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    • 5. 发明授权
    • Power control module for electrical appliances
    • 电器电源控制模块
    • US07420142B2
    • 2008-09-02
    • US11548396
    • 2006-10-11
    • Juan BarrenaEric K. LarsonDavid Gill
    • Juan BarrenaEric K. LarsonDavid Gill
    • H05B3/68H05B1/02
    • H01H19/62
    • A power module to regulate delivery of power to one or more loads is disclosed. The module includes a logic circuit configured to generate one or more control signals indicative of the power level to be applied from an external power supply coupled to the power module to the one or more loads, an electromechanical device configured to electrically connect the external power supply to the one or more loads based on the one or more control signals from the logic circuit, a user-controlled circuit configured to provide a signal indicative of a power level to deliver to the one or more loads, the signal is based on input received from a user-controlled actuator configured to be placed in one of a plurality of positions corresponding to user-provided input, and a housing configured to receive the electromechanical device.
    • 公开了一种用于调节向一个或多个负载输送功率的功率模块。 该模块包括逻辑电路,该逻辑电路经配置以产​​生一个或多个控制信号,该控制信号指示要从耦合到该功率模块的外部电源施加到一个或多个负载的功率电平;机电装置,被配置为电连接外部电源 基于来自逻辑电路的一个或多个控制信号到所述一个或多个负载,用户控制电路,被配置为提供指示功率电平以传送到所述一个或多个负载的信号,所述信号基于所接收的输入 来自被配置为被放置在与用户提供的输入相对应的多个位置中的一个中的一个中的用户控制的致动器,以及被配置为接收机电装置的壳体。
    • 6. 发明申请
    • INTEGRATED OPTICAL CIRCUITS HAVING DROP-IN LOCATIONS FOR OPTICAL CIRCUIT ELEMENTS
    • 具有光电元件下降位置的集成光电路
    • US20070297715A1
    • 2007-12-27
    • US11850622
    • 2007-09-05
    • Brent LittleJohn HryniewiczDavid GillRoy DavidsonPhilippe Absil
    • Brent LittleJohn HryniewiczDavid GillRoy DavidsonPhilippe Absil
    • G02B6/12
    • G03F7/70475G02B6/12007G02B6/13
    • A plurality of mask images defines an optical circuit image in photoresist. Each of the mask images comprises parts of the optical circuit and the totality of all mask images together defines an optical circuit. The optical circuit is thus made up of plural optical elements some of which may be positioned in drop-in locations within the boundary of another optical circuit element. A photolithography system globally aligns and exposes the mask images in photoresist. The resultant composite image is substantially indistinguishable from a single image of the entire optical circuit. Different images for each of the mask image parts can be substituted with other images or image parts and thereby exponentially increasing the number of circuit permutations from a predetermined number of available mask images. A unique optical circuit, for example, can be generated from a pre-existing library of reticle images. The images are printed in predetermined locations on a substrate to define the desired optical circuit. Thus, predefined second optical circuit elements can be dropped in (imaged or exposed) locations within a first optical circuit.
    • 多个掩模图像限定光致抗蚀剂中的光电路图像。 每个掩模图像包括光电路的部分,并且所有掩模图像的总体一起限定光学电路。 因此,光电路由多个光学元件组成,其中一些可以位于另一光电元件的边界内的落入位置。 光刻系统全面地对准和曝光光致抗蚀剂中的掩模图像。 所得到的合成图像与整个光学电路的单个图像基本上是不可区分的。 用于每个掩模图像部分的不同图像可以用其他图像或图像部分代替,从而从预定数量的可用掩模图像指数地增加电路排列的数量。 例如,可以从预先存在的标线图像库生成独特的光学电路。 图像被印刷在基板上的预定位置以限定所需的光学电路。 因此,预定义的第二光学电路元件可以落在第一光学电路内的(成像或暴露的)位置。
    • 9. 发明申请
    • Method of forming an integrated optical circuit
    • 形成集成光电路的方法
    • US20060040190A1
    • 2006-02-23
    • US10921645
    • 2004-08-19
    • Brent LittleJohn HryniewiczDavid GillRoy DavidsonPhilippe Absil
    • Brent LittleJohn HryniewiczDavid GillRoy DavidsonPhilippe Absil
    • G03F9/00G03C5/00
    • G03F7/70475G02B6/12007G02B6/13
    • A method for forming an optical circuit on a substrate. The method comprising a plurality of mask images to define the optical circuit image in photoresist. Each of the mask images defining parts of the optical circuit and the totality of all mask images substantially defining all of the optical circuit. A photolithography system globally aligns and exposes the mask images in photoresist. The resultant composite image being substantially indistinguishable from a single image of the entire optical circuit. Different images for each of the parts can be substituted by other images, thereby exponentially increasing the number of circuit permutations from a predetermined number of images. The method is also applicable to generating a unique circuit from a pre-existing library of reticle images. The images are printed in predetermined locations on a substrate to define the desired optical circuit.
    • 一种在基板上形成光电路的方法。 该方法包括多个掩模图像以限定光致抗蚀剂中的光电路图像。 限定光电路部分的每个掩模图像和基本上限定所有光学电路的所有掩模图像的总和。 光刻系统全面地对准和曝光光致抗蚀剂中的掩模图像。 所得的合成图像基本上与整个光学电路的单个图像无法区分。 每个部分的不同图像可以由其他图像代替,从而从预定数量的图像指数地增加电路排列的数量。 该方法还适用于从预先存在的标线图像库生成唯一的电路。 图像被印刷在基板上的预定位置以限定所需的光学电路。