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    • 1. 发明申请
    • DEMAND SIDE MANAGEMENT CONTROL SYSTEM AND METHODS
    • 需求侧管理控制系统与方法
    • US20140032001A1
    • 2014-01-30
    • US13558448
    • 2012-07-26
    • Eunhee KimDaryl WilliamsSeog Tae Kim
    • Eunhee KimDaryl WilliamsSeog Tae Kim
    • G06F1/26
    • H05B1/0227G06Q50/06H05B6/68Y02B40/143
    • A demand side management control system and method for altering power consumption on an electrical device during specified periods of time (e.g., peak energy demand periods). The system includes a memory to store two or more power consuming function profiles corresponding to the one or more power consuming functions associated with the electrical device. The system also includes at least one processor coupled with the memory. The processor is programmed to receive a peak energy demand signal and access the power consuming function profiles associated with the electrical device. The processor identifies, based on the received peak energy demand signal, the one of two or more power consuming function profiles to be implemented in the electrical device. Finally, the processor periodically disables or operates at a reduced power level at least one power consuming function according to the identified power consuming function profile.
    • 一种用于在指定时段(例如,峰值能量需求周期)内改变电气设备上的功率消耗的需求侧管理控制系统和方法。 该系统包括存储器,用于存储对应于与电气设备相关联的一个或多个功耗功能的两个或多个功耗简档。 该系统还包括与存储器耦合的至少一个处理器。 处理器被编程为接收峰值能量需求信号并且访问与电气设备相关联的功耗功能简档。 处理器基于接收到的峰值能量需求信号识别要在电气设备中实现的两个或多个功耗简档中的一个。 最后,处理器根据所识别的电力消耗功能简档周期性地以降低功率水平至少一个功耗消耗功能来周期性地禁用或操作。
    • 2. 发明授权
    • Demand side management control system and methods
    • 需求侧管理控制系统和方法
    • US09271333B2
    • 2016-02-23
    • US13558448
    • 2012-07-26
    • Eunhee KimDaryl WilliamsSeog Tae Kim
    • Eunhee KimDaryl WilliamsSeog Tae Kim
    • G06F19/00H05B1/02G06Q50/06H05B6/68
    • H05B1/0227G06Q50/06H05B6/68Y02B40/143
    • A demand side management control system and method for altering power consumption on an electrical device during specified periods of time (e.g., peak energy demand periods). The system includes a memory to store two or more power consuming function profiles corresponding to the one or more power consuming functions associated with the electrical device. The system also includes at least one processor coupled with the memory. The processor is programmed to receive a peak energy demand signal and access the power consuming function profiles associated with the electrical device. The processor identifies, based on the received peak energy demand signal, the one of two or more power consuming function profiles to be implemented in the electrical device. Finally, the processor periodically disables or operates at a reduced power level at least one power consuming function according to the identified power consuming function profile.
    • 一种用于在指定时段(例如,峰值能量需求周期)内改变电气设备上的功率消耗的需求侧管理控制系统和方法。 该系统包括存储器,用于存储对应于与电气设备相关联的一个或多个功耗功能的两个或多个功耗简档。 该系统还包括与存储器耦合的至少一个处理器。 处理器被编程为接收峰值能量需求信号并且访问与电气设备相关联的功耗功能简档。 处理器基于接收到的峰值能量需求信号识别要在电气设备中实现的两个或多个功耗简档中的一个。 最后,处理器根据所识别的电力消耗功能简档周期性地以降低功率水平至少一个功耗消耗功能来周期性地禁用或操作。
    • 4. 发明授权
    • Fingerprint sensor package having enhanced electrostatic discharge protection and associated methods
    • 指纹传感器封装具有增强的静电放电保护和相关方法
    • US06628812B1
    • 2003-09-30
    • US09568330
    • 2000-05-09
    • Dale R. SetlakDaryl WilliamsMatthew M. Salatino
    • Dale R. SetlakDaryl WilliamsMatthew M. Salatino
    • G06K900
    • G06F1/1684G06F1/1616G06K9/00053
    • A fingerprint sensor package includes a fingerprint sensing integrated circuit within a housing and comprising a plurality of electric field sensing electrodes and processing circuitry connected thereto. At least one external electrode is carried by the housing for finger contact. An electrostatic discharge (ESD) circuit is provided within the housing and is connected to the at least one external electrode. An isolation circuit is connected to the at least one line of the processing circuitry for external connection. The external electrode and ESD circuit, as well as the line isolation circuit protect the integrated circuit against damage by voltage transients, such as ESD. The at least one external electrode may include first and second external electrodes. The first electrode may be connected to the electrostatic discharge circuit. The processing circuit may further comprise a wake-up circuit for selectively powering predetermined circuit portions responsive to sensing finger contact with the second external electrode. Moreover, the housing may define a recess therein to guide a finger of a user along a predetermined path of travel to contact the first external electrode before the second external electrode.
