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    • 6. 发明申请
    • SAMPLE TREATMENT SYSTEM
    • 样品处理系统
    • US20080047369A1
    • 2008-02-28
    • US11839858
    • 2007-08-16
    • Naoto TSUJIMURANobuo SuzukiShigeru Yano
    • Naoto TSUJIMURANobuo SuzukiShigeru Yano
    • G01N1/28G01B11/28
    • G01N35/04G01N35/00732G01N2035/0405
    • According to the present invention, a sample treatment system is capable of successfully detecting the shape of a stopper of a stopper-equipped sample vessel. A sample treatment system comprises: a sample rack for supporting a stopper-equipped sample vessel in which collected samples are stored; a transfer line for transferring the sample rack; a pretreatment unit that is lined up along the transfer line, and that performs various kinds of pretreatment; and a control unit for controlling the operation of the transfer line and that of the pretreatment unit; wherein the pretreatment unit includes a sample rack supplying unit, a centrifugal separation unit, a stopper opening unit, a dispensing unit, a stopper closing unit, a classification unit, and a sample storing unit, the sample treatment system further comprising shape detection means for detecting the shape of the stopper.
    • 根据本发明,样品处理系统能够成功地检测装有塞子的样品容器的塞子的形状。 样品处理系统包括:用于支撑装有收集样品的装有塞子的样品容器的样品架; 用于传送样品架的传送线; 沿着输送线排列的预处理单元,进行各种预处理; 以及控制单元,用于控制传送线和预处理单元的操作; 其特征在于,所述预处理单元包括样品架供给单元,离心分离单元,止动器打开单元,分配单元,止动器关闭单元,分类单元和样本存储单元,所述样本处理系统还包括:形状检测单元, 检测止动器的形状。
    • 7. 发明授权
    • Surge protection apparatus
    • 浪涌保护装置
    • US5189588A
    • 1993-02-23
    • US493684
    • 1990-03-15
    • Shigeru YanoMasao Takiguchi
    • Shigeru YanoMasao Takiguchi
    • H01L27/02
    • H01L27/0248
    • A surge protection apparatus, has a signal terminal, and first and second power supply terminals which are connected to the internal circuit to be protected, and first and second diodes which are connected between the signal terminal and the first and second power supply terminals, and a protective transistor acting as a discharge path for the surge voltage which is connected between the first and the second power supply terminals. As a result, even if the discharge capability of the internal circuit connected between the first and second power supply terminals is small, the surge voltage can be discharged in a short time through the protective transistor. Moreover, since the protective diode at the positive power supply side is connected to the power source of low impedance, the plural signal terminals will not be coupled by the junction capacitance. Thus, crosstalk does not occur between the plural signal terminals.
    • 一种浪涌保护装置,具有信号端子,连接到要被保护的内部电路的第一和第二电源端子以及连接在信号端子与第一和第二电源端子之间的第一和第二二极管,以及 用作连接在第一和第二电源端子之间的浪涌电压的放电路径的保护晶体管。 结果,即使连接在第一和第二电源端子之间的内部电路的放电能力小,浪涌电压也可以通过保护晶体管在短时间内放电。 此外,由于正电源侧的保护二极管与低阻抗的电源连接,所以多个信号端子不会被结电容耦合。 因此,在多个信号端子之间不会发生串扰。
    • 10. 发明申请
    • AUTOMATED SAMPLE PROCESSING SYSTEM
    • 自动样品加工系统
    • US20120174687A1
    • 2012-07-12
    • US13383508
    • 2010-09-09
    • Hiroshi OhgaTatsuya FukugakiTetsuya IsobeShigeru Yano
    • Hiroshi OhgaTatsuya FukugakiTetsuya IsobeShigeru Yano
    • G01N1/10
    • G01N35/026G01N35/0095G01N2035/00326G01N2035/0415
    • After being dispensed, a sample that needs to be quickly measured passes through another unit and is transported to an automatic analyzer. A plurality of units are provided for functions of processing including a dispensing unit that dispenses the sample stored in a sample vessel into another sample vessel. At least one discharge line discharges the sample from the dispensing unit to a transport line and a line that is perpendicular to the discharge line. A reverse direction transport line transports the sample in a direction reverse to a direction in which the sample loaded in the system is transported to the dispensing unit. The sample that is processed by the dispensing unit is transported to a storage unit located on the upstream side of the system, through the reverse direction transport line.
    • 分配后,需要快速测量的样品通过另一个单元,并被运送到自动分析仪。 为处理功能提供多个单元,包括分配单元,其将存储在样品容器中的样品分配到另一个样品容器中。 至少一个排放管线将样品从分配单元排出到输送管线和垂直于排出管线的管线。 反方向输送线沿着与装载在系统中的样品运送到分配单元的方向相反的方向输送样品。 由分配单元处理的样品通过反方向传送线被输送到位于系统上游侧的存储单元。