300 and a driving mechanism 400.

[0042] The storage bin body 100 is a component that realizes the cooperation of various components of the storage bin to form a functional whole. The storage bin body 100 includes a bottom plate 101 and a cover plate 102, and the three cooperate to form an internal accommodation space, specifically an internal accommodation cavity and a device accommodation slot of the storage bin body 100. In specific implementation, the bottom plate 101 of the storage bin body 100 can be provided with a connecting and fixing portion to realize the fixation of the entire storage bin on a podium or a media device rack.

[0043] The internal accommodation cavity is an accommodation cavity for accommodating the control circuit board 300 and the driving mechanism 400, and the control circuit board 300 and the driving mechanism 400 are arranged in the internal accommodation cavity. The device accommodation slot is an accommodation slot for accommodating the auxiliary device of the aforementioned type. It can be conceived that, in order to facilitate the taking and placing of the auxiliary device, the accommodation slot is an open slot as its name implies.

[0044] The bin door 200 is arranged at the slot opening of the device accommodation slot. Here, the bin door 200 is arranged at the slot opening of the device accommodation slot in general (or in most cases). Specifically, the bin door 200 is connected with the power output end of the driving mechanism 400. Under the control of the driving mechanism 400, it can be in a first position state, a second position state, or a switching state between the first position state and the second position state. The first position state is a state in which the slot opening of the device accommodation slot is closed, and the second position state is a state in which the slot opening of the device accommodation slot is opened to realize the taking and placing of the auxiliary device. That is, when the driving mechanism 400 causes the bin door 200 to be in the first position state, the bin door 200 realizes the closing of the slot opening of the device accommodation slot; when the driving mechanism 400 causes the bin door 200 to be in the second position state, the bin door 200 does not hinder the taking and placing of the auxiliary device from the device accommodation slot.

[0045] The control output end of the control circuit board 300 is connected with the control input end of the driving mechanism 400, for controlling the driving mechanism 400 to act according to the received trigger instruction.

[0046] As analyzed above, the storage bin provided by the embodiment of the disclosure is provided with the device accommodation slot for accommodating the auxiliary device, and the bin door 200 is controlled by the driving mechanism 400, so that the bin door 200 can be in the first position state in which the slot opening of the device accommodation slot is closed, or the bin door 200 can be in the second position state in which the bin door 200 does not hinder the placing of the auxiliary device. Accordingly, in the case where the auxiliary device is not used, the auxiliary device can be placed in the device accommodation slot, and the protection of the auxiliary device is realized by controlling the bin door 200 to be in the first position state; and in the case where the auxiliary device needs to be used, the bin door 200 is opened to the second position state by controlling the driving mechanism 400, and the taking and using of the auxiliary device are realized.

[0047] As Figure 2As shown, the driving mechanism 400 in the embodiment of the present disclosure includes a driving motor 401 and a gear train 402, wherein the gear train 402 is a two-stage transmission train including a driving gear 403 (first-stage gear) and a driven gear 404 (terminal driven gear). The power input end of the driving motor 401 is connected with the control output end of the control circuit board 300, and the output shaft of the driving motor 401 is coaxially connected with the driving gear 403 of the gear train 402. The bin door 200 includes a door body and a rotary connecting part, the door body serves as a blocking piece of the equipment accommodating groove and realizes the overall function of the bin door 200. The rotary connecting part is coaxially connected with the terminal driven gear of the gear train 402. Based on the foregoing structure, the rotation of the driving motor 401 realizes the rotation of the door body through the gear train 402 and the rotary connecting part, and further realizes the switching of the door body between the first position state and the second position state.

