JP4506646B2 - lighting equipment - Google Patents

lighting equipment

Info

Publication number
JP4506646B2
JP4506646B2 JP2005325475A JP2005325475A JP4506646B2 JP 4506646 B2 JP4506646 B2 JP 4506646B2 JP 2005325475 A JP2005325475 A JP 2005325475A JP 2005325475 A JP2005325475 A JP 2005325475A JP 4506646 B2 JP4506646 B2 JP 4506646B2
Authority
JP
Japan
Prior art keywords
lens
light
led
lighting fixture
emitted
Prior art date
Legal status (The legal status 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 status listed.)
Active
Application number
JP2005325475A
Other languages
Japanese (ja)
Other versions
JP2007134142A (en
Inventor
芳朗 後藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Corp
Panasonic Electric Works Co Ltd
Original Assignee
Panasonic Corp
Matsushita Electric Works Ltd
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 Panasonic Corp, Matsushita Electric Works Ltd filed Critical Panasonic Corp
Priority to JP2005325475A priority Critical patent/JP4506646B2/en
Publication of JP2007134142A publication Critical patent/JP2007134142A/en
Application granted granted Critical
Publication of JP4506646B2 publication Critical patent/JP4506646B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Description

本発明は、建築周辺部の灯り、又は公園や屋外通路を照射する景観照明用低ポール灯として適用可能な照明器具に関する。   The present invention relates to a luminaire that can be applied as a light around a building or as a low-pole lamp for landscape illumination that illuminates a park or outdoor passage.

従来から、この種の照明器具として、レンズを有しておらず、LEDから出射された光が直接照射される構成のものがあり、また、LEDの中心軸上にレンズの中心軸があって、この中心軸に対してレンズを回転自在に設け、集光度合いを変えることができるようにしたものがある。   Conventionally, as this type of lighting fixture, there is a configuration that does not have a lens and is directly irradiated with light emitted from the LED, and the central axis of the lens is on the central axis of the LED. Some lenses are provided so as to be rotatable with respect to the central axis so that the degree of light collection can be changed.

また、同様の照明器具において、照明される面を均一な照明強度分布で照明するためにLED素子の主放射方向に関して非対称に偏向する照明光学系、例えば、フレネルレンズを備えたものがある(例えば特許文献1参照)。また、LEDから出射された光を表示ムラのないように出射し、且つ、外部からの入射光を光出射方向に反射させないようにするため、砲弾状レンズを備えたものがある(例えば特許文献2参照)。
特開2003−209288号公報 特開2004−104077号公報
In addition, there is a similar luminaire including an illumination optical system that deflects asymmetrically with respect to the main radiation direction of the LED element, for example, a Fresnel lens, in order to illuminate the illuminated surface with a uniform illumination intensity distribution (for example, a Fresnel lens) Patent Document 1). Further, in order to emit the light emitted from the LED so as not to cause display unevenness and to prevent the incident light from the outside from being reflected in the light emitting direction, there is one provided with a bullet-shaped lens (for example, Patent Documents). 2).
JP 2003-209288 A JP 2004-104077 A

しかしながら、上述したような従来の照明器具において、照射方向を傾けたい場合、LEDをその方向に向けるだけであったため、光が照明器具の筐体に当たるなどの必要の無い箇所に照射されたり、複数のLEDが搭載されている照明器具においては、光が交差し、照射の光ムラになるなど器具効率が悪かった。また、特許文献1に示される照明器具に用いられているフレネルレンズは、断面形状が非常に細かなピッチと計算された角度を有するノコギリ状であるため、複雑な成形金型が必要とされ、また、フレネルレンズを屋外で使用する場合、汚れやすく、清掃しにくい問題があった。また、特許文献2に示される照明器具に用いられている砲弾状レンズは、レンズ自体の高さが高いため、レンズ自体が歩行者等の視野に入りやすく、グレアを起こす問題があった。   However, in the conventional lighting fixture as described above, when it is desired to tilt the irradiation direction, the LED is only directed in that direction. In the lighting fixture on which the LED is mounted, the efficiency of the fixture is poor, for example, the light intersects and the light becomes uneven. Further, since the Fresnel lens used in the lighting apparatus shown in Patent Document 1 has a sawtooth shape having a cross-sectional shape with a very fine pitch and a calculated angle, a complicated molding die is required, In addition, when the Fresnel lens is used outdoors, there is a problem that it is easily soiled and difficult to clean. In addition, the bullet-shaped lens used in the lighting apparatus disclosed in Patent Document 2 has a problem that the lens itself is easy to enter the field of view of a pedestrian or the like because of the high height of the lens itself, causing glare.

