WO2017156870A1 - 庭院led照明装置 - Google Patents

庭院led照明装置 Download PDF

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Publication number
WO2017156870A1
WO2017156870A1 PCT/CN2016/083289 CN2016083289W WO2017156870A1 WO 2017156870 A1 WO2017156870 A1 WO 2017156870A1 CN 2016083289 W CN2016083289 W CN 2016083289W WO 2017156870 A1 WO2017156870 A1 WO 2017156870A1
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WO
WIPO (PCT)
Prior art keywords
heat dissipation
lighting device
lamp
lamp arm
led lighting
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PCT/CN2016/083289
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English (en)
French (fr)
Inventor
于欢欢
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深圳市耀嵘科技有限公司
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Publication of WO2017156870A1 publication Critical patent/WO2017156870A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/08Lighting devices intended for fixed installation with a standard

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  • the invention belongs to the technical field of lighting devices, and in particular relates to a courtyard lighting device.
  • the lighting device in the prior art is easy to accumulate ash; and the device usually cannot pass through the power connection line, and a wire slot is needed to accommodate the power cable, and the device is installed. After the power cable is connected to the cover, this assembly method increases the labor and material costs.
  • PCB is the abbreviation of Printed Circuit Board in English, meaning Chinese printed circuit board;
  • LED is the abbreviation of English light emitting diode, Chinese meaning is LED.
  • the technical problem to be solved by the present invention is to avoid the above-mentioned prior art that the courtyard lighting device is easy to accumulate dust, and the insufficiency of the assembly cost is generally not able to pass through the power connection line in the device, and a courtyard lighting device is proposed, including a power source for converting an external power source into a lighting device power supply voltage, a heat sink for illuminating device heat dissipation, an LED light source panel for illuminating illumination, and a lamp cover; the heat sink includes a heat dissipation body and a plurality of heat sinks, the heat dissipation
  • the main body has a disk shape that is small and large, and each fin extends upward from the bottom surface of the heat dissipating body and radiates to the periphery along the inner wall of the heat dissipating body; the two adjacent fins form a convection for air convection between the two ends.
  • a heat dissipation channel a lower heat dissipation port of each heat dissipation channel is enclosed on a bottom surface of the heat sink body Surrounding; the LED light source plate is fixedly connected to the light source fixing surface below the bottom surface of the heat sink body; the power source is received in the heat sink; the lamp cover is over the heat sink
  • the upper heat dissipation port of the heat dissipation channel is located below the edge of the lamp cover; the heat dissipation channel is at a port plane of the near heat dissipation port, and the longitudinal center axis of the heat dissipation channel is parallel or intersects with the horizontal plane at an angle of less than 15 degrees.
  • a spacer is disposed between the upper heat dissipation ports of the heat dissipation channels.
  • the garden LED lighting device further includes a lamp arm for supporting and fixing the lighting device; one end of the lamp arm is fixedly connected to the heat sink, and the other end of the lamp arm is connected to the outside; the lamp arm interior A hollow wire hole for the power cord to pass through is provided.
  • the hollow wire hole is integrally formed with the lamp arm.
  • the hollow wire hole is a hollow tube embedded in the lamp arm.
  • One end of the lamp arm is provided with a first lamp arm fixing hole, and the fastener is fixedly connected to the heat sink via the first lamp arm fixing hole.
  • One end of the lamp arm is provided with a lamp arm sleeve hole for arranging the lighting device on the external connection lamp post.
  • the courtyard LED lighting device further includes an integral lens fixed to the LED light source panel; the integral lens is further provided with a lens sealing groove for accommodating the sealing strip.
  • the top surface of the lamp cover is a smooth top surface;
  • the LED light source board comprises a PCB circuit board and an LED lamp bead, and the LED lamp bead is fixed on the PCB circuit board.
  • the garden LED lighting device further includes a top loading plate for connecting the lamp to the mounting surface,
  • the top surface of the lamp cover is provided with an top mounting component, and the top mounting component is fixedly connected to the top loading tray.
