JP3133061U - LED reflective spherical lamp structure - Google Patents

LED reflective spherical lamp structure Download PDF

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JP3133061U
JP3133061U JP2007002718U JP2007002718U JP3133061U JP 3133061 U JP3133061 U JP 3133061U JP 2007002718 U JP2007002718 U JP 2007002718U JP 2007002718 U JP2007002718 U JP 2007002718U JP 3133061 U JP3133061 U JP 3133061U
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led
spherical lamp
conductive substrate
translucent
screw
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陳正堂
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翔威創意科技股▲分▼有限公司
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Abstract

【課題】LED反射球形ランプ構造の提供。
【解決手段】本考案のLED反射球形ランプ構造は、透光球形ランプ、LED光束導引素子、LED光束導引素子に連接し、導熱性に優れた散熱ブロック、及び、固定ベース、からなる。LED光束導引素子は螺紋接管、集光レンズ、LEDを装着する導電基板、からなり、螺紋接管により透光球形ランプ底の螺孔を螺接し、且つ、螺紋接管は透光ランプの管口に伸入し、集光レンズを畳接し、螺紋接管が透光球形ランプを螺接するもう一端の管縁は、導電基板が対応する凹部に照準する管壁を形成し、導電基板上のLEDを集光レンズに向け、導電基板はLEDもう一端の散熱ブロックを設置し、固定ベースを放入して固定する。LEDが点灯する時、LEDの光線は集光レンズを通過し、透光球形ランプに射入し、球形ランプ全体が発光して、広域照明になり、公知の球形ランプ照明製造コストより安く、加工が容易で、消耗電力も少なく、構造が回収に便利である長所が達成される。
【選択図】 図2
An LED reflective spherical lamp structure is provided.
An LED reflecting spherical lamp structure according to the present invention includes a translucent spherical lamp, an LED light flux guiding element, an LED light flux guiding element, and a heat dissipation block excellent in heat conductivity and a fixed base. The LED luminous flux guide element is composed of a screw-contact tube, a condenser lens, and a conductive substrate on which the LED is mounted. Extending, condensing the condensing lens, and the tube edge of the other end where the screw-contact tube is screwing the translucent spherical lamp forms a tube wall where the conductive substrate is aimed at the corresponding recess, collecting the LEDs on the conductive substrate Toward the light lens, the conductive substrate is installed with a heat dissipation block at the other end of the LED, and a fixed base is inserted and fixed. When the LED is lit, the LED beam passes through the condenser lens and enters the translucent spherical lamp, and the entire spherical lamp emits light, resulting in wide area lighting, which is cheaper than the known spherical lamp lighting manufacturing cost and processed. The advantages of being easy to use, low power consumption, and convenient structure for collection are achieved.
[Selection] Figure 2

Description

本考案はLED反射球形ランプ構造に関し、公知の球形ランプを代替する光電技術であって、LEDの単点光源を励起し、ランプ照明として使用でき、公知技術と比べると、製造コストが安く、加工が容易で、電力消耗が少なく、構造が回収できるランプ構造に関する。   The present invention relates to an LED reflective spherical lamp structure, which is a photoelectric technology that replaces a known spherical lamp, can excite a single point light source of the LED, and can be used as lamp illumination. The present invention relates to a lamp structure that can be easily recovered, consumes less power, and can be recovered.

球形ランプの造型は視覚上、美観であり、門柱や街灯頂端に装着し、照明美化効果を達成する。しかし、照明ランプは美観だけではなく、節電であるか、環境保全に適合するか等も考慮しなければならない。公知の球形ランプ内は電球、タングステンランプを装着し、現在のところ、タングステンランプが節電であるが、エネルギー、環境問題が日増しに重視される状況下で、継続製造、継続使用は、以下の理由から理想的ではない。 The shape of the spherical lamp is visually aesthetic, and it is attached to the gate pillar and the top of the streetlight to achieve the lighting beautification effect. However, it is necessary to consider whether the lighting lamp is not only aesthetically pleasing, but also power saving or suitable for environmental conservation. A known spherical lamp is equipped with a light bulb and a tungsten lamp. At present, the tungsten lamp is power-saving, but under the circumstances where energy and environmental problems are increasingly emphasized, continuous production and continuous use are as follows. Not ideal for a reason.

