Fluid mixer
    1.
    发明授权
    Fluid mixer 失效
    流体搅拌机

    公开(公告)号:US08287179B2

    公开(公告)日:2012-10-16

    申请号:US12708070

    申请日:2010-02-18

    IPC分类号: B01F5/04

    摘要: A fluid mixer for mixing a first fluid and a second fluid includes an introducing component having a bore, a cylindrical component fitted into the bore of the introducing component and a mixing component having a conical recess and on which the introducing component and the cylindrical component are held. A first introducing flow path receives the first fluid and a first distributing flow path distributes the first fluid over the whole circumference of the cylindrical component. A second introducing flow path receives the second fluid. A second distributing flow path distributes the second fluid so that the first fluid and the second fluid are alternately arranged in an circumferential direction. A joining part joins together the first fluid and the second fluid fed with the fluids alternately arranged circumferentially.

    摘要翻译: 用于混合第一流体和第二流体的流体混合器包括具有孔的引入部件,装配在引入部件的孔中的圆柱形部件和具有锥形凹部的混合部件,引导部件和圆柱形部件 保持。 第一引入流动路径接收第一流体,并且第一分配流动路径将第一流体分布在圆柱形部件的整个圆周上。 第二引入流路接收第二流体。 第二分配流路分配第二流体,使得第一流体和第二流体沿圆周方向交替布置。 接合部将第一流体和供给有周向交替布置的流体的第二流体连接在一起。

    FLUID MIXER
    2.
    发明申请
    FLUID MIXER 失效
    流体搅拌机

    公开(公告)号:US20100265786A1

    公开(公告)日:2010-10-21

    申请号:US12708070

    申请日:2010-02-18

    IPC分类号: B01F15/02

    摘要: A fluid mixer for mixing, at least, first fluid and second fluid includes an introducing component having a bore, a cylindrical component fitted into the bore of the introducing component and a mixing component having a conical recess and on which the introducing component and the cylindrical component are held. The fluid mixer further includes a first introducing flow path into which the first fluid is introduced, a first distributing flow path to distribute the first fluid, a second introducing flow path into which the second fluid is introduced, a second distributing flow path for distributing the second fluid introduced from the second introducing flow path so that the first fluid and the second fluid are alternately arranged in an circumferential direction, a joining part in which the first fluid fed from the first distributing flow path and the second fluid fed from the second distributing flow path join together, a mixing flow path formed between a conical section of the cylindrical component and the conical recess of the mixing component and for mixing the first and second fluids, and a discharge flow path to discharge mixed fluid of the first and second fluids fed from the mixing flow path.

    摘要翻译: 用于混合至少第一流体和第二流体的流体混合器包括具有孔的引入部件,装配在引入部件的孔中的圆柱形部件和具有锥形凹部的混合部件,引导部件和圆柱形部件 组件被举行。 流体混合器还包括第一引入流动路径,第一流体被引入到其中,用于分配第一流体的第一分配流动路径,引入第二流体的第二引入流动路径,用于分配第一流体的第二分配流动路径 第二流体从第二引入流路导入,使得第一流体和第二流体沿圆周方向交替布置;接合部,其中从第一分配流路供给的第一流体和从第二分布流体供给的第二流体 流路连接在一起,形成在圆柱形部件的锥形部分和混合部件的锥形凹部之间并用于混合第一和第二流体的混合流动路径以及用于排出第一和第二流体的混合流体的排出流动路径 从混合流动路径进料。

    Particle manufacturing device
    5.
    发明授权
    Particle manufacturing device 有权
    粒子制造装置

    公开(公告)号:US08221686B2

    公开(公告)日:2012-07-17

    申请号:US12702872

    申请日:2010-02-09

    IPC分类号: B01J19/00

    摘要: A particle manufacturing device for manufacturing a particle by mixing a plural number of fluids, thereby manufacturing a particle, being uniform in the size or particle diameter thereof, with stability comprises a mixing channel portion, which is configured to mix the plural number of fluids therein, a residence channel portion, which is connected with the mixing channel portion in series, and in which the particles manufactured in the mixing channel portion reside, a sensor mechanism, which is configured to sense at least a condition of the residence channel portion, and an agitation giving mechanism, which is configured to give an agitation to the residence channel portion, upon basis of the condition, which is detected by the sensor mechanism.

