Lamp shell structure and intelligent remote control lamp

By using a rotating adjustment component in the lamp housing structure of the intelligent remote control lamp to adjust the relative position of the mounting shell and the outer shell, the problems of jamming and noise caused by processing errors are solved, and smooth illumination angle adjustment is achieved.

CN223895896UActive Publication Date: 2026-02-10GUANGDONG QIKE ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520563828.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-02-10
Estimated Expiration
2035-03-28

AI Technical Summary

Technical Problem

The lamp head of existing smart remote control lights is prone to jamming, abnormal noise and vibration due to manufacturing errors when rotating, which affects stable operation.

Method used

The lamp housing structure employs a rotating adjustment component whose two ends are connected to the mounting housing and the outer housing, respectively. The rotation axis of the rotating adjustment component coincides with the rotation axis of the outer housing and can be rolled relative to the mounting housing and/or the outer housing. The connection between the mounting housing and the outer housing is achieved through the rotating adjustment component, thereby adjusting their relative position in the horizontal direction.

Benefits of technology

By reducing machining precision, the jerking, abnormal noise, and vibration during rotation are reduced, ensuring the smooth operation of the lamp housing structure when adjusting the illumination angle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a lamp shell structure and an intelligent remote control lamp. The lamp shell structure comprises an installation shell, an outer shell and a rotation adjusting piece. The shell is rotatably arranged relative to the mounting shell. The two ends of the rotation adjusting piece are connected to the mounting shell and the shell respectively, the rotation adjusting piece is rotationally connected relative to the mounting shell and / or the shell, a rotation shaft of the rotation adjusting piece coincides with a rotation shaft of the shell, and the rotation adjusting piece can roll relative to the mounting shell and / or the shell. According to the lamp shell structure, on the basis that the machining precision is reduced, clamping, abnormal noise and vibration in the rotating process can be well relieved, and stable operation and use are guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to lamp technical field especially is a lamp shell structure and intelligent remote control lamp. BACKGROUND

[0002] The intelligent remote control lamp supports angle adjustment in horizontal and vertical directions, the horizontal angle can reach 360 DEG, and the vertical angle can reach 180 DEG, and all directions illumination is realized, since it can realize flexible and accurate light control through intelligent remote control, satisfies multi -scene illumination demand, improves the convenience of life and work, therefore, be widely applied in family, commerce and outdoor, the adjustment of horizontal angle is mainly realized through motor driving rotation, for example, the utility model patent application with the application number CN201020649525.5 makes the second motor install on the lamp cylinder, the lamp head sets up on the first fixed disc, the second motor drives the first fixed disc to rotate with the axis of the lamp cylinder as the rotation axis, better realizes the 360 DEG rotation of the lamp head on the lamp cylinder, but since the first fixed disc needs to be engaged with the power output end of the second motor to make the first rotating disc rotate relative to the lamp cylinder, makes the rotation axis of the first fixed disc under the drive of the second motor coincide with the axis of the lamp cylinder, and since the processing error of the lamp cylinder and the first fixed disc, in combination with the error of the setting position of the second motor, it is easy to cause the rotation axis of the first fixed disc under the drive of the second motor not to coincide with the axis of the lamp cylinder, and further make the first fixed disc not to run smoothly when rotating on the lamp cylinder, produce jam, abnormal noise and vibration, even directly jam, affect the smooth operation of the intelligent remote control lamp. SUMMARY

[0003] The utility model discloses a lamp shell structure and intelligent remote control lamp that can reduce jam, abnormal noise and vibration during rotation on the basis of reducing processing precision, ensure smooth operation.

[0004] The utility model discloses a lamp shell structure and intelligent remote control lamp that can reduce jam, abnormal noise and vibration during rotation on the basis of reducing processing precision, ensure smooth operation.

