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    • 1. 发明授权
    • Apparatus and method for stacking laser bars for uniform facet coating
    • 用于堆叠用于均匀面涂层的激光棒的装置和方法
    • US07268005B2
    • 2007-09-11
    • US10695641
    • 2003-10-27
    • John ChenChun LeiRobert Shih
    • John ChenChun LeiRobert Shih
    • H01L21/00H01S3/04H01S3/091H01S3/094H01S3/08
    • H01S5/4025H01S5/028H01S5/405
    • An apparatus for stacking photonic devices is disclosed. The apparatus can include a base, first and second spaced apart rail portions disposed on the base, and a vacuum guide disposed on the base between the rail portions for forming a vacuum gradient that pulls a plurality of photonic devices and spacer bars together into a stack. Optionally, spaced apart photonic device supports can be placed on the base between the rail portions to lift the photonic devices off of the surface of the base. The apparatus can also include a clamping system to hold the stack in place so that a vapor deposition process can be used to apply coatings to the photonic devices. In one exemplary embodiment, the photonic devices can be laser bars.
    • 公开了一种用于堆叠光子器件的装置。 设备可以包括设置在基座上的底座,第一和第二间隔开的轨道部分,以及设置在轨道部分之间的底座上的真空引导件,用于形成将多个光子器件和间隔杆拉到一起的真空梯度, 。 可选地,间隔开的光子器件支撑件可以放置在轨道部分之间的基部上,以将光子器件提升离开基座的表面。 该设备还可以包括夹持系统以将堆叠保持就位,使得可以使用气相沉积工艺将涂层施加到光子器件。 在一个示例性实施例中,光子器件可以是激光条。
    • 5. 发明申请
    • Apparatus and method for stacking laser bars for uniform facet coating
    • 用于堆叠用于均匀面涂层的激光棒的装置和方法
    • US20050101039A1
    • 2005-05-12
    • US10695641
    • 2003-10-27
    • John ChenChun LeiRobert Shih
    • John ChenChun LeiRobert Shih
    • H01L21/00
    • H01S5/4025H01S5/028H01S5/405
    • An apparatus for stacking photonic devices is disclosed. The apparatus can include a base, first and second spaced apart rail portions disposed on the base, and a vacuum guide disposed on the base between the rail portions for forming a vacuum gradient that pulls a plurality of photonic devices and spacer bars together into a stack. Optionally, spaced apart photonic device supports can be placed on the base between the rail portions to lift the photonic devices off of the surface of the base. The apparatus can also include a clamping system to hold the stack in place so that a vapor deposition process can be used to apply coatings to the photonic devices. In one exemplary embodiment, the photonic devices can be laser bars.
    • 公开了一种用于堆叠光子器件的装置。 设备可以包括设置在基座上的底座,第一和第二间隔开的轨道部分,以及设置在轨道部分之间的底座上的真空引导件,用于形成将多个光子器件和间隔杆拉到一起的真空梯度, 。 可选地,间隔开的光子器件支撑件可以放置在轨道部分之间的基部上,以将光子器件提升离开基座的表面。 该设备还可以包括夹持系统以将堆叠保持就位,使得可以使用气相沉积工艺将涂层施加到光子器件。 在一个示例性实施例中,光子器件可以是激光条。
    • 10. 发明授权
    • Transparent substrate light emitting diode
    • 透明基板发光二极管
    • US06643304B1
    • 2003-11-04
    • US09626444
    • 2000-07-26
    • John ChenBingwen LiangRobert Shih
    • John ChenBingwen LiangRobert Shih
    • H01S500
    • H01L33/46
    • A Gallium Nitride based Light Emitting Diode (LED) includes both a transparent substrate and a window for exiting light generated by the LED. Useful amounts of light may be utilized at the face of the window or at the face of the transparent substrate. An external optical reflector is formed directly on the external face of the LED which is not currently being used to exit useful light. If light from the window is being utilized, a Distributed Bragg Reflector (DBR) is formed directly on the “backside” of the substrate. However, if light through the substrate is being utilized, a Distributed Bragg Reflector is formed directly on the light emitting portion of the window.
    • 基于氮化镓的发光二极管(LED)包括透明基板和用于退出由LED产生的光的窗口。 可以在窗口的正面或透明基板的表面使用有用量的光。 直接在LED的外表面上形成外部光学反射器,该外部面并不用于退出有用的光。 如果使用来自窗口的光,则直接在基板的“背面”上形成分布式布拉格反射器(DBR)。 然而,如果利用通过基板的光,则分布式布拉格反射器直接形成在窗口的发光部分上。