WO2016037580A1 - 一种线性灯 - Google Patents

一种线性灯 Download PDF

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Publication number
WO2016037580A1
WO2016037580A1 PCT/CN2015/089338 CN2015089338W WO2016037580A1 WO 2016037580 A1 WO2016037580 A1 WO 2016037580A1 CN 2015089338 W CN2015089338 W CN 2015089338W WO 2016037580 A1 WO2016037580 A1 WO 2016037580A1
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WO
WIPO (PCT)
Prior art keywords
bracket
driving power
power module
rail
linear lamp
Prior art date
Application number
PCT/CN2015/089338
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English (en)
French (fr)
Inventor
洪满堂
Original Assignee
欧普照明股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201410462500.7A external-priority patent/CN105465662B/zh
Priority claimed from CN201420522586.3U external-priority patent/CN204141317U/zh
Application filed by 欧普照明股份有限公司 filed Critical 欧普照明股份有限公司
Publication of WO2016037580A1 publication Critical patent/WO2016037580A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/10Pendants, arms, or standards; Fixing lighting devices to pendants, arms, or standards
    • F21V21/108Arms
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices

Definitions

  • the invention relates to a luminaire, in particular to a linear lamp.
  • Linear lamps as a type of luminaire, are widely used, such as interior lighting, commercial lighting, outdoor wall washers, outdoor floodlights, etc., all of which are applications of linear lamps.
  • Wall washers as a kind of linear lamps, as the name suggests, let the lights wash the wall like water, mainly used for architectural decoration lighting, and also used to outline the outline of large buildings.
  • LED is the abbreviation of English Light Emitting Diode, which is a kind of semiconductor solid-state light-emitting device, which has the characteristics of high luminous efficiency, low power consumption, long service life and high luminous brightness. Because LED has the above characteristics, it is gradually replacing other types of light sources and becoming the main light source for modern lamps.
  • a linear lamp comprising a bracket, an optical mask assembled to the bracket, an LED optical module, and a driving power module.
  • the bracket and the optical mask form a receiving space, and the LED optical module is received in the receiving space and the light is emitted through the optical mask.
  • the utility model further comprises sliding a pair of rails assembled on the lateral sides of the bracket along the length direction of the bracket, wherein the driving power module slides along the rails The rail is assembled in a vertical direction to be assembled to the outside of the bracket.
  • the method further includes a fastener that fixes the driving power module to the rail and the bracket in a direction perpendicular to a mounting direction of the driving power module and the rail.
  • the fastener is a screw
  • the driving power module and the guide rail are correspondingly provided with a mounting screw hole for screw-locking connection.
  • a set screw is further included, passing through the rail and abutting against a side wall of the bracket on which the rail is mounted.
  • the guide rails are respectively slidably assembled to a pair of side walls of the bracket, wherein the linear lamp further comprises a set screw that passes through the driving power module and the guide rail and abuts against the side wall of the bracket.
  • the driving power module includes a housing that houses a driving power source and a cover body assembled at two ends of the housing, wherein the housing includes a top wall and a pair of side walls connected to the top wall, wherein the two side walls extend beyond The top wall and the joint portion are formed, and the joint portions are respectively attached to the outside of the bracket and mechanically connected to the guide rail.
  • the bracket has a pair of side walls, each of which has an open outward track along its length, wherein the guide rail includes a base received in the rail and an abutment extending from the upper end of the base beyond the rail.
  • the upper end edge of the joint portion of the driving power module is formed with an end portion matching the shape of the abutting portion of the guide rail, and is abutted against the lower portion of the abutting portion to limit the mounting position of the driving power module.
  • the cover of the driving power module is extended to form a positioning portion between the two side walls of the housing, wherein the bracket has a bottom wall, the bottom wall is provided with a cavity, and the positioning extends into the cavity and Located at both ends of the cavity to position the drive power module.
  • the driving power module has two power lines respectively connected to the two ends of the driving power source, and one of the power lines extends from the driving power source and extends into the bracket to form an electrical connection with the LED optical module.
  • the bracket has a bottom wall, and the bottom wall defines a through hole in the mounting area of the rail, and the power line extending into the bracket and electrically connected to the LED optical module enters the bracket from the through hole.
  • the LED optical module comprises a light source plate, LED lamp beads spaced apart from the light source plate, and a combined lens device disposed above the corresponding LED lamp bead, wherein the combined lens device is respectively engaged with the lens and the bracket.
