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    • 1. 发明公开
    • REACTION CUVETTE LOADING DEVICE AND CHEMILUMINESCENCE IMMUNOASSAY APPARATUS
    • LADEVORRICHTHTUNGFÜRREAKTIONSKÜVETTENUND CHEMILUMINESZENZ-IMMUNOASSAYVORRICHTUNG
    • EP3141910A4
    • 2017-05-10
    • EP15789287
    • 2015-05-08
    • SHENZHEN NEW IND BIOMEDICAL ENG CO LTD
    • RAO WEIBAN DINGPINGYI WANGUANZHU LIANGHU YICHEN XIAOTAOYI LILIN WEI
    • G01N35/02G01N35/04
    • G01N33/5304G01N21/76G01N35/02G01N35/04G01N2035/0401G01N2035/0465G01N2035/0467G01N2035/0482G01N2035/0484
    • Provided are a reaction cuvette loading device and a fully automatic chemiluminescence immunoassay apparatus. The reaction cuvette loading device comprises a transmission mechanism (1) and a push mechanism (2), wherein the transmission mechanism (1) comprises a baseplate (11) and a first horizontal transmission mechanism (12) provided on the baseplate (11); the push mechanism (2) comprises a support assembly (21), a second horizontal transmission mechanism (22) provided on the support assembly (21), and a push rod (23) connected to the second horizontal transmission mechanism (22); and the push mechanism (2) further comprises a direction guiding control block (25) comprising a starting end provided at a terminal point of a cuvette pushing stroke of the push rod (23), a termination end provided at a starting point of the cuvette pushing stroke of the push rod (23), and a return track provided between the starting end and the termination end and bypassing the cuvette pushing stroke, and the separation distance between the starting end and termination end is not less than one vessel position and not more than two vessel positions.
    • 提供了一种反应比色皿装载装置和全自动化学发光免疫测定装置。 所述反应杯装载装置包括传动机构(1)和推动机构(2),所述传动机构(1)包括底板(11)和设置在所述底板(11)上的第一水平传动机构(12)。 (2)包括支撑组件(21),设置在支撑组件(21)上的第二水平传动机构(22)和连接到第二水平传动机构(22)的推杆(23)。 所述推动机构(2)还包括方向导向控制块(25),所述方向导向控制块(25)包括设置在所述推杆(23)的反应杯推动行程的终点处的起始端,设置在所述反应杯的起始点处的终止端 推动推杆(23)的行程,以及设置在起始端和终止端之间并绕过反应杯推动行程的返回轨道,并且起始端和终止端之间的分离距离不小于一个容器位置,而不是 两个以上的船只位置。
    • 5. 发明公开
    • MEASUREMENT-CONTAINER SUPPLY DEVICE
    • ZUFUHRRORRICHTUNGFÜREINENMESSBEHÄLTER
    • EP3021122A1
    • 2016-05-18
    • EP14823305.9
    • 2014-06-20
    • Jeol Ltd.
    • NAKAMURA, Mizuki
    • G01N35/04
    • G01N35/04G01N21/13G01N35/025G01N2035/0401G01N2035/0444G01N2035/0462G01N2035/0465
    • A measurement container supply device can more reliably hold a measurement container, and transfer the measurement container to a predetermined supply position. A supply section that transfers the measurement container to the predetermined supply position includes a holding section (50) that holds the measurement container, and the holding section (50) has a first groove (52) that is formed to have a width that corresponds to the outer diameter of a body of the measurement container, and a second groove (54) that is formed to have a width that corresponds to the outer diameter of a neck of the measurement container. When the holding section (50) holds the measurement container, the first groove (52) comes in contact with the outer circumferential surface of the body, the second groove (54) comes in contact with the outer circumferential surface of the neck, and a step (56) that is formed by the first groove (52) and the second groove (54) comes in contact with a step that is formed by the body and the neck.