    摘要翻译: 用于通过混合多种流体制造颗粒的颗粒制造装置,由此制造尺寸或粒径均匀的颗粒,其稳定性包括混合通道部分,其被配置为将多个流体混合在其中 ,与混合通道部分串联连接并且其中在混合通道部分中制造的颗粒驻留的居住通道部分;传感器机构,其被构造成感测住住通道部分的至少条件;以及 基于由传感器机构检测到的状况,将搅拌给予机构配置成对居住通道部分进行搅拌。

    PARTICLE MANUFACTURING DEVICE
    6.
    发明申请
    PARTICLE MANUFACTURING DEVICE 有权
    颗粒制造装置

    公开(公告)号:US20100202930A1

    公开(公告)日:2010-08-12

    申请号:US12702872

    申请日:2010-02-09

    IPC分类号: B01J19/00

    摘要: A particle manufacturing device for manufacturing a particle by mixing a plural number of fluids, thereby manufacturing a particle, being uniform in the size or particle diameter thereof, with stability comprises a mixing channel portion, which is configured to mix the plural number of fluids therein, a residence channel portion, which is connected with the mixing channel portion in series, and in which the particles manufactured in the mixing channel portion reside, a sensor mechanism, which is configured to sense at least a condition of the residence channel portion, and an agitation giving mechanism, which is configured to give an agitation to the residence channel portion, upon basis of the condition, which is detected by the sensor mechanism.

    摘要翻译: 用于通过混合多种流体制造颗粒的颗粒制造装置,由此制造尺寸或粒径均匀的颗粒,其稳定性包括混合通道部分,其被配置为将多个流体混合在其中 ,与混合通道部分串联连接并且其中在混合通道部分中制造的颗粒驻留的居住通道部分;传感器机构,其被构造成感测住住通道部分的至少条件;以及 基于由传感器机构检测到的状况,将搅拌给予机构配置成对居住通道部分进行搅拌。

    Measuring apparatus for interaction of biomolecule
    7.
    发明授权
    Measuring apparatus for interaction of biomolecule 失效
    生物分子相互作用的测量装置

    公开(公告)号:US07629166B2

    公开(公告)日:2009-12-08

    申请号:US11214948

    申请日:2005-08-31

    IPC分类号: C12M1/34

    摘要: In a measuring apparatus for biomolecule interaction, a fine particle sensor surface is dipped in a buffer solution in a reaction vessel to conduct spectral measurement by way of optical fibers. The buffer solution in the reaction vessel is made to enter an upper reaction vessel and discharged from a flow channel. Air is injected from a flow channel to inject a specimen from the discharge port to the reaction vessel. Then the specimen is sucked into the reaction vessel and brought into contact with the sensor surface where a ligand and an analyte in the specimen are bonded. Bonding is measured by a spectrophotometer through the optical fibers. A buffer solution is injected from the injection flow channel into the reaction vessel and the specimen is discharged out of the flow channel. The dissociation process in which the biomolecules are dissociated along with lowering of the concentration is measured.

    摘要翻译: 在用于生物分子相互作用的测量装置中,将细颗粒传感器表面浸入反应容器中的缓冲溶液中以通过光纤进行光谱测量。 将反应容器中的缓冲溶液进入上反应容器并从流动通道排出。 空气从流动通道注入,将样品从排放口注入反应容器。 然后将样品吸入反应容器中,并与样品中的配体和分析物结合的传感器表面接触。 通过分光光度计通过光纤测量粘合。 将缓冲溶液从注射流通道注入反应容器中,并将样品从流动通道排出。 测量其中生物分子随浓度降低而解离的解离过程。

    MICROORGANISM SEPARATION SYSTEM
    8.
    发明申请
    MICROORGANISM SEPARATION SYSTEM 审中-公开
    微生物分离系统

    公开(公告)号:US20080098092A1

    公开(公告)日:2008-04-24

    申请号:US11755944

    申请日:2007-05-31

    IPC分类号: G06F15/16 C12M1/00

    CPC分类号: C12M47/02 C12M47/04

    摘要: A microorganism separation system comprising a sample solution container 34 containing microorganisms, a separator 1, and a receiver 47, designed to separate microorganisms from the sample solution; further comprising a microorganism detection sensor and a plate 49 which has a plurality of receivers 47 connected to each other and an identification indicator, wherein when the microorganism detection sensor judges that a microorganism has passed, supply of the sample solution is stopped, the detected microorganism is discharged together with the sample solution, and then the solution starts to be injected into the receiver; and, the number of times microorganisms are detected during the time period from the start of the injection to the end is recognized as separation quantity; and then as separation information, the separation quantity, number for a receiver 47 into which a microorganism was injected for each identification indicator, signal waveform sent from the microorganism detection sensor at the separation, date and temperature are stored.