    • 指纹传感器封装包括壳体内的指纹感测集成电路,并且包括多个电场感测电极和与其连接的处理电路。 至少一个外部电极由壳体承载以进行手指接触。 静电放电(ESD)电路设置在外壳内并与至少一个外部电极连接。 隔离电路连接到用于外部连接的处理电路的至少一条线路。 外部电极和ESD电路以及线路隔离电路保护集成电路免受ESD等电压瞬变的损害。 至少一个外部电极可以包括第一和第二外部电极。 第一电极可以连接到静电放电电路。 处理电路还可以包括唤醒电路,用于响应于感测到与第二外部电极的手指接触来选择性地为预定电路部分供电。 此外,壳体可以在其中限定凹部以沿着预定的行进路径引导使用者的手指,以在第二外部电极之前接触第一外部电极。
    • 6. 发明授权
    • Fingerprint sensor package including flexible circuit substrate and associated methods
    • 指纹传感器封装包括柔性电路基板及相关方法
    • US06950541B1
    • 2005-09-27
    • US09567334
    • 2000-05-09
    • Dale R. SetlakDaryl Williams
    • Dale R. SetlakDaryl Williams
    • G06K9/00
    • G06K9/0002
    • A fingerprint sensor package preferably includes a fingerprint sensing integrated circuit in a housing, and a circuit substrate comprising first and second portions connected together. The first portion is within the housing and mounts the fingerprint sensing integrated circuit, and the second portion is flexible and extends outwardly from the housing for facilitating electrical connection to the fingerprint sensing integrated circuit from external to the housing. Each portion of the circuit substrate preferably includes at least one insulating layer and at least one electrical conductor thereon. Accordingly, the package can be made relatively compact and electrical interconnections are facilitated by the second portion or extension of the circuit substrate. In one embodiment, the first and second portions are integrally formed together. In this embodiment, the first portion is also flexible. The sensor package is readily included on the upper surface of a laptop computer, for example.
    • 指纹传感器封装优选地包括壳体中的指纹感测集成电路,以及包括连接在一起的第一和第二部分的电路基板。 第一部分在壳体内并且安装指纹感测集成电路,并且第二部分是柔性的并且从壳体向外延伸,以便于从外部到外壳到指纹感测集成电路的电连接。 电路基板的每个部分优选地包括至少一个绝缘层和至少一个电导体。 因此,可以使封装相对紧凑,并且通过电路基板的第二部分或延伸来促进电互连。 在一个实施例中,第一和第二部分一体地形成在一起。 在该实施例中,第一部分也是柔性的。 例如,传感器封装容易包含在膝上型计算机的上表面上。
    • 7. 发明授权
    • Fingerprint sensor with gain control features and associated methods
    • 具有增益控制功能和相关方法的指纹传感器
    • US06259804B1
    • 2001-07-10
    • US08858142
    • 1997-05-16
    • Dale R. SetlakJohn CornettBrian KilgoreDaryl WilliamsDave Gebauer
    • Dale R. SetlakJohn CornettBrian KilgoreDaryl WilliamsDave Gebauer
    • G06K900
    • G06K9/0002G07C9/00158
    • A fingerprint sensor includes an array of fingerprint sensing elements; analog-to-digital (A/D) converters having a controllable range; a scanner to perform sequential A/D conversions of predetermined ones of the array of fingerprint sensing elements; and a range determining and setting circuit for controlling the range of the A/D converters based upon prior A/D conversions to thereby provide enhanced conversion resolution. A plurality of A/D converters are preferably used for simultaneously converting analog signals from a corresponding plurality of fingerprint sensing elements. The A/D converters may include at least one reference voltage input for permitting setting of first and second points of the range. The range scale determining and setting circuit may generate a histogram based upon prior A/D conversions. In addition, the range scale determining and setting circuit may set a default range for initial ones of the fingerprint sensing elements.
    • 指纹传感器包括指纹感测元件阵列; 具有可控范围的模数(A / D)转换器; 扫描器,用于执行指纹感测元件阵列中预定的那些的顺序A / D转换; 以及用于基于先前的A / D转换来控制A / D转换器的范围的范围确定和设置电路,从而提供增强的转换分辨率。 多个A / D转换器优选地用于同时转换来自相应的多个指纹感测元件的模拟信号。 A / D转换器可以包括用于允许设置该范围的第一和第二点的至少一个参考电压输入。 范围尺度确定和设置电路可以基于先前的A / D转换来生成直方图。 此外,范围尺度确定和设置电路可以为指纹感测元件的初始值设置默认范围。