WO2015180626A1 - 一种多功能模组式灯 - Google Patents

一种多功能模组式灯 Download PDF

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Publication number
WO2015180626A1
WO2015180626A1 PCT/CN2015/079833 CN2015079833W WO2015180626A1 WO 2015180626 A1 WO2015180626 A1 WO 2015180626A1 CN 2015079833 W CN2015079833 W CN 2015079833W WO 2015180626 A1 WO2015180626 A1 WO 2015180626A1
Authority
WO
WIPO (PCT)
Prior art keywords
light
module
led
emitting module
supporting
Prior art date
Application number
PCT/CN2015/079833
Other languages
English (en)
French (fr)
Inventor
叶博森
Original Assignee
盛龙照明(香港)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
Application filed by 盛龙照明(香港)有限公司 filed Critical 盛龙照明(香港)有限公司
Priority to EP15799363.5A priority Critical patent/EP3153764A4/en
Publication of WO2015180626A1 publication Critical patent/WO2015180626A1/zh
Priority to US15/207,479 priority patent/US9732919B2/en
Priority to HK17105140.9A priority patent/HK1231540A1/zh
Priority to US15/663,862 priority patent/US9927078B2/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • F21S2/005Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction of modular construction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • 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
    • F21V21/14Adjustable mountings
    • 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
    • F21V21/14Adjustable mountings
    • F21V21/30Pivoted housings or frames
    • 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
    • F21V23/003Arrangement of electric circuit elements in or on lighting devices the elements being electronics drivers or controllers for operating the light source, e.g. for a LED array
    • F21V23/007Arrangement of electric circuit elements in or on lighting devices the elements being electronics drivers or controllers for operating the light source, e.g. for a LED array enclosed in a casing
    • F21V23/008Arrangement of electric circuit elements in or on lighting devices the elements being electronics drivers or controllers for operating the light source, e.g. for a LED array enclosed in a casing the casing being outside the housing of the lighting device
    • 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
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/74Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades
    • F21V29/76Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades with essentially identical parallel planar fins or blades, e.g. with comb-like cross-section
    • 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
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/74Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades
    • F21V29/76Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades with essentially identical parallel planar fins or blades, e.g. with comb-like cross-section
    • F21V29/763Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades with essentially identical parallel planar fins or blades, e.g. with comb-like cross-section the planes containing the fins or blades having the direction of the light emitting axis
    • 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
    • F21V3/00Globes; Bowls; Cover glasses
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21WINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
    • F21W2131/00Use or application of lighting devices or systems not provided for in codes F21W2102/00-F21W2121/00
    • F21W2131/10Outdoor lighting
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]

Definitions

  • the present application relates to the technical field of lighting fixtures, and particularly relates to a multifunctional modular lamp that can be combined arbitrarily.
  • LED lights gradually replace traditional incandescent lamps and halogen lamps.
  • LED lamps have many advantages, so producers are committed to developing LED lamps. Especially for outdoor lighting, because of the large area required for irradiation, the light source is wide. If the traditional lighting is used, the LED lighting is already the current development trend.
  • LED lamps have certain advantages as illumination lamps, they also have some problems to be overcome:
  • the housing of the product can only be used to produce lamps in a specific power range. If a series of products need to be developed, it is necessary to design a variety of different housings, which is expensive to develop.
  • the heat is large. If the heat is not conducted in time, it is easy to cause the heat of the lamp to overheat, which will affect the normal operation of the lamp. At the same time, the thermal expansion and contraction will be caused, resulting in problems in product sealing and leakage.
  • the projection area and the projection angle, the traditional LED light structure is the overall design, can not be arbitrarily combined
  • the uniform size of the illumination lamps obviously cannot meet the needs of modern society.
  • LED street lamps as the main road, it requires the brightness and spokes of the outdoor lamps.
  • the area of the photo is generally large, and for some pedestrian paths, the brightness and irradiation area of the outdoor luminaires are relatively small, but the street lamps with different design specifications need to be designed, develop different molds, and design different circuits. Structure, which increases manufacturing costs, as different luminaires will require different production dies and assembly components.
  • the present application proposes a combined multi-function modular lamp.
  • the technical problem to be solved by the present application is to overcome the deficiencies of the prior art and provide a multifunctional modular lamp.
