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    • 61. 发明授权
    • Cable protection device
    • 电缆保护装置
    • US08567710B2
    • 2013-10-29
    • US12678814
    • 2008-02-25
    • Masahiro Hayashi
    • Masahiro Hayashi
    • B64D9/00B64C27/04
    • B64D1/22B64C25/52B64C27/04B64C2025/325B64D47/08
    • A cable protection device is designed to prevent a cable from being damaged by rubbing against a helicopter. A protection frame is installed-below a winch 11 connected to a helicopter. A supporting groove is formed on the protection frame, and a slide-contact body is rotatably fitted in the support groove. A part of the slide-contact body is exposed, and the cable hung down from the winch is brought into contact with the exposed portion. The slide contact body is divided into two or more parts, and it is formed by continuously aligning the divided slide-contact bodies of the cylindrical shape. Both ends of the divided slide-contact body are aligned by fitting the recession and the projection of the tapers of the ends of the adjacent divided slide-contact bodies to each other.
    • 电缆保护装置被设计成防止电缆与直升机摩擦而损坏。 安装在与直升机连接的绞盘11下方的保护框架。 支撑槽形成在保护框架上,滑动接触体可旋转地装配在支撑槽中。 滑动接触体的一部分被暴露,并且从绞盘垂下的电缆与暴露部分接触。 滑动接触体分为两部分或多部分,并且通过使圆柱形的分割的滑动接触体连续对准而形成。 分开的滑动接触体的两端通过将相邻的分开的滑动接触体的端部的凹部和锥形突起彼此嵌合而对准。
    • 62. 发明授权
    • Printing apparatus
    • 印刷装置
    • US08205736B2
    • 2012-06-26
    • US12198563
    • 2008-08-26
    • Yukio AndoMasahiro Hayashi
    • Yukio AndoMasahiro Hayashi
    • B65G47/22
    • B41F17/005
    • A printing apparatus including a pallet configured to receive a print substrate, a conveyer mechanism configured to convey the pallet, and a working device configured to conduct a processing operation for printing on the print substrate on the pallet. The printing apparatus further includes a locating mechanism configured to stop the pallet at a first holding position and a first holding mechanism configured to hold the pallet, stopped at the first holding position by the first locating mechanism, to be spaced apart from the conveying mechanism. After the pallet being conveyed by the conveying mechanism is stopped by the first locating mechanism, the pallet is held to be spaced apart from the conveying mechanism by the first holding mechanism and the processing operation is conducted by the working device relative to the print substrate on the pallet thus held.
    • 一种打印装置,包括构造成接收打印基板的托盘,构造成输送托盘的输送机构和被配置为进行用于在托盘上的打印基板上进行打印的处理操作的工作装置。 打印装置还包括定位机构,该定位机构构造成在第一保持位置处停止托盘;以及第一保持机构,该第一保持机构构造成用于保持通过第一定位机构停在第一保持位置处的托盘与输送机构间隔开。 在由输送机构输送的托盘被第一定位机构挡住之后,托盘通过第一保持机构与输送机构保持间隔开,并且处理操作由加工装置相对于打印基板进行 这样搁置的托盘。
    • 67. 发明申请
    • Charged-particle detecting apparatus
    • 带电粒子检测装置
    • US20080230686A1
    • 2008-09-25
    • US11723951
    • 2007-03-22
    • Akio SuzukiMasahiro HayashiKatsutoshi NonakaYuuya Washiyama
    • Akio SuzukiMasahiro HayashiKatsutoshi NonakaYuuya Washiyama
    • H01J49/02
    • H01J49/025
    • The present invention relates to a charged-particle detecting apparatus having a structure which enables adjustment of a potential distribution so as to stably maintain flight loci of charged particles without depending on a change in a voltage-applied state. The charged-particle detecting apparatus comprises a first electrode, an MCP, a second electrode, a third electrode that functions as an anode, and a rear cover arranged in order along a predetermined reference axis. The third electrode is arranged on the opposite side of the MCP with respect to the second electrode, and is electrically connected to an output signal part via a capacitor. In particular, the first electrode is arranged so as to become a part of the outer surface of the charged-particle detecting apparatus, and components positioned between the first electrode and the rear cover have contours with section sizes equal to or smaller than that of the contour of the first electrode when viewed from the first electrode side toward the rear cover.
    • 本发明涉及具有能够调整电位分布的结构的带电粒子检测装置,以便不依赖于施加电压的状态的变化来稳定地保持带电粒子的飞行轨迹。 带电粒子检测装置包括第一电极,MCP,第二电极,用作阳极的第三电极和沿着预定参考轴依次排列的后盖。 第三电极相对于第二电极布置在MCP的相对侧上,并且经由电容器电连接到输出信号部分。 特别地,第一电极被布置成成为带电粒子检测装置的外表面的一部分,并且位于第一电极和后盖之间的部件具有等于或小于 当从第一电极侧朝向后盖观察时,第一电极的轮廓。
    • 70. 发明申请
    • Semiconductor device
    • 半导体器件
    • US20070057280A1
    • 2007-03-15
    • US11519169
    • 2006-09-11
    • Masahiro HayashiTakahisa AkibaKunio WatanabeTomo TakasoSusumu Kenmochi
    • Masahiro HayashiTakahisa AkibaKunio WatanabeTomo TakasoSusumu Kenmochi
    • H01L29/74
    • H01L29/7834H01L23/5225H01L23/585H01L29/0638H01L29/0653H01L29/0692H01L29/1083H01L29/402H01L29/7833H01L2924/0002H01L2924/00
    • A semiconductor device including: a semiconductor layer; a gate insulating layer; a gate electrode; a channel region; a source region and a drain region; a guard ring region; an offset insulating layer; a first interlayer dielectric; a first shield layer formed above the first interlayer dielectric and the guard ring region and electrically connected to the guard ring region; a second interlayer dielectric; and a second shield layer formed above the second interlayer dielectric, wherein the first shield layer is provided outside of both ends of the gate electrode in a channel width direction when viewed from the top side; and wherein the second shield layer is provided in at least part of a first region and/or at least part of a second region, the first region being a region between one edge of the gate electrode and an edge of the first shield layer opposite to the edge of the gate electrode in the channel width direction when viewed from the top side, and the second region being a region between the other edge of the gate electrode and an edge of the first shield layer opposite to the other edge of the gate electrode in the channel width direction when viewed from the top side.
    • 一种半导体器件,包括:半导体层; 栅极绝缘层; 栅电极; 一个通道区; 源区和漏区; 护环区; 偏移绝缘层; 第一层间电介质; 第一屏蔽层,其形成在所述第一层间电介质和所述保护环区域上方并电连接到所述保护环区域; 第二层间电介质; 以及形成在所述第二层间电介质上方的第二屏蔽层,其中当从所述顶侧观察时,所述第一屏蔽层设置在所述栅电极的两端的沟道宽度方向的外侧; 并且其中所述第二屏蔽层设置在第一区域和/或第二区域的至少一部分的至少一部分中,所述第一区域是所述栅电极的一个边缘与所述第一屏蔽层的与所述第一屏蔽层的边缘相反的边缘之间的区域 所述栅电极的边缘在从所述顶侧观察时在所述沟道宽度方向上,所述第二区域是所述栅电极的另一边缘与所述第一屏蔽层的与所述栅电极的另一边缘相反的边缘之间的区域 在从顶侧观察的通道宽度方向上。