[0048] In a specific implementation, in order to reduce the cost, the driving motor 401 can adopt a non-servo motor with lower cost. In order to enable the non-servo motor to accurately control the position of the bin door 200 and avoid the overstroke movement of the bin door 200, the storage bin further includes two stroke switches, both of which are connected with the control circuit board 300. The two stroke switches are respectively switches for enabling the bin door 200 to be in the first position state and the second position state; when the bin door 200 moves to the first position state, the bin door 200 touches the first stroke switch, the first stroke switch generates a first trigger signal and sends it to the control circuit board 300, so that the control circuit board 300 stops the driving motor 401 from running, and further enables the bin door 200 to remain in the first position state; when the bin door 200 moves to the second position state, the bin door 200 touches the second stroke switch, so that the second stroke switch generates a second trigger signal and sends it to the control circuit board 300, so that the control circuit board 300 stops the driving motor 401 from running, and further enables the bin door 200 to remain in the second position state.

[0049] Of course, in other embodiments, the control of the driving motor 401 can also be realized by the time control mode according to the running characteristics of the driving motor 401, so that the bin door 200 is in the first position state or the second position state. In some embodiments, if the driving motor 401 adopts a stroke feedback motor (i.e., a servo motor), the accurate position control of the bin door 200 can also be realized through the feedback of the driving motor 401.

[0050] For further reference Figure 2 In the embodiment of the present disclosure, the bin body 100 further includes wall plates 103 (specifically two wall plates). The wall plates 103 are arranged inside the bin body 100 and serve as main body supporting pieces. As shown in Figure 2As shown, in the embodiment of the present disclosure, the wall plate 103 also functions to support the installation of the driving motor 401 and the gear transmission system 402. The aforementioned driving motor 401 is installed inside a wall plate 103, and its output shaft extends through a first through hole in the wall plate 103 to the outside of the aforementioned wall plate 103. The driving gear 403 in the gear transmission system 402 is installed on the part of the output shaft of the driving motor 401 outside the first through hole. In addition, the two wall plates 103 are coaxially provided with through holes through which the extension shaft of the rotary connecting part extends. The extension shaft of the storage body 100 extends through the through holes, and one of the extension shafts is connected to the terminal driven gear of the gear transmission system 402 to achieve the transmission connection with the gear transmission system 402.

[0051] The storage bin mentioned in the foregoing embodiment achieves the movement of the bin door 200 through gear transmission, and in this case, the bin door 200 is opened in a rotary manner. In specific applications, in order to facilitate the taking and placing of auxiliary equipment and ensure that the equipment accommodating groove can be completely covered by the bin door 200, the bin door 200 forms a cylindrical surface with a circular shape of about 120 degrees. Considering that the bin door 200 cannot interfere with its components when it is opened, and that it must be rotated to the inside of the storage body 100, the storage body 100 is provided with a clearance gap when the bin door 200 is rotated to the second position.

[0052] The storage bin mentioned in the foregoing embodiment achieves the movement of the bin door 200 through gear transmission, and in other embodiments, the movement of the bin door 200 can also be achieved through a connecting rod, for example, through a telescopic three-link rod (that is, a rod that can extend and retract) or a four-link rod.

[0053] Please further refer to Figure 2 The storage body 100 includes an auxiliary equipment carrying part 104. The auxiliary equipment carrying part 104 is located between the aforementioned two wall plates 103, and the inner recesses thereon form equipment accommodating grooves for accommodating auxiliary equipment. As Figure 2 shown, in order to facilitate the user to take out the auxiliary equipment from the equipment accommodating groove, the auxiliary equipment carrying part 104 is also provided with a finger clearance position (which facilitates the user to insert his finger from the bottom to take out the auxiliary equipment).

[0054] Devices such as wireless microphones are usually powered by rechargeable batteries, and after being powered by rechargeable batteries, they also need to be charged. In order to achieve the charging of the auxiliary equipment during the storage of the storage bin, the storage body 100 also includes a charging circuit. The control input end of the charging circuit is connected to the charging control output end of the control circuit board 300, and the charging contact of the charging circuit is provided on the auxiliary equipment carrying part 104. In addition, in order to achieve the correct positioning and contact of the charging contact with the auxiliary equipment charging interface after the auxiliary equipment is placed in the equipment accommodating groove, the auxiliary equipment carrying part 104 is also provided with a foolproof positioning member 105. In specific implementations, the foolproof positioning member 105 can be a magnetic attraction positioning member or a sliding pit type positioning member.

