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    • 1. 发明授权
    • Calibration disk with disk bumps for calibrating PZT sliders
    • 校准盘,用于校准PZT滑块
    • US5689057A
    • 1997-11-18
    • US607753
    • 1996-02-27
    • Peter Michael BaumgartKarl A. FlechsigMichael Franklin LeeWing P. LeungUllal Vasant NayakThao Anh NguyenTimothy Christopher O'SullivanAndrew Ching Tam
    • Peter Michael BaumgartKarl A. FlechsigMichael Franklin LeeWing P. LeungUllal Vasant NayakThao Anh NguyenTimothy Christopher O'SullivanAndrew Ching Tam
    • B23K26/08G11B5/82G11B5/84G11B7/00G11B7/08G11B33/10G01B5/28
    • B82Y15/00B23K26/0823B82Y10/00G11B33/10G11B5/82G11B5/8404G11B5/8408Y10T29/49995
    • Crater shaped bumps are made on a calibration disk which can be used for calibrating a PZT slider, the PZT slider in turn being used for detecting predetermined asperities on a production run magnetic disk. The crater shaped bumps emulate predetermined asperities of production run magnetic disks and especially asperities which are undesirable and would cause the production run disk to be discarded after testing by the PZT slider. Crater shaped bumps which emulate undesirable asperities on current production runs of magnetic disks have a diameter in the range of 10 to 25 .mu.m and a peripheral ridge with a height h.sub.r above a nominal surface of the calibration disk in the range of 75 to 120 nm. Close tolerance crater shaped bumps with this configuration can be made by impinging two or more pulses of laser energy on the same location of a calibration disk. By increasing the number of pulses the height of the peripheral ridge progressively increases. By employing multiple pulses, the height of the peripheral ridge is increased while the diameter of the crater shaped bump stays substantially constant. Further, by employing multiple pulses diameters and heights of crater shaped bumps can be produced with close tolerances within a diameter range of 5 to 20 .mu.m and a height range of 2 to 120 nm. Different arrangements of the crater shaped bumps on a calibration disk are provided for increasing the range of calibration of the PZT slider.
    • 在可用于校准PZT滑块的校准盘上形成火山口形凸块,PZT滑块又用于检测生产运行磁盘上的预定凹凸。 火山口形凸起模拟生产运行磁盘的预定粗糙度,特别是不期望的粗糙度,并且会在PZT滑块测试后导致生产运行盘被丢弃。 在当前的磁盘生产运行中模拟不期望的粗糙度的火山口形凸起具有在10至25μm的范围内的直径和在校准盘的标称表面上的高度hr在75至120nm范围内的周边脊 。 可以通过在校准盘的相同位置上照射激光能量的两个或更多个脉冲来实现具有该配置的紧公差凹坑形状的凸块。 通过增加脉冲数,周边脊的高度逐渐增加。 通过采用多个脉冲,周边脊的高度增加,而凹坑形凸起的直径基本保持不变。 此外,通过使用多个脉冲,可以在5〜20μm的直径范围内和2〜120nm的高度范围内产生具有紧密公差的凹坑形凸起的高度。 提供校准盘上的凹坑形突起的不同布置,用于增加PZT滑块的校准范围。
    • 3. 发明授权
    • Method of making disk bumps with laser pulses for calibrating PZT sliders
    • 用激光脉冲制作磁盘凸块以校准PZT滑块的方法
    • US5528922A
    • 1996-06-25
    • US364562
    • 1994-12-27
    • Peter M. BaumgartKarl A. FlechsigMichael F. LeeWing P. LeungUllal V. NayakThao A. NguyenTimothy C. O'SullivanAndrew C. Tam
    • Peter M. BaumgartKarl A. FlechsigMichael F. LeeWing P. LeungUllal V. NayakThao A. NguyenTimothy C. O'SullivanAndrew C. Tam
    • B23K26/08G11B5/82G11B5/84G11B7/00G11B7/08G11B33/10B23K26/00
    • B82Y15/00B23K26/0823B82Y10/00G11B33/10G11B5/82G11B5/8404G11B5/8408Y10T29/49995
    • A method is provided for making crater shaped bumps on a calibration disk which can be used for calibrating a PZT slider, the PZT slider in turn being used for detecting predetermined asperities on a production run magnetic disk. The crater shaped bumps emulate predetermined asperities of production run magnetic disks and especially asperities which are undesirable and would cause the production run disk to be discarded after testing by the PZT slider. Crater shaped bumps which emulate undesirable asperities on current production runs of magnetic disks have a diameter in the range of 10 to 25 .mu.m and a peripheral ridge with a height h.sub.r above a nominal surface of the calibration disk in the range of 75 to 120 nm. Close tolerance crater shaped bumps with this configuration can be made by impinging two or more pulses of laser energy on the same location of a calibration disk. By increasing the number of pulses the height of the peripheral ridge progressively increases. By employing multiple pulses, the height of the peripheral ridge is increased while the diameter of the crater shaped bump stays substantially constant. Further, by employing multiple pulses diameters and heights of crater shaped bumps can be produced with close tolerances within a diameter range of 5 to 20 .mu.m and a height range of 2 to 120 nm. Different arrangements of the crater shaped bumps on a calibration disk are provided for increasing the range of calibration of the PZT slider.
