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    • 1. 发明申请
    • Lateral Tape Motion Detector
    • 侧面胶带运动检测器
    • US20130342930A1
    • 2013-12-26
    • US13531875
    • 2012-06-25
    • Faramarz MahnadScott D. Wilson
    • Faramarz MahnadScott D. Wilson
    • G11B27/36
    • G11B15/602B65H23/0216B65H2553/412B65H2701/11332B65H2701/1315G11B5/584G11B20/10388G11B2220/90
    • A tape edge sensor system for detecting lateral movement of a storage tape includes a first photo-emitter, a first photo-detector positioned to receive a first light signal from the first photo-emitter, a first aperture disposed between the first photo-emitter and the first photo-detector, and a feedback system connected to the first photo-emitter and the first photo-detector. The first aperture defines a first region at a first tape edge through which the first light signal is received by the first photo-detector with the storage tape blocking a portion of the first light signal. The feedback system determines the first photo-detector's signal amplitude and adjusts the first light signal such that the first photo-detector signal amplitude is within a first average amplitude range. A tape edge sensor system using compensating photo-interrupters is also provided.
    • 用于检测存储带的横向运动的带边缘传感器系统包括第一光发射器,定位成从第一光发射器接收第一光信号的第一光检测器,设置在第一光发射器与第一光发射器之间的第一孔 第一光检测器和连接到第一光发射器和第一光检测器的反馈系统。 第一孔限定第一带边缘处的第一区域,第一光信号通过第一区域被第一光检测器接收,存储带阻挡第一光信号的一部分。 反馈系统确定第一光电检测器的信号幅度并调整第一光信号,使得第一光检测器信号幅度在第一平均振幅范围内。 还提供了使用补偿光电断路器的磁带边缘传感器系统。
    • 3. 发明授权
    • System and method for aligning components of optical head
    • 用于对准光头部件的系统和方法
    • US06631302B1
    • 2003-10-07
    • US09544370
    • 2000-04-06
    • Scott D. Wilson
    • Scott D. Wilson
    • G05B1918
    • G11B7/22
    • Extremely small optical heads are being developed for use in optical storage devices. The heads typically include a light source, a lens and a photodetector array. The beam of light generated by the light source must be aligned precisely with central axis of the lens and with the photodetector array. Because the heads are so small, their components are fixed permanently together; no adjustments are possible after assembly. A system of this invention includes a rotational stage, a pair of X-translation stages, and a pair Y-translation stages. The stages are mounted in a mechanical path between first and second holding devices. One component of the head, which would typically include the light source, is held in the first holding device. Another component, which would typically include the lens, is held in the second holding device. The stages are adjusted until the light beam exits the first component on an axis that coincides with the center of rotation of the rotational stage. The position of the second component is adjusted until the light beam coincides with the axis of the lens. The first component is then rotated until the light beam strikes the photodetector array at an optimal position. The optimal position can be obtained by directing the light beam at a media driven by a tracking actuator and optimizing the output signal from the head.
    • 正在研制用于光学存储设备的非常小的光学头。 头部通常包括光源,透镜和光电检测器阵列。 由光源产生的光束必须与透镜的中心轴和光电检测器阵列精确对准。 因为头部很小,它们的部件永久固定在一起; 组装后无法进行调整。 本发明的系统包括旋转台,一对X平移台和一对Y平移台。 这些级安装在第一和第二保持装置之间的机械路径中。 通常包括光源的头部的一个部件被保持在第一保持装置中。 通常包括透镜的另一部件被保持在第二保持装置中。 调整各级,直到光束在与旋转台的旋转中心重合的轴上离开第一部件。 调整第二分量的位置,直到光束与透镜的轴线重合。 然后旋转第一分量,直到光束在最佳位置上撞击光电检测器阵列。 可以通过将光束引导到由跟踪致动器驱动的介质并优化来自头部的输出信号来获得最佳位置。
    • 9. 发明申请
    • VASCULAR AND BODILY DUCT TREATMENT DEVICES AND METHODS
    • 血管和体液治疗装置及方法
    • US20110009950A1
    • 2011-01-13
    • US12832857
    • 2010-07-08
    • Ryan M. GrandfieldScott D. WilsonJohn H. MillerEmily VuKirk L. PedersenCraig L. BonsignoreElliot H. Sanders
    • Ryan M. GrandfieldScott D. WilsonJohn H. MillerEmily VuKirk L. PedersenCraig L. BonsignoreElliot H. Sanders
    • A61F2/88A61F2/82
    • A61F2/91A61B17/320725A61B17/32075A61B2017/22045A61B2017/320716A61F2/88A61F2/915A61F2/95A61F2002/91558A61F2220/005A61F2220/0058A61F2230/0008A61F2250/0059
    • A device including a self-expandable member having a proximal end portion and a main body portion. The self-expandable member is movable from a first delivery position to a second placement position, in the first delivery position the expandable member being in an unexpanded position and having a nominal first diameter and in the second position the expandable member being in a radially expanded position and having a second nominal diameter greater than the first nominal diameter for deployment within a vessel or duct of a patient. The expandable member includes a plurality of cell structures with the cell structures in the main body portion extending circumferentially around a longitudinal axis of the expandable member and the cell structures in the proximal end portion extending less than circumferentially around the longitudinal axis of the expandable member. In one implementation the cell structures have dimensional and material characteristics that result in about a −1.5N to a about a −3.5N overall reduction in radial force along the length of the expandable member per millimeter of expansion during about an initial 0.50 mm diametric range of expansion from the nominal diameter and that results in about a −0.10N to about a −0.50N overall reduction in radial force along the length of the expandable member per millimeter of expansion during subsequent diametric ranges of expansion.
    • 一种装置,包括具有近端部分和主体部分的自扩张部件。 自膨胀构件可从第一输送位置移动到第二放置位置,在第一输送位置,可膨胀构件处于未膨胀位置并具有标称第一直径,并且在第二位置,可膨胀构件处于径向扩张 并且具有大于第一公称直径的第二公称直径以用于部署在患者的血管或管道内。 可扩张构件包括多个单元结构,其中主体部分中的单元结构围绕可扩展构件的纵向轴线周向延伸,并且近端部分中的单元结构沿着可扩展构件的纵向轴线周向延伸。 在一个实施方案中,电池结构具有尺寸和材料特性,其在大约初始的0.50mm直径范围内导致沿着可膨胀元件的长度的每毫米膨胀的约-1.5N至约-3.5N的总体减小的径向力 从公称直径膨胀,并且在随后的膨胀范围内,每毫米膨胀的沿着可膨胀构件的长度的整体减小约-0.10N至约-0.50N。