  • Each heat sink extends upward from the bottom surface of the heat dissipation body and radiates to the periphery along the inner wall of the heat dissipation body, so that the heat dissipation channel between the heat sinks gradually increases from bottom to top.
  • the heat dissipation channel, the lower heat dissipation port of the two heat dissipation ports of the heat dissipation channel is disposed at the bottom of the heat sink body, because the heat sink is covered by the top cover, so it is not easy to accumulate dust; 2.
  • the heat dissipation in the two heat dissipation ports of the heat dissipation channel The port is disposed under the edge of the top cover, and the port plane of the upper heat dissipation port is not horizontal or orthogonal to the center plane of the lamp cover, so that the port on the upper heat dissipation port is not easy to accumulate dust falling from the top to the bottom; 3.
  • the hot air is dissipating heat.
  • the convection in the channel is usually from bottom to top, and the upward convective hot air and the dust falling in the direction of gravity form a hedge, which reduces the risk of accumulation of dust in the heat dissipation channel; such a structural design can prevent dust from entering as much as possible, so that the heat dissipation channel It is not easy to accumulate dust and can be kept open for a long time.
  • the hollow wire hole provided inside the lamp arm allows the power cable to pass through directly. Convenient assembly and saving on operating costs.
  • FIG. 1 is a schematic perspective view of an exploded state of a preferred embodiment of the present invention
  • FIG. 2 is a schematic diagram of a combined state axonometric projection according to a preferred embodiment 1 of the present invention
  • Figure 3 is a side cross-sectional view showing a preferred embodiment of the present invention.
  • FIG. 4 is a schematic diagram of the axonometric projection of the heat sink 30;
  • Figure 5 is a second schematic view of the projection of the heat sink 30
  • Figure 6 is a bottom plan view of the heat sink 30
  • Figure 7 is a schematic projection view of the exploded state of the lamp arm 80
  • Figure 8 is a schematic exploded perspective view of a preferred embodiment of the present invention.
  • Figure 9 is a schematic view showing the combined state of the axial projection of the preferred embodiment 2 of the present invention.
  • a preferred embodiment 1 of the courtyard LED lighting device as shown in FIGS. 1 to 6 includes: a power source 20 for converting an external power source into a lighting device power supply voltage, a heat sink 30 for illuminating device heat dissipation, and for illuminating illumination
  • the LED light source plate 50 and the lamp cover 60 includes a heat dissipation body 31 and a plurality of heat dissipation fins 36.
  • the heat dissipation body 31 has a disk shape that is small and large, and each heat dissipation plate 36 is from the bottom surface of the heat dissipation body 31.
  • the heat dissipation channel 35 for air convection is formed between the two adjacent heat sinks 36; the lower heat dissipation port 37 of each heat dissipation channel 35 is enclosed by the heat dissipation channel 35.
  • the surface of the lower heat dissipation port 37 of each of the heat dissipation channels 35 may be parallel or non-parallel to the bottom surface of the heat sink body 31; the LED light source plate 50 is fixedly connected to the bottom surface of the heat sink body 31.
  • the light source is fixed on the surface 32; the power source 20 is received in the heat sink 30; the lamp cover 60 is disposed on the heat sink 30, and the upper heat dissipation port 38 of the heat dissipation channel 35 is located at Below the edge of the lamp cover 60
  • the heat dissipation channel 35 is near the port plane of the heat dissipation port 38, and the longitudinal center axis of the heat dissipation channel 35 is parallel or intersects with the horizontal plane at an angle of less than 15 degrees.
  • the purpose of the longitudinal center axis of the heat dissipation channel 35 being parallel or intersecting with the horizontal plane is less than 15 degrees, so that the port plane of the upper heat dissipation port 38 is perpendicular or nearly perpendicular to the horizontal plane, so that the upper heat dissipation port 38 is less likely to accumulate dust.
