Intelligent experiment table

By setting a sensor detection plug on the display screen to control the movement of the lifting structure, the problem of plug damage during the lifting and lowering of electronic devices is solved, and the plug protection and user reminder is realized.

CN223170959UActive Publication Date: 2025-08-01GUANGDONG GUANGSHITONG WISDOM EDUCATION TECH CO LTD
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Patent Information

Application Number
CN202422310929.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-08-01
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

During the lifting and lowering of the electronic equipment of the existing laboratory table, the plug is prone to interfere with the mounting seat and cause damage.

Method used

Set a sensor on the display screen, which is electrically connected to the lifting structure to detect whether the socket is plugged in with a plug. Only when it is not plugged in, drive the display to retract into the storage cavity to avoid collision between the plug and the mounting seat.

Benefits of technology

Reduce the probability of plug damage, and promptly remind users to unplug the plug to protect the socket and plug.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent experiment table. The intelligent experiment table comprises a table body, a mounting seat and electronic equipment, the mounting base is arranged on the periphery of the table body, a containing cavity is formed in the mounting base, and at least one lifting opening communicated with the outside is formed in the upper cavity wall of the containing cavity; the electronic equipment comprises a display screen and a first lifting structure, a socket and a sensor are arranged on the display screen, the sensor is arranged on one side of the socket, and the first lifting structure is connected with the display screen and electrically connected with the sensor. According to the intelligent experiment table, the sensor is arranged on the display screen and is electrically connected with the first lifting structure, so that when the sensor detects that the plug is inserted into the socket, the first lifting structure does not act, and when the sensor detects that the plug is not inserted into the socket, the first lifting structure does not act; the first lifting structure can normally drive the display screen to retract downwards into the accommodating cavity, so that the probability of collision between a plug inserted into the socket and the mounting seat is reduced, and the probability of damage to the plug inserted into the socket is further reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of experimental tables, in particular to an intelligent experimental table. Background Art

[0002] Experimental tables are often used for doing experiments. When students conduct experimental operations in schools, they generally need to go to a special laboratory to complete corresponding experimental operations on the experimental tables in the laboratory. Correspondingly, the experimental table not only needs to have a tabletop for experiments, but also needs electronic devices for assisting teaching students.

[0003] In the related art, in order to facilitate the storage of electronic devices, the experimental table is configured with a mounting seat. The mounting seat is provided with a receiving cavity for receiving the electronic device, and a first lifting structure is provided on the mounting seat. When the electronic device needs to be used, the first lifting structure can drive the electronic device to extend upward from the receiving cavity. When the electronic device does not need to be used, the first lifting structure can drive the electronic device to retract downward into the receiving cavity.

[0004] However, since sockets for conducting data and power are often provided on the electronic device, during the process of the first lifting structure driving the electronic device to retract downward into the receiving cavity, if a plug is inserted into the socket, the plug will interfere with the mounting seat, thereby damaging the plug. Summary of the Utility Model

[0005] An object of the utility model is to solve at least one of the technical problems existing in the prior art. The utility model provides an intelligent experimental table that can reduce the damage probability of the plug inserted into the electronic device.

[0006] According to the intelligent experimental table provided by the embodiment of the utility model, it includes a table body, a mounting seat and an electronic device; the mounting seat is arranged on the periphery of the table body, a receiving cavity is formed in the mounting seat, and at least one lifting opening communicating with the outside is provided on the upper cavity wall of the receiving cavity; the electronic device includes a display screen and a first lifting structure. A socket and a sensor are provided on the display screen. The sensor is arranged on one side of the socket and is used for detecting whether a plug is inserted into the socket. The first lifting structure is connected to the display screen and is electrically connected to the sensor. The first lifting structure can drive the display screen to retract into the receiving cavity through the lifting opening when the sensor detects that no plug is inserted into the socket.

