Remote control device pick-and-place structure

Through the magnetic connection between the remote control and the fixture and the spherical cooperation, the problem of inconvenient pick-up and placement of the remote control is solved, convenient pick-up and placement and rotation are achieved, and user operation experience is improved.

CN223228175UActive Publication Date: 2025-08-15JOMOO KITCHEN & BATHROOM
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422610782.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-15
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The clamping method between the existing remote control and the bracket leads to inconvenient pick-up and placement, and the structure is complicated.

Method used

The magnetic connection and spherical cooperation between the remote control and the fixture are adopted to realize the pick-up and placement of the remote control on the fixture, and the structure is simple.

Benefits of technology

It realizes convenient pick-up and rotation of the remote control on the fixture, improves the user's operating experience, and the structure is simple and firm.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223228175U_ABST
    Figure CN223228175U_ABST
Patent Text Reader

Abstract

The utility model discloses a remote control device pick-and-place structure which comprises a remote controller and a fixing piece, the fixing piece is suitable for being installed on a wall body, the fixing piece is provided with a first magnetic attraction part, the remote controller is provided with a second magnetic attraction part, and the second magnetic attraction part and the first magnetic attraction part are suitable for being connected in a magnetic attraction mode and matched in a spherical surface mode. And the remote controller is back to the fixing piece. Compared with the prior art, the pick-and-place structure of the remote control device has the advantages that the pick-and-place and rotation of the remote controller on the fixed part are realized through the magnetic attraction connection and the spherical surface matching between the remote controller and the fixed part, and the structure is relatively simple.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of household appliance switches, in particular to a remote control device pick-up and placement structure. Background Art

[0002] Remote controls are commonly used to control household appliances. To facilitate access and storage, they are usually placed on a bracket fixed to the wall. A slot-type connection is often used between the remote control and the bracket, with the slot fixed to the bracket or a spherical fit for easy rotation. However, this type of connection makes it inconvenient to access the remote control. Figure 18 The improved remote control device placement structure includes a universal magnetic bracket, a ring bracket, and a remote control; a metal sheet is attached to the back of the remote control, and the ring bracket includes a movable connection seat, which is provided with a ring magnet. The ring magnet and the metal sheet attract each other, causing the remote control and the ring bracket to be magnetically connected; the universal magnetic bracket includes a rotating table, a connecting ball head, and a base. The rotating table is a hollow bowl-shaped component that is wide at the top and narrow at the bottom. A magnet block is provided inside the rotating table, and the magnet block is suitable for attracting the ring magnet to cause the universal magnetic bracket and the ring bracket to be magnetically connected; the connecting ball head is placed from the rotating table, and the lower end of the connecting ball head passes through the opening below the rotating table. The lower end of the connecting ball head is connected to the base by screws. This structure combines the universal magnetic bracket and the ring bracket, and utilizes the magnetic connection and the universal rotation structure of the universal magnetic bracket to make it more convenient to take and place the remote control, but the structure is relatively complex. Utility Model Content

[0003] The purpose of the present invention is to overcome the above-mentioned defects or problems in the background technology and to provide a remote control device pick-up and placement structure with a relatively simple structure.

[0004] To achieve the above objectives, the present invention and its related embodiments adopt the following technical solutions but are not limited to the following solutions:

[0005] The first technical solution relates to a remote control device pick-up and placement structure, which is characterized in that it includes a remote control and a fixing part, the fixing part is suitable for being installed on a wall, the fixing part is provided with a first magnetic part, the remote control is provided with a second magnetic part, the second magnetic part and the first magnetic part are suitable for magnetic connection and spherical fit, and the remote control is facing away from the fixing part.

[0006] The second technical solution is based on the first technical solution, wherein the remote control includes a third magnetic portion arranged along its circumference, and the third magnetic portion is suitable for being magnetically connected to the first magnetic portion when the remote control rotates relative to the fixing part and approaches the fixing part, so that the remote control is tilted and pressed against the fixing part.

[0007] The third technical solution is based on the second technical solution, wherein the shape of the third magnetic attraction portion is square or circular.