本発明は、上記従来の問題を解決するためになされたものであり、所望の光出射方向に広く配光制御しつつ、照明器具の筐体に照射される光やグレアを起こす光を減らし、また、複数のLEDが搭載されている場合、一方のLEDによって照射されている箇所への他方のLEDから出射される光を減らすことにより、光の交差による照射の光ムラにならないようにした照明器具を提供することを目的とする。   The present invention has been made to solve the above-described conventional problems, while widely controlling light distribution in a desired light emission direction, while reducing light that irradiates the housing of the lighting fixture and light that causes glare, In addition, when a plurality of LEDs are mounted, the light emitted from the other LED to the portion irradiated by the one LED is reduced so as not to cause light unevenness due to the intersection of the light. The purpose is to provide equipment.

上記目的を達成するために請求項1の発明は、光源としてのLEDと、LEDから出射される光を所定の方向に制御する光学部品としてのレンズと、LED及び光学部品を所定の高さに保持するための支柱と、を備える照明器具において、レンズは、所望の光出射方向に対応するレンズ面の傾斜角を、支柱側、及び/又は所望の光出射方向以外にある開口方向に対応するレンズ面の傾斜角よりも小さくしたものである。   In order to achieve the above object, the invention of claim 1 includes an LED as a light source, a lens as an optical component that controls light emitted from the LED in a predetermined direction, and the LED and the optical component at a predetermined height. In a lighting fixture including a support column for holding, the lens corresponds to a tilt angle of a lens surface corresponding to a desired light emission direction, and / or an opening direction other than the desired light emission direction. This is smaller than the inclination angle of the lens surface.

請求項2の発明は、請求項1に記載の照明器具において、レンズは、支柱側、及び/又は所望の光出射方向以外にある開口方向に対応する位置のレンズ材質の屈折率を、所望の光出射方向に対応する位置のレンズ材質の屈折率よりも大きくしたものである。   According to a second aspect of the present invention, in the lighting apparatus according to the first aspect, the lens has a desired refractive index of the lens material at a position corresponding to the support column side and / or the opening direction other than the desired light emitting direction. This is larger than the refractive index of the lens material at the position corresponding to the light emitting direction.

請求項1の発明によれば、支柱側や光出射を必要としない方向へ照射される光が低減され、所望の光出射方向に光を照射することができ、適切な配光が得られる。   According to the first aspect of the present invention, light irradiated in the column side or in a direction not requiring light emission is reduced, light can be emitted in a desired light emission direction, and an appropriate light distribution can be obtained.

請求項2の発明によれば、上記請求項1による効果をさらに高めることが可能となる。   According to the invention of claim 2, the effect of claim 1 can be further enhanced.

以下、本発明の一実施の形態に係る照明器具について、図面を参照して説明する。図1は実施形態1による照明器具1を示し、図2及至図3は図1のA部を示す。この照明器具1は、建築周辺部の灯り、又は、公園や屋外通路を照射する景観照明用低ポール灯として適用可能である。照明器具1は、光源としてのLED2と、LED2から出射される光を所定の方向に制御する光学部品としてのレンズ3と、このレンズ3が配設されているカバー4と、これらLED2、レンズ3及びカバー4を所定の高さに保持するための筐体5と、を備える。筐体5は両側に開口5eが設けられており、この筐体5内の上部に2つのLED2が組み込まれ、各LED2はそれぞれレンズ3を介して筐体5の両開口5eより光出射している。   Hereinafter, the lighting fixture which concerns on one embodiment of this invention is demonstrated with reference to drawings. FIG. 1 shows a luminaire 1 according to Embodiment 1, and FIGS. 2 to 3 show part A of FIG. This luminaire 1 can be applied as a light around a building or as a low-pole lamp for landscape illumination that irradiates a park or outdoor passage. The luminaire 1 includes an LED 2 as a light source, a lens 3 as an optical component that controls light emitted from the LED 2 in a predetermined direction, a cover 4 on which the lens 3 is disposed, the LED 2 and the lens 3. And a housing 5 for holding the cover 4 at a predetermined height. The housing 5 is provided with openings 5 e on both sides, and two LEDs 2 are incorporated in the upper portion of the housing 5, and each LED 2 emits light from both openings 5 e of the housing 5 through the lens 3. Yes.

