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    • 3. 发明授权
    • On-machine measurement method and measurement apparatus
    • 在线测量方法和测量装置
    • US08589103B2
    • 2013-11-19
    • US12778150
    • 2010-05-12
    • Atsushi MatsubaraIwao YamajiDaisuke KonoYusuke Koike
    • Atsushi MatsubaraIwao YamajiDaisuke KonoYusuke Koike
    • G01R13/00
    • G01B11/24B23Q17/20B23Q17/24G01B21/045
    • A reference mirror 21 is disposed on a table 2, a first laser displacement sensor L1 for measuring a machined surface of a workpiece W and a second laser displacement sensor L2 for measuring a reference surface of the reference mirror 21 are disposed to a tool holder 3. A measurement motion applying section 24 causes the table 2 and the tool holder 3 to relatively move in a sinusoidal trajectory, and a sensitivity calculating section 28 calculates sensitivity of the first laser displacement sensor L1 based on machined-surface displacement data and reference-surface displacement data which are measured during the relative movement. Subsequently, an actual shape data calculating section 29 corrects the machined-surface displacement data based on the calculated sensitivity, and calculates actual shape data of the machined surface by taking the difference between the corrected machined-surface displacement data and the reference-surface displacement data.
    • 将参考反射镜21设置在工作台2上,用于测量工件W的加工表面的第一激光位移传感器L1和用于测量参考反射镜21的基准面的第二激光位移传感器L2设置在工具架3上 测量运动施加部分24使得工作台2和工具架3以正弦轨迹相对移动,灵敏度计算部分28基于加工表面位移数据和参考表面来计算第一激光位移传感器L1的灵敏度 在相对运动期间测量的位移数据。 随后,实际形状数据计算部分29根据计算出的灵敏度校正加工面位移数据,并且通过将校正后的加工面位移数据与基准面位移数据之间的差分来计算加工面的实际形状数据 。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR BIOGENIC SUBSTANCE CONCENTRATION MEASUREMENT
    • 用于生物物质浓度测量的方法和装置
    • US20110001976A1
    • 2011-01-06
    • US12828775
    • 2010-07-01
    • Masaru MINAMIGUCHITatsurou KawamuraMasahiko ShioiAtsushi Matsubara
    • Masaru MINAMIGUCHITatsurou KawamuraMasahiko ShioiAtsushi Matsubara
    • G01N21/55
    • G01N21/554G01N21/553G01N21/648G01N21/658G01N33/54373
    • The present invention provides an apparatus for biogenic substance concentration measurement including: a cell including therein a first region, a second region, and a test solution retention space; a light source; a polarizing plate; and a photoreceiver, in which a plurality of first metallic nanorods each having a first antibody on a surface thereof are immobilized on the first region, a plurality of second metallic nanorods each having a second antibody on a surface thereof are immobilized on the second region, the respective long axes of the plurality of first metallic nanorods are aligned in the same direction, the respective long axes of the plurality of second metallic nanorods are aligned in the same direction, the long-axis direction of the first metallic nanorod is orthogonal to the long-axis direction of the second metallic nanorod, and at least one of the polarizing plate and the cell is capable of rotation with an optical axis as the rotation axis.
    • 本发明提供一种用于生物源物质浓度测量的装置,包括:包含第一区域,第二区域和测试溶液保留空间的单元; 光源; 偏振片; 以及光接收器,其中在其表面上分别具有第一抗体的多个第一金属纳米棒固定在第一区域上,在其表面上分别具有第二抗体的多个第二金属纳米棒被固定在第二区域上, 多个第一金属纳米棒的各自的长轴在同一方向上排列,多个第二金属纳米棒的各个长轴在相同的方向上排列,第一金属纳米棒的长轴方向与 第二金属纳米棒的长轴方向,并且偏振板和单元中的至少一个能够以光轴作为旋转轴旋转。
    • 10. 发明授权
    • Air conditioner
    • 冷气机
    • US09039502B2
    • 2015-05-26
    • US13130261
    • 2009-10-22
    • Atsushi Matsubara
    • Atsushi Matsubara
    • F24F11/00F24F1/00
    • F24F11/0078F24F1/0007F24F11/79F24F2001/0048
    • In the air conditioner, determination is made whether or not a “3-Dimensional Swing” or a “Left/Right Swing” relating to movement of a left/right flap is set (step S2). When it is determined that the “3-Dimensional Swing” or “Left/Right Swing” is set (step S2: Yes), a determination is made whether or not the swing range of the left/right flap is set to a part of the movable range (step S3). When it is determined in step S3 that the swing range of the left/right flap is set (step S3: Yes), the left/right flap is once returned to the reference position (step S4), and then reciprocation of the left/right flap within the swing range is started (step S5).
    • 在空调机中,判定是否设定与左/右挡板的移动相关的“三维摆动”或“左/右摆动”(步骤S2)。 当确定“三维摆动”或“左/右摆动”被设定(步骤S2:是)时,确定左/右挡板的摆动范围是否被设定为 可移动范围(步骤S3)。 当在步骤S3中确定左/右挡板的摆动范围被设置(步骤S3:是)时,左/右挡板一旦返回到基准位置(步骤S4),然后左/ 开始摆动范围内的右翼片(步骤S5)。