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    • 1. 发明申请
    • Stray Field Collector Pad, and Bio-Molecule Sensing Module or Biochip Using the Same
    • 杂散场捕集器垫,生物分子感应模块或使用其的生物芯片
    • US20110156702A1
    • 2011-06-30
    • US12699383
    • 2010-02-03
    • Cheolgi KimBrajalal SinhaSunjong OhJong-Ryul Jeong
    • Cheolgi KimBrajalal SinhaSunjong OhJong-Ryul Jeong
    • G01R33/02
    • G01R33/1269
    • Provided is a stray field collector (SFC) pad and a bio-molecule sensing module or a biochip using the same, and more particularly, a SFC pad, in which probe or detection molecules are attached to a plurality of magnetic labels (magnetic particles or beads) and they are bonded to complementary molecules to enhance a stray field sensor signal of the magnetic labels remaining in the vicinity of the sensor, and a bio-molecule sensing module and a biochip using the same.The provided is related to qualitative as well as quantitative detection of magnetic labels, and the SFC pad which can increase an effective surface area sensitive to the magnetic labels by probe-detection molecular bond in a magnetic biosensor and collect the resultant stray field can enhance sensitivity, accuracy and resolution of the magnetic biosensor.
    • 提供了一种杂散场收集器(SFC)焊盘和使用其的生物分子感测模块或生物芯片,更具体地说,SFC垫,其中探针或检测分子附着到多个磁性标签(磁性颗粒或 珠粒),并且它们与互补分子键合以增强残留在传感器附近的磁性标签的杂散场传感器信号,以及生物分子感测模块和使用其的生物芯片。 提供的与磁性标签的定性和定量检测相关,并且SFC垫可以通过磁性生物传感器中的探针检测分子键增加对磁性标签敏感的有效表面积并收集所得到的杂散场可以增强灵敏度 ,磁性生物传感器的精度和分辨率。
    • 4. 发明授权
    • Magnetic sensor including magnetic layer of closed loop shape
    • 磁传感器包括闭环形状的磁性层
    • US09519036B2
    • 2016-12-13
    • US12913433
    • 2010-10-27
    • CheolGi KimDong Young KimJong-Ryul JeongQuang Hung Tran
    • CheolGi KimDong Young KimJong-Ryul JeongQuang Hung Tran
    • G01R33/06G01R33/09G01R33/07
    • G01R33/06G01R33/07G01R33/09
    • Provided is a magnetic sensor for detecting a magnetic field. The magnetic sensor includes a magnetic layer of a closed loop shape; a pair of current terminals which face each other contacting with the closed loop and through which current is input/output; and a pair of voltage terminals which face each other contacting with the closed loop and from which output voltage is detected. Both an anisotropic magnetoresistance effect (AME) and a planar Hall effect (PHE) contribute to the output voltage and a hysteresis of the output voltage is eliminated by exchange coupling of a ferromagnetic layer by a ferromagnetic-antiferromagnetic layer structure and a ferromagnetic-metal-antiferromagnetic layer structure. Accordingly, it is possible to minimize a hysteresis due to a demagnetization factor of the closed loop, stabilize the output voltage of the magnetic sensor and enhance sensitivity.
    • 提供了一种用于检测磁场的磁传感器。 磁传感器包括闭环形状的磁性层; 彼此面对的一对电流端子与闭环接触并通过其输入/输出电流; 以及一对彼此面对的电压端子与闭环接触并从中检测出输出电压。 各向异性磁阻效应(AME)和平面霍尔效应(PHE)都有助于输出电压,并且通过铁磁反铁磁层结构和强磁性金属层结构的铁磁层的交换耦合来消除输出电压的滞后, 反铁磁层结构。 因此,可以将由于闭环的退磁系数导致的滞后最小化,使磁传感器的输出电压稳定化,提高灵敏度。
    • 6. 发明授权
    • Stray field collector pad, and bio-molecule sensing module or biochip using the same
    • 杂散场集电极板,生物分子感应模块或使用其的生物芯片
    • US08400146B2
    • 2013-03-19
    • US12699383
    • 2010-02-03
    • Cheolgi KimBrajalal SinhaSunjong OhJong-Ryul Jeong
    • Cheolgi KimBrajalal SinhaSunjong OhJong-Ryul Jeong
    • G01R33/02
    • G01R33/1269
    • Provided is a stray field collector (SFC) pad and a bio-molecule sensing module or a biochip using the same, and more particularly, a SFC pad, in which probe or detection molecules are attached to a plurality of magnetic labels (magnetic particles or beads) and they are bonded to complementary molecules to enhance a stray field sensor signal of the magnetic labels remaining in the vicinity of the sensor, and a bio-molecule sensing module and a biochip using the same.The provided is related to qualitative as well as quantitative detection of magnetic labels, and the SFC pad which can increase an effective surface area sensitive to the magnetic labels by probe-detection molecular bond in a magnetic biosensor and collect the resultant stray field can enhance sensitivity, accuracy and resolution of the magnetic biosensor.
    • 提供了一种杂散场收集器(SFC)焊盘和使用其的生物分子感测模块或生物芯片,更具体地说,SFC垫,其中探针或检测分子附着到多个磁性标签(磁性颗粒或 珠粒),并且它们与互补分子键合以增强残留在传感器附近的磁性标签的杂散场传感器信号,以及生物分子感测模块和使用其的生物芯片。 提供的与磁性标签的定性和定量检测相关,并且SFC垫可以通过磁性生物传感器中的探针检测分子键增加对磁性标签敏感的有效表面积并收集所得到的杂散场可以增强灵敏度 ,磁性生物传感器的精度和分辨率。
    • 8. 发明申请
    • Magnetic Sensor
    • 磁传感器
    • US20110175605A1
    • 2011-07-21
    • US12913433
    • 2010-10-27
    • CheolGi KimDong Young KimJong-Ryul JeongQuang Hung Tran
    • CheolGi KimDong Young KimJong-Ryul JeongQuang Hung Tran
    • G01R33/06
    • G01R33/06G01R33/07G01R33/09
    • Provided is a magnetic sensor for detecting a magnetic field. The magnetic sensor includes a magnetic layer of a closed loop shape; a pair of current terminals which face each other contacting with the closed loop and through which current is input/output; and a pair of voltage terminals which face each other contacting with the closed loop and from which output voltage is detected. Both an anisotropic magnetoresistance effect (AME) and a planar Hall effect (PHE) contribute to the output voltage and a hysteresis of the output voltage is eliminated by exchange coupling of a ferromagnetic layer by a ferromagnetic-antiferromagnetic layer structure and a ferromagnetic-metal-antiferromagnetic layer structure. Accordingly, it is possible to minimize a hysteresis due to a demagnetization factor of the closed loop, stabilize the output voltage of the magnetic sensor and enhance sensitivity.
    • 提供了一种用于检测磁场的磁传感器。 磁传感器包括闭环形状的磁性层; 彼此面对的一对电流端子与闭环接触并通过其输入/输出电流; 以及一对彼此面对的电压端子与闭环接触并从中检测出输出电压。 各向异性磁阻效应(AME)和平面霍尔效应(PHE)都有助于输出电压,并且通过铁磁反铁磁层结构和强磁性金属层结构的铁磁层的交换耦合来消除输出电压的滞后, 反铁磁层结构。 因此,可以将由于闭环的退磁系数导致的滞后最小化,使磁传感器的输出电压稳定化,提高灵敏度。