WO2016086427A2 - 水族箱养殖照明装置 - Google Patents

水族箱养殖照明装置 Download PDF

Info

Publication number
WO2016086427A2
WO2016086427A2 PCT/CN2014/093205 CN2014093205W WO2016086427A2 WO 2016086427 A2 WO2016086427 A2 WO 2016086427A2 CN 2014093205 W CN2014093205 W CN 2014093205W WO 2016086427 A2 WO2016086427 A2 WO 2016086427A2
Authority
WO
WIPO (PCT)
Prior art keywords
light
light incident
angle
incident surface
lens
Prior art date
Application number
PCT/CN2014/093205
Other languages
English (en)
French (fr)
Other versions
WO2016086427A3 (zh
Inventor
常君斌
Original Assignee
常君斌
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 常君斌 filed Critical 常君斌
Priority to CN201480083081.4A priority Critical patent/CN107002977B/zh
Priority to PCT/CN2014/093205 priority patent/WO2016086427A2/zh
Publication of WO2016086427A2 publication Critical patent/WO2016086427A2/zh
Publication of WO2016086427A3 publication Critical patent/WO2016086427A3/zh

Links

Classifications

    • 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
    • F21V5/00Refractors for light sources
    • F21V5/04Refractors for light sources of lens shape
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K63/00Receptacles for live fish, e.g. aquaria; Terraria
    • A01K63/06Arrangements for heating or lighting in, or attached to, receptacles for live fish