1.
環境保護に基づくと、多くの国家が、タングステンランプは長期使用で焼壊した後、一定の回収ルートにより回収し、直接廃棄して環境汚染を起こさないように規定している。しかし、回収工程がどんなによくても、ガラス管内の蛍光塗料を除去するのは困難で、且つ、ガラス管の破片は回収者を傷つける恐れがある。更に、破壊したランプは環境を汚染し、タングステンランプの回収には依然として多くの問題が存在する。
2.
タングステンランプは現在の節電趨勢に対応できず、エネルギーの不足により、更に節電できる発光体の使用が必要である。
3.
タングステンランプ自身が自発光し、ランプ管は熱量を発するので、誤って接触してやけどする恐れがあるだけでなく、照明場所が微量に温度上昇し、気象のバタフライ効果原理から見て、やはり適当ではなく、且つ、一般のランプ(タングステンランプを含む)に誤触時、怪我する恐れがあり、安全で、発熱量が更に低いランプ構造が必要である。
1.
Based on environmental protection, many states stipulate that tungsten lamps should be destroyed by long-term use, then recovered by a certain recovery route, and discarded directly to prevent environmental pollution. However, no matter how good the recovery process is, it is difficult to remove the fluorescent paint in the glass tube, and fragments of the glass tube can hurt the recoverer. Furthermore, broken lamps pollute the environment and there are still many problems in the recovery of tungsten lamps.
2.
Tungsten lamps cannot cope with the current power saving trend, and due to lack of energy, it is necessary to use a light emitter that can further save power.
3.
The tungsten lamp itself emits light, and the lamp tube emits heat, so there is a risk of accidental contact and burns. There is a need for a lamp structure that is safe and has a lower calorific value because there is a risk of injury when a general lamp (including a tungsten lamp) is accidentally touched.

本考案の目的は、上述の問題を改善するLED反射球形ランプ構造を提供することにある。 The object of the present invention is to provide an LED reflective spherical lamp structure which improves the above-mentioned problems.

本考案のLED反射球形ランプ構造は、透光球形ランプ、LED光束導引素子、LED光束導引素子に連接し、導熱性に優れた散熱ブロック、及び、固定ベース、からなる。LED光束導引素子は螺紋接管、集光レンズ、LEDを装着する導電基板、からなり、螺紋接管により透光球形ランプ底の螺孔を螺接し、且つ、螺紋接管は透光ランプの管口に伸入し、集光レンズを畳接し、螺紋接管が透光球形ランプを螺接するもう一端の管縁は、導電基板が対応する凹部に照準する管壁を形成し、導電基板上のLEDを集光レンズに向け、導電基板はLEDもう一端の散熱ブロックを設置し、固定ベースを放入して固定する。LEDが点灯する時、LEDの光線は集光レンズを通過し、透光球形ランプに射入し、球形ランプ全体が発光して、広域照明になる。 The LED reflecting spherical lamp structure of the present invention comprises a translucent spherical lamp, an LED luminous flux guiding element, an LED luminous flux guiding element, and a heat dissipation block excellent in thermal conductivity and a fixed base. The LED luminous flux guiding element is composed of a screw-contact tube, a condenser lens, and a conductive substrate on which the LED is mounted. The screw-contact tube is used to screw the screw hole in the bottom of the translucent spherical lamp, and the screw-contact tube is connected to the tube port of the light-transmitting lamp. Extending, condensing the condensing lens, and the tube edge of the other end where the screw-contact tube is screwing the translucent spherical lamp forms a tube wall where the conductive substrate is aimed at the corresponding recess, collecting the LEDs on the conductive substrate Towards the light lens, the conductive substrate is installed with a heat dissipation block at the other end of the LED, and a fixed base is inserted and fixed. When the LED lights up, the LED beam passes through the condenser lens and enters the translucent spherical lamp, and the entire spherical lamp emits light, resulting in wide area illumination.