  • the linear lamp of the invention adopts a direct-drive driving power module, which simplifies the structure and improves the installation efficiency.
  • FIG. 1 is a perspective assembled view of a linear lamp in accordance with a preferred embodiment of the present invention
  • Figure 2 is a partial exploded perspective view of the linear lamp shown in Figure 1 (with an end cap);
  • Figure 3 is a cross-sectional view of the linear lamp of Figure 1 taken along line A-A;
  • Figure 4 is a cross-sectional view of the linear lamp of Figure 1 taken along line B-B;
  • Figure 5 is a perspective view of a guide rail of a linear lamp in accordance with a preferred embodiment of the present invention.
  • FIG. 6 is a perspective assembled view of a bracket and an LED light source module of a linear lamp in accordance with a preferred embodiment of the present invention
  • Figure 7 is a perspective view of a bracket of a linear lamp in accordance with a preferred embodiment of the present invention.
  • Figure 8 is a perspective view of a combined lens device of a linear lamp in accordance with a preferred embodiment of the present invention.
  • Figure 9 is an exploded perspective view of the combined lens device shown in Figure 8.
  • Figure 10 is a perspective view of a combined lens device in accordance with still another embodiment of the present invention.
  • Fig. 11 is an exploded perspective view of the combined lens unit shown in Fig. 10.
  • a linear lamp 100 includes a bracket 1 , an optical mask 2 , an LED light source module 5 , a pair of guide rails 4 , and a driving power module 3 . .
  • the bracket 1 and the optical mask 2 are combined to form a receiving space 6 , and the LED light source is used.
  • the module 5 is housed in the accommodating space 6.
  • the guide rail 4 is slidably assembled to the bracket 1, and the drive power module 3 is directly assembled to the guide rail 4 and mechanically coupled to the guide rail 4.
  • the driving power module 3 is electrically connected to the LED light source module 5 to provide power to the LED light source module 5 .
  • the bracket 1 is made of a metal material with good thermal conductivity, usually aluminum or aluminum alloy, so that the heat generated by the LED light source module 5 can be exported to the linear lamp 100 in time to maintain good working performance.
  • the bracket 1 has an elongated configuration that extends along the length of the linear lamp 100 and has both end portions 11. After the assembly is completed, the end portion 11 of the bracket 1 and the end portion of the optical mask 2 are provided with a pair of end caps 9 for sealing the accommodating space 6.
  • the bracket 1 includes a frame-shaped body portion 12 having a U shape as seen from the direction of its end portion 11.
  • the body portion 12 is comprised of a pair of generally parallel side walls 121 and a generally horizontal bottom wall 122 that collectively define a space 123 that is open upwardly.
  • an L-shaped support portion 13 is formed extending from the central portion of the two side walls 121, and extends through the entire length of the bracket 1 in the longitudinal direction.
  • the optical mask 2 is placed in the above space from top to bottom and is located between the pair of side walls 121 while being supported by the support portion 13. After assembly, the upper surface of the optical mask 2 is flush with the top of the side wall 121.
  • a space (not shown) is previously coated in the space between the support portion 13 and the side wall 121, and can be bonded to the assembled optical mask 2.
  • the rail 124 has an inverted T shape, and extends inwardly from the sidewall 121 , and the opening 1241 of the sidewall 121 is smaller than the size of the receiving slot 1242 located inside the sidewall 121 .
  • the inner surface of each side wall 121 is located below the support portion 13, and a snap portion 126 is formed to protrude into the space 123, which also extends along the longitudinal direction of the bracket 1.
  • a plurality of rib-like heat dissipating fins 125 are formed around the boundary between the side wall 121 and the bottom wall 122 and below the bottom wall 122 and between the end portions 11 of the bracket 1.
  • the bottom wall 122 of the bracket 1 is respectively provided with a pair of fixing brackets 8, which can be mounted on other mounting foundations such as a floor, a wall, and the like.
  • the fixing bracket 8 can be integrally formed with the bracket 1 or assembled to the bottom wall 122 of the bracket 1 . In a preferred embodiment of the invention, the fixing bracket 8 is in an assembled relationship with the bracket 1.
  • the guide rails 4 are slidably assembled in the rails 124 of the bracket 1.
  • the guide rail 4 includes a base portion 41 that is substantially inverted T-shaped and an L-shaped abutment portion 42 that extends outward from an upper end edge of the base portion 41.
  • the base 41 includes a first portion 410 that is generally rectangular and a second portion 412 that extends from a central portion of the first portion 410. The first portion 410 and the second portion 412 are respectively received in the receiving groove 1242 and the opening 1241 of the rail 124 of the bracket 1 and are slidable relative thereto.