  • Port plane and horizontal plane of the upper heat dissipation port 38 Among the plurality of angles of the included angle, the angle at which the dust is most difficult to accumulate is 90 degrees, that is, the port plane of each of the upper heat dissipation ports 38 is orthogonal to the horizontal plane. Of course, it may also be an angle of less than 90 degrees, so that the upper heat dissipation port 38 is protected by the edge of the lamp cover 60, reducing the accumulation of dust at the upper heat dissipation port 38.
  • Each heat sink extends upward from the bottom surface of the heat dissipation body and radiates to the periphery along the heat dissipation body wall, so that the heat dissipation channel between the heat dissipation fins forms a heat dissipation channel that gradually becomes larger from bottom to top, and the lower heat dissipation port of the two heat dissipation ports of the heat dissipation channel It is disposed at the bottom of the heat sink body, because the heat sink is covered by the top cover, so it is not easy to accumulate dust; the upper heat dissipation port of the two heat dissipation ports of the heat dissipation channel is disposed below the edge of the top cover, and the port plane and the lamp cover of the upper heat dissipation port The central horizontal plane is not horizontal or orthogonal, so that the argon falling from the top is not easy to accumulate on the port plane of the upper heat-dissipating port; the convection of the hot air in the heat-
  • the heat sink 30 is a die-casting member, and a spacer 39 is further disposed between the upper heat dissipation ports 38 of the heat dissipation channels 35.
  • the spacer 39 also functions to block dust, preventing part of the external dust from entering the heat sink through the second heat dissipation gap 38 to block the heat dissipation passage.
  • a preferred embodiment 1 of the courtyard LED lighting device as shown in Figures 1 to 3 further includes a lamp arm 80 for supporting and securing the lighting device, one end of which is fixedly coupled to the heat sink 30, the lamp The other end of the arm 80 is connected to the outside; the lamp arm 80 is internally provided with a hollow wire hole 85 for the passage of a power line for introducing an external power source into the battery Source 20.
  • the lamp arm 80 is provided with a hollow wire hole for easy assembly.
  • the hollow wire hole 85 is a hollow wire hole 85 formed integrally with the lamp arm 80.
  • the hollow wire hole 85 is a hollow tube 88 pre-buried in the lamp arm 80, and the hollow tube 88 is integrally formed with the lamp arm 80 to form the hollow wire hole. 85.
  • Two types of hollow wire holes 85 allow the power cable to be easily connected to the power source 20 through the lamp arm 80, and the power cable is not required to be provided on the device to cover the power cable. Reduced use costs increase ease of use.
  • one end of the lamp arm 80 is provided with a first lamp arm fixing hole 82, and the fastener is fixedly connected to the heat sink via the first lamp arm fixing hole 82.
  • one end of the lamp arm 80 is provided with a lamp arm sleeve hole 86 for socketing the lighting device to the external connection lamp post.
  • the lamp arm sleeve hole 86 can also be replaced by other interface devices that can fix the lighting device at an external installation location.
  • the top surface of the lamp cover 60 is a smooth top surface.
  • the smooth top surface makes it difficult to accumulate dust on the top and reduces the probability of dust entering the heat dissipation channel.
  • an integral lens 90 is further included, and the lens 90 is fixed under the LED light source plate 50.
  • the integrated lens 90 is further provided with a lens sealing groove 95 for accommodating a sealing strip.
  • the LED light source panel 50 includes a PCB wiring board 51 and an LED lamp bead 52, and the LED lamp bead 52 is fixed on the PCB wiring board 51.
  • the preferred embodiment 2 of the courtyard LED lighting device shown in FIGS. 8 and 9 further includes a top loading tray 70 for connecting the lamp to the mounting surface, and the top surface of the lamp cover 60 is provided with an top mounting member 65.
  • the top mounting member 65 is fixedly coupled to the top loading tray 70.
