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    • 61. 发明申请
    • LED Device for Wide Beam Generation
    • 用于宽光束发生的LED装置
    • US20120268934A1
    • 2012-10-25
    • US13540477
    • 2012-07-02
    • Ronald G. HolderGreg Rhoads
    • Ronald G. HolderGreg Rhoads
    • F21V5/04F21V5/02F21V29/00
    • F21V5/04F21K9/00F21K9/69F21S8/085F21S8/086F21V7/0091F21V13/04F21V19/02F21V23/005F21V29/70F21V31/005F21W2131/103F21Y2105/16F21Y2115/10G02B19/0028G02B19/0061G02B19/0071G02B27/0012H01L33/58
    • An apparatus and method is characterized by providing an optical transfer function between a predetermined illuminated surface pattern, such as a street light pattern, and a predetermined energy distribution pattern of a light source, such as that from an LED. A lens is formed having a shape defined by the optical transfer function. The optical transfer function is derived by generating an energy distribution pattern using the predetermined energy distribution pattern of the light source. Then the projection of the energy distribution pattern onto the illuminated surface is generated. The projection is then compared to the predetermined illuminated surface pattern to determine if it acceptably matches. The process continues reiteratively until an acceptable match is achieved. Alternatively, the lens shape is numerically or analytically determined by a functional relationship between the shape and the predetermined illuminated surface pattern and predetermined energy distribution pattern of a light source as inputs.
    • 一种装置和方法的特征在于在诸如路灯图案的预定照明表面图案和诸如来自LED的光源的预定能量分布图案之间提供光学传递函数。 形成具有由光学传递函数限定的形状的透镜。 通过使用光源的预定能量分配图案生成能量分布图来导出光学传递函数。 然后产生能量分布图案到被照射的表面上的投影。 然后将投影与预定照明表面图案进行比较,以确定其是否可接受地匹配。 该过程重复继续,直到达到可接受的匹配。 或者,通过形状和预定照明表面图案之间的功能关系和光源的预定能量分布图案作为输入,数字地或分析地确定透镜形状。
    • 63. 发明申请
    • LED Devices for Offset Wide Beam Generation
    • 用于偏移宽光束发生器的LED器件
    • US20110115360A1
    • 2011-05-19
    • US12945515
    • 2010-11-12
    • Ronald G. HolderGreg Rhoads
    • Ronald G. HolderGreg Rhoads
    • H01K1/26
    • F21V13/04F21K9/00F21K9/68F21K9/90F21V3/02F21V5/04F21V7/00F21V7/0066F21V13/02F21V17/101F21V17/164F21W2131/103F21Y2101/00F21Y2115/10Y10S362/80
    • A light source is combined with an optic and a reflector. Light incident onto to the reflector is reflected with a single reflection. The reflector occupies a portion of a solid angle around the light source to the exclusion of the optic at least with respect to any optical function. The reflector directly receives a second portion of light. The optic occupies substantially all of the remaining portion of the predetermined solid angle to directly receive a first portion of light from the light source. A reflected beam from the reflector is reflected into a predetermined reflection pattern. The inner and/or outer surface of the optic is shaped to refract or direct light which is directly transmitted into the optic from the light source from a first portion of light and/or reflected into the optic from the reflector from the reflected beam into a predetermined beam.
    • 光源与光学元件和反射器组合。 入射到反射镜的光被单反射反射。 至少相对于任何光学功能,反射器占据围绕光源的立体角的一部分以排除光学元件。 反射器直接接收第二部分光。 光学器件基本上占据预定立体角的剩余部分的大部分直接接收来自光源的第一部分光。 来自反射器的反射光束被反射成预定的反射图案。 光学元件的内表面和/或外表面被成形为折射或引导从光源从光源直接传输到光学元件中的光和/或从反射器反射到光学元件中的光从反射光束转换成 预定梁。
    • 64. 发明授权
    • LED devices for offset wide beam generation
    • 用于偏移宽波束发生的LED装置
    • US07854536B2
    • 2010-12-21
    • US12541060
    • 2009-08-13
    • Ronald G. HolderGreg Rhoads
    • Ronald G. HolderGreg Rhoads
    • F21V33/00
    • F21V13/04F21K9/00F21K9/68F21K9/90F21V3/02F21V5/04F21V7/00F21V7/0066F21V13/02F21V17/101F21V17/164F21W2131/103F21Y2101/00F21Y2115/10Y10S362/80
    • A light source is combined with an optic and a reflector. Light incident onto to the reflector is reflected with a single reflection. The reflector occupies a portion of a solid angle around the light source to the exclusion of the optic at least with respect to any optical function. The reflector directly receives a second portion of light. The optic occupies substantially all of the remaining portion of the predetermined solid angle to directly receive a first portion of light from the light source. A reflected beam from the reflector is reflected into a predetermined reflection pattern. The inner and/or outer surface of the optic is shaped to refract or direct light which is directly transmitted into the optic from the light source from a first portion of light and/or reflected into the optic from the reflector from the reflected beam into a predetermined beam.