Definitions

  • the invention relates to an aquarium culture lighting device.
  • the aquarium culture lighting system in the prior art is usually directly irradiated by a fluorescent lamp, or directly illuminated by an LED lamp group, the light exiting angle is small, and the formed spot is small, and the spacing is defined as D, and the bottom distance from the diffusion plate is H, the existing H/D value is generally around 0.3, resulting in a larger number of required, the overall thickness of the device is larger, so its manufacturing cost is higher, and deeper
  • the problem at the level is that, due to the inability to form a uniform illumination effect, for aquaculture, it is impossible to simulate the effect of daylight rays, causing disturbance to fish light induction, causing hormonal disturbances in farmed fish, and long-term accumulation is prone to growth diseases.
  • an object of the present invention to provide an aquarium culture lighting device which has a large exit angle of light and a large and uniform spot.
  • the present invention provides a transparent axisymmetric entity including a light source and a light source overlying the light source, the transparent axisymmetric entity comprising:
  • first light incident surface above the light source, wherein the first light incident surface has a spherical shape that bulges toward the light source;
  • the first light incident surface and the second light incident surface together form a cavity for receiving incident light rays corresponding to the corresponding angle from the bottom surface (A7) of the lens.
  • a ring-shaped prism group having a swirl shape formed around the center on the bottom surface;
  • a reflective cone located above the first light incident surface, the reflective cone being recessed downward by a top surface of the lens to form a near-tapered surface, the apex of the reflective cone, and the center of the first light-incident surface
  • the line connecting the point and the center point of the light source constitutes the axisymmetric line of the lens, and the top surface of the lens is a smooth free curved surface or a frosted surface;
  • the light incident from the first light incident surface is transmitted from the near taper surface upward when the angle incident on the near tapered surface is smaller than the total reflection angle;
  • the light incident from the first light incident surface when the angle incident on the near-conical surface is greater than or equal to the total reflection angle, is reflected from the near-conical surface to the cylindrical light-emitting surface, and then transmitted to the surroundings;
  • the light incident from the first light incident surface is transmitted and emitted when incident on the top surface;
  • the light incident from the second light incident surface when the angle incident on the light exit surface of the variable curvature spherical surface is greater than or equal to the total reflection angle, is reflected to the prism group of the bottom surface, and is reflected by the prism group and then emitted;
  • the light incident from the second light incident surface when incident on the light exit surface of the variable curvature spherical surface is smaller than the total reflection angle, is transmitted through the variable curvature spherical surface and transmitted.
  • the transparent axisymmetric entity has a tower shape that is small and large, and the light source is located inside a cavity for receiving incident light of a corresponding angle, and the reflection cone constitutes a forward direction.
  • the flared light-emitting portion and the remaining side portions constitute a lateral light-emitting portion.
  • the annular prism group has an acute-angled triangle in a cross section, and the acute-angled triangle is composed of a first side, a second side, and a bottom surface, and the first side and the bottom surface are The angle between the second side and the bottom surface is ⁇ , and the angle ⁇ is changed in the range away from the light incident surface in the range of ⁇ 1 to ⁇ 2 to ⁇ 3, and ⁇ 1> ⁇ 3 > ⁇ 2, the ⁇ angle changes in a range from ⁇ 1 to ⁇ 2 to ⁇ 3 in a direction away from the light incident surface, and ⁇ 2> ⁇ 1> ⁇ 3.
  • the ⁇ 1 is in the range of 53° to 59°
  • the ⁇ 2 is in the range of 33° to 42°
  • the ⁇ 3 is in the range of 43° to 52°.
  • the ⁇ 1 is in the range of 78° to 108°
  • the ⁇ 2 is in the range of 90° to 112°
  • the ⁇ 3 is in the range of 78° to 88°.
  • the prism group is made by a rotary cutting process.
  • the transparent axisymmetric entity is made of a glass or optical resin material.
  • the beneficial effect of adopting the design scheme of the present invention is that the light angle of the overall illumination is large, so that the spot is large and uniform, the number of the light source can be effectively reduced, and the uniformity of the natural light is uniform, which is beneficial to the fish.
  • FIG. 1 is a schematic cross-sectional view of an aquarium culture lighting device in accordance with the present invention.
  • FIG. 2 is a partially enlarged schematic view of an aquarium culture lighting device in accordance with the present invention.
  • Figure 3 is a bottom plan view of an aquarium culture lighting device in accordance with the present invention.
  • an aquarium culture lighting device which covers an axisymmetric entity made of a transparent material (e.g., glass or optical resin material) over a light source, including
