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    • 2. 发明申请
    • Fuel Cell Device
    • 燃料电池装置
    • US20130065141A1
    • 2013-03-14
    • US13697786
    • 2011-04-26
    • Shoichi UrataniShigeru WadaMasayuki UeyamaNobuhisa Ishida
    • Shoichi UrataniShigeru WadaMasayuki UeyamaNobuhisa Ishida
    • H01M8/06
    • H01M8/186H01M8/04373H01M8/04738H01M8/065H01M8/1231H01M2008/1293Y02E60/528
    • The fuel cell device is provided with: an electricity-generating unit having a fuel electrode (102), an air electrode (103), and an electrolyte film (101) sandwiched between the fuel electrode (102) and the air electrode (103); a hydrogen-generating member (104) that, by means of an oxidation reaction with water, generates hydrogen for supplying to the fuel electrode (102) of the aforementioned electricity-generating unit; a heater (105) that heats the hydrogen-generating member (104); a temperature sensor (106) that detects the temperature of the hydrogen-generating member (104); and a temperature control unit (20) that controls the temperature of the hydrogen-generating member (104) in response to the detection results of the temperature sensor (106). The temperature control unit (20) stops the passage of electricity through the heater (105) when it has been determined that the temperature of the hydrogen-generating member (104) is at least a predetermined temperature.
    • 燃料电池装置具备:发电单元,具有燃料电极(102),空气电极(103)和夹在燃料电极(102)和空气电极(103)之间的电解质膜(101) ; 通过与水的氧化反应产生用于向所述发电单元的燃料电极(102)供给的氢的氢发生部件(104) 加热所述生氢部件(104)的加热器(105)。 检测氢生成部件(104)的温度的温度传感器(106)。 以及根据温度传感器(106)的检测结果控制氢生成部件(104)的温度的温度控制部(20)。 当确定氢生成元件(104)的温度至少为预定温度时,温度控制单元(20)停止通过加热器(105)的电流。
    • 4. 发明授权
    • Image taking device having image-blur compensator
    • 具有图像模糊补偿器的摄像装置
    • US07436435B2
    • 2008-10-14
    • US10260503
    • 2002-09-30
    • Shigeru Wada
    • Shigeru Wada
    • H04N5/228
    • G03B5/00G03B2205/0015G03B2205/0061H04N5/2253H04N5/23248H04N5/23258H04N5/23287
    • A compensator for correcting a possible blur of image caused by a shake of an image pickup apparatus in which the compensator is arranged, and in which a downsize circuit board having a diminished area thereof and holding an image taking component is swung or moved. The compensator includes the circuit board with the diminished area for holding the image taking component, in which the circuit board is moved together with the image taking component. On the circuit board, there are arranged the image taking component and at least one other component. The at least one other component can be a component which is associated with reading of the signal(s) of the image outputted from the image taking element, and/or can be a component which is associated with the control to correct the possible blur of the image caused by the shake of the image pickup apparatus.
    • 用于校正由其中布置有补偿器的图像拾取装置的抖动引起的可能的图像模糊的补偿器,并且其中具有减小的面积并保持图像拍摄部件的小型电路板摆动或移动。 补偿器包括具有用于保持图像拍摄部件的减小区域的电路板,其中电路板与图像拍摄部件一起移动。 在电路板上,布置图像拍摄部件和至少一个其他部件。 所述至少一个其它组件可以是与从所述摄像元件输出的图像的信号的读取相关联的组件,和/或可以是与所述控件相关联的组件,以校正所述图像的可能模糊 由图像拾取装置的抖动引起的图像。
    • 5. 发明申请
    • Drive apparatus, image pickup unit and image pickup apparatus
    • 驱动装置,图像拾取单元和图像拾取装置
    • US20070279497A1
    • 2007-12-06
    • US11788262
    • 2007-04-19
    • Shigeru WadaYoshihiro HaraMasamichi Oohara
    • Shigeru WadaYoshihiro HaraMasamichi Oohara
    • H04N5/228G03B5/00
    • G03B5/00H04N5/2253H04N5/2257H04N5/23248H04N5/23258H04N5/23287
    • A small-sized and highly efficient drive apparatus, an image pickup unit and an image pickup apparatus are provided, by using a polymer actuator that is small in size and has high speed of response and has high degree of freedom for arrangement, and by realizing an actuator having excellent assembly simplicity. By being provided with a polymer actuator and by moving objects to be driven such as an image pickup device, a lens, an image pickup optical system and a lens barrel unit by the use of the actuator, an actuator that is small in size and has the high speed of response, a high degree of freedom for arrangement and excellent assembly simplicity can be provided, which makes it possible to provide a small-sized and highly efficient drive apparatus, an image pickup unit and an image pickup apparatus.
