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    • 41. 发明授权
    • Manufacture of micro mirror balls and circumscribing bearings for solar energy concentration and other optical functions
    • 制造微镜球和外接轴承用于太阳能集中和其他光学功能
    • US07486431B2
    • 2009-02-03
    • US11559770
    • 2006-11-14
    • Mario Rabinowitz
    • Mario Rabinowitz
    • A63B39/00B32B37/00B32B38/10B29D11/00G09G3/34G02B26/00
    • G02B26/026F24S23/77F24S23/82F24S30/40F24S2023/85F24S2023/872Y02E10/47
    • Method and apparatus are presented for the mass production manufacturing of planar mirrors inside transparent micro balls circumscribed by lubricated bearings for solar energy concentration and related applications such as optical switches, etc. These bearings permit rotational alignment of the balls with minimal friction. The preferred mass production process utilizes photolithography in an optical microlithographic photoresist process. The micro-balls are in the size range of ˜1 micron (1×10-6 m) to 1000 microns (1 mm). The micro-balls vary in geometry from spheres to cylinders to oblate ellipsoids to disks. The term “elements” is used to encompass all these shapes, which have one thing in common—a flat specularly reflecting mirrored surface. An important aspect of the manufacturing process is the containment of the mirrored micro-balls in the interior of lubricated bearings which are preferably concentric with the balls, which circumscribed concentricity can also be preferably accomplished by a microlithographic process.
    • 提出了用于太阳能集中的润滑轴承和诸如光学开关等相关应用的外部透明微球内的平面镜的大规模生产制造的方法和装置。这些轴承允许滚珠以最小的摩擦进行旋转对准。 优选的批量生产方法在光学微光刻胶工艺中使用光刻法。 微球的尺寸范围为〜1微米(1×10-6米)至1000微米(1mm)。 微球的几何形状从球体到圆柱体不同,以椭圆形到圆盘。 术语“元素”用于包含所有这些形状,它们有一个共同点 - 平面镜面反射镜面。 制造过程的一个重要方面是将润滑轴承的内部中的镜像微球容纳在优选与球同心的位置,该外接的同心度也可优选地通过微光刻工艺实现。
    • 42. 发明授权
    • Induced dipole alignment of solar concentrator balls
    • 太阳能集中器球的诱导偶极子对准
    • US07187490B2
    • 2007-03-06
    • US11031304
    • 2005-01-07
    • Mario Rabinowitz
    • Mario Rabinowitz
    • G02B26/00
    • G02B26/026F24S23/77F24S23/82F24S2023/87Y02E10/40
    • The instant invention is concerned with method and apparatus for induced dipole alignment of solar concentrator micro-mirrors. Novel method and apparatus are taught for coupling to, addressing, and alignment of a micro-optics solar concentrator system for single-axis and two-axis tracking. Mirrored micro-balls are covered with a thin spherical shell of lubricating liquid so that they are free to rotate in an almost frictionless encapsulation in the sheet. Novel method and apparatus are presented for matching the overall ball density with that of the lubricating fluid. Broadly this invention deals with novel concepts used for alignment in the focussing of light wherever mirrors are used for focussing such as for solar propulsion assist, illumination and projection of light, optical switching, etc. A particularly important objective is the focussing of sunlight for solar power conversion and production.
    • 本发明涉及用于太阳能集中器微反射镜的感应偶极对准的方法和装置。 教导了用于单轴和双轴跟踪的微光学太阳能集中器系统的耦合,寻址和对准的新颖方法和装置。 镜面微球被润滑液体的薄球形壳体覆盖,使得它们在片材中几乎无摩擦的封装中自由旋转。 提出了将整体球密度与润滑流体的总体密度相匹配的新方法和装置。 广泛地说,本发明涉及用于聚焦光的对准的新颖概念,无论何时使用反射镜用于聚焦,例如用于太阳能推进辅助,照明和投射光,光学切换等。一个特别重要的目标是将太阳聚焦于太阳 电力转换生产。
    • 43. 发明授权
    • Dynamic reflection, illumination, and projection
    • 动态反射,照明和投影
    • US07130102B2
    • 2006-10-31
    • US10894241
    • 2004-07-19
    • Mario Rabinowitz
    • Mario Rabinowitz
    • G02B26/00G02F1/29G09G3/34
    • G09F9/372F16C33/1035F24S23/77F24S2023/87G02B26/026G02B26/0833Y02E10/40
    • This invention deals with the broad general concept for dynamic reflection, illumination and direct image projection. A mini-optics reflection and focussing system is presented that ranges from interior illumination, to exterior illumination, to large scale space based illumination, to ordinary and to telescopic image formation. It can be used both as a source of illumination, and to project images, figures, and the written word. This system has broad applications such as dynamic full color displays. Its use of a novel induced dipole coupling for rotation of planar mirrors lets it operate with greater simplicity and efficiency than other display devices. Furthermore in its capacity as a high altitude active reflector of solar radiation, it can be utilized to supply illumination, energy, and provide climate control.