  • the bottom, the middle, the top, the bottom, the middle, and the top are sequentially formed in the lower and upper directions, and are integrally formed in a tower shape that is small and large, and the light source is placed inside the cavity of the lens for receiving the incident light of the corresponding angle ( In the center of the bottom of the tower, the reflecting cone constitutes a forward flared light-emitting portion, and the remaining side portions constitute a lateral light-emitting portion.
  • a transparent material e.g., glass or optical resin material
  • the aquarium culture lighting device comprises a first light incident surface A0 located above the light source, a second light incident surface A1 surrounding the light source, a reflective cone above the first light incident surface A0, and a reflective cone from the top of the lens.
  • the surface A8 is recessed downward to form a near-tapered surface A2, a cylindrical light-emitting surface A4 surrounding the reflective cone, and a variable-curvature spherical surface A5 and A6 surrounding the second light-incident surface A1.
  • the first light incident surface A0 is in the shape of a spherical surface bulging toward the light source, and is used for receiving the upwardly emitted light of the light source; the second light incident surface A1 is for receiving the light emitted from the side of the light source, the first light incident surface A0,
  • the second light incident surface A1 collectively constitutes a cavity recessed upward from the bottom surface A7 of the lens for receiving incident light of a corresponding angle.
  • the light source includes a light source disposed on the PCB, and the bottom surface A7 of the lens is attached to the PCB.
  • the curvature of the curved surface of the curved surface A5, A6 gradually increases from top to bottom.
  • the apex A3 of the reflective cone, the center point of the first light incident surface A0, and the line connecting the center point of the light source constitute an axisymmetric line of the lens
  • the top surface A8 of the lens is a smooth free curved surface or a frosted surface, so that The forward exit of the light between the A2 surface and the A4 surface is a large angle, and the effect is to eliminate the phenomenon that the spot caused by the discontinuity of the A2 surface and the A4 surface forms a bright point, a bright ring or a dark ring, and has an unexpected effect.
  • a circular prism group having a vortex shape is formed around the center of the bottom surface A7, and is formed by a rotary cutting process at one time, and the cross section thereof has an acute-angled triangle shape to internally reflect the surface of the curved surface of the variable curvature spherical surface A5.
  • the light (at a small angle to the vertical direction) finally emits the lens at a large angle in the vertical direction, which can effectively reduce the brightness directly above.
  • the prism group provides a large angle of reflection ability to undertake the large-angle light which is internally totally reflected by the A5 surface of the curved surface of the variable curvature sphere, and the two functions to cooperate with each other and complement each other.
  • the acute triangle is composed of the first side a1, the second side a2 and the bottom surface A7.
  • the first side a1 and the bottom surface A7 have an angle ⁇
  • the second side a2 and the bottom surface (A7) have an angle ⁇
  • the angle ⁇ is incident away from the light.
  • the direction of the surface changes in the range of ⁇ 1 to ⁇ 2 to ⁇ 3, and ⁇ 1> ⁇ 3> ⁇ 2, and the angle ⁇ changes in the range of ⁇ 1 to ⁇ 2 to ⁇ 3 in the direction away from the light incident surface, and ⁇ 2> ⁇ 1> ⁇ 3.
  • ⁇ 1 is in the range of 53° to 59°
  • ⁇ 2 is in the range of 33° to 42°
  • ⁇ 3 is in the range of 43° to 52°
  • ⁇ 1 is in the range of 78° to 108°
  • ⁇ 2 is in the range of 90° to 112°.
  • ⁇ 3 is in the range of 78° to 88°.
  • a to f are six representative characteristic propagating rays:
  • Light a the light rays a from the lens are refracted on the A0 surface of the lens and then propagated to the surface A3, and finally the lens is refracted through the A3 surface;
  • Light b the light b from the lens is refracted on the A0 surface of the lens and propagates to the surface A2. After the internal total reflection occurs on the A2 surface, it is incident on the A4 surface, and finally the lens is refracted through the A4 surface;
  • Light c The light c from the lens is refracted on the A1 surface of the lens and propagates to the surface A5. After the internal total reflection on the A5 surface, it is incident on the serrated A7 surface, and internal total reflection occurs on the A7 surface.
  • Refraction or multiple refraction, propagate to the A6 surface, and finally refract the lens through the A6 surface;
  • Light d the light rays d from the lens are refracted on the A1 surface of the lens and then propagated to the surface A5, and finally the lens is refracted through the A5 surface;
  • Light e the light e emitted from the lens is refracted on the A1 surface of the lens and then propagates to the surface A6, and finally the lens is refracted through the A6 surface;
  • Light f The light f emitted from the lens is refracted on the A0 surface of the lens and propagates to the surface A8, and finally the lens is refracted through the A8 surface.
  • optically active surfaces are matched such that as the angle of the light emerging from the light source gradually increases:
  • the angle of incidence of the light incident from the first light incident surface A0 is greater than or equal to the total reflection angle
  • the light incident from the near tapered surface A2 is reflected from the near tapered surface A2 to the cylindrical light exiting surface A4, and then transmitted to the surroundings.
  • the medium exit angle is between b and f;

