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    • 2. 发明申请
    • METHOD AND DEVICE FOR MEASURING MOTION ERROR OF LINEAR STAGE
    • 用于测量线性运动误差的方法和装置
    • US20120314220A1
    • 2012-12-13
    • US13479933
    • 2012-05-24
    • Sun-Kyu LEEChaBum LeeGyu Ha Kim
    • Sun-Kyu LEEChaBum LeeGyu Ha Kim
    • G01B9/02
    • G01B9/02081G01B9/02027G01B2290/30G01B2290/45G01B2290/70
    • Measurement of motion errors of a linear stage is performed to enable accurate measurement of motion errors in linear directions and a rotational direction in the linear stage using a diffraction grating. A first beam splitter splits a laser beam emitted from a light emitting unit. A first measurement unit measures a unidirectional linear motion error of the linear stage using one laser beam component split by the first beam splitter and a second measurement unit measures an angular motion error and another unidirectional linear motion of the linear stage error using a diffracted beam component obtained by diffracting another laser beam component split by the first beam splitter through the diffraction grating. A third measurement unit circularly polarizes the beam component diffracted through the diffraction grating to measure a third unidirectional linear motion error of the linear stage.
    • 执行线性级的运动误差的测量以使得能够使用衍射光栅精确地测量线性方向上的运动误差和线性级中的旋转方向。 第一分束器分离从发光单元发射的激光束。 第一测量单元使用由第一分束器分裂的一个激光束分量来测量线性平台的单向线性运动误差,第二测量单元使用衍射光束分量来测量角运动误差和线性级误差的另一单向线性运动 通过衍射由第一分束器分裂的另一激光束分量衍射光栅获得。 第三测量单元使通过衍射光栅衍射的束分量圆偏振,以测量线性级的第三单向线性运动误差。
    • 5. 发明申请
    • SENSOR FOR MEASURING BLADDER VOLUME, AND SYSTEM AND METHOD OF MANAGING BLADDER USING THE SAME
    • 用于测量刀片体积的传感器,以及使用其来管理刀片的系统和方法
    • US20080058680A1
    • 2008-03-06
    • US11840123
    • 2007-08-16
    • Sun Kyu LEEKang Wook Kim
    • Sun Kyu LEEKang Wook Kim
    • A61B5/20
    • A61B5/204A61B8/0858A61B8/4472A61B8/56A61B8/565
    • The invention relates to a sensor for measuring bladder volume that includes an RFID chip (particularly, a passive RFID chip) to generate driving power using an electric wave generated by a reader, and to transmit information on the measured bladder volume to the reader using an elastic wave or an electromagnetic wave, and to a system and method of managing a bladder using the same.A sensor for measuring bladder volume according to an embodiment of the invention includes an antenna that receives an electric wave, a transducer generates a predetermined wave and measures the bladder volume indicating the size of a bladder using the predetermined wave, and an RFID chip that generates and supplies power using the electric wave received by the antenna, generates information on the bladder volume from the measured bladder volume, and transmits the generated information to the outside through the antenna. The sensor for measuring bladder volume is attached to the skin in an abdominal region of a user.According to the embodiment of the invention, since the sensor for measuring bladder volume does not use a battery, it is reduced in size, thereby improving mobility. Therefore, an adverse affect when the sensor is inserted into the body through a surgical operation can be prevented.
    • 本发明涉及一种用于测量膀胱体积的传感器,其包括使用由读取器产生的电波来产生驱动力的RFID芯片(特别是无源RFID芯片),并且使用 弹性波或电磁波,以及使用其进行膀胱管理的系统和方法。 根据本发明的实施例的用于测量囊体积的传感器包括接收电波的天线,换能器产生预定波,并且使用预定波测量指示膀胱尺寸的膀胱体积,以及产生 并且使用由天线接收的电波供电,从测定的膀胱容量生成关于膀胱体积的信息,并通过天线将生成的信息发送到外部。 用于测量膀胱体积的传感器附着在使用者的腹部区域中的皮肤上。 根据本发明的实施例,由于用于测量气囊体积的传感器不使用电池,因此其尺寸减小,从而提高移动性。 因此,可以防止通过外科手术将传感器插入体内时的不良影响。
    • 7. 发明授权
    • Method and device for measuring motion error of linear stage
    • 用于测量线性阶段运动误差的方法和装置
    • US08687200B2
    • 2014-04-01
    • US13479933
    • 2012-05-24
    • Sun-Kyu LeeChaBum LeeGyu Ha Kim
    • Sun-Kyu LeeChaBum LeeGyu Ha Kim
    • G01B9/02G01N21/86G01V8/00G01D5/36
    • G01B9/02081G01B9/02027G01B2290/30G01B2290/45G01B2290/70
    • Measurement of motion errors of a linear stage is performed to enable accurate measurement of motion errors in linear directions and a rotational direction in the linear stage using a diffraction grating. A first beam splitter splits a laser beam emitted from a light emitting unit. A first measurement unit measures a unidirectional linear motion error of the linear stage using one laser beam component split by the first beam splitter and a second measurement unit measures an angular motion error and another unidirectional linear motion of the linear stage error using a diffracted beam component obtained by diffracting another laser beam component split by the first beam splitter through the diffraction grating. A third measurement unit circularly polarizes the beam component diffracted through the diffraction grating to measure a third unidirectional linear motion error of the linear stage.
    • 执行线性级的运动误差的测量以使得能够使用衍射光栅精确地测量线性方向上的运动误差和线性级中的旋转方向。 第一分束器分离从发光单元发射的激光束。 第一测量单元使用由第一分束器分裂的一个激光束分量来测量线性平台的单向线性运动误差,第二测量单元使用衍射光束分量来测量角运动误差和线性级误差的另一单向线性运动 通过衍射由第一分束器分裂的另一激光束分量衍射光栅获得。 第三测量单元使通过衍射光栅衍射的束分量圆偏振,以测量线性级的第三单向线性运动误差。