筐体5は、上方に配置された略矩形状の天板5aと、下方に配置された略矩形状の底板5bと、これら天板5aと底板5bを連結する左右一対の支柱5cにより構成され、この一対の支柱5c間は空間とされ、その前面側及び背面側(以下、両側という)は開口5eとされている。支柱5cの内面を側板5dと称す。LED2は、筐体5内の天板5aの下面で開口5eの幅方向の略中心線上にそれぞれ配設されている。   The housing 5 includes a substantially rectangular top plate 5a disposed above, a substantially rectangular bottom plate 5b disposed below, and a pair of left and right columns 5c that connect the top plate 5a and the bottom plate 5b. The space between the pair of columns 5c is a space, and the front side and the back side (hereinafter referred to as both sides) are openings 5e. The inner surface of the column 5c is referred to as a side plate 5d. The LEDs 2 are respectively disposed on substantially the center line in the width direction of the opening 5 e on the lower surface of the top plate 5 a in the housing 5.

2つのLED2は、筐体5の開口5eに向けてそれぞれ下方に所定の角度で傾いて配置され、レンズ3を有するカバー4に覆われている。この所定の角度は、本照明装置1により照射される領域が、この照明器具1の前方側及び後方側であって設置面の周辺近傍となるように適宜設定される。このような照射方向を所望の照射方向という。カバー4は天板5aの下面に取付けられる。カバー4には、LED2をカバー4内に配置するための支持体6(図3参照)が設けられている。この支持体6は、アタッチメント6aと、支持プレート6bと、支持具6cとから構成されている。LED2は平板状のアタッチメント6aに配設され、このアタッチメント6aは、上記所定の角度に保持するために曲げ加工された支持プレート6bに固定され、この支持プレート6bは、カバー4の略中央に配設された支持具6cに取付けられている。   The two LEDs 2 are arranged to be inclined downward at a predetermined angle toward the opening 5 e of the housing 5, and are covered with a cover 4 having a lens 3. The predetermined angle is appropriately set so that the area irradiated by the lighting device 1 is on the front side and the rear side of the lighting fixture 1 and in the vicinity of the periphery of the installation surface. Such an irradiation direction is called a desired irradiation direction. The cover 4 is attached to the lower surface of the top plate 5a. The cover 4 is provided with a support 6 (see FIG. 3) for arranging the LEDs 2 in the cover 4. The support body 6 includes an attachment 6a, a support plate 6b, and a support tool 6c. The LED 2 is disposed on a flat-plate attachment 6 a, and this attachment 6 a is fixed to a support plate 6 b that is bent so as to be held at the predetermined angle. The support plate 6 b is disposed substantially at the center of the cover 4. It is attached to the provided support 6c.

カバー4は、断面形状が略V字状を成し、両側の傾斜面にレンズ3を有する。レンズ3はカバー4に配設されており、LED2から出射された光がレンズ3により所望の配光となるように、LED2と対向して配設されている。レンズ3は、立上りを緩やかにして傾斜角を小さくしたレンズ3aと、立上りを急峻にして傾斜角を大きくしたレンズ3bとから構成される。レンズ3aは所望の光出射方向に対応する位置、つまり、筐体5の開口5e側に配置され、レンズ3bは支柱5c側、及び所望の光出射方向にある開口5e側とは反対側である、所望の光出射方向以外にある開口方向に対応する位置、つまり筐体5の中央側に配置される。レンズ3のレンズ3aとレンズ3bは、略半球状の凸型に一体成形されている。なお、図2において、レンズ3aとレンズ3bを区別するための領域線を記しているが、実際には、この線は目視されるものではない。   The cover 4 has a substantially V-shaped cross section, and has lenses 3 on both inclined surfaces. The lens 3 is disposed on the cover 4 and is disposed to face the LED 2 so that the light emitted from the LED 2 has a desired light distribution by the lens 3. The lens 3 includes a lens 3a having a gentle rise and a small inclination angle, and a lens 3b having a sharp rise and a large inclination angle. The lens 3a is disposed at a position corresponding to a desired light emission direction, that is, on the opening 5e side of the housing 5, and the lens 3b is on the side opposite to the support 5c side and the opening 5e side in the desired light emission direction. The position corresponding to the opening direction other than the desired light emitting direction, that is, the central side of the housing 5 is arranged. The lens 3a and the lens 3b of the lens 3 are integrally formed in a substantially hemispherical convex shape. In FIG. 2, an area line for distinguishing between the lens 3a and the lens 3b is shown, but actually, this line is not visually observed.

