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    • 3. 发明申请
    • TUBE CAPPER/DECAPPER
    • TUBE CAPPER / DECAPPER
    • US20080022808A1
    • 2008-01-31
    • US11780526
    • 2007-07-20
    • Stephen OwenJustin OwenAdrian Neil Bargh
    • Stephen OwenJustin OwenAdrian Neil Bargh
    • B67B7/18
    • G01N35/026B01L3/50825G01N2035/0405
    • A capper/de-capper system 1 has a rack support 10 for supporting a rack 11 containing a plurality of capped tubes 31 in a given position. A head unit 12 supports a two-dimensional array of capping/de-capping spindles 13, each of which includes a clutch 133 and a capping/de-capping spigot 131 or socket, the spindles being aligned with the tube positions defined in the rack. A drive mechanism 108 moves the tubes and the head unit relatively towards and away from one another in use, when a rack containing capped tubes is disposed in the rack support, causing engagement and disengagement of the capping/de-capping spigots or sockets with and from the tube caps 32. A spindle drive system 15-22 provides simultaneous rotation of the capping/de-capping spigots or sockets together after engagement with the caps, either to detach caps from the tubes or attach caps to the tubes.
    • 封盖/去盖系统1具有支架10,用于支撑在给定位置上容纳多个封盖管31的支架11。 头单元12支撑封盖/去盖主轴13的二维阵列,每个阵列包括离合器133和封盖/脱帽插口131或插座,所述主轴与限定在机架中的管位置对准 。 驱动机构108在使用时使管和头单元彼此相对移动并远离彼此,当将包含封盖的管的架设置在机架支撑件中时,使得封盖/脱盖插口或插座与 从管帽32。 主轴驱动系统15-22在与盖接合之后提供封盖/脱帽插口或插座同时旋转,以便将盖从管上分离或者将帽附接到管上。
    • 4. 发明授权
    • Tube capper/decapper
    • 管封头/开瓶器
    • US07845149B2
    • 2010-12-07
    • US11780526
    • 2007-07-20
    • Stephen OwenJustin OwenAdrian Neil Bargh
    • Stephen OwenJustin OwenAdrian Neil Bargh
    • B65B7/28
    • G01N35/026B01L3/50825G01N2035/0405
    • A capper/de-capper system 1 has a rack support 10 for supporting a rack 11 containing a plurality of capped tubes 31 in a given position. A head unit 12 supports a two-dimensional array of capping/de-capping spindles 13, each of which includes a clutch 133 and a capping/de-capping spigot 131 or socket, the spindles being aligned with the tube positions defined in the rack. A drive mechanism 108 moves the tubes and the head unit relatively towards and away from one another in use, when a rack containing capped tubes is disposed in the rack support, causing engagement and disengagement of the capping/de-capping spigots or sockets with and from the tube caps 32. A spindle drive system 15-22 provides simultaneous rotation of the capping/de-capping spigots or sockets together after engagement with the caps, either to detach caps from the tubes or attach caps to the tubes.
    • 封盖/去盖系统1具有支架10,用于支撑在给定位置上容纳多个封盖管31的支架11。 头单元12支撑封盖/去盖主轴13的二维阵列,每个阵列包括离合器133和封盖/脱帽插口131或插座,所述主轴与限定在机架中的管位置对准 。 驱动机构108在使用时使管和头单元彼此相对移动并远离彼此,当将包含封盖的管的架设置在机架支撑件中时,使得封盖/脱盖插口或插座与 主轴驱动系统15-22在与盖接合之后提供封盖/脱帽插口或插座的同时旋转,以从盖上卸下盖子或将盖子附接到管子上。
    • 5. 发明授权
    • Bioreactor systems and associated methods of processing bioreactor vessels
    • 生物反应器系统和加工生物反应器容器的相关方法
    • US08563301B2
    • 2013-10-22
    • US12801559
    • 2010-06-15
    • Adrian Neil Bargh
    • Adrian Neil Bargh
    • C12M1/02C12M3/00B01F7/00
    • C12M23/44C12M23/06C12M23/42C12M23/50C12M27/02C12M41/48
    • A bioreactor processing unit (10) includes at least one cell culture module (200) comprising: a base (202) including a receiving station (204) for removably receiving a plurality of bioreactor vessels (400) at respective locations (206); and a clamp plate (240). The clamp plate (240) is removably connectable to the base (202). The system further includes a drive mechanism (226) and multiple fluid conduits. When the system is to be used for an experiment run, vessels (400) are loaded into the receiving station (204) and the clamp plate (240) is connected to the base (202), forming a connection between the drive mechanism and the vessels, for transmitting input motion from the drive mechanism (226) into multiple rotary motion outputs for turning a stirrer (416) in each vessel (400). At the same time, connection of the clamp plate to the base forms a fluid connection between the multiple fluid conduits and an input port (412) in each respective vessel via associated multiple outlet ports (256) in the clamp plate and associated fluid connectors. The system further includes at least one sensor (126a, 126b) that is mounted so as to be movable to a position adjacent to each respective vessel location (206) for monitoring the contents of each vessel (400).