[0005] A lamp shell structure, comprising a mounting shell and an outer shell, the outer shell is rotatably arranged relative to the mounting shell, the lamp shell structure further comprises a rotation adjusting piece, two ends of the rotation adjusting piece are connected to the mounting shell and the outer shell respectively, the rotation adjusting piece is rotatably connected relative to the mounting shell and / or the outer shell, the rotation axis of the rotation adjusting piece coincides with the rotation axis of the outer shell, and the rotation adjusting piece is rollably arranged relative to the mounting shell and / or the outer shell.

[0006] In one embodiment, the two ends of the rotation adjusting piece are rotatably connected to the mounting shell and the outer shell respectively, and the two ends of the rotation piece are rollably arranged relative to the mounting shell and the outer shell.

[0007] In one of the embodiments, the two ends of the rotation adjusting member are rotatably connected with the mounting shell and the outer shell respectively, and one end of the rotation member is rollably arranged with the mounting shell.

[0008] In one of the embodiments, the two ends of the rotation adjusting member are rotatably connected with the mounting shell and the outer shell respectively, and one end of the rotation member is rollably arranged with the mounting shell.

[0009] In one of the embodiments, one end of the rotation adjusting member is rotatably and rollably connected with the mounting shell, and the other end of the rotation adjusting member is connected with the outer shell.

[0010] In one of the embodiments, one end of the rotation adjusting member is rotatably and rollably connected with the mounting shell, and the other end of the rotation adjusting member is connected with the outer shell.

[0011] In one of the embodiments, the mounting shell is provided with a first spherical groove near one side of the rotation adjusting member, and one end of the rotation adjusting member is clamped in the first spherical groove and rotatably and rollably connected with the mounting shell.

[0012] In one of the embodiments, the mounting shell is provided with a first spherical groove near one side of the rotation adjusting member, and one end of the rotation adjusting member is clamped in the first spherical groove and rotatably and rollably connected with the mounting shell.

[0013] In one of the embodiments, the mounting shell is provided with a first spherical groove near one side of the rotation adjusting member, and one end of the rotation adjusting member is clamped in the first spherical groove and rotatably and rollably connected with the mounting shell.

[0014] In one of the embodiments, the mounting shell is provided with a first spherical groove near one side of the rotation adjusting member, and one end of the rotation adjusting member is clamped in the first spherical groove and rotatably and rollably connected with the mounting shell.

[0015] In one of the embodiments, the rotation adjusting member comprises a first compensation part and a second compensation part.

[0016] The first compensation part is rotatably connected with the mounting shell, the second compensation part is rotatably connected with the outer shell, the rotation axis of the first compensation part and the rotation axis of the second compensation part are coincident with the rotation axis of the outer shell, and the first compensation part and the second compensation part are rollably connected, so that the first compensation part is rollably arranged relative to the outer shell, and the second compensation part is rollably arranged relative to the mounting shell.

[0017] In one of the embodiments, the rotation adjusting member comprises a first compensation part and a second compensation part.

[0018] The first compensation part is rotatably connected to the mounting shell, and the rotation axis of the first compensation part coincides with the rotation axis of the outer shell. The second compensation part is connected to the outer shell, and the first compensation part and the second compensation part are rotatably connected, so that the first compensation part is rotatably disposed relative to the outer shell, and the second compensation part is rotatably disposed relative to the mounting shell.

[0019] In one embodiment, the rotation adjustment member includes a first compensation part and a second compensation part;

[0020] The first compensation part is connected to the mounting shell, the second compensation part is rotatably connected to the outer shell, the rotation axis of the second compensation part coincides with the rotation axis of the outer shell, and the first compensation part and the second compensation part are rotatably connected so that the first compensation part is rotatably disposed relative to the outer shell, and the second compensation part is rotatably disposed relative to the mounting shell.

[0021] In one embodiment, a rolling groove is provided on one end of the first compensation part near the second compensation part, and one end of the second compensation part is engaged in the rolling groove and is rotatably connected to the first compensation part.