[0008] The fourth technical solution is based on the first technical solution, wherein the remote control includes a control panel and a cavity, the control panel is installed in the cavity, the control panel includes a controller and a sensor group, and the controller is electrically connected to the sensor group and the peripheral device respectively.

[0009] The fifth technical solution is based on the fourth technical solution, wherein the control panel is further provided with a liquid crystal display screen, and the liquid crystal display screen is electrically connected to the controller.

[0010] The sixth technical solution is based on the fourth technical solution, wherein the remote control includes a first shell and a second shell, and the first shell and the second shell are detachably connected and enclose the cavity.

[0011] The seventh technical solution is based on the sixth technical solution, wherein the first shell is provided with a snap-fitting portion, and the second shell is provided with a snap-fitting portion, and the snap-fitting portion is suitable for snap-fitting with the snap-fitting portion to fix the second shell and the first shell in connection.

[0012] The eighth technical solution is based on the seventh technical solution, wherein the snap-fitting portion is provided with a first guide bevel and a snap-fitting surface, and the snap-fitting portion is provided with a second guide bevel and a snap-fitting surface, and the first guide bevel is suitable for sliding relative to the second guide bevel so that the snap-fitting surface and the snap-fitting surface are snap-fitted.

[0013] Compared with the existing technology, the above technical solution has the following beneficial effects:

[0014] In the first technical solution, the fixing part is suitable for being installed on the wall and is provided with a first magnetic part, and the remote control is provided with a second magnetic part. The first magnetic part and the second magnetic part are suitable for magnetic connection and spherical matching, and the remote control is facing away from the fixing part; therefore, when placing the remote control, the second magnetic part of the remote control is moved close to the fixing part. Due to the magnetic attraction between the second magnetic part and the first magnetic part, the remote control and the fixing part are magnetically connected and thus fixed on the fixing part; due to the spherical matching of the first magnetic part and the second magnetic part, when the remote control is placed on the fixing part, the remote control can be rotated so that its operating surface faces the user's line of sight, so that the user can view the display screen of the remote control more clearly and it is convenient to operate; when picking up the remote control, the hand holds the remote control and applies force in the direction away from the fixing part to overcome the magnetic force and make the remote control detach from the fixing part; compared with the prior art, the remote control device picking and placing structure of the present application directly realizes the picking and placing and rotation of the remote control on the fixing part through the magnetic connection and spherical matching between the remote control and the fixing part, and the structure is relatively simple.

[0015] In the second technical solution, the third magnetic part is magnetically connected to the first magnetic part, and the second magnetic part is magnetically connected to the first magnetic part. The double magnetic connection makes the connection between the remote control and the fixing part more secure; moreover, when the third magnetic part is magnetically connected to the first magnetic part, the remote control is tilted and rests on the fixing part, making it convenient for the user to turn the remote control to a suitable viewing angle for viewing and operation.

[0016] In the third technical solution, the shape of the third magnetic part is square or circular, and the structure is simple and easy to manufacture.

[0017] In the fourth technical solution, the control board is installed in the cavity of the remote control and has a compact structure; the control board includes a controller and a sensor group, and the controller is electrically connected to the sensor group and the peripheral device respectively; thereby, it can monitor relevant parameters, such as temperature, humidity, battery voltage, etc., and control the corresponding peripheral device or issue an alarm.

[0018] In the fifth technical solution, the LCD screen can intuitively display relevant parameters to enhance user experience.

[0019] In the sixth technical solution, the first shell and the second shell are detachably connected and enclose a cavity, and the control board is installed in the cavity, which is convenient for repairing the controller or replacing internal parts.

[0020] In the seventh technical solution, the first shell and the second shell are fixedly connected by snapping the snap-fitting portion and the snap-fitting portion, which facilitates quick assembly of the remote control and improves production efficiency.

