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    • 21. 发明授权
    • Large area transducer array
    • 大面积换能器阵列
    • US07375420B2
    • 2008-05-20
    • US11003054
    • 2004-12-03
    • Rayette Ann FisherWilliam Edward Burdick, Jr.James Wilson Rose
    • Rayette Ann FisherWilliam Edward Burdick, Jr.James Wilson Rose
    • H01L23/02
    • H01L27/14601
    • A large area transducer array comprising a substrate having a front side and a backside, a plurality of transducers disposed on the front side of the substrate and patterned in the form of a two-dimensional transducer array in the X-Y plane, a plurality of connectors disposed on the backside of the substrate where the connectors are electrically coupled to the transducer elements. Further, a stacked transducer array comprising an electronic device disposed in a first layer, a substrate including a front side and a backside, an electrical interconnect layer disposed on the substrate and a plurality of transducers disposed in a third layer where the transducers are electrically coupled to the electronic device disposed in the first layer.
    • 一种大面积传感器阵列,包括具有正面和背面的基底,多个换能器,设置在基板的前侧,并以XY平面中的二维换能器阵列的形式图案化,多个连接器被设置 在衬底的背面,其中连接器电耦合到换能器元件。 此外,堆叠的换能器阵列包括设置在第一层中的电子器件,包括正面和背面的衬底,设置在衬底上的电互连层和设置在第三层中的多个换能器,其中换能器电耦合 到设置在第一层中的电子设备。
    • 23. 发明授权
    • Method and system to co-optimize utilization of demand response and energy storage resources
    • 共同优化需求响应和能源储存资源利用的方法和系统
    • US09209625B2
    • 2015-12-08
    • US13451851
    • 2012-04-20
    • Rajesh TyagiRayette Ann FisherJason Wayne Black
    • Rajesh TyagiRayette Ann FisherJason Wayne Black
    • G05D17/00H02J3/28H02J3/00
    • H02J3/28H02J3/008Y04S50/10
    • Method and system to provide co-optimized utilization of demand response and energy storage resources in an electrical grid system. The system may include a module to evaluate a marginal savings relative to a dispatch cost, if a demand response event is performed. The system may further include a module to evaluate a marginal savings relative to the dispatch cost, if an energy storage event is performed, and a controller including circuitry may be configured to determine a control strategy to perform a dispatch including a demand response event and/or an energy storage event, based at least in part on the respective marginal savings of the demand response event and/or the energy storage event, which may be selected to co-optimize an integrated utilization of the demand response and energy storage resources to meet a given objective.
    • 提供电网系统中需求响应和能量储存资源共同优化利用的方法和系统。 如果执行需求响应事件,系统可以包括用于评估相对于调度成本的边际储蓄的模块。 如果执行能量存储事件,则系统可以进一步包括用于评估相对于调度成本的边际节约的模块,并且包括电路的控制器可以被配置为确定执行调度的控制策略,包括需求响应事件和/ 或能量存储事件,其至少部分地基于需求响应事件和/或能量存储事件的相应的边际节约,其可以被选择以共同优化需求响应和能量存储资源的综合利用以满足 给定的目标。
    • 24. 发明申请
    • METHOD AND SYSTEM TO CO-OPTIMIZE UTILIZATION OF DEMAND RESPONSE AND ENERGY STORAGE RESOURCES
    • 共同优化应用需求和能源储存资源利用的方法与系统
    • US20130282193A1
    • 2013-10-24
    • US13451851
    • 2012-04-20
    • Rajesh TyagiRayette Ann FisherJason Wayne Black
    • Rajesh TyagiRayette Ann FisherJason Wayne Black
    • G06F1/26
    • H02J3/28H02J3/008Y04S50/10
    • Method and system to provide co-optimized utilization of demand response and energy storage resources in an electrical grid system. The system may include a module to evaluate a marginal savings relative to a dispatch cost, if a demand response event is performed. The system may further include a module to evaluate a marginal savings relative to the dispatch cost, if an energy storage event is performed, and a controller including circuitry may be configured to determine a control strategy to perform a dispatch including a demand response event and/or an energy storage event, based at least in part on the respective marginal savings of the demand response event and/or the energy storage event, which may be selected to co-optimize an integrated utilization of the demand response and energy storage resources to meet a given objective.