[0055] In some embodiments, the surface of the auxiliary device carrying portion 104 that carries the auxiliary device is also provided with a disinfection device 106. The control end of the disinfection device is connected with the disinfection control output end of the control circuit board 300; in the case that the control circuit board 300 determines that the auxiliary device is placed in the device accommodating groove, and the bin door 200 is in the first position state, the control circuit board 300 controls the disinfection device to open for a set time length. In a specific implementation, after a user uses an auxiliary device such as a wireless microphone and places it back into the storage bin, the storage bin can achieve disinfection processing of the auxiliary device by opening the disinfection device for a set time length, so that bacteria and viruses on the auxiliary device are killed, thereby reducing the problem of disease transmission and cross infection that may be caused by multiple users using the auxiliary device.

[0056] As shown in Figure 2 To achieve disinfection processing of the key positions in the case of placing the auxiliary device in both directions, the disinfection device 106 is provided on both sides of the device accommodating groove. In a specific implementation, the disinfection device 106 can be an ultraviolet lamp.

[0057] In actual application, in order to enable the user to place the auxiliary device into the storage bin as soon as possible after using the auxiliary device, the storage bin further includes a prompting device. The prompting device is arranged in the bin body 100, and the input end is connected with the output end of the control circuit board 300. In the case that the control circuit board 300 receives an end trigger signal, the control circuit board 300 controls the prompting device to perform a prompting operation. Specifically, the end trigger signal received by the control circuit board 300 can be a power-off signal, a signal that the distance from the auxiliary device is greater than a set distance, etc. In a specific implementation, in order to more conveniently achieve the function of prompting the user, the prompting device is preferably arranged as a loudspeaker 500.

[0058] The foregoing mentioned that the control circuit board 300 can control the driving mechanism 400 to achieve switching of the bin door 200 between the first position state and the second position state, and does not mention how to trigger the bin door 200 to move from the first position state to the second position state (that is, how to enable the user with authority to control the bin door 200 to open).

[0059] In some embodiments, the storage bin further includes a near field sensing sensor. The output end of the near field sensing sensor is connected with the signal input end of the control circuit board 300; in the case that the control circuit board 300 receives a sensing signal sent by the near field sensing sensor and determines that the sensing signal is a legal signal, the control circuit board 300 controls the driving mechanism to switch the bin door 200 to the second position state. In a specific implementation, the near field sensing sensor can be an RFID sensor.

[0060] As shown in Figure 2As shown, in some other embodiments, the storage bin can further include a display device 600 and a wireless communication device. After the storage bin is activated, the control circuit controls the display device 600 to display the permission verification code. After the user scans the permission verification code by using the electronic device carried by the user, the user sends a permission request (in specific implementations, the permission request can be sent to a third party or directly sent to the control circuit board 300 of the storage bin). In the case where the control circuit board 300 receives a target signal, the control driving mechanism controls the bin door 200 to switch to the second position state. The aforementioned target signal can be an authorized opening signal or a request signal sent by a legal user terminal device.

[0061] Further, in some embodiments of the present disclosure, the storage bin can further include an external microphone connection interface 700 and a signal sending interface. The external microphone connection interface 700 is connected to the audio input end of the control circuit board 300, and the signal sending interface is connected to the signal output end of the control circuit board 300. The aforementioned external microphone connection interface 700 can be connected to a pluggable microphone, and the audio signal received by the microphone is sent to the control circuit board 300. Subsequently, the corresponding audio signal can be sent to other devices through the signal output end.

[0062] In some embodiments, the storage bin can further include a wireless communication device connected to the wireless communication interface of the control circuit board 300. The wireless communication device is used to realize wireless communication with an auxiliary device. In specific implementations, in the case where the auxiliary device is a wireless microphone, it can send the received audio signal to the control circuit board 300 through wireless communication, and transmit the audio signal to a third party device by the control circuit board 300 (in specific implementations, the control circuit board 300 can be connected to the third party device through wired connection).