  • a multifunctional modular lamp comprising: a light emitting module and a supporting component, wherein the light emitting module is composed of at least one LED module, and multiple LEDs
  • the support modules are connected by a connecting component.
  • the support component comprises: a support frame and a positioning component.
  • the support frame is mounted on the light-emitting module by an angle-adjustable manner through the positioning component, and the support frame has a mounting leg connected to the light-emitting module.
  • the supporting surface of the two mounting legs is connected.
  • the supporting surface (212) of the first embodiment and the second embodiment is a plane.
  • the third and fourth supporting surfaces (212) are a sloped surface, and the light emitting module is fixed on the plane through the supporting surface.
  • the LED module includes: a heat sink, a transparent cover fixed on the heat sink, a driving device, and an LED light board, wherein the heat sink includes a mounting surface and is formed and mounted On the surface of the heat dissipating fin, the translucent cover is mounted with a reflector for meeting the needs of different angles of light distribution.
  • the light-emitting module is composed of a single LED module, and the support frame is spanned on the heat sink of the LED module, and the two mounting legs of the support frame pass through the positioning component.
  • the angle can be adjusted to be mounted on the heat sink fins on both sides of the heat sink.
  • the light-emitting module is composed of a plurality of LED modules connected in parallel on a horizontal surface, and the horizontally connected LED modules are connected by a connection component, and the vertically connected LED modules are installed through Connect the drive on the heat sink.
  • the connecting component is a connecting rod, and the connecting rod is fixed on the outermost heat radiating fin of the heat sink by bolts; the two ends of the driving device are respectively connected to the LED module through the connecting component On the heat dissipating fins, the LED modules are connected at a certain angle through the connecting rods.
  • the positioning component comprises: a positioning disk fixed on the upper surface of the light emitting module and provided with a positioning groove.
  • the support frame is mounted on the heat dissipation fins of the LED module, the positioning disk is fixed on the heat dissipation fins, and the support legs of the support frame are fixed on the heat dissipation fins by bolts.
  • the support frame is mounted on a corresponding link, and the positioning plate is fixed on the connecting rod, and the support leg of the support frame is fixed to the connecting rod by bolts.
  • the support surface of the support frame is provided with a mounting hole, and is fixed to the horizontal surface by the upper screw.
  • the unit is modularized to break the power limitation of a casing of a conventional lamp.
  • designing a housing can often only be done with a specific range of power. Therefore, the development of a series of lamps requires a variety of housing designs, and the development cost is quite expensive.
  • the present application adopts a modular design structure, and the light-emitting module can be composed of a plurality of independent LED modules connected by connecting members, which can be according to the environment. The need to select the right number of LED modules, so that different specifications of the lamps can be formed to suit different practical environments.
  • This modular design structure not only saves product cost, but also facilitates disassembly and assembly of each module, saving energy and maintenance costs.
  • the light distribution curve and projection angle can be adjusted.
  • a luminaire product usually has only one light distribution curve and projection angle.
  • Some fixtures can adjust the projection angle through the support frame, but a product can only have one light distribution curve.
  • Different places of illumination require a variety of different light distributions. This leads to great inconvenience in lighting design.
  • the innovation of the multi-function module lamp in this application is that each module has an angular positioning adjustment within a certain range.
  • the support frame and the connecting component both have an angle adjustment function, and the support frame is mounted on the light-emitting component through the support component in an adjustable angle manner, and the LED module is connected through the connecting rod to adjust the projection angle of each module on the whole lamp.
  • a luminaire can have a variety of light distribution curves, coupled with the projection angle adjustment on the support frame, so that one product can meet the lighting needs of different places, greatly simplifying the lighting design.
  • the innovation of the multi-function module lamp of the present application lies in the unique combination of the light-emitting module and the power module unit, which greatly reduces the volume and weight of the lamp, facilitates the installation, reduces the volume and weight, and the external force is relatively Reduced, the safety hazard is also relatively reduced.
  • Modular design reduces maintenance costs.
  • Conventional luminaire products the whole lamp seal design, often a part of the breakdown, the whole lamp needs to be disassembled and maintained, and the maintenance cost is very expensive.
  • the innovation of the multifunctional module lamp of the present application is that the lighting module and the power module are modularized, and which part is broken, and only need to be easily disassembled and assembled on the link component, the bad module can be replaced, and the whole lamp does not need to be disassembled. Maintenance, greatly reducing maintenance costs.
