Intelligent spotlight based on limiting adjustment linkage

Through the linkage structure of C-type elastic wire-remediation parts and guide sleeves, the problem of unreasonable wire length management in spotlights is solved, flexible adjustment and stable management of wire length are achieved, and the applicability and performance of spotlights are improved.

CN223242699UActive Publication Date: 2025-08-19GUANGDONG XINGJUN LIGHTING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521503070.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-18
Publication Date
2025-08-19
Estimated Expiration
2035-07-18

AI Technical Summary

Technical Problem

The length management of wires in existing spotlights is unreasonable, resulting in wires being too long or too short, affecting product performance, reliability and aesthetics, and complex installation and maintenance.

Method used

The linkage structure of C-type elastic wire-restraining parts, locking components and guide sleeve is adopted. By adjusting the relative positions of the wire storage channel and guide sleeve, the wire length is flexible to adjust, and the stability of wire management is ensured through the coordination between the limit bumps and the stop.

Benefits of technology

It realizes flexible adaptation of wire length, improves the applicability and performance of spotlights in different usage scenarios, and simplifies the installation and maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent spot lamp based on limiting adjustment linkage, which comprises a lamp shell, a mounting cavity, a partition plate, a first cavity, a second cavity, a first wire hole and a C-shaped elastic wire arranging piece, and the C-shaped elastic wire arranging piece is provided with a wire accommodating channel arranged along the bending direction of the C-shaped elastic wire arranging piece. The wire containing channel is used for containing and guiding a wire connecting the control panel and the lamp body assembly. A guide sleeve allowing a wire to penetrate through is fixedly arranged on the partition plate, the guide sleeve and the first wire hole are coaxially arranged, and a fixed base is arranged in the second cavity. The lower end portion of the C-shaped elastic wire arranging piece is connected to the fixed base in a sliding mode and achieves position locking through a locking assembly, and the relative position of the upper end portion of the C-shaped elastic wire arranging piece in the guide sleeve can be adjusted. According to the utility model, through the linkage of the C-shaped elastic wire arranging piece, the guide sleeve and other structures, the relative position of the wire accommodating channel and the guide sleeve is adjusted, the effective length of the accommodated wire is adjusted, and the wiring requirements of long wires and short wires can be met.
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Description

Technical Field

[0001] The utility model relates to the technical field of spotlights, and in particular to an intelligent spotlight based on limit adjustment linkage. Background Art

[0002] In existing spotlight structures, the connection between the control panel and the lamp body assembly relies on wires passing through the partitions inside the lamp housing. However, due to differences in wire length requirements for spotlights of different models or installation environments, the proper management of wire allowances has become a key factor affecting product performance, reliability, and aesthetics. Traditional spotlights typically use fixed-length wire channels or simple cable tie fixings, which have significant technical flaws. For example, the cable management trough cannot adjust the accommodation space, and wires that are too long tend to pile up, affecting heat dissipation and mechanical stability. Wires that are too short may cause connection difficulties or stress concentration, which in turn affects connection reliability. In addition, existing cable management methods often rely on manual bundling, which not only has low installation efficiency, but also requires reorganizing the wires during later maintenance, significantly increasing the complexity of the operation. Utility Model Content

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes an intelligent spotlight based on position limiting and regulating linkage.

[0004] A smart spotlight based on limit adjustment linkage, comprising a lamp housing, an installation cavity formed inside the lamp housing, a partition provided in the installation cavity, the partition dividing the installation cavity into a first cavity for accommodating a control board and a second cavity for installing a lamp body assembly; a first through-hole is provided on the partition; the light also includes a C-shaped elastic wire management member provided in the second cavity, the C-shaped elastic wire management member having a wire accommodating channel provided along the bending direction of the C-shaped elastic wire management member, the wire accommodating channel being used to accommodate and guide the wires connecting the control board and the lamp body assembly; a guide sleeve for passing the wires is fixedly provided on the partition, the guide sleeve is coaxially arranged with the first wire hole, and a fixed base is provided in the second cavity; wherein the lower end of the C-shaped elastic wire management member can be slidably connected to the fixed base and is locked in position by a locking assembly, and the upper end of the C-shaped elastic wire management member can be adjusted to a relative position in the guide sleeve.