[0007] The smart laboratory table described in the present invention has at least the following beneficial effects: in the smart laboratory table of the present application, since a sensor is provided on the display screen, and the sensor is electrically connected to the first lifting structure, when the sensor detects that a plug is plugged into the socket, the first lifting structure does not move. When the sensor detects that no plug is plugged into the socket, the first lifting structure can normally drive the display screen downward into the accommodating cavity, thereby reducing the probability of the plug plugged into the socket colliding with the mounting seat, and further reducing the probability of damage to the plug plugged into the socket.

[0008] According to the smart laboratory table described in an embodiment of the present invention, a detection slot is provided on the display screen, and the socket is provided in the detection slot; the sensor is an infrared sensor, and the transmitting end and the receiving end of the infrared sensor are respectively located on the two opposite slot walls of the detection slot, and the receiving end is used to receive infrared rays emitted by the transmitting end.

[0009] According to the smart laboratory table described in an embodiment of the present utility model, a first lifting structure is arranged in the accommodating cavity, the first lifting structure includes a mounting frame, a first driver and a first gear, the display screen is arranged on the mounting frame, a vertically extending first rack is provided in the accommodating cavity, the first driver is arranged on the mounting frame and is electrically connected to the sensor, the output end of the first driver is connected to the first gear, the first gear is engaged with the first rack, and the first driver is used to drive the first gear to rotate.

[0010] According to the smart laboratory table described in an embodiment of the present utility model, the electronic device also includes a first camera structure and a rotating structure. The first camera structure includes a first support rod, a first connecting rod and a first camera. The first support rod is extended in a vertical direction, and the first connecting rod is extended in a horizontal direction. The opposite ends of the first connecting rod are respectively connected to the first camera and the first support rod. The rotating structure is transmission-connected to the first support rod and is used to drive the first support rod to rotate around the vertical axis.

[0011] According to the smart laboratory table described in an embodiment of the present invention, the rotating structure includes a second driver, a first transmission rod, a second transmission rod and a first rotating wheel. The first rotating wheel is slidably mounted on the first support rod in a vertical direction. One end of the first transmission rod is hinged to the edge of the first rotating wheel, and the other end of the first transmission rod is hinged to one end of the second transmission rod. The middle part of the second transmission rod is connected to the second driver, and the second driver is used to drive the second transmission rod to rotate around the vertical axis.

[0012] According to the intelligent experimental table described in the embodiments of the present utility model, the electronic device further includes a second camera structure. The second camera structure includes a second support rod, a second connecting rod, and a second camera. The second support rod extends in the vertical direction, the second connecting rod extends in the horizontal direction, and opposite ends of the second connecting rod are respectively connected to the second camera and the second support rod. The rotating structure further includes a third transmission rod and a second runner. The second runner is sleeved on the second support rod. One end of the third transmission rod is hinged to the end of the second transmission rod away from the first transmission rod, and the other end of the third transmission rod is hinged to the edge of the second runner.

[0013] According to the intelligent experimental table described in the embodiments of the present utility model, the electronic device further includes a second lifting structure. The second lifting structure is in transmission connection with the first support rod. A horizontally extending receiving groove is provided on the display screen, and the first support rod passes through the receiving groove. When the rotating structure drives the first support rod to rotate around the vertical axis so that the projections of the first connecting rod and the first camera in the vertical direction fall into the receiving groove, the second lifting structure can drive the first support rod to perform a lifting movement so that both the first connecting rod and the first camera are received in the receiving groove.

[0014] According to the intelligent experimental table described in the embodiments of the present utility model, the second lifting structure includes a third driver and a second gear. An annular tooth surface is provided on the first support rod, the second gear meshes with the tooth surface, and the third driver is connected to the second gear and is used to drive the second gear to rotate.

[0015] According to the intelligent experimental table described in the embodiments of the present utility model, a socket for electrically connecting to an external power supply is provided in the receiving cavity. The wires of the electronic device are plugged and unplugged and electrically connected to the socket. An operation port communicating with the outside is opened on the cavity wall of the receiving cavity. The operation port is arranged adjacent to the socket, and the operation port allows the user's hand to pass through.