レンズ3の上方部とカバー4とが接する点RとLED2の中心軸Oとの距離ORが、レンズ3の下方とカバー4とが接する点PとLED2の中心軸Oとの距離OPよりも大きく、OR>OPとされている。従って、距離OPが距離ORよりも短くされることにより、LED2の中心軸Oから筐体5の中央側に大きく傾いてレンズ3から外れた方向に出射される光は、カバー4で反射される。また、レンズ3b面は大きい傾斜角とされ、LED2からレンズ3bに出射された光8bは略下方に屈折する。これにより、一方のLED2は他方のLED2により照射されている側に照射しない。また、距離ORは距離OPよりも長くされ、レンズ3a面は小さい傾斜角とされている。これにより、LED2からレンズ3aに出射された光8aは所望の照射方向に若干屈折して照射される。   A distance OR between a point R where the upper portion of the lens 3 is in contact with the cover 4 and the central axis O of the LED 2 is larger than a distance OP between a point P where the lower portion of the lens 3 is in contact with the cover 4 and the central axis O of the LED 2. , OR> OP. Therefore, when the distance OP is made shorter than the distance OR, the light emitted in a direction that is largely inclined from the central axis O of the LED 2 toward the center of the housing 5 and deviates from the lens 3 is reflected by the cover 4. The surface of the lens 3b has a large inclination angle, and the light 8b emitted from the LED 2 to the lens 3b is refracted substantially downward. Thereby, one LED2 does not irradiate the side irradiated by the other LED2. The distance OR is longer than the distance OP, and the lens 3a surface has a small inclination angle. Thereby, the light 8a emitted from the LED 2 to the lens 3a is irradiated with being slightly refracted in a desired irradiation direction.

また、照明器具1は、図4に示す変形例のように、LED2とレンズ3を形成しているカバー4との間にシリコン系の充填材を入れることも可能である。これにより、耐結露対策、防水構造が容易に実施できる。   Moreover, the lighting fixture 1 can also insert a silicon-type filler between LED2 and the cover 4 which forms the lens 3, like the modification shown in FIG. As a result, anti-condensation measures and a waterproof structure can be easily implemented.

上記実施形態1の照明器具1の作用について次に説明する。LED2から所望の照射方向へ出射された光は、レンズ3aにより若干屈折し、若しくは屈折することなく所望の照射方向であって器具から離れた位置へも照射され、広範囲に照射される。さらに、LED2から上方へ出射される光は、レンズ3aにより若干下方に屈折して低減され、歩行者等の視線との位置関係によりグレアにならないようになる。また、LED2から筐体5の側板5dの存在する方向や所望の照射方向の反対側へ出射される光は、レンズ3bにより下方へ屈折して照射されるので、余分な方向への照射は低減される。   Next, the operation of the lighting fixture 1 of the first embodiment will be described. The light emitted from the LED 2 in the desired irradiation direction is slightly refracted by the lens 3a, or is irradiated to a position in the desired irradiation direction and away from the instrument without being refracted, and is irradiated in a wide range. Further, the light emitted upward from the LED 2 is slightly refracted and reduced downward by the lens 3a, and does not become glare due to the positional relationship with the line of sight of a pedestrian or the like. Further, the light emitted from the LED 2 in the direction in which the side plate 5d of the housing 5 is present or on the side opposite to the desired irradiation direction is refracted and irradiated downward by the lens 3b, so that irradiation in an extra direction is reduced. Is done.