[0022] In one embodiment, the lamp housing structure further includes a connector, wherein one end of the first compensation portion near the second compensation portion is rotatably connected to the connector, and one end of the second compensation portion near the second compensation portion is rotatably connected to the connector, the rotation axes of the first compensation portion and the second compensation portion relative to the connector intersect, and the plane containing the rotation axes of the first compensation portion and the second compensation portion relative to the connector intersects the rotation axis of the outer casing.

[0023] In one embodiment, the first compensation part and the second compensation part are perpendicular to the rotation axis of the connector.

[0024] In one embodiment, the plane on which the rotation axis of the first compensation part and the second compensation part rotates relative to the connector is perpendicular to the rotation axis of the housing.

[0025] In one embodiment, a meshing ring is connected to the housing, the meshing ring being arranged around a rotation axis of the housing relative to the mounting shell, the meshing ring being used to mesh with the power output end of a drive motor, so that the drive motor drives the housing to rotate relative to the mounting shell.

[0026] A smart remote control lamp includes a driving component and a lamp housing structure as described in any of the above embodiments. The driving component is mounted on the mounting housing, and the power output end of the driving component is engaged with the housing to drive the housing to rotate relative to the mounting housing.

[0027] Compared with the prior art, the present invention has at least the following advantages:

[0028] The lamp housing structure of this utility model allows the two ends of the rotating adjustment component to be connected to the mounting shell and the outer shell respectively. This means the mounting shell and the outer shell are connected via the rotating adjustment component, which is rotatably connected relative to the mounting shell and / or the outer shell. The rotation axis of the rotating adjustment component coincides with the rotation axis of the outer shell, thus enabling the outer shell to be rotatably connected to the mounting shell via the rotating adjustment component. Furthermore, the rotating adjustment component is rollable relative to the mounting shell and / or the outer shell. When the rotating adjustment component rolls relative to the mounting shell and / or the outer shell, the end of the rotating adjustment component away from the mounting shell swings relative to the mounting shell, and / or the end of the rotating adjustment component away from the outer shell swings relative to the outer shell. This allows for adjustment of the relative position of the mounting shell and the outer shell in the horizontal direction, thereby correcting the deviation between the rotation axis of the outer shell and the axis of the mounting shell. Even with poor manufacturing precision in the lamp housing structure, it can significantly improve the coincidence effect between the rotation axis of the outer shell and the axis of the mounting shell, thus effectively reducing jamming, abnormal noise, and vibration during rotation, ensuring stable operation of the lamp housing structure when adjusting the illumination angle. Attached Figure Description

[0029] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 This is a schematic diagram of the lamp housing structure according to one embodiment of the present utility model;

[0031] Figure 2 for Figure 1 A partial view of the lamp housing structure shown;

[0032] Figure 3 for Figure 1 A partial sectional view of the lamp housing structure shown;

[0033] Figure 4 This is a partial cross-sectional view of the lamp housing structure according to another embodiment of the present invention;

[0034] Figure 5This is a partial cross-sectional view of the lamp housing structure according to another embodiment of the present utility model;

[0035] Figure 6 This is a partial cross-sectional view of the lamp housing structure according to another embodiment of the present invention. Detailed Implementation

[0036] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. The drawings illustrate preferred embodiments of this utility model. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0037] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0039] This application provides a lamp housing structure. The lamp housing structure includes a mounting shell, an outer shell, and a rotation adjustment member. The outer shell is rotatably disposed relative to the mounting shell. The two ends of the rotation adjustment member are respectively connected to the mounting shell and the outer shell, the rotation adjustment member is rotatably connected relative to the mounting shell and / or the outer shell, the rotation axis of the rotation adjustment member coincides with the rotation axis of the outer shell, and the rotation adjustment member is rollably disposed relative to the mounting shell and / or the outer shell.