    • 本发明涉及动态反射,照明和直接图像投影的广泛的一般概念。 提出了一种从室内照明到外部照明,大尺寸空间照明,普通和望远镜图像形成的微型光学反射和聚焦系统。 它既可以用作照明源,也可以用于投影图像,图形和书面文字。 该系统具有广泛的应用,如动态全彩显示。 它使用新颖的感应偶极耦合来平面反射镜的旋转使得它能够以比其他显示装置更大的简单性和效率运行。 此外,作为太阳辐射的高空活性反射器,它可以用于提供照明,能源和提供气候控制。
    • 45. 发明授权
    • Micro-optics concentrator for solar power satellites
    • 太阳能发电卫星微光学聚光器
    • US07077361B1
    • 2006-07-18
    • US11047320
    • 2005-01-31
    • Mario Rabinowitz
    • Mario Rabinowitz
    • B64G1/44
    • B64G1/44F24S23/77F24S2023/85F24S2023/872H01L31/0547Y02E10/40Y02E10/52
    • There is an increasingly intense need to harness solar energy due to an ever growing shortage of conventional energy sources, The instant invention is concerned with method and apparatus for solar concentrator micro-mirrors on solar power satellites and the moon to focus and reflect large quantities of solar energy. Method and apparatus are taught for directly reflecting solar energy to the Earth; reflecting solar energy to a microwave converter in space which transmits microwave energy to the Earth; and reflecting solar energy to a laser radiation converter which beams laser radiation to the Earth. The concentrated energy received at the Earth may be converted directly to electricity or indirectly by thermo-mechanical means. The advantages and disadvantages of the different means of sending such concentrated energy to the Earth are discussed. A particularly important objective of this invention is the focussing of sunlight for solar power conversion and production. The instant invention can contribute to the goal of achieving environmentally clean solar energy on a large enough scale to be competitive with conventional energy sources.
    • 由于常规能源的不断增加,对太阳能的需求日益增加。本发明涉及用于太阳能发电卫星的太阳能集中器微反射镜的方法和装置,并且月亮聚焦并反映大量的 太阳能。 教导了将太阳能直接反射到地球的方法和装置; 将太阳能反射到空间中的微波转换器,将微波能量传输到地球; 并将太阳能反射到将激光辐射射向地球的激光辐射转换器。 在地球接收的集中能量可以直接转换为电力,也可以通过热机械方式间接转换。 讨论了将这种集中能量发送到地球的不同手段的优缺点。 本发明的一个特别重要的目标是将太阳光的聚焦集中在太阳能转换和生产中。 本发明可以有助于在足够大的规模上实现环境清洁太阳能以与常规能源竞争的目标。
    • 46. 发明申请
    • Induced dipole alignment of solar concentrator balls
    • 太阳能集中器球的诱导偶极子对准
    • US20060150968A1
    • 2006-07-13
    • US11031304
    • 2005-01-07
    • Mario Rabinowitz
    • Mario Rabinowitz
    • F24J2/00
    • G02B26/026F24S23/77F24S23/82F24S2023/87Y02E10/40
    • Due to an ever growing shortage of conventional energy sources, there is an increasingly intense interest in harnessing solar energy. The instant invention is concerned with method and apparatus for induced dipole alignment of solar concentrator micro-mirrors. Novel method and apparatus are taught for coupling to, addressing, and alignment of a micro-optics solar concentrator system for single-axis and two-axis tracking. Mirrored micro-balls are covered with a thin spherical shell of lubricating liquid so that they are free to rotate in an almost frictionless encapsulation in the sheet. Novel method and apparatus are presented for matching the overall ball density with that of the lubricating fluid. Broadly this invention deals with novel concepts used for alignment in the focussing of light wherever mirrors are used for focussing such as for solar propulsion assist, illumination and projection of light, optical switching, etc. A particularly important objective is the focussing of sunlight for solar power conversion and production. The instant invention can contribute to the goal of achieving environmentally clean solar energy on a large enough scale to be competitive with conventional energy sources.