[0021] In the eighth technical solution, as an implementation method of the snap-fit structure, the first guide bevel is suitable for sliding relative to the second guide bevel, so as to facilitate manual pushing of the first shell to snap-fit it with the second shell. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0023] Figure 1 This is a three-dimensional diagram of the remote control device in Example 1;

[0024] Figure 2 This is an exploded view of the remote control device in Example 1;

[0025] Figure 3 A three-dimensional diagram of the fixing member in Example 1;

[0026] Figure 4 A three-dimensional diagram of the magnetic component in Example 1;

[0027] Figure 5 This is a first-perspective stereoscopic view of the second housing in Example 1;

[0028] Figure 6 A second perspective view of the second housing in the first embodiment;

[0029] Figure 7 for Figure 6 An enlarged view of part I;

[0030] Figure 8 This is a first perspective perspective view of the first shell in Example 1;

[0031] Figure 9 A second perspective perspective view of the first housing in Example 1;

[0032] Figure 10 for Figure 9 A magnified view of Part II;

[0033] Figure 11 A three-dimensional diagram of the control panel in Example 1;

[0034] Figure 12 This is a schematic diagram of assembling the remote control in Example 1;

[0035] Figure 13 for Figure 12 An enlarged view of Part III;

[0036] Figure 14 This is an upward tilted right view of the remote control in Example 1;

[0037] Figure 15 This is a downward tilted right view of the remote control in Example 1;

[0038] Figure 16 This is a top view of the remote control in Example 1 tilted to the left;

[0039] Figure 17 This is a top view of the remote control in Example 1 tilted to the right;

[0040] Figure 18 This is an exploded view of a remote control device in the prior art.

[0041] Description of main reference numerals:

[0042] Fixing part 1, base 11, stepped hole 111, shaft 12, ball part 13; remote control 2, panel 21, control board 22, LCD screen 221, sensor group 222, controller 223; first shell 23, snap-fitting part 231, first guide inclined surface 2311, snap-fitting surface 2312, annular step 232, abutting block 2321, rib 2322, first annular groove 233, second annular groove 234; second shell 24, circular hole 241, snap-fitting part 242, second guide inclined surface 2421, snap-fitting surface 2422, rib groove 243, first support block 244, second support block 245; magnetic part 25, hemispherical cavity 251, convex ring 252; annular magnetic ring 26. DETAILED DESCRIPTION

[0043] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are preferred embodiments of the present invention and should not be regarded as excluding other embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0044] In the claims, description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, the use of terms such as "first", "second" or "third" is to distinguish different objects rather than to describe a specific order.

[0045] In the claims, specification and the above-mentioned drawings of the present utility model, unless otherwise expressly defined, directional words, such as the terms "center", "transverse", "longitudinal", "horizontal", "vertical", "top", "bottom", "inside", "outside", "up", "down", "front", "back", "left", "right", "clockwise", "counterclockwise" and the like, indicating directions or positional relationships are based on the directions and positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction or be constructed and operated in a specific direction, and therefore cannot be understood as limiting the specific scope of protection of the present invention.

[0046] In the claims, specification and the above drawings of the present utility model, unless otherwise clearly defined, if the terms "fixed connection" or "fixed connection" are used, they should be understood in a broad sense, that is, any connection method without any displacement relationship and relative rotation relationship between the two parties, that is to say, including non-detachable fixed connection, detachable fixed connection, integral connection and fixed connection through other devices or elements.

[0047] In the claims, description and drawings of the present utility model, if the terms "include", "have" and their variations are used, they are intended to mean "including but not limited to".

[0048] Example 1

[0049] See also Figure 1 、 Figure 2 The figure shows a perspective view and an exploded view of the remote control device in this embodiment. In this embodiment, the remote control device includes a remote controller 2 and a fixing member 1; the fixing member 1 is suitable for wall mounting; the remote controller 2 includes a panel 21, a control panel 22, a first housing 23, a second housing 24, a magnetic member 25, and an annular magnetic ring 26.