[0040] The aforementioned lamp housing structure allows the two ends of the rotating adjustment component to be connected to the mounting shell and the outer shell, respectively. This means the mounting shell and outer shell are connected via the rotating adjustment component, which is rotatably connected relative to the mounting shell and / or the outer shell. The rotation axis of the rotating adjustment component coincides with the rotation axis of the outer shell, allowing the outer shell to be rotatably connected to the mounting shell via the rotating adjustment component. Furthermore, the rotating adjustment component is rollable relative to the mounting shell and / or the outer shell. When the rotating adjustment component rolls relative to the mounting shell and / or the outer shell, the end of the rotating adjustment component furthest from the mounting shell swings relative to the mounting shell, and / or the end furthest from the outer shell swings relative to the outer shell. This allows for adjustment of the relative position of the mounting shell and the outer shell in the horizontal direction, thereby correcting the deviation between the rotation axis of the outer shell and the axis of the mounting shell. Even with poor manufacturing precision in the lamp housing structure, this design effectively improves the coincidence between the rotation axis of the outer shell and the axis of the mounting shell, thus reducing jamming, abnormal noise, and vibration during rotation and ensuring smooth operation of the lamp housing structure during illumination angle adjustment.

[0041] To better understand the lamp housing structure of this application, the following further explanation is provided:

[0042] Please refer to the following: Figures 1 to 3 One embodiment of the lamp housing structure 10 includes a mounting shell 100, an outer shell 200, and a rotation adjustment member 300. The outer shell 200 is rotatably disposed relative to the mounting shell 100. The two ends of the rotation adjustment member 300 are respectively connected to the mounting shell 100 and the outer shell 200. The rotation adjustment member 300 is rotatably connected relative to the mounting shell 100 and / or the outer shell 200. The rotation axis of the rotation adjustment member 300 coincides with the rotation axis of the outer shell 200, and the rotation adjustment member 300 is rollably disposed relative to the mounting shell 100 and / or the outer shell 200.

[0043] The aforementioned lamp housing structure 10 allows the two ends of the rotating adjustment member 300 to be connected to the mounting housing 100 and the outer housing 200 respectively. That is, the mounting housing 100 and the outer housing 200 are connected via the rotating adjustment member 300, and the rotating adjustment member 300 is rotatably connected relative to the mounting housing 100 and / or the outer housing 200. The rotation axis of the rotating adjustment member 300 coincides with the rotation axis of the outer housing 200, thus enabling the outer housing 200 to be rotatably connected to the mounting housing 100 via the rotating adjustment member 300. Furthermore, the rotating adjustment member 300 is rotatably configured relative to the mounting housing 100 and / or the outer housing 200, meaning that when the rotating adjustment member 300 rolls relative to the mounting housing 100 and / or the outer housing 200, the rotation... The end of the adjusting member 300 away from the mounting housing 100 swings relative to the mounting housing 100, and / or the end of the rotating adjusting member 300 away from the outer housing 200 swings relative to the outer housing 200. In this way, the relative position of the mounting housing 100 and the outer housing 200 in the horizontal direction is adjusted, thereby correcting the deviation between the rotation axis of the outer housing 200 and the axis of the mounting housing 100. Even with poor machining accuracy of the lamp housing structure 10, the overlap effect between the rotation axis of the outer housing 200 and the axis of the mounting housing 100 can be improved, thereby reducing the jamming, abnormal noise and vibration during rotation, and ensuring the smooth operation of the lamp housing structure 10 when adjusting the illumination angle.

[0044] Please refer to the following: Figures 1 to 3 In one embodiment, the rotation adjustment member 300 includes a first compensation part 310 and a second compensation part 320. Further, the first compensation part 310 is rotatably connected to the mounting housing 100, and the second compensation part 320 is rotatably connected to the outer housing 200. The rotation axis of both the first compensation part 310 and the second compensation part 320 coincides with the rotation axis of the outer housing 200. The first compensation part 310 and the second compensation part 320 are rollably connected, so that the first compensation part 310 is rollably disposed relative to the outer housing 200, and the second compensation part 320 is rollably disposed relative to the mounting housing 100. This better ensures the correction of the deviation between the rotation axis of the outer housing 200 and the axis of the mounting housing 100, that is, better ensures the coincidence effect between the rotation axis of the outer housing 200 and the axis of the mounting housing 100.