[0005] Preferably, the locking assembly includes: a plurality of locking recesses axially spaced along the fixed base, and an elastic pressing ball arranged at the lower end of the C-shaped elastic wire management component; wherein, a movable guide groove connected to the locking recess is provided on the fixed base, and the C-shaped elastic wire management component realizes axial displacement through the cooperation of the elastic pressing ball and the movable guide groove; when the elastic pressing ball is inserted into any of the locking recesses, the C-shaped elastic wire management component and the fixed base form a locked state.

[0006] Preferably, a limiting protrusion is fixedly provided at the upper end of the C-shaped elastic wire management component; a guide groove is axially provided on the inner wall of the guide sleeve, and a stop portion is provided at the bottom end of the guide groove; the limiting protrusion is slidably embedded in the guide groove, and when the limiting protrusion moves to abut against the stop portion, the C-shaped elastic wire management component reaches the maximum downward stroke.

[0007] Preferably, the side wall of the C-shaped elastic wire management member extends outward to form an operation pressing portion, and when external force is applied to the operation pressing portion, the upper end portion of the C-shaped elastic wire management member can be driven to generate axial displacement along the guide groove.

[0008] Preferably, the lamp housing includes an upper shell and a lower shell that are interlocked, the inner surface of the upper shell is provided with a first half groove, and the inner surface of the lower shell is provided with a second half groove corresponding to the first half groove. When the upper shell and the lower shell are assembled in place, the first half groove and the second half groove together form a closed installation chamber for accommodating the C-shaped elastic wire management part and the locking assembly.

[0009] Preferably, the C-shaped elastic wire management member is fixed in the second half groove by bolts.

[0010] The beneficial effects of the utility model are:

[0011] This utility model uses the linkage of a C-shaped elastic wire management member, a locking assembly, a guide sleeve, and other structures to adjust the relative position of the wire receiving channel and the guide sleeve, achieving adjustment of the effective length of the accommodated wire, making it suitable for wiring long and short wires. In addition, the application also ensures that the C-shaped elastic wire management member can move safely within its maximum travel range through the limited cooperation of the limit bump and the stop portion, avoiding mechanical interference or damage caused by excessive displacement. This limit adjustment function can flexibly adapt to the wiring requirements of wires of different lengths while ensuring the stability and reliability of wire management, significantly improving the applicability and performance of the spotlight in different usage scenarios, making it more intelligent. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0013] Figure 1 This is a schematic diagram of the structure of an intelligent spotlight based on limit adjustment linkage in this application Figure 1 ;

[0014] Figure 2 This is a schematic diagram of the structure of an intelligent spotlight based on limit adjustment linkage in this application Figure 2 ;

[0015] Figure 3 For this application Figure 1 A partial enlarged view of A in FIG. DETAILED DESCRIPTION

[0016] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar numbers throughout represent the same or similar elements or elements with the same or similar functions.

[0017] The orientation shown in the drawings cannot be understood as limiting the specific protection scope of the present invention. It is only for reference and understanding of the preferred embodiments. The product components shown in the drawings can be changed in position, increased in number, or simplified in structure.

[0018] The “connection” described in the specification and the mutual “connection” relationship of the components shown in the drawings may be understood as a fixed connection, a detachable connection, or an integral connection; it may be a direct connection or a connection through an intermediate medium. A person skilled in the art may understand the connection relationship according to the specific circumstances and may derive different implementation methods such as screw connection, riveting, soldering, clip connection, or inlay connection in an appropriate manner.

[0019] For the directional words such as up, down, left, right, top, and bottom described in the specification and the directions shown in the drawings, the components may be in direct contact or in contact through other features between them; for example, "above" can mean directly above or obliquely above, or it simply means higher than other objects; other directions can also be understood by analogy.

