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    • 61. 发明申请
    • FLUORESCENCE INFORMATION READING DEVICE AND FLUORESCENCE INFORMATION READING METHOD
    • 荧光信息读取装置和荧光信息读取方法
    • US20150008338A1
    • 2015-01-08
    • US14373646
    • 2012-11-29
    • Sharp Kabushiki Kaisha
    • Yukio Watanabe
    • G02B3/00G02B19/00G01N21/64
    • G02B3/00G01N21/645G01N21/6452G01N21/6486G01N2021/6439G01N2021/6478G01N2201/06113G01N2201/101G02B6/0035G02B19/0028G02B19/0047
    • Sensitivity is increased by enhancing the fluorescence collection efficiency while suppressing the increase in size of an objective lens. An objective lens 17 is structured to have a convex lens part 26 in a center portion and to have a truncated conical cylindrical body 27 around the convex lens part 26. Therefore, a fluorescence component b having too wide an emission angle to fit in the convex lens part 26, of fluorescence emitted from a sample 16, can be collected by total reflection on an outer peripheral surface 27b of the cylindrical body 27. Thus, even light having too wide an emission angle to be collected by a normal convex lens can be collected. As a result, it is possible to suppress the increase in size of the objective lens, to enhance the fluorescence collection efficiency, and to prevent the S/N ratio from being decreased by the existence of undetected fluorescence that is blocked by a prism 20. This can realize a fluorescence information reading device having high sensitivity.
    • 通过提高荧光收集效率同时抑制物镜尺寸的增加来增加灵敏度。 物镜17被构造为在中心部分具有凸透镜部分26,并且在凸透镜部分26周围具有截头锥形圆柱体27.因此,具有太宽的发射角度的荧光分量b以适合凸起 可以通过在圆筒体27的外周面27b上的全反射来收集从样品16发出的荧光的透镜部分26.因此,即使由普通凸透镜收集的具有太大的发射角的光也可以是 集。 结果,可以抑制物镜的尺寸增加,提高荧光收集效率,并且通过由棱镜20阻挡的未被检测到的荧光的存在来防止S / N比降低。 这可以实现具有高灵敏度的荧光信息读取装置。
    • 64. 发明授权
    • Method of manufacturing optical part and optical part, and method of manufacturing display and display
    • 制造光学部件和光学部件的方法,以及制造显示和显示的方法
    • US08882282B2
    • 2014-11-11
    • US13121887
    • 2009-09-17
    • Kazuhito HoriHiroshi Tanaka
    • Kazuhito HoriHiroshi Tanaka
    • G02B5/08G02B5/22G02B19/00H01L51/52H01L27/32
    • H01L51/5271G02B19/0028G02B19/0047G02B19/0066G02B19/0095H01L27/322H01L27/3244H01L2251/5315
    • In one embodiment, a light-emitting device includes an optical part which is configured to prevent the formation of a residual film and to enhance light extraction efficiency. In one embodiment, an optical part as a reflective plate is arranged on a light extraction side of a light-emitting panel. In one embodiment, a plurality of optical function elements are formed independently of one another on a base of the optical part. In one embodiment, a residual film which is an optically unnecessary part between the base and the plurality of optical function elements is eliminated to prevent unnecessary light guiding, reflection or the like to the residual film. In one embodiment, in a light-emitting device including the optical part, stray light due to unnecessary light guiding or reflection to the residual film is reduced, and an improvement in light extraction efficiency achievable.
    • 在一个实施例中,发光装置包括被配置为防止形成残留膜并提高光提取效率的光学部件。 在一个实施例中,作为反射板的光学部件布置在发光面板的光提取侧。 在一个实施例中,在光学部件的基部上彼此独立地形成多个光学功能元件。 在一个实施例中,消除了作为基底和多个光学功能元件之间的光学上不需要的部分的残留膜,以防止对残留膜的不必要的光引导,反射等。 在一个实施例中,在包括光学部件的发光装置中,由于对剩余膜的不必要的光引导或反射引起的杂散光减少,并且可以实现光提取效率的提高。
    • 66. 发明授权
    • Projection lens and projection apparatus
    • 投影镜头和投影仪
    • US08675292B2
    • 2014-03-18
    • US13273210
    • 2011-10-13
    • Kuo-Chuan WangYi-Hao KangChi-Tang HsiehChia-Chang Lee
    • Kuo-Chuan WangYi-Hao KangChi-Tang HsiehChia-Chang Lee
    • G02B13/16
    • G02B13/16G02B19/0014G02B19/0047
    • A projection lens for projecting an image beam is provided. The image beam is converted by a light valve from an illumination beam irradiating the light valve. The projection lens includes a first lens group, a second lens group, and a third lens group. The first lens group is disposed on a transmission path of the image beam, and has a first optical axis. The second lens group is disposed on both a transmission path of the illumination beam and the transmission path of the image beam, and between the light valve and the first lens group. The second lens group has a second optical axis. The second optical axis is inclined with respect to the first optical axis. The third lens group is disposed on the transmission path of the image beam, and between the first lens group and the second lens group. A projection apparatus is also provided.