  • the abutting portion 42 extends outwardly from the upper end edge of the second portion 412 beyond the side wall 121 of the bracket 2, and its upper surface is flush with the upper surface of the first portion 410 of the base portion 41.
  • a pair of mounting screw holes 4121 and a pair of fixing screw holes 4122 located outside the pair of mounting screw holes 4121 extend inwardly from the outer surface of the second portion 412 of the base portion 41.
  • a pair of screws 7 pass through the driving power module 3 and the mounting screw holes 4121 to form a mechanically fixed connection between the driving power module 3 and the rails 4.
  • a pair of set screws (not shown) pass through the tightening screw holes 4122 and abut against the side of the rail 124 of the bracket 1 to fix the positional relationship between the rail 4 and the bracket 1 to prevent the rail 4 from sliding into position after the bracket 1 The displacement of the length direction relative to the stent 1.
  • the drive power module 3 includes a casing 31, a drive power source (not shown) housed in the casing 31, a power cord 33 electrically connected to the drive power source, and a cover 34 that closes both ends of the casing 31.
  • the housing 31 has a curved top wall 311, a flat bottom wall 312, and a pair of side walls 313 connecting the top wall 311 and the bottom wall 312.
  • the side wall 313 extends beyond the top wall 311 and is formed as a joint portion 3130 combined with the guide rail 4. .
  • the top of the joint portion 3130 is formed as an L-shaped end portion 3132 that is shaped to match the abutting portion 42 of the guide rail 4, and is matched with the abutting portion 42 and located below the abutting portion 42 to position the mounting position of the driving power module 3.
  • a pair of mounting screw holes 3133 are formed on the side of the joint portion 3130, and are aligned with the mounting screw holes 4121 of the guide rail 4, and the screws 7 are sequentially engaged with the driving power source module 3 through the mounting screw holes 3133 and 4121.
  • the side of the joint portion 3130 is further provided with a set screw hole 3134 located outside the mounting screw hole 3133, which is opposite to the set screw hole 4122 of the guide rail 4.
  • the cover body 34 is adjacent to the two ends of the housing 31 and extends upwardly to form a sheet-shaped positioning portion 341.
  • the joint portion 3130 is mechanically connected to the guide rail 4 on both lateral sides of the bracket 1, the top wall 311 and the cover of the housing 31
  • the upper surface of the 34 is abutted against the bottom wall 122 of the bracket 1 , and the pair of positioning portions 341 respectively extend into the cavity 127 and cooperate with the two end walls of the cavity 127 to position the driving power module 3 . .
  • the driving power supply (not shown) provided in the driving power module 3 is electrically connected to the power cable 33, and one of the power cables 33 is disposed through the top wall 311 and is electrically connected at the other end thereof. (not shown).
  • the power cable 3 is provided with one end of the electrical connector passing through the through hole 1270 at the bottom of the bottom wall 122 of the bracket 2 to form an electrical connection with the light source panel 51 of the LED light source module 5. Thereafter, the drive power module 3 is directly mounted to the guide rail 4 from the bottom up, and a reliable connection is formed by the screw 7 and the set screw.
  • the guide rail 4 Since the guide rail 4 is separately disposed from the driving power module 3, the guide rail 4 can be slid to the corresponding position of the bracket 1 in advance, and the driving power module 3 can be directly mounted to the direction perpendicular to the sliding direction of the guide rail 4, that is, the up and down direction. Guide rail 4.
  • the end of the power supply module 3 connected to the LED light source module 5 is prevented from being provided with an excessively long power supply line 3, thereby simplifying the structure and reducing the space occupied.
  • the other power line 33 extends out of the drive power module 5 and is connected to an external power source for power transmission.
  • an LED light source module 5 includes a light source panel 51 with a plurality of LED bead 50s disposed at intervals, and a plurality of spacers disposed above the LED bead 50.
  • the lens device 52 is combined.
  • the combined lens device 52 includes a lens holder 53 and a lens 54 housed in the lens holder 53.
  • the lens 54 is disposed above the LED lamp bead 50, and the lens holder 53 is positioned on the light source plate 51 and is snap-fitted to the bracket 1.
  • the lens 54 is a single lens having a tapered shape with an upper portion having a circular edge 540 and a positioning portion 541 extending further outwardly from the edge 540.