[0020] The materials used to make the parts with solid shapes shown in the specification and the drawings may be metal materials, non-metal materials, or other synthetic materials; the mechanical processing techniques used for the parts with solid shapes may be stamping, forging, casting, wire cutting, laser cutting, injection molding, CNC milling, 3D printing, machining, etc.; ordinary technicians in this field can adaptively select or combine them according to different processing conditions, costs, and precision, but are not limited to the above-mentioned materials and manufacturing processes.

[0021] A smart spotlight based on limit adjustment linkage includes a lamp housing 1, wherein the lamp housing 1 has an installation cavity 2 formed therein, and a partition 3 is provided in the installation cavity 2. The partition 3 divides the installation cavity 2 into a first cavity 21 for accommodating a control board 4 and a second cavity 22 for installing a lamp body assembly 5; the partition 3 is provided with a through first wire hole 31; and further includes a C-shaped elastic wire management member 6 provided in the second cavity 22, the C-shaped elastic wire management member 6 having a wire receiving channel 61 provided along the bending direction of the C-shaped elastic wire management member 6. The wire receiving channel 61 is used to accommodate and guide the wire 50 connecting the control board 4 and the lamp body assembly 5; a guide sleeve 7 for the wire 50 to pass through is fixedly provided on the partition 3, and the guide sleeve 7 is coaxially arranged with the first wire hole 31, and a fixed base 8 is provided in the second chamber 22; wherein, the lower end portion 62 of the C-shaped elastic wire management member 6 can be slidably connected to the fixed base 8 and the position is locked by the locking assembly 9, and the upper end portion 63 of the C-shaped elastic wire management member 6 can be adjusted to a relative position in the guide sleeve 7.

[0022] Furthermore, the locking assembly 9 includes: a plurality of locking recesses 91 axially spaced apart along the fixed base 8, and an elastic pressing ball 92 arranged at the lower end 62 of the C-shaped elastic wire management component 6; wherein, a movable guide groove 93 connected to the locking recess 91 is provided on the fixed base 8, and the C-shaped elastic wire management component 6 realizes axial displacement through the cooperation between the elastic pressing ball 92 and the movable guide groove 93; when the elastic pressing ball 92 is inserted into any of the locking recesses 91, the C-shaped elastic wire management component 6 forms a locked state with the fixed base 8.

[0023] Furthermore, a limiting protrusion 64 is fixed to the upper end portion 63 of the C-shaped elastic wire management component 6; a guide groove 71 is axially provided on the inner wall of the guide sleeve 7, and a stop portion 72 is provided at the bottom end of the guide groove 71; the limiting protrusion 64 is slidably embedded in the guide groove 71, and when the limiting protrusion 64 moves to abut against the stop portion 72, the C-shaped elastic wire management component 6 reaches the maximum downward stroke.

[0024] Furthermore, the side wall of the C-shaped elastic wire management member 6 extends outward to form an operation pressing portion 65. When external force is applied to the operation pressing portion 65, the upper end portion 63 of the C-shaped elastic wire management member 6 can be driven to generate axial displacement along the guide groove 71.

[0025] Furthermore, the lamp housing 1 includes an upper shell 11 and a lower shell 12 that are interlocked, the inner surface of the upper shell 11 is provided with a first half groove 111, and the inner surface of the lower shell 12 is provided with a second half groove 121 corresponding to the first half groove 111. When the upper shell 11 and the lower shell 12 are assembled in place, the first half groove 111 and the second half groove 121 together enclose a closed installation chamber 13 for accommodating the C-shaped elastic wire management part 6 and the locking assembly 9.

[0026] Furthermore, the C-shaped elastic wire management member 6 is fixed in the second half groove 121 by a bolt 60 .

[0027] The working principle of this utility model is:

[0028] First, prepare the lamp housing 1, C-shaped elastic cable management member 6, guide sleeve 7, fixed base 8, control panel 4, and lamp body assembly 5. Install partition 3 within the mounting cavity 2 of lamp housing 1, separating the first cavity 21 and the second cavity 22. Secure guide sleeve 7 coaxially with first cable hole 31, and install fixed base 8 within second cavity 22.

