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    • 62. 发明授权
    • Molecule detection device formed in a semiconductor structure
    • 形成在半导体结构中的分子检测装置
    • US08438903B2
    • 2013-05-14
    • US12694712
    • 2010-01-27
    • Stanislav PolonskyFrank Suits
    • Stanislav PolonskyFrank Suits
    • G01N30/02G01N30/26C12M1/34
    • B82Y15/00G01N30/6095
    • Semiconductor devices, chromatography devices and integrated circuits for detecting one or more molecules and methods for forming a semiconductor device for detecting one or more molecules are presented. For example, a semiconductor device for detecting one or more molecules includes a channel formed within a semiconductor structure, and at least one detector formed within the semiconductor structure. The at least one detector detects the one or more molecules in the channel. The semiconductor device may optionally comprise one or more additional channels formed within the semiconductor structure. The semiconductor device may, for example, be operative to detect a single molecule.
    • 提供用于检测一个或多个分子的半导体器件,色谱装置和集成电路以及用于形成用于检测一个或多个分子的半导体器件的方法。 例如,用于检测一个或多个分子的半导体器件包括形成在半导体结构内的沟道和形成在半导体结构内的至少一个检测器。 至少一个检测器检测通道中的一个或多个分子。 半导体器件可以可选地包括在半导体结构内形成的一个或多个附加通道。 例如,半导体器件可以用于检测单个分子。
    • 66. 发明授权
    • Axial-geometry micro-discharge detector
    • 轴向几何微量放电检测器
    • US08272249B1
    • 2012-09-25
    • US12220730
    • 2008-07-28
    • Cyrus M. Herring
    • Cyrus M. Herring
    • G01N30/64G01N30/72
    • G01N30/74G01N21/67G01N30/6095G01N30/64
    • A detection device capable of giving atomic and molecular compositions of gases made of concentric tubes and a fiber optic. The body of the detector holds these constituents in their relative positions. A micro-discharge is created between two of the concentric tubes at the tip of the device. The small size of the tubes allows a stable discharge to be achieved. The light from this discharge is delivered from the discharge area to an optical sensing device through the fiber optic. The optical sensing device, along with a computer, analyzes the light to determine the composition of the gas in the discharge. Gas and vacuum are applied through the tubes as needed to aid operation. The detector can be battery powered and used in both hot and toxic environments. Alternatively, a voltmeter can be used to measure impedance across the discharge thus providing another means to determine relative changes in gas composition.
    • 能够提供由同心管和光纤制成的气体的原子和分子组成的检测装置。 检测器的主体将这些成分保持在相对位置。 在设备尖端的两个同心管之间产生微放电。 管的小尺寸允许实现稳定的放电。 来自该放电的光通过光纤从放电区域传送到光学感测装置。 光学传感装置与计算机一起分析光线以确定放电中气体的组成。 根据需要通过管道施加气体和真空以帮助操作。 检测器可以由电池供电并用于热和有毒环境。 或者,可以使用电压表来测量放电上的阻抗,从而提供另一种确定气体成分相对变化的方法。
    • 67. 发明授权
    • Microchip processing method and apparatus
    • Microchip的加工方法和装置
    • US08187442B2
    • 2012-05-29
    • US12347387
    • 2008-12-31
    • Nobuhiro HanafusaAkihiro AraiKoji Tanimizu
    • Nobuhiro HanafusaAkihiro AraiKoji Tanimizu
    • G01N27/453
    • G01N27/44743G01N30/24G01N30/6095G01N30/88G01N2030/8827Y10T436/25Y10T436/25375
    • The processing apparatus for microchips, each at least having a main flow path performing migration of a sample for analysis inside a sheet-like member, comprises a holding part holding microchips so that the multiple main flow paths are provided; a pretreatment part common to the multiple main flow paths for performing a pretreatment step prior to an analysis step in each of the multiple main flow paths; a processing part for performing analysis in each of the main flow paths independently of the others; and a control part controlling an operation in the pretreatment part so that when a pretreatment step for one main flow path ends, a pretreatment for a next main flow path starts and further controlling an operation in the processing part so that an analysis is subsequently performed for the main flow path where the pretreatment step has ended.
    • 用于微芯片的处理装置,每个至少具有在片状构件内执行用于分析的样品的迁移的主流路,包括保持微型芯片以使得设置多个主流路的保持部; 用于在多个主流路中的每一个中执行分析步骤之前的预处理步骤的多个主流路通用的预处理部分; 处理部,用于独立于其他主流路进行分析; 以及控制部,其控制所述预处理部的操作,使得当一个主流路的预处理步骤结束时,开始对下一主流路进行预处理,并且进一步控制所述处理部中的操作,以便随后进行分析 预处理步骤结束的主流路。