    • 测量容器供应装置可以更可靠地保持测量容器,并将测量容器传送到预定的供应位置。 将测量容器传送到预定的供应位置的供应部分包括保持测量容器的保持部分(50),并且保持部分(50)具有第一凹槽(52),其形成为具有对应于 测量容器的主体的外径和形成为具有与测量容器的颈部的外径相对应的宽度的第二凹槽(54)。 当保持部(50)保持测定容器时,第一槽(52)与主体的外周面接触,第二槽(54)与颈部的外周面接触, 由第一槽(52)和第二槽(54)形成的台阶(56)与由主体和颈部形成的台阶接触。
    • 6. 发明公开
    • Cuvette handling device
    • 比色皿处理装置
    • EP2799886A1
    • 2014-11-05
    • EP14160443.9
    • 2014-03-18
    • Stratec Biomedical AG
    • Lukhaub, WaldemarSchramm, AlexanderTrump, Martin
    • G01N35/04B65G47/51B65G59/10
    • G01N35/025B65G59/105G01N35/04G01N2035/0401G01N2035/0425G01N2035/0427
    • Device for storing and dispensing cuvettes from a stack. The device has at least one cuvette stack receiving compartment, which may be a tube open at both ends, wherein one of the openings is provided with retaining springs, partly blocking the opening, so that the cuvette stack having been dropped into the compartment may come to rest on the retaining springs. The retaining springs are being spaced apart from the opening of the compartment by a distance that allows at least two cuvettes in the stack to stick out of the compartment opening. Furthermore, a cuvette separator with retaining spring spreaders is provided, moveable between a standby position away from the compartment and a cuvette separation position across the retaining spring opening of the compartment, and in between the two cuvettes, sticking out of the compartment.
    • 用于从堆叠中存储和分配比色皿的设备。 该装置具有至少一个比色皿堆接收室,其可以是两端开口的管,其中一个开口设置有保持弹簧,部分地阻塞开口,使得已经落入隔室的比色管堆可以进入 放置在固定弹簧上。 保持弹簧与隔间的开口隔开一段距离,该距离允许堆叠中的至少两个试管从隔间开口伸出。 此外,提供了具有保持弹簧撑开器的反应杯分离器,其可在远离隔室的备用位置和横跨隔室的保持弹簧开口的反应杯分离位置之间移动,并且在两个反应杯之间伸出隔室。
    • 9. 发明公开
    • SAMPLE CONTAINER CARRIER
    • 样品容器载体
    • EP3211427A1
    • 2017-08-30
    • EP16157465.2
    • 2016-02-25
    • Roche Diagnostics GmbHF. Hoffmann-La Roche AG
    • KÄPPELI, MarcelHERMANN, Pius
    • G01N35/04B01L9/06
    • G01N35/04B01L3/5453B01L9/06B01L2200/025B01L2200/18G01N2035/0401G01N2035/0406
    • The invention relates to a sample container carrier for transporting sample containers, for example test tubes and/or vials, in a laboratory automation system, the sample container carrier comprising a basic body (2) having a hollow (20) with a central axis (A), wherein the hollow (20) is adapted for receiving a lower end of a sample container (10), and at least three resiliently deformable and/or displaceable upper retaining elements (3), wherein the upper retaining elements (3) are distributed about the central axis (A) and adapted to clamp a sample container (10) inserted in the hollow (20) of the basic body (2), and wherein the upper retaining elements (3) are made of a plastic material. The invention further relates to a method for manufacturing a sample container carrier, wherein that at least the upper retaining elements (30) are formed by injection molding. In addition, the invention relates to a laboratory sample distribution system having a number of sample container carriers, and a laboratory automation system comprising a laboratory sample distribution system.
    • 本发明涉及一种用于在实验室自动化系统中运输样品容器(例如试管和/或小瓶)的样品容器载体,该样品容器载体包括具有中空轴(20)的基体(2) 其特征在于,所述空腔(20)适于接收样本容器(10)的下端,以及至少三个可弹性变形和/或可移位的上保持元件(3),其中所述上保持元件(3) 围绕中心轴线(A)分布并适于夹持插入基体(2)的中空部分(20)中的样本容器(10),并且其中上部保持元件(3)由塑料材料制成。 本发明还涉及一种用于制造样本容器载体的方法,其中至少上部保持元件(30)通过注射成型形成。 此外,本发明涉及具有多个样品容器载体的实验室样品分配系统以及包括实验室样品分配系统的实验室自动化系统。