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    • 4. 发明授权
    • Lenticulated lens with improved light distribution
    • 透镜具有改善的光分布
    • US5442252A
    • 1995-08-15
    • US976794
    • 1992-11-16
    • Thomas M. Golz
    • Thomas M. Golz
    • F21V5/04G02B3/00G02B3/02G02B19/00F21V5/00
    • F21V5/048G02B19/0028G02B19/0047G02B3/0043G02B3/0056G02B3/02
    • A lenticular lens containing a multiplicity of multi-sided lenticules useful with reflector lamps provides improved light distribution by having the lenticules oriented to avoid parallelism with a projected light image and distributed in a plurality of zones or bands concentric about said optical center. The size and light-spreading ability of the lenticules in each zone is selected to provide the desired light distribution. Parallelism is avoided by having the lenticules arrayed in a plurality of wedge-shaped sections circumferentially arranged in a circle around the optical center of the lens and extending through the zones with the lenticules in each section arrayed in a uniform, close-packed hexagonal array of parallel rows with the longitudinal axis of one of the rows being radially aligned with respect to the optical center of the lens, so that none of the sides of the lenticules are parallel to the light source image projected off the reflector.
    • 包含多个可用于反射灯的多面透镜的双凸透镜通过使微透镜取向以避免与投影光图像平行并分布在围绕所述光学中心同心的多个区域或带中而提供改善的光分布。 选择每个区域中的微透镜的尺寸和光扩展能力以提供期望的光分布。 通过将微透镜排列在围绕透镜的光学中心周向布置成圆形的多个楔形部分中并且延伸穿过每个部分中的微透镜的区域中,以排列成均匀的紧密堆积的六边形阵列 平行列中的一行的纵向轴线相对于透镜的光学中心径向对齐,使得微透镜的任何一侧均不平行于从反射器射出的光源图像。
    • 5. 发明授权
    • Lenticulated lens
    • 透镜
    • US5683175A
    • 1997-11-04
    • US376638
    • 1995-01-23
    • Thomas M. Golz
    • Thomas M. Golz
    • F21V5/04G02B3/00G02B3/02G02B19/00F21V5/00
    • F21V5/048G02B19/0028G02B19/0047G02B3/0043G02B3/0056G02B3/02
    • A lenticular lens containing a multiplicity of multi-sided lenticules useful with reflector lamps provides improved light distribution by having the lenticules oriented to avoid parallelism with a projected light image and distributed in a plurality of zones or bands concentric about said optical center. The size and light-spreading ability of the lenticules in each zone is selected to provide the desired light distribution. Parallelism is avoided by having the lenticules arrayed in a plurality of wedge-shaped sections circumferentially arranged in a circle around the optical center of the lens and extending through the zones with the lenticules in each section arrayed in a uniform, close-packed hexagonal array of parallel rows with the longitudinal axis of one of the rows being radially aligned with respect to the optical center of the lens, so that none of the sides of the lenticules are parallel to the light source image projected off the reflector.
    • 包含多个可用于反射灯的多面透镜的双凸透镜通过使微透镜取向以避免与投影光图像平行并分布在围绕所述光学中心同心的多个区域或带中而提供改善的光分布。 选择每个区域中的微透镜的尺寸和光扩展能力以提供期望的光分布。 通过将微透镜排列在围绕透镜的光学中心周向布置成圆形的多个楔形部分中并且延伸穿过每个部分中的微透镜的区域中,以排列成均匀的紧密堆积的六边形阵列 平行列中的一行的纵向轴线相对于透镜的光学中心径向对齐,使得微透镜的任何一侧均不平行于从反射器射出的光源图像。
    • 8. 发明授权
    • Reflector lamps
    • 反光灯
    • US06774545B1
    • 2004-08-10
    • US09710675
    • 2000-11-09
    • Yutao ZhouThomas M. GolzTianji ZhaoRajasingh IsraelAshfaq Chowdhury
    • Yutao ZhouThomas M. GolzTianji ZhaoRajasingh IsraelAshfaq Chowdhury
    • H01J516
    • F21V7/04F21V7/22F21V29/15F21V29/505
    • A parabolic reflector lamp is provided wherein lamp efficiency is improved by more substantially approximating the shape of a complete parabola at the inner reflective surface. In a first embodiment, the heat shield is placed at the mouth of the opening at the base of the lamp, thereby “filling in” the opening and substantially completing the parabolic shape of the reflector. In a second embodiment, the opening at the base of the lamp is narrowed to minimize its cross-sectional area and maximizing reflective surface area. In a third embodiment, the glass shell of the lamp is provided in a two-piece configuration, allowing the size of the hole through the base of the glass shell to be reduced. The openings required to accommodate electrodes (and an exhaust tube in sealed lamps) are located in a second cup-shaped piece attached via a flange to the main body of the glass shell.
    • 提供了一种抛物面反射灯,其中灯效率通过更基本上近似于内反射表面处的完整抛物线的形状来改善。 在第一实施例中,隔热罩放置在灯底部开口的口处,从而“插入”开口并且基本上完成反射器的抛物线形状。 在第二实施例中,灯底部的开口变窄,以使其横截面积最小化并使反射表面积最大化。 在第三实施例中,灯的玻璃壳设置成两件式的构造,允许减小通过玻璃外壳的基座的孔的尺寸。 用于容纳电极(和密封灯中的排气管)所需的开口位于通过凸缘附接到玻璃壳主体的第二杯形件中。