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    • 1. 发明授权
    • Surface plasmon resonance fluorescence analysis device and surface plasmon resonance fluorescence analysis method
    • 表面等离子共振荧光分析装置和表面等离子体共振荧光分析方法
    • US09006686B2
    • 2015-04-14
    • US13824809
    • 2011-09-26
    • Shigeru Wada
    • Shigeru Wada
    • G01N21/64
    • G01N21/64G01N21/553G01N21/648
    • In the present invention, a specimen is made to flow on a metal film on a prism, and excitation light (α) is emitted in a predetermined direction. By changing the position of a reflective member that reflects the excitation light (α), and adjusting the orientation of a reflective surface of the reflective member, the incident angle (θ) is changed while maintaining a state in which the excitation light (α) that enters the prism is reflected at a specific position on the metal film. The intensity of light to be generated on the metal film is measured, and the reflective member is positioned to match the position of the reflective member and the orientation of the reflective surface when a maximum amount of light is measured.
    • 在本发明中,使试样在棱镜上的金属膜上流动,并且沿预定方向发射激发光(α)。 通过改变反映激发光(α)的反射构件的位置,并且调整反射构件的反射面的取向,改变入射角(&θ),同时保持激发光(α )被反射在金属膜上的特定位置。 测量在金属膜上产生的光的强度,并且当测量最大量的光时,反射构件被定位成与反射构件的位置和反射表面的取向相匹配。
    • 3. 发明申请
    • ACTUATOR DRIVING DEVICE
    • 执行器驱动装置
    • US20110016860A1
    • 2011-01-27
    • US12890124
    • 2010-09-24
    • Atsuhiro NodaShigeru Wada
    • Atsuhiro NodaShigeru Wada
    • F03G7/06
    • F03G7/065G05B2219/41342
    • An actuator driving device includes: an actuator made of a shape metal alloy having a property that a predetermined shape is memorized in advance, and that the predetermined memorized shape is recovered when the actuator is heated to a predetermined temperature; an applier for applying, to the actuator, a pulse current or a pulse voltage at least having a predetermined current value or a predetermined voltage, and a predetermined duty ratio to heat the actuator; and a determiner for determining the current value or the voltage value, and the duty ratio of the pulse current or the pulse voltage to be applied to the actuator by the applier, wherein the determiner is operative to determine the pulse current or the pulse voltage having: the current value larger than a current value of a constant current required for displacing the actuator by a predetermined targeted displacement amount, or the voltage value corresponding thereto; and the duty ratio of making an applied current amount smaller than an applied current amount corresponding to an integrated value of the constant current in applying the constant current to the actuator.
    • 致动器驱动装置包括:由具有预先形成的特征的形状的金属合金构成的致动器,并且在将致动器加热到规定温度时恢复规定的记忆形状; 施加器,用于向致动器施加至少具有预定电流值或预定电压的脉冲电流或脉冲电压以及预定的占空比以加热致动器; 以及用于确定当前值或电压值的确定器以及由施加器施加到致动器的脉冲电流或脉冲电压的占空比,其中确定器用于确定脉冲电流或具有 :电流值大于使致动器移动预定目标位移量或与其对应的电压值所需的恒定电流的当前值; 以及在将恒定电流施加到致动器时使施加电流量小于对应于恒定电流的积分值的施加电流量的占空比。
    • 4. 发明授权
    • Drive apparatus and lens drive apparatus
    • 驱动装置和透镜驱动装置
    • US07688533B2
    • 2010-03-30
    • US12116508
    • 2008-05-07
    • Shigeru WadaNobuya Miki
    • Shigeru WadaNobuya Miki
    • G02B7/02C22F1/00F01B29/10H02N10/00
    • F03G7/06F03G7/065G03B3/10
    • A drive apparatus having: a shape memory alloy having a property such that a temperature transformation sensitivity in a temperature range from a starting point of austenite transformation (As) at a predetermined stress to an end point of austenite (Af) is higher than a temperature transformation sensitivity in other temperature range, and a temperature transformation sensitivity in a temperature range from a starting point of martensite transformation (Ms) at a predetermined stress to an end point of martensite transformation (Mf) is higher than a temperature transformation sensitivity in other temperature range; and a driven member which is moved by a transformation of the shape memory alloy; wherein the driven member is moved in a temperature range of higher temperature transformation sensitivity.