図5及至図7は照明器具1の配光曲線7a、7b、7cを示す。図5は一般のレンズのないフラットなカバーにLEDを入れた照明器具の側面から見た配光曲線7aを示し、図6は本実施形態のレンズ3を有したカバー4(レンズ付き)内にLED2を入れた照明器具1の側面から見た配光曲線7bを示す。これら配光曲線7aと、7bとを比べると、所望の照射方向の反対側に出射される光の割合は、レンズなしの完全拡散の照明器具より減少している。また、図7は本実施形態のレンズ3を有したカバー4(レンズ付き)内にLED2を入れた照明器具1の上方から見た配光曲線7cを示し、このような配光曲線7cとなることから、照明器具1から前方に離れた場所への光の量が増えていることが分かる。   5 to 7 show the light distribution curves 7a, 7b, and 7c of the lighting fixture 1. FIG. FIG. 5 shows a light distribution curve 7a as seen from the side of a luminaire in which LEDs are placed in a flat cover without a lens, and FIG. 6 is inside the cover 4 (with a lens) having the lens 3 of the present embodiment. The light distribution curve 7b seen from the side surface of the lighting fixture 1 which put LED2 is shown. Comparing these light distribution curves 7a and 7b, the ratio of the light emitted to the opposite side of the desired irradiation direction is smaller than that of a fully diffusing lighting apparatus without a lens. Moreover, FIG. 7 shows the light distribution curve 7c seen from the upper direction of the lighting fixture 1 which put LED2 in the cover 4 (with a lens) which has the lens 3 of this embodiment, and becomes such a light distribution curve 7c. From this, it can be seen that the amount of light to the place away from the lighting fixture 1 is increasing.

図8及び図9は、照明器具1のレンズ3を通して照射される光の方向を示す。図8において、8aはLED2からレンズ3aへ出射された光を示す。LED2から出射され、レンズ3aの下方付近を通って照射される光は、水平方向に向けて屈折し、また、所望の照射方向と略一致する出射光は、屈折することなく照射され、また、略水平方向に近い角度に出射された光は、若干下方向に屈折して照射される。また、図9において、8bはLED2からレンズ3bへ出射された光を示す。レンズ3bの下部とカバー4とが接触している箇所よりもさらに角度をもって照射され、レンズ3から外れた光はカバー4により反射され、所望の照射領域には照射されない。また、上記よりも小さい角度でレンズ3bを通る光は略下方向へ屈折し、有効に所望の照射領域に照射される。   8 and 9 show the direction of light emitted through the lens 3 of the luminaire 1. In FIG. 8, 8a shows the light radiate | emitted from LED2 to the lens 3a. The light emitted from the LED 2 and irradiated through the vicinity of the lower portion of the lens 3a is refracted in the horizontal direction, and the emitted light substantially coincident with the desired irradiation direction is irradiated without being refracted. Light emitted at an angle close to the substantially horizontal direction is refracted slightly downward and irradiated. Moreover, in FIG. 9, 8b shows the light radiate | emitted from LED2 to the lens 3b. Irradiation is performed at a further angle than the portion where the lower portion of the lens 3b and the cover 4 are in contact, and light deviating from the lens 3 is reflected by the cover 4 and is not irradiated to a desired irradiation area. Further, light passing through the lens 3b at an angle smaller than the above is refracted substantially downward and is effectively irradiated to a desired irradiation region.

このように、実施形態1の照明器具1によれば、レンズ3により所望の配光が得られるため、照射したい光の角度までLED2の位置を高くする必要がなく、LED2が配置される位置を低くすることができる。また、複数のLED2とレンズ3により各方向に光を照射する場合にも、方向ごとに所望の配光が得られるため、所望の光出射方向以外に照射される光を低減することができる。   Thus, according to the lighting fixture 1 of Embodiment 1, since the desired light distribution is obtained by the lens 3, it is not necessary to increase the position of the LED 2 up to the angle of the light to be irradiated, and the position where the LED 2 is disposed is determined. Can be lowered. Also, when light is emitted in each direction by the plurality of LEDs 2 and the lens 3, since desired light distribution can be obtained for each direction, it is possible to reduce the light emitted in directions other than the desired light emission direction.