  • This application can be used to meet different outdoor places: advertising lighting, regional lighting, sports venue lighting, architectural key lighting, road lighting and many other outdoor places.
  • Figure 1 is a front elevational view of the first embodiment of the present application
  • Figure 2 is a plan view of the first embodiment of the present application.
  • Figure 3 is a perspective view of the first embodiment of the present application.
  • Figure 4 is a side view of the second embodiment of the present application.
  • Figure 5 is a perspective view of the second embodiment of the present application.
  • Figure 6 is a plan view of the third embodiment of the present application.
  • Figure 7 is a perspective view of the third embodiment of the present application.
  • Figure 8 is a plan view of the fourth embodiment of the present application.
  • Figure 9 is a perspective view of the fourth embodiment of the present application.
  • Figure 10A is a perspective view of the support assembly of the first embodiment and the second embodiment of the present application.
  • Figure 10B is a perspective view of the support assembly of the third and fourth embodiments of the present application.
  • FIGS. 11A-11B are schematic views of illumination angles in the present application.
  • 12A-12B are schematic illustrations of illumination ranges in this application.
  • Support assembly 21 Support frame 211 Mounting feet
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • a multifunctional modular lamp includes: a light-emitting module 1 and a support assembly 2.
  • the light emitting module 1 is an independent LED module 10
  • the LED module 10 includes a heat sink 11, a light transmissive cover 12 fixed to the heat sink 11, a driving device 13, and an LED light panel.
  • the translucent cover 12 is mounted with a reflector that meets the needs of light distribution at different angles.
  • the support assembly 2 includes a support frame 21 and a positioning assembly 22.
  • the support frame 21 is mounted on the LED module 10 in an angle-adjustable manner by the positioning assembly 22.
  • the support frame 21 has a mounting leg 211 for connecting the LED module 10. And a supporting surface 212 connecting the two mounting legs, the supporting surface 212 is an inclined surface, and the LED module 10 is fixed on the plane through the supporting surface 212.
  • the heat sink 11 includes a mounting surface and heat dissipating fins 111 formed on the mounting surface.
  • the support frame 21 is mounted on the heat sink 11 of the LED module 10 through the positioning assembly 22 .
  • the support surface 212 of the support frame 21 is in close contact with the plane, and the screw passes through the mounting hole 213 on the support surface 212 to fix the LED module 10 to the plane through the support frame 21.
  • the angle between the LED module 10 and the support frame 21 is adjusted in accordance with the area to be illuminated.
  • the LED module 10 is rotated upward, so that the angle between the LED module 10 and the horizontal plane is gradually increased, and the illumination angle of the LED module 10 is adjusted to make the LED module 10 illuminate.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • a multifunctional modular lamp includes: a light-emitting module 1 and a support assembly 2.
  • the light-emitting module 1 is composed of a plurality of independent LED modules 10, wherein the LED modules 10 are disposed in two, and the two LED modules 10 are connected by a connection component.
  • the LED module 10 includes a heat sink 11, a translucent cover 12 fixed on the heat sink 11, a driving device 13, and an LED lamp board.
  • the translucent cover 12 is mounted with a reflector that meets the needs of light distribution at different angles.
  • the support assembly 2 includes a support frame 21 and a positioning assembly 22.
  • the support frame 21 is mounted on the LED module 10 in an angle-adjustable manner by the positioning assembly 22.
  • the support frame 21 has a mounting leg 211 for connecting the LED module 10. And a supporting surface 212 connecting the two mounting legs, the supporting surface 212 is a tilting plane, and the LED module 10 is fixed on the plane through the supporting surface 212.
  • the heat sink 11 includes a mounting surface and heat dissipation fins 111 formed on the mounting surface, and heat dissipation channels are formed between the heat dissipation fins 111.
  • the two LED modules 10 are connected to each other, and corresponding heat dissipation channels are formed.
  • the pieces are connected to each other.
  • the connecting component 3 is a connecting rod, and the outermost heat radiating fins 111 of the two LED modules 10 are connected by a connecting rod, and the connecting rod is fixed on the heat radiating fin 111 by bolts, and can be connected through a connecting rod according to different use needs.
  • the LED modules 10 are connected at a certain angle within a certain range.
