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    • 1. 发明授权
    • Illumination system
    • 照明系统
    • US07859761B2
    • 2010-12-28
    • US11857594
    • 2007-09-19
    • Yi-Hsueh ChenSung-Nan ChenKeng-Han Chuang
    • Yi-Hsueh ChenSung-Nan ChenKeng-Han Chuang
    • G02B27/14
    • G02B27/48G03B21/28H04N9/3129
    • An illumination system including a coherent light source and a speckle-reducing module is provided. The coherent light source is adopted for providing a light beam. The speckle-reducing module is disposed at an optical path of the light beam. The speckle-reducing module includes a rotator, a carrier and an optical path adjusting member. The rotator is adopted for rotating on a reference plane about a spindle axis passing through the rotator. The spindle axis is substantially perpendicular to the reference plane. The carrier is disposed at the rotator. The optical path adjusting member is disposed at the carrier and at the optical path of the light beam. The optical path adjusting member has an incident surface inclined at an angle with respect to the reference plane.
    • 提供了包括相干光源和散斑模块的照明系统。 采用相干光源提供光束。 斑点减少模块设置在光束的光路上。 散斑模块包括旋转器,载体和光路调节构件。 旋转器被用于围绕通过旋转器的主轴轴线在参考平面上旋转。 主轴基本上垂直于参考平面。 载体设置在旋转体上。 光路调整部件配置在光束的载体和光路上。 光路调整部件具有相对于基准面倾斜一定角度的入射面。
    • 2. 发明申请
    • OPTICAL MODULE
    • 光学模块
    • US20090021829A1
    • 2009-01-22
    • US11968818
    • 2008-01-03
    • Sung-Nan ChenKeng-Han ChuangYi-Hsueh Chen
    • Sung-Nan ChenKeng-Han ChuangYi-Hsueh Chen
    • G02B27/28G02B27/10
    • G02B27/283G02B17/004G02B27/0927G02B27/0994
    • An optical module including a first integration rod, a polarization beam splitting unit, a first reflector, a first quarter-wave plate, and a light source is provided. The first integration rod has a first end and a second end opposite to each other. The polarization beam splitting unit is disposed at a side of the first end. The polarization beam splitting unit reflects a beam with a first polarization direction and allows a beam with a second polarization direction to pass through. The first reflector is disposed at a side of the second end. The first quarter-wave plate is disposed between the polarization beam splitting unit and the first reflector. The light source provides a light beam to the polarization beam splitting unit. The light beam includes a first polarization beam with the first polarization direction. The polarization beam splitting unit reflects the first polarization beam to the first integration rod.
    • 提供了包括第一积分杆,偏振光束分离单元,第一反射器,第一四分之一波片和光源的光学模块。 第一整合杆具有彼此相对的第一端和第二端。 偏振光束分离单元设置在第一端的一侧。 偏振光束分离单元反射具有第一偏振方向的光束,并允许具有第二偏振方向的光束通过。 第一反射器设置在第二端的一侧。 第一四分之一波片设置在偏振光束分离单元和第一反射器之间。 光源向偏振光束分离单元提供光束。 光束包括具有第一偏振方向的第一偏振光束。 偏振分束单元将第一偏振光束反射到第一积分杆。
    • 3. 发明申请
    • ILLUMINATION SYSTEM
    • 照明系统
    • US20080239447A1
    • 2008-10-02
    • US11857594
    • 2007-09-19
    • Yi-Hsueh ChenSung-Nan ChenKeng-Han Chuang
    • Yi-Hsueh ChenSung-Nan ChenKeng-Han Chuang
    • G02B26/08
    • G02B27/48G03B21/28H04N9/3129
    • An illumination system including a coherent light source and a speckle-reducing module is provided. The coherent light source is adopted for providing a light beam. The speckle-reducing module is disposed at an optical path of the light beam. The speckle-reducing module includes a rotator, a carrier and an optical path adjusting member. The rotator is adopted for rotating on a reference plane about a spindle axis passing through the rotator. The spindle axis is substantially perpendicular to the reference plane. The carrier is disposed at the rotator. The optical path adjusting member is disposed at the carrier and at the optical path of the light beam. The optical path adjusting member has an incident surface inclined at an angle with respect to the reference plane.