[0045] Please see Figure 4In one embodiment, the rotation adjustment member 300 includes a first compensation part 310 and a second compensation part 320. Further, the first compensation part 310 is rotatably connected to the mounting housing 100, and the rotation axis of the first compensation part 310 coincides with the rotation axis of the housing 200. The second compensation part 320 is connected to the housing 200, and the first compensation part 310 and the second compensation part 320 are rollably connected, so that the first compensation part 310 is rollably disposed relative to the housing 200, and the second compensation part 320 is rollably disposed relative to the mounting housing 100. This better ensures the correction of the deviation between the rotation axis of the housing 200 and the axis of the mounting housing 100, that is, better ensures the coincidence effect between the rotation axis of the housing 200 and the axis of the mounting housing 100.

[0046] Please see Figure 5 In one embodiment, the rotation adjustment member 300 includes a first compensation part 310 and a second compensation part 320. Further, the first compensation part 310 is connected to the mounting housing 100, and the second compensation part 320 is rotatably connected to the outer housing 200. The rotation axis of the second compensation part 320 coincides with the rotation axis of the outer housing 200. The first compensation part 310 and the second compensation part 320 are rollably connected, so that the first compensation part 310 is rollably disposed relative to the outer housing 200, and the second compensation part 320 is rollably disposed relative to the mounting housing 100. This better ensures the correction of the deviation between the rotation axis of the outer housing 200 and the axis of the mounting housing 100, that is, better ensures the coincidence effect between the rotation axis of the outer housing 200 and the axis of the mounting housing 100.

[0047] In one embodiment, a rolling groove is provided on one end of the first compensation part near the second compensation part, and one end of the second compensation part is engaged in the rolling groove and can be rollably connected to the first compensation part, which better ensures the stability of the rolling connection between the first compensation part and the second compensation part.

[0048] Please refer to the following: Figures 1 to 3In one embodiment, the lamp housing structure 10 further includes a connector 330. The end of the first compensation part 310 near the second compensation part 320 is rotatably connected to the connector 330. The end of the second compensation part 320 near the second compensation part 320 is rotatably connected to the connector 330. The rotation axes of the first compensation part 310 and the second compensation part 320 relative to the connector 330 intersect, and the planes on which the rotation axes of the first compensation part 310 and the second compensation part 320 relative to the connector 330 are located intersect with the rotation axis of the outer casing 200. It can be understood that the plane on which the rotation axis of the first compensation part 310 and the second compensation part 320 rotates relative to the connector 330 is the plane formed by the intersection of the rotation axis of the first compensation part 310 and the rotation axis of the second compensation part 320 relative to the connector 330. At this time, the rotation axis of the first compensation part 310 and the rotation axis of the second compensation part 320 relative to the connector 330 are both on this plane, which better ensures the rolling connection stability of the first compensation part 310 and the second compensation part 320.

[0049] Please refer to the following: Figures 1 to 3 In one embodiment, the first compensation part 310 and the second compensation part 320 are perpendicular to the rotation axis of the connector 330, which better ensures the correction of the deviation between the rotation axis of the housing 200 and the axis of the mounting housing 100, that is, better ensures the coincidence effect between the rotation axis of the housing 200 and the axis of the mounting housing 100.

[0050] Please refer to the following: Figures 1 to 3 In one embodiment, the plane on which the rotation axis of the first compensation part 310 and the second compensation part 320 rotates relative to the connector 330 is perpendicular to the rotation axis of the housing 200, which better ensures the correction of the deviation between the rotation axis of the housing 200 and the axis of the mounting housing 100, that is, better ensures the coincidence effect between the rotation axis of the housing 200 and the axis of the mounting housing 100.