  • the lens holder 53 matched with the lens 54 has the following structure:
  • the lens holder 53 has an annular main body portion 531 and a face ring 530 which is formed to extend outward from the upper end edge of the main body portion 531.
  • the main body portion 531 has a peripheral wall 532 and is disposed on the peripheral wall 532.
  • the peripheral wall 532 and the bottom wall 533 collectively enclose a receiving cavity 534 that houses the receiving lens 54.
  • An opening 5330 is defined in the center of the bottom wall 533.
  • the lower end of the lens 54 extends into the opening 5330 and is disposed above the corresponding LED lamp bead 50.
  • the face ring 530 is connected to the upper end edge of the peripheral wall 532, and the inner edge is recessed with three recesses 5301. The inner side of each recess 5301 protrudes upwardly to form a first hook portion 5302 with a buckle facing the receiving cavity 534. .
  • the first latching portion 5302 is snapped over the edge 540 of the lens 54 .
  • the surface ring 530 is recessed and formed with a positioning groove 5303.
  • the lens 54 protrudes outwardly from the edge 540 thereof to form a positioning portion 541. Therefore, the positioning portion 541 and the positioning groove 5303 are formed. Fit to properly mount the lens 54 to the lens holder 53.
  • the position of the positioning portion and the positioning groove are interchangeable.
  • the positioning portion protrudes from the inner edge of the surface ring 530 into the receiving cavity 534, and the lens 54 is recessed to form a positioning groove for receiving the positioning portion.
  • the face ring 530 is symmetrically disposed with a pair of arcuate stops 5304 extending upward from the upper surface thereof.
  • the outer edge of the face ring 530 extends downward to form a pair of second fastening portions 5305 which are snap-fitted with the locking portions 126 of the side walls 122 of the bracket 1 to assemble the combined lens device 52 to Bracket 1.
  • the light source panel 51 forms a plurality of positioning holes (not shown) of different sizes in the vicinity of each set of LED bead 50, and the positioning posts 5306 are respectively incorporated into the positioning holes of corresponding sizes to prevent the combined lens device 52 from being misassembled.
  • the positioning post 5306 and the positioning hole are circular, but in other preferred embodiments, it may also be a polygonal shape or the like, and as long as the size or shape is inconsistent, the purpose of preventing misassembly can be achieved.
  • the combined lens assembly 52' includes a lens 54' and a lens holder 53'.
  • Lens 54' is an RGB three lens for use in dimming applications. However, in other preferred embodiments, the lens 54' can also have other numbers to meet different requirements and applications.
  • the lens holder 53' matched with the lens 54' differs from the lens holder 53 in that an RGB three lens for fitting the lens 54'
  • the bottom wall 533' of the structure is provided with three openings 5330' for the lower end of the lens to pass through to cover the corresponding LED lamp bead 50.
  • the lens holder 53' is symmetrically provided with two pairs of second hook portions 5305' corresponding to the hooking portions 126 of the bracket 1. A structure similar or identical to that of the combined lens device 52 will not be described here.
  • the optical mask 2 is made of glass. In other preferred embodiments, the optical mask 2 can also be made of other high light transmissive materials or other materials that can make the emitted light uniform. After being assembled to the stent 1, the surface of the optical mask 2 facing the LED optical film group 3 is coated with a black coating, and only the corresponding group is retained.
  • the combined lens device 52, 52' is designed to achieve rapid and efficient assembly with the bracket 1 and the light source panel 51 by a snap-type design, and the efficiency is greatly improved.