[0016] According to the intelligent experimental table described in the embodiments of the present utility model, the table body includes a tabletop and multiple table legs. The table legs support the tabletop. The mounting seat, the tabletop, and the multiple table legs jointly define a receiving area that can accommodate the user's legs, and the operation port communicates with the receiving area.

[0017] Additional aspects and advantages of the present utility model will be given in part in the following description, will become apparent in part from the following description, or will be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present utility model will be further described below in conjunction with the drawings and embodiments;

[0019] Figure 1 is a schematic structural diagram of an intelligent experimental table according to an embodiment of the present utility model;

[0020] Figure 2 is Figure 1Exploded view of the intelligent experimental table shown;

[0021] Figure 3 For Figure 2 Schematic structural diagram of the electronic device of the intelligent experimental table shown;

[0022] Figure 4 For Figure 3 Partial enlarged view of the structure at position A of the electronic device shown;

[0023] Figure 5 For Figure 3 Partial enlarged view of the structure at position B of the electronic device shown.

[0024] Reference numerals:

[0025] Table body 100; Accommodation area 101; Tabletop 110; Table legs 120; Annular tube 121; Partition board 122;

[0026] Mounting seat 200; Accommodation cavity 201; Frame body 210; Lifting opening 211; Socket strip 212; First rack 213; Front baffle 220; Operation opening 221; Rear baffle 230;

[0027] Electronic device 300; Display screen 310; Socket 311; Sensor 312; Detection groove 313; Accommodation groove 314; First lifting structure 320; Mounting bracket 321; First driver 322; First gear 323; First imaging structure 330; First support rod 331; First connecting rod 332; First camera 333; Rotating structure 340; Second driver 341; First transmission rod 342; Second transmission rod 343; First runner 344; Third transmission rod 345; Second runner 346; Second imaging structure 350; Second support rod 351; Second connecting rod 352; Second camera 353; Second lifting structure 360; Third driver 361; Second gear 362;

[0028] Anti-peeping component 400; Anti-peeping plate 410; Second rack 420; Fourth driver 430. Detailed implementation manners

[0029] This part will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the drawings. The function of the drawings is to supplement the description of the text part of the specification, enabling people to intuitively and vividly understand each technical feature and the overall technical solution of the present invention, but it cannot be construed as a limitation on the protection scope of the present invention.

[0030] In the description of the present utility model, it should be understood that regarding the orientation description, for example, the orientations or positional relationships indicated by up, down, front, back, left, right, etc. are based on the orientations or positional relationships shown in the drawings. This is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or component referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.

[0031] In the description of the present utility model, the meaning of "several" is one or more, the meaning of "multiple" is two or more. Understandings such as "greater than", "less than", "exceeding", etc. do not include the present number, and understandings such as "above", "below", "within", etc. include the present number. If there is a description of "first" and "second", it is only for the purpose of distinguishing technical features and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or the sequence relationship of the indicated technical features.

[0032] In the description of the present utility model, unless otherwise clearly defined, terms such as "set", "installed", "connected", etc. should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above terms in the present utility model in combination with the specific content of the technical solution.

[0033] The following refers to Figures 1 to 5 to elaborate in detail on the intelligent experimental table of the present application.

[0034] Referring to Figure 1 , the intelligent experimental table according to an embodiment of the present utility model includes a table body 100, a mounting base 200, and an electronic device 300.

[0035] For example, as Figure 1 , Figure 3 and Figure 4 shown, the mounting base 200 is provided on the periphery of the table body 100. A receiving cavity 201 is formed in the mounting base 200. At least one lifting opening 211 communicating with the outside is provided on the upper cavity wall of the receiving cavity 201; the electronic device 300 includes a display screen 310 and a first lifting structure 320. A socket 311 and a sensor 312 are provided on the display screen 310. The sensor 312 is provided on one side of the socket 311 and is used to detect whether a plug is inserted into the socket 311. The first lifting structure 320 is connected to the display screen 310 and is electrically connected to the sensor 312. The first lifting structure 320 can drive the display screen 310 to retract into the receiving cavity 201 through the lifting opening 211 when the sensor 312 detects that no plug is inserted into the socket 311.