Abstract

一种水族箱养殖照明装置,包括位于光源上方的第一入光面(A0)、环绕光源的第二入光面(A1)、位于第一入光面(A0)上方的反射锥体、环绕反射锥体的柱面出光面(A4)、以及环绕第二入光面(A1)的变曲率球面出光面(A5、A6)。第一入光面(A0)呈朝向光源鼓起的球面形状;第一入光面(A0)、第二入光面(A1)共同构成从透镜的底面(A7)向上方凹陷的、用于接收对应角度的入射光线的腔体,底面(A7)上环绕中心形成有漩涡形状的环形棱镜组;反射锥体由透镜的顶面(A8)向下方凹陷形成近锥形面(A2),反射锥体的顶点(A3)、第一入光面(A0)的中心点、光源中心点的连线构成透镜的轴对称线,透镜的顶面(A8)为光滑自由曲面或磨砂面;变曲率球面出光面(A5、A6)的曲率自上而下逐渐增大。水族箱养殖照明装置出光角度大,光斑与自然光照射均匀一度一致,有利于鱼类的生长。

Description

水族箱养殖照明装置
技术领域
本发明涉及一种水族箱养殖照明装置。
背景技术
现有技术中的水族箱养殖照明系统通常采用日光灯直接照射,或者采用LED灯组直接照射,光的出射角度较小,形成的光斑较小,定义各间距为 D,而底部距扩散板为H,则现有H/D值一般在0.3左右,造成的结果是所需要的数量较多,装置整体厚度较大,因此其制造成本较高,而且更深 层次的问题是,由于无法形成均匀的照射效果,对于水族养殖来说,无法模拟日然光线的效果,对鱼类光线感应造成干扰,使得养殖鱼类体内激素紊乱,长期积累易于造成生长疾病。
发明内容
为了克服上述缺点,本发明的目的在于提供一种用于水族箱养殖照明装置,光的出射角度大,形成的光斑较大且均匀。
为了达到以上目的,本发明提供了包括光源、以及覆盖于光源之上的透明轴对称实体,所述的透明轴对称实体包括:
位于所述的光源上方的第一入光面,所述的第一入光面呈朝向光源鼓起的球面形状;
环绕所述的光源的第二入光面,所述的第一入光面、第二入光面共同构成从透镜的底面(A7)向上方凹陷的、用于接收对应角度的入射光线的腔体,所述的底面上环绕中心形成有漩涡形状的环形棱镜组;
位于所述的第一入光面上方的反射锥体,所述的反射锥体由透镜的顶面向下方凹陷形成近锥形面,所述的反射锥体的顶点、第一入光面的中心点、光源中心点的连线构成透镜的轴对称线,透镜的顶面为光滑自由曲面或磨砂面;
环绕所述的反射锥体的柱面出光面;
环绕所述的第二入光面的变曲率球面出光面,所述的变曲率球面出光面的曲率自上而下逐渐增大;其中,上述各光学作用面之间被如此匹配以使随着从光源出射的光线的角度逐渐增加时:
自所述的第一入光面入射的光线,当入射在近锥形面的角度小于全反射角时,则从近锥形面向上方透射出射;
自所述的第一入光面入射的光线,当入射在近锥形面的角度大于等于全反射角时,则从近锥形面反射至柱面出光面后向周围透射出射;
自所述的第一入光面入射的光线,当入射在顶面时则透射出射;
自所述的第二入光面入射的光线,当入射在变曲率球面出光面的角度大于等于全反射角时,则反射至底面的棱镜组,经过棱镜组反射后出射;
自所述的第二入光面入射的光线,当入射在变曲率球面出光面的角度小于全反射角时,则经过变曲率球面出光面透射后出射。
作为本发明进一步的改进,所述的透明轴对称实体呈上小下大的塔形,所述的光源位于用于接收对应角度的入射光线的腔体内部,所述的反射锥体构成前向的喇叭状出光部,其余侧部构成侧向出光部。
作为本发明进一步的改进,所述的环形棱镜组的横断面呈一锐角三角形,所述的锐角三角形由第一边、第二边以及底面表面构成,所述的第一边与所述的底面间呈α角,所述的第二边与所述的底面间呈β角,所述的α角沿远离所述的光入射面的方向在α1~α2~α3的范围变化,并且α1>α3>α2,所述的β角沿远离所述的光入射面的方向在β1~β2~β3的范围变化,并且β2>β1>β3。
作为本发明进一步的改进,所述的α1在53°~59°的范围内,所述的α2在33°~42°的范围内,所述的α3在43°~52°的范围内。
作为本发明进一步的改进,所述的β1在78°~108°的范围内,所述的β2在90°~112°的范围内,所述的β3在78°~88°的范围内。
作为本发明进一步的改进,所述的棱镜组由旋转切削工艺制成。
作为本发明进一步的改进,所述的透明轴对称实体由玻璃或光学树脂材料制成。
由于采用了上述技术方案,使得采用本发明设计方案的有益效果在于:整体照明的出光角度大,使得光斑较大且均匀,可以有效减少光源的数目,并且与自然光照射均一度一致,有利于鱼类的生长。
附图说明
附图1为根据本发明的水族箱养殖照明装置的剖视示意图。
附图2为根据本发明的水族箱养殖照明装置的局部放大示意图。
附图3为根据本发明的水族箱养殖照明装置的仰视示意图。
具体实施方式
