Adjusting device and control method thereof, electronic device

By designing an adjustment device and utilizing the lifting and retraction mechanism of the rotatable feet, the problems of aesthetic damage and high wind resistance in traditional solutions are solved, achieving efficient heat dissipation and user-friendly electronic device design.

CN115617119BActive Publication Date: 2026-02-06SHENZHEN BITLAND INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202211116646.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-14
Publication Date
2026-02-06
Estimated Expiration
2042-09-14

AI Technical Summary

Technical Problem

Existing technologies in electronic devices such as laptops often result in traditional heat dissipation solutions that negatively impact aesthetics or cause damage to the appearance, and also create significant air resistance, failing to balance high performance and user experience.

Method used

Design an adjustment device that controls the lifting of a rotatable foot pad through manual and automatic adjustment modes, increasing the space between the device and the placement surface. The lifting or retraction of the foot pad is achieved by the rotational connection of the first and second connecting parts, combined with user operation and drive control.

Benefits of technology

It improves the heat dissipation performance and user experience of electronic devices, enhances product competitiveness, and avoids the aesthetic damage and wind resistance problems of traditional solutions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a regulating device and a control method thereof and an electronic device, and is applied to the electronic device, wherein the electronic device comprises a main body and a display screen; the regulating device comprises a first connecting piece, a second connecting piece, a foot pad assembly and a regulating assembly; the first connecting piece is used for being connected with the main body; the second connecting piece is used for being connected with the display screen; the second connecting piece is rotationally connected with the first connecting piece; the foot pad assembly comprises a driving piece and a foot pad; the foot pad is rotationally connected with the first connecting piece; the driving piece is arranged on the first connecting piece and is in transmission connection with the foot pad; the regulating assembly is movably arranged on the first connecting piece; the regulating device has a first state that the foot pad assembly is in transmission connection with the second connecting piece through the regulating assembly and a second state that the regulating assembly is separated from the foot pad assembly and the second connecting piece. The application aims to provide the regulating device and the control method thereof to enhance the heat dissipation performance of the electronic device, improve the product performance and the user experience, and improve the product competitiveness.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of heat dissipation technology, in particular to an adjusting device and a control method thereof, and an electronic device applying the adjusting device. BACKGROUND

[0002] With the development of electronic devices such as notebook computers in the direction of high performance and thinness, in the case of limited overall size, improving the working efficiency of the fan can further improve the heat dissipation performance of the overall machine and the user experience, so as to improve the competitiveness of the product.

[0003] Traditional scheme 1 increases a physical foot pad on the bottom shell of the electronic device to raise the overall electronic device to realize heat dissipation at the bottom thereof, but the foot pad is too high and protrudes from the body of the electronic device, affecting the overall appearance of the electronic device and the visual experience of the user, thereby reducing the degree of recognition of the product by the user.

[0004] Traditional scheme 2 is to unfold the display screen and use the edge at the bottom of the display screen to support, forming a gap between the bottom shell of the electronic device and the desktop to replace the conventional foot pad to realize heat dissipation. The disadvantage is that the display screen acts as a foot pad for a long time, causing problems such as wear, indentation and discoloration of the edge of the shell, which seriously affects the appearance of the product, and for the scheme of rotating shaft air outlet, it also causes the problem of large system air resistance, which is not conducive to the product to play higher performance. SUMMARY

[0005] The main purpose of the present application is to provide an adjusting device and a control method thereof, and an electronic device, which aims to enhance the heat dissipation performance of the electronic device through the adjusting device and the control method thereof. The adjusting device controls the rotation of the rotatable foot pad through manual adjustment mode and system automatic adjustment mode to raise the electronic device and increase the space between the bottom of the electronic device and the placement plane, thereby increasing the heat dissipation effect, improving the product performance and user experience, and improving the product competitiveness.

[0006] To achieve the above purpose, the present application provides an adjusting device applied to an electronic device, wherein the electronic device comprises a main body and a display screen, and the adjusting device comprises:

[0007] A first connecting member for connecting with the main body;

[0008] A second connecting member rotationally connected with the first connecting member, and configured to connect with the display screen;

[0009] A foot pad assembly comprising a driving member and a foot pad, wherein the foot pad is rotationally connected with the first connecting member, the driving member is arranged on the first connecting member and transmissionally connected with the foot pad; and

[0010] an adjusting assembly movably arranged on the first connecting member;

[0011] wherein the adjusting device has a first state in which the foot pad assembly is in transmission connection with the second connecting member through the adjusting assembly, and a second state in which the adjusting assembly is separated from the foot pad assembly and the second connecting member.

[0012] In an embodiment, the adjusting assembly comprises:

[0013] a switch member;

[0014] a telescopic shaft, one end of which is connected with the switch member, the first connecting member is provided with a first through hole corresponding to the telescopic shaft, and the telescopic shaft is movably arranged in the first through hole; and

[0015] a first gear, which is arranged at an end of the telescopic shaft away from the switch member, and the first gear and the switch member are located on opposite sides of the first through hole;

[0016] wherein in the first state, the switch member drives the telescopic shaft to move along the first through hole, so that the first gear is in transmission connection with the second connecting member and the foot pad assembly at the same time; in the second state, the switch member drives the telescopic shaft to move along the first through hole, so that the first gear is separated from the transmission connection with the second connecting member and the foot pad assembly.

[0017] In an embodiment, the switch member comprises:

[0018] a receiving end, which is electrically connected with the main body; and

[0019] an output end, which is connected to an end of the telescopic shaft away from the first gear and opposite to the receiving end, and is in electromagnetic connection with the receiving end;

[0020] wherein in the first state, the receiving end is attracted to the output end to drive the telescopic shaft to move along the first through hole; in the second state, the receiving end is repelled from the output end to drive the telescopic shaft to move along the first through hole, so that the first gear is separated from the second connecting member and the foot pad assembly.

[0021] In an embodiment, the outer wall of the telescopic shaft is spaced apart to be provided with a first baffle and a second baffle, and the first baffle and the second baffle are located on opposite sides of the first through hole;

[0022] wherein in the first state, the second baffle abuts against one side of the first connecting member facing the first gear; in the second state, the first baffle abuts against one side of the first connecting member facing the switch member.

[0023] In an embodiment, one side of the foot pad is provided with a rotating shaft, the first connecting piece is provided with a second through hole corresponding to the rotating shaft, the rotating shaft is rotatably arranged in the second through hole, one end of the foot pad adjacent to the rotating shaft is in a circular arc shape, the other end of the foot pad away from the circular arc shape is provided with a protruding part, the protruding part is used for lifting the main body when the foot pad rotates, and the side of the foot pad away from the rotating shaft is further provided with a second gear, and the second gear is in transmission connection with the driving piece.

