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    • 3. 发明申请
    • Radiation Detector
    • 辐射检测器
    • US20080087832A1
    • 2008-04-17
    • US11666463
    • 2005-09-30
    • Kenji SatoToshinori Yoshimuta
    • Kenji SatoToshinori Yoshimuta
    • H01L31/00
    • H01L31/115H01L27/14609H01L27/14632H01L27/14676H01L31/161H04N5/32
    • [OBJECT] To provide a radiation detector that allows a substrate with a semiconductor layer, and a light emitting device, to be attached simply. [SOLUTION] A glass substrate 11 having an X-ray sensitive semiconductor 14 for converting incident X rays into carriers, and a planar light emitting mechanism 28 disposed on a side opposite from an X-ray incidence side of the glass substrate 11, are provided to remove carriers remaining in the X-ray sensitive semiconductor 14 by means of light emitted from the light emitting mechanism 28. Since a gel-like adhesive sheet 32 having light transmissivity is interposed between the glass substrate 11 and light emitting mechanism 28, and the light emitting mechanism 28 is planar, the glass substrate 11 and light emitting mechanism 28 can be attached simply. Since the adhesive sheet 32 interposed has light transmissivity, the light emitted from the light emitting mechanism 28 can be transmitted through the adhesive sheet 32, without being blocked, to irradiate the glass substrate 11.
    • 为了提供允许具有半导体层和发光器件的衬底简单地附接的辐射检测器。 [解决方案]具有用于将入射的X射线转换成载体的X射线敏感半导体14的玻璃基板11和布置在与玻璃基板11的X射线入射侧相反的一侧的平面发光机构28 以通过从发光机构28发射的光去除残留在X射线敏感半导体14中的载流子。 由于在玻璃基板11和发光机构28之间夹有具有透光性的凝胶状粘接片32,发光机构28为平面状,因此能够简单地安装玻璃基板11和发光机构28。 由于插入的粘合片32具有透光性,因此从发光机构28发射的光可以透过粘合片32而不被阻挡以照射玻璃基板11。
    • 7. 发明授权
    • Fuel cell and fuel cell stack
    • 燃料电池和燃料电池堆
    • US09343761B2
    • 2016-05-17
    • US13991598
    • 2011-12-05
    • Kenji Sato
    • Kenji Sato
    • H01M8/04H01M8/00H01M8/02H01M8/24H01M8/10
    • H01M8/04746H01M8/006H01M8/0232H01M8/0271H01M8/0273H01M8/2465H01M8/2483H01M2008/1095Y02E60/50
    • A fuel cell includes: a membrane electrode assembly having an electrolyte membrane, an anode disposed on one side of the electrolyte membrane, and a cathode disposed on the other side thereof; a porous passage that is disposed on at least one side of the membrane electrode assembly, and through which a fuel gas is supplied to the anode or an oxidant gas is supplied to the cathode; and a manifold portion-, through which the fuel gas or the oxidant gas is supplied to the porous passage, and that is provided so as to pass through the fuel cell in a stacking direction, in which the electrolyte membrane, the anode, the cathode, and the porous passage are stacked, wherein a manifold portion-side end portion of the porous passage has a gas inlet at least one of stacking surfaces of the porous passage that face in the stacking direction.
    • 燃料电池包括:具有电解质膜的膜电极组件,设置在电解质膜一侧的阳极和设置在其另一侧的阴极; 设置在所述膜电极组件的至少一侧的多孔通路,向所述阴极供给向阳极供给燃料气体或氧化剂气体的多孔通路, 以及歧管部分,燃料气体或氧化剂气体通过该歧管部分被供应到多孔通道,并且被设置成沿堆叠方向穿过燃料电池,其中电解质膜,阳极,阴极 并且多孔通道被堆叠,其中多孔通道的歧管部分侧端部具有气体入口,所述多孔通道的堆叠表面在层叠方向上面对的至少一个。
    • 9. 发明授权
    • Optical intensity determination unit, method of forming the same, and optical A/D converter
    • 光强度确定单元,其形成方法和光学A / D转换器
    • US09091593B2
    • 2015-07-28
    • US13816160
    • 2011-04-19
    • Kenji Sato
    • Kenji Sato
    • G02F1/035G01J1/04H04B10/079G02F7/00
    • G01J1/0459G02F7/00H04B10/07955
    • An optical intensity determination unit includes: an optical input port; an optical output port; an optical resonator provided between the optical input port and the optical output port; a first light receiving element for converting at least a part of an optical signal output from a first output port of the optical resonator into an electric signal; a second light receiving element for converting at least a part of an optical signal output from a second output port of the optical resonator into an electric signal; a comparing circuit for determining magnitudes of the electric signals output from the first light receiving element and the second light receiving element to output a digital signal; and an optical branching circuit for branching light output from the second output port of the optical resonator into the optical output port and the second light receiving element. An optical intensity phase conversion unit for modulating an optical phase according to intensity of input light is provided in a part of a waveguide in the optical resonator.
    • 光强决定单元包括:光输入端口; 光输出端口; 设置在光输入端口和光输出端口之间的光谐振器; 第一光接收元件,用于将从光谐振器的第一输出端口输出的光信号的至少一部分转换为电信号; 第二光接收元件,用于将从光谐振器的第二输出端口输出的光信号的至少一部分转换为电信号; 比较电路,用于确定从第一光接收元件和第二光接收元件输出的电信号的幅度以输出数字信号; 以及用于将从光谐振器的第二输出端口输出的光分支到光输出端口和第二光接收元件的光分支电路。 在光谐振器的波导的一部分中设置有用于根据输入光的强度来调制光学相位的光强度相位转换单元。