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    • 61. 发明授权
    • Dimmable LED lamp
    • 可调光LED灯
    • US08253316B2
    • 2012-08-28
    • US12778231
    • 2010-05-12
    • Yupin SunWaqidi FalicoffWill Shatford
    • Yupin SunWaqidi FalicoffWill Shatford
    • H01J1/62H01J63/04
    • F21V3/00F21K9/232F21K9/61F21K9/64F21V29/677F21V29/74F21V29/78F21V29/83F21Y2113/13F21Y2115/10
    • An LED-powered replacement for the conventional incandescent screw-in light bulb comprises a phosphor coated sphere emitting white light into the same spherical pattern as a frosted incandescent bulb. In one embodiment inside the hollow sphere there is a dielectric cone emitting blue light, which causes the phosphor coating to glow. The blue light comes into the cone from a dielectric totally internally reflecting concentrator (DTIRC), which receives light from a conical reflector surrounding an LED array. The array has blue chips for energizing the phosphor and red chips for supplementing the phosphor light, enabling separate electronic control of the color temperature as well as the overall luminosity of the LED Lamp. Both blue and red chips are controlled by a quantum dimmer.
    • 用于传统白炽灯螺旋灯泡的LED驱动替代品包括将白光发射成与磨砂白炽灯泡相同的球形图案的荧光体涂覆的球体。 在中空球体内的一个实施例中,存在发射蓝光的电介质锥,这使得荧光体涂层发光。 蓝光从电介质全内反射浓缩器(DTIRC)进入锥体,该聚光器从围绕LED阵列的圆锥形反射器接收光。 该阵列具有蓝色芯片,用于激励磷光体和红色芯片以补充荧光体光,实现对色温的分色电子控制以及LED灯的整体亮度。 蓝色和红色芯片均由量子调光器控制。
    • 62. 发明授权
    • Zoom luminaire with compact non-imaging lens-mirror optics
    • 使用紧凑型非成像镜头镜头的变焦照明
    • US08075162B2
    • 2011-12-13
    • US12584687
    • 2009-09-09
    • Waqidi FalicoffJulio C. Chaves
    • Waqidi FalicoffJulio C. Chaves
    • F21S8/00F21V17/02
    • F21V14/04G02B19/0028G02B19/0061
    • A zoomable luminaire has a source of light, a primary reflector with entry and exit apertures, and at least one secondary reflector with entry and exit apertures. The source delivers light into the entry aperture of the primary reflector, and the primary reflector delivers the light at the exit aperture of the primary reflector. The luminaire has a retracted position for producing a beam of a first beam angle, where the primary reflector is nested within the secondary reflector and the secondary reflector does not substantially affect the distribution of the light. The luminaire has at least one extended position for producing a beam of a second width, where the exit aperture of the primary reflector is contiguous with the entry aperture of a secondary reflector so that the light is delivered at the exit aperture of a secondary reflector.
    • 可变焦照明器具有光源,具有入射孔和出射孔的主反射器,以及具有入射孔和出射孔的至少一个次级反射器。 光源将光输送到主反射器的入口孔中,并且主反射器将光传送到主反射器的出射孔处。 照明器具有用于产生第一光束角的光束的缩回位置,其中主反射器嵌套在次反射器内,并且次反射器基本上不影响光的分布。 照明器具有至少一个延伸位置,用于产生第二宽度的光束,其中主反射器的出射孔与次级反射器的入射孔邻接,使得光在次级反射器的出射孔处被传送。
    • 63. 发明申请
    • DIMMABLE LED LAMP
    • DIMMABLE LED灯
    • US20100289395A1
    • 2010-11-18
    • US12778231
    • 2010-05-12
    • Yupin SunWaqidi FalicoffWill Shatford
    • Yupin SunWaqidi FalicoffWill Shatford
    • F21V29/00H01J1/62
    • F21V3/00F21K9/232F21K9/61F21K9/64F21V29/677F21V29/74F21V29/78F21V29/83F21Y2113/13F21Y2115/10
    • An LED-powered replacement for the conventional incandescent screw-in light bulb comprises a phosphor coated sphere emitting white light into the same spherical pattern as a frosted incandescent bulb. In one embodiment inside the hollow sphere there is a dielectric cone emitting blue light, which causes the phosphor coating to glow. The blue light comes into the cone from a dielectric totally internally reflecting concentrator (DTIRC), which receives light from a conical reflector surrounding an LED array. The array has blue chips for energizing the phosphor and red chips for supplementing the phosphor light, enabling separate electronic control of the color temperature as well as the overall luminosity of the LED Lamp. Both blue and red chips are controlled by a quantum dimmer.
