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    • 73. 发明授权
    • Laser illumination device, illumination method, semiconductor element manufacturing method, projection display device, and image display method using the projection display device
    • 激光照明装置,照明方法,半导体元件制造方法,投影显示装置和使用该投影显示装置的图像显示方法
    • US08517542B2
    • 2013-08-27
    • US12996888
    • 2010-04-23
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • G03B21/14
    • H01L21/268G02B6/0008G03B21/2013G03B21/2033G03B21/204G03B21/208G03B21/28G03B21/62H01S5/005H01S5/02284H01S5/4012H01S5/4025
    • A laser illumination device for providing a light intensity distribution of a high-intensity and uniform illumination light flux is obtained. The device includes a plurality of light source modules (20) each including: a plurality of light source units (8), in each of which a semiconductor laser (1), and a laser medium (5) and a nonlinear material (7) which are flat-shaped and have a waveguide structure are arranged on the same plane, for performing continuous oscillation in a waveguide mode of the laser medium (5); and a first optical system (12) for coupling laser oscillation beams from the plurality of light source units (8). The device further includes: a second optical system (15) for coupling laser light beams propagating from the plurality of light source modules (20) through first optical fibers (13) and a second optical fiber array (14); a uniformization element (16) for converting a laser light beam from the second optical system (15) into a uniform laser light beam; and a third optical system (17) for projecting, to a substrate (19) which is an illuminated surface (18), the uniform laser light beam obtained through the uniformization element (16) at a predetermined magnification, to produce an illumination light flux (11).
    • 获得用于提供高强度和均匀照明光通量的光强度分布的激光照明装置。 该装置包括多个光源模块(20),每个光源模块包括:多个光源单元(8),每个光源单元(8)中的每一个都具有半导体激光器(1)和激光介质(5)和非线性材料(7) 平面状的波导结构被布置在同一平面上,用于在激光介质(5)的波导模式中进行连续振荡。 以及用于耦合来自所述多个光源单元(8)的激光振荡光束的第一光学系统(12)。 该装置还包括:第二光学系统(15),用于将从多个光源模块(20)传播的激光束通过第一光纤(13)和第二光纤阵列(14)耦合; 用于将来自第二光学系统(15)的激光束转换成均匀的激光束的均匀化元件(16); 以及第三光学系统(17),用于将以通过所述均匀化元件(16)获得的均匀的激光束以预定的倍率投射到作为照明表面(18)的基板(19),以产生照明光通量 (11)。
    • 75. 发明申请
    • LASER ILLUMINATION DEVICE, ILLUMINATION METHOD, SEMICONDUCTOR ELEMENT MANUFACTURING METHOD, PROJECTION DISPLAY DEVICE, AND IMAGE DISPLAY METHOD USING THE PROJECTION DISPLAY DEVICE
    • 激光照明装置,照明方法,半导体元件制造方法,投影显示装置和使用投影显示装置的图像显示方法
    • US20110090462A1
    • 2011-04-21
    • US12996888
    • 2010-04-23
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • Takao EndoShuhei YamamotoYoshihito HiranoYasuhisa Tamagawa
    • G03B21/26H01L21/26G21K5/00
    • H01L21/268G02B6/0008G03B21/2013G03B21/2033G03B21/204G03B21/208G03B21/28G03B21/62H01S5/005H01S5/02284H01S5/4012H01S5/4025
    • A laser illumination device for providing a light intensity distribution of a high-intensity and uniform illumination light flux is obtained. The device includes a plurality of light source modules (20) each including: a plurality of light source units (8), in each of which a semiconductor laser (1), and a laser medium (5) and a nonlinear material (7) which are flat-shaped and have a waveguide structure are arranged on the same plane, for performing continuous oscillation in a waveguide mode of the laser medium (5); and a first optical system (12) for coupling laser oscillation beams from the plurality of light source units (8). The device further includes: a second optical system (15) for coupling laser light beams propagating from the plurality of light source modules (20) through first optical fibers (13) and a second optical fiber array (14); a uniformization element (16) for converting a laser light beam from the second optical system (15) into a uniform laser light beam; and a third optical system (17) for projecting, to a substrate (19) which is an illuminated surface (18), the uniform laser light beam obtained through the uniformization element (16) at a predetermined magnification, to produce an illumination light flux (11).
    • 获得用于提供高强度和均匀照明光通量的光强度分布的激光照明装置。 该装置包括多个光源模块(20),每个光源模块包括:多个光源单元(8),每个光源单元(8)中的每一个都具有半导体激光器(1)和激光介质(5)和非线性材料(7) 平面状的波导结构被布置在同一平面上,用于在激光介质(5)的波导模式中进行连续振荡。 以及用于耦合来自所述多个光源单元(8)的激光振荡光束的第一光学系统(12)。 该装置还包括:第二光学系统(15),用于将从多个光源模块(20)传播的激光束通过第一光纤(13)和第二光纤阵列(14)耦合; 用于将来自第二光学系统(15)的激光束转换成均匀的激光束的均匀化元件(16); 以及第三光学系统(17),用于将以通过所述均匀化元件(16)获得的均匀的激光束以预定的倍率投射到作为照明表面(18)的基板(19),以产生照明光通量 (11)。
    • 79. 发明授权
    • Optical control type phased array antenna
    • 光控型相控阵天线
    • US07382983B2
    • 2008-06-03
    • US10533181
    • 2003-05-29
    • Masashi MizumaToshiyuki AndoTomohiro AkiyamaYoshihito Hirano
    • Masashi MizumaToshiyuki AndoTomohiro AkiyamaYoshihito Hirano
    • H04B10/00H04B10/12H04B10/04H01Q1/06
    • H01Q3/2676
    • An optical control type phased array antenna includes a laser generating means for generating light of single wavelength, an optical path branching means for branching the light emitted from the laser generating means into first and second transmission lights, a high frequency signal generating means for generating a high frequency signal, an optical frequency modulating means for shifting the frequency of the first transmission light branched by the optical path branching means by the frequency of a high frequency signal thus generated, a spatial light phase modulating means performing spatial phase modulation of the first transmission light shifted by the frequency of a high frequency signal depending on the antenna beam pattern, and an optical path branching/multiplexing means for multiplexing the first transmission light subjected to phase modulation and the second transmission light branched by the optical path branching means. Optical path lengths of two paths between the optical path branching means and the optical path branching/multiplexing means are equalized.
    • 光控制型相控阵天线包括用于产生单波长的光的激光发生装置,用于将从激光发生装置发射的光分支到第一和第二透射光的光路分支装置,用于产生 高频信号;光频调制装置,用于将由光路分支装置分支的第一透射光的频率移动到由此产生的高频信号的频率;空间光相位调制装置,执行第一传输的空间相位调制 根据天线波束图案移位高频信号的频率的光路分支/多路复用装置,用于多路复用经相位调制的第一透射光和由光路分支装置分支的第二透射光。 光路分支装置和光路分支/多路复用装置之间的两条路径的光路长度相等。