  • the support frame 21 is mounted to the links on both sides of the light-emitting assembly 1 by the positioning assembly 22.
  • the support surface 212 of the support frame 21 is in close contact with the plane, and the screw passes through the mounting hole 213 on the support surface 212 to fix the LED module 10 to the plane through the support frame 21.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • a multifunctional modular lamp includes: a light-emitting module 1 and a support assembly 2.
  • the light-emitting module 1 is composed of a plurality of independent LED modules 10, wherein the LED modules 10 are arranged in four, and the four LED modules 10 are arranged in two rows and two columns, and are horizontally connected.
  • the LED modules 10 are connected by a connection assembly 3, and the vertically connected LED modules 10 are connected by a driving device 13 mounted on the heat sink 11.
  • Embodiment 4 is a diagrammatic representation of Embodiment 4:
  • a multifunctional modular lamp includes: a light-emitting module 1 and a support assembly 2.
  • the light-emitting module 1 is composed of a plurality of independent LED modules 10, wherein the LED modules 10 are arranged in six, and the six LED modules 10 are arranged in two rows and three columns, and are horizontally connected.
  • the LED modules 10 are connected by a connection assembly 3, and the vertically connected LED modules 10 are connected by a driving device 13 mounted on the heat sink 11.
  • the LED module 10 includes a heat sink 11, a light transmissive cover 12 fixed to the heat sink 11, a driving device 13, and an LED light panel.
  • the heat sink 11 includes a mounting surface and heat dissipating fins 111 formed on the mounting surface.
  • the heat dissipating fins 111 form a heat dissipating passage therebetween, and the corresponding heat dissipating passages between the LED modules 10 arranged in a row are in communication with each other.
  • the connecting component 3 is a connecting rod, and a plurality of laterally arranged through the connecting rod 3
  • the LED module 10 is connected, the connecting rod is connected to the outermost heat radiating fin 111 of the LED module 10, and the connecting rod is fixed on the heat radiating fin by bolts, and the LED module 10 can be connected through the connecting rod according to different use requirements. Connected at a certain angle within a certain range.
  • the vertically connected LED modules 10 are connected by a driving device 13 mounted on the heat sink 11. Both ends of the driving device 13 are respectively connected to the heat dissipating fins 111 of the two vertically arranged LED modules 10 through the connecting members, so that the two vertically connected LED modules 10 are fixed.
  • the links on both sides of the light-emitting assembly 1 are correspondingly connected by a connecting piece 214, and the support frame 21 is mounted on the connecting piece 214.
  • the positioning component 22 includes a positioning plate 221 fixed to the upper surface of the light-emitting module 1 and provided with a positioning groove 222.
  • the support frame 21 is disposed on the connecting rods of the two sides of the light-emitting module 1.
  • the positioning plate 221 is fixed on the connecting rod piece 214, and the supporting legs 211 of the supporting frame 21 are fixed to the connecting rod piece 214 by bolts.
  • a mounting hole 213 is defined in the supporting surface 212 of the support frame 21, and is fixed to a horizontal surface by an upper screw.
  • the application is suitable for different outdoor places, not only the above-mentioned architectural key lighting, but also can be used for indoor lighting, advertising lighting, regional lighting, sports venue lighting, road lighting and many other outdoor places.
  • the above-mentioned light-emitting module 1 can be connected by any number of LED modules 10, and the horizontally connected LED modules 10 are connected by a connecting rod during connection, and the vertically connected LED modules 10 are connected and fixed by the driving device 13 and connected.
  • at least one support frame 21 is disposed on the light-emitting module 1.
  • the position of the support frame 21 should be installed as far as possible to ensure that the entire light-emitting module 1 is balanced.