下面结合附图对本发明的较佳实施例进行详细阐述,以使本发明的优点和特征能更易于被本领域技术人员理解,从而对本发明的保护范围做出更为清楚明确的界定。
参见附图1与附图2所示,为根据本发明的水族箱养殖照明装置,其覆盖于光源之上的由透明材料(例如玻璃或光学树脂材料)制成的轴对称实体,其包括由下向上依次设置的底部、中部、顶部,底部、中部、顶部一体成型制成,整体上呈上小下大的塔形,光源置于透镜的用于接收对应角度的入射光线的腔体内部(塔形底部中央),反射锥体构成前向的喇叭状出光部,其余侧部构成侧向出光部。
具体的,水族箱养殖照明装置包括位于光源上方的第一入光面A0、环绕光源的第二入光面A1、位于第一入光面A0上方的反射锥体、反射锥体由透镜的顶面A8向下方凹陷形成近锥形面A2、环绕反射锥体的柱面出光面A4、环绕第二入光面A1的变曲率球面出光面A5、A6。第一入光面A0呈朝向光源鼓起的球面形状,用于承接光源的向上出射的光线;第二入光面A1用于承接光源的向侧方出射的光线,第一入光面A0、第二入光面A1共同构成从透镜的底面A7向上方凹陷的、用于接收对应角度的入射光线的腔体,光源包括设置于PCB板上的光源,透镜的底面A7贴合于PCB板上;变曲率球面出光面A5、A6的曲率自上而下逐渐增大。
特别需要指出的是,反射锥体的顶点A3、第一入光面A0的中心点、光源中心点的连线构成透镜的轴对称线,透镜的顶面A8为光滑自由曲面或磨砂面,使得介于A2面与A4面之间的光线大角度的前向出射,其作用是消除由于A2面与A4面不连续造成的光斑形成亮点、亮环或者暗环现象,具有意想不到的效果。
另外,底面A7上环绕中心形成有漩涡形状的环形棱镜组,其由旋转切削工艺一次性制成,其截面呈呈一锐角三角形的作用是将经过变曲率球面出光面A5面发生内部全反射下来(与竖直方向成小角度)的光线,最后以竖直方向成较大角度射出透镜,可有效降低正上方的亮度。这里可以看出,棱镜组提供了一个较大角度的反射能力,以承接经过变曲率球面出光面A5面发生内部全反射下来的大角度光线,二者起到了相互配合、相辅相成的作用。
在本实施例中, 锐角三角形由第一边a1、第二边a2以及底面A7表面构成,第一边a1与底面A7间呈α角,第二边a2与底面(A7)间呈β角,α角沿远离光入射面的方向在α1~α2~α3的范围变化,并且α1>α3>α2,β角沿远离光入射面的方向在β1~β2~β3的范围变化,并且β2>β1>β3。α1在53°~59°的范围内,α2在33°~42°的范围内,α3在43°~52°的范围内;β1在78°~108°的范围内,β2在90°~112°的范围内,β3在78°~88°的范围内。需要说明的是,由于是采用旋转切削工艺一次性制备,因而所采用变化的角度是由切削刀头的变化来实现的。
以下结合附图1对本发明的原理进行阐述,首先描述a~f为6条具有代表性的特征传播光线:
光线a:从出来的光线a射到透镜的A0面上发生折射后传播至面A3,最后经A3面折射出透镜;
光线b:从出来的光线b射到透镜的A0面上发生折射后传播至面A2,在A2面上发生内部全反射后射到A4面,最后经A4面折射出透镜;
光线c:从出来的光线c射到透镜的A1面上发生折射后传播至面A5,在A5面上发生内部全反射后射到锯齿状A7面上,又在A7面发生内部全反射及
折射,或多次折射后传播至A6面,最后经A6面折射出透镜;
光线d:从出来的光线d射到透镜的A1面上发生折射后传播至面A5,最后经A5面折射出透镜;
光线e:从出来的光线e射到透镜的A1面上发生折射后传播至面A6,最后经A6面折射出透镜;
光线f:从出来的光线f射到透镜的A0面上发生折射后传播至面A8,最后经A8面折射出透镜。
从而,上述各光学作用面之间被如此匹配以使随着从光源出射的光线的角度逐渐增加时:
1、 自第一入光面A0入射的光线,当入射在近锥形面A2的角度小于全反射角时,则从近锥形面A2向上方透射出射,对应图中出射角度介于a、b之间;
2、 自第一入光面A0入射的光线,当入射在近锥形面A2的角度大于等于全反射角时,则从近锥形面A2反射至柱面出光面A4后向周围透射出射,对应图中出射角度介于b、f之间;
3、 自第一入光面A0入射的光线,当入射在顶面A8时则透射出射,对应图中光线f;
4、 自第二入光面A1入射的光线,当入射在变曲率球面出光面A5、A6的角度大于等于全反射角时,则反射至底面A7的棱镜组,经过棱镜组反射后出射,对应图中光线c;
5、 自第二入光面A1入射的光线,当入射在变曲率球面出光面A5、A6的角度小于全反射角时,则经过变曲率球面出光面A5、A6透射后出射,对应图中光线d、e。
以上实施方式只为说明本发明的技术构思及特点,其目的在于让熟悉此项技术的人了解本发明的内容并加以实施,并不能以此限制本发明的保护范围,凡根据本发明精神实质所做的等效变化或修饰,都应涵盖在本发明的保护范围内。