  • the cooperation of the positioning post and the positioning hole effectively prevents the mismatch from occurring.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种线性灯,其包括支架(1)、组装于支架(1)的光学面罩(2)、LED光学模组(5)、及驱动电源模组(3)。支架(1)与光学面罩(2)共同形成有收容空间(6),所述LED光学模组(5)收容于该收容空间(6)内且其光线经由光学面罩(2)出射。还包括沿支架(1)的长度方向滑动组装于支架(1)横向两侧的一对导轨(4),其中驱动电源模组(3)沿与导轨(4)的滑动方向垂直的方向组装于导轨(4)从而组装于支架(1)外侧。

Description

一种线性灯 技术领域
本发明涉及一种灯具,尤其指一种线性灯。
技术背景
线性灯,作为灯具的一个种类,应用很广泛,如室内装饰照明、商业产品照明、户外洗墙灯、户外投光灯等,都属于线性灯的应用范围。
洗墙灯,作为线性灯的一种,顾名思义,让灯光像水一样洗过墙面,主要用来做建筑装饰照明之用,还用来勾勒大型建筑的轮廓。LED是英文Light Emitting Diode的缩写,即发光二极管,是一种半导体固体发光器件,具有发光效率高,耗电少,使用寿命长,发光亮度高等特点。由于LED具有以上特点,所以目前正逐渐取代其他类型的光源,成为现代灯具的主用光源。
由于洗墙灯等线性灯通常安装于建筑外面,并具有一定的长度形成线性结构,因此其电源的安装一直是困扰业界的技术问题,也是业界一直关注并致力于解决的技术问题。申请人在此提供一种快速安装电源的解决方案。
发明概要
本发明的目的在于提供一种线性灯,其安全可靠,安装便捷。
为了实现上述目的,本发明采用如下技术方案:一种线性灯,其包括支架、组装于支架的光学面罩、LED光学模组、及驱动电源模组。支架与光学面罩共同形成有收容空间,所述LED光学模组收容于该收容空间内且其光线经由光学面罩出射。还包括沿支架的长度方向滑动组装于支架横向两侧的一对导轨,其中驱动电源模组沿与导轨的滑动方 向垂直的方向组装于导轨从而组装于支架外侧。
优选地,还包括紧固件,其沿所述驱动电源模组与导轨的安装方向垂直的方向固定驱动电源模组于导轨及支架。
优选地,所述紧固件为螺钉,所述驱动电源模组及导轨对应设置有安装螺孔供螺钉锁合连接。
优选地,还包括紧定螺钉,穿过导轨并抵顶于滑轨所安装的支架的侧壁。
优选地,所述导轨分别滑动组装于支架的一对侧壁,其中线性灯还包括紧定螺钉,其分别穿过驱动电源模组及导轨并抵顶于支架的侧壁。
优选地,所述驱动电源模组包括收容有驱动电源的壳体及组装于壳体两端的盖体,其中壳体包括顶壁、与顶壁相连的一对侧壁,其中两侧壁延伸超出顶壁并形成结合部,该结合部分别贴设于支架外侧并与导轨机械连接。
优选地,所述支架具有一对侧壁,每一侧壁沿其长度方向开设有开口向外的轨道,其中导轨包括收容于轨道内的基部及自基部上端延伸超出轨道的抵止部。
优选地,所述驱动电源模组的结合部上端缘形成有与导轨的抵止部形状匹配的端部,其抵顶于抵止部下方以限位驱动电源模组的安装位置。
优选地,所述驱动电源模组的盖体延伸形成有位于壳体两侧壁之间的定位部,其中支架具有底壁,该底壁开设有空腔,上述定位延伸进入该空腔内并位于空腔的两端以定位驱动电源模组的安装位置。
优选地,所述驱动电源模组具有与驱动电源两端分别连接的两根电源线,其中一个电源线自驱动电源延伸出后延伸进入支架内与LED光学模组形成电性连接。
优选地,所述支架具有底壁,该底壁开设有位于导轨安装区域内的通孔,所述延伸进入支架内与LED光学模组形成电性连接的电源线自该通孔进入支架内。
优选地,所述LED光学模组包括光源板、间隔设置于光源板的LED灯珠及罩设于对应LED灯珠上方的组合透镜装置,其中,组合透镜装置分别与透镜及支架卡扣配合。
相较于现有技术,本发明线性灯采用直下式安装的驱动电源模组,简化了结构,提高了安装效率。
附图说明
图1为符合本发明优选实施方式的线性灯的立体组装图;
图2为图1所示的线性灯的部分立体分解图(设置有端盖);
图3为图1所示的线性灯沿线A-A方向的剖视图;
图4为图1所示的线性灯沿线B-B方向的剖视图;
图5为符合本发明优选实施方式的线性灯的导轨的立体视图;