    • 一种驱动装置,具有:形状记忆合金,其特征在于,在从规定的应力到奥氏体的终点(Af)的奥氏体相变(As)的起始点的温度范围内的温度变换灵敏度高于温度 在其他温度范围内的转变灵敏度以及从规定应力的马氏体相变(Ms)到马氏体相变的终点(Mf)的温度范围的温度变化灵敏度高于其他温度的温度变换灵敏度 范围; 以及通过形状记忆合金的变形而移动的从动构件; 其中所述从动构件在较高温度变换灵敏度的温度范围内移动。
    • 5. 发明授权
    • Shake correction mechanism and image sensing apparatus using the same
    • 振动校正机构及使用其的摄像装置
    • US07623159B2
    • 2009-11-24
    • US10990864
    • 2004-11-17
    • Shigeru WadaJunichi Tanii
    • Shigeru WadaJunichi Tanii
    • H04N5/228
    • H04N5/23248G03B17/00H04N5/23287
    • A shake correction mechanism 1 has an elastic support member 2 for elastically and oscillatingly supporting a lens barrel 10 at one point, and first and second actuators 3a and 3b for applying oscillating forces to the lens barrel 10. When a moment is applied to the lens barrel 10 by the first and second actuators 3a and 3b, the elastic support member 2 is subjected to elastic deformation. Thereby, the lens barrel 10 is oscillated to tilt the optical axis thereof in a desires direction. Thus, the lens barrel 10 is oscillatingly driven without use of a rotary joint or the like as employed in the conventional gimbal mechanism. This arrangement enables to miniaturize the shake correction mechanism.
    • 抖动校正机构1具有弹性支撑构件2,用于在一个点上弹性地和振动地支撑镜筒10;以及第一和第二致动器3a和3b,用于向镜筒10施加振动力。当向镜片施加力矩时 通过第一和第二致动器3a和3b,弹性支撑构件2受到弹性变形。 由此,透镜镜筒10被摆动以使其光轴沿欲望方向倾斜。 因此,透镜镜筒10在不使用常规万向节机构中使用的旋转接头等的情况下被振荡地驱动。 这种布置能够使抖动校正机构小型化。
    • 6. 发明申请
    • DRIVE APPARATUS AND LENS DRIVE APPARATUS
    • 驱动装置和镜头驱动装置
    • US20080282696A1
    • 2008-11-20
    • US12116508
    • 2008-05-07
    • Shigeru WadaNobuya Miki
    • Shigeru WadaNobuya Miki
    • F03G7/06G03B3/10
    • F03G7/06F03G7/065G03B3/10
    • A drive apparatus having: a shape memory alloy having a property such that a temperature transformation sensitivity in a temperature range from a starting point of austenite transformation (As) at a predetermined stress to an end point of austenite (Af) is higher than a temperature transformation sensitivity in other temperature range, and a temperature transformation sensitivity in a temperature range from a starting point of martensite transformation (Ms) at a predetermined stress to an end point of martensite transformation (Mf) is higher than a temperature transformation sensitivity in other temperature range; and a driven member which is moved by a transformation of the shape memory alloy; wherein the driven member is moved in a temperature range of higher temperature transformation sensitivity.
    • 一种驱动装置,具有:形状记忆合金,其特征在于,在从规定的应力到奥氏体的终点(Af)的奥氏体相变(As)的起始点的温度范围内的温度变换灵敏度高于温度 在其他温度范围内的转变灵敏度以及从规定应力的马氏体相变(Ms)到马氏体相变的终点(Mf)的温度范围的温度变化灵敏度高于其他温度的温度变换灵敏度 范围; 以及通过形状记忆合金的变形而移动的从动构件; 其中所述从动构件在较高温度变换灵敏度的温度范围内移动。
    • 9. 发明申请
    • Shake correction mechanism and image sensing apparatus using the same
    • 振动校正机构及使用其的摄像装置
    • US20060033818A1
    • 2006-02-16
    • US10990864
    • 2004-11-17
    • Shigeru WadaJunichi Tanii
    • Shigeru WadaJunichi Tanii
    • G03B17/00H04N5/228
    • H04N5/23248G03B17/00H04N5/23287
    • A shake correction mechanism 1 has an elastic support member 2 for elastically and oscillatingly supporting a lens barrel 10 at one point, and first and second actuators 3a and 3b for applying oscillating forces to the lens barrel 10. When a moment is applied to the lens barrel 10 by the first and second actuators 3a and 3b, the elastic support member 2 is subjected to elastic deformation. Thereby, the lens barrel 10 is oscillated to tilt the optical axis thereof in a desires direction. Thus, the lens barrel 10 is oscillatingly driven without use of a rotary joint or the like as employed in the conventional gimbal mechanism. This arrangement enables to miniaturize the shake correction mechanism.
    • 抖动校正机构1具有弹性支撑构件2,用于在一个点上弹性地并且振动地支撑镜筒10;以及第一和第二致动器3a和3b,用于向镜筒10施加振荡力。 当通过第一和第二致动器3a和3b对镜筒10施加力矩时,弹性支撑构件2受到弹性变形。 由此,透镜镜筒10被摆动以使其光轴沿欲望方向倾斜。 因此,透镜镜筒10在不使用常规万向节机构中使用的旋转接头等的情况下被振荡地驱动。 这种布置能够使抖动校正机构小型化。