レンズ3のレンズ3aとレンズ3bは、略半球状の凸型に一体成形されているので、成形金型形状も鋭角部がないため、スライド型を使わずに形成でき、清掃もし易い。その上、光出射方向に応じて、レンズ3の部位によって適切な傾斜角に形成されているため、余分な高さがなく、砲弾形状の集光凸レンズよりもレンズ自体の高さを低くできる。   Since the lens 3a and the lens 3b of the lens 3 are integrally formed in a substantially hemispherical convex mold, the molding die has no acute angle portion, and therefore can be formed without using a slide mold and easy to clean. In addition, since the lens 3 is formed at an appropriate inclination angle according to the light emitting direction, there is no extra height, and the height of the lens itself can be made lower than that of a shell-shaped condensing convex lens.

図10は実施形態2による照明器具1を示す。この実施形態においては、筐体5の支柱5cが平面視四隅に設けられており、筐体5の前面側及び背面側、並びに右側面側及び左側面側にそれぞれ開口5eが設けられ、筐体5の中央部からそれぞれの支柱5cに向かって放射線状に側板5dが配設されている。LED2は、筐体5内の天板5aの下面で開口5eの幅方向の略中心線上にそれぞれ配設されている。その他の構成は実施形態1と同様とされている。この構成により、照明器具1は、開口5eのある4方向に実施形態1の効果と同様の配光制御された光を出射することができる。   FIG. 10 shows a lighting fixture 1 according to the second embodiment. In this embodiment, the pillars 5c of the housing 5 are provided at the four corners in plan view, and the openings 5e are provided on the front and rear sides, the right side, and the left side of the housing 5, respectively. Side plates 5d are arranged radially from the central portion of 5 toward the respective columns 5c. The LEDs 2 are respectively disposed on substantially the center line in the width direction of the opening 5 e on the lower surface of the top plate 5 a in the housing 5. Other configurations are the same as those of the first embodiment. With this configuration, the luminaire 1 can emit light whose light distribution is controlled in the same direction as the effect of the first embodiment in the four directions having the openings 5e.

図11は実施形態3による照明器具1を示す。この実施形態においては、上記実施形態1の構成に加えて、レンズ3が、所望の光出射方向に対応する位置のレンズ3aの材質に、出射光を大きく屈折させない屈折率の低いアクリルなどを用い、また、支柱5c側、及び所望の光出射方向以外にある開口方向(すなわち、反対側方向)に対応する位置のレンズ3bの材質に、出射光を大きく屈折させる屈折率の高いポリカーボネイトなどを用いて成形されている。この構成により、LED2から出射された光は、レンズ3の傾斜角による配光制御の効果をより高められて照射される。   FIG. 11 shows a lighting fixture 1 according to the third embodiment. In this embodiment, in addition to the configuration of the first embodiment, the lens 3 uses, for example, an acrylic having a low refractive index that does not refract the emitted light greatly, as the material of the lens 3a at a position corresponding to the desired light emitting direction. In addition, a polycarbonate having a high refractive index that greatly refracts the emitted light is used as the material of the lens 3b at a position corresponding to the support 5c side and the opening direction (that is, the opposite direction) other than the desired light emitting direction. Are molded. With this configuration, the light emitted from the LED 2 is irradiated with an enhanced light distribution control effect by the inclination angle of the lens 3.

なお、本発明は、上記各種実施形態の構成に限られず、発明の趣旨を変更しない範囲で種々の変形が可能である。例えば、上記実施形態においてはLEDが照明器具の取付方向に対して斜めに配置されているが、平行や垂直に配置された照明器具において配光制御する場合にも有効である。また、上記では、レンズ3bが、支柱5c側、及び所望の光出射方向にある開口5e側とは反対側である開口5e方向に対応する位置(非所望位置)に対応して配置されるものを示したが、少なくとも、支柱5c側、又は非所望位置に対応して配置されるものであってもよい。   In addition, this invention is not restricted to the structure of the said various embodiment, A various deformation | transformation is possible in the range which does not change the meaning of invention. For example, in the above-described embodiment, the LEDs are arranged obliquely with respect to the mounting direction of the luminaire, but this is also effective when light distribution is controlled in a luminaire arranged in parallel or vertically. Further, in the above, the lens 3b is disposed corresponding to the position (undesired position) corresponding to the opening 5e direction opposite to the support 5c side and the opening 5e side in the desired light emitting direction. However, it may be arranged corresponding to at least the column 5c side or an undesired position.