[0024] In an embodiment, the driving piece is provided with a driving shaft, the first connecting piece is provided with a third through hole corresponding to the driving shaft, the driving shaft is rotatably arranged in the third through hole, and the driving shaft is provided with a third gear at an end away from the driving piece, and the third gear is in meshing connection with the second gear.

[0025] The driving piece drives the third gear to rotate to drive the second gear to rotate, so that the foot pad rotates around the rotating shaft to lift the main body.

[0026] In an embodiment, the second gear is provided with a first limiting structure; the first limiting structure is a limiting protrusion; or, one side of the second gear facing the third gear is provided with teeth, so that the side of the second gear away from the third gear forms the first limiting structure.

[0027] And / or, the material of the foot pad is rubber or hard silica gel.

[0028] In an embodiment, the first connecting piece comprises an installation plate and a fixed plate arranged at an included angle, the fixed plate is connected with the main body, the foot pad is rotatably connected with the installation plate, the driving piece is arranged on the installation plate, and the adjusting assembly is movably arranged on the installation plate.

[0029] The second connecting piece is provided with a rotating shaft, the installation plate is provided with a fourth through hole corresponding to the rotating shaft, the rotating shaft is rotatably arranged in the fourth through hole, and the rotating shaft is provided with a fourth gear.

[0030] In the first state, the fourth gear is in transmission connection with the adjusting assembly.

[0031] In an embodiment, the fourth gear is provided with a second limiting structure.

[0032] The second limiting structure is a limiting protrusion; or, only one side of the fourth gear facing the first gear is provided with teeth, so that the side of the fourth gear away from the adjusting assembly forms the second limiting structure.

[0033] The application further provides a control method of the adjusting device.

[0034] acquiring an adjustment mode;

[0035] controlling a connection state of the adjustment assembly and the foot pad assembly and the second connecting member according to the adjustment mode, so that the adjustment device has a first state in which the foot pad assembly is in transmission connection with the second connecting member through the adjustment assembly, and a second state in which the adjustment assembly is separated from the foot pad assembly and the second connecting member.

[0036] In an embodiment, the adjustment mode includes a manual adjustment mode and an automatic adjustment mode;

[0037] The adjustment assembly includes a switch member, an extension shaft and a first gear, one end of the extension shaft is connected with the switch member, and the first gear is arranged at an end of the extension shaft away from the switch member.

[0038] The foot pad assembly includes a driving member and a foot pad, the foot pad is in rotational connection with the first connecting member, and the driving member is arranged on the first connecting member and in transmission connection with the foot pad.

[0039] In an embodiment, when the adjustment mode is the manual adjustment mode, the step of controlling the connection state of the adjustment assembly and the foot pad assembly and the second connecting member according to the adjustment mode, so that the adjustment device has the first state in which the foot pad assembly is in transmission connection with the second connecting member through the adjustment assembly, includes:

[0040] turning off the driving member;

[0041] controlling the switch member to drive the extension shaft to move, so as to drive the first gear to be in transmission connection with the second connecting member and the foot pad assembly at the same time.

[0042] In an embodiment, when the adjustment mode is the automatic adjustment mode, the step of controlling the connection state of the adjustment assembly and the foot pad assembly and the second connecting member according to the adjustment mode, so that the adjustment device has the second state in which the adjustment assembly is separated from the foot pad assembly and the second connecting member, includes:

[0043] controlling the switch member to drive the extension shaft to move, so as to drive the first gear to be separated from the second connecting member and the foot pad assembly in transmission;

[0044] starting the driving member, and controlling the driving member to drive the foot pad to rotate relative to the first connecting member, so that the foot pad supports the main body.

[0045] In an embodiment, when the adjustment mode is the automatic adjustment mode, the step of controlling the connection state of the adjustment assembly with the foot pad assembly and the second connecting member to make the adjustment device have a second state in which the adjustment assembly is separated from the foot pad assembly and the second connecting member comprises:

[0046] controlling the switch member to drive the telescopic shaft to move, so as to drive the first gear to be in transmission connection with the second connecting member and the foot pad assembly;

[0047] starting the driving member, and controlling the driving member to drive the foot pad to rotate relative to the first connecting member, so as to make the foot pad support the main body, and make the second connecting member rotate relative to the first connecting member.

[0048] In an embodiment, after the step of controlling the connection state of the adjustment assembly with the foot pad assembly and the second connecting member according to the adjustment mode,

[0049] The control method of the adjustment device further comprises:

[0050] judging the current adjustment mode, switching the adjustment mode, and controlling the connection state of the adjustment assembly with the foot pad assembly and the second connecting member according to the switched adjustment mode.

[0051] The present application further provides an electronic device, which comprises:

[0052] a main body;

[0053] a display screen; and

[0054] the adjustment device as described above, which is connected with the main body and the display screen respectively.

[0055] The adjusting device of the technical scheme is applied to an electronic device, and is used for enhancing the heat dissipation performance of the electronic device. The first connecting piece in the adjusting device is used for being connected with a main body of the electronic device, and the second connecting piece in the adjusting device is used for being connected with a display screen in the electronic device. The main body and the display screen in the electronic device are rotatably connected through the mutual rotation connection of the first connecting piece and the second connecting piece. A rotatable foot pad is arranged on the first connecting piece, so that when the foot pad rotates, the whole electronic device is lifted, the space between the electronic device and the placing plane is increased, and the heat dissipation of the electronic device is facilitated. The first connecting piece is provided with an adjusting assembly, the adjusting assembly can move along the axis direction, so that the adjusting device has a first state that the foot pad assembly and the second connecting piece are transmissionally connected through the adjusting assembly. At this time, when the user rotates the display screen, the display screen drives the second connecting piece to rotate, and the foot pad assembly is driven to rotate through the adjusting assembly, so as to realize the lifting or retraction of the foot pad. The adjusting device also has a second state that the foot pad assembly and the second connecting piece are separated. At this time, the rotation of the foot pad is only controlled by the driving piece. Through the operation of the user, the purpose of flexibly switching the control mode of the foot pad assembly is achieved. Therefore, the lifting of the foot pad is combined with the operation of the user, the product performance is improved, the user experience is improved, and the product competitiveness is improved. BRIEF DESCRIPTION OF DRAWINGS

[0056] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only show some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of the drawings shown.

[0057] Figure 1 It is a structural schematic view of the adjusting device in an embodiment of the present application.

[0058] Figure 2 It is an exploded schematic view of the adjusting device in an embodiment of the present application.

[0059] Figure 3 It is a structural schematic view of the adjusting device in a first state in an embodiment of the present application.

[0060] Figure 4 It is a structural schematic view of the adjusting device in a second state in an embodiment of the present application.