[0029] The control board 4 is installed in the first cavity 21, and the lamp body assembly 5 is installed in the second cavity 22. Then, a wire 50 is prepared to connect the control board 4 and the lamp body assembly 5, and the wire 50 is passed through the first wire hole 31 on the partition 3 and the guide sleeve 7.

[0030] Insert the upper end 63 of the C-shaped elastic cable organizer 6 into the guide sleeve 7. The stopper 64 then engages the guide groove 71 of the guide sleeve 7. Next, the wires 50 are arranged and accommodated within the wire receiving channel 61 of the C-shaped elastic cable organizer 6. The wires 50 are neatly guided within the receiving channel, preventing them from cluttering.

[0031] According to the actual length of the wire 50 and the wiring requirements, the external force is applied by operating the pressing portion 65 to drive the upper end portion 63 of the C-shaped elastic wire management member 6 to adjust the axial displacement along the guide groove 71. When the C-shaped elastic wire management member 6 is moved to the appropriate position, the operating pressing portion 65 is released, and the elastic pressing ball 92 is automatically snapped into the locking recess 91 on the fixed base 8, so that the position of the lower end portion 62 of the C-shaped elastic wire management member 6 on the fixed base 8 is locked. During the entire adjustment process, the limiting protrusion 64 provided on the upper end portion 63 slides in the guide groove 71. When it moves to the stop portion 72, it limits the maximum downward travel of the C-shaped elastic wire management member 6, ensuring that it does not move downward excessively and damage other components.

[0032] The effective length referred to in this embodiment is the actual usable length of the portion connecting the wire-receiving channel 61 of the C-shaped elastic wire organizer 6 and the guide slot 71 of the guide sleeve 7. Specifically, the wire 50 first passes through the guide slot 71 of the guide sleeve 7, then enters the wire-receiving channel 61 of the C-shaped elastic wire organizer 6 before connecting to the lamp body assembly 5. As the upper end 63 of the C-shaped elastic wire organizer 6 axially moves along the guide slot 71 of the guide sleeve 7, the length of the portion connecting the wire-receiving channel 61 and the guide slot 71 changes accordingly. The position of the C-shaped elastic wire organizer 6 within the guide slot 71 jointly determines the "effective length." For example, when the C-shaped elastic wire management member 6 moves upward in the guide slot 71, the path of the wire 50 in the guide slot 71 becomes shorter, while the path entering the wire receiving channel 61 remains unchanged, so it is suitable for situations where the wire 50 is shorter; conversely, when the C-shaped elastic wire management member 6 moves downward in the guide slot 71, the path of the wire 50 in the guide slot 71 becomes longer, while the path entering the wire receiving channel 61 remains unchanged, so it is suitable for situations where the wire 50 is longer.

[0033] After the C-shaped elastic cable organizer 6 and the wires 50 are arranged and adjusted, the C-shaped elastic cable organizer 6 can be fixed to the second half groove 121 with bolts. The upper shell 11 and the lower shell 12 are aligned and snapped together. The first half groove 111 on the inner surface of the upper shell 11 and the second half groove 121 on the inner surface of the lower shell 12 interlock with each other, forming a closed installation chamber 13 that completely encloses the C-shaped elastic cable organizer 6, the locking assembly 9, and other components.

[0034] On the basis of the above technical solution, as embodiment 1, the C-type elastic cable management member 6 can be injection-molded from a polyurethane elastomer, and its Shore hardness is 70D±5D.

[0035] The present invention adjusts the relative positions of the wire receiving channel 61 and the guide sleeve 7 by interlocking the C-shaped elastic wire management member, the locking assembly, the guide sleeve, and other structures, thereby adjusting the effective length of the wire 50 to accommodate both long and short wires 50. Furthermore, the present invention also ensures the safe movement of the C-shaped elastic wire management member within its maximum travel range through the limited cooperation of the limit protrusion 64 and the stop portion 72, thereby avoiding mechanical interference or damage caused by excessive displacement. This limit adjustment function can flexibly adapt to the wiring requirements of wires 50 of different lengths while ensuring the stability and reliability of wire 50 management, significantly improving the applicability and performance of the spotlight in different usage scenarios, making it more intelligent.