[0051] Please see Figure 6 In one embodiment, the two ends of the rotating adjustment member 300 are rotatably connected to the mounting shell 100 and the outer shell 200, respectively, and the two ends of the rotating member are rotatably configured to be connected to the mounting shell 100 and the outer shell 200, respectively. This better ensures the correction of the deviation between the rotation axis of the outer shell 200 and the axis of the mounting shell 100, that is, better ensures the coincidence effect between the rotation axis of the outer shell 200 and the axis of the mounting shell 100.

[0052] In one embodiment, the two ends of the rotating adjustment member are rotatably connected to the mounting shell and the outer shell, respectively, and one end of the rotating member is rotatably set with the mounting shell, which better ensures the correction of the deviation between the rotation axis of the outer shell and the axis of the mounting shell, that is, better ensures the coincidence effect between the rotation axis of the outer shell and the axis of the mounting shell.

[0053] In one embodiment, the two ends of the rotating adjustment member are rotatably connected to the mounting shell and the outer shell, respectively, and one end of the rotating member is rotatably set with the outer shell, which better ensures the correction of the deviation between the rotation axis of the outer shell and the axis of the mounting shell, that is, better ensures the coincidence effect between the rotation axis of the outer shell and the axis of the mounting shell.

[0054] In one embodiment, one end of the rotating adjustment member is rotatably and rollably connected to the mounting housing, and the other end of the rotating adjustment member is connected to the housing, which better ensures the correction of the deviation between the rotation axis of the housing and the axis of the mounting housing, that is, better ensures the coincidence effect between the rotation axis of the housing and the axis of the mounting housing.

[0055] In one embodiment, one end of the rotating adjustment member is rotatably and rollably connected to the outer casing, and the other end of the rotating adjustment member is connected to the mounting shell, which better ensures the correction of the deviation between the rotation axis of the outer casing and the axis of the mounting shell, that is, better ensures the coincidence effect between the rotation axis of the outer casing and the axis of the mounting shell.

[0056] Please see Figure 6 In one embodiment, the mounting shell 100 is provided with a first spherical groove 101 on the side near the rotating adjustment member 300. One end of the rotating adjustment member 300 is engaged in the first spherical groove 101 and is rotatably and rollably connected to the mounting shell 100, which better ensures the stability of the rolling connection between the rotating adjustment member 300 and the mounting shell 100.

[0057] Please see Figure 6 In one embodiment, the outer shell 200 is provided with a second spherical groove 201 on the side near the rotating adjustment member 300. One end of the rotating adjustment member 300 is engaged in the second spherical groove 201 and can rotate and roll with the outer shell 200, which better ensures the stability of the rolling connection between the rotating adjustment member 300 and the outer shell 200.

[0058] Please refer to the following: Figures 1 to 3 In one embodiment, the mounting housing 100 has a first annular groove 102 on the side near the rotating adjustment member 300. One end of the rotating adjustment member 300 is engaged in the first annular groove 102 and rotatably connected to the mounting housing 100, which better ensures the stability of the rotatable connection between the rotating adjustment member 300 and the mounting housing 100. Furthermore, the first compensation part 310 is engaged in the first annular groove 102 and rotatably connected to the mounting housing 100.

[0059] Please refer to the following: Figures 1 to 3In one embodiment, the outer casing 200 has a second annular groove 202 on the side near the rotation adjustment member 300. One end of the rotation adjustment member 300 is engaged in the second annular groove 202 and rotatably connected to the outer casing 200, which better ensures the stability of the rotational connection between the rotation adjustment member 300 and the outer casing 200. Furthermore, the second compensation part 320 is engaged in the second annular groove 202 and rotatably connected to the outer casing 200.

[0060] Please refer to the following: Figures 1 to 3 In one embodiment, a meshing ring 400 is connected to the housing 200. The meshing ring 400 is arranged around the rotation axis of the housing 200 relative to the mounting housing 100. The meshing ring 400 is used to mesh with the power output end of the drive motor so that the drive motor drives the housing 200 to rotate relative to the mounting housing 100, thereby ensuring the stable drive rotation of the housing 200 on the mounting housing 100.