  • the number of LED modules constituting the light-emitting module 1 is different, and the illumination range of the light-emitting module 1 is different.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Fastening Of Light Sources Or Lamp Holders (AREA)

Abstract

一种多功能模组式灯,包括发光模组(1)和支撑组件(2)。发光模组(1)由至少一个LED模组(10)构成,多个LED模组(10)间通过连接组件(3)连接。支撑组件(2)包括支撑架(21)以及定位组件(22),支撑架(21)通过定位组件(22)以角度可调的方式安装于发光模组(1)上,支撑架(21)具有连接发光模组(1)的安装脚(211)以及连接两安装脚(211)的支撑面(212)。支撑面(212)为平面或倾斜面,发光模组(1)通过支撑面(212)固定于平面上。这种多功能模组式灯采用单元模块化设计结构,突破了常规灯具只有一个壳体的功率限制。发光模组(1)可由多个独立的LED模组(10)通过连接组件(3)连接组成,可以根据户外环境的需求选择适当数量的LED模组(10),以适应不同的环境。支撑架(21)以角度可调的方式安装在发光模组(1)上,可以根据不同的使用需要调节照射范围,满足不同的使用需求。

Description

一种多功能模组式灯
技术领域:
本申请涉及照明灯具技术领域,特指一种可任意组合的多功能模组式灯。
背景技术:
随着LED技术的不断发展,LED灯逐步取代传统的白炽灯、卤素灯。LED灯具有诸多的优点,所以生产者都致力于开发LED灯具。特别针对户外灯具,由于其需要辐照的面积大,光源面广,如果使用传统的灯具能耗很高,所以采用LED制作照明灯已经是目前的发展趋势。
虽然LED灯作为照明灯具有一定的优势,其自身也存在一些需要克服的问题:
1、 产品设计麻烦,目前常规的LED灯具产品通常采用一对一的设计,即一
款产品的壳体只能制作特定功率范围内的灯具,如果需要开发一系列产品,就需要设计多款不同的壳体,开发费用昂贵。
2、 散热问题,由于LED灯具均采用大功率的LED灯盘作为发光源,其产生
的热量较大,如果不将热量及时传导出去,很容易导致灯具的热量过热,从而影响灯具的正常工作,同时将引发产生的热胀冷缩,导致产品密封出现问题,形成漏水。
3、 投射区域及投射角度,传统的LED灯结构都是整体设计,不可任意组合,
由于不同的环境下照明灯需要照射的角度和区域大小并不一致,统一规格的照明灯明显不能满足现代社会的使用需要,例如,使用LED路灯时,作为主干道,其要求户外灯具的亮度和辐照面积一般都较大,而对于一些人行小道,其要求户外灯具的亮度和辐照面积相对较小,但是设计规格不一的路灯则需要进行新的设计,开发不同的模具,设计不同的电路结构,这样增加制造成本,因为不同规格的灯具将需要不同的生产模具以及装配部件。
针对上述问题,本申请提出一种组合式的多功能模组式灯。
申请内容:
本申请所要解决的技术问题就在于克服现有技术的不足,提供一种多功能模组式灯。
为了解决上述技术问题,本申请采用了下述技术方案:一种多功能模组式灯,包括:发光模组和支撑组件,所述的发光模组由至少一个LED模组构成,多个LED模组间通过连接组件连接;所述的支撑组件包括:支撑架以及定位组件,支撑架通过定位组件以可调整角度的方式安装于发光模组上,支撑架具有连接发光模组的安装脚以及连接两安装脚的支撑面,实施实例一、二该支撑面(212)为一平面,实例三、四该支撑面(212)为一斜面,发光模组通过该支撑面固定于平面上。
进一步而言,上述技术方案中,所述的LED模组包括:散热器、固定在散热器上的透光罩、驱动装置以及LED灯板,所述的散热器包括一安装面以及成型于安装面上的散热翅片,所述的透光罩上安装有满足不同角度配光需要的反光罩。
进一步而言,上述技术方案中,所述的发光模组由一个独立的LED模组构成,所述的支撑架跨设于LED模组的散热器上,支撑架的两安装脚通过定位组件以可调整角度的方式安装于散热器两侧的散热翅片上。
进一步而言,上述技术方案中,所述的发光模组由多个LED模组在水平面上并列连接构成,横向连接的LED模组间通过连接组件连接,竖向连接的LED模组间通过安装于散热器上的驱动装置连接。