[0061] Figure 5 It is a structural schematic view of the electronic device in an embodiment of the present application.

[0062] EXPLANATION OF DRAWINGS:

[0063] Reference numerals Names Reference numerals Names 100 Adjusting device 32 Foot pad 1 First connecting piece 321 Rotating shaft 11 First through hole 322 Protruding part 12 Second through hole 323 Second gear 13 Third through hole 3231 First limiting structure 14 Fourth through hole 4 Adjusting assembly 15 Mounting plate 41 Switch piece 16 Fixing plate 42 Telescopic shaft 2 Second connecting piece 421 First baffle 21 Rotating shaft 422 Second baffle 211 Fourth gear 43 First gear 2111 Second limiting structure 101 First state 3 Foot pad assembly 102 Second state 31 Driving piece 500 Electronic device 311 Driving shaft 501 Main body 3111 Third gear 502 Display screen

[0064] The objectives, functional features and advantages of the present application will be further described with reference to the embodiments in combination with the accompanying drawings. DETAILED DESCRIPTION

[0065] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the protection scope of the present application.

[0066] It should be noted that all the directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directionality indications also change accordingly.

[0067] Meanwhile, the meaning of “and / or” or “and / or” appearing throughout the text is that three schemes are included, taking “A and / or B” as an example, including A scheme, or B scheme, or A and B schemes are satisfied at the same time.

[0068] In addition, the description such as “first”, “second” and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by “first”, “second” can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of a person of ordinary skill in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor is it within the protection scope required by the present application.

[0069] With the continuous development of electronic devices such as notebook computers towards high performance and thin and light, in the case of limited overall size, improving the working efficiency of the fan can further improve the heat dissipation performance and user experience of the overall machine, so as to improve the competitiveness of the product.

[0070] The traditional scheme 1 increases the physical foot pad on the bottom shell of the electronic device to raise the overall electronic device to realize heat dissipation at the bottom of the electronic device, but the disadvantage is that the foot pad is too high and protrudes from the electronic device body, affecting the overall beauty of the electronic device, and the user's visual experience is also greatly affected, thereby leading to low user recognition of the product.

[0071] The traditional scheme 2 is to replace the conventional foot pad by unfolding the display screen, supporting by the edge of the bottom of the display screen, forming a gap between the bottom shell of the electronic device and the desktop, and achieving heat dissipation, which has the defects that long-term use of the display screen as a foot pad causes the edge of the shell to be worn, concave and discolored, etc., which seriously affects the appearance of the product, and also causes the problem of large system wind resistance for the scheme of rotating shaft air outlet, which is not conducive to the product to play higher performance.

[0072] Based on the above ideas and problems, the present application provides an adjusting device and a control method thereof, and an electronic device. It can be understood that the adjusting device 100 is applied to the electronic device 500, and a rotatable foot pad 32 is arranged on the adjusting device 100. By connecting the adjusting device 100 with the main body 501 and the display screen 502 of the electronic device 500, when the user rotates to open the display screen 502 relative to the main body 501, the foot pad 32 also rotates and lifts to increase the space between the electronic device 500 and the placement plane, thereby increasing the heat dissipation performance. At the same time, the present application also provides a control method based on the adjusting device 100, so that the user can select two modes of manual adjustment of the foot pad and automatic adjustment of the foot pad, improve the product performance and user experience, and improve the product competitiveness.

[0073] Please refer to Figures 1 to 5 In the embodiment of the present application, the adjusting device 100 is applied to the electronic device 500, and the electronic device 500 includes a main body 501 and a display screen 502. The adjusting device 100 includes a first connecting piece 1, a second connecting piece 2, a foot pad assembly 3, and an adjusting assembly 4. The first connecting piece 1 is used to connect with the main body 501. The second connecting piece 2 is rotatably connected with the first connecting piece 1. The second connecting piece 2 is used to connect with the display screen 502. The foot pad assembly 3 includes a driving piece 31 and a foot pad 32. The foot pad 32 is rotatably connected with the first connecting piece 1. The driving piece 31 is arranged on the first connecting piece 1 and is in transmission connection with the foot pad 32. The adjusting assembly 4 is movably arranged on the first connecting piece 1. The adjusting device 100 has a first state 101 that the foot pad assembly 3 is in transmission connection with the second connecting piece 2 through the adjusting assembly 4, and a second state 102 that the adjusting assembly 4 is separated from the foot pad assembly 3 and the second connecting piece 2.

[0074] In the embodiment, the first connecting piece 1 and the second connecting piece 2 are the main body structure of the adjusting device 100. The foot pad assembly 3 and the adjusting assembly 4 are both mounted on the first connecting piece 1, and the first connecting piece 1 and the second connecting piece 2 are also rotatably connected together. The first connecting piece 1 is connected with the main body 501 in the electronic device 500, and the second connecting piece 2 is connected with the display screen 502 in the electronic device 500, so that the main body 501 and the display screen 502 are also rotatably connected together.

[0075] It can be understood that the rotatable connection of the first connecting member 1 and the second connecting member 2 enables the main body 501 and the display screen 502 to be rotatably connected together. The first connecting member 1 and the second connecting member 2 can be a mounting rack, a mounting table, a base or a mounting plate, which are not limited herein.

[0076] In the embodiment, the foot pad assembly 3 is arranged on the first connecting member 1, and the foot pad assembly 3 comprises a driving member 31 and a foot pad 32. The driving member 31 is rotatably arranged on the first connecting member 1, and the driving member 32 is in transmission connection with the foot pad 32. The foot pad assembly 3 and the second connecting member 2 are arranged at two ends of the first connecting member 1.

[0077] It can be understood that the second connecting member 2 is arranged at an end of the first connecting member 1 closer to the display screen 502, and the axis of rotation of the second connecting member 2 relative to the first connecting member 1 is the axis of rotation of the display screen 502 relative to the main body 501. The foot pad assembly 3 is arranged at an end of the first connecting member 1 away from the display screen 502, so that when the user rotates the display screen 502, the foot pad 32 can be rotated through multi-stage gear transmission, which can lift the electronic device 500 to increase the space between the electronic device 500 and the platform on which the electronic device 500 is placed, thereby enhancing the heat dissipation performance, and can also combine the user's operation with the lifting of the foot pad, thereby improving the user's experience and improving the product competitiveness.

[0078] In the embodiment, the adjusting device 100 further comprises an adjusting assembly 4, which is also arranged on the first connecting member 1 and between the foot pad assembly 3 and the second connecting member 2. The adjusting assembly 4 can move along its axis direction, that is, the adjusting assembly 4 can be in transmission connection with the foot pad assembly 3 and the second connecting member 2, or can be disconnected from the transmission connection with the foot pad assembly 3 and the second connecting member 2.