    • 提供电网系统中需求响应和能量储存资源共同优化利用的方法和系统。 如果执行需求响应事件,系统可以包括用于评估相对于调度成本的边际储蓄的模块。 如果执行能量存储事件,则系统可以进一步包括用于评估相对于调度成本的边际节约的模块,并且包括电路的控制器可以被配置为确定执行调度的控制策略,所述调度包括需求响应事件和/ 或能量存储事件,其至少部分地基于需求响应事件和/或能量存储事件的相应的边际节约,其可以被选择以共同优化需求响应和能量存储资源的综合利用以满足 给定的目标。
    • 25. 发明授权
    • Methods of fabricating a large area transducer array
    • 制造大面积换能器阵列的方法
    • US07867824B2
    • 2011-01-11
    • US12117608
    • 2008-05-08
    • Rayette Ann FisherWilliam Edward Burdick, Jr.James Wilson Rose
    • Rayette Ann FisherWilliam Edward Burdick, Jr.James Wilson Rose
    • H01L21/00
    • H01L27/14601
    • Methods of fabricating a tiled transducer array are disclosed. Embodiments of the methods include fabricating a wafer comprising a plurality of transducers, dicing the wafer to form individual transducers, testing the individual transducers to identify a plurality of known good transducers, preparing a substrate having a front side and a backside wherein the backside of the substrate comprises a plurality of connectors, positioning the plurality of known good transducers on the front side of the substrate and aligning the plurality of transducers in a horizontal direction and a vertical direction to form a transducer array, and electrically coupling the connectors on the substrate to the plurality of known good transducers, wherein the connectors are arranged such that each of the plurality of known good transducers may be electrically coupled to an electronic device disposed on the backside of the substrate, through a respective one or more of the plurality of connectors.
    • 公开了制作平铺式换能器阵列的方法。 所述方法的实施例包括制造包括多个换能器的晶片,切割晶片以形成单独的换能器,测试各个换能器以识别多个已知的良好换能器,制备具有正面和背面的基底,其中背面 衬底包括多个连接器,将多个已知的良好换能器定位在衬底的前侧上并且在水平方向和垂直方向上对准多个换能器以形成换能器阵列,并将衬底上的连接器电耦合到 所述多个已知的良好换能器,其中所述连接器被布置成使得所述多个已知的良好换能器中的每一个可以通过所述多个连接器中的相应一个或多个电耦合到设置在所述基板的背面上的电子装置。
    • 26. 发明申请
    • Ultrasound Imaging System
    • 超声成像系统
    • US20080183078A1
    • 2008-07-31
    • US11669235
    • 2007-01-31
    • Bruno Hans HaiderKjell KristoffersenRayette Ann FisherThomas HalvorsrodRobert Wodnicki
    • Bruno Hans HaiderKjell KristoffersenRayette Ann FisherThomas HalvorsrodRobert Wodnicki
    • A61B8/00
    • A61B8/00A61B1/0005B06B1/0622G01S7/5208G01S15/8925G01S15/8927G03B42/06
    • An ultrasound imaging system (100). An exemplary system (100) includes a plurality of transducer elements (136) formed in subarrays (140) and a plurality of subarray circuit units (160′), with each circuit unit (160′) connected to a subarray (140) of the transducer elements (136). The circuitry in each unit (160′) comprises a plurality of integrated circuits (330, 340, 350), with at least a first (340) of the integrated circuits formed over a second (330) of the integrated circuits in a stacked configuration. In an example illustration the first integrated circuit (340) includes a first plurality of first bond pads (345) along a surface (342) thereof and the second integrated circuit (330) includes a second plurality of second bond pads (335) along a surface (331) thereof, with bond wires (344) extending between pairs of first and second bond pads to provide input/output signal connections therebetween.
    • 超声成像系统(100)。 示例性系统(100)包括形成在子阵列(140)中的多个换能器元件(136)和多个子阵列电路单元(160'),每个电路单元(160')连接到子阵列 换能器元件(136)。 每个单元(160')中的电路包括多个集成电路(330,340,350),其中至少第一(340)个集成电路以堆叠配置形成在第二(330)集成电路上 。 在示例图中,第一集成电路(340)包括沿着其表面(342)的第一多个第一接合焊盘(345),并且第二集成电路(330)包括沿着第一多个第二接合焊盘 其具有在成对的第一和第二接合焊盘之间延伸的接合线(344),以在它们之间提供输入/输出信号连接。