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    • 3. 发明授权
    • Stackable process chambers
    • 可堆叠处理室
    • US06923192B2
    • 2005-08-02
    • US10171429
    • 2002-06-12
    • Chad M. HosackPaul PatelRaoul Standt
    • Chad M. HosackPaul PatelRaoul Standt
    • B08B3/02B08B3/12H01L21/00H01L21/304B08B7/04
    • H01L21/67051H01L21/67034Y10S134/902
    • A substrate processing system has a first substrate cleaner and a second substrate cleaner. The first substrate cleaner comprises a forward portion and a rear portion. The forward portion includes a rotatable substrate support. The rear portion is vertically thicker than the forward portion. The rear portion includes a device for rotating the support. The second substrate cleaner includes the elements included in the first substrate cleaner. The second substrate cleaner is stacked above the first substrate cleaner with the forward portions being vertically aligned and the rear portions being vertically aligned. A space is formed between the forward portions to permit access to the forward portion of the first substrate cleaner and to permit ample gas flow into the area between the forward portions of the first and the second substrate cleaners.
    • 衬底处理系统具有第一衬底清洁器和第二衬底清洁器。 第一衬底清洁器包括前部和后部。 前部包括可旋转的基板支撑件。 后部比前部部分垂直厚。 后部包括用于旋转支撑件的装置。 第二基板清洁器包括包括在第一基板清洁器中的元件。 第二基板清洁器堆叠在第一基板清洁器的上方,其中前部垂直对齐并且后部垂直对准。 在前部之间形成空间,以允许进入第一基板清洁器的前部并且允许充足的气体流入第一和第二基板清洁器的前部之间的区域。
    • 5. 发明申请
    • Quantitative assay with extended dynamic range
    • 具有扩展动态范围的定量测定
    • US20060019404A1
    • 2006-01-26
    • US11061096
    • 2005-02-18
    • Joel BlattMichael AllenDiem LePaul PatelPatrick Sexton
    • Joel BlattMichael AllenDiem LePaul PatelPatrick Sexton
    • G01N21/77
    • G01N21/8483G01N21/78G01N33/689
    • An efficient design for an expanded dynamic range in a lateral flow one step assay for the detection of an analyte in a biological sample is disclosed. The device comprises a multiple strip design, each constructed of four zones; a sample receiving zone, a sample treatment zone, a labeling zone, and a capture zone. The sample containing analyte is accepted in the sample receiving zone in the form of blood, serum, plasma, or urine. It is then carried into the sample treatment zone where it is rendered compatible with the chemistries of the assay strip. The treated sample then flows into the labeling zone where it interacts with visible particles that are coupled to analyte specific binding proteins. The flow continues, carrying the labeled analyte into the capture zone where it is immobilized in specific regions with analyte specific binding proteins. Excess flow is absorbed in an absorbent zone that is in contact with the capture zone. A positive result is interpreted by detection of the visible particles in the specified regions of the capture zone.
    • 公开了用于在侧向流动中扩展的动态范围的有效设计,用于检测生物样品中的分析物的一步测定。 该装置包括多个条带设计,每个由四个区域构成; 样品接收区,样品处理区,标记区和捕获区。 含有分析物的样品在样品接收区域以血液,血清,血浆或尿液的形式被接受。 然后将其运送到样品处理区域中,使其与测定条带的化学物质相容。 然后将经处理的样品流入标记区域,在该区域与被分析物特异性结合蛋白偶联的可见颗粒相互作用。 流动继续,将标记的分析物携带到捕获区中,在捕获区中将其固定在具有分析物特异性结合蛋白的特定区域中。 在与捕获区接触的吸收区中吸收过量的流动。 通过检测捕获区域的指定区域中的可见颗粒来解释正的结果。