[0079] It can be understood that when the adjusting assembly 4 is in transmission connection with the foot pad assembly 3 and the second connecting member 2, the adjusting device 100 is in a first state 101. In this state, when the user rotates the display screen 502, the display screen 502 drives the second connecting member 2 to rotate relative to the first connecting member 1, and the second connecting member 2 also drives the foot pad assembly 3 to rotate through the transmission connection with the adjusting assembly 4. At this time, the foot pad 32 rotates following the user's operation, thereby lifting the main body 501 connected with the first connecting member 1. That is, in the first state 101, the rotation of the foot pad 32 is combined with the user's operation, so that the user can adjust the size of the space between the main body 501 of the electronic device 500 and the platform on which the electronic device 500 is placed, thereby changing the heat dissipation performance of the electronic device 500 and improving the heat dissipation efficiency.

[0080] It can be understood that when the adjusting assembly 4 is disengaged from the transmission connection with the foot pad assembly 3 and the second connecting piece 2, the adjusting device 100 is in the second state 102, in which state the second connecting piece 2 is not in transmission connection with the foot pad assembly 3, and the rotation of the foot pad 32 is controlled by the driving piece 31, which is controlled by the temperature sensor in the electronic device 500 or the embedded control chip in the system, and when the temperature is high, the driving piece 31 is started to control the rotation of the foot pad 32, so as to adjust the space between the main body 501 and the placed plane, and adjust the heat dissipation performance of the electronic device 500. At this time, since the adjusting assembly 4 is disengaged from the transmission connection with the foot pad assembly 3 and the second connecting piece 2, the rotation of the foot pad 32 will not affect the display screen 502, ensuring the user's experience during use and improving the user's good feeling.

[0081] The adjusting device 100 of the present application is applied to the electronic device 500 to enhance the heat dissipation performance of the electronic device 500. The first connecting piece 1 in the adjusting device 100 is used to be connected with the main body 501 of the electronic device 500, and the second connecting piece 2 in the adjusting device 100 is used to be connected with the display screen 502 in the electronic device 500, and through the mutual rotation connection of the first connecting piece 1 and the second connecting piece 2, the main body 501 and the display screen 502 in the electronic device 500 are also rotatably connected. A rotatable foot pad 32 is arranged on the first connecting piece 1, so that when the foot pad 32 rotates, the entire electronic device 500 is lifted, the space between the electronic device 500 and the placed plane is increased, and the heat dissipation of the electronic device 500 is facilitated. The first connecting piece 1 is provided with an adjusting assembly 4, which can move along the axis direction, so that the adjusting device 100 has a first state 101 in which the foot pad assembly 3 and the second connecting piece 2 are in transmission connection through the adjusting assembly 4, at this time, when the user rotates the display screen 502, the display screen 502 drives the second connecting piece 2 to rotate, and the foot pad assembly 3 is driven to rotate through the adjusting assembly 4, so as to realize the lifting or retraction of the foot pad 32; and a second state 102 in which the foot pad assembly 3 and the second connecting piece 2 are separated, at this time, the rotation of the foot pad 32 is only controlled by the driving piece 31, and through the user's operation, the purpose of flexibly switching the control mode of the foot pad assembly 3 is achieved, so as to combine the lifting of the foot pad 32 with the user's operation, improve the product performance, improve the user's experience, and improve the product competitiveness.

[0082] In an embodiment, the adjusting assembly 4 comprises a switch member 41, an extension shaft 42 and a first gear 43. The extension shaft 42 is connected to the switch member 41 at one end. The first connecting member 1 is provided with a first through hole 11 corresponding to the extension shaft 42. The extension shaft 42 is movably arranged in the first through hole 11. The first gear 43 is arranged at the end of the extension shaft 42 away from the switch member 41. The first gear 43 and the switch member 41 are located on opposite sides of the first through hole 11. In the first state 101, the switch member 41 drives the extension shaft 42 to move along the first through hole 11, so that the first gear 43 is simultaneously in driving connection with the second connecting member 2 and the foot pad assembly 3. In the second state 102, the switch member 41 drives the extension shaft 42 to move along the first through hole 11, so that the first gear 43 is disconnected from the second connecting member 2 and the foot pad assembly 3.

[0083] In the embodiment, as shown in Figures 2 to 4 the extension shaft 42 is arranged in the first through hole 11 of the first connecting member 1 and can move along the axis direction of the first through hole 11. The switch member 41 and the first gear 43 are arranged at the two ends of the extension shaft 42, respectively. The switch member 41 is used to receive the instruction of the electronic device 500 and has the function of controlling the movement of the extension shaft 42 along the axis direction thereof. The first gear 43 is used to be in driving connection or disconnection with the foot pad assembly 3 and the second connecting member 2.

[0084] It can be understood that, in the first state 101, the switch member 41 controls the extension shaft 42 to move along the axis direction of the extension shaft 42, so that the first gear 43 is simultaneously in driving connection with the foot pad assembly 3 and the second connecting member 2. At this time, the rotation of the foot pad 32 is synchronous with the rotation of the display screen 502 by the user. In the second state 102, the switch member 41 controls the extension shaft 42 to move along the axis direction of the extension shaft 42, so that the first gear 43 is disconnected from the driving connection with the foot pad assembly 3 and the second connecting member 2. At this time, the rotation of the foot pad 32 is controlled by the driving member 31. In this way, the adjusting device 100 has the manual adjusting mode in the first state 101 and the automatic adjusting mode in the second state 102, which facilitates the user to select the adjusting mode of the foot pad according to the actual use and improves the user experience.

[0085] In an embodiment, the switch member 41 comprises a receiving end and an output end. The receiving end is electrically connected to the main body 501. The output end is connected to the end of the extension shaft 42 away from the first gear 43 and opposite to the receiving end. The output end is electromagnetically connected to the receiving end. In the first state 101, the receiving end and the output end are attracted to each other to drive the extension shaft 42 to move along the first through hole 11. In the second state 102, the receiving end and the output end repel each other to drive the extension shaft 42 to move along the first through hole 11 to separate the first gear 43 from the second connecting member 2 and the foot pad assembly 3.

[0086] In the embodiment, as shown inFigure 3 and Figure 4 As shown, the switch 41 consists of a receiver and an output, which are electromagnetically connected. That is, by energizing the receiver, its magnetism is changed, thus controlling the connection state between the receiver and the output. Specifically, when the receiver receives an electrical signal from the main body 501, its magnetism changes, attracting or repelling the output. This causes the output to drive the telescopic shaft 42 to move along its axial direction in the first through hole 11, allowing the first gear 43 to connect or disconnect from the foot pad assembly 3 and the second connecting member 2. This configuration allows for simple electrical signal control of the movement of the first gear 43 along the axial direction of the telescopic shaft 42, thereby changing the foot pad rotation adjustment mode. This provides users with more operational options and effectively improves the heat dissipation performance of the electronic device 500.