[0063] The above is only a specific implementation of the present disclosure, enabling those skilled in the art to understand or implement the present disclosure. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present disclosure. Therefore, the present disclosure will not be limited to these embodiments described herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A storage compartment for auxiliary equipment used in teaching and meetings, characterized in that, include: The main body of the warehouse, the warehouse door, the control circuit board, and the drive mechanism; The main body of the container includes an internal accommodating cavity and an equipment accommodating slot; the control circuit board and the drive mechanism are disposed within the internal accommodating cavity; the equipment accommodating slot is used to accommodate the auxiliary equipment; The compartment door is located at the opening of the equipment receiving slot and is in a first position state, a second position state, or a switching state between the first position state and the second position state under the control of the drive mechanism; wherein the first position state is the state in which the opening of the equipment receiving slot is closed, and the second position state is the state in which the opening of the equipment receiving slot is opened to realize the state of picking up and putting in the auxiliary equipment. The control output terminal of the control circuit board is connected to the control input terminal of the drive mechanism, and is used to control the action of the drive mechanism according to the received trigger command.

2. The storage bin according to claim 1, characterized in that, The drive mechanism includes a drive motor and a gear transmission system; The power input terminal of the drive motor is connected to the control output terminal of the control circuit board; The output shaft of the drive motor is coaxially connected to the driving gear of the gear transmission system. The door includes a door body and a rotary connection part; the rotary shaft of the rotary connection part is coaxially connected to the end driven wheel of the gear transmission system.

3. The storage bin according to claim 2, characterized in that, The rotary connection includes an extension shaft; the extension shaft is coaxially connected to the end driven wheel; The main body of the container also includes a wall panel; the wall panel has through holes for supporting the extension shaft and the end driven wheel.

4. The storage container according to any one of claims 1-3, characterized in that, The warehouse body includes an auxiliary equipment support unit; The recessed portion of the auxiliary equipment support section forms the equipment receiving groove.

5. The storage bin according to claim 4, characterized in that, The main body of the container also includes a charging circuit; The control input terminal of the charging circuit is connected to the charging control output terminal of the control circuit board; the charging contacts of the charging circuit are disposed on the auxiliary equipment support. The auxiliary equipment carrier is also provided with a foolproof positioning component to ensure that the charging contacts are correctly aligned with the charging interface of the auxiliary equipment.

6. The storage compartment according to claim 4, characterized in that: The surface of the auxiliary equipment bearing part that supports the auxiliary equipment is provided with a disinfection device; The control terminal of the disinfection device is connected to the disinfection control output terminal of the control circuit board; When the control circuit board determines that the auxiliary device is placed in the device receiving slot and the compartment door is in the first position state, the control circuit board controls the disinfection device to be turned on for a set duration.

7. The storage container according to any one of claims 1-3, characterized in that, It also includes a prompting device; The prompting device is installed in the main body of the compartment, and its input end is connected to the output end of the control circuit board. When the control circuit board receives an end trigger signal, it controls the prompting device to perform a prompting operation.

8. The storage container according to any one of claims 1-3, characterized in that, It also includes near-field sensing sensors; The output terminal of the near-field sensing sensor is connected to the signal input terminal of the control circuit board; Upon receiving a sensing signal from the near-field sensing sensor and determining that the sensing signal is valid, the control circuit board controls the drive mechanism to switch the compartment door to the second position state; and / or, It also includes a display device for displaying an access verification code; the display device is connected to the control output terminal of the control circuit board; the control circuit board controls the display device to display the access verification code when the control circuit board determines that the control circuit board is in the start state, and controls the drive mechanism to switch the compartment door to the second position state when a target signal is received.

9. The storage container according to any one of claims 1-3, characterized in that, It also includes an external microphone connection interface and a signal transmission interface; The external microphone connection interface is connected to the audio input terminal of the control circuit board, and the signal transmission interface is connected to the signal output terminal of the control circuit board.

10. The storage container according to any one of claims 1-3, characterized in that, It also includes a wireless communication device that communicates wirelessly with the auxiliary equipment; The wireless communication device is connected to the wireless communication interface of the control circuit board.