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    • 4. 发明授权
    • Device for concentrating or collimating radiant energy
    • 用于集中或准直辐射能的装置
    • US07160522B2
    • 2007-01-09
    • US10148736
    • 2000-12-01
    • Juan Carlos Minano DominguezPablo Benitez Gimenez
    • Juan Carlos Minano DominguezPablo Benitez Gimenez
    • B01J19/08F21V5/00
    • G02B19/0061F24S23/00F24S23/31G01J1/04G01J1/0411G02B3/08G02B17/006G02B19/0028G02B19/0042G02B19/0076Y02E10/43Y02E10/44
    • This invention consists in a nonimaging device for concentration or collimation of radiation on a receiver or from an emitter (14), depending on the case. The device is made up of the lens (50), which surrounds the receiver and consists of the aspheric surface (21), and the lens (15), whose upper refractive surface (16) may be aspheric, while the lower surface is aspheric (17) in its central portion (between points 18 and 19) and has a structure with discontinuous slope (20) in its external portion, in which the faces (22) fundamentally refract the rays while the faces (23) reflect them by total internal reflection. The design method provides that the device properties of concentration/collimation are noticeably superior to those of the existing inventions. Possible applications of this lens include: radiation sensors, illumination systems with LEDs, wireless optical communications and photovoltaic solar energy.
    • 本发明在于用于根据情况在接收器或发射器(14)上对辐射进行浓缩或准直的非成像装置。 该装置由围绕接收器并由非球面(21)和透镜(15)组成的透镜(50),其上折射表面(16)可以是非球面的,而下表面是非球面 (17)在其中心部分(点18和19之间),并且具有在其外部部分具有不连续倾斜(20)的结构,其中面(22)基本上折射射线,而面(23)总共反射它们 内反射。 设计方法提供了浓度/准直的器件特性明显优于现有发明。 该镜头的可能应用包括:辐射传感器,带LED的照明系统,无线光通信和光伏太阳能。
    • 5. 发明申请
    • FACETTED FOLDED-OPTIC COLLIMATOR
    • 设计折叠式折叠式收缩机
    • US20130044494A1
    • 2013-02-21
    • US13492455
    • 2012-06-08
    • Oliver DrossRuben MohendanoJulio C. ChavesFernando MunozJuan Carlos MinanoWaqidi Falicoff
    • Oliver DrossRuben MohendanoJulio C. ChavesFernando MunozJuan Carlos MinanoWaqidi Falicoff
    • F21V13/04
    • G02B19/0028G02B19/0061
    • A folded circularly symmetric illumination optic comprising a first light transfer mode having a first central refractive surface and a second central refractive surface, wherein one of the first and second central refractive surfaces has at least one peened feature; a second light transfer mode having a first refractive surface, a first TIR surface, a second TIR surface and a second refractive surface; a third light transfer mode having a first refractive surface, a first TIR surface and a second refractive surface, wherein the first TIR surface has at least one peening feature, and wherein the second refractive surface is conical; wherein the first TIR surface and second refractive surface of the second light transfer mode is coincident at least one point, wherein the second refractive surface of the third light transfer mode is coincident with the first TIR surface and second refractive surface of the second light transfer mode.
    • 折叠圆形对称照明光学器件,包括具有第一中心折射表面和第二中心折射表面的第一光传输模式,其中所述第一和第二中心折射表面中的一个具有至少一个喷丸特征; 具有第一折射表面,第一TIR表面,第二TIR表面和第二折射表面的第二光传输模式; 具有第一折射表面,第一TIR表面和第二折射表面的第三光传输模式,其中所述第一TIR表面具有至少一个喷丸特征,并且其中所述第二折射表面是圆锥形的; 其中第二光传输模式的第一TIR表面和第二折射表面与至少一个点重合,其中第三光传输模式的第二折射表面与第二光传输模式的第一TIR表面和第二折射表面重合 。
    • 8. 发明授权
    • Multi-junction solar cells with a homogenizer system and coupled non-imaging light concentrator
    • 具有均质器系统和耦合的非成像光集中器的多结太阳能电池
    • US08631787B2
    • 2014-01-21
    • US12206547
    • 2008-09-08
    • Pablo BenitezJuan Carlos MinanoMaikel HernandezJose BlenRuben MohedanoOliver Dross
    • Pablo BenitezJuan Carlos MinanoMaikel HernandezJose BlenRuben MohedanoOliver Dross
    • F24J2/10
    • H01L31/0547F24S23/31F24S23/71F24S23/79Y02E10/42Y02E10/43Y02E10/52
    • The present embodiments provide methods and systems to homogenize illumination on a target. Some embodiments provide rotational symmetric dual-reflector solar concentrators that include a concave primary reflector with an aim-direction directed toward the sun to receive optical radiation in a far-field angle within an angle of acceptance and redirect radiation upward and centrally generating flux concentration, a secondary reflector positioned coaxial with said primary reflector to receive said redirected radiation and redirect radiation downward and centrally generating flux concentration solar rays, and a central target zone receiving said concentrated solar rays, where cross sections of said primary and secondary reflectors both further comprise a multiplicity of segments that establish a correspondence between pairs of segments, each of said segments of said primary reflector such as to image said angle of acceptance onto said corresponding segment of said secondary reflector to image onto said target zone.
    • 本实施例提供了使目标上的照明均匀化的方法和系统。 一些实施例提供旋转对称双反射器太阳能聚光器,其包括凹形初级反射器,其目标方向指向太阳以接收在接受角度内的远场角度的光辐射并且向上重定向辐射并且集中产生通量浓度, 与所述主反射器同轴地定位以接收所述重定向的辐射并向下定向辐射并且集中产生通量浓度太阳光的次级反射器,以及接收所述集中太阳射线的中心目标区域,其中所述主反射器和次反射器的横截面还包括 在多个分段之间建立对应关系的多个分段,所述主反射器的每个所述分段,以将所述接收的所述角度图像映射到所述辅助反射器的所述对应的分段上,以成像到所述目标区域上。