1. Field of the Invention
The instant disclosure relates to a lamp structure; in particular, to enable rapid disassembly.
2. Description of Related Art
Traditional lamps use tungsten bulbs or fluorescent tubes as illumination sources. In addition to the high power consumption, heat, and manufacturing cost, the glare can make the users' eyes uncomfortable.
Technological advancement has made light emitting diodes (LEDs) as a popular light source for illumination in lighting applications. LEDs do not blink and have the advantages of low power consumption, high brightness, long life time, and no mercury. Thus LEDs are gradually replacing traditional light sources.
The instant disclosure utilizes the LED as the light source in providing an improved lamp structure having excellent structural characteristics.
The object of the instant disclosure is to provide a lamp structure having improved structural characteristics in achieving excellent structural stability.
The lamp structure comprises a lamp housing, a light-guiding module, a light source module, and a fastening piece. The lamp housing includes a bottom wall and an annular side wall. The side wall connects to the bottom wall and cooperatively defines a receiving space. The bottom wall has a positioning portion. The light-guiding module is disposed in the receiving space. The light source module is disposed around the light-guiding module. The light source module includes a circuit board and a plurality of light source units spacingly disposed thereon. The circuit board has a projection engageable with the positioning portion of the bottom wall. The fastening piece has a fastening portion that removably engages with the lamp housing.
In summary, the lamp structure provides strong structural stability by utilizing the positioning portion as well as the projection portion. Also, the lamp structure provides excellent illumination quality.
In order to further understand the instant disclosure, the following embodiments are provided along with illustrations to facilitate the appreciation of the instant disclosure; however, the appended drawings are merely provided for reference and illustration, without any intention to be used for limiting the scope of the instant disclosure.
When reference is made to the number of elements or the like in the following description of the embodiments, the number is not limited to a specific number unless otherwise specified.
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The lamp structure of the instant disclosure is structurally stable and emits light laterally. The lamp structure comprises a lamp housing 1, a light source module 2, a light-guiding module 3, a fastening piece 4, a board 5, and at least one connecting piece 6.
The lamp housing 1 has a bottom wall 10 and an annular side wall 11. The side wall 11 bendably extends from the edge of the bottom wall 10 and cooperatively defines a receiving space 12. The lamp housing 1 is substantially pot-shaped as a conductor for heat dissipation as well as fixing the light source module 2. Nevertheless, the shape of the lamp housing 1 is not restricted. For example, the lamp housing 1 may be square shaped or polygonal.
Four receiving holes 100, a wiring hole 101, and four attachment holes 102 are formed and spaced circumferentially on the bottom wall 10. Also, the bottom wall 10 has a positioning portion 103; the positioning portion 103 has a plurality of assembly slots 1031 penetrating the bottom wall 10. The positions of the receiving hole 100, wiring hole 101, attachment holes 102 and assembly slots 1031 do not overlap one another.
The assembly slots 1031 of the positioning portion 103 are intervally spaced on the bottom wall 10 and adjacent to the side wall 11. The walls that define each assembly slot 1031 is rectangular in shape. Each of the assembly slots 1031 is substantially the same in shape and size. However, the assembly slots 1031 can also be configured as blind holes; that is to say the assembly slots 1031 do not penetrate through the bottom wall 10.
The side wall 11 has a contacting face 110 and a fold 111 and surrounds the edge of the bottom wall 10. The contacting face 110 is a flat surface of the inner side of the side wall 11. The fold 111 is formed by bending and extending one edge of the side wall 11 away from the bottom wall 10 to increase the surface area for heat dissipation.
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The circuit board 20 has an inner face 201 and an outer face 202. The annular circuit board 20 is formed by connecting opposite ends thereof. The light source units 22 are disposed on the inner face 201 and hence emitting light towards the receiving space 12. In the illustrated embodiment, light emitting diodes (LEDs) 220 are utilized as the light source units 22.
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The outer face 202 of the circuit board 20 substantially presses against the contacting face 110 of the side wall 11. Therefore, the heat generated by the light source module 2 can be conducted to the lamp housing 1. The lamp housing 1 can further dissipate the heat to the environment to provide an effective thermal management for the lamp structure.
