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    • 41. 发明授权
    • Dispenser and dispensing device
    • 分配器和分配装置
    • US07314598B2
    • 2008-01-01
    • US10776162
    • 2004-02-12
    • Mitsuo Nishino
    • Mitsuo Nishino
    • B01L3/02
    • B01L3/0227B01L2200/146G01N2035/1018Y10T436/119163
    • A dispenser has a pressure sensor enabled to detect a pressure precisely by forming a pressure sensor integrally with a syringe constructing a nozzle to thereby eliminate a pipeline or the like. The dispenser is provided for sucking and discharging a liquid from a nozzle by slidably moving a piston sliding in the inside of a syringe by a motor mounted in a body. A detection sensor for detecting the internal pressure of the inside of the syringe is integrally formed by connecting its air inlet directly to a through hole formed to extend to the inner face of the syringe.
    • 分配器具有能够通过与构造喷嘴的注射器一体地形成压力传感器来精确地检测压力从而消除管道等的压力传感器。 分配器被设置用于通过滑动地移动通过安装在体内的电动机在注射器的内部滑动的活塞而从喷嘴吸取和排出液体。 用于检测注射器内部的内部压力的检测传感器通过将其空气入口直接连接到形成为延伸到注射器的内表面的通孔而一体地形成。
    • 50. 发明申请
    • Device for aspirating and dispensing liquid samples
    • 用于吸取和分配液体样品的装置
    • US20050244303A1
    • 2005-11-03
    • US11056696
    • 2005-02-11
    • Nikolaus IngenhovenNoa SchmidStefano Fornito
    • Nikolaus IngenhovenNoa SchmidStefano Fornito
    • G01N1/00B01J4/00B01L3/02B01L99/00G01F25/00G01N35/02G01N35/10G01N37/00
    • B01L3/022B01L3/021B01L3/0241B01L99/00B01L2400/025B01L2400/0439B01L2400/0478G01F25/0092G01N35/10G01N2035/1006G01N2035/103G01N2035/1039Y10T436/114998Y10T436/119163Y10T436/2575
    • A device for aspirating and dispensing liquid samples comprising a pump that comprises a cylindrical chamber, a piston movable in this cylindrical chamber, and a piston drive that engages the piston. The device further comprises a tip connected to the cylindrical chamber with a line, and a channel system that discharges into the cylindrical chamber for flushing or rinsing the latter. The device is characterized in that the piston entirely seals this cylindrical chamber from the channel system, if the piston is positioned in the cylindrical chamber in such a way that a free piston end comes to rest between the channel system and the line. Preferably, the cylindrical chamber is located in a cylinder block, which comprises two parts that are separated by and enclosing an intermediate channel system. The channel system most preferably is implemented as a coherent cavity. According to a first embodiment, the cylindrical chamber is implemented as a sleeve that is inserted in a boring located in a cylinder block. According to a second embodiment, the cylindrical chamber is implemented as a boring located in a cylinder block. Furthermore, the invention also concerns systems with, for example, 384 or more such devices that are arranged in an array.
    • 用于抽吸和分配液体样品的装置,包括包括圆柱形腔室的泵,可在该圆柱形腔室中移动的活塞以及与活塞接合的活塞驱动器。 该装置还包括连接到具有管线的圆柱形腔室的尖端,以及排出到圆柱形室中用于冲洗或冲洗其的通道系统。 该装置的特征在于,如果活塞以这样的方式定位在柱形腔室中,则活塞将该圆柱形腔室与通道系统完全密封,使得自由活塞端部在通道系统和管线之间搁置。 优选地,圆柱形腔室位于气缸体中,该气缸体包括由中间通道系统分隔并包围中间通道系统的两个部件。 通道系统最优选地被实现为相干腔。 根据第一实施例,圆柱形腔室被实施为插入位于气缸体中的钻孔中的套筒。 根据第二实施例,圆柱形室被实现为位于气缸体中的钻孔。 此外,本发明还涉及具有例如384个或更多个以阵列排列的这种装置的系统。