    • 提供了一种用于在可用于校准PZT滑块的校准盘上形成凹坑形凸起的方法,PZT滑块又用于检测生产运行磁盘上的预定凹凸。 火山口形凸起模拟生产运行磁盘的预定粗糙度,特别是不期望的粗糙度,并且会在PZT滑块测试后导致生产运行盘被丢弃。 在当前的磁盘生产运行中模拟不期望的粗糙度的火山口形凸起具有在10至25μm的范围内的直径和在校准盘的标称表面上的高度hr在75至120nm范围内的周边脊 。 可以通过在校准盘的相同位置上照射激光能量的两个或更多个脉冲来实现具有该配置的紧公差凹坑形状的凸块。 通过增加脉冲数,周边脊的高度逐渐增加。 通过采用多个脉冲,周边脊的高度增加,而凹坑形凸起的直径基本保持不变。 此外,通过使用多个脉冲,可以在5〜20μm的直径范围内和2〜120nm的高度范围内产生具有紧密公差的凹坑形凸起的高度。 提供校准盘上的凹坑形突起的不同布置,用于增加PZT滑块的校准范围。
    • 8. 发明授权
    • Method for optimizing piezoelectric surface asperity detection sensor
    • 压电表面粗糙度检测传感器优化方法
    • US5450747A
    • 1995-09-19
    • US174484
    • 1993-12-27
    • Karl A. FlechsigChih-Kung LeeSylvia L. LeeUllal V. NayakTimothy C. O'Sullivan
    • Karl A. FlechsigChih-Kung LeeSylvia L. LeeUllal V. NayakTimothy C. O'Sullivan
    • G01H11/08G11B33/10G01B5/28H01L41/047
    • G11B33/10G01H11/08Y10S73/04
    • A method and apparatus for sensing the vibrational response of a slider of predetermined dimensions during contact with one or more surface asperities on a recording surface, separating the response into its individual bending mode frequency component responses, determining one or more bending mode frequency responses which display monotonic behavior with increasing asperity interference, and designing a mode selection sensor optimized to detect the monotonic bending mode frequency identified. The mode enhanced sensor is designed by first analyzing the stress distribution of the slider corresponding to the monotonic bending mode frequency, identifying regions of the slider which experience substantially positive or substantially negative stress, and partitioning the upper conductive layer of a piezoelectric sensor to form a partitions corresponding to each of the identified regions. The sensor may be further enhanced by tailoring the partitions to exclude undesirable stress contributions.
    • 一种用于在与记录表面上的一个或多个表面粗糙度接触期间感测预定尺寸的滑块的振动响应的方法和装置,将响应分离成其单独的弯曲模式频率分量响应,确定显示的一个或多个弯曲模式频率响应 单调性行为随着越来越严重的干扰,并且设计了优化的模式选择传感器,以检测所识别的单调弯曲模式频率。 通过首先分析对应于单调弯曲模式频率的滑块的应力分布来设计模式增强传感器,识别经历基本上正的或基本上负的应力的滑块的区域,以及分隔压电传感器的上导电层以形成 对应于每个识别的区域的分区。 可以通过调整隔板以排除不期望的应力贡献来进一步增强传感器。
    • 10. 发明授权
    • Active bypass circuit for extending energy capacity and operational life of a multi-cell battery
    • 主动旁路电路,用于延长多节电池的能量容量和使用寿命
    • US06265846B1
    • 2001-07-24
    • US09677958
    • 2000-10-03
    • Karl A. FlechsigDonald Ray Gillis
    • Karl A. FlechsigDonald Ray Gillis
    • H01M1046
    • H01M10/441H02H7/18
    • An active bypass circuit for use with a battery pack having a plurality of cells and method of operation thereof. The active bypass circuit includes a first switching device that is series-coupled with a cell in the battery pack (a separate active bypass circuit is utilized for each cell in the battery pack). A second switching device is parallel-coupled across the first switching device and the cell. The first and second switching devices are switched, i.e., turned ON and OFF, in a complementary fashion. The active bypass circuit also includes a monitoring circuit for monitoring an electrical characteristic of the cell and generating a switching control signal, in response to the monitored electrical characteristic, to selectively control the operation of the first and second switching devices. In an advantageous embodiment, the electrical characteristic is a voltage across the cell. In a related embodiment, the active bypass circuit also includes a switching driver circuit that receives the switching control signal from the monitoring circuit and generates, in response thereto, complementary first and second switching signals to the first and second switching devices, respectively.
    • 一种用于具有多个电池的电池组的有源旁路电路及其操作方法。 主动旁路电路包括与电池组中的电池串联耦合的第一开关装置(用于电池组中的每个电池的单独的有源旁路电路)。 第二开关器件跨越第一开关器件和电池并联耦合。 第一和第二开关器件以互补的方式被切换,即接通和断开。 主动旁路电路还包括监视电路,用于响应于所监视的电气特性来监视电池的电气特性并产生开关控制信号,以选择性地控制第一和第二开关装置的操作。 在有利的实施例中,电特性是电池两端的电压。 在相关实施例中,有源旁路电路还包括开关驱动器电路,其接收来自监视电路的开关控制信号,并响应于此产生互补的第一和第二开关信号到第一和第二开关装置。