  • a strip of sealing strip 96 that can be received in the lens sealing groove 95 of the unitary lens 90 to effect a seal between the lens 90 and the LED source panel.
  • the difference between the preferred embodiments 1 and 2 is that different connecting members are used to be fixed to the outside.
  • the heat dissipation structure of the two is the same, and the structural features have the technical effect of preventing dust accumulation.
  • the technical point of the present invention is directed to the fact that the courtyard lighting device is easy to accumulate dust, and the device usually cannot directly pass through the power connection line, and the assembly cost is high; the lamp arm has a built-in hollow wire hole for easy assembly, and the smooth top cover is arranged. As well as the enclosed heat sink, the heat dissipation channel is not easy to accumulate and can be kept open for a long time.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)

Abstract

一种庭院LED照明装置,包括:用于将外部电源转化为照明装置供电电压的电源(20)、用于照明装置散热的散热器(30)、用于发光照明的LED光源板(50)和灯盖(60);各散热片(36)从散热本体(31)的底面向上延伸并沿散热本体(31)内壁向周围辐射;两相邻的散热片(36)之间形成两端均与外部连通的用于空气对流的散热通道(35);各散热通道(35)的下散热端口(37)围合于所述散热器本体(31)底面周围,平行于散热器(30)本体底面;散热通道(35)的上散热端口(38)位于灯盖(60)边缘的下方,与灯盖(60)的中心水平面不平行或正交;上散热端口设置在顶盖边缘下方,与灯盖(60)的中心水平面非水平或正交;散热器(30)被顶盖所覆盖,及上下散热端口(37、38)的设置方式均使散热通道(35)不易积灰。

Description

庭院LED照明装置 技术领域
本发明属于照明装置技术领域,尤其涉及庭院照明装置。
背景技术
现有技术中的照明装置,尤其是一些设置在庭院的照明装置,容易积灰;且装置内通常无法穿过电源连接线,需在装置上开设线槽的方式来容置电源连接线,安装好电源连接线后再加上盖子,这样的组装方式增加了人力和物力成本。
名词解释:
PCB为英文Printed Circuit Board的缩写,中文含义为印制电路板;
LED为英文light emitting diode的缩写,中文含义为发光二极管。
发明内容
本发明要解决的技术问题在于避免上述现有技术中庭院照明装置容易积灰,且装置内通常无法穿过电源连接线增加了组装成本的不足之处,提出了一种庭院照明装置,包括用于将外部电源转化为照明装置供电电压的电源、用于照明装置散热的散热器、用于发光照明的LED光源板和灯盖;所述散热器包括散热本体和复数个散热片,所述散热本体为下小上大的盘状,各散热片从散热本体的底面向上延伸并沿散热本体内壁向周围辐射;两相邻的散热片之间形成两端均与外部连通的用于空气对流的散热通道;各散热通道的下散热端口围合于所述散热器本体底面 周围;所述LED光源板固定连接在所述散热器本体底面下方的光源固定面上;所述电源容置在所述散热器之内;所述灯盖盖于所述散热器之上,所述散热通道的上散热端口位于所述灯盖边缘的下方;所述散热通道在近上散热端口的端口平面处,所述散热通道的纵向中心轴线与水平面平行或相交夹角小于15度。