[0036] It can be understood that when the intelligent experimental table of the present utility model is not working, the display screen 310 can be accommodated in the accommodation cavity 201, thereby realizing the storage of the display screen 310; when the intelligent experimental table of the present utility model is in a working state, driven by the first lifting structure 320, the display screen 310 can move upward, pass through the lifting opening 211 and extend out of the accommodation cavity 201. Thus, the user can learn the experimental tutorial through the display screen 310. At the same time, the socket 311 on the display screen 310 can facilitate the user to connect an external device to the display screen 310.

[0037] It should be noted that when an external device is connected to the socket 311 on the display screen 310, in this case, if the user negligently controls the first lifting structure 320 to retract the display screen 310 into the accommodation cavity 201, during this process, the plug of the external device will interfere with the mounting seat 200, thereby causing damage to the plug and even damage to the socket 311 under the reaction force of the plug.

[0038] In the intelligent experimental table of the present utility model, since a sensor 312 is provided on the display screen 310, and the sensor 312 is electrically connected to the first lifting structure 320, when the sensor 312 detects that a plug is inserted into the socket 311, the first lifting structure 320 will be in a non-operating state to avoid damage to the plug; at the same time, when the user sees that the display screen 310 cannot be retracted into the accommodation cavity 201, the user can timely realize that a plug is still inserted into the socket 311 on the display screen 310, so as to remind the user to pull out the plug on the socket 311.

[0039] In some embodiments of the present utility model, referring to Figure 4 , a detection groove 313 is provided on the display screen 310, and the socket 311 is provided in the detection groove 313; the sensor 312 is an infrared sensor, and the transmitting end and the receiving end of the infrared sensor are respectively located on two opposite groove walls of the detection groove 313, and the receiving end is used to receive the infrared rays emitted by the transmitting end.

[0040] For example, as Figure 4 shown, a detection groove 313 is provided at the front end of the display screen 310, the socket 311 is provided in the detection groove 313, and the left and right groove walls of the detection groove 313 are respectively installed with the transmitting end and the receiving end of the infrared sensor.

[0041] Furthermore, when a plug is inserted into the socket 311, the plug will block the infrared rays emitted by the transmitting end. At this time, the receiving end cannot normally receive the infrared rays emitted by the transmitting end, and the first lifting structure 320 is in a non-operating state; when no plug is inserted into the socket 311, the infrared rays emitted by the transmitting end can be normally received by the receiving end. At this time, the first lifting structure 320 can normally drive the display screen 310 to perform a lifting movement.

[0042] In some embodiments of the present utility model, the electronic device 300 further includes a first imaging structure 330 and a rotating structure 340. The first imaging structure 330 includes a first support rod 331, a first connecting rod 332, and a first camera 333. The first support rod 331 extends along the vertical direction, the first connecting rod 332 extends along the horizontal direction, and opposite ends of the first connecting rod 332 are respectively connected to the first camera 333 and the first support rod 331. The rotating structure 340 is in driving connection with the first support rod 331 and is configured to drive the first support rod 331 to rotate about the vertical axis.

[0043] For example, as Figure 2 shown, the upper end of the mounting base 200 is provided with a lifting opening 211 extending left and right.

[0044] When the first imaging structure 330 is located in the accommodation cavity 201, the first connecting rod 332 extends in the left-right direction. At this time, under the drive of the first lifting structure 320, the first imaging structure 330 can smoothly move out of the accommodation cavity 201 along the vertical direction from the lifting opening. Then, the rotating structure 340 can drive the first support rod 331 to rotate, so that the first connecting rod 332 can rotate to extend in the front-back direction, so that the first camera 333 on the first connecting rod 332 can move to directly above the tabletop 110 of the table body 100, facilitating the first camera 333 to clearly record the experimental process of the user on the tabletop 110.