[0061] This application also provides a smart remote control light. One embodiment of the smart remote control light includes a drive assembly and a lamp housing structure as described in any of the above embodiments. The drive assembly is mounted on a mounting housing, and the power output end of the drive assembly is engaged with the housing to drive the housing to rotate relative to the mounting housing. Further details are also available in the following documents. Figures 1 to 3 In this embodiment, the lamp housing structure 10 includes a mounting shell 100, an outer shell 200, and a rotation adjustment member 300. The outer shell 200 is rotatably disposed relative to the mounting shell 100. The two ends of the rotation adjustment member 300 are respectively connected to the mounting shell 100 and the outer shell 200. The rotation adjustment member 300 is rotatably connected relative to the mounting shell 100 and / or the outer shell 200. The rotation axis of the rotation adjustment member 300 coincides with the rotation axis of the outer shell 200, and the rotation adjustment member 300 is rollably disposed relative to the mounting shell 100 and / or the outer shell 200.

[0062] The aforementioned intelligent remote control light adopts a lamp housing structure, which effectively improves the smooth operation of the intelligent remote control light when adjusting the illumination angle.

[0063] Compared with the prior art, the present invention has at least the following advantages:

[0064] The lamp housing structure 10 of this utility model allows the two ends of the rotating adjustment member 300 to be connected to the mounting shell 100 and the outer shell 200 respectively. That is, the mounting shell 100 and the outer shell 200 are connected via the rotating adjustment member 300, and the rotating adjustment member 300 is rotatably connected relative to the mounting shell 100 and / or the outer shell 200. The rotation axis of the rotating adjustment member 300 coincides with the rotation axis of the outer shell 200, thus enabling the outer shell 200 to be rotatably connected to the mounting shell 100 via the rotating adjustment member 300. In conjunction with this, the rotating adjustment member 300 is rotatably configured relative to the mounting shell 100 and / or the outer shell 200. That is, when the rotating adjustment member 300 rolls relative to the mounting shell 100 and / or the outer shell 200, at this time… The end of the rotating adjustment component 300 away from the mounting housing 100 swings relative to the mounting housing 100, and / or the end of the rotating adjustment component 300 away from the outer housing 200 swings relative to the outer housing 200. This achieves the adjustment of the relative position of the mounting housing 100 and the outer housing 200 in the horizontal direction, thereby correcting the deviation between the rotation axis of the outer housing 200 and the axis of the mounting housing 100. Even with poor machining accuracy of the lamp housing structure 10, it can better improve the coincidence effect between the rotation axis of the outer housing 200 and the axis of the mounting housing 100, thereby better reducing the jamming, abnormal noise and vibration during rotation, and ensuring the smooth operation of the lamp housing structure 10 when adjusting the illumination angle.

[0065] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A lamp housing structure, comprising a mounting shell and an outer shell, wherein the outer shell is rotatably disposed relative to the mounting shell, characterized in that, The lamp housing structure also includes a rotating adjustment component, the two ends of which are respectively connected to the mounting shell and the outer shell. The rotating adjustment component is rotatably connected relative to the mounting shell and / or the outer shell. The rotation axis of the rotating adjustment component coincides with the rotation axis of the outer shell, and the rotating adjustment component is rotatably arranged relative to the mounting shell and / or the outer shell.

2. The lamp housing structure according to claim 1, characterized in that, The two ends of the rotating adjustment component are rotatably connected to the mounting shell and the outer shell, respectively, and the two ends of the rotating component are rotatably connected to the mounting shell and the outer shell, respectively. or, The two ends of the rotating adjustment component are rotatably connected to the mounting shell and the outer shell, respectively, and one end of the rotating component is rotatably disposed with respect to the mounting shell; or, The two ends of the rotating adjustment component are rotatably connected to the mounting shell and the outer shell, respectively, and one end of the rotating component is rollably disposed with respect to the outer shell; or, One end of the rotating adjustment component is rotatably and rollably connected to the mounting shell, and the other end of the rotating adjustment component is connected to the outer shell; or, One end of the rotating adjustment component is rotatably and rollably connected to the outer casing, and the other end of the rotating adjustment component is connected to the mounting shell.

