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    • 5. 发明申请
    • ABLATIVE-BASED MULTIPHASE CURRENT INTERRUPTER
    • 基于抽象的多相电流中断器
    • US20090179011A1
    • 2009-07-16
    • US11972054
    • 2008-01-10
    • THANGAVELU ASOKANSunil Srinivasa MurthyKunal Ravindra GorayNimish KumarAdnan Kutubuddin Bohori
    • THANGAVELU ASOKANSunil Srinivasa MurthyKunal Ravindra GorayNimish KumarAdnan Kutubuddin Bohori
    • H01H33/02
    • H01H9/302H01H9/342H01H9/346
    • A multiphase current interrupter is provided for interrupting a phase current between two contacts in an electrical phase. The current interrupter includes a first ablative chamber disposed around contacts for a first electrical phase. The first chamber has an ablative material thereon that causes a shock wave when an electrical arc is generated in an arc zone for the first electrical phase during a separation of the contacts therein. The current interrupter further includes at least a second ablative chamber disposed around contacts for at least a second electrical phase. The second chamber has an ablative material thereon that causes a shock wave when an electrical arc is generated in an arc zone for the second electrical phase during a separation of the contacts therein. An interconnecting structure provides fluid communication between the first ablative chamber and the second ablative chamber. The interconnecting structure is adapted to dissipate a shock wave generated in any of the ablative chambers.
    • 提供多相电流断续器,用于在电相中断两个触点之间的相电流。 电流断流器包括设置在第一电相的触头周围的第一烧蚀室。 当在其中的触点分离期间,当在第一电相的电弧区域中产生电弧时,第一室具有引起冲击波的烧蚀材料。 电流断流器还包括至少第二烧蚀室,其设置在至少第二电相的触头周围。 当在其中的触点分离期间,当在第二电相的电弧区域中产生电弧时,第二室具有引起冲击波的烧蚀材料。 互连结构提供了第一烧蚀室和第二烧蚀室之间的流体连通。 互连结构适于消散在任何烧蚀室中产生的冲击波。
    • 9. 发明授权
    • Thermopile-based gas sensor
    • 基于热电堆的气体传感器
    • US07338640B2
    • 2008-03-04
    • US11095243
    • 2005-03-31
    • Sunil Srinivasa MurthyAnis ZribiShankar Chandrasekaran
    • Sunil Srinivasa MurthyAnis ZribiShankar Chandrasekaran
    • B32B5/02B32B27/04B32B27/12G01N7/00G01N21/00
    • G01N25/4893Y10T436/11
    • A method of manufacturing a sensor is provided. The method includes disposing a sacrificial layer on a substrate, disposing a low-thermal-conductivity layer on the sacrificial layer, and disposing a first set of conductive arms and a second set of conductive arms on the low-thermal-conductivity layer to form a plurality of thermal junctions. The plurality of thermal junctions is adapted to form a plurality of hot junctions and a plurality of cold junctions when subjected to a difference in temperature. The method also includes removing the sacrificial layer and a portion of the low-thermal-conductivity layer to form a cavity therein. The cavity is configured to provide insulation for the plurality of hot junctions. A thermopile sensor is also provided, and a calorimetric gas sensor implementing the thermopile sensor is provided.
    • 提供一种制造传感器的方法。 该方法包括在衬底上设置牺牲层,在牺牲层上设置低热导率层,以及将第一组导电臂和第二组导电臂设置在低热导率层上以形成 多个热路口。 多个热接头适于在经受温差时形成多个热接点和多个冷接点。 该方法还包括去除牺牲层和低热导率层的一部分以在其中形成空腔。 空腔构造成为多个热接点提供绝缘。 还提供热电堆传感器,并提供实现热电堆传感器的量热气体传感器。