进一步而言,上述技术方案中,所述的连接组件为连杆,连杆通过螺栓固定于散热器最外侧的散热翅片上;所述的驱动装置的两端通过连接件分别连接于LED模组的散热翅片上,LED模组间通过连杆呈一定角度连接。
进一步而言,上述技术方案中,所述的定位组件包括:固定于发光模组上表面设有定位槽的定位盘。
进一步而言,上述技术方案中,所述的支撑架安装于LED模组的散热翅片上,所述的定位盘固定于散热翅片上,支撑架的支撑脚通过螺栓固定于散热翅片上。
进一步而言,上述技术方案中,所述的支撑架安装于相对应的连杆上,所述的定位盘固定于连杆上,支撑架的支撑脚通过螺栓固定于连杆上。
进一步而言,上述技术方案中,所述的支撑架的支撑面上开着有安装孔,通过上螺钉固定于水平面上。
采用上述技术方案后,本申请与现有技术相比较具有如下有益效果:
1、单元模组化,突破常规灯具一个壳体的功率限制。常规的灯具产品,设计一款壳体往往只能做特定范围内功率的灯具。从而导致开发一系列灯具,需要多种的壳体设计,开发费用相当昂贵,而本申请采用模块化设计结构,发光模组可由多个独立的LED模组通过连接件连接组成,其可以根据环境的需求选择适当数量的LED模组,这样就可形成不同规格的灯具,以适应不同的实用环境。这种模块化的设计结构不仅节约产品成本,每个模组方便拆装,节能维护成本。
2、可调整光分布曲线和投射角度。常规灯具产品,一款灯具成品通常只有一种光分布曲线和投射角度。某些灯具可通过支撑架调整投射角度,但一款产品只能有一种的光分布曲线。而不同的场所照明又需要多种不同光分布。从而导致照明设计上的极大不便。而本申请中多功能模组灯创新在于每个模组都有一定范围内的角度定位调整。在支撑架和连接组件均具有角度调节功能,支撑架通过支撑组件以可调整角度的方式安装在发光组件上,LED模组通过连杆连接,在整灯上调整每个模组的投射角度,从而达到一款灯具可以拥有多种光分布曲线,再加上支撑架上的投射角度调整,从而做到一款产品满足不同的场所照明需要,大大简化照明的设计。
3、缩小大功率化灯具体积和重量。常规灯具产品,往往为了满足配光和散热,内置驱动器的三方面需要,大功率化上,灯具壳体的体积和重量变得越来越大。但体积和重量增大,会造成安装带来极大不便。需要更多的人力资源投入和考验安装位置空间和承重能力,浪费安装成本。特别在户外安装,由于受到风力和重力等其他外力作用 。灯具安全要求更高,灯具体积和重量大型化,存在会更大的安全隐患。而本申请多功能模组灯创新在于特有的发光模组和电源模组单元组合方式,大大减小灯具的体积和重量,对安装带来便利,体积和重量减小,受到的外力作用也相对减小,安全隐患也相对减小。
4、模组化设计降低维护成本。常规灯具产品,整灯密封设计,往往坏了一部分,需要整灯拆开维护,维护成本十分昂贵。而本申请多功能模组灯创新在于发光模组和电源模组模组化,哪部分坏了,只需要在链接组件上简易拆装,就可以更换坏的模组,不需要整灯拆开维护,大大减小维护成本。
5、本申请可为满足不同的户外场所使用的:广告照明,区域照明,运动场所照明,建筑重点照明,道路照明等多种不同户外场所。
附图说明:
图1是本申请实施例一的主视图;
图2是本申请实施例一的俯视图;
图3是本本申请实施例一的立体图;
图4是本申请实施例二的侧视图;
图5是本申请实施例二的立体图;
图6是本申请实施例三的俯视图;
图7是本申请实施例三的立体图;
图8是本申请实施例四的俯视图;
图9是本申请实施例四的立体图;
图10A是本申请中实施例一、二中支撑组件的立体图;
图10B是本申请中实施例三、四中支撑组件的立体图;
图11A-11B是本申请中光照角度的示意图;
图12A-12B是本申请中光照范围的示意图。
附图标记说明:
1 发光模组 10 LED模组 11 散热器
111 散热翅片 12 透光罩 13 驱动装置
2 支撑组件 21 支撑架 211 安装脚
212 支撑面 213 安装孔 214 连接片
22 定位组件 221 定位盘 222 定位槽
3 连接组件
具体实施方式:
下面结合具体实施例和附图对本申请进一步说明。
实施例一:
见图1-3所示,一种多功能模组式灯,包括:发光模组1和支撑组件2。所述的发光模组1为一个独立的LED模组10, LED模组10包括:散热器11、固定在散热器11上的透光罩12、驱动装置13以及LED灯板。所述的透光罩12上安装有满足不同角度配光需要的反光罩。所述的支撑组件2包括:支撑架21以及定位组件22,支撑架21通过定位组件22以可调整角度的方式安装于LED模组10上,支撑架21具有连接LED模组10的安装脚211以及连接两安装脚的支撑面212,该支撑面212为一倾斜面,LED模组10通过该支撑面212固定于平面上。