[0045] In a further embodiment of the present utility model, referring to Figure 3 and Figure 5 , the rotating structure 340 includes a second driver 341, a first transmission rod 342, a second transmission rod 343, and a first runner 344. The first runner 344 is slidably sleeved on the first support rod 331 along the vertical direction. One end of the first transmission rod 342 is hinged to the edge of the first runner 344, the other end of the first transmission rod 342 is hinged to one end of the second transmission rod 343, and the middle of the second transmission rod 343 is connected to the second driver 341. The second driver 341 is configured to drive the second transmission rod 343 to rotate about the vertical axis.

[0046] Furthermore, under the drive of the second driver 341, the second transmission rod 343 can rotate about the vertical axis, so that the second transmission rod 343 can drive the first runner 344 to rotate about the vertical axis through the first transmission rod 342, so that the first support rod 331 can be driven by the first runner 344 to rotate about the vertical axis.

[0047] It can be understood that the arrangement of the first transmission rod 342 and the second transmission rod 343 enables the installation position of the second driver 341 to be further away from the first support rod 331, so as to reduce the probability of interference between the second driver 341 and the surrounding structures of the first support rod 331.

[0048] In order to enable the experimental process of the user on the table body 100 to be recorded more clearly, in some embodiments of the present invention, referring to Figures 1 to 3 , the electronic device 300 further includes a second imaging structure 350. The second imaging structure 350 is disposed on one side of the first imaging structure 330. The first lifting structure 320 is connected to the second imaging structure 350 and is used to drive the second imaging structure 350 to perform a lifting movement, so that the second imaging structure 350 can retract into or extend out of the accommodation cavity 201 through one of the lifting ports 211.

[0049] For example, as Figures 1 to 3 shown, the second imaging structure 350 and the first imaging structure 330 are distributed in the left - right direction, so that the second imaging structure 350 and the first imaging structure 330 can record the experimental process of the user from different angles.

[0050] In a further embodiment of the present invention, referring to Figure 3 , the second imaging structure 350 includes a second support rod 351, a second connecting rod 352 and a second camera 353. The second support rod 351 extends in the vertical direction. The second connecting rod 352 extends in the horizontal direction. Opposite ends of the second connecting rod 352 are respectively connected to the second camera 353 and the second support rod 351. The rotating structure 340 further includes a third transmission rod 345 and a second runner 346. The second runner 346 is sleeved on the second support rod 351. One end of the third transmission rod 345 is hinged to the end of the second transmission rod 343 away from the first transmission rod 342, and the other end of the third transmission rod 345 is hinged to the edge of the second runner 346.

[0051] Thus, under the drive of the second driver 341, the second transmission rod 343 can drive the second support rod 351 to rotate about the vertical axis through the third transmission rod 345, so as to realize the adjustment of the position of the second camera 353.

[0052] It can be understood that the arrangement of the first transmission rod 342, the second transmission rod 343 and the third transmission rod 345 enables the second driver 341 to simultaneously drive the first support rod 331 and the second support rod 351 to rotate about the vertical axis.

[0053] It should be noted that in the process of the rotating structure 340 driving the first support rod 331 to rotate, in order to avoid interference between the first connecting rod 332 and the display screen 310, the first camera structure 330 needs to maintain a larger distance between the display screens 310. However, this design is not conducive to the miniaturization of the entire smart laboratory table.

[0054] Based on the above problems, in some embodiments of the present invention, reference Figure 3 The first camera structure 330 also includes a second lifting structure 360, which is transmission-connected to the first support rod 331. The display screen 310 is provided with a left-right extending accommodating groove 314, and the first support rod 331 is passed through the accommodating groove 314; when the rotating structure 340 drives the first support rod 331 to rotate around the vertical axis so that the projections of the first connecting rod 332 and the first camera 333 in the vertical direction fall into the accommodating groove 314, the second lifting structure 360 can drive the first support rod 331 to perform a lifting movement so that the first connecting rod 332 and the first camera 333 are both accommodated in the accommodating groove 314.