    • 用于传统白炽灯螺旋灯泡的LED驱动替代品包括将白光发射成与磨砂白炽灯泡相同的球形图案的荧光体涂覆的球体。 在中空球体内的一个实施例中,存在发射蓝光的电介质锥,这使得荧光体涂层发光。 蓝光从电介质全内反射浓缩器(DTIRC)进入锥体,该聚光器从围绕LED阵列的圆锥形反射器接收光。 该阵列具有蓝色芯片,用于激励磷光体和红色芯片以补充荧光体光,实现对色温的分色电子控制以及LED灯的整体亮度。 蓝色和红色芯片均由量子调光器控制。
    • 64. 发明申请
    • PHOTOVOLTAIC DEVICE
    • 光电器件
    • US20100269885A1
    • 2010-10-28
    • US12766298
    • 2010-04-23
    • Pablo BenitezJuan Carlos MiñanoRubén MohedanoWaqidi Falicoff
    • Pablo BenitezJuan Carlos MiñanoRubén MohedanoWaqidi Falicoff
    • H01L31/052
    • H01L31/0543H01L31/0547H01L31/0687Y02E10/52
    • Some photovoltaic cells have a front face accepting incoming incident light and opaque gridlines overlying part of the front face, electrically bonded to the face, with upper reflective facets oblique to the plane of the front face and producing outgoing reflected light. An optical interface parallel to and in front of the front face transmits incoming light to the front face and to the gridlines and reflects back towards the front face by total internal reflection at least some of the outgoing reflected light. Some photovoltaic devices have a triple junction photovoltaic cell, a single junction photovoltaic cell, and a reflective surface arranged to distribute incoming light between the cells. The surface may be a frequency-selective mirror that apportions light so when the cells are in series the power produced, and preferably the photocurrent, is greater than if all the light fell on the triple junction cell alone.
    • 一些光伏电池具有接受入射入射光的正面和覆盖前表面的一部分的不透明网格线,电粘结到面部,具有与前表面的平面倾斜的上反射面并产生出射的反射光。 平行于前面和前面的光学接口将入射光透射到前表面和网格线,并通过至少一些输出反射光的全内反射向前表面反射。 一些光伏器件具有三结光伏电池,单结光伏电池和布置成在电池之间分配入射光的反射表面。 表面可以是分配光的频率选择镜,因此当电池串联产生的功率,并且优选地,光电流大于如果所有光都单独落在三重结电池上时。
    • 65. 发明申请
    • Zoom luminaire with compact non-imaging lens-mirror optics
    • 使用紧凑型非成像镜头镜头的变焦照明
    • US20100149820A1
    • 2010-06-17
    • US12584687
    • 2009-09-09
    • Waqidi FalicoffJulio C. Chaves
    • Waqidi FalicoffJulio C. Chaves
    • F21V7/00
    • F21V14/04G02B19/0028G02B19/0061
    • A zoomable luminaire has a source of light, a primary reflector with entry and exit apertures, and at least one secondary reflector with entry and exit apertures. The source delivers light into the entry aperture of the primary reflector, and the primary reflector delivers the light at the exit aperture of the primary reflector. The luminaire has a retracted position for producing a beam of a first beam angle, where the primary reflector is nested within the secondary reflector and the secondary reflector does not substantially affect the distribution of the light. The luminaire has at least one extended position for producing a beam of a second width, where the exit aperture of the primary reflector is contiguous with the entry aperture of a secondary reflector so that the light is delivered at the exit aperture of a secondary reflector.