    • 提供了包括相干光源和散斑模块的照明系统。 采用相干光源提供光束。 斑点减少模块设置在光束的光路上。 散斑模块包括旋转器,载体和光路调节构件。 旋转器被用于围绕通过旋转器的主轴轴线在参考平面上旋转。 主轴基本上垂直于参考平面。 载体设置在旋转体上。 光路调整部件配置在光束的载体和光路上。 光路调整部件具有相对于基准面倾斜一定角度的入射面。
    • 6. 发明申请
    • ILLUMINATION SYSTEM AND PROJECTION APPARATUS
    • 照明系统和投影设备
    • US20070242231A1
    • 2007-10-18
    • US11627023
    • 2007-01-25
    • Sung-Nan ChenKeng-Han Chuang
    • Sung-Nan ChenKeng-Han Chuang
    • G03B21/26
    • G03B21/2013G03B21/2033G03B21/208G03B33/12
    • An illumination system including a light integration rod, light source modules and a light guide element is provided. The light integration rod has a light incident end and a light exit end. The light source modules are disposed adjacent to the light incident end, and each light source module is suitable for providing a converging light beam. The light guide element is disposed adjacent to the light incident end and between the light source modules for guiding each light beam to be incident to the light integration rod. The optical axes of the light beams are parallel to each other and a distance exists between any two optical axes of the light beams. The light beams are combined inside the light integration rod and emitted from the light exit end to provide an illumination beam. Moreover, a projection apparatus having the illumination system is provided.
    • 提供了包括光集成杆,光源模块和导光元件的照明系统。 光集成杆具有光入射端和光出射端。 光源模块设置成与光入射端相邻,并且每个光源模块适于提供会聚光束。 光导元件与光入射端相邻并且在光源模块之间设置,用于引导入射到光聚合杆的每个光束。 光束的光轴彼此平行,并且在光束的任何两个光轴之间存在距离。 光束在光集成棒内组合并从光出射端发射以提供照明光束。 此外,提供具有照明系统的投影装置。
    • 9. 发明申请
    • Projector
    • 投影机
    • US20070024828A1
    • 2007-02-01
    • US11491155
    • 2006-07-24
    • Long-Sheng LiaoSung-Nan ChenYi-Hsueh Chen
    • Long-Sheng LiaoSung-Nan ChenYi-Hsueh Chen
    • G03B21/00
    • G03B21/005
    • The present invention provides a projector utilizing two projecting light beams to enhance the resolutions thereof and comprises a light source, a light valve, an ultrasonic medium, a piezoelectric material, and a high-frequency oscillator. The light source device is used for generating light beams to project onto the light valve to form imaging light beams. The ultrasonic medium is passed through the imaging light beams with an incident angle, the piezoelectric material is disposed on one end of the ultrasonic medium, and the high-frequency oscillator electrically connects to the piezoelectric material for generating ultrasonic waves. The ultrasonic waves from the piezoelectric material are delivered to the ultrasonic medium and the imaging light beams pass through the ultrasonic medium to form a diffraction light beam along a first direction and a transmission light beam along a second direction are produced in order to increase resolution of images projected from the projector.
    • 本发明提供一种利用两个投影光束来增强其分辨率的投影仪,其包括光源,光阀,超声介质,压电材料和高频振荡器。 光源装置用于产生投射到光阀上的光束以形成成像光束。 超声波介质以入射角通过成像光束,压电材料设置在超声介质的一端,高频振荡器电连接到用于产生超声波的压电材料。 来自压电材料的超声波被传送到超声波介质,并且成像光束通过超声介质以形成沿着第一方向的衍射光束,并且产生沿着第二方向的透射光束,以便提高分辨率 从投影机投影的图像。
    • 10. 发明授权
    • Polarization conversion system and illumination module
    • 极化转换系统和照明模块
    • US07529024B1
    • 2009-05-05
    • US12208623
    • 2008-09-11
    • Sung-Nan Chen
    • Sung-Nan Chen
    • G02B5/30G02B27/28G03B21/14G03B21/28
    • G02B27/285G02B27/28G03B21/14G03B21/2073G03B21/28
    • A polarization conversion system includes at least one beam splitting and combining unit having a polarization beam splitting element and a dichroic element, a dichroic unit, a polarization beam splitting unit, a first half wave plate (HWP) and a second half wave plate. The polarization beam splitting element reflects a first portion beam of the first light beam and allows a second portion beam of the first light beam to pass through. The dichroic unit reflects the first portion beam. The polarization beam splitting unit reflects a third portion beam of a second light beam and allows a fourth portion beam of the second light beam to pass through, and the dichroic element reflects the third portion beam. In addition, the first HWP is disposed between the beam splitting and combining unit and the polarization beam splitting unit, while the second HWP is disposed between the beam splitting and combining unit and the dichroic unit.
    • 偏振转换系统包括具有偏振分束元件和二向色元件,二向色单元,偏振光束分离单元,第一半波片(HWP)和第二半波片的至少一个分束和组合单元。 偏振分束元件反射第一光束的第一部分光束并允许第一光束的第二部分光束通过。 二向色单元反映第一部分光束。 偏振光束分离单元反射第二光束的第三部分光束,并允许第二光束的第四部分光束通过,并且二向色元件反射第三部分光束。 此外,第一HWP设置在分束和组合单元与偏振分束单元之间,而第二HWP设置在分束与组合单元与二向色单元之间。