所述各散热通道的上散热端口之间设置有隔片。
所述的庭院LED照明装置还包括用于支承和固定照明装置的灯臂;所述灯臂的一端与所述散热器固定连接,所述灯臂的另一端与外部连接;所述灯臂内部设有用于电源线穿过的中空过线孔。
所述中空过线孔是与所述灯臂一体成型。
所述中空过线孔为预埋在所述灯臂中的中空管。
所述灯臂一端设置有第一灯臂固定孔,紧固件经由第一灯臂固定孔将所述灯臂和散热器固定连接。
所述灯臂一端设置有灯臂套孔,用于将照明装置套接在外部连接灯柱上。
所述的庭院LED照明装置还包括一体式透镜,所述透镜固定在所述LED光源板的下方;所述一体式透镜上还设置有用于容置密封胶条的透镜密封槽。
所述灯盖的顶面为光滑顶面;所述LED光源板包括PCB线路板和LED灯珠,LED灯珠固定在PCB线路板上。
所述的庭院LED照明装置还包括用于灯具同安装面连接的顶装盘, 所述灯盖的顶面上设置有顶装部件,所述顶装部件与顶装盘固定连接。
同现有技术相比较,本发明的有益效果是:1、各散热片从散热本体的底面向上延伸并沿散热本体内壁向周围辐射,使得散热片之间的散热通道形成从下至上逐渐变大的散热通道,散热通道的两个散热端口中的下散热端口设置在散热器主体底部,由于散热器被顶盖所覆盖,因此不易积灰;2、散热通道的两个散热端口中的上散热端口设置在顶盖边缘下方,上散热端口的端口平面与灯盖的中心水平面非水平或正交,使得上散热端口的端口平面上不易积累从上往下飘落的灰尘;3、热空气在散热通道中的对流通常自下而上,往上对流的热空气和随重力方向下落的灰尘形成对冲,降低了散热通道中积尘累积的风险;如此的结构设计可尽量防止灰尘进入,使得散热通道不易积灰,能长久保持畅通;4、设置在灯臂内部的中空过线孔,可以让电源连接线直接穿过,方便了组装,节省了使用成本。
附图说明
图1是本发明优选实施例一的分解状态轴测投影示意图;
图2是本发明优选实施例一的组合状态轴测投影示意图;
图3是本发明优选实施例的侧视剖视示意图;
图4是散热器30的轴测投影示意图之一;
图5是散热器30的轴测投影示意图之二;
图6是散热器30的仰视示意图;
图7是灯臂80的分解状态轴测投影示意图;
图8是本发明优选实施例二的分解状态轴测投影示意图;
图9是本发明优选实施例二的组合状态轴测投影示意图。
具体实施方式
以下结合各附图对本发明的实施方式做进一步详述。
如图1至6所示的庭院LED照明装置的优选实施例一中,包括:用于将外部电源转化为照明装置供电电压的电源20、用于照明装置散热的散热器30、用于发光照明的LED光源板50和灯盖60;所述散热器30包括散热本体31和复数个散热片36,所述散热本体31为下小上大的盘状,各散热片36从散热本体31的底面向上延伸并沿散热本体内壁向周围辐射;两相邻的散热片36之间形成两端均与外部连通的用于空气对流的散热通道35;各散热通道35的下散热端口37围合于所述散热器本体31底面周围;各散热通道35的下散热端口37的端口平面可以平行或不平行于所述散热器本体31底面;所述LED光源板50固定连接在所述散热器本体31底面下方的光源固定面32上;所述电源20容置在所述散热器30之内;所述灯盖60盖于所述散热器30之上,所述散热通道35的上散热端口38位于所述灯盖60边缘的下方;所述散热通道35在近上散热端口38的端口平面处,所述散热通道35的纵向中心轴线与水平面平行或相交夹角小于15度。
所述散热通道35的纵向中心轴线与水平面平行或相交夹角小于15度的目的是,使得上散热端口38的端口平面与水平面垂直或近似垂直,这样上散热端口38处不容易积灰。上散热端口38的端口平面与水平面 夹角的多个角度中,最不易积灰的角度为90度,即各上散热端口38的端口平面与水平面正交。当然也可以是小于90度的夹角,使得上散热端口38被所述灯盖60边缘所保护,减少上散热端口38处的积灰。