    • 可变焦照明器具有光源,具有入射孔和出射孔的主反射器,以及具有入射孔和出射孔的至少一个次级反射器。 光源将光输送到主反射器的入口孔中,并且主反射器将光传送到主反射器的出射孔处。 照明器具有用于产生第一光束角的光束的缩回位置,其中主反射器嵌套在次反射器内,并且次反射器基本上不影响光的分布。 照明器具有至少一个延伸位置,用于产生第二宽度的光束,其中主反射器的出射孔与次级反射器的入射孔邻接,使得光在次级反射器的出射孔处被传送。
    • 67. 发明授权
    • Photovoltaic device
    • 光伏装置
    • US09123849B2
    • 2015-09-01
    • US12766298
    • 2010-04-23
    • Pablo BenitezJuan Carlos MiñanoRubén MohedanoWaqidi Falicoff
    • Pablo BenitezJuan Carlos MiñanoRubén MohedanoWaqidi Falicoff
    • H01L31/052H01L31/054H01L31/0687
    • H01L31/0543H01L31/0547H01L31/0687Y02E10/52
    • Some photovoltaic cells have a front face accepting incoming incident light and opaque gridlines overlying part of the front face, electrically bonded to the face, with upper reflective facets oblique to the plane of the front face and producing outgoing reflected light. An optical interface parallel to and in front of the front face transmits incoming light to the front face and to the gridlines and reflects back towards the front face by total internal reflection at least some of the outgoing reflected light. Some photovoltaic devices have a triple junction photovoltaic cell, a single junction photovoltaic cell, and a reflective surface arranged to distribute incoming light between the cells. The surface may be a frequency-selective mirror that apportions light so when the cells are in series the power produced, and preferably the photocurrent, is greater than if all the light fell on the triple junction cell alone.
    • 一些光伏电池具有接受入射入射光的正面和覆盖前表面的一部分的不透明网格线,电粘结到面部,具有与前表面的平面倾斜的上反射面并产生出射的反射光。 平行于前面和前面的光学接口将入射光透射到前表面和网格线,并通过至少一些输出反射光的全内反射向前表面反射。 一些光伏器件具有三结光伏电池,单结光伏电池和布置成在电池之间分配入射光的反射表面。 表面可以是分配光的频率选择镜,因此当电池串联产生的功率,并且优选地,光电流大于如果所有光都单独落在三重结电池上的情况。
    • 68. 发明申请
    • Spherically emitting remote phosphor
    • 球形发射远程荧光粉
    • US20090225529A1
    • 2009-09-10
    • US12378666
    • 2009-02-18
    • Waqidi FalicoffJulio C. Chaves
    • Waqidi FalicoffJulio C. Chaves
    • F21V9/16
    • F21K9/61F21K9/232H01L33/507H01L33/58
    • Light sources comprise an emitter of photostimulative light, such as one or more blue LEDs, a reflector, which may be a diverging cone, disposed to reflect light from the LEDs towards an exit aperture, a tailored aspheric lens that further collimates the light from the reflector, a short-pass filter receiving and transmitting the collimated light, a dielectric concentrator receiving the light transmitted by the filter from the LEDs and concentrating it upon the exit aperture, a dielectric emission optic on the outside of the exit aperture to receive the concentrated light, and a layer of photosensitive phosphor deposited on the outside of the emission optic, the phosphor responsive to the LED light to emit light of a longer wavelength.
    • 光源包括光激光发射器,例如一个或多个蓝色LED,可以是发散锥体的反射器,其设置成将来自LED的光反射到出射孔;定制的非球面透镜,其进一步准直来自 反射器,接收和透射准直光的短路滤光器;电介质集中器,其接收来自LED的滤光器透射的光并将其聚集在出射孔上;在出射孔的外侧上的电介质发射光学器件,用于接收集中 光和沉积在发光光学器件的外侧上的感光性荧光体层,响应于LED光的荧光体发射较长波长的光。