    • 光源与光学元件和反射器组合。 入射到反射镜的光被单反射反射。 至少相对于任何光学功能,反射器占据围绕光源的立体角的一部分以排除光学元件。 反射器直接接收第二部分光。 光学器件基本上占据预定立体角的剩余部分的大部分直接接收来自光源的第一部分光。 来自反射器的反射光束被反射成预定的反射图案。 光学元件的内表面和/或外表面被成形为折射或引导从光源从光源直接传输到光学元件中的光和/或从反射器反射到光学元件中的光从反射光束转换成 预定梁。
    • 65. 发明授权
    • LED-fiber optic combination for simulating neon lit signage
    • LED光纤组合模拟霓虹灯标牌
    • US07789547B2
    • 2010-09-07
    • US12067147
    • 2006-09-26
    • Ronald G. HolderGreg Rhoads
    • Ronald G. HolderGreg Rhoads
    • F21V17/00
    • G02B6/0008G09F13/22G09F2013/1895
    • An improvement in LED lighting simulative of neon lighting comprises a light cable (3). A clamp (2) coupled to the cable (3) holds an end of the cable (3) in a predetermined bend, and an LED (14) is optically coupled to the cable (3). A support (11) is coupled to the clamp and includes a surface (34) adjacent to the cable (3) to reflect light incident on its surface, which is a diffuse reflector. A clip (4) retains the cable (3) on the support (11). The clamp (2) is at least partially opaque and shields an end of the cable (3) to simulate a neon tube. The LED light source (14) comprises a housing (12) to which the clamp (2) is coupled, and comprises an LED emitter and a reflector. The clamp (2) is mounted on a substrate (21) and at least one additional sign element mounted to the substrate, such as an LED backlit sign element.
    • 霓虹照明模拟的LED照明的改进包括光缆(3)。 耦合到电缆(3)的夹具(2)将电缆(3)的端部保持在预定弯曲中,并且LED(14)光学耦合到电缆(3)。 支撑件(11)联接到夹具并且包括邻近电缆(3)的表面(34),以反射作为漫反射器的入射在其表面上的光。 夹子(4)将电缆(3)保持在支撑件(11)上。 夹具(2)至少部分不透明并且屏蔽电缆(3)的端部以模拟氖管。 LED光源(14)包括壳体(12),所述夹具(2)联接到所述壳体(12),并且包括LED发射器和反射器。 夹具(2)安装在基板(21)上,并且至少一个附加的符号元件安装到基板,例如LED背光标志元件。
    • 66. 发明申请
    • LED DEVICE FOR WIDE BEAM GENERATION
    • 用于宽光束生成的LED装置
    • US20100165625A1
    • 2010-07-01
    • US12690821
    • 2010-01-20
    • Ronald G. HolderGreg Rhoads
    • Ronald G. HolderGreg Rhoads
    • F21V1/00F21V5/00
    • F21V5/04F21K9/00F21K9/69F21S8/085F21S8/086F21V7/0091F21V13/04F21V19/02F21V23/005F21V29/70F21V31/005F21W2131/103F21Y2105/16F21Y2115/10G02B19/0028G02B19/0061G02B19/0071G02B27/0012H01L33/58
    • An apparatus and method is characterized by providing an optical transfer function between a predetermined illuminated surface pattern, such as a street light pattern, and a predetermined energy distribution pattern of a light source, such as that from an LED. A lens is formed having a shape defined by the optical transfer function. The optical transfer function is derived by generating an energy distribution pattern using the predetermined energy distribution pattern of the light source. Then the projection of the energy distribution pattern onto the illuminated surface is generated. The projection is then compared to the predetermined illuminated surface pattern to determine if it acceptably matches. The process continues reiteratively until an acceptable match is achieved. Alternatively, the lens shape is numerically or analytically determined by a functional relationship between the shape and the predetermined illuminated surface pattern and predetermined energy distribution pattern of a light source as inputs.