各散热片从散热本体的底面向上延伸并沿散热本体内壁向周围辐射,使得散热片之间的散热通道形成从下至上逐渐变大的散热通道,散热通道的两个散热端口中的下散热端口设置在散热器主体底部,由于散热器被顶盖所覆盖,因此不易积灰;散热通道的两个散热端口中的上散热端口的设置在顶盖边缘下方,上散热端口的端口平面与灯盖的中心水平面非水平或正交,使得上散热端口的端口平面上不易积累从上往下飘落的积灰;热空气在散热通道中的对流通常至下而上,往上对流的热空气和随重力方向下落的灰尘形成对冲,降低了散热通道中积尘累积的风险;如此的结构设计可尽量防止灰尘进入,使得散热通道不易积灰,能长久保持畅通。
如图4至6所示的庭院LED照明装置的优选实施例一中,所述散热器30为压铸件,所述各散热通道35的上散热端口38之间还设置有隔片39。所述隔片39也起到阻挡灰尘的作用,防止了部分外部灰尘通过第二散热间隙38进入散热器阻塞散热通道。
如图1至3所示的庭院LED照明装置的优选实施例一还包括用于支承和固定照明装置的灯臂80,所述灯臂80的一端与所述散热器30固定连接,所述灯臂80的另一端与外部连接;所述灯臂80内部设有用于电源线穿过的中空过线孔85,所述电源线用于将外部电源引入所述电 源20。提供灯臂80内置中空过线孔方便组装。
如图3所示,所述中空过线孔85是与所述灯臂80一体成型形成的中空过线孔85。如图7所示,所述中空过线孔85为预埋在所述灯臂80中的中空管88,所述中空管88与所述灯臂80一体成型形成所述中空过线孔85。
两种形式的中空过线孔85,使得电源连接线方便穿过灯臂80进入灯具内部与电源20连接,无需在装置上开设线槽并加盖的方式来容置电源连接线,这样组装方式降低了使用成本提高了易用性。
如图1和7所示,所述灯臂80一端设置有第一灯臂固定孔82,紧固件经由第一灯臂固定孔82将所述灯臂80和散热器固定连接。如图1和7所示,所述灯臂80一端设置有灯臂套孔86,用于将照明装置套接在外部连接灯柱上。当然灯臂套孔86也可以等同替换成其他可以将照明装置固定在外接安装地点的接口装置。
如图1和3所示,所述灯盖60的顶面为光滑顶面。光滑顶面使得其顶部不易积累灰尘,也降低了灰尘进入散热通道的概率。
如图1所示,还包括一体式透镜90,所述透镜90固定在所述LED光源板50的下方;所述一体式透镜90上还设置有用于容置密封胶条的透镜密封槽95。
如图1所示,所述LED光源板50包括PCB线路板51和LED灯珠52,LED灯珠52固定在PCB线路板51上。
如图8和9所示的庭院LED照明装置的优选实施例二中,还包括用于灯具同安装面连接的顶装盘70,所述灯盖60的顶面上设置有顶装部件65,所述顶装部件65与顶装盘70固定连接。
图8中还显示出了密封胶条96,密封胶条96可以容置在一体式透镜90的透镜密封槽95中,以实现透镜90和LED光源板之间的密封。
优选实施例一和二之间的区别在于使用了不同的连接部件同外部固定。但两者的散热结构相同,其结构特征均有防止积灰的技术效果。
本发明专利技术点旨在针对庭院照明装置容易积灰,且装置内通常无法直接穿过电源连接线,组装成本高的问题;提供灯臂内置中空过线孔方便组装,且配置光滑的顶盖以及围合式散热器,使得散热通道不易积灰,能长久保持畅通。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (10)

  1. 一种庭院LED照明装置,包括:
    用于将外部电源转化为照明装置供电电压的电源(20)、用于照明装置散热的散热器(30)、用于发光照明的LED光源板(50)和灯盖(60);
    其特征在于,所述散热器(30)包括散热本体(31)和复数个散热片(36),所述散热本体(31)为下小上大的盘状,各散热片(36)从散热本体(31)的底面向上延伸并沿散热本体内壁向周围辐射;两相邻的散热片(36)之间形成两端均与外部连通的用于空气对流的散热通道(35);各散热通道(35)的下散热端口(37)围合于所述散热器本体(31)底面周围;
    所述LED光源板(50)固定连接在所述散热器本体(31)底面下方的光源固定面(32)上;所述电源(20)容置在所述散热器(30)之内;所述灯盖(60)盖于所述散热器(30)之上,所述散热通道(35)的上散热端口(38)位于所述灯盖(60)边缘的下方;所述散热通道(35)在近上散热端口(38)的端口平面处,所述散热通道(35)的纵向中心轴线与水平面平行或相交夹角小于15度。
