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    • 4. 发明授权
    • Wash fluid distribution and filtration assembly and method
    • 清洗流体分布和过滤组件及方法
    • US08377228B2
    • 2013-02-19
    • US11636028
    • 2006-12-08
    • Matt D. MerschJoseph Duane TobbeGregory Miller
    • Matt D. MerschJoseph Duane TobbeGregory Miller
    • B08B3/00
    • A47L15/4202A47L15/4206
    • A fluid filtration assembly for a dishwasher system includes at least one spray arm assembly configured to distribute fluid within a wash chamber, and a filter assembly including a filter body defining a fluid inlet and a soil outlet thereon. A soil collection chamber is coupled in flow communication with the soil outlet and is configured to receive soil filtered by the filter assembly. A pump is configured to direct fluid to one of the spray arm assembly and the soil collection chamber. A valve assembly is movable between a first position and a second position. The valve assembly is coupled in flow communication with the spray arm assembly and the soil collection chamber. In the first position, the pump is configured to direct fluid to the at least one spray arm assembly. In the second position, the pump is configured to direct fluid into the soil collection chamber.
    • 用于洗碗机系统的流体过滤组件包括构造成在洗涤室内分配流体的至少一个喷雾臂组件和包括在其上限定流体入口和污物出口的过滤器主体的过滤器组件。 土壤收集室与土壤出口流动连通地联接并且被构造成接收由​​过滤器组件过滤的土壤。 泵构造成将流体引导到喷雾臂组件和土壤收集室中的一个。 阀组件可在第一位置和第二位置之间移动。 阀组件与喷雾臂组件和土壤收集室流体连通地联接。 在第一位置,泵构造成将流体引导到至少一个喷雾臂组件。 在第二位置,泵构造成将流体引导到土壤收集室中。
    • 7. 发明申请
    • Wavelength combining using a arrayed waveguide grating having a switchable output
    • 使用具有可切换输出的阵列波导光栅的波长组合
    • US20080025350A1
    • 2008-01-31
    • US11904775
    • 2007-09-27
    • Mark ArboreGregory Miller
    • Mark ArboreGregory Miller
    • H01S3/10G02B6/26
    • G02B6/12033G02B6/12011G02B6/12019
    • Switchable power combining is provided using a tunable arrayed waveguide grating (AWG) as the combining element. The AWG has two or more inputs and two or more outputs. Each AWG input is bi-directionally coupled to a corresponding laser source, and each laser source has substantially the same gain spectrum. All sources are coupled to a selected one of the AWG outputs, without substantial coupling of the sources to any other AWG output. The AWG is tunable, such that any one of its outputs can be thus selected. The selected output provides optical feedback, thereby feedback stabilizing the emission wavelengths of the sources to values suitable for single-mode combining. According to a further aspect of the invention, a piezo-electrically tunable AWG is provided. The AWG has a piezo-electric transducer bonded to the waveguide array section of the AWG. Strain induced in the waveguide array by the transducer can alter optical path lengths of the waveguide, thereby tuning the AWG.
    • 使用可调阵列波导光栅(AWG)作为组合元件提供可切换功率组合。 AWG具有两个或更多个输入和两个或更多个输出。 每个AWG输入双向耦合到相应的激光源,并且每个激光源具有基本相同的增益光谱。 所有的源都耦合到选定的一个AWG输出,而不需要将源与任何其他AWG输出实质耦合。 AWG是可调谐的,使得可以选择其任一输出。 所选择的输出提供光学反馈,从而将源的发射波长的反馈稳定到适合于单模组合的值。 根据本发明的另一方面,提供了一种压电可调AWG。 AWG具有一个压电换能器,它连接到AWG的波导阵列部分。 通过传感器在波导阵列中感应的应变可以改变波导的光路长度,从而调谐AWG。
    • 8. 发明申请
    • High-efficiency solar cell with insulated vias
    • 具有绝缘通孔的高效太阳能电池
    • US20070186971A1
    • 2007-08-16
    • US11278645
    • 2006-04-04
    • Darren LochunJames SheatsGregory Miller
    • Darren LochunJames SheatsGregory Miller
    • H01L31/00
    • H01L31/0516H01L27/3204H01L31/022425H01L31/02245H01L31/0392H01L31/03923H01L31/03925H01L31/046H01L31/0463H01L31/0508H01L31/0512H01L31/0749H01L31/18H01L51/5203Y02E10/541
    • Methods and devices are provided for high-efficiency solar cells. In one embodiment, the device comprises of a solar cell having a high efficiency backside electrode configuration, wherein the solar cell comprises of: at least one transparent conductor, a photovoltaic layer, at least one bottom electrode, and at least one backside electrode. The device may include a plurality of electrical conduction fingers mounted to the transparent conductor in the solar cell. The device may include a plurality of filled vias coupled to the electrical conduction fingers, wherein the vias extend through the transparent conductor, the photovoltaic layer, and the bottom electrode, wherein the vias have a conductive core that conducts charge from the transparent conductor to the backside electrode. The via insulating layer may separate the conductive core in each via from the bottom electrode, wherein the insulating layer may be formed by a variety of techniques such as but not limited to aerosol coating of the via.
    • 为高效太阳能电池提供了方法和装置。 在一个实施例中,该装置包括具有高效背面电极结构的太阳能电池,其中太阳能电池包括:至少一个透明导体,光伏层,至少一个底部电极和至少一个背面电极。 该装置可以包括安装到太阳能电池中的透明导体的多个导电指状物。 该器件可以包括耦合到导电指状物的多个填充的通孔,其中通孔延伸通过透明导体,光伏层和底部电极,其中通孔具有将电荷从透明导体传导到 背面电极。 通孔绝缘层可以将每个通孔中的导电芯从底部电极分离,其中绝缘层可以通过各种技术形成,例如但不限于通孔的气溶胶涂层。