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    • 1. 发明公开
    • HOLDER FOR TRANSFERRING TEST TUBE
    • 哈尔斯·ÜBERTRAGUNGVONPROBENRÖHRCHEN
    • EP2799884A1
    • 2014-11-05
    • EP12862553.0
    • 2012-12-14
    • Hitachi High-Technologies Corporation
    • OHGA HiroshiFUKUGAKI TatsuyaISOBE TetsuyaONIZAWA Kuniaki
    • G01N35/02B01L9/06B65D25/20
    • B01L9/06B01L2200/025B01L2300/022B01L2300/0609B01L2300/12B01L2300/123G01N35/04G01N2035/00801
    • The present invention aims at providing a test tube holder that can hold various types of test tubes substantially perpendicular, is structured to be durable against extraction and insertion of the test tubes, and has a good assemblability for dealing with various test tube shapes. The test tube holder includes: a housing part having a hollow portion therein; a holding part positioned on an upper side of the housing part and having an opening portion, which accepts a test tube, and a housing portion, which houses the accepted test tube; and an elastic part formed inside the holding part so as to abut on the housed test tube. The test tube holder has a weight housed inside the hollow portion. The test tube holder. The holding part and the elastic part may be integrally formed, and preferably, may be integrally formed of resin. Inside the hollow portion of the housing part, besides the weight, an individual identification tag, an electromagnetic wave absorbent, and a support member for a tapered test tube can be housed in accordance with usage.
    • 本发明的目的在于提供一种可以容纳各种类型的试管基本上垂直的试管夹持器,其构造为耐试样管的抽出和插入,并且具有用于处理各种试管形状的良好的组装性。 试管支架包括:壳体部分,其中具有中空部分; 保持部,其位于所述壳体部的上侧,并且具有容纳试管的开口部和容纳所述被接受的试管的容纳部; 以及弹性部,其形成在所述保持部内部,以抵靠所容纳的试管。 试管支架具有容纳在中空部分内的重物。 试管架。 保持部和弹性部可以一体地形成,优选地,可以由树脂一体形成。 在外壳部分的中空部分之外,除了重量之外,还可以根据用途容纳个体识别标签,电磁波吸收剂和用于锥形试管的支撑构件。
    • 2. 发明公开
    • CENTRIFUGAL SEPARATOR
    • 离心分离器
    • EP2460590A1
    • 2012-06-06
    • EP10804447.0
    • 2010-07-28
    • Hitachi High-Technologies Corporation
    • FUKUGAKI TatsuyaOGA HiroshiOBA ShigemiISOBE TetsuyaONIZAWA Kuniaki
    • B04B11/00
    • G01N35/00029B04B2011/046G01N5/00G01N2035/00495
    • A sample examination automatic system is provided that can limit a weight difference between buckets (17) mounted at respective symmetrical positions with respect to a centrifugal separation rotational center and that can continuously perform examination on samples in the order of the samples carried into the system. This system exercises control as below. When a sample (21) is carried in a centrifugal buffer line (11), its weight is measured by weight measuring means (31) such as a load cell or the like. It is assumed that the names of two adaptors (22) placed at respective symmetrical positions with respect to the centrifugal separation rotational center are defined as an adaptor A and an adaptor B. A first sample is put on the adaptor A and a second sample is put on the adaptor B. Then, a third sample and subsequent ones are each put on the adaptor (22) lighter than the other adaptor after the total weights of samples put on the adaptors are computation-compared with each other.
    • 提供样本检查自动系统,其可以限制安装在相对于离心分离旋转中心的各个对称位置处的料斗(17)之间的重量差异,并且可以按照携带到系统中的样本的顺序连续地对样本进行检查。 该系统如下进行控制。 当样品(21)被运送到离心缓冲管线(11)中时,其重量通过诸如称重传感器等的重量测量装置(31)来测量。 假定放置在相对于离心分离旋转中心的各自对称位置处的两个适配器(22)的名称被定义为适配器A和适配器B.将第一样品放在适配器A上,第二样品是 放在适配器B上。然后,将放在适配器上的样品的总重量相互比较后,将第三个样品和随后的样品各放在比另一个适配器轻的适配器(22)上。
    • 6. 发明公开
    • SPECIMEN TRANSFER MECHANISM
    • PROBENÜBERTRAGUNGSMECHANISMUS
    • EP2613156A1
    • 2013-07-10
    • EP11821849.4
    • 2011-08-31
    • Hitachi High-Technologies Corporation
    • OHISO AkihiroHIRAMA YoshiteruFUKUGAKI TatsuyaISOBE TetsuyaSAKAI Hiroaki
    • G01N35/04
    • G01N35/04B25J9/026B25J15/0226B25J15/10G01N35/0099G01N2035/0406G01N2035/0493G01N2035/0494
    • A sample transfer mechanism of the present invention is characterized broadly by a sample gripping method in which a downward part of a sample vessel is gripped and a cover that achieves an effect as a guide such that gripping arms that grip the sample vessel avoid contact with other objects and bypass surrounding objects, particularly, the sample vessels in approaching and retracting motions. To enhance the effect as the guide and to ensure that the sample vessels can be mounted with a high degree of integration, the shape of the cover and disposition of the sample transfer mechanism are characterized in a number of manners. Thereby, a sample transfer mechanism that can perform a transfer process safety with a high throughput even under conditions in which a variety of types of sample vessels is mixed together and the sample vessels are mounted with a high degree of integration is provided.
    • 本发明的样品转移机构的广泛特征在于其中抓住样品容器的向下部分的样品夹持方法和实现作为导向器的效果的盖子,使得夹持样品容器的夹持臂避免与其他物体接触 物体和旁路物体,特别是接近和收回运动中的样品容器。 为了提高作为指导的效果,并且为了确保样品容器能够高度集成地安装,盖子的形状和样品转印机构的布置以多种方式表征。 因此,提供了即使在各种类型的样品容器混合在一起的情况下也能够以高生产率进行转印处理安全性的样品转印机构以及高集成度地安装样品容器。
    • 8. 发明公开
    • AUTOMATED SPECIMEN PROCESSING SYSTEM
    • 自动化机器人系统
    • EP2485059A1
    • 2012-08-08
    • EP10820323.3
    • 2010-09-09
    • Hitachi High-Technologies Corporation
    • OHGA HiroshiFUKUGAKI TatsuyaISOBE TetsuyaYANO Shigeru
    • G01N35/04G01N35/02
    • 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. An automated sample processing system includes a plurality of units that are provided for functions of processing a sample and combined so as to form the system. The plurality of units include at least a dispensing unit that dispenses the sample stored in a sample vessel into another sample vessel. The automated sample processing system has at least one discharge line that discharges the sample from the dispensing unit to a transport line; a line that is perpendicular to the discharge line; and a reverse direction transport line that 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.
    • 在分配后,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。 自动样品处理系统包括多个单元,其被提供用于处理样品并组合以形成系统的功能。 多个单元至少包括分配单元,其将存储在样品容器中的样品分配到另一个样品容器中。 自动化样品处理系统具有至少一个排出管线,其将样品从分配单元排出到输送管线; 垂直于排出管线的管线; 以及反方向输送线,其将样品沿与将装载在系统中的样品的方向相反的方向输送到分注单元。 由分配单元处理的样品通过反方向传送线路传送到位于系统上游侧的存储单元。