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    • 1. 发明申请
    • Pacing interval adjustment for cardiac pacing response determination
    • 心脏起搏反应确定的起搏间隔调整
    • US20070078489A1
    • 2007-04-05
    • US11242240
    • 2005-10-03
    • Scott MeyerYanting DongKevin StalsbergAlok Sathaye
    • Scott MeyerYanting DongKevin StalsbergAlok Sathaye
    • A61N1/362
    • A61N1/371A61B5/04525A61B5/7217A61N1/3682A61N1/3684A61N1/3712
    • The waveform morphology of a propagated pacing response signal may be adjusted to achieve a waveform morphology that enhances cardiac pacing response determination. One or more pacing intervals may be adjusted to achieve at least one cardiac pacing response waveform morphology that enhances determination of the cardiac pacing response. The heart is paced using the one or more adjusted pacing intervals and the cardiac response to the pacing is determined. The one or more adjusted pacing intervals may include an atrioventricular pacing delay, an interatrial pacing delay, an interventricular pacing delay, or other inter-chamber or inter-site pacing delays. Adjusting the one or more pacing intervals may be used to increase a difference between a first waveform morphology associated with multi-chamber capture and a second waveform morphology associated with single chamber capture.
    • 可以调节传播的起搏响应信号的波形形态,以实现增强心脏起搏响应确定的波形形态。 可以调整一个或多个起搏间隔以实现至少一个心脏起搏响应波形形态,其增强心脏起搏响应的确定。 心脏使用一个或多个调整的起搏间隔进行起搏,并且确定对起搏的心脏反应。 一个或多个经调整的起搏间隔可以包括房室起搏延迟,房间起搏延迟,室间起搏延迟或其他间室间或间部间起搏延迟。 可以使用调整一个或多个起搏间隔来增加与多室捕获相关联的第一波形形态与与单室捕获相关联的第二波形形态之间的差异。
    • 5. 发明申请
    • Capture detection for multi-chamber pacing
    • 捕获检测多腔起搏
    • US20060247694A1
    • 2006-11-02
    • US11116563
    • 2005-04-28
    • Yanting DongScott MeyerKevin Stalsberg
    • Yanting DongScott MeyerKevin Stalsberg
    • A61N1/362
    • A61N1/3712A61N1/3684
    • Multi-chamber pacing may result in capture of one chamber, capture of multiple chambers, fusion, or non-capture. Approaches for detecting various capture conditions during multi-chamber pacing are described. Pacing pulses are delivered to left and right heart chambers during a cardiac cycle. A cardiac electrogram signal is sensed following the delivery of the pacing pulses. Left chamber capture only, right chamber capture only, and bi-chamber capture may be distinguished based on characteristics of the cardiac electrogram signal. Multi-chamber capture detection may be implemented using detection windows having dimensions of time and amplitude. The detection windows are associated with expected features, such as expected signal peaks, under a particular capture condition. The cardiac electrogram signal features are compared to detection windows to determine the capture condition.
    • 多腔起搏可能导致一个腔室的捕获,多个腔室的捕获,融合或非捕获。 描述了在多室起搏期间检测各种捕获条件的方法。 在心动周期期间,起搏脉冲被传送到左心室和右心室。 在起搏脉冲输送之后感测心电图信号。 仅左室捕获,右室捕获,双室捕获可以基于心电图信号的特征来区分。 可以使用具有时间和幅度尺寸的检测窗来实现多室捕获检测。 检测窗口与特定捕获条件下的预期特征(例如期望的信号峰值)相关联。 将心电图信号特征与检测窗口进行比较以确定捕获条件。
    • 8. 发明申请
    • Motor Control and Driver for Electric Boosting Application
    • 电动助力电动机控制与驱动
    • US20070251236A1
    • 2007-11-01
    • US10588393
    • 2004-02-05
    • Pierre BartheletNicolas DevulderChris GreentreeCedric LorantStanislaus PougetKevin StalsbergAlain Wesquet
    • Pierre BartheletNicolas DevulderChris GreentreeCedric LorantStanislaus PougetKevin StalsbergAlain Wesquet
    • H02P27/06F02B31/00
    • H02P23/0004
    • The invention proposes a system for driving a compressor, comprising an induction motor (2) for driving the compressor (3), said induction motor including a squirrel cage rotor, and a controller (1) for controlling the induction motor, said controller comprising a memory for storing drive patterns for driving the induction motor, a first frequency generation means for generating a field frequency based on a field command and/or a second field generation means for generating a voltage frequency based on a voltage command, wherein a drive pattern in extracted from the memory based on the generated frequency or frequencies. Alternatively, the invention proposes a system for driving a compressor, comprising an induction motor (2) for driving the compressor (3), said induction motor including a squirrel cage rotor, and a controller (1) for controlling the induction motor, wherein the controller is adapted to distinguish between a steady state and a transient state of the induction motor.
    • 本发明提出了一种用于驱动压缩机的系统,包括用于驱动压缩机(3)的感应电动机(2),所述感应电动机包括鼠笼式转子和用于控制感应电动机的控制器(1),所述控制器包括: 用于存储用于驱动感应电动机的驱动模式的存储器,用于基于场指令产生场频的第一频率产生装置和/或用于基于电压命令产生电压频率的第二场产生装置,其中, 基于产生的频率或频率从存储器提取。 或者,本发明提出了一种用于驱动压缩机的系统,包括用于驱动压缩机(3)的感应电动机(2),所述感应电动机包括鼠笼式转子,以及用于控制感应电动机的控制器(1),其中, 控制器适于区分感应电动机的稳定状态和过渡状态。
    • 10. 发明授权
    • Motor control and driver for electric boosting application
    • 电动机控制和驱动电动升压应用
    • US07545115B2
    • 2009-06-09
    • US10588393
    • 2004-02-05
    • Pierre BartheletNicolas DevulderChris GreentreeCedric LorantStanislaus PougetKevin StalsbergAlain Wesquet
    • Pierre BartheletNicolas DevulderChris GreentreeCedric LorantStanislaus PougetKevin StalsbergAlain Wesquet
    • H02P27/06
    • H02P23/0004
    • The invention proposes a system for driving a compressor, comprising an induction motor (2) for driving the compressor (3), said induction motor including a squirrel cage rotor, and a controller (1) for controlling the induction motor, said controller comprising a memory for storing drive patterns for driving the induction motor, a first frequency generation means for generating a field frequency based on a field command and/or a second field generation means for generating a voltage frequency based on a voltage command, wherein a drive pattern in extracted from the memory based on the generated frequency or frequencies. Alternatively, the invention proposes a system for driving a compressor, comprising an induction motor (2) for driving the compressor (3), said induction motor including a squirrel cage rotor, and a controller (1) for controlling the induction motor, wherein the controller is adapted to distinguish between a steady state and a transient state of the induction motor.
    • 本发明提出了一种用于驱动压缩机的系统,包括用于驱动压缩机(3)的感应电动机(2),所述感应电动机包括鼠笼式转子和用于控制感应电动机的控制器(1),所述控制器包括: 用于存储用于驱动感应电动机的驱动模式的存储器,用于基于场指令产生场频的第一频率产生装置和/或用于基于电压命令产生电压频率的第二场产生装置,其中, 基于产生的频率或频率从存储器提取。 或者,本发明提出了一种用于驱动压缩机的系统,包括用于驱动压缩机(3)的感应电动机(2),所述感应电动机包括鼠笼式转子,以及用于控制感应电动机的控制器(1),其中, 控制器适于区分感应电动机的稳定状态和过渡状态。