本発明の実施形態1に係る照明器具の斜視図。The perspective view of the lighting fixture which concerns on Embodiment 1 of this invention. 図1のA部の拡大図。The enlarged view of the A section of FIG. 図2のB−B線断面図。BB sectional drawing of FIG. 上記変形例における図2のB−B線断面図。BB sectional drawing of FIG. 2 in the said modification. 一般の照明器具のレンズ無し状態の側面から見た配光曲線図。The light distribution curve figure seen from the side of the state without a lens of a general lighting fixture. 本実施形態の照明器具のレンズ付状態の側面から見た配光曲線図。The light distribution curve figure seen from the side surface of the state with a lens of the lighting fixture of this embodiment. 同照明器具のレンズ付状態の上方から見た配光曲線図。The light distribution curve figure seen from the upper direction of the state with a lens of the lighting fixture. 同照明器具のレンズ下部からの光出射方向を示す図。The figure which shows the light emission direction from the lens lower part of the lighting fixture. 同照明器具のレンズ上部からの光出射方向を示す図。The figure which shows the light emission direction from the lens upper part of the lighting fixture. 本発明の実施形態2に係る照明器具の斜視図。The perspective view of the lighting fixture which concerns on Embodiment 2 of this invention. 本発明の実施形態3に係る照明器具の斜視図。The perspective view of the lighting fixture which concerns on Embodiment 3 of this invention.

符号の説明Explanation of symbols

1 照明器具
2 LED
3 レンズ
4 カバー
5 筐体
6 支持体
7 配光曲線
8 光出射方向
9 充填材
1 Lighting equipment 2 LED
3 Lens 4 Cover 5 Housing 6 Support 7 Light distribution curve 8 Light exit direction 9 Filler

Claims (2)

光源としてのLEDと、前記LEDから出射される光を所定の方向に制御する光学部品としてのレンズと、前記LED及び前記光学部品を所定の高さに保持するための支柱と、を備える照明器具において、
前記レンズは、所望の光出射方向に対応するレンズ面の傾斜角を、前記支柱側、及び/又は所望の光出射方向以外にある開口方向に対応するレンズ面の傾斜角よりも小さくしたことを特徴とする照明器具。
A luminaire comprising: an LED as a light source; a lens as an optical component that controls light emitted from the LED in a predetermined direction; and a support for holding the LED and the optical component at a predetermined height. In
In the lens, the inclination angle of the lens surface corresponding to a desired light emission direction is made smaller than the inclination angle of the lens surface corresponding to an opening direction other than the column side and / or the desired light emission direction. Characteristic lighting equipment.
前記レンズは、前記支柱側、及び/又は所望の光出射方向以外にある開口方向に対応する位置のレンズ材質の屈折率を、所望の光出射方向に対応する位置のレンズ材質の屈折率よりも大きくしたことを特徴とする請求項1に記載の照明器具。   The lens has a refractive index of a lens material at a position corresponding to an opening direction other than the column and / or a desired light emitting direction, than a refractive index of a lens material at a position corresponding to a desired light emitting direction. The lighting fixture according to claim 1, wherein the lighting fixture is enlarged.
JP2005325475A 2005-11-09 2005-11-09 lighting equipment Active JP4506646B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005325475A JP4506646B2 (en) 2005-11-09 2005-11-09 lighting equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2005325475A JP4506646B2 (en) 2005-11-09 2005-11-09 lighting equipment

Publications (2)

Publication Number Publication Date
JP2007134142A JP2007134142A (en) 2007-05-31
JP4506646B2 true JP4506646B2 (en) 2010-07-21

Family

ID=38155635

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2005325475A Active JP4506646B2 (en) 2005-11-09 2005-11-09 lighting equipment

Country Status (1)