Claims (7)

1. 一种水族箱养殖照明装置,包括光源、以及覆盖于光源之上的透明轴对称实体,其特征在于,所述的透明轴对称实体包括:
位于所述的光源上方的第一入光面(A0),所述的第一入光面(A0)呈朝向光源鼓起的球面形状;
环绕所述的光源的第二入光面(A1),所述的第一入光面(A0)、第二入光面(A1)共同构成从透镜的底面(A7)向上方凹陷的、用于接收对应角度的入射光线的腔体,所述的底面(A7)上环绕中心形成有漩涡形状的环形棱镜组;
位于所述的第一入光面(A0)上方的反射锥体,所述的反射锥体由透镜的顶面(A8)向下方凹陷形成近锥形面(A2),所述的反射锥体的顶点(A3)、第一入光面(A0)的中心点、光源中心点的连线构成透镜的轴对称线,透镜的顶面(A8)为光滑自由曲面或磨砂面;
环绕所述的反射锥体的柱面出光面(A4);
环绕所述的第二入光面(A1)的变曲率球面出光面(A5、A6),所述的变曲率球面出光面(A5、A6)的曲率自上而下逐渐增大;其中,上述各光学作用面之间被如此匹配以使随着从光源出射的光线的角度逐渐增加时:
自所述的第一入光面(A0)入射的光线,当入射在近锥形面(A2)的角度小于全反射角时,则从近锥形面(A2)向上方透射出射;
自所述的第一入光面(A0)入射的光线,当入射在近锥形面(A2)的角度大于等于全反射角时,则从近锥形面(A2)反射至柱面出光面(A4)后向周围透射出射;
自所述的第一入光面(A0)入射的光线,当入射在顶面(A8)时则透射出射;
自所述的第二入光面(A1)入射的光线,当入射在变曲率球面出光面(A5、A6)的角度大于等于全反射角时,则反射至底面(A7)的棱镜组,经过棱镜组反射后出射;
自所述的第二入光面(A1)入射的光线,当入射在变曲率球面出光面(A5、A6)的角度小于全反射角时,则经过变曲率球面出光面(A5、A6)透射后出射。
2.如权利要求1所述的水族箱养殖照明装置,其特征在于:所述的透明轴对称实体呈上小下大的塔形,所述的光源位于用于接收对应角度的入射光线的腔体内部,所述的反射锥体构成前向的喇叭状出光部,其余侧部构成侧向出光部。
3.如权利要求1所述的水族箱养殖照明装置,其特征在于:所述的环形棱镜组的横断面呈一锐角三角形,所述的锐角三角形由第一边(a1)、第二边(a2)以及底面(A7)表面构成,所述的第一边(a1)与所述的底面(A7)间呈α角,所述的第二边(a2)与所述的底面(A7)间呈β角,所述的α角沿远离所述的光入射面的方向在α1~α2~α3的范围变化,并且α1>α3>α2,所述的β角沿远离所述的光入射面的方向在β1~β2~β3的范围变化,并且β2>β1>β3。
4.如权利要求3所述的水族箱养殖照明装置,其特征在于:所述的α1在53°~59°的范围内,所述的α2在33°~42°的范围内,所述的α3在43°~52°的范围内。
5.如权利要求3所述的水族箱养殖照明装置,其特征在于:所述的β1在78°~108°的范围内,所述的β2在90°~112°的范围内,所述的β3在78°~88°的范围内。
6.如权利要求3所述的水族箱养殖照明装置,其特征在于:所述的棱镜组由旋转切削工艺制成。
7.如权利要求1-6中任一所述的水族箱养殖照明装置,其特征在于:所述的透明轴对称实体由玻璃或光学树脂材料制成。
PCT/CN2014/093205 2014-12-06 2014-12-06 水族箱养殖照明装置 WO2016086427A2 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201480083081.4A CN107002977B (zh) 2014-12-06 2014-12-06 水族箱养殖照明装置
PCT/CN2014/093205 WO2016086427A2 (zh) 2014-12-06 2014-12-06 水族箱养殖照明装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2014/093205 WO2016086427A2 (zh) 2014-12-06 2014-12-06 水族箱养殖照明装置