本考案により、LEDが点灯する時、LEDの光線は集光レンズを通過し、透光球形ランプに射入し、球形ランプ全体が発光して、広域照明になり、公知の球形ランプ照明製造コストより安く、加工が容易で、消耗電力も少なく、構造が回収に便利である長所が達成される。 According to the present invention, when the LED is lit, the light beam of the LED passes through the condenser lens and enters the translucent spherical lamp, and the entire spherical lamp emits light to produce wide area lighting, which is a known spherical lamp lighting manufacturing cost. Advantages are achieved that are cheaper, easier to process, consume less power, and that the structure is convenient for recovery.

図1は、本考案のLED反射球形ランプ構造の外観側視図で、図2は立体分解図である。図からわかるように、本考案の構造は、主に、透光球形ランプ10、LED光束導引素子20、LED光束導引素子20に連接し、導熱性に優れた散熱ブロック30、及び、固定ベース40、からなる。LED光束導引素子20は螺紋接管21、集光レンズ22、LED24を装着する導電基板23、からなり、導電基板23はアルミ、或いは、表面に銅箔回路を設置した回路板である。   FIG. 1 is an external side view of an LED reflecting spherical lamp structure of the present invention, and FIG. 2 is a three-dimensional exploded view. As can be seen from the figure, the structure of the present invention is mainly connected to the translucent spherical lamp 10, the LED light flux guiding element 20, the LED light flux guiding element 20, and the heat dissipation block 30 having excellent heat conductivity and the fixed. A base 40. The LED luminous flux guiding element 20 includes a screw-contact tube 21, a condenser lens 22, and a conductive substrate 23 on which the LED 24 is mounted. The conductive substrate 23 is aluminum or a circuit board on which a copper foil circuit is installed.

組み立て後の詳細な対応位置は図3の断面図で示され、螺紋接管21により透光球形ランプ10底の螺孔11を螺接し、且つ、螺孔11はアクリル材質からなる実心の透光ランプ10底端に直接スレッドを設置したものか、或いは、図で示されるように、透光球形ランプ10底端に穴を開けた後、内スレッド管12を嵌入したもので、螺紋接管21は透光球形ランプ10の管口に伸入し、集光レンズ22を畳接し、集光レンズ22は半曲面鏡体で、透光球形ランプ10の球心もう一端に向けて弧曲面を形成し、且つ、弧曲面中央底部内に、LED24を容設する凹部22Aを凹出し、螺紋接管21が透光球形ランプ10を螺接するもう一端の管縁は、導電基板23が対応する凹部23Aに照準する管壁21Aを形成し、導電基板23上のLED24を螺紋接管21に伸入させて集光レンズ22に向け、導電基板23はLED24もう一端の散熱ブロック30を設置し、固定ベース40を放入して、ねじ41により螺固方式で固定する。散熱ブロック30全体は、アルミなど、単一材質の板ブロックからなるか、或いは、本図と図2で示されるように、アルミの散熱ブロック主体31に散熱銅箔32を貼ってもよい。導熱基板25は散熱銅箔32により散熱ブロック主体31に連接される。LED24が点灯する時、図4の射光径路で示されるように、LED24の光線は集光レンズ22を通過し、透光球形ランプ10に射入し、球形ランプ10全体が発光して、広域照明になる。LED24は電力消耗、発熱が少なく、ランプ型照明のエネルギー消耗も減少し、且つ、回収処理が公知のタングステンランプより容易である。 The detailed corresponding position after the assembly is shown in the cross-sectional view of FIG. 3, and the screw hole 11 in the bottom of the transparent spherical lamp 10 is screwed by the screw-welded tube 21, and the screw hole 11 is an actual light transmission made of acrylic material. The thread is directly installed at the bottom end of the lamp 10 or, as shown in the figure, a hole is made in the bottom end of the translucent spherical lamp 10 and then the inner thread tube 12 is inserted. It extends into the tube opening of the translucent spherical lamp 10 and folds the condensing lens 22, and the condensing lens 22 is a semi-curved mirror body that forms an arc curved surface toward the other end of the sphere center of the translucent spherical lamp 10. In addition, a concave portion 22A for providing the LED 24 is protruded in the center bottom portion of the arc curved surface, and the other end of the tube-connecting tube 21 screwing the translucent spherical lamp 10 is aimed at the concave portion 23A corresponding to the conductive substrate 23. Tube wall 21A is formed, and the LED 24 on the conductive substrate 23 is screwed. 21 toward the condenser lens 22 by ShinIri the conductive substrate 23 is placed LED24 other end heat dissipation block 30, and HoIri the fixed base 40 and secured with threaded solid manner by screws 41. The entire heat dissipating block 30 is made of a single material plate block such as aluminum, or as shown in FIG. 2 and FIG. 2, a heat dissipating copper foil 32 may be attached to the main body 31 of the heat dissipating block. The heat conducting substrate 25 is connected to the heat dissipating block main body 31 by the heat dissipating copper foil 32. When the LED 24 is lit, the light beam of the LED 24 passes through the condenser lens 22 and enters the translucent spherical lamp 10 as shown by the emission path in FIG. become. The LED 24 consumes less power and heat, reduces the energy consumption of the lamp type illumination, and is easier to collect than the known tungsten lamp.

