This present application claims benefit of the Chinese Application, CN 201610452130.8, filed on Jun. 22, 2016.
The present application relates to a lighting device, and more particularly to an interconnection mechanism for LED bar lighting.
As lighting technology in the field of energy conservation and environmental protection applications continues to develop, LED lighting obtains a rapid application due to energy consumption, high luminous efficiency and wide application advantages. With the continuous improvement of quality of life, the demands for home lighting and commercial lighting are also increasing accordingly. When the lighting space range is adjusted, it is also need to adjust lighting range of lamps. Especially, in commercial lighting applications, such as exhibition cabinets, the desired range of lighting is determined by the number of the exhibition cabinets. Therefore, it need to quickly and easily adjust the lighting range by interconnecting a plurality of LED bar lights which have a certain length.
The LED bar lightings in the art generally adopt plug and socket to achieve interconnection. However, it is difficult to ensure a stable connection effect by simply inserting the plug directly into the receptacle of the socket. Generally, the receptacle of the socket can only restrict the movable space of the plug in a radial direction of the LED bar lighting, but in an axial direction of the LED bar lighting, the socket and the plug have poor limit effect. Therefore, the interconnection stability of the LED bar lighting is poor, and it is difficult to achieve a stable electrical connection, which affects the practical use.
Therefore, it is necessary to provide an interconnection mechanism for LED bar lighting which makes it possible to solve the above problems.
Many aspects of the embodiments can be better understood with references to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments. Moreover, in the drawings, like reference numerals designate corresponding parts throughout two views.
The present application is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings. It should be noted that references to “an” or “one” embodiment in this application are not necessarily to the same embodiment, and such references mean at least one.
Referring to
The first lighting body 10 may be a frame, or a house. The frame can be use to set up the whole lamp and configured for mounting the plug mechanism 20 or the socket mechanism 30, or the other mechanism. The house may be used to arrange the light source module, cover, and so on. In the present embodiment, the first lighting body 10 is a frame and is configured for receiving the wires, and the plug mechanism 20. It can be appreciated that each of the LED bar lighting must include at least two the first lighting body 10, which is used as the frame.
The plug mechanism 20 includes a hollow socket 21, a plug 22 received in the hollow socket 21, and a connection pin 23 disposed on the hollow socket 21. The hollow socket 21 includes a hollow plug barrel 211, a stop ring 212 arranged on an outer side wall of the hollow plug barrel 211, a wedge importing ring 213, at least one opening 214 opened on the hollow plug barrel 211, and a plug flange 215 disposed on an end of the hollow plug barrel 211. The hollow plug barrel 211 is configured for receiving the plug 22 and disposing the other parts, such as the plug flange 215, the connection pin 23, and the first limit plate 50. The stop ring 212 is provided coaxially on the outer side wall of the hollow plug barrel 211 and has a quadrangle cross section along a radial direction of the hollow plug barrel 211. The wedge importing ring 213 is spaced apart from the stop ring 212 and is configured for locating the relative position between the connection pin 23 and the hollow plug barrel 211. The wedge importing ring 213 include a slope in a cross section along an axial direction of the hollow plug barrel 211, and the slope extends toward a free end of the hollow plug barrel 211. The opening 214 is disposed on a side wall of the hollow plug barrel 211 so that the side wall of the hollow plug barrel 211 can be deformed toward the center line thereof when the connection pin 23 is pressed between the stop ring 212 and the wedge importing ring 213. As a result, the connection pin 23 can be smoothly mounted on the outer side wall of the hollow plug barrel 211 so as to avoid the connection pin 23 or the hollow socket 21 from damaging. At least two screw holes 216 are provided on the plug flange 215 and are configured for mounting screws to fix the hollow socket 21 onto the first lighting body 10 so as to assemble the plug mechanism 20 onto the first lighting body 10. The plug 22 is a hollow barrel and is assembled into the hollow plug barrel 211. In order to prevent the plug 22 from crossing over the hollow plug barrel 211, one of two ends of the plug 22 has a step. As well known for a person skilled in the art, the plug 22 further includes wires, pins, or the like. The connection pin 23 includes a plug locating ring 231, at least one socket locating ring 232 connected to the plug locating ring 231, and at least one socket locating bar 233 disposed on an inner side wall of the socket locating ring 232. The plug locating ring 231 is embedded between the stop ring 212 and the wedge importing ring 213 so as to fix the relative position of the connection pin 23 and the hollow socket 21. An inner diameter of the plug locating ring 231 is equal to that of the hollow plug barrel 211, and a chamfer 234 is provided on an inner wall of one side of the plug locating ring 231. The purpose of setting the chamfer 234 is to mate with the slope of the wedge importing ring 231 so as to smoothly press the plug locating ring 231 between the stop ring 212 and the wedge importing ring 213. While the plug locating ring 231 is pressed between the stop ring 212 and the wedge importing ring 213, the socket locating ring 232 also can be inserted into the opening 214 of the hollow socket 21. The socket locating ring 232 of the connecting pin 23 has same axial length with the hollow plug barrel 211 so that the connecting pin 23 and the hollow plug barrel 211 can be aligned with the ends thereof. The socket locating ring 232 has same configuration and inner diameter with the hollow plug barrel 211. The socket locating bar 233 is disposed on the inner side wall of the socket locating ring 232, and the setting position thereof is dependent on the structure of the socket mechanism 30, and the specific operation principle thereof will be described in detail below.