图6为符合本发明优选实施方式的线性灯的支架及LED光源模组的立体组装图;
图7为符合本发明优选实施方式的线性灯的支架的立体视图;
图8为符合本发明优选实施方式的线性灯的组合透镜装置的立体视图;
图9为图8所示的组合透镜装置的立体分解图;
图10为符合本发明又一实施方式的组合透镜装置的立体视图;
图11为图10所示的组合透镜装置的立体分解图。
发明内容
请参阅图1及图2所示,符合本发明优选实施方式的线性灯100包括支架1、与支架1组配的光学面罩2、LED光源模组5、一对导轨4及驱动电源模组3。
继续参阅图3至图7,支架1与光学面罩2组配后形成收容空间6,上述LED光源 模组5收容于该收容空间6内。导轨4滑动组装于支架1,而驱动电源模组3直下式组装于导轨4并与导轨4机械连接。该驱动电源模组3与LED光源模组5形成电性连接,为LED光源模组5提供电力。
支架1由导热性能良好的金属材质制成,通常为铝或铝合金,如此可以将LED光源模组5产生的热量及时导出线性灯100,保持良好的工作性能。支架1为纵长构型,其沿线性灯100的长度方向延伸,并具有两端部11。完成组装后,支架1的端部11及光学面罩2的端部组配有一对端盖9用于密封上述收容空间6。从其端部11方向看去,支架1包括呈U形的框架式主体部12。主体部12由一对大致平行的侧壁121及大致水平的底壁122组成,并共同界定有开口向上的空间123。当光学面罩2组设于主体部12后,该空间被光学面罩2封闭并形成上述收容空间6。为了提供光学面罩2的安装,自上述两侧壁121的中部相向延伸形成有L形支撑部13,其同时沿纵长方向延伸贯穿支架1的整体长度。光学面罩2自上而下放入上述空间并位于一对侧壁121之间,同时受到支撑部13的支撑。组装后,光学面罩2的上表面与侧壁121的顶部平齐。为了固定光学面罩2,支撑部13与侧壁121之间的空间内预先涂覆有胶(未图示),可以与组装后的光学面罩2粘合。
上述一对侧壁121的外部下方,分别沿其长度方向开设有供导轨4滑动的轨道124。该轨道124呈倒置的T型,其自侧壁121向内延伸,且位于侧壁121的开口1241尺寸小于位于侧壁121内侧的收容槽1242的尺寸。每一侧壁121的内表面,位于支撑部13的下方,向空间123内突伸形成有卡扣部126,其同样沿支架1的长度方向延伸。若干肋条状散热翅片125环绕侧壁121与底壁122交界处及底壁122下方并于支架1的两端部11之间延伸形成。支架1的底壁122的底部中间位置,部分散热翅片125中断并形成位于两部分散热翅片125之间且开口向下的空腔127。空腔127底壁开设有通孔1270,其用 于供驱动电源模组3的电源线3及电连接器(未图示)穿过,以便与LED光源模组5电性连接。此外,为了对线性灯100进行固定,支架1底壁122分别设置有一对固定支架8,其可以安装于其他安装基础,如地面、墙壁等。该固定支架8可以与支架1一体成型或组装于支架1的底壁122。于本发明优选实施方式中,该固定支架8与支架1为组装关系。
导轨4滑动组设于支架1的轨道124内。导轨4包括大致呈倒置T形的基部41及自基部41上端缘向外延伸形成的L形抵止部42。基部41包括大致呈矩形的第一部分410及自第一部分410中部延伸形成的第二部分412。第一部分410与第二部分412分别收容于支架1的轨道124的收容槽1242及开口1241内,并可相对其滑动。上述抵止部42自第二部分412的上端缘向外延伸超出支架2的侧壁121外,且其上表面与基部41的第一部分410的上表面平齐。自基部41的第二部分412的外表面向内延伸设置有一对安装螺孔4121及位于该对安装螺孔4121外侧的一对紧定螺孔4122。一对螺钉7穿过驱动电源模组3及安装螺孔4121以在驱动电源模组3与导轨4之间形成机械固定连接。一对紧定螺钉(未图示)则穿过紧定螺孔4122并抵顶于支架1的轨道124侧面以固定导轨4与支架1之间的位置关系,防止导轨4滑动到位后沿支架1长度方向相对于支架1的位移。