[0050] See also Figure 3 , Figure 3 The figure is a three-dimensional diagram of the fixing member 1 in this embodiment. In this embodiment, the fixing member 1 includes a base 11, a shaft 12, and a ball 13. The base 11 is flat and has a stepped hole 111 for screws to pass through to secure the fixing member 1 to the wall. The shaft 12 is fixed to the base 11 and extends upward from the surface of the base 11 in a direction perpendicular to the surface of the base 11. The ball 13 is fixed to the end of the shaft 12. In this embodiment, the fixing member 1 is made of a metal material suitable for magnetic attraction as the first magnetic attraction portion. In other embodiments, the fixing member 1 may also be provided with a magnetic body suitable for attraction to the remote control 2.

[0051] See also Figure 4 , Figure 4 The figure is a three-dimensional view of the magnetic member 25 in this embodiment. As shown in the figure, in this embodiment, the magnetic member 25 is in the shape of a flying saucer and serves as the second magnetic attraction portion. It has a hemispherical cavity 251, and a protruding ring 252 extends radially outward from the periphery of the hemispherical cavity 251. The hemispherical cavity 251 is adapted to cooperate with the spherical surface of the ball portion 13 to enable the remote control 2 to rotate relative to the fixing member 1. The magnetic member 25 is adapted to be magnetically connected to the fixing member 1 to secure the remote control 2 relative to the fixing member 1.

[0052] See also Figure 5-Figure 7, the figure shows a first perspective stereogram, a second perspective stereogram and an enlarged view of part I of the second shell 24 in this embodiment. As shown in the figure, the second shell 24 in this embodiment is an open cube. In other embodiments, the second shell 24 can be other open cubes that are compatible with the shape of the remote control 2, such as a rectangular parallelepiped, a cylinder, etc.; a circular hole 241 is provided at the center of the shell bottom, and the circular hole 241 is suitable for being engaged with the convex ring 252 so that the magnetic member 25 and the second shell 24 are engaged with each other. When engaged with each other, the peripheral wall of the convex ring 252 fits with the hole wall of the circular hole 241, and the upper and lower surfaces of the convex ring 252 are flush with the upper and lower surfaces of the second shell 24 respectively, and the cavity wall of the hemispherical cavity 251 extends into the second shell 24 toward the first shell 23; in this embodiment, the convex ring 252 is engaged with the circular hole 241 by bonding to fix the magnetic member 25 to the second shell 24; two card slots are provided at the upper and lower ends of the second shell 24, respectively, The groove is provided with a snap-fitting portion 242, which is a trapezoidal body, and a snap-fitting surface 2422 is provided at the end thereof facing away from the first shell 23, and a second guide inclined surface 2421 is provided at the end thereof facing the first shell 23; the outer walls of the left and right ends of the second shell 24 are respectively provided with a rib groove 243 with an L-shaped cross-section; the bottom of the second shell 24 and the four inner walls are adjacent to each other and are provided with at least two opposite support blocks for placing the control board 22; in this embodiment, there are four pairs of support blocks, namely, two pairs of first support blocks 244, which are respectively provided at the bottom of the second shell 24 and the adjacent parts of the upper and lower inner walls; and two pairs of second support blocks 245, which are respectively provided at the bottom of the second shell 24 and the adjacent parts of the left and right inner walls, and the top surfaces of the first support blocks 244 and the second support blocks 245 are located on the same plane.