    摘要翻译: 一种微生物分离系统,包括含有微生物的样品溶液容器34,分离器1和接收器47,设计用于将微生物与样品溶液分离; 进一步包括微生物检测传感器和板49,其具有彼此连接的多个接收器47和识别指示器,其中当微生物检测传感器判断微生物已经通过时,停止供应样品溶液,检测到的微生物 与样品溶液一起放出,然后溶液开始注入接收器; 并且在从注射开始到结束的时间段期间检测到微生物的次数被识别为分离量; 然后作为分离信息,存储分离量,针对每个识别指示符注入微生物的接收器47的数量,在分离,日期和温度从微生物检测传感器发送的信号波形。

    Molecular interaction detector and molecule recovery device using the same
    9.
    发明申请
    Molecular interaction detector and molecule recovery device using the same 审中-公开
    分子相互作用检测器和分子回收装置使用相同

    公开(公告)号:US20060263243A1

    公开(公告)日:2006-11-23

    申请号:US11437701

    申请日:2006-05-22

    IPC分类号: G01N31/22

    CPC分类号: G01N21/31

    摘要: In a molecular interaction detector, a noble-metal free-electron thin film is formed on a substrate. Styrene-made nanoparticles are adsorbed onto the thin film surface. Another noble-metal free-electron thin film is formed on upper-half surfaces of the nanoparticles and is modified by an organic linker molecule. The organic linker molecule has a linear or branched chemical structure including a functional group capable of being fixed to the surface of the noble-metal free-electron thin film with a linear chain made of 1 to 5 atoms. A detergent is used in a mobile phase. Deposition of materials having no relation with the measurement onto a sensor can be avoided in the molecular interaction detector.

    摘要翻译: 在分子相互作用检测器中,在基板上形成贵金属自由电子薄膜。 苯乙烯制造的纳米颗粒被吸附到薄膜表面上。 另外的贵金属自由电子薄膜形成在纳米颗粒的上半部表面,并被有机连接分子修饰。 有机连接分子具有直链或支链化学结构,其包括能够用1-5个原子的直链固定在贵金属自由电子薄膜的表面上的官能团。 在流动相中使用洗涤剂。 可以在分子相互作用检测器中避免将与测量无关的材料沉积到传感器上。

    Measuring apparatus for interaction of biomolecule
    10.
    发明申请
    Measuring apparatus for interaction of biomolecule 失效
    生物分子相互作用的测量装置

    公开(公告)号:US20070238162A1

    公开(公告)日:2007-10-11

    申请号:US11214948

    申请日:2005-08-31

    IPC分类号: C12M3/00

    摘要: In a measuring apparatus for biomolecule interaction, a fine particle sensor surface is dipped in a buffer solution in a reaction vessel to conduct spectral measurement by way of optical fibers. The buffer solution in the reaction vessel is made to enter an upper reaction vessel and discharged from a flow channel. Air is injected from a flow channel to inject a specimen from the discharge port to the reaction vessel. Then the specimen is sucked into the reaction vessel and brought into contact with the sensor surface where a ligand and an analyte in the specimen are bonded. Bonding is measured by a spectrophotometer through the optical fibers. A buffer solution is injected from the injection flow channel into the reaction vessel and the specimen is discharged out of the flow channel. The dissociation process in which the biomolecules are dissociated along with lowering of the concentration is measured.

    摘要翻译: 在用于生物分子相互作用的测量装置中,将细颗粒传感器表面浸入反应容器中的缓冲溶液中以通过光纤进行光谱测量。 将反应容器中的缓冲溶液进入上反应容器并从流动通道排出。 空气从流动通道注入,将样品从排放口注入反应容器。 然后将样品吸入反应容器中,并与样品中的配体和分析物结合的传感器表面接触。 通过分光光度计通过光纤测量粘合。 将缓冲溶液从注射流通道注入反应容器中,并将样品从流动通道排出。 测量其中生物分子随浓度降低而解离的解离过程。