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    • 11. 发明申请
    • Split Magnetic Thrust Bearing
    • 分体磁推力轴承
    • US20110316376A1
    • 2011-12-29
    • US13167106
    • 2011-06-23
    • Christopher SortoreVictor IannelloRobert Jett FieldGary S. RamseyGeorge R. Erdman
    • Christopher SortoreVictor IannelloRobert Jett FieldGary S. RamseyGeorge R. Erdman
    • H02K7/09
    • H02K7/09F16C32/0459F16C32/0476
    • Certain exemplary embodiments can provide a system, machine, device, manufacture, circuit, composition of matter, and/or user interface adapted for and/or resulting from, and/or a method and/or machine-readable medium comprising machine-implementable instructions for, activities that can comprise and/or relate to: via a thrust stator of a magnetic bearing, the thrust stator adapted to be split into sectors so that a shaft of a machine can be removed from the magnetic bearing, producing an axi-symmetric field at each pole face of the thrust stator when the sectors are operatively assembled in the machine; and/or a magnetic bearing thrust stator, comprising a plurality of stator sectors, each of the stator sectors comprising a semi-circumferentially slotted stator portion comprising a plurality of semi-circumferential poles and a first coil portion shaped to fit substantially within the semi-circumferentially slotted stator portion.
    • 某些示例性实施例可以提供适于和/或由其产生的系统,机器,设备,制造,电路,物质的组合和/或用户界面,和/或包括机器可实现的指令的方法和/或机器可读介质 可以包括和/或涉及:通过磁性轴承的推力定子,推力定子适于被分成扇区,使得机器的轴可以从磁性轴承移除,产生轴对称 当扇区可操作地组装在机器中时,推力定子的每个极面处的场; 和/或磁轴承推力定子,包括多个定子扇区,每个定子扇区包括半周向开槽的定子部分,其包括多个半圆周磁极和第一线圈部分,该第一线圈部分成形为基本上配合在半圆周中, 周向开槽的定子部分。
    • 13. 发明授权
    • Capacitive position sensing system with resonant amplification
    • 具有谐振放大的电容位置传感系统
    • US07235986B1
    • 2007-06-26
    • US11342787
    • 2006-01-30
    • Victor IannelloRobert Jett Field
    • Victor IannelloRobert Jett Field
    • G01R27/26G01R27/28
    • G01D5/24G01D3/02G01D5/2417
    • At least one exemplary embodiment of the present invention includes a capacitive sensing system, comprising a sensing conductor coupleable to a grounded target by a gap capacitance Cd, said grounded target separated from said sensing conductor by a gap having a width. The capacitive sensing system also comprises a circuit connected to said sensing conductor, an input signal having an input frequency fosc provided to said circuit through an input resistance Rd, an output signal of said circuit having an output voltage varying linearly with the width of the gap when the impedance of the gap capacitance 1/(2πfoscCd) approaches or exceeds the input resistance Rd.
    • 本发明的至少一个示例性实施例包括电容式感测系统,其包括通过间隙电容C SUB连接到接地目标的感测导体,所述接地目标与所述感测导体分开具有间隙,间隙具有 一个宽度 所述电容感测系统还包括连接到所述感测导体的电路,具有通过输入电阻R OUT提供给所述电路的输入频率f OUT的输入信号,输出 所述电路的信号具有当间隙电容1 /(2ppi)的阻抗接近或超过输入端时输出电压随间隙的宽度线性变化的信号 电阻R
    • 14. 发明授权
    • Capacitive position sensing system with resonant amplification
    • 具有谐振放大的电容位置传感系统
    • US07005864B2
    • 2006-02-28
    • US10277008
    • 2002-10-21
    • Victor IannelloRobert Jett Field
    • Victor IannelloRobert Jett Field
    • G01R27/04G01R27/32
    • G01D5/24G01D3/02G01D5/2417
    • At least one exemplary embodiment of the present invention includes a capacitive sensing system, comprising a sensing conductor coupleable to a grounded target by a gap capacitance Cd, said grounded target separated from said sensing conductor by a gap having a width. The capacitive sensing system also comprises a circuit connected to said sensing conductor, an input signal having an input frequency fosc provided to said circuit through an input resistance Rd, an output signal of said circuit having an output voltage varying linearly with the width of the gap when the impedance of the gap capacitance 1/(2πfoscCd) approaches or exceeds the input resistance Rd.
    • 本发明的至少一个示例性实施例包括电容式感测系统,其包括通过间隙电容C SUB连接到接地目标的感测导体,所述接地目标与所述感测导体分开具有间隙,间隙具有 一个宽度 所述电容感测系统还包括连接到所述感测导体的电路,具有通过输入电阻R OUT提供给所述电路的输入频率f OUT的输入信号,输出 所述电路的信号具有当间隙电容1 /(2ppi)的阻抗接近或超过输入端时输出电压随间隙的宽度线性变化的信号 电阻R