[0053] See also Figures 8-10, the figure shows a first perspective stereogram, a second perspective stereogram and an enlarged view of part II of the first shell 23 in this embodiment. The first shell 23 is a shell with an upper and lower opening corresponding to the second shell 24 in appearance. Two clamping parts 231 are respectively provided on the inner wall of the upper and lower ends of the first shell 23 close to the side of the second shell 24. The cross section of each clamping part 231 is a right-angled trapezoid. A first guiding inclined surface 2311 and a clamping surface 2312 are provided on the clamping part 231. The first guiding inclined surface 2311 is suitable for sliding relative to the second guiding inclined surface 2421 to allow the clamping part 231 to enter the card slot to engage with the clamping fitting part 242, or to disengage from the clamping fitting part 242 to exit the card slot. When the portion 231 is engaged with the engaging portion 242, the engaging surface 2312 abuts against the engaging surface 2422, thereby fixing the first shell 23 and the second shell 24 together. When the first shell 23 and the second shell 24 are fixedly connected, a cavity is enclosed, and the cavity is suitable for installing the control board 22. In this embodiment, the first shell 23 and the second shell 24 are connected by engaging, so that the shells can be quickly assembled, which helps to improve the production efficiency of the factory. An annular step 232 is provided at one end of the first shell 23 away from the second shell 24. The annular step 232 is aligned with the first shell 23. A first annular groove 233 is formed between the inner walls of the first annular groove 233, and the first annular groove 233 is suitable for installing the panel 21. In this embodiment, the panel 21 is bonded and fixed to the first annular groove 233, and the periphery of the panel 21 fits with the groove wall of the first annular groove 233. The lower surface of the panel 21 fits with the upper surface of the annular step 232, and the upper surface of the panel 21 is flush with the surface where the upper end of the groove wall of the first annular groove 233 is located; the edge of the annular step 232 is provided with an abutment block 2321 facing the second shell 24. In this embodiment, the annular step 232 is square, and each side is provided with two abutment blocks 232 1. The abutment block 2321 is suitable for abutting the control board 22 so that the control board 22 is fixed on the support block. In this embodiment, four abutment blocks 2321 facing each other are provided with mounting posts, and the mounting posts are provided with through holes, so that the control board 22 can be fixed in the cavity with screws when the control board 22 has screw holes. The lower surface of the annular step 232 is provided with a rib 2322, which extends along the inner wall of the first shell 23 toward the second shell 24 and is suitable for extending into the rib groove 243. When the first shell 23 and the second shell 24 are clamped, the rib 2322 is plugged into the rib groove 243.A second annular groove 234 is provided on the periphery of one end of the first shell 23 facing the second shell 24, and the second annular groove 234 is suitable for the third magnetic portion to be mounted. In this embodiment, the second annular groove 234 is square, and the third magnetic portion is an annular magnetic ring 26 that is adapted to the shape of the second annular groove 234. The annular magnetic ring 26 is suitable for when the remote control 2 rotates relative to the fixing member 1 and approaches the fixing member 1, and its end approaching the fixing member 1 is magnetically connected to the fixing member 1, so that the remote control 2 is tilted and rests on the fixing member 1, which is convenient for the user to view the panel 21 and operate at a better angle; in other embodiments, the second annular groove 234 and the annular magnetic ring 26 can be other shapes such as a circle.

[0054] See also Figure 11 , Figure 11 The figure is a three-dimensional view of the control panel 22 in this embodiment. The control panel 22 is flat and suitable for installation in the cavity. Specifically, in this embodiment, the lower surface of the control panel 22 is bonded to the support block, and the upper surface of the control panel 22 abuts against the abutment block 2321. In other embodiments, the control panel 22 can be fastened to the support block using screws passing through the through-holes of the mounting posts. The control panel 22 includes a sensor group 222, a controller 223, and an LCD 221. The controller 223 is electrically connected to the sensor group 222, the LCD 221, and the controlled peripherals. The controller 223 obtains parameters collected by the sensor group 222 through the electrical connections to automatically control the operation of the peripherals and displays the corresponding operating status or information on the LCD 221. In this embodiment, the remote control 2 is used to control the operation of the bathroom heater. The sensor group 222 includes a battery charge sensor, a temperature sensor and a humidity sensor. The LCD display 221 displays the working status of peripherals such as heaters and fans. The controller 223 automatically controls the operation of the heater and fan based on the monitored temperature and humidity and compares them with the preset values. When the battery voltage is detected to be lower than the set value, the low voltage indicator light lights up to remind the user to replace the battery.