[0087] In one embodiment, the outer wall of the telescopic shaft 42 is provided with a first baffle 421 and a second baffle 422 at intervals, and the first baffle 421 and the second baffle 422 are located on opposite sides of the first through hole 11; wherein, in the first state 101, the second baffle 422 abuts against the side of the first connector 1 facing the first gear 43; in the second state 102, the first baffle 421 abuts against the side of the first connector 1 facing the switch member 41.

[0088] In this embodiment, as Figure 2 As shown, the telescopic shaft 42 is provided with a first stop plate 421 and a second stop plate 422 on both sides relative to the first through hole 11. The first stop plate 421 is located between the first connecting member 1 and the switch member 41, and the second stop plate 422 is located between the first connecting member 1 and the first gear 43.

[0089] Understandably, both the first baffle 421 and the second baffle 422 are used to limit the movement of the telescopic shaft 42 in its axial direction, preventing the adjusting component 4 from exceeding its maximum stroke. When switching from the first state 101 to the second state 102, the switch 41 drives the telescopic shaft 42 to move away from the first connector 1, so that the first gear 43 disengages from the transmission connection with the foot pad assembly 3 and the second connector 2. At this time, the first baffle 421 abuts against the side of the first connector 1 facing the switch 41 to limit the telescopic shaft 42, enhance the buffering performance of the adjusting component 4, and prevent the switch 41 from being impacted during movement.

[0090] It can be understood that when switched from the second state 102 to the first state 101, the switch part 41 drives the shaft 42 to move towards the first connecting part 1, so that the first gear 43 is in transmission connection with the foot pad assembly 3 and the second connecting part 2. At this time, the second blocking piece 422 abuts against the side of the first connecting part 1 facing the first gear 43, which limits the extension shaft 42 and enhances the buffering performance of the adjusting assembly 4, avoids the impact of the first gear 43 during movement, and also enables the first gear 43 to accurately mesh with the foot pad assembly 3 and the second connecting part 2, ensuring the stability of transmission and avoiding gear failure in the case of incomplete meshing. At the same time, the distance between the first blocking piece 421 and the second blocking piece 422 along the axis direction of the extension shaft 42 enables the first gear 43 to completely mesh with or disengage from the foot pad assembly 3 and the second connecting part 2 when switching between the first state 101 and the second state 102.

[0091] In an embodiment, one side of the foot pad 32 is provided with a rotating shaft 321, and the first connecting part 1 is provided with a second through hole 12 corresponding to the rotating shaft 321. The rotating shaft 321 is rotatably arranged in the second through hole 12. One end of the foot pad 32 adjacent to the rotating shaft 321 is arc-shaped. The end of the foot pad 32 away from the arc-shaped end is provided with a protruding part 322. The protruding part 322 is used to lift the main body 501 when the foot pad 32 rotates. The side of the foot pad 32 away from the rotating shaft 321 is also provided with a second gear 323 in transmission connection with the driving part 31.

[0092] In the embodiment, as shown in Figures 2 to 4 the foot pad 32 is movably arranged in the second through hole 12 provided on the first connecting part 1. The foot pad 32 is provided with a protruding part 322 at the end in contact with the placed plane. The cross-sectional shape of the protruding part 322 is arc-shaped or semi-elliptical, which is not limited herein. Meanwhile, the side of the foot pad 32 is also provided with a second gear 323 in transmission connection with the driving part 31. The second gear 323 can be arranged on the side of the foot pad 32 facing the first connecting part 1 or the side away from the first connecting part 1, which is not limited herein.

[0093] It can be understood that the protruding part 322 is used to lift the main body 501 when the foot pad 32 rotates, so its cross-sectional shape is preferably arc-shaped or semi-elliptical, which can realize slow and stable height change of the foot pad 32, ensure the user's experience, and make the heat dissipation height of the electronic device 500 have the infinite adjustment characteristic. The driving part 31 drives the second gear 323 to rotate, so that the second gear 323 drives the foot pad 32 to rotate. In the second state 102, the foot pad 32 can be controlled by the driving part 31 to realize automatic rotation of the foot pad 32 according to the temperature sensor or the embedded control chip in the system, so as to automatically adjust the space between the electronic device 500 and the placed plane and improve the heat dissipation efficiency.

[0094] In an embodiment, the driving member 31 is provided with a driving shaft 311, the first connecting member 1 is provided with a third through hole 13 corresponding to the driving shaft 311, the driving shaft 311 is rotatably arranged in the third through hole 13, and the driving shaft 311 is provided with a third gear 3111 at an end away from the driving member 31, the third gear 3111 is in meshing connection with the second gear 323; wherein the driving member 31 drives the third gear 3111 to rotate to drive the second gear 323 to rotate, so that the foot pad 32 rotates around the rotating shaft 321 to lift the main body 501.

[0095] In the embodiment, as shown in Figures 2 to 4 the driving member 31 is drivingly connected with the third gear 3111 through the driving shaft 311, the third gear 3111 is in meshing driving connection with the second gear 323, and when in the first state 101, the third gear 3111 is in meshing driving connection with the first gear 43.

[0096] It can be understood that the third gear 3111 is in meshing driving connection with the second gear 323, when in the first state 101, the user rotates the display screen 502 to drive the second connecting member 2 to rotate, the second connecting member 2 drives the second gear 323 to rotate through the first gear 43 and the third gear 3111 in sequence, so as to realize the control of the rotation of the foot pad 32. When in the second state 102, the third gear 3111 is only in meshing driving connection with the second gear 323, at this time, the rotation of the foot pad 32 is only controlled by the driving member 31.

[0097] In an embodiment, the second gear 323 is provided with a first limiting structure 3231; the first limiting structure 3231 is a limiting protrusion; or, one side of the second gear 323 facing the third gear 3111 is provided with teeth, so that the side of the second gear 323 away from the third gear 3111 forms the first limiting structure 3231.

[0098] In the embodiment, as shown in Figures 1 to 4 the second gear 323 is provided with a limiting protrusion on the teeth, that is, the height or thickness of the teeth at a specific position of the second gear 323 is increased, so that the second gear 323 and the third gear 3111 are out of meshing driving connection. In another embodiment, part of the teeth on the side of the second gear 323 away from the third gear 3111 is removed to form the first limiting structure 3231.

[0099] It can be understood that the first limiting structure 3231 is used to limit the rotation angle of the foot pad 32, so as to avoid that the rotation angle of the foot pad 32 is too large, so that the electronic device 500 does not reach the optimal heat dissipation performance, and even causes damage to the electronic device 500 and the adjusting device 100.