The socket mechanism 30 includes a hollow socket barrel 31, a socket 32 mounted in the hollow socket barrel 31, a locating slot 33 opened on an outer side wall of the hollow socket barrel 31, and a socket flange 34 disposed in one end of the hollow socket barrel 31. The hollow socket barrel 31 is inserted into the hollow plug barrel 211 and an outer diameter of the hollow socket barrel 31 is equal to the inner diameter of the hollow plug barrel 211 so that the locating slot 33 is engaged to the socket locating bar 233. The socket 32 is inserted into the hollow socket barrel 31. In order to avoid the socket 32 from falling off out of the hollow socket barrel 31, a flange 311 is provide on one end of the hollow socket barrel 31 and extends toward the center thereof. It is appreciated that the socket 32 has wires, holes, or the like disposed therein. The locating slot 33 is opened on the outer side wall of the hollow socket barrel 31. In a cross section perpendicular to an axial direction of the hollow socket barrel 31, the locating slot 33 has same cross-section shape with the socket locating bar 233. In order to facilitate to insert or press the socket locating bar 233 into the locating slot 33, a cross-section shape of the socket locating bar 233 and the locating slot 33 is triangle. The socket flange 34 is provided at the other end of the hollow socket barrel 31 with respect to the flange 311 and has at least two screw holes 341. The socket flange 34 is used to fix the socket mechanism 30 to a frame or a house via some screws which pass through the screw holes 341. In the present embodiment, the socket mechanism 30 is fixed on the second lighting body 40.
The second lighting body 40 has same configuration with the first lighting body 10 and may be a frame or a house. In the present embodiment, the second lighting body 40 is a house. Therefore, when the plug mechanism 20 is interconnected with the socket mechanism 30 together, the interconnection mechanism 100 can supply power for the light source module received in the second lighting body 40. In order to interconnect the first and second lighting bodies 10, 20, the two ends of the second lighting body 40 regarded as the house of the LED bar lighting are assembled the plug mechanism 20 and the socket mechanism 30.
The first limit plate 50 is mounted between the first lighting body 10 and the plug mechanism 20. Specifically, the first limit plate 50 is disposed on a free side of the plug flange 215 and is configured to limit the location of the plug 22, that is to say, the plug 22 is clamped between the first limit plate 50 and the plug flange 215 by the first limit plate 50 and the step of the plug 22 so as to fix the location of the plug 22. The first limit plate 50 has at least two first screw holes 51 provided thereon and is fixed to the first lighting body 10 by the same screw.
The second limit plate 60 has same function with the first limit plate 50, and is mounted on a free side of the socket flange 34 and is used to fix the location of the socket 32. That is to say, the socket 32 is clamped between the hollow socket barrel 31 and the second limit plate 60 by the second limit plate 60 and the flange 311 of the hollow socket barrel 31 so as to fix the location of the socket 32. As a result, when the plug mechanism 20 is inserted into the socket mechanism 30, it is possible to prevent the bad electrical connection in which is resulted by the change in the position of the plug 22 and the socket 32.
As described above, since the interconnection mechanism 100 of LED bar lighting has the plug mechanism 20 and the socket mechanism 30, the relative position along the radial direction of the first and second lighting bodies 10, 40 is fixed by the cooperation of the hollow plug barrel 211 and the hollow socket barrel 21 along the radial direction thereof. And, the relative position along the axial direction of the first and second lighting bodies 10, 40 is fixed by the engagement of the socket locating bar 233 of the connection pin 23 and the locating slot 33. As a result, it is possible to fix the relative position of the first and second lighting bodies 10, 40 in all directions so that the location of the interconnection of the first and second lighting bodies 10, 40 are not deformed.
While the disclosure has been described by way of example and in terms of exemplary embodiment, it is to be understood that the disclosure is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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2016 1 0452130 | Jun 2016 | CN | national |
Number | Name | Date | Kind |
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3470524 | Culver | Sep 1969 | A |
4801277 | Seilhan | Jan 1989 | A |
Number | Date | Country | |
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20170370568 A1 | Dec 2017 | US |