具体而言,所述的散热器11包括一安装面以及成型于安装面上的散热翅片111,支撑架21通过定位组件22安装于LED模组10的散热器11上。
在使用时,支撑架21的支撑面212与平面紧贴,螺钉穿过支撑面212上的安装孔213,使LED模组10通过支撑架21固定于平面上。见图11A-11B所示,按照所需照射的区域调节LED模组10与支撑架21之间的角度。LED模组10向上转动,使得LED模组10与水平面地面的夹角渐大,调整LED模组10的照射角度,使LED模组10照射高处。
实施例二:
见图4-5所示,一种多功能模组式灯,包括:发光模组1和支撑组件2。所述的发光模组1由多个相互独立的LED模组10连接组成,此处的LED模组10设置为两个,两个LED模组10之间通过连接组件连通, LED模组10包括:散热器11、固定在散热器11上的透光罩12、驱动装置13以及LED灯板,所述的透光罩12上安装有满足不同角度配光需要的反光罩。所述的支撑组件2包括:支撑架21以及定位组件22,支撑架21通过定位组件22以可调整角度的方式安装于LED模组10上,支撑架21具有连接LED模组10的安装脚211以及连接两安装脚的支撑面212,该支撑面212为一倾平面,LED模组10通过该支撑面212固定于平面上。
具体而言,所述的散热器11包括一安装面以及成型于安装面上的散热翅片111,散热翅片111之间形成散热通道,两个LED模组10相互连接,相对应的散热通道件相互连通。所述的连接组件3为连杆,两LED模组10最外侧的散热翅片111通过连杆连接,连杆通过螺栓固定于散热翅片111上,可以根据不同的使用需要,通过连杆将LED模组10间在一定范围内呈一定角度连接。支撑架21通过定位组件22安装于发光组件1两侧的连杆上。
在使用时,支撑架21的支撑面212与平面紧贴,螺钉穿过支撑面212上的安装孔213,使LED模组10通过支撑架21固定于平面上。
实施例三:
见图6-7所示,一种多功能模组式灯,包括:发光模组1和支撑组件2。所述的发光模组1由多个相互独立的LED模组10连接组成,此处的LED模组10设置为四个,四个LED模组10之间成两行两列分布,横向连接的LED模组10间通过连接组件3连接,竖向连接的LED模组10间通过安装于散热器11上的驱动装置13连接。
实施例四:
见图8-9所示,一种多功能模组式灯,包括:发光模组1和支撑组件2。所述的发光模组1由多个相互独立的LED模组10连接组成,此处的LED模组10设置为六个,六个LED模组10之间成两行三列分布,横向连接的LED模组10间通过连接组件3连接,竖向连接的LED模组10间通过安装于散热器11上的驱动装置13连接。LED模组10包括:散热器11、固定在散热器11上的透光罩12、驱动装置13以及LED灯板。所述的散热器11包括一安装面以及成型于安装面上的散热翅片111,散热翅片111之间形成散热通道,成行排列的LED模组10间相对应的散热通道件相互连通。
具体而言,所述的连接组件3为连杆,通过连杆3将横向排列的多个 LED模组10连接,连杆连接于LED模组10最外侧的散热翅片111上,且连杆通过螺栓固定于散热翅片上,可以根据不同的使用需要,通过连杆将LED模组10间在一定范围内呈一定角度连接。竖向连接的LED模组10间通过安装于散热器11上的驱动装置13连接。驱动装置13的两端通过连接件分别连接于两竖向排列的LED模组10的散热翅片111上,令两竖向连接的LED模组10间固定。发光组件1两侧的连杆通过连接片214对应连接,支撑架21安装于该连接片214上。所述的定位组件22包括:固定于发光模组1上表面设有定位槽222的定位盘221。所述的支撑架21跨设于发光模组1两侧的连杆上,定位盘221固定于连杆片214上,支撑架21的支撑脚211通过螺栓固定于连杆片214上。所述的支撑架21的支撑面212上开着有安装孔213,通过上螺钉固定于水平面上。
本实施例的使用方式与实施例一相同,在此不再一一赘述。