この他、図5は本考案のもう一つの実施例を示す図で、透光球形ランプ10表面部分に、塗布、或いは、印刷の方式で反光膜材13を付着させ、光飾効果を増加する。   In addition, FIG. 5 is a diagram showing another embodiment of the present invention. The light-reflective film material 13 is attached to the surface portion of the light-transmitting spherical lamp 10 by a coating or printing method to increase the light decoration effect. .

本考案のLED反射球形ランプ構造の外観立体図である。FIG. 3 is an external perspective view of the LED reflecting spherical lamp structure of the present invention. 本考案のLED反射球形ランプ構造の立体分解図である。It is a three-dimensional exploded view of the LED reflective spherical lamp structure of the present invention. 本考案のLED反射球形ランプ構造の構造断面図である。FIG. 2 is a structural cross-sectional view of an LED reflective spherical lamp structure of the present invention. 本考案のLED反射球形ランプ構造の射光径路図である。FIG. 3 is a light path diagram of the LED reflective spherical lamp structure of the present invention. 本考案のLED反射球形ランプ構造のもう一つの実施例図である。It is another Example figure of the LED reflective spherical lamp structure of this invention.

符号の説明Explanation of symbols

10 透光球形ランプ
11 螺孔
12 内スレッド管
13 反光膜材
20 LED光束導引素子
21 螺紋接管
21A 管壁
22 集光レンズ
22A 凹部
23 導電基板
23A 凹部
24 LED
30 散熱ブロック
31 散熱ブロック主体
32 散熱銅箔
40 固定ベース
41 ねじ
DESCRIPTION OF SYMBOLS 10 Translucent spherical lamp 11 Screw hole 12 Inner thread pipe | tube 13 Anti-light film material 20 LED light flux guide element 21 Screw pattern contact pipe 21A Tube wall 22 Condensing lens 22A Recess 23 Conductive substrate 23A Recess 24 LED
30 Heat Dissipation Block 31 Heat Dissipation Block Main Body 32 Heat Dissipation Copper Foil 40 Fixed Base 41 Screw

Claims (8)

