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    • 5. 发明申请
    • Automated Calibration Method and System for a Diagnostic Analyzer
    • 诊断分析仪的自动校准方法和系统
    • US20130006566A1
    • 2013-01-03
    • US13548769
    • 2012-07-13
    • Jeremy HammondDominic PelletierJason Aguiar
    • Jeremy HammondDominic PelletierJason Aguiar
    • G06F19/00
    • G01N35/00693G01N2035/00702
    • An automated method for calibrating in real time a diagnostic analyzer includes the steps of receiving diagnostic results of patient samples calculated by the analyzer using pre-set parameters of the analyzer, and calculating the centroid of the analyzer's diagnostic results. The centroid of the analyzer's diagnostic results is subtracted from a centroid of diagnostic results of a field population of comparable analyzers to obtain a bias in the centroid of the analyzer's diagnostic results. The bias is compared to predetermined limits Should the bias fall outside the predetermined limits, an optimization factor is derived and applied to the analyzer's diagnostic results to obtain optimized results from the analyzer without changing the pre-set parameters of the analyzer.
    • 用于实时校准诊断分析仪的自动化方法包括以下步骤:使用分析仪的预设参数来接收由分析仪计算的患者样品的诊断结果,以及计算分析仪诊断结果的质心。 分析仪诊断结果的重心从相当分析仪的现场人群的诊断结果的重心中减去,以获得分析仪诊断结果的质心偏差。 将偏压与预定限度进行比较如果偏差超出预定极限,则推导出优化因子并将其应用于分析仪的诊断结果,以从分析仪获得优化结果,而无需更改分析仪的预设参数。
    • 7. 发明授权
    • Cooling vanes for rotating electric machinery
    • 旋转电机的冷却叶片
    • US5814910A
    • 1998-09-29
    • US524187
    • 1995-09-06
    • Dominic Pelletier
    • Dominic Pelletier
    • H02K1/20H02K15/02H02K1/32
    • H02K1/20H02K15/02
    • A cooling vane for a rotating electric machine and method for attachment. In one embodiment the cooling vane is a corrugated ribbon of thermally conductive material having a plurality of projection points positioned along one edge of the corrugated ribbon. In another embodiment the vane is periodically twisted to bring a portion of the vane parallel with the plate to which the vane is to be welded. In one embodiment the cooling vane is welded to a stator plate of the machine by positioning the cooling vane perpendicularly adjacent the grounded stator plate and applying a high current source to the cooling vane in the region of the projection point. The high current flow through the projection point welds the cooling vane to the stator plate. A plurality of these cooling vanes are welded to the stator plate radially around the surface of the plate to provide a large surface area and to turbulate the fluid flow for the dissipation of heat which is generated within the machine during operation.
    • 一种用于旋转电机的冷却叶片及其附着方法。 在一个实施例中,冷却叶片是导热材料的波纹带,其具有沿波纹带的一个边缘定位的多个投影点。 在另一个实施例中,叶片被周期性扭转以使叶片的一部分平行于待焊接叶片的板。 在一个实施例中,通过将冷却叶片垂直地邻近接地的定子板并将高电流源施加到投影点的区域中的冷却叶片,将冷却叶片焊接到机器的定子板。 通过投影点的高电流将冷却叶片焊接到定子板上。 多个这些冷却叶片围绕板的表面径向地焊接到定子板,以提供大的表面积并且使流体流动紊乱以便在运行期间在机器内产生的热量消散。
    • 8. 发明授权
    • Automated calibration method and system for a diagnostic analyzer
    • 诊断分析仪的自动校准方法和系统
    • US09151769B2
    • 2015-10-06
    • US13548769
    • 2012-07-13
    • Jeremy HammondDominic PelletierJason Aguiar
    • Jeremy HammondDominic PelletierJason Aguiar
    • G06F19/00G01N35/00
    • G01N35/00693G01N2035/00702
    • An automated method for calibrating in real time a diagnostic analyzer includes the steps of receiving diagnostic results of patient samples calculated by the analyzer using pre-set parameters of the analyzer, and calculating the centroid of the analyzer's diagnostic results. The centroid of the analyzer's diagnostic results is subtracted from a centroid of diagnostic results of a field population of comparable analyzers to obtain a bias in the centroid of the analyzer's diagnostic results. The bias is compared to predetermined limits. Should the bias fall outside the predetermined limits, an optimization factor is derived and applied to the analyzer's diagnostic results to obtain optimized results from the analyzer without changing the pre-set parameters of the analyzer.
    • 用于实时校准诊断分析仪的自动化方法包括以下步骤:使用分析仪的预设参数来接收由分析仪计算的患者样品的诊断结果,以及计算分析仪诊断结果的质心。 分析仪诊断结果的重心从相当分析仪的现场人群的诊断结果的重心中减去,以获得分析仪诊断结果的质心偏差。 将偏差与预定极限相比较。 如果偏差超出预定极限,则推导出优化因子并将其应用于分析仪的诊断结果,以便在不改变分析仪的预设参数的情况下从分析仪获得优化结果。
    • 10. 发明申请
    • Polarized material inspection apparatus and system
    • 极化材料检验仪器和系统
    • US20050046830A1
    • 2005-03-03
    • US10747515
    • 2003-12-29
    • John KarpDominic Pelletier
    • John KarpDominic Pelletier
    • G01N21/21G01N21/88
    • G01N21/21
    • A polarized material inspection device that includes a light source, a first polarizing filter disposed within the optical path of the light source, a frame into which a second polarizing filter is disposed, and a support for positioning the frame such that an object may be viewed through the second polarizing filter. In the preferred embodiment, the first polarizing filter is rotatable through a ninety degree arc such that planes of polarization may be adjusted to be parallel or orthogonal to one another. The preferred embodiment also includes a light illumination assembly having a rotatably mounted linear polarizer at the polarizing output end. This light assembly is attached to a portion of the frame and may be adjusted such that the beam of light is directed to the desired portion of the surface. Within the frame is mounted a fixed linear polarizing filter of sufficient size to allow the entire illuminated surface to be viewed. The frame is mounted to an adjustable support arm that is attached to a tripod or other support to allow the apparatus to be fixed during a given procedure.
    • 一种偏振材料检查装置,包括光源,设置在光源的光路内的第一偏振滤光器,设置有第二偏振滤光片的框架和用于定位框架的支撑件,使得可以观察对象 通过第二偏振滤光器。 在优选实施例中,第一偏振滤光器可旋转90度弧,使得偏振面可以被调整为彼此平行或正交。 优选实施例还包括在偏振输出端具有可旋转安装的线性偏振器的光照组件。 该灯组件附接到框架的一部分并且可以被调整为使得光束被引导到表面的期望部分。 在框架内安装足够尺寸的固定线性偏振滤光片,以允许观察整个照明表面。 框架安装到可调节的支撑臂上,该支撑臂连接到三脚架或其他支撑件,以允许在给定过程中固定装置。