    • 由于常规能源不断增加,对太阳能利用的兴趣日益增加。 本发明涉及用于太阳能集中器微反射镜的感应偶极对准的方法和装置。 教导了用于单轴和双轴跟踪的微光学太阳能集中器系统的耦合,寻址和对准的新颖方法和装置。 镜面微球被润滑液体的薄球形壳体覆盖,使得它们在片材中几乎无摩擦的封装中自由旋转。 提出了将整体球密度与润滑流体的总体密度相匹配的新方法和装置。 广泛地说,本发明涉及用于聚焦光的对准的新颖概念,无论何时使用反射镜用于聚焦,例如用于太阳能推进辅助,照明和投射光,光学切换等。一个特别重要的目标是将太阳聚焦于太阳 电力转换生产。 本发明可以有助于在足够大的规模上实现环境清洁太阳能以与常规能源竞争的目标。
    • 47. 发明授权
    • Advanced micro-optics solar energy collection system
    • 先进的微光太阳能收集系统
    • US06988809B2
    • 2006-01-24
    • US10760068
    • 2004-01-16
    • Mario Rabinowitz
    • Mario Rabinowitz
    • G02B7/182
    • G02B26/0833F24S23/70F24S23/77F24S2023/85F24S2023/87F24S2023/872G02B26/026Y02E10/40
    • Due to an ever growing shortage of conventional energy sources, there is an increasingly intense interest in harnessing solar energy. Broadly this invention deals with the general concept of method, apparatus, and consequences of focussing light. Specifically the Coherent-Micro-Macro-Collector of this invention is the unique total solar collector system consisting of concentrator and receiver. Method and apparatus are detailed for systems with: 1. Passive or non-tracking. 2. Semi-Passive tracking 2. Single-axis tracking. 3. Two-axis tracking. Also detailed are means for operating the collector system of micro-optics and receiver on the ground and protection means. A particularly important object of the CMMC is the focussing of sunlight for solar power conversion and production.
    • 由于常规能源不断增加,对太阳能利用的兴趣日益增加。 本发明广泛地涉及聚焦光的方法,装置和后果的一般概念。 具体地说,本发明的相干微型微集电器是由集中器和接收器组成的独特的总太阳能收集器系统。 系统的方法和装置详细说明:1.被动或非跟踪。 2.半无源跟踪2.单轴跟踪。 三轴跟踪。 还详细说明了在地面和保护装置上操作微光学和接收器的收集器系统的装置。 CMMC的一个特别重要的对象是太阳能转换和生产的太阳能集中。
    • 50. 发明授权
    • Emissive flat panel display with improved regenerative cathode
    • 具有改进的再生阴极的发射平板显示器
    • US5967873A
    • 1999-10-19
    • US909259
    • 1997-08-11
    • Mario Rabinowitz
    • Mario Rabinowitz
    • H01J1/304H01J9/02H01J29/04
    • H01J29/04H01J1/304H01J9/022H01J9/025H01J2201/317H01J2237/3146H01J2329/00
    • Method and apparatus are presented for the generation, regeneration, and transplantation of field enhancing whiskers to provide for an improved cathode in flat panel displays in particular, and in other applications. Such applications comprise devices in which there is an emissive cathode structure for producing electrons. There are dear advantages for the instant invention in the case of a flat panel display which requires a relatively large cathode area, because the present invention avoids excessive power loss due to radiation and conduction loss by permitting operation of the cathode at a significantly lower temperature than if it operated solely as a thermionic emitter. The combination of moderately elevated temperature and enhanced electric field allows the advantages of thermo-field assisted emission.
    • 提出了用于产生,再生和移植场增强晶须的方法和装置,以在平板显示器,特别是在其它应用中提供改进的阴极。 这种应用包括其中存在用于产生电子的发射阴极结构的装置。 在需要相对较大的阴极面积的平板显示器的情况下,本发明具有亲爱的优点,因为本发明通过允许阴极以比显着更低的温度操作来避免由于辐射和传导损耗而导致的功率损耗过大 如果它仅作为热离子发射器运行。 中等温度和增强电场的组合允许热场辅助发射的优点。