Country Link
JP (1) JP4506646B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5507190B2 (en) * 2009-10-06 2014-05-28 コイト電工株式会社 LIGHTING LENS AND LIGHTING DEVICE
JP5501082B2 (en) * 2010-04-22 2014-05-21 パナソニック株式会社 lighting equipment

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03283201A (en) * 1990-03-29 1991-12-13 Mitsubishi Denki Shomei Kk Exterior illumination system
JPH0485501A (en) * 1990-07-30 1992-03-18 Alps Electric Co Ltd Lens and its manufacture
JPH06177424A (en) * 1992-12-03 1994-06-24 Rohm Co Ltd Light emitting diode lamp and assembled light emitting diode display device
JP2000507042A (en) * 1997-01-23 2000-06-06 コーニンクレッカ フィリップス エレクトロニクス エヌ ヴィ lighting equipment
JP2002036949A (en) * 2000-07-28 2002-02-06 Toyoda Gosei Co Ltd Lighting fixture
JP2002322621A (en) * 2001-02-21 2002-11-08 Tobata Tekko Kk Car stopper
JP2003209288A (en) * 2001-11-28 2003-07-25 Osram Opto Semiconductors Gmbh Led illumination system
JP2004104077A (en) * 2002-07-17 2004-04-02 Sharp Corp Light-emitting diode lamp and display device of light-emitting diode

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03283201A (en) * 1990-03-29 1991-12-13 Mitsubishi Denki Shomei Kk Exterior illumination system
JPH0485501A (en) * 1990-07-30 1992-03-18 Alps Electric Co Ltd Lens and its manufacture
JPH06177424A (en) * 1992-12-03 1994-06-24 Rohm Co Ltd Light emitting diode lamp and assembled light emitting diode display device
JP2000507042A (en) * 1997-01-23 2000-06-06 コーニンクレッカ フィリップス エレクトロニクス エヌ ヴィ lighting equipment
JP2002036949A (en) * 2000-07-28 2002-02-06 Toyoda Gosei Co Ltd Lighting fixture
JP2002322621A (en) * 2001-02-21 2002-11-08 Tobata Tekko Kk Car stopper
JP2003209288A (en) * 2001-11-28 2003-07-25 Osram Opto Semiconductors Gmbh Led illumination system
JP2004104077A (en) * 2002-07-17 2004-04-02 Sharp Corp Light-emitting diode lamp and display device of light-emitting diode

Also Published As

Publication number Publication date
JP2007134142A (en) 2007-05-31

Similar Documents

Publication Publication Date Title
US10352549B2 (en) LED luminaire tertiary optic system
US7470047B2 (en) Lighting device with integration sheet
EP2056017A1 (en) Light refracting plate
US7954987B2 (en) Vehicle lamp
JP4436396B2 (en) Lighting module, light source unit, and lighting fixture
EP2410240A1 (en) Optical device for an led light bulb
US10359167B2 (en) Vehicular lighting
EP3152482B1 (en) Wall wash lighting system
JP2012182117A (en) Tubular lighting fixture, casing for tubular lighting fixture and both-side inner illumination-type signboard
JP6250137B2 (en) Light source device and illumination device
JP4506611B2 (en) LED lighting equipment
JP5895187B2 (en) LED lighting fixtures
JP4506646B2 (en) lighting equipment
KR101866812B1 (en) Lighting apparatus with indirect lighting type
US20170254504A1 (en) Optical member for spot flood lights
JP5588217B2 (en) Lighting device
JP6988249B2 (en) Light source unit and lighting equipment
KR101109126B1 (en) Display apparatus
JP5314639B2 (en) Vehicle lighting
KR102020984B1 (en) Led lighting apparatus with indirect lighting type
KR101448389B1 (en) LED Light Distribution Module Having Controlling Plate of Illuminating Area
JP6239309B2 (en) Lighting unit and lighting device using the same
JP5481582B1 (en) LED lighting device
KR101209903B1 (en) Ubfg control led lamp with panel for adjusting light angle
JP5591971B1 (en) LED lighting device

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20080806

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20100312

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20100406

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20100419

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20130514

Year of fee payment: 3

R150 Certificate of patent or registration of utility model

Ref document number: 4506646

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20130514

Year of fee payment: 3