[0055] See also Figure 12 、 Figure 13 The figure shows the assembly diagram of the remote control 2 in this embodiment and an enlarged view of part III. During assembly, the magnetic member 25 is first glued and fixed to the second shell 24, wherein the convex ring 252 is engaged with the circular hole 241 and the hemispherical cavity 251 faces the first shell 23. Then, the control board 22 is glued to the support block of the second shell 24 with the panel 21 facing the panel. Then, the rib 2322 of the first shell 23 is aligned with the rib groove 243, and the snap-fit portion 231 is pressed against the snap-fit portion 231 to insert the rib 2322 into the rib groove 243. The snap-fit portion 231 enters the snap-fit portion 242 and snaps into the snap-fit portion 242, thereby fixing the first shell 23 and the second shell 24. Next, the panel 21 is glued to the first annular groove 233. Finally, the annular magnetic ring 26 is glued and sleeved into the second annular groove 234 of the first shell 23 to complete the assembly.

[0056] See also Figure 14-17 The figure shows the right side view of the remote control device in this embodiment tilted upward and downward, and the top view tilted left and right. The fixing member 1 is mounted on the wall, and the remote control 2 can be placed on the fixing member 1. The user can hold the remote control 2 in hand to operate it, or place it on the fixing member 1 to operate it. When the remote control 2 is placed on the fixing member 1, if the user is tall, the user needs to lower their head to operate and view the LCD screen 221. In order to facilitate operation and see the content displayed on the LCD screen 221 clearly, it is necessary to push the upper end of the remote control 2 toward the wall. The remote control 2 is rotated relative to the fixing member 1 so that the upper end of the remote control 2 approaches the fixing member 1. Due to the magnetic attraction between the annular magnetic ring 26 and the fixing member 1, the upper end of the remote control 2 is fixed to the fixing member 1. As a result, the remote control 2 is tilted upward and fixed, and the LCD screen 221 is facing the user's eyes, thereby achieving a better visual effect and facilitating operation. Similarly, the user can rotate the remote control 2 downward, left, or right according to actual needs to fix it to the fixing member 1 at a corresponding tilt.

[0057] Compared with the prior art, this embodiment has the following beneficial effects:

[0058] In this embodiment, the fixing member 1 is suitable for installation on the wall. The fixing member 1 is a first magnetic part and is made of a metal material suitable for magnetic attraction. The remote control 2 includes a first shell 23, a second shell 24 and a magnetic member 25. The magnetic member 25 is bonded to the circular hole 241 of the second shell 24. The magnetic member 25 and the fixing member 1 are suitable for magnetic connection and spherical fit, and the remote control 2 is facing the fixing member 1. Therefore, when placing the remote control 2, the magnetic member 25 of the remote control 2 is moved closer to the fixing member 1. Due to the magnetic attraction between the magnetic member 25 and the fixing member 1, the remote control 2 is magnetically connected to the fixing member 1 and thus fixed. On the fixing part 1; due to the spherical fit between the fixing part 1 and the magnetic part 25, when the remote control 2 is placed on the fixing part 1, the remote control 2 can be rotated so that the operating surface is facing the user's line of sight, so that the user can see the display screen of the remote control 2 more clearly and it is convenient to operate; when taking the remote control 2, hold the remote control 2 with your hand and apply force in the direction away from the fixing part 1 to overcome the magnetic force and make the remote control 2 separate from the fixing part 1; compared with the existing technology, the remote control 2 and the fixing part 1 are directly connected by magnetic attraction and spherical fit to realize the placement and rotation of the remote control 2 on the fixing part 1, and the structure is relatively simple.

[0059] In this embodiment, the annular magnetic ring 26 is magnetically connected to the fixing member 1, and the magnetic member 25 is magnetically connected to the fixing member 1. The double magnetic connection makes the connection between the remote control 2 and the fixing member 1 more secure; when the annular magnetic ring 26 is magnetically connected to the fixing member 1, the remote control 2 is tilted against the fixing member 1, which is convenient for the user to rotate the remote control 2 to a suitable viewing angle and operation; and the annular magnetic ring 26 is arranged in the second annular groove 234 along the circumferential direction, which is convenient for the remote control 2 to be tilted upward, downward, left, and right and fixed on the fixing member 1 to achieve a better viewing angle effect.