3. The lamp housing structure according to claim 1, characterized in that, The mounting housing has a first spherical groove on the side near the rotating adjustment member, and one end of the rotating adjustment member is engaged in the first spherical groove and is rotatably and rollably connected to the mounting housing; and / or, The outer casing has a second spherical groove on the side near the rotating adjustment member. One end of the rotating adjustment member is engaged in the second spherical groove and rotates and is rotatably connected to the outer casing.

4. The lamp housing structure according to claim 1, characterized in that, The mounting housing has a first annular groove on the side near the rotating adjustment member, and one end of the rotating adjustment member is engaged in the first annular groove and rotatably connected to the mounting housing; and / or, The outer casing has a second annular groove on the side near the rotating adjustment member, and one end of the rotating adjustment member is engaged in the second annular groove and rotatably connected to the outer casing.

5. The lamp housing structure according to claim 1, characterized in that, The rotation adjustment component includes a first compensation part and a second compensation part; The first compensation part is rotatably connected to the mounting shell, and the second compensation part is rotatably connected to the outer shell. The rotation axes of both the first and second compensation parts coincide with the rotation axis of the outer shell. The first and second compensation parts are rollably connected, so that the first compensation part is rollably disposed relative to the outer shell, and the second compensation part is rollably disposed relative to the mounting shell; or, The first compensation part is rotatably connected to the mounting shell, and the rotation axis of the first compensation part coincides with the rotation axis of the shell. The second compensation part is connected to the shell, and the first compensation part and the second compensation part are rotatably connected, so that the first compensation part is rotatably disposed relative to the shell, and the second compensation part is rotatably disposed relative to the mounting shell; or, The first compensation part is connected to the mounting shell, the second compensation part is rotatably connected to the outer shell, the rotation axis of the second compensation part coincides with the rotation axis of the outer shell, and the first compensation part and the second compensation part are rotatably connected so that the first compensation part is rotatably disposed relative to the outer shell, and the second compensation part is rotatably disposed relative to the mounting shell.

6. The lamp housing structure according to claim 5, characterized in that, The first compensation part has a rolling groove at one end near the second compensation part, and one end of the second compensation part is engaged in the rolling groove and is rotatably connected to the first compensation part.

7. The lamp housing structure according to claim 5, characterized in that, The lamp housing structure also includes a connector. The end of the first compensation part near the second compensation part is rotatably connected to the connector. The end of the second compensation part near the second compensation part is rotatably connected to the connector. The rotation axes of the first compensation part and the second compensation part relative to the connector intersect, and the plane containing the rotation axes of the first compensation part and the second compensation part relative to the connector intersects with the rotation axis of the outer casing.

8. The lamp housing structure according to claim 7, characterized in that, The first compensation part and the second compensation part are perpendicular to the rotation axis of the connecting member; and / or, The planes on which the rotation axes of the first and second compensation parts rotate relative to the connector are perpendicular to the rotation axis of the outer casing.

9. The lamp housing structure according to claim 1, characterized in that, A meshing ring is connected to the outer casing. The meshing ring is arranged around a rotation axis that allows the outer casing to rotate relative to the mounting shell. The meshing ring is used to mesh with the power output end of the drive motor so that the drive motor drives the outer casing to rotate relative to the mounting shell.

10. A smart remote control light, characterized in that, The lamp housing includes a drive assembly and a lamp housing structure as described in any one of claims 1 to 9, wherein the drive assembly is mounted on the mounting housing and the power output end of the drive assembly is engaged with the housing to drive the housing to rotate relative to the mounting housing.

Citation Information

Patent Citations

  • Novel remotely controlled tube lamp

    CN201983137U