[0055] It can be understood that when the smart laboratory table is working, the first connecting rod 332 is located above the display screen 310. At this time, when the rotating structure 340 drives the first support rod 331 to rotate around the vertical axis, interference between the first connecting rod 332 and the display screen 310 can be avoided; when the smart laboratory table finishes working, the rotating structure 340 can drive the first support rod 331 to rotate around the vertical axis, so that the first connecting rod 332 rotates to extend in the left and right directions. At this time, the second lifting structure 360 can drive the first support rod 331 to move downward, so that the first connecting rod 332 can drive the first camera 333 to move downward, so that the first connecting rod 332 and the first camera 333 can be accommodated in the accommodating groove 314, and then, under the drive of the first lifting structure 320, the display screen 310 and the first camera structure 330 can be synchronously lowered to be completely accommodated in the accommodating cavity 201.

[0056] In a further embodiment of the present invention, reference is made to Figure 5 The second lifting structure 360 includes a third driver 361 and a second gear 362. The first support rod 331 is provided with an annular tooth surface, and the second gear 362 is engaged with the tooth surface. The third driver 361 is connected to the second gear 362 and is used to drive the second gear 362 to rotate.

[0057] Furthermore, driven by the third driver 361 , the second gear 362 can rotate, thereby driving the first support rod 331 to move up and down.

[0058] It can be understood that since the first support rod 331 is provided with an annular tooth surface and the second gear 362 meshes with the tooth surface, when the rotating structure 340 drives the first support rod 331 to rotate about the vertical axis, the second gear 362 can always mesh with the tooth surface on the first support rod 331.

[0059] In some embodiments of the present utility model, referring to Figure 3 , the first lifting structure 320 is disposed in the accommodation cavity 201. The first lifting structure 320 includes a mounting frame 321, a first driver 322, and a first gear 323. The display screen 310 is disposed on the mounting frame 321. A first rack 213 extending vertically is provided in the accommodation cavity 201. The first driver 322 is disposed on the mounting frame 321 and is electrically connected to the sensor 312. The output end of the first driver 322 is connected to the first gear 323. The first gear 323 meshes with the first rack 213. The first driver 322 is used to drive the first gear 323 to rotate.

[0060] Furthermore, driven by the first driver 322, the first gear 323 can rotate so that the first gear 323 can drive the mounting frame 321 to move up and down along the first rack 213.

[0061] Specifically, the first imaging structure 330, the second imaging structure 350, and the display screen 310 are all disposed on the mounting frame 321.

[0062] In a further embodiment of the present utility model, referring to Figure 1 and Figure 2 , the intelligent experimental table further includes an anti-peeping component 400. The anti-peeping component 400 includes an anti-peeping plate 410, a second rack 420, a third gear, and a fourth driver 430. The second rack 420 extends in the vertical direction and is connected to the anti-peeping plate 410. The third gear meshes with the second rack 420. The fourth driver 430 is connected to the third gear. The second rack 420, the third gear, and the fourth driver 430 are all disposed in the accommodation cavity 201.

[0063] Furthermore, driven by the fourth driver 430, the third gear can rotate so that the second rack 420 can drive the anti-peeping plate 410 to move up and down, so that the anti-peeping plate 410 can retract or extend out of the accommodation cavity 201 through a lifting opening 211.

[0064] It can be understood that by providing the anti-peeping plate 410, when the user conducts experimental operations on the intelligent experimental table of the present utility model, the anti-peeping plate 410 can play an anti-peeping role to prevent the surrounding people from peeping at the user's experimental process.

[0065] In some embodiments of the present utility model, referring to Figure 2, a socket 212 for electrically connecting to an external power supply is provided in the accommodation cavity 201, and the wire of the electronic device 300 is plugged and unplugged and electrically connected to the socket 212; an operation port 221 communicating with the outside is provided on the cavity wall of the accommodation cavity 201, the operation port 221 is arranged adjacent to the socket 212, and the operation port 221 allows the user's hand to pass through.

