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    • 11. 发明申请
    • Commutation of Brushless Electrodynamic Machines
    • 无刷电动机的换向
    • US20070085442A1
    • 2007-04-19
    • US11538781
    • 2006-10-04
    • John PetroKen WassonLawrence Miller
    • John PetroKen WassonLawrence Miller
    • H02K21/12H01R39/04H02K13/04
    • H02K13/006H02K21/12H02K23/62
    • A method, apparatus and system for selectably directing power signals to coils of active field pole members in brushless electrodynamic machinery are disclosed. In one embodiment, a field pole commutator includes a power transfer region configured to transfer at least a first power signal and second power signal to the coils. It also includes a first power region and a second power region configured to provide the first power signal and the second power signal, respectively, to the power transfer region. The first power region and the second power region each are configured to rotate together with the power transfer region about an axis of rotation. In one embodiment, the field pole commutator is implemented in a brushless direct current (“DC”) current motor, which includes a rotor having permanent magnets and a plurality of active field pole members. Each active field pole member has one or more coils wound about the periphery of field pole members to form said plurality of active field pole members. In a specific embodiment, permanent magnets of the rotor include either conical magnets or cylindrical magnets, or both.
    • 公开了一种用于将功率信号可选择地引导到无刷电动机械中的有源场极构件的线圈的方法,装置和系统。 在一个实施例中,场极换向器包括被配置为将至少第一功率信号和第二功率信号传送到线圈的功率传递区域。 它还包括分别将第一功率信号和第二功率信号分别提供给功率传输区域的第一功率区域和第二功率区域。 第一功率区域和第二功率区域各自被构造成与绕着旋转轴线的功率传递区域一起旋转。 在一个实施例中,场电流换向器实现在无刷直流(“DC”)电流电动机中,其包括具有永磁体的转子和多个有源场磁极构件。 每个有源场极元件具有围绕场极元件周围缠绕的一个或多个线圈,以形成所述多个有源场极元件。 在具体实施例中,转子的永磁体包括圆锥形磁体或圆柱形磁体,或两者。
    • 12. 发明申请
    • High throughput image for processing inspection images
    • 用于处理检查图像的高吞吐量图像
    • US20050249395A1
    • 2005-11-10
    • US10860617
    • 2004-06-02
    • Lawrence Miller
    • Lawrence Miller
    • G06K9/00G06T7/00
    • G06T7/0004G01N21/9501G01N2021/95615G01N2021/95676G06T2207/30148
    • Disclosed is an image processing system for analyzing images of a specimen to determine whether the specimen contains defects. The system includes a plurality of processors for receiving image data from a specimen and for analyzing one or more selected patch(es) of such image data to determine whether the specimen has a defect. The system also includes a plurality of buses for coupling the processors together, wherein the bus has the following specifications: a data rate of about 50 gigabits per second or more and an error rate less than about 10−16. In one implementation, the buses are low voltage differential signal type buses, and in another implementation, the buses are hyper transport type buses.
    • 公开了一种用于分析样本的图像以确定样本是否包含缺陷的图像处理系统。 该系统包括用于从样本接收图像数据并用于分析这些图像数据的一个或多个选定补丁以确定样本是否具有缺陷的多个处理器。 该系统还包括用于将处理器连接在一起的多个总线,其中总线具有以下规格:大约每秒50吉比特或更高的数据速率和小于大约10比特的错误率 。 在一个实施中,总线是低压差分信号型总线,在另一实现中,总线是超传输型总线。
    • 15. 发明申请
    • Auto-deep scan for capacitive sensing
    • 自动深度扫描电容式感应
    • US20050253597A1
    • 2005-11-17
    • US10846337
    • 2004-05-14
    • Lawrence Miller
    • Lawrence Miller
    • G01V3/08G01R27/26
    • G01V3/088
    • A stud or joist sensor and associated sensing method using an amplitude and a ratio of capacitance measurements from a plurality of capacitive sensing elements. The sensor locates a feature of an object or discontinuity behind a surface or wall, such as an edge and/or a center of a stud behind the surface, a joist under a floorboard, a gap behind sheetrock, a metal conductor behind a surface or the like. The sensor may be moved over the surface, thereby detecting changes in capacitance. The change in capacitance is due to the effective dielectric constant caused by the passage over a hidden object such as a stud. When two capacitive sensing elements provide equivalent capacitance measures, the sensor is over a centerline of the stud. When a ratio of the capacitance measurements equals a transition ratio, the sensor is over an edge of the stud. When the sensor is over the stud and the capacitance measurements are low, the sensor is over a deep stud.
    • 螺柱或托梁传感器以及使用来自多个电容式感测元件的电容测量的振幅和比率的相关感测方法。 传感器定位在表面或墙壁之后的物体或不连续的特征,例如表面后面的螺柱的边缘和/或中心,地板下的托梁,板材后面的间隙,表面后面的金属导体或 类似。 传感器可以在表面上移动,从而检测电容的变化。 电容的变化是由于诸如螺柱之类的隐藏物体的通过引起的有效介电常数。 当两个电容式传感元件提供等效电容测量时,传感器位于螺柱的中心线上。 当电容测量值的比例等于转换比时,传感器在螺柱的边缘上方。 当传感器超过螺柱并且电容测量值较低时,传感器位于深螺柱上。
    • 19. 发明申请
    • Battery adapter
    • 电池适配器
    • US20080090452A1
    • 2008-04-17
    • US11804091
    • 2007-05-17
    • David RoseAnthony D'AndreaLawrence Miller
    • David RoseAnthony D'AndreaLawrence Miller
    • H01R3/00H01M2/20H02J7/00
    • H01R13/22H01M2/1016H01M10/0525H01M10/4257H01R43/00H02J7/0063Y10T29/49002
    • A battery adapter, the battery adapter comprising: a body having a first portion and a second portion, wherein the first portion is configured so as to mechanically and electrically connect to an electrical device, and the second portion is configured so as to mechanically and electrically connect to a battery, wherein the electrical device and the battery are characterized by different form-fit factors; wherein the first portion is electrically connected to the second portion so that a battery connected to the second portion can power an electrical device connected to the first portion. A battery adapter, the battery adapter comprising: a body having a first portion and a second portion, wherein the first portion is configured so as to mechanically and electrically connect to an electrical device, and the second portion is configured so as to mechanically and electrically connect to a battery; wherein the first portion is electrically connected to the second portion so that a battery connected to the second portion can power an electrical device connected to the first portion; and further wherein the battery adapter further comprises the logic circuitry associated with a smart battery, in order that the battery adapter can provide smart battery functionality when the battery comprises a non-smart battery.
    • 一种电池适配器,所述电池适配器包括:具有第一部分和第二部分的主体,其中所述第一部分被配置为机械地和电连接到电子装置,并且所述第二部分被配置为机械地和电气地 连接到电池,其中电气设备和电池的特征在于不同的形状因素; 其中所述第一部分电连接到所述第二部分,使得连接到所述第二部分的电池可以为连接到所述第一部分的电气装置供电。 一种电池适配器,所述电池适配器包括:具有第一部分和第二部分的主体,其中所述第一部分被配置为机械地和电连接到电子装置,并且所述第二部分被配置为机械地和电气地 连接电池; 其中所述第一部分电连接到所述第二部分,使得连接到所述第二部分的电池可以为连接到所述第一部分的电气装置供电; 并且其中所述电池适配器还包括与智能电池相关联的逻辑电路,以便当所述电池包括非智能电池时,所述电池适配器可以提供智能电池功能。