The circuit board 20 has a projection portion 21. The projection portion 21 includes a plurality of tabs 210. The tabs 210 are identical in size and shape. The tabs 210 extend from one edge of the circuit board 20 and are spaced conformingly to the assembly slots 1031 of the bottom wall 10. In other words, the projection portion 21 is able to engage to the assembly slots 1031 through the tabs 210. By retaining the circuit board 20 in such manner, the light source module 2 is held securely in the lamp housing 1 in maintaining structural stability.
The light-guiding module 3 includes a reflection plate 30, a light-guiding plate 31, and a diffusion plate 32. The light-guiding module 3 is surrounded peripherally by the light source module 2. The reflection plate 30, the light-guiding plate 31, and the diffusion plate 32 are substantially circular in shape and have same diameters. The reflection plate 30, the light-guiding plate 31, and the diffusion plate 32 are stacked inside the receiving space 12. The light-guiding plate 31 and the diffusion plate 32 are transparent. The reflection plate 30 has a smooth surface to reflect the incident light to the light-guiding plate 31 and the diffusion plate 32 for light transmission.
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Furthermore, the ring formed by the fastening arms 400 is slightly larger than the circuit board 20. Thus, when the fastening piece 4 is releasably engaged to the lamp housing 1, the elastic fastening arms 400 flex outward toward the circuit board 20. In such manner, the outer face 202 of the circuit board 20 is firmly pressed against the side wall 11.
Four of the fastening arms 400 are each fitted with at least one fastening hook 401. The fastening hooks 401 engage the respective receiving holes 100 for securing to the bottom wall 10. Hence, the fastening piece 4 firmly fixes the light source module 2 and the light-guiding module 3 to the lamp housing 1. To disassemble the lamp structure, the user only needs to disengage the fastening arms 400 from the bottom wall 10. The fastening piece 4 and the lamp housing 1 can thus be easily separated from each other. The above described configuration greatly facilitates the ease to assemble and dissemble the lamp structure.
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When the fastening arms 400 are deformed due to temperature change, the board 5 maintains a pressing force against the fastening arms 400 to retain the circuit board 20. Thus, the outer face 202 of the circuit board 20 remains substantially in contact with the contacting face 110 of the side wall 11. Excellent heat dissipation effect is maintained as well. However, the type of the board 5 is not limited to the example provided by the instant embodiment.
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The elastic body 612 is spiral shaped and connected between two arms of the holding portion 611. The opposite ends of the elastic body 612 are connected to the connecting end 601 of the attachment plate 60. The connecting pieces 6 are fixed on the lamp housing 1 via the attachment holes 102 with screws. However, other fixing means may be employed as well.
For the illustrated embodiment, the lamp structure further comprises a driving circuit unit (not shown). The driving circuit unit is mounted to the underside of the bottom wall 10. The driving circuit unit is secured to the lamp housing 1 by the connecting pieces 6. The wires (not shown) of the light source module 2 pass through the wiring hole 101 and connects to the driving circuit unit. The type of the driving circuit unit is not limited to the example provided by the instant embodiment.
The positioning slot 1032 is an annular groove formed concavely on the bottom wall 10 without penetrating it. The extension 211 conforms in shape to and releasably engages with the positioning slot 1032 to secure the circuit board 20. The configuration of the positioning slot 1032 is not limited to the example provided by the instant embodiment.
Based on the foregoing, the lamp structure of the instant disclosure has the following advantages:
1. The utilization of positioning portion of the lamp housing and the projection portion of the circuit board for retaining the light source module provides better structural stability.
2. Excellent lighting quality is achieved for the LEDs via the light-guiding module.
3. The lamp structure can be assembled and disassembled with ease. The fastening piece presses against the light-guiding module and releasably locks it on the lamp housing. The fastening arms and hooks enable the fastening piece firmly attached to the lamp housing. The user can directly assemble and disassemble the fastening piece to and from the lamp housing quickly with ease.
4. The lamp structure provides a way of thorough heat dissipation which prolongs the life span of the lamp.
The descriptions illustrated supra set forth simply the preferred embodiments of the instant disclosure; however, the characteristics of the instant disclosure are by no means restricted thereto. All changes, alternations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the instant disclosure delineated by the following claims
Number | Date | Country | Kind |
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101210709 | Jun 2012 | TW | national |