本申请为满足不同的户外场所使用的,不仅仅是上述的建筑重点照明,也可以用于室内照明、广告照明,区域照明,运动场所照明,道路照明等多种不同户外场所。上述的发光模组1可以通过任意个数的LED模组10连接构成,连接时横向连接的LED模组10间通过连杆连接,竖向连接的LED模组10通过驱动装置13连接固定,连接完成后,于发光模组1上设置至少1个支撑架21,支撑架21位置的安装应该选取尽量能够整个发光模组1受力平衡处进行安装。构成发光模组1的LED模组的数量不同,发光模组1的照射范围不同。
当然,以上所述仅为本申请的具体实施例而已,并非来限制本申请实施范围,凡依本申请申请专利范围所述构造、特征及原理所做的等效变化或修饰,均应包括于本申请申请专利范围内。

Claims (9)

  1. 一种多功能模组式灯,包括:发光模组(1)和支撑组件(2),其特征在于:所述的发光模组(1)由至少一个LED模组(10)构成,LED模组(10)间通过连接组件(3)连接;所述的支撑组件(2)包括:支撑架(21)以及定位组件(22),支撑架(21)通过定位组件(22)以可调整角度的方式安装于发光模组(1)上,支撑架(21)具有连接发光模组(1)的安装脚(211)以及连接两安装脚的支撑面(212),实施实例一、二该支撑面(212)为一平面,实例三、四该支撑面(212)为一斜面,发光模组(1)通过该支撑面(212)固定于平面上。
  2. 根据权利要求1所述的一种多功能模组式灯,其特征在于:所述的LED模组(10)包括:散热器(11)、固定在散热器(11)上的透光罩(12)、驱动装置(13)以及LED灯板,所述的散热器(11)包括一安装面以及成型于安装面上的散热翅片(111),所述的透光罩(12)上安装有满足不同角度配光需要的反光罩。
  3. 根据权利要求2所述的一种多功能模组式灯,其特征在于:所述的发光模组(1)由一个独立的LED模组(10)构成,所述的支撑架(21)跨设于LED模组(10)的散热器(11)上,支撑架(21)的两安装脚(211)通过定位组件(22)以可调整角度的方式安装于散热器(11)两侧的散热翅片(111)上。
  4. 根据权利要求2所述的一种多功能模组式灯,其特征在于:所述的发光模组(1)由多个LED模组(10)在水平面上并列连接构成,横向连接的LED模组(10)间通过连接组件(3)连接,竖向连接的LED模组(10)间通过安装于散热器(11)上的驱动装置(13)连接。
  5. 根据权利要求4所述的一种多功能模组式灯,其特征在于:所述的连接组件(3)为连杆,连杆通过螺栓固定于散热器(11)最外侧的散热翅片(111)上;所述的驱动装置(13)的两端通过连接件分别连接于LED模组(10)的散热翅片(111)上,LED模组(10)间通过连杆呈一定角度连接。
  6. 根据权利1-5中任意一项所述的一种多功能模组式灯,其特征在于:所述的定位组件(22)包括:固定于发光模组(1)上表面设有定位槽(222)的定位盘(221)。
  7. 根据权利要求6所述的一种多功能模组式灯,其特征在于:所述的支撑架(21)安装于LED模组(10)的散热翅片(111)上,所述的定位盘(221)固定于散热翅片(111)上,支撑架(21)的支撑脚(211)通过螺栓固定于散热翅片(111)上。
  8. 根据权利要求6所述的一种多功能模组式灯,其特征在于:所述的支撑架安装于相对应的连杆上,所述的定位盘(221)固定于连杆上,支撑架(21)的支撑脚(211)通过螺栓固定于连杆上。
  9. 根据权利1所述的一种多功能模组式灯,其特征在于:所述的支撑架(21)的支撑面(212)上开着有安装孔(213),通过上螺钉固定于水平面上。
PCT/CN2015/079833 2014-05-27 2015-05-26 一种多功能模组式灯 WO2015180626A1 (zh)

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US20170328526A1 (en) 2017-11-16
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CN204005325U (zh) 2014-12-10
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US9732919B2 (en) 2017-08-15
US20160320006A1 (en) 2016-11-03

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