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    • 61. 发明授权
    • Distributed antenna system, communication control