LED反射球形ランプ構造であって、透光球形ランプ、LED光束導引素子、LED光束導引素子に連接し、導熱性に優れた散熱ブロック、及び、固定ベース、からなり、前記LED光束導引素子は螺紋接管、集光レンズ、LEDを装着する導電基板、からなり、前記螺紋接管により前記透光球形ランプ底の螺孔を螺接し、且つ、前記螺紋接管は前記透光ランプの管口に伸入し、集光レンズを畳接し、前記螺紋接管が前記透光球形ランプを螺接するもう一端の管縁は、前記導電基板が対応する凹部に照準する管壁を形成し、前記導電基板上のLEDを前記集光レンズに向け、前記導電基板はLEDもう一端の散熱ブロックを設置し、前記固定ベースを放入して固定し、前記LEDが点灯する時、前記LEDの光線は前記集光レンズを通過し、前記透光球形ランプに射入し、前記球形ランプ全体が発光して、広域照明になることを特徴とするLED反射球形ランプ構造。 LED reflective spherical lamp structure, comprising a translucent spherical lamp, an LED luminous flux guiding element, an LED luminous flux guiding element connected to the LED luminous flux guiding element, and a heat dissipation block excellent in thermal conductivity, and a fixed base, and the LED luminous flux guiding The element is composed of a screw-contact tube, a condenser lens, and a conductive substrate on which the LED is mounted. The screw-contact tube is screwed into a screw hole in the bottom of the translucent spherical lamp, and the screw-contact tube is connected to a tube opening of the light-transmitting lamp. The tube edge of the other end where the condensing lens is fold-contacted and the screw-contact tube is screw-contacted with the translucent spherical lamp forms a tube wall where the conductive substrate is aimed at a corresponding recess, The LED is directed to the condensing lens, the conductive substrate is installed with a heat dissipation block at the other end of the LED, the fixed base is introduced and fixed, and when the LED is turned on, the light beam of the LED is condensed Passing through the lens, entering the translucent spherical lamp, Whole pump is emitting light, LED reflective spherical lamp structure characterized by comprising a wide area illumination. 前記透光球形ランプはアクリル材質の実心体で、且つ、底端の螺孔は、前記透光球形ランプ底端から直接スレッドを設置したものであることを特徴とする請求項1に記載のLED反射球形ランプ構造。 The said translucent spherical lamp is a real core body of an acrylic material, and the screw hole of a bottom end is what installed the thread | sled directly from the said translucent spherical lamp bottom end. LED reflective spherical lamp structure. 前記透光球形ランプはアクリル材質の実心体で、且つ、底端の螺孔は、前記透光球形ランプ底端に穴を開けた後、内スレッド管を嵌入したものであることを特徴とする請求項1に記載のLED反射球形ランプ構造。 The translucent spherical lamp is a solid body made of an acrylic material, and the screw hole at the bottom end is formed by inserting an inner thread tube after making a hole at the bottom end of the translucent spherical lamp. The LED reflecting spherical lamp structure according to claim 1. 前記導電基板はアルミ材からなることを特徴とする請求項1に記載のLED反射球形ランプ構造。 The LED reflective spherical lamp structure according to claim 1, wherein the conductive substrate is made of an aluminum material. 前記導電基板は表面に銅箔回路を設置した回路板であることを特徴とする請求項1に記載のLED反射球形ランプ構造。 2. The LED reflective spherical lamp structure according to claim 1, wherein the conductive substrate is a circuit board having a copper foil circuit on the surface. 前記散熱ブロックは、散熱ブロック主体に散熱銅箔を貼ってなり、前記導電基板は前記散熱銅箔により前記散熱ブロック主体に連接されることを特徴とする請求項1に記載のLED反射球形ランプ構造。 2. The LED reflective spherical lamp structure according to claim 1, wherein the heat dissipating block is formed by attaching a heat dissipating copper foil to the heat dissipating block main body, and the conductive substrate is connected to the heat dissipating block main body by the heat dissipating copper foil. . 前記集光レンズは半曲面鏡体で、前記透光球形ランプの球心もう一端に向けて弧曲面を形成し、且つ、弧曲面中央底部内に、前記LEDを容設する凹部を凹出することを特徴とする請求項1、2、3、4、5、或いは、6に記載のLED反射球形ランプ構造。 The condensing lens is a semi-curved lens body, which forms an arc curved surface toward the other end of the sphere of the translucent spherical lamp, and projects a concave portion for installing the LED in the center bottom of the arc curved surface. The LED reflecting spherical lamp structure according to claim 1, 2, 3, 4, 5, or 6. 前記透光球形ランプ表面一部に、反光膜材を付着することを特徴とする請求項7に記載のLED反射球形ランプ構造。 The LED reflecting spherical lamp structure according to claim 7, wherein a light-reflecting film material is attached to a part of the surface of the translucent spherical lamp.
JP2007002718U 2007-04-17 2007-04-17 LED reflective spherical lamp structure Expired - Fee Related JP3133061U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011228204A (en) * 2010-04-22 2011-11-10 Toki Corporation Kk Light-emitting device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011228204A (en) * 2010-04-22 2011-11-10 Toki Corporation Kk Light-emitting device

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