[0100] Optionally, the foot pad 32 is made of rubber or hard silica gel. It can be understood that the foot pad 32 made of rubber or hard silica gel can reduce the noise of the foot pad 32 during rotation, achieve the effect of silent rotation, and at the same time, the foot pad 32 can also make soft contact with the placed plane during rotation, enhancing the user's experience.

[0101] In an embodiment, the first connecting piece 1 comprises an installation plate 15 and a fixing plate 16 arranged at an angle, the fixing plate 16 is connected with the main body 501, the foot pad 32 is rotatably connected with the installation plate 15, the driving piece 31 is arranged on the installation plate 15, and the adjusting assembly 4 is movably arranged on the installation plate 15; the second connecting piece 2 is provided with a rotating shaft 21, the installation plate 15 is provided with a fourth through hole 14 corresponding to the rotating shaft 21, and the rotating shaft 21 is rotatably arranged in the fourth through hole 14; the rotating shaft 21 is provided with a fourth gear 211; in the first state 101, the fourth gear 211 is in transmission connection with the adjusting assembly 4.

[0102] In this embodiment, as shown in Figures 1 to 4 The foot pad assembly 3, the adjusting assembly 4 and the second connecting piece 2 are arranged on the side of the installation plate 15 away from the fixing plate 16, the fixing plate 16 is used to connect with the main body, and the installation plate 15 and the fixing plate 16 are arranged at an angle, so that the foot pad assembly 3 and the adjusting assembly 4 on the installation plate 15 are not affected during transmission. The second connecting piece 2 is connected with the first connecting piece 1 through the rotating shaft 21, and the fourth gear 211 is arranged on the rotating shaft 21 to be in meshing transmission connection with the first gear 43 in the adjusting assembly 4 in the first state 101.

[0103] It can be understood that the second connecting piece 2 is connected with the display screen 502, the first connecting piece 1 is connected with the main body 501 through the fixing plate 16, and is rotatably connected with the first connecting piece 1 through the rotating shaft 21, so as to realize the rotatable connection between the main body 501 and the display screen 502. In the first state 101, the first gear 43 is in meshing transmission connection with the third gear 3111 and the fourth gear 211 respectively, that is, when the user rotates the display screen 502, the fourth gear 211 also sequentially drives the first gear 43, the third gear 3111 and the second gear 323, so that the foot pad 32 rotates.

[0104] In an embodiment, the fourth gear 211 is provided with a second limiting structure 2111; the second limiting structure 2111 is a limiting protrusion; or, the fourth gear 211 is provided with teeth only on the side facing the first gear 43, so that the side of the fourth gear 211 away from the adjusting assembly 4 forms the second limiting structure 2111.

[0105] In this embodiment, as shown in Figures 1 to 4As shown, the fourth gear 211 is provided with a limiting protrusion on the teeth, that is, the teeth at a specific position of the fourth gear 211 are increased in height or thickness, so as to disable the engagement and transmission of the fourth gear 211 and the first gear 43 in the first state 101. In another embodiment, the second limiting structure 2111 is formed by removing part of the teeth on the side of the fourth gear 211 away from the first gear 43.

[0106] It can be understood that the second limiting structure 2111 is used to limit the rotation angle of the second connecting member 2, so as to avoid that the rotation angle of the second connecting member 2 is too large, causing the display screen 502 to be unable to be in a good working state, or even causing the display screen 502 or the adjusting device 100 to be damaged.

[0107] The adjusting device 100 is also provided with a control method, and the specific structure of the adjusting device 100 is referred to the foregoing embodiments. Since the processing technology of the adjusting device 100 adopts all the technical solutions of the foregoing embodiments, at least all the beneficial effects brought by the technical solutions of the foregoing embodiments are achieved, and thus will not be described here.

[0108] The control method of the adjusting device 100 comprises:

[0109] obtaining an adjustment mode;

[0110] controlling the connection state of the adjusting assembly 4, the foot pad assembly 3 and the second connecting member 2 according to the adjustment mode, so that the adjusting device 100 has a first state 101 in which the foot pad assembly 3 is in transmission connection with the second connecting member 2 through the adjusting assembly 4, and a second state 102 in which the adjusting assembly 4 is separated from the foot pad assembly 3 and the second connecting member 2.

[0111] In this embodiment, the control method of the adjusting device 100 first obtains the adjustment mode of the user, and then controls the position of the adjusting assembly 4 according to the adjustment mode, so as to realize the transmission connection or disconnection of the foot pad assembly 3 and the second connecting member 2 through the adjusting assembly 4.

[0112] Specifically, between obtaining the adjustment mode and adjusting the electronic equipment 500 by the adjusting device 100, there are three control processes. The first level is a user interface for providing a display interface for user operation; the second level is an operating system or a system driver for analyzing, calculating and processing user operation; and the third level is a basic input and output system for transmitting user operation to corresponding hardware equipment such as the adjusting device 100 in the present application.

[0113] Firstly, the user selects the adjustment mode through the user interface, and then the received adjustment mode is transmitted to the operating system or system driver for analysis and judgment, and the analysis and judgment result is transmitted to the basic input and output system to control the adjustment device 100. It can be understood that the adjustment assembly 4 in the adjustment device 100 obtains the adjustment mode, and then moves to make the adjustment device have the first state 101 that the adjustment device 100 has the first state 101 that the foot pad assembly 3 is drivingly connected with the second connecting piece 2 through the adjustment assembly 4, and the second state 102 that the adjustment assembly 4 is separated from the foot pad assembly 3 and the second connecting piece 2.

[0114] In an embodiment, the adjustment mode includes a manual adjustment mode and an automatic adjustment mode.

[0115] The adjustment assembly 4 includes a switch piece 41, a telescopic shaft 42, and a first gear 43. One end of the telescopic shaft 42 is connected with the switch piece 41, and the first gear 43 is arranged at the end of the telescopic shaft 42 away from the switch piece 41.

[0116] The foot pad assembly 3 includes a driving piece 31 and a foot pad 32. The foot pad 32 is rotatably connected with the first connecting piece 1, and the driving piece 31 is arranged on the first connecting piece 1 and drivingly connected with the foot pad 32.

[0117] It can be understood that the manual adjustment mode and the automatic adjustment mode in the adjustment mode correspond to the first state 101 and the second state 102 in the adjustment device 100. In the manual adjustment mode, that is, when the adjustment device 100 is in the first state 101, the rotation of the foot pad 32 is synchronized with the rotation of the display screen 502 by the user; when the adjustment device 100 is in the second state 102, the rotation of the foot pad 32 is controlled by the driving piece 31, which is controlled by the temperature sensor in the system and the embedded control chip in the system, to realize real-time control of the foot pad 32, that is, real-time control of the lifting of the electronic device 500.