  2. 根据权利要求1所述的庭院LED照明装置,其特征在于,
    所述各散热通道(35)的上散热端口(38)之间设置有隔片(39)。
  3. 根据权利要求1所述的庭院LED照明装置,其特征在于,
    还包括用于支承和固定照明装置的灯臂(80);所述灯臂(80)的一端与所述散热器(30)固定连接,所述灯臂(80)的另一端与外部连接;所述灯臂(80)内部设有用于电源线穿过的中空过线孔(85)。
  4. 根据权利要求3所述的庭院LED照明装置,其特征在于,
    所述中空过线孔(85)是与所述灯臂(80)一体成型。
  5. 根据权利要求3所述的庭院LED照明装置,其特征在于,
    所述中空过线孔(85)为预埋在所述灯臂(80)中的中空管(88)。
  6. 根据权利要求3所述的庭院LED照明装置,其特征在于,
    所述灯臂(80)一端设置有第一灯臂固定孔(82),紧固件经由第一灯臂固定孔(82)将所述灯臂(80)和散热器固定连接。
  7. 根据权利要求3所述的庭院LED照明装置,其特征在于,
    所述灯臂(80)一端设置有灯臂套孔(86),用于将照明装置套接在外部连接灯柱上。
  8. 根据权利要求1所述的庭院LED照明装置,其特征在于,
    还包括一体式透镜(90),所述透镜(90)固定在所述LED光源板(50)的下方;所述一体式透镜(90)上还设置有用于容置密封胶条的透镜密封槽(95)。
  9. 根据权利要求1所述的庭院LED照明装置,其特征在于,
    所述灯盖(60)的顶面为光滑顶面;所述LED光源板(50)包括PCB线路板(51)和LED灯珠(52),LED灯珠(52)固定在PCB线路板(51)上。
  10. 根据权利要求1所述的庭院LED照明装置,其特征在于,
    还包括用于灯具同安装面连接的顶装盘(70),所述灯盖(60)的顶面上设置有顶装部件(65),所述顶装部件(65)与顶装盘(70)固定连接。
PCT/CN2016/083289 2016-03-12 2016-05-25 庭院led照明装置 WO2017156870A1 (zh)

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CN101776234A (zh) * 2010-03-09 2010-07-14 北京朗波尔光电股份有限公司 一种模组路灯
CN202521417U (zh) * 2012-03-13 2012-11-07 江西省通用节能科技有限公司 一种led路灯
CN103256519A (zh) * 2012-02-17 2013-08-21 深圳市比格利电源科技有限公司 一种led路灯
CN203147485U (zh) * 2013-02-20 2013-08-21 四川东顺光电有限公司 高效散热led路灯
CN203797506U (zh) * 2014-01-23 2014-08-27 浙江星碧照明科技有限公司 一种路灯
CN204879808U (zh) * 2015-07-20 2015-12-16 深圳市证通佳明光电有限公司 一种改善散热结构的led路灯

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Publication number Priority date Publication date Assignee Title
CN101776234A (zh) * 2010-03-09 2010-07-14 北京朗波尔光电股份有限公司 一种模组路灯
CN103256519A (zh) * 2012-02-17 2013-08-21 深圳市比格利电源科技有限公司 一种led路灯
CN202521417U (zh) * 2012-03-13 2012-11-07 江西省通用节能科技有限公司 一种led路灯
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