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    • 3. 发明授权
    • Magnetic separation device
    • 磁选机
    • US07740759B2
    • 2010-06-22
    • US11736555
    • 2007-04-17
    • Chih Hsien SuHsiao Cheng LinChi-Min ChauYuh-Jiuan LinWen-Hsun Kuo
    • Chih Hsien SuHsiao Cheng LinChi-Min ChauYuh-Jiuan LinWen-Hsun Kuo
    • B01D35/06B03C1/02B01L9/06
    • B03C1/288B01L9/06B01L2200/0668B03C2201/18
    • A magnetic separation device separating magnetic material from a working fluid of a container is disclosed. The magnetic separation device includes a first element, a second element and a magnetic assembly structure including a plurality of magnetic units. The first element includes a first body, a plurality of first main positioning portions disposed on the first body, and a plurality of first sub-positioning portions disposed on the first body and next to the first main positioning portions to receive the container. The second element includes a second body, a plurality of second main positioning portions disposed on the second body, and a plurality of second sub-positioning portions disposed on the second body and next to the second main positioning portions to receive the container. The magnetic units disposed on the first main positioning portions and the second main positioning portions absorb magnetic material from the working fluid.
    • 公开了一种将磁性材料与容器的工作流体分离的磁选机。 磁分离装置包括第一元件,第二元件和包括多个磁性单元的磁性组件结构。 第一元件包括第一主体,设置在第一主体上的多个第一主定位部以及设置在第一主体上并靠近第一主定位部分以接收容器的多个第一副定位部。 第二元件包括第二主体,设置在第二主体上的多个第二主定位部分和设置在第二主体上并与第二主定位部分相邻以接收容器的多个第二副定位部分。 设置在第一主定位部分上的磁性单元和第二主定位部分吸收来自工作流体的磁性材料。
    • 4. 发明申请
    • MAGNETIC SEPARATION DEVICE
    • 磁选分离装置
    • US20080156714A1
    • 2008-07-03
    • US11736555
    • 2007-04-17
    • Chih Hsien SuHsiao Cheng LinChi-Min ChauYuh-Jiuan LinWen-Hsun Kuo
    • Chih Hsien SuHsiao Cheng LinChi-Min ChauYuh-Jiuan LinWen-Hsun Kuo
    • B01D35/06
    • B03C1/288B01L9/06B01L2200/0668B03C2201/18
    • A magnetic separation device separating magnetic material from a working fluid of a container is disclosed. The magnetic separation device includes a first element, a second element and a magnetic assembly structure including a plurality of magnetic units. The first element includes a first body, a plurality of first main positioning portions disposed on the first body, and a plurality of first sub-positioning portions disposed on the first body and next to the first main positioning portions to receive the container. The second element includes a second body, a plurality of second main positioning portions disposed on the second body, and a plurality of second sub-positioning portions disposed on the second body and next to the second main positioning portions to receive the container. The magnetic units disposed on the first main positioning portions and the second main positioning portions absorb magnetic material from the working fluid.
    • 公开了一种将磁性材料与容器的工作流体分离的磁选机。 磁分离装置包括第一元件,第二元件和包括多个磁性单元的磁性组件结构。 第一元件包括第一主体,设置在第一主体上的多个第一主定位部以及设置在第一主体上并靠近第一主定位部分以接收容器的多个第一副定位部。 第二元件包括第二主体,设置在第二主体上的多个第二主定位部分和设置在第二主体上并与第二主定位部分相邻以接收容器的多个第二副定位部分。 设置在第一主定位部分上的磁性单元和第二主定位部分吸收来自工作流体的磁性材料。
    • 5. 发明申请
    • Blood sugar detecting system
    • 血糖检测系统
    • US20080020471A1
    • 2008-01-24
    • US11703190
    • 2007-02-07
    • Chi-Min ChauChih-Hsien SuHsiang-Yuan HuangYuh-Jiuan Lin
    • Chi-Min ChauChih-Hsien SuHsiang-Yuan HuangYuh-Jiuan Lin
    • G01N33/49
    • G01N33/49
    • A blood sugar detecting system using emission quantum dots is provided. A non-cyclodextran carbohydrate-containing molecule and a glucose-recognizing molecule respectively bind to an emission quantum dot and a light-absorbing molecule to form the blood sugar measuring system. When the non-cyclodextran carbohydrate-containing molecule and the glucose-recognizing molecule bind together to bring the emission quantum dot very close to the light-absorbing molecule, a fluorescence resonance energy transfer effect is happened between them. Glucose can compete with the non-cyclodextran carbohydrate-containing molecule for the binding site of the glucose-recognizing molecule to detect glucose concentration variation.
    • 提供了使用发射量子点的血糖检测系统。 含有非环糊精碳水化合物的分子和葡萄糖识别分子分别结合发射量子点和光吸收分子以形成血糖测量系统。 当含有非环糊精碳水化合物的分子和葡萄糖识别分子结合在一起使得发光量子点非常接近光吸收分子时,它们之间发生荧光共振能量转移效应。 葡萄糖可以与含葡萄糖识别分子的结合位点的含有非环糊精碳水化合物的分子竞争,以检测葡萄糖浓度变化。