[0060] In this embodiment, the control board 22 is installed in the cavity of the remote control 2 and has a compact structure; the control board 22 includes a controller 223 and a sensor group 222, and the controller 223 is electrically connected to the sensor group 222 and the peripherals respectively; thereby, it can monitor relevant parameters, such as temperature, humidity, battery voltage, etc., and control corresponding peripherals or issue alarms; and the LCD display 221 can display relevant parameters or indicator lights to enhance user experience.

[0061] In this embodiment, the remote control 2 includes a first shell 23 and a second shell 24. The first shell 23 and the second shell 24 are detachably connected and enclose a cavity, and the control board 22 is installed in the cavity to facilitate maintenance of the control board 22 or replacement of internal parts.

[0062] In this embodiment, the first shell 23 and the second shell 24 are fixedly connected in a snap-fit manner, which facilitates quick assembly of the remote control 2 and improves production efficiency; and the first guide bevel 2311 is suitable for sliding relative to the second guide bevel 2421, making it easy for the hand to push the first shell 23 to snap it into the second shell 24.

[0063] The above description and embodiments are used to explain the scope of protection of the utility model, but do not constitute a limitation on the scope of protection of the utility model. Based on the enlightenment of the utility model or the above embodiments, modifications, equivalent replacements, or other improvements to the embodiments of the utility model or part of the technical features thereof that can be obtained by ordinary technicians in this field through logical analysis, reasoning, or limited experiments in combination with common knowledge, ordinary technical knowledge in this field and / or existing technology should be included in the scope of protection of the utility model.

Claims

1. A remote control device pick-up and placement structure, characterized in that: The invention comprises a remote control (2) and a fixing member (1), wherein the fixing member (1) is suitable for being installed on a wall, the fixing member (1) is provided with a first magnetic attraction portion, and the remote control (2) is provided with a second magnetic attraction portion, the second magnetic attraction portion and the first magnetic attraction portion are suitable for magnetic connection and spherical matching, and the remote control (2) is placed with its back facing the fixing member (1).

2. A remote control device pick-and-place structure as claimed in claim 1, characterized in that: The remote control (2) includes a third magnetic attraction portion arranged along its circumference, and the third magnetic attraction portion is suitable for being magnetically connected to the first magnetic attraction portion when the remote control (2) rotates relative to the fixing member (1) and approaches the fixing member (1), so that the remote control (2) is tilted and pressed against the fixing member (1).

3. A remote control device pick-up and placement structure as claimed in claim 2, characterized in that: The third magnetic attraction portion is in a square or circular shape.

4. A remote control device pick-up and placement structure as claimed in claim 1, characterized in that: The remote controller (2) comprises a control panel (22) and a cavity, wherein the control panel (22) is installed in the cavity, and the control panel (22) comprises a controller (223) and a sensor group (222), wherein the controller (223) is electrically connected to the sensor group (222) and the peripheral device respectively.

5. A remote control device pick-up and place structure as claimed in claim 4, characterized in that: The control panel (22) is further provided with a liquid crystal display (221), and the liquid crystal display (221) is electrically connected to the controller (223).

6. A remote control device pick-up and place structure as claimed in claim 4, characterized in that: The remote controller (2) comprises a first shell (23) and a second shell (24); the first shell (23) and the second shell (24) are detachably connected and enclose the cavity.

7. A remote control device pick-up and placement structure as claimed in claim 6, characterized in that: The first shell (23) is provided with a snap-fit portion (231), and the second shell (24) is provided with a snap-fit portion (242), wherein the snap-fit portion (242) is adapted to snap-fit with the snap-fit portion (231) so as to securely connect the second shell (24) and the first shell (23).

8. A remote control device pick-up and placement structure as claimed in claim 7, characterized in that: The snap-fitting portion (231) is provided with a first guiding inclined surface (2311) and a snap-fitting surface (2312); the snap-fitting portion (242) is provided with a second guiding inclined surface (2421) and a snap-fitting surface (2422); the first guiding inclined surface (2311) is adapted to slide relative to the second guiding inclined surface (2421) so that the snap-fitting surface (2312) and the snap-fitting surface (2422) are snap-fitted.