[0036] Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art from this disclosure that various changes or modifications may be made to the present invention without departing from the principles and spirit of the present invention as defined in the claims. Therefore, the detailed description of the disclosed embodiments is intended to illustrate rather than limit the present invention, which shall be defined by the claims.

Claims

1. An intelligent spotlight based on position limiting and adjusting linkage, comprising a lamp housing (1), wherein a mounting cavity (2) is formed inside the lamp housing (1), a partition (3) is provided in the mounting cavity (2), and the partition (3) divides the mounting cavity (2) into a first cavity (21) for accommodating a control panel (4) and a second cavity (22) for installing a lamp body assembly (5); a first through hole (31) is formed on the partition (3); and the characteristics are: The invention also includes a C-shaped elastic wire management member (6) arranged in the second chamber (22), wherein the C-shaped elastic wire management member (6) has a wire receiving channel (61) arranged along the bending direction of the C-shaped elastic wire management member (6), and the wire receiving channel (61) is used to accommodate and guide the wire (50) connecting the control board (4) and the lamp body assembly (5); a guide sleeve (7) for the wire (50) to pass through is fixedly arranged on the partition (3), and the guide sleeve (7) is coaxially arranged with the first wire hole (31); a fixed base (8) is provided in the second chamber (22); wherein the lower end portion (62) of the C-shaped elastic wire management member (6) can be slidably connected to the fixed base (8) and is locked in position by a locking assembly (9), and the upper end portion (63) of the C-shaped elastic wire management member (6) can be adjusted in relative position in the guide sleeve (7).

2. The intelligent spotlight based on limit adjustment linkage according to claim 1, characterized in that: The locking assembly (9) comprises: a plurality of locking recesses (91) arranged at axial intervals along the fixed base (8), and an elastic pressing ball (92) arranged at the lower end (62) of the C-shaped elastic wire-management member (6); wherein, a movable guide groove (93) communicating with the locking recesses (91) is provided on the fixed base (8), and the C-shaped elastic wire-management member (6) realizes axial displacement through the cooperation between the elastic pressing ball (92) and the movable guide groove (93); when the elastic pressing ball (92) is engaged in any of the locking recesses (91), the C-shaped elastic wire-management member (6) and the fixed base (8) form a locked state.

3. The intelligent spotlight based on limit adjustment linkage according to claim 2, characterized in that: The upper end portion (63) of the C-shaped elastic wire management member (6) is fixedly provided with a limiting protrusion (64); the inner wall of the guide sleeve (7) is axially provided with a guide slot (71), and the bottom end of the guide slot (71) is provided with a stop portion (72); the limiting protrusion (64) is slidably embedded in the guide slot (71), and when the limiting protrusion (64) moves to abut against the stop portion (72), the C-shaped elastic wire management member (6) reaches the maximum downward travel.

4. The intelligent spotlight based on limit adjustment linkage according to claim 3, characterized in that: The side wall of the C-shaped elastic wire management member (6) extends outward to form an operating pressing portion (65). When an external force is applied to the operating pressing portion (65), the upper end portion (63) of the C-shaped elastic wire management member (6) can be driven to generate axial displacement along the guide slot (71).

5. The intelligent spotlight based on limit adjustment linkage according to claim 1, characterized in that: The lamp housing (1) comprises an upper housing (11) and a lower housing (12) that are interlocked, the inner surface of the upper housing (11) being provided with a first half groove (111), and the inner surface of the lower housing (12) being provided with a second half groove (121) corresponding to the first half groove (111), and when the upper housing (11) and the lower housing (12) are assembled in place, the first half groove (111) and the second half groove (121) together enclose a closed installation chamber (13) for accommodating the C-shaped elastic wire management member (6) and the locking assembly (9).

6. The intelligent spotlight based on limit adjustment linkage according to claim 5, characterized in that: The C-shaped elastic wire management member (6) is fixed in the second half groove (121) by means of a bolt (60).