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    • 31. 发明授权
    • Electron emission element and method for producing the same
    • 电子发射元件及其制造方法
    • US06827624B2
    • 2004-12-07
    • US10196032
    • 2002-07-15
    • Hideo KurokawaTetsuya ShiratoriToshifumi SatoMasahiro DeguchiMakoto Kitabatake
    • Hideo KurokawaTetsuya ShiratoriToshifumi SatoMasahiro DeguchiMakoto Kitabatake
    • H01J900
    • H01J1/316H01J2329/00
    • The first basic structure of the electron emission element of the present invention includes at least two electrodes disposed in a horizontal direction at a predetermined interval, and a plurality of electron emission portions made of a particle or an aggregate of the particles dispersively disposed between the electrodes. On the other hand, the second basic structure of the electron emission element of the present invention includes at least two electrodes disposed at a predetermined interval, a conductive layer disposed between the electrodes so as to be electrically connected thereto, and a plurality of electron emission portions made of a particle or an aggregate of the particles dispersively disposed on the surface of the conductive layer between the electrodes. According to these structures, an electron emission element with high stability can be obtained, in which emissions can be emitted efficiently and uniformly even in the absence of a bias voltage (electric field) from outside in an output (emission) direction of the electrons, by utilizing a transverse electric field generated between the electrodes disposed in a horizontal direction at a predetermined interval or an in-plane electric current flowing through the conductive layer disposed between the electrodes.
    • 本发明的电子发射元件的第一基本结构包括以预定间隔沿水​​平方向布置的至少两个电极和由分散地设置在电极之间的颗粒或聚集体的多个电子发射部分 。 另一方面,本发明的电子发射元件的第二基本结构包括以预定间隔设置的至少两个电极,设置在电极之间以与其电连接的导电层和多个电子发射 分散地设置在电极之间的导电层的表面上的由颗粒或聚集体构成的部分。 根据这些结构,可以获得具有高稳定性的电子发射元件,其中即使在电子的输出(发射)方向上没有来自外部的偏置电压(电场)的情况下也可以有效且均匀地发射, 通过利用在预定间隔沿水​​平方向布置的电极之间产生的横向电场或流过设置在电极之间的导电层的面内电流。
    • 37. 发明授权
    • Control system for optical information signal reproduction device
    • 光信息信号再现装置控制系统
    • US4539664A
    • 1985-09-03
    • US380343
    • 1982-05-20
    • Masahiro DeguchiMitsuro MoriyaNoboru WakamiYasuhiro GotoKazuharu Shiragami
    • Masahiro DeguchiMitsuro MoriyaNoboru WakamiYasuhiro GotoKazuharu Shiragami
    • G11B7/085G11B21/08G11B7/00
    • G11B7/08564G11B21/085G11B7/08517G11B7/08541Y10S358/907
    • In a device for reproducing the information, especially the video signal optically, magnetically or otherwise recorded on the spiral or concentric track on a disk-shaped recording medium, a control system for controlling the radially inward or outward shift or jump of a reproduction transducer from one track to another for effecting, in addition to the normal reproduction, the special effect reproductions such as still picture, slow, fast and reverse motions. The control system comprising a shifting means for shifting or jumping the transducer in the radial directions substantially perpendicular to the tracks, a control means for maintaining the transducer to scan the desired track, and a detecting means for detecting whether or not the transducer has been shifted or jumped and brought to the desired track and generating the output signal in response to which the shifting means is disabled to decelerate and stop the shifting or jumping of the transducer.
    • 在用于再现信息的装置中,特别是视频信号以磁性或其他方式记录在盘形记录介质上的螺旋或同心轨道上的控制系统,用于控制再现传感器的径向向内或向外移位或跳跃 除了正常的复制之外,还有一条轨道可以实现特殊效果的复制,如静态图像,慢速,快速和反向运动。 所述控制系统包括用于在基本上垂直于所述轨道的径向方向上移动或跳跃所述换能器的移动装置,用于保持所述换能器扫描期望轨道的控制装置,以及用于检测所述换能器是否已被移位的检测装置 或者跳跃并被带到期望的轨道并产生输出信号,响应于该输出信号,移位装置被禁用以减速并停止换能器的换档或跳跃。
    • 38. 发明授权
    • Method for reducing carbon dioxide
    • 减少二氧化碳的方法
    • US08597488B2
    • 2013-12-03
    • US13485285
    • 2012-05-31
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • C25B3/00C25B1/00
    • C25B3/04B01J27/24
    • The method for reducing carbon dioxide of the present disclosure includes a step (a) and a step (b) as follows. A step (a) of preparing an electrochemical cell. The electrochemical cell comprises a working electrode, a counter electrode and a vessel. The vessel stores an electrolytic solution. The working electrode contains at least one nitride selected from the group consisting of titanium nitride, zirconium nitride, hafnium nitride, tantalum nitride, molybdenum nitride and iron nitride. The electrolytic solution contains carbon dioxide. The working electrode and the counter electrode are in contact with the electrolytic solution. A step (b) of applying a negative voltage and a positive voltage to the working electrode and the counter electrode, respectively, to reduce the carbon dioxide.
    • 本公开的减少二氧化碳的方法包括如下步骤(a)和步骤(b)。 制备电化学电池的步骤(a)。 电化学电池包括工作电极,对电极和容器。 容器存储电解液。 工作电极含有选自氮化钛,氮化锆,氮化铪,氮化钽,氮化钼和氮化铁中的至少一种氮化物。 电解液含有二氧化碳。 工作电极和对电极与电解液接触。 分别对工作电极和对电极施加负电压和正电压以减少二氧化碳的步骤(b)。
    • 39. 发明申请
    • METHOD FOR REDUCING CARBON DIOXIDE
    • 减少二氧化碳的方法
    • US20120234691A1
    • 2012-09-20
    • US13485285
    • 2012-05-31
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • C25B3/04
    • C25B3/04B01J27/24
    • The method for reducing carbon dioxide of the present disclosure includes a step (a) and a step (b) as follows. A step (a) of preparing an electrochemical cell. The electrochemical cell comprises a working electrode, a counter electrode and a vessel. The vessel stores an electrolytic solution. The working electrode contains at least one nitride selected from the group consisting of titanium nitride, zirconium nitride, hafnium nitride, tantalum nitride, molybdenum nitride and iron nitride. The electrolytic solution contains carbon dioxide. The working electrode and the counter electrode are in contact with the electrolytic solution. A step (b) of applying a negative voltage and a positive voltage to the working electrode and the counter electrode, respectively, to reduce the carbon dioxide.
    • 本公开的减少二氧化碳的方法包括如下步骤(a)和步骤(b)。 制备电化学电池的步骤(a)。 电化学电池包括工作电极,对电极和容器。 容器存储电解液。 工作电极含有选自氮化钛,氮化锆,氮化铪,氮化钽,氮化钼和氮化铁中的至少一种氮化物。 电解液含有二氧化碳。 工作电极和对电极与电解液接触。 分别对工作电极和对电极施加负电压和正电压以减少二氧化碳的步骤(b)。