    • 一种装置和方法的特征在于在诸如路灯图案的预定照明表面图案和诸如来自LED的光源的预定能量分布图案之间提供光学传递函数。 形成具有由光学传递函数限定的形状的透镜。 通过使用光源的预定能量分配图案生成能量分布图来导出光学传递函数。 然后产生能量分布图案到被照射的表面上的投影。 然后将投影与预定照明表面图案进行比较,以确定其是否可接受地匹配。 该过程重复继续,直到达到可接受的匹配。 或者,通过形状和预定照明表面图案之间的功能关系和光源的预定能量分布图案作为输入,数字地或分析地确定透镜形状。
    • 68. 发明申请
    • Apparatus and Method of Using LED Light Sources to Generate a Unitized Beam
    • 使用LED光源生成单一化束的装置和方法
    • US20090016052A1
    • 2009-01-15
    • US12192828
    • 2008-08-15
    • Ronald G. HolderGreg RhoadsJoel Widom
    • Ronald G. HolderGreg RhoadsJoel Widom
    • F21V7/00
    • G02B6/0006F21V7/0091F21V29/773F21V29/777F21Y2115/10
    • An apparatus includes: a plurality of light emitting diodes (LED) of similar or differing wavelengths; a reflector for collecting energy from two or more LEDs into an approximately composite beam; and a housing for distributing this energy into a common aperture. A heat sink and electronic control for the individual LEDs is included. The LEDs have different color outputs and are selectively controlled to determine the color of light from the apparatus. In one embodiment there are at least two LEDs, at least two reflector cavities, a common combining cavity or zone, a mounting each of the LEDs within the reflector cavities and a housing. The LEDs are mounted on the heat sink and selectively driven to modulate the intensity of selected ones of the LEDs according the nature of the frequency bands in the driving signal, e.g. mixed color outputs according to the control of a musical signal.
    • 一种装置包括:具有相似或不同波长的多个发光二极管(LED); 用于从两个或更多个LED收集能量到大致复合束的反射器; 以及用于将该能量分配到公共​​孔中的壳体。 包括各个LED的散热器和电子控制。 LED具有不同的颜色输出并且被选择性地控制以确定来自该装置的光的颜色。 在一个实施例中,存在至少两个LED,至少两个反射器腔,共同组合腔或区,在反射器腔内安装每个LED以及壳体。 LED被安装在散热器上并且选择性地驱动以根据驱动信号中的频带的性质来调制所选择的LED中的选定LED的强度。 根据音乐信号的控制的混合颜色输出。
    • 70. 发明授权
    • Apparatus and method of using light sources of differing wavelengths in an unitized beam
    • 在组合梁中使用不同波长的光源的装置和方法
    • US07083304B2
    • 2006-08-01
    • US10903142
    • 2004-07-30
    • Greg RhoadsRonald G. Holder
    • Greg RhoadsRonald G. Holder
    • F21V9/00
    • H04N9/315F21V9/08F21W2131/107F21W2131/406
    • A plurality of light sources, each radiating a color of light; a corresponding plurality of reflectors are arranged and configured so that the reflector reflects light from a predetermined one of the plurality of light sources. The reflected light from the plurality of reflectors is mixed to generate a composite light from the plurality of light sources. A sequenced or stacked array of the light sources and dichroic reflectors mixes the reflected light from the reflectors. Each reflector is positioned on a common optical axis with an aligned corresponding one of the plurality of light sources to provide a light source and reflector pair. Each reflector is coated with a dichroic filter material which reflects the color of light radiated by the corresponding light source of the pair, and which transmits light radiated by all preceding light sources in the sequenced array.
    • 多个光源,各自发光的颜色; 相应的多个反射器被布置和配置成使得反射器反射来自多个光源中的预定的一个光源的光。 来自多个反射器的反射光被混合以产生来自多个光源的复合光。 光源和二向色反射器的顺序或堆叠阵列混合来自反射器的反射光。 每个反射器定位在具有对准的多个光源中的对应的一个光源的公共光轴上,以提供光源和反射器对。 每个反射器涂覆有二向色滤光片材料,其反映由该对的相应光源辐射的光的颜色,并且透射由所排列的阵列中的所有先前光源辐射的光。