[0118] In an embodiment, when the adjustment mode is the manual adjustment mode, the step of controlling the connection state of the adjustment assembly 4 and the foot pad assembly 3 and the second connecting piece 2 to make the adjustment device 100 have the first state 101 that the foot pad assembly 3 is drivingly connected with the second connecting piece 2 through the adjustment assembly 4 includes:

[0119] Turning off the driving piece 31;

[0120] Controlling the switch piece 41 to drive the telescopic shaft 42 to move to drive the first gear 43 to be drivingly connected with the second connecting piece 2 and the foot pad assembly 3.

[0121] It can be understood that in the manual adjustment mode, the driving member 31 is first closed, and then the adjustment assembly 4 is controlled, at this time, the second connecting member 2 is rotated relative to the first connecting member 1 by controlling the movement of the telescopic shaft 42, so that the first gear 42 drives the foot pad 32 to rotate relative to the main body 501, and then the main body 501 is lifted. At this time, only the second connecting member 2 controls the foot pad 32.

[0122] In an embodiment, when the adjustment mode is the automatic adjustment mode, the step of controlling the connection state of the adjustment assembly 4, the foot pad assembly 3 and the second connecting member 2 according to the adjustment mode, so that the adjustment device 100 has the second state 102 that the adjustment assembly 4 is separated from the foot pad assembly 3 and the second connecting member 2, includes:

[0123] The control switch 41 drives the telescopic shaft 42 to move, so that the first gear 43 is disconnected from the second connecting member 2 and the foot pad assembly 3;

[0124] The driving member 31 is started, and the driving member 31 drives the foot pad 32 to rotate relative to the first connecting member 1, so that the foot pad 32 supports the main body 501.

[0125] It can be understood that in the automatic adjustment mode, the adjustment assembly 4 exits the transmission system of the adjustment device 100, and the foot pad 32 is only controlled by the driving member 31, that is, the lifting of the electronic device 500 is also only controlled by the driving member 31. There are two ways to control the driving member 31 in the basic input / output system, one is the chip power consumption control strategy, and the other is the foot pad height control strategy. The chip power consumption control strategy is that when the temperature sensor and the embedded controller chip detect that the temperature of the electronic device 500 is too high or that too many tasks are running in the operating system or system driver, the operating system or system driver actively cools through the adjustment device 100 or the cooling fan in the electronic device 500; the foot pad height control strategy is a conventional cooling method when the temperature of the electronic device 500 is relatively low. Both control strategies control the driving member 31 in real time through the temperature sensor and the embedded controller chip, so as to realize real-time control of the rotation of the foot pad 32. In the automatic adjustment mode, the two control strategies are used to jointly control the driving member 31, which more intelligently optimizes the working state of the driving member 31 when the temperature of the electronic device 500 is high and low, and achieves the purpose of dynamically adjusting the foot pad 32 in real time, so that the electronic device 500 can dynamically adjust the space between the placed plane and improve the cooling performance and improve the working ability of the product.

[0126] In an embodiment, when the adjustment mode is the automatic adjustment mode, the step of controlling the connection state of the adjustment assembly 4, the foot pad assembly 3 and the second connecting member 2 according to the adjustment mode, so that the adjustment device 100 has the second state 102 that the adjustment assembly 4 is separated from the foot pad assembly 3 and the second connecting member 2, includes:

[0127] The control switch 41 drives the telescopic shaft 42 to move, thereby driving the first gear 43 to simultaneously connect with the second connector 2 and the foot pad assembly 3.

[0128] Start the drive unit 31 and control the drive unit 31 to drive the foot pad 32 to rotate relative to the first connector 1, so that the foot pad 32 supports the main body 501 and causes the second connector 2 to rotate relative to the first connector 1.

[0129] Understandably, in automatic adjustment mode, the user can still choose to simultaneously connect the first gear 43 in adjustment component 4 with the second connector 2 and the foot pad assembly 3. At this time, the drive component 31 is in the activated state, and while controlling the rotation of the foot pad 32 through the aforementioned control strategy, the display screen 502 will also rotate. Of course, the simultaneous connection of the first gear 43 with the second connector 2 and the foot pad assembly 3 in automatic adjustment mode is only possible under the premise that the electronic device 500 maintains a stable operating state and the overall temperature does not change significantly. When the temperature of the electronic device 500 rises or the workload increases, adjustment component 4 will still control the switch component 41 to drive the telescopic shaft 42 to move, thereby disengaging the first gear 43 from the second connector 2 and the foot pad assembly 3.

[0130] In one embodiment, after the step of controlling the connection state of the adjustment component 4 with the foot pad component 3 and the second connector 2 according to the adjustment mode;

[0131] The control method of the regulating device 100 also includes:

[0132] Determine the current adjustment mode, switch the adjustment mode, and control the connection status between the adjustment component 4, the foot pad component 3, and the second connector 2 according to the switched adjustment mode.

[0133] Understandably, even after the electronic device 500 is in manual or automatic adjustment mode, users can still choose to change the adjustment mode to adapt to the current working mode, enhance the user's operating experience, give users more choices, and improve product competitiveness.

[0134] The present invention also proposes an electronic device 500, such as... Figure 5 As shown, the electronic device 500 includes a main body 501, a display screen 502, and the aforementioned adjustment device 100. The adjustment device 100 is connected to both the display screen 502 and the main body 501. The specific structure of the adjustment device 100 is as described in the foregoing embodiments. Since this electronic device 500 adopts all the technical solutions of all the foregoing embodiments, it has at least all the beneficial effects brought about by the technical solutions of the foregoing embodiments, which will not be elaborated here.

[0135] Understandably, electronic devices can include mobile phones, headphones, tablets, laptops, and smart TVs, etc., and are not limited here.

[0136] The above merely describes optional embodiments of the present application, and does not limit the patent scope of the present application. Any equivalent structural transformation, direct / indirect application in other related technical fields, or the like, made under the concept of the present application, using the content of the present application specification and drawings, are included in the patent protection scope of the present application.

Claims

1. An adjustment device applied to an electronic device, the electronic device comprising a main body and a display screen, characterized in that, The regulating device includes: A first connector is used to connect to the main body; A second connector is rotatably connected to the first connector and is used to connect to the display screen. A foot pad assembly, comprising a drive member and a foot pad, wherein the foot pad is rotatably connected to the first connecting member, and the drive member is disposed on the first connecting member and is drively connected to the foot pad; and An adjustment component, which is movably disposed on the first connector; The adjusting device has a first state in which the foot pad assembly is connected to the second connector via the adjusting component, and a second state in which the adjusting component is separated from the foot pad assembly and the second connector.