Publications (2)

Publication Number Publication Date
WO2016086427A2 true WO2016086427A2 (zh) 2016-06-09
WO2016086427A3 WO2016086427A3 (zh) 2016-06-30

Family

ID=56092613

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2014/093205 WO2016086427A2 (zh) 2014-12-06 2014-12-06 水族箱养殖照明装置

Country Status (2)

Country Link
CN (1) CN107002977B (zh)
WO (1) WO2016086427A2 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107893916A (zh) * 2017-12-15 2018-04-10 明朔(北京)电子科技有限公司 Led中华灯照明装置、照明设备及透镜
CN108957601B (zh) * 2018-08-22 2023-08-22 杭州照相机械研究所有限公司 一种偏光透镜

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1614470A (zh) * 2003-11-04 2005-05-11 鸿富锦精密工业(深圳)有限公司 导光板
CN1619376A (zh) * 2003-11-21 2005-05-25 鸿富锦精密工业(深圳)有限公司 导光板及背光模组
US8475009B2 (en) * 2010-07-08 2013-07-02 Excelitas Technologies Corp. Tailored side-emitter perimeter beacon
KR101756825B1 (ko) * 2010-08-24 2017-07-11 삼성전자주식회사 광학 렌즈, 이를 구비하는 led 모듈 및 조명 장치
CN102072458B (zh) * 2010-11-20 2012-08-29 特殊光电科技(中山)有限公司 用于led灯具的透镜
JP5580769B2 (ja) * 2011-03-23 2014-08-27 シャープ株式会社 Led光源装置および液晶表示装置
CN202048509U (zh) * 2011-05-05 2011-11-23 林武旭 节能光照装置
CN103375768A (zh) * 2012-04-26 2013-10-30 全亿大科技(佛山)有限公司 透镜及光源模组
CN202993057U (zh) * 2012-11-12 2013-06-12 深圳市兆驰股份有限公司 一种led透镜

Also Published As

Publication number Publication date
CN107002977A (zh) 2017-08-01
WO2016086427A3 (zh) 2016-06-30
CN107002977B (zh) 2019-09-13

Similar Documents

Publication Publication Date Title
KR20200094636A (ko) 광학 조명 장치
US8167455B2 (en) LED lamp having a larger lighting angle
US10133118B2 (en) Light flux control member with an annular groove
WO2018145455A1 (zh) 背光模组及显示装置
US20110002126A1 (en) Lens
US9599802B2 (en) Lens and backlight module
US8979326B2 (en) Lens and LED module using the same
WO2016086427A2 (zh) 水族箱养殖照明装置
TW201447386A (zh) 光學透鏡
TWI599742B (zh) Led光源模組及其透鏡
US11036036B2 (en) Optical device for modifying light distribution
TW201942598A (zh) 具有收光效果的菲涅爾透鏡
KR20150116607A (ko) 복합 비구면 렌즈
TWM492444U (zh) 光學透鏡裝置
US20130271978A1 (en) Large-scale prism luminaires
WO2016188108A1 (zh) 光学透镜、背光模块及显示设备
JP2012243396A (ja) 光束制御部材、発光装置、及び面光源装置
WO2018076466A1 (zh) 一种灯罩、灯具及飞行器
CN208058564U (zh) 一种投光灯的二次光学透镜及其投光灯模组
WO2016090524A1 (zh) 拟自然态led水族灯
TW201541017A (zh) 光學透鏡裝置
TWI554722B (zh) A lens structure and a light source module using the lens structure
TWI534477B (zh) 一種光學結構
TW201309971A (zh) 照明裝置
TWI582347B (zh) 透鏡

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14907336

Country of ref document: EP

Kind code of ref document: A2

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 30/11/2017)

122 Ep: pct application non-entry in european phase

Ref document number: 14907336

Country of ref document: EP

Kind code of ref document: A2