[0066] It can be understood that by arranging the operation port 221 adjacent to the socket 212, the user's hand can extend into the accommodation cavity 201 through the operation port 221 to realize the connection or disconnection of the electrical connection between the wire of the electronic device 300 and the socket 212, making the user's operation more convenient.

[0067] In some embodiments of the present utility model, a door panel is detachably provided on the mounting seat 200, the door panel is arranged at the operation port 221 and is used to close the operation port 221.

[0068] It can be understood that by detachably providing a door panel on the mounting seat 200 and the door panel is used to close the operation port 221, the operation port 221 can be in a closed state under normal circumstances to prevent animals such as mice from entering the accommodation cavity 201 through the operation port 221.

[0069] In some embodiments of the present utility model, refer to Figure 2 , the mounting seat 200 includes a frame body 210, a front baffle 220 and a rear baffle 230. The front baffle 220 is connected to the front end of the frame body 210, and the operation port 221 is arranged on the front baffle 220. The rear baffle 230 is connected to the rear end of the frame body 210. The front baffle 220, the frame body 210 and the rear baffle 230 jointly define the accommodation cavity 201, and the lifting port 211 and the socket 212 are both arranged on the frame body 210.

[0070] In some embodiments of the present utility model, refer to Figure 1 and Figure 2 , the table body 100 includes a tabletop 110 and a plurality of table legs 120. The table legs 120 support the tabletop 110. The mounting seat 200, the tabletop 110 and the plurality of table legs 120 jointly define an accommodation area 101. The accommodation area 101 can accommodate the user's legs, and the operation port 221 communicates with the accommodation area 101.

[0071] It can be understood that by providing the accommodation area 101, when the user sits in front of the intelligent experimental table of the present utility model, the user's legs can extend into the accommodation area 101, thereby improving the comfort of the user when conducting experiments on the intelligent experimental table of the present utility model.

[0072] In a further embodiment of the present utility model, the table body 100 includes two table legs 120, and the two table legs 120 are respectively located at opposite ends of the accommodation area 101; the table legs 120 include an annular tube 121 and a partition plate 122. The annular tube 121 supports the tabletop 110, and the partition plate 122 is disposed inside the inner circle of the annular tube 121 and is connected to the annular tube 121.

[0073] For example, as Figure 1 and Figure 2 shown, the table body 100 includes two table legs 120 distributed left and right. The two table legs 120 respectively support the left and right ends of the tabletop 110. The table legs 120 include an annular tube 121 and a partition plate 122. The annular tube 121 is provided with a hollow interior. The partition plate 122 is disposed inside the inner circle of the annular tube 121 and is connected to the annular tube 121; the mounting seat 200 is located at the rear side of the table body 100.

[0074] It can be understood that by providing the annular tube 121, on the premise of ensuring that the table legs 120 can stably support the tabletop 110, the manufacturing materials of the table legs 120 are reduced, thereby saving the manufacturing cost of the table legs 120; by providing the partition plate 122 and the partition plate 122 is disposed inside the inner circle of the annular tube 121, the accommodation area 101 can be blocked, so as to improve the privacy of the accommodation area 101.

[0075] It can be understood that the setting of the partition plate 122 can make the entire experimental table have a better visual effect.

[0076] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that: various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and purposes of the present utility model. The scope of the present utility model is defined by the claims and their equivalents.

Claims

1. An intelligent experimental table, characterized in that, include: Table body; A mounting seat is provided on the periphery of the table body, wherein a receiving cavity is formed in the mounting seat, and an upper cavity wall of the receiving cavity is provided with at least one lifting port communicating with the outside; An electronic device includes a display screen and a first lifting structure. The display screen is provided with a socket and a sensor. The sensor is provided on one side of the socket and is used to detect whether a plug is plugged into the socket. The first lifting structure is connected to the display screen and is electrically connected to the sensor. The first lifting structure can drive the display screen to retract into the accommodating cavity through the lifting opening when the sensor detects that no plug is plugged into the socket.