2. The adjusting device according to claim 1, characterized in that, The adjustment component includes: Switching components; A telescopic shaft, one end of which is connected to the switch component, and a first connecting component having a first through hole corresponding to the telescopic shaft, the telescopic shaft being movably inserted into the first through hole; and The first gear is located at the end of the telescopic shaft away from the switch, and the first gear and the switch are located on opposite sides of the first through hole; In the first state, the switch drives the telescopic shaft to move along the first through hole, so that the first gear is simultaneously connected to the second connector and the foot pad assembly; in the second state, the switch drives the telescopic shaft to move along the first through hole, so that the first gear is disengaged from the second connector and the foot pad assembly.

3. The adjusting device according to claim 2, characterized in that, The switching element includes: The receiving end is electrically connected to the main body; and The output end is connected to the end of the telescopic shaft away from the first gear and is opposite to the receiving end. The output end is electromagnetically connected to the receiving end. In the first state, the receiving end and the output end attract each other to drive the telescopic shaft to move along the first through hole; in the second state, the receiving end and the output end repel each other to drive the telescopic shaft to move along the first through hole, separating the first gear from the second connector and the foot pad assembly.

4. The adjusting device according to claim 2, characterized in that, The outer wall of the telescopic shaft is provided with a first baffle and a second baffle, which are located on opposite sides of the first through hole. In the first state, the second baffle abuts against the side of the first connector facing the first gear; in the second state, the first baffle abuts against the side of the first connector facing the switch.

5. The adjusting device according to claim 1, characterized in that, The foot pad has a rotating shaft on one side, and the first connector has a second through hole corresponding to the rotating shaft. The rotating shaft rotates through the second through hole. The end of the foot pad adjacent to the rotating shaft is arc-shaped, and the end of the foot pad away from the arc shape has a protrusion. The protrusion is used to lift the main body when the foot pad rotates. The side of the foot pad facing away from the rotating shaft is also provided with a second gear, which is connected to the drive component.

6. The adjusting device according to claim 5, characterized in that, The driving component is provided with a driving shaft, and the first connecting component is provided with a third through hole corresponding to the driving shaft. The driving shaft is rotatably inserted into the third through hole. A third gear is provided at the end of the driving shaft away from the driving component, and the third gear is meshed with the second gear. The driving component drives the third gear to rotate, which in turn drives the second gear to rotate, causing the foot pad to rotate around the pivot to lift the main body.

7. The adjusting device according to claim 6, characterized in that, The second gear is provided with a first limiting structure; the first limiting structure is a limiting protrusion; or, the side of the second gear facing the third gear is provided with teeth, so that the side of the second gear facing away from the third gear forms the first limiting structure; And / or, the foot pad is made of rubber or hard silicone.

8. The adjusting device according to claim 2, characterized in that, The first connector includes a mounting plate and a fixing plate arranged at an angle. The fixing plate is connected to the main body, the foot pad is rotatably connected to the mounting plate, the driving component is disposed on the mounting plate, and the adjusting component is movably disposed on the mounting plate. The second connector is provided with a rotating shaft, and the mounting plate is provided with a fourth through hole corresponding to the rotating shaft. The rotating shaft is rotatably inserted into the fourth through hole, and the rotating shaft is provided with a fourth gear. In the first state, the fourth gear is connected to the adjustment assembly in a transmission connection.

9. The adjusting device according to claim 8, characterized in that, The fourth gear is provided with a second limiting structure; The second limiting structure is a limiting protrusion; or, the fourth gear has teeth only on the side facing the first gear, so that the side of the fourth gear facing away from the adjusting component forms the second limiting structure.

10. A control method for an adjusting device as described in any one of claims 1 to 9, characterized in that, The control method of the regulating device includes: Get the adjustment mode; The adjustment device controls the connection state of the adjustment component with the foot pad component and the second connector according to the adjustment mode, so that the adjustment device has a first state in which the foot pad component is connected to the second connector through the adjustment component, and a second state in which the adjustment component is separated from the foot pad component and the second connector.

11. The control method of the regulating device according to claim 10, characterized in that, The adjustment modes include manual adjustment mode and automatic adjustment mode; The adjustment assembly includes a switch, a telescopic shaft, and a first gear. One end of the telescopic shaft is connected to the switch, and the first gear is located at the end of the telescopic shaft away from the switch. The foot pad assembly includes a drive component and a foot pad. The foot pad is rotatably connected to the first connecting component. The drive component is disposed on the first connecting component and is drively connected to the foot pad.

12. The control method of the regulating device according to claim 11, characterized in that, When the adjustment mode is the manual adjustment mode, the step of controlling the connection state of the adjustment component with the foot pad component and the second connector according to the adjustment mode, so that the adjustment device has a first state in which the foot pad component is connected to the second connector through the adjustment component, includes: Turn off the driver; The control switch drives the telescopic shaft to move, thereby driving the first gear to simultaneously connect with the second connector and the foot pad assembly.

13. The control method of the regulating device according to claim 11, characterized in that, When the adjustment mode is automatic adjustment mode, the step of controlling the connection state of the adjustment component with the foot pad assembly and the second connector according to the adjustment mode, so that the adjustment device has a second state in which the adjustment component is separated from the foot pad assembly and the second connector, includes: The switch is controlled to drive the telescopic shaft to move, thereby disengaging the first gear from the second connecting member and the foot pad assembly; The drive unit is activated, and the drive unit is controlled to drive the foot pad to rotate relative to the first connector, so that the foot pad supports the main body.

14. The control method of the regulating device according to claim 11, characterized in that, When the adjustment mode is automatic adjustment mode, the step of controlling the connection state of the adjustment component with the foot pad assembly and the second connector according to the adjustment mode, so that the adjustment device has a second state in which the adjustment component is separated from the foot pad assembly and the second connector, includes: The switch is controlled to drive the telescopic shaft to move, thereby driving the first gear to simultaneously connect with the second connecting member and the foot pad assembly; The drive unit is activated, and the drive unit is controlled to drive the foot pad to rotate relative to the first connector, so that the foot pad supports the main body and the second connector rotates relative to the first connector.

15. The control method of the regulating device according to claim 10, characterized in that, After the step of controlling the connection state of the adjustment component with the foot pad component and the second connector according to the adjustment mode; The control method for the regulating device further includes: Determine the current adjustment mode, switch the adjustment mode, and control the connection status of the adjustment component with the foot pad component and the second connector according to the switched adjustment mode.

16. An electronic device, characterized in that, The electronic device includes: main body; Display screen; and The adjustment device as described in any one of claims 1 to 9, wherein the adjustment device is connected to the main body and the display screen respectively.

Citation Information

Patent Citations

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