    • 通过使用尺寸小,响应速度快,配置自由度高的聚合物致动器,提供了小型化,高效率的驱动装置,图像拾取单元和图像拾取装置,并且通过实现 具有优异的组装简单性的致动器。 通过设置有聚合物致动器并且通过使用致动器来移动诸如图像拾取装置,透镜,图像拾取光学系统和镜筒单元的被驱动物体,尺寸小且具有 可以提供高的响应速度,高度的布置自由度和优异的组装简单性,这使得可以提供小型和高效的驱动装置,图像拾取单元和图像拾取装置。
    • 7. 发明申请
    • Motor, motor device, and lens drive mechanism using the same
    • 电动机,电动机装置和使用其的透镜驱动机构
    • US20060266031A1
    • 2006-11-30
    • US11415741
    • 2006-05-02
    • Akira KosakaJunichi TaniiYoshie ShimizuShigeru Wada
    • Akira KosakaJunichi TaniiYoshie ShimizuShigeru Wada
    • F01B29/10F02G1/04
    • G02B7/102
    • An arrangement of the invention includes a base block 16, a cylindrical cam 14, as a rotary member, which is rotatably supported on the base block 16, and includes a contact portion on an outer periphery thereof for outputting a rotating force, a drive gear 21, as an oscillatory ring, which includes a contact portion on an inner periphery thereof, and is oscillated on a plane perpendicular to a rotation axis of the cylindrical cam 14 in contact with the contact portion of the cylindrical cam 14, parallel springs 23 through 26, as a position retainer, for retaining the position of the drive gear 21, and three or more shape metal alloy actuators (SMA) wires 35 through 38, as expandable and contractible actuators, with both ends of the each SMA wire being fixed to the base block 16 for contact with the drive gear 21.
    • 本发明的装置包括基座块16,作为旋转构件的圆柱形凸轮14,其被可旋转地支撑在基座16上,并且在其外周上包括用于输出旋转力的接触部分,驱动齿轮 如图21所示,作为振荡环,其包括在其内周上的接触部分,并且在与圆柱形凸轮14的接触部分接触的圆柱形凸轮14的旋转轴线垂直的平面上摆动,平行弹簧23通过 如图26所示,作为用于保持驱动齿轮21的位置的定位保持器,以及用于将每个SMA线的两端固定为可伸缩的致动器的三个或更多个形状的金属合金致动器(SMA)线35至38, 用于与驱动齿轮21接触的基座16。
    • 8. 发明授权
    • Photographic camera with shifting cartridge holder
    • 带墨盒座的相机
    • US5621493A
    • 1997-04-15
    • US309548
    • 1994-09-20
    • Shigeru WadaMichihiro IwataManabu InoueSadafusa Tsuji
    • Shigeru WadaMichihiro IwataManabu InoueSadafusa Tsuji
    • G03B17/02G03B17/30
    • G03B17/30G03B17/02G03B2217/268
    • A photographic camera includes a camera body, a cartridge holder, and a shift device. The cartridge holder is capable of holding a film cartridge to be used in the photographic camera, and movable between a first position in which the film cartridge can be removed from the camera and a second position in which the film cartridge can be used in the photographic camera. The second position is aligned to the first position. The shift device shifts the cartridge holder between the first and second positions. The camera also can include a flash device, having a flashlight emitting portion, for illuminating an object to be photographed by a flash light. The camera further can include a device for determining a position of the film cartridge with respect to the camera body the cartridge holder is located at the second position.
    • 照相机包括相机主体,盒保持器和移位装置。 盒保持器能够保持用于照相机中的胶卷暗盒,并且可在第一位置和第二位置之间移动胶片暗盒,第二位置可将胶卷暗盒从照相机上拆下;第二位置可将胶片暗盒用于照相机 相机。 第二位置与第一位置对齐。 换档装置在第一和第二位置之间移动墨盒支架。 相机还可以包括具有手电筒发射部分的闪光装置,用于照亮由闪光灯拍摄的物体。 照相机还可以包括用于确定暗盒相对于照相机主体的位置的装置,该盒保持器位于第二位置。
    • 10. 发明申请
    • SURFACE PLASMON RESONANCE FLUORESCENCE ANALYSIS DEVICE AND SURFACE PLASMON RESONANCE FLUORESCENCE ANALYSIS METHOD
    • 表面等离子体共振荧光分析装置和表面等离子体共振荧光分析方法
    • US20130175457A1
    • 2013-07-11
    • 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,使样品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表面的方向,改变入射角(θ),同时保持激发光(α)的状态, 进入棱镜的金属膜上的特定位置反射。 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。