驱动电源模组3包括壳体31、收容于壳体31内的驱动电源(未图示)、与驱动电源电性连接的电源线33及封闭壳体31两端的盖体34。壳体31具有弧形顶壁311、平板状底壁312及连接顶壁311及底壁312的一对侧壁313,侧壁313延伸超出顶壁311并形成为与导轨4结合的结合部3130。该结合部3130顶部形成为与导轨4的抵止部42形状匹配的L型端部3132,其与抵止部42匹配并位于抵止部42下方,从而定位驱动电源模组3的安装位置。结合部3130侧面形成有一对安装螺孔3133,其与导轨4的安装螺孔4121对正,螺钉7依次穿过安装螺孔3133、4121将导轨4与驱动电源模组3锁合。结合部3130侧面还开设有位于安装螺孔3133外侧的紧定螺孔3134,其与导轨4的紧定螺孔4122对 正,紧定螺钉分别穿过紧定螺孔3134、4122并抵顶于支架1的轨道124的侧面以固定导轨4的位置。盖体34贴近壳体31两端的一侧向上延伸形成有片状定位部341,当结合部3130包覆于支架1横向两侧与导轨4机械连接时,壳体31的顶壁311及盖体34的上表面抵顶贴设于支架1的底壁122,此时该对定位部341分别延伸进入空腔127内,并与空腔127两端壁配合以定位驱动电源模组3的安装位置。驱动电源模组3内设置的驱动电源(未图示)两端分别与电源线33电性连接,其中一根电源线33自顶壁311穿设而出,并于其另一端设置有电连接器(未图示)。电源线3设置有电连接器的一端穿过支架2底壁122底部的通孔1270,从而与LED光源模组5的光源板51形成电性连接。之后,驱动电源模组3自下而上直接安装于导轨4,并通过螺钉7和紧定螺钉形成可靠的连接。由于导轨4与驱动电源模组3分离设置,因此导轨4可以预先滑动至支架1相应的位置,而驱动电源模组3可以沿垂直于导轨4的滑动方向的方向,即上下方向,直接安装至导轨4。这种设计,避免于驱动电源模组3与LED光源模组5相连的一端设置过长的电源线3,从而可以简化结构,并减少占用空间。另一根电源线33延伸出驱动电源模组5外,并与外部电源连接以进行电力传输。
结合图4、图8及图9所示,符合本发明优选实施方式的LED光源模组5包括间隔设置有若干LED灯珠50的光源板51、及间隔罩设于LED灯珠50上方的若干组合透镜装置52。组合透镜装置52包括透镜支架53及收容于透镜支架53内的透镜54。透镜54罩设于LED灯珠50上方,透镜支架53定位于光源板51上并卡扣组配于支架1。
作为本发明的优选实施方式,透镜54为单透镜,呈锥形,其上部具有圆形边缘540及自该边缘540进一步向外突伸延伸形成的定位部541。
与透镜54匹配的透镜支架53结构如下:透镜支架53具有圆环状主体部531及自主体部531上端缘向外扩展形成的面环530。主体部531具有周壁532及设置于周壁532 下端缘的底壁533。周壁532与底壁533共同围设形成收容透镜54的收容腔534。底壁533中央开设有开孔5330,透镜54下端延伸进入该开孔5330并罩设于对应的LED灯珠50上方。面环530与周壁532的上端缘相连,其内边缘间隔凹设有三个凹槽5301,每一凹槽5301内向上突伸形成有面向收容腔534的带有扣勾的第一卡扣部5302。当透镜54收容于收容腔534后,第一卡扣部5302卡扣于透镜54的边缘540上方。于其中两个第一卡扣部5302之间,面环530凹设形成有定位槽5303,透镜54于其边缘540向外突伸对应形成有定位部541,因此该定位部541与定位槽5303配合以正确安装透镜54于透镜支架53。于其他优选实施方式中,定位部与定位槽的位置可以互换,如定位部自面环530内边缘向收容腔534内突伸形成,而透镜54凹设形成有收容该定位部的定位槽。面环530对称设置有自其上表面向上延伸的一对弧形挡块5304,当LED光源模组5组装于支架1且光学面罩2放置于支架1后,光学面罩2的下表面压在挡块5304上,以更好的固定组合透镜装置52。对应挡块5304的位置,面环530外边缘向下延伸形成有一对第二卡扣部5305,其与支架1的侧壁122的卡扣部126卡扣配合以将组合透镜装置52组配于支架1。临近每一第二卡扣部5305,面环530下表面设置有尺寸不同的一对定位柱5306。光源板51于每一组LED灯珠50附近形成尺寸大小不同的一组定位孔(未图示),定位柱5306分别组入对应尺寸的定位孔内,以防止组合透镜装置52被误装配。于本发明优选实施方式中,定位柱5306与定位孔为圆形,然而于其他优选实施方式中,其还可以是多边形等形状,只要符合尺寸或形状不一致,即可实现防止误装配的目的。
作为本发明的又一优选实施方式,请参阅图10至图11并结合图4,组合透镜装置52’包括透镜54’及透镜支架53’。透镜54’为RGB三透镜,用于调光应用环境下。然而,于其他优选实施方式中,透镜54’还可以具有其他数目以符合不同的要求及应用。与该透镜54’匹配的透镜支架53’与透镜支架53的区别在于:为了配合透镜54’的RGB三透镜 结构,其底壁533’开设有三个开孔5330’供透镜下端穿过以便罩设于对应的LED灯珠50。该透镜支架53’对称设置有对应支架1的卡扣部126的两对第二卡扣部5305’。与组合透镜装置52类似或相同的结构,在此不再敷述。