2. The intelligent experimental table according to claim 1, characterized in that, A detection slot is provided on the display screen, and the socket is provided in the detection slot; the sensor is an infrared sensor, and the transmitting end and the receiving end of the infrared sensor are respectively located on the two opposite slot walls of the detection slot, and the receiving end is used to receive the infrared rays emitted by the transmitting end.

3. An intelligent experimental table according to claim 1, characterized in that, The first lifting structure is arranged in the accommodating cavity, and the first lifting structure includes a mounting frame, a first driver and a first gear. The display screen is arranged on the mounting frame. A vertically extending first rack is provided in the accommodating cavity. The first driver is arranged on the mounting frame and is electrically connected to the sensor. The output end of the first driver is connected to the first gear, and the first gear is engaged with the first rack. The first driver is used to drive the first gear to rotate.

4. An intelligent experimental table according to claim 1, characterized in that, The electronic device also includes a first camera structure and a rotating structure. The first camera structure includes a first support rod, a first connecting rod and a first camera. The first support rod extends in a vertical direction, and the first connecting rod extends in a horizontal direction. The opposite ends of the first connecting rod are respectively connected to the first camera and the first support rod. The rotating structure is transmission-connected to the first support rod and is used to drive the first support rod to rotate around a vertical axis.

5. An intelligent experimental table according to claim 4, characterized in that, The rotating structure includes a second driver, a first transmission rod, a second transmission rod and a first rotating wheel. The first rotating wheel is slidably mounted on the first support rod in a vertical direction. One end of the first transmission rod is hinged to the edge of the first rotating wheel, and the other end of the first transmission rod is hinged to one end of the second transmission rod. The middle part of the second transmission rod is connected to the second driver, and the second driver is used to drive the second transmission rod to rotate around the vertical axis.

6. The intelligent experimental table according to claim 5, characterized in that, The electronic device also includes a second camera structure, which includes a second support rod, a second connecting rod and a second camera. The second support rod extends in a vertical direction, and the second connecting rod extends in a horizontal direction. The opposite ends of the second connecting rod are respectively connected to the second camera and the second support rod. The rotating structure also includes a third transmission rod and a second rotating wheel. The second rotating wheel is mounted on the second support rod, one end of the third transmission rod is hinged to an end of the second transmission rod away from the first transmission rod, and the other end of the third transmission rod is hinged to the edge of the second rotating wheel.

7. An intelligent experimental table according to claim 5, characterized in that, The electronic device further includes a second lifting structure, the second lifting structure is in transmission connection with the first support rod, a horizontally extending receiving groove is provided on the display screen, and the first support rod penetrates through the receiving groove; when the rotating structure drives the first support rod to rotate around the vertical axis so that the projections of the first connecting rod and the first camera in the vertical direction fall into the receiving groove, the second lifting structure can drive the first support rod to move up and down so that both the first connecting rod and the first camera are received in the receiving groove.

8. An intelligent experimental table according to claim 7, characterized in that, The second lifting structure includes a third driver and a second gear, a ring-shaped tooth surface is provided on the first support rod, the second gear meshes with the tooth surface, the third driver is connected to the second gear and is used for driving the second gear to rotate.

9. An intelligent experimental table according to claim 1, characterized in that, A socket for electrically connecting with an external power supply is provided in the receiving cavity, the wire of the electronic device is plugged and unplugged and electrically connected with the socket; an operation opening communicating with the outside is formed in the cavity wall of the receiving cavity, the operation opening is arranged adjacent to the socket, and the operation opening allows the user's hand to pass through.

10. The intelligent experimental table according to claim 9, characterized in that, The table body includes a tabletop and a plurality of table legs, the table legs support the tabletop, the mounting seat, the tabletop and the plurality of table legs jointly define a receiving area, the receiving area can accommodate the user's legs, and the operation opening communicates with the receiving area.