    • 提供了用于投影图像束的投影透镜。 图像光束通过光阀从照射光阀的照明光束转换。 投影透镜包括第一透镜组,第二透镜组和第三透镜组。 第一透镜组设置在图像束的传输路径上,并且具有第一光轴。 第二透镜组设置在照明光束的传输路径和图像束的传输路径之间,以及光阀和第一透镜组之间。 第二透镜组具有第二光轴。 第二光轴相对于第一光轴倾斜。 第三透镜组设置在图像束的传输路径上,并且位于第一透镜组和第二透镜组之间。 还提供投影设备。
    • 68. 发明授权
    • Illumination lens
    • 照明镜头
    • US08579472B2
    • 2013-11-12
    • US13280858
    • 2011-10-25
    • Fumiaki Koizumi
    • Fumiaki Koizumi
    • F21V7/04F21V5/04
    • F21V5/04F21V7/0091F21V13/04F21Y2115/10G02B19/0028G02B19/0047G02B19/0061
    • The present invention provides an illumination lens which suppresses a change of an illuminance distribution following a change of an arrangement position of a light source with respect to the illumination lens. A reflection surface and emission surface of the illumination lens are configured to refract and emit, in the emission surface, second illumination light and third illumination light with refracting power of different signs. By changing an illuminance distribution of third illumination light to cancel the change of an illuminance distribution of the second illumination light when a light source is moved, it is possible to suppress the change of the illuminance distribution small even when the light source is moved back and forth.
    • 本发明提供了一种照明透镜,其抑制随着光源相对于照明透镜的布置位置的改变而改变照度分布。 照明透镜的反射面和发射面被配置为在发射表面中折射并发射具有不同符号的折射力的第二照明光和第三照明光。 通过改变第三照明光的照度分布以消除光源移动时第二照明光的照度分布的变化,即使当光源被移回时也可以抑制照度分布的变化小, 向前。
    • 69. 发明申请
    • PROJECTION SYSTEM, LIGHT SOURCE SYSTEM AND LIGHT SOURCE ASSEMBLY
    • 投影系统,光源系统和光源组件
    • US20130258639A1
    • 2013-10-03
    • US13992243
    • 2011-12-07
    • Fei HuYi LiYi Yang
    • Fei HuYi LiYi Yang
    • F21V9/08
    • G03B21/204F21K9/64F21S10/007F21V9/08F21V9/30F21V9/40F21V13/08F21Y2101/00F21Y2115/00F21Y2115/10G02B19/0028G02B19/0047G02B26/008G02F2002/006G03B21/14G03B21/2066G03B21/28H04N9/3114H04N9/3117H04N9/315H04N9/3155H04N2209/043
    • Provided is a projection system, a light source system, and a light source assembly. The light source system (100) comprises an excitation light source (101), a wavelength conversion device (106), a color filtering device (107), a drive device (108), and a first optical assembly. The wavelength conversion device (106) comprises at least one wavelength conversion region. The optical filtering device (107) is fixed face-to-face with the wavelength conversion device (106), and comprises at least a first optical filtering region. The drive device (108) drives the wavelength conversion device (106) and the optical filtering device (107), allowing the wavelength conversion region and the first optical filtering region to act synchronously, and the wavelength conversion region is periodically set on the propagation path of the excitation light, thereby converting the excitation light wavelength into converted light. The first optical assembly allows the converted light to be incident on the first optical filtering region. The first optical filtering region filters the converted light, so as to enhance the color purity of the converted light. The light source system is simple in structure, easy to implement, and highly synchronous.
    • 提供了投影系统,光源系统和光源组件。 光源系统(100)包括激发光源(101),波长转换装置(106),滤色装置(107),驱动装置(108)和第一光学组件。 波长转换装置(106)包括至少一个波长转换区域。 光学滤波装置(107)与波长转换装置(106)面对面地固定,并且至少包括第一光学滤波区域。 驱动装置(108)驱动波长转换装置(106)和光学滤波装置(107),允许波长转换区域和第一光学滤波区域同步地进行,波长转换区域周期性地设置在传播路径 的激发光,从而将激发光波长转换成转换光。 第一光学组件允许转换的光入射在第一光学过滤区域上。 第一光学滤波区域对转换后的光进行滤光,从而提高转换光的色纯度。 光源系统结构简单,易于实现,高度同步。
    • 70. 发明申请
    • LENS DEVICE FOR FOCUSING OR DIFFUSING LIGHT BEAMS
    • 用于聚焦或扩散光束的镜头装置
    • US20130176740A1
    • 2013-07-11
    • US13345759
    • 2012-01-09
    • Wen-Sung LEE
    • Wen-Sung LEE
    • F21V5/04
    • F21V5/008F21V5/048F21Y2115/10G02B19/0014G02B19/0047
    • A lens device for focusing or diffusing light beams includes a lens body having a flat sheet, a first convex lens extruded away from one end of the flat sheet, a second convex lens extruded away from another end of the flat sheet, the distance between an apex of the first convex lens and the center of the bottom of the first convex lens being larger than the distance between an apex of the second convex lens and the center of the bottom of the second convex lens. Although the surface of the first convex lens is not flawless after the compression molding and light beams cannot be refracted uniformly by the first convex lens, the second convex lens refracts the light beams for pre-adjusting before the light beams are refracted by the first convex lens.
    • 用于聚焦或漫射光束的透镜装置包括具有平片的透镜体,从平片的一端挤出的第一凸透镜,从平片的另一端挤出的第二凸透镜, 第一凸透镜的顶点和第一凸透镜的底部的中心大于第二凸透镜的顶点与第二凸透镜的底部的中心之间的距离。 虽然第一凸透镜的表面在压缩成型之后不是完美的,并且光束不能被第一凸透镜均匀地折射,但是在光束被第一凸起折射之前,第二凸透镜折射用于预调整的光束 镜片。