于本发明优选实施方式中,光学面罩2为玻璃制成,于其他优选实施方式中,光学面罩2还可以由其他高透光材质或可使出射光线均匀的其他材质制成。在组装于支架1后,光学面罩2面对LED光学膜组3的表面会涂覆黑色涂层,仅保留对应每一组
该组合透镜装置52、52’通过卡扣式的结构设计,实现了与支架1及光源板51之间的快速高效组装,效率大大提升。定位柱和定位孔的配合,又有效防止了误配的发生。
应当注意的是,本发明的实施例有较佳的实施性,且并非对本发明作任何形式的限制,任何熟悉该领域的技术人员可能利用上述揭示的技术内容变更或修饰为等同的有效实施例,但凡未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何修改或等同变化及修饰,均仍属于本发明技术方案的范围内。

Claims (12)

  1. 一种线性灯,其包括:支架、组装于支架的光学面罩、LED光学模组、及驱动电源模组,其中支架与光学面罩共同形成有收容空间,所述LED光学模组收容于该收容空间内且其光线经由光学面罩出射;其特征在于:还包括沿支架的长度方向滑动组装于支架横向两侧的一对导轨,其中驱动电源模组沿与导轨的滑动方向垂直的方向组装于导轨从而组装于支架外侧。
  2. 如权利要求1所述的线性灯,其特征在于:还包括紧固件,其沿所述驱动电源模组与导轨的安装方向垂直的方向固定驱动电源模组于导轨及支架。
  3. 如权利要求2所述的线性灯,其特征在于:所述紧固件为螺钉,所述驱动电源模组及导轨对应设置有安装螺孔供螺钉锁合连接。
  4. 如权利要求2所述的线性灯,其特征在于:还包括紧定螺钉,穿过导轨并抵顶于滑轨所安装的支架的侧壁。
  5. 如权利要求1所述的线性灯,其特征在于:所述导轨分别滑动组装于支架的一对侧壁,其中线性灯还包括紧定螺钉,其分别穿过驱动电源模组及导轨并抵顶于支架的侧壁。
  6. 如权利要求1所述的线性灯,其特征在于:所述驱动电源模组包括收容有驱动电源的壳体及组装于壳体两端的盖体,其中壳体包括顶壁、与顶壁相连的一对侧壁,其中两侧壁延伸超出顶壁并形成结合部,该结合部分别贴设于支架外侧并与导轨机械连接。
  7. 如权利要求6所述的线性灯,其特征在于:所述支架具有一对侧壁,每一侧壁沿其长度方向开设有开口向外的轨道,其中导轨包括收容于轨道内的基部及自基部上端延伸超出轨道的抵止部。
  8. 如权利要求7所述的线性灯,其特征在于:所述驱动电源模组的结合部上端缘形成有与导轨的抵止部形状匹配的端部,其抵顶于抵止部下方以限位驱动电源模组的安装 位置。
  9. 如权利要求6所述的线性灯,其特征在于:所述驱动电源模组的盖体延伸形成有位于壳体两侧壁之间的定位部,其中支架具有底壁,该底壁开设有空腔,上述定位延伸进入该空腔内并位于空腔的两端以定位驱动电源模组的安装位置。
  10. 如权利要求1所述的线性灯,其特征在于:所述驱动电源模组具有与驱动电源两端分别连接的两根电源线,其中一个电源线自驱动电源延伸出后延伸进入支架内与LED光学模组形成电性连接。
  11. 如权利要求10所述的线性灯,其特征在于:所述支架具有底壁,该底壁开设有位于导轨安装区域内的通孔,所述延伸进入支架内与LED光学模组形成电性连接的电源线自该通孔进入支架内。
  12. 如权利要求1所述的线性灯,其特征在于:所述LED光学模组包括光源板、间隔设置于光源板的LED灯珠及罩设于对应LED灯珠上方的组合透镜装置,其中,组合透镜装置分别与透镜及支架卡扣配合。
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CN110185975A (zh) * 2019-06-28 2019-08-30 商洛市虎之翼科技有限公司 导轨照明灯具及具有该导轨照明灯具的照明系统
CN110185975B (zh) * 2019-06-28 2024-03-19 商洛市虎之翼科技有限公司 导轨照明灯具及具有该导轨照明灯具的照明系统

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