    • 生物反应器处理单元(10)包括至少一个细胞培养模块(200),其包括:基部(202),包括用于在相应位置(206)可移除地接收多个生物反应器容器(400)的接收站(204) 和夹板(240)。 夹板(240)可拆卸地连接到基座(202)。 该系统还包括驱动机构(226)和多个流体管道。 当系统用于实验运行时,容器(400)被装载到接收站(204)中,并且夹板(240)连接到基座(202),形成驱动机构和 用于将来自驱动机构(226)的输入运动传送到用于转动每个容器(400)中的搅拌器(416)的多个旋转运动输出。 同时,夹板与底座的连接通过夹板中的相关多个出口(256)和相关联的流体连接器在多个流体管道和每个相应容器中的输入端口(412)之间形成流体连接。 该系统还包括至少一个传感器(126a,126b),其安装成可移动到与每个相应容器位置(206)相邻的位置,用于监测每个容器(400)的内容物。
    • 9. 发明申请
    • Bioreactor systems and associated methods of processing bioreactor vessels
    • 生物反应器系统和加工生物反应器容器的相关方法
    • US20110003323A1
    • 2011-01-06
    • US12801559
    • 2010-06-15
    • Adrian Neil Bargh
    • Adrian Neil Bargh
    • C12Q1/02C12M1/00C12M1/34
    • C12M23/44C12M23/06C12M23/42C12M23/50C12M27/02C12M41/48
    • A bioreactor processing unit (10) includes at least one cell culture module (200) comprising: a base (202) including a receiving station (204) for removably receiving a plurality of bioreactor vessels (400) at respective locations (206); and a clamp plate (240). The clamp plate (240) is removably connectable to the base (202). The system further includes a drive mechanism (226) and multiple fluid conduits. When the system is to be used for an experiment run, vessels (400) are loaded into the receiving station (204) and the clamp plate (240) is connected to the base (202), forming a connection between the drive mechanism and the vessels, for transmitting input motion from the drive mechanism (226) into multiple rotary motion outputs for turning a stirrer (416) in each vessel (400). At the same time, connection of the clamp plate to the base forms a fluid connection between the multiple fluid conduits and an input port (412) in each respective vessel via associated multiple outlet ports (256) in the clamp plate and associated fluid connectors. The system further includes at least one sensor (126a, 126b) that is mounted so as to be movable to a position adjacent to each respective vessel location (206) for monitoring the contents of each vessel (400).
    • 生物反应器处理单元(10)包括至少一个细胞培养模块(200),其包括:基部(202),包括用于在相应位置(206)可移除地接收多个生物反应器容器(400)的接收站(204) 和夹板(240)。 夹板(240)可拆卸地连接到基座(202)。 该系统还包括驱动机构(226)和多个流体管道。 当系统用于实验运行时,容器(400)被装载到接收站(204)中,并且夹板(240)连接到基座(202),形成驱动机构和 用于将来自驱动机构(226)的输入运动传送到用于转动每个容器(400)中的搅拌器(416)的多个旋转运动输出。 同时,夹板与底座的连接通过夹板中的相关多个出口(256)和相关联的流体连接器在多个流体管道和每个相应容器中的输入端口(412)之间形成流体连接。 该系统还包括至少一个传感器(126a,126b),其安装成可移动到与每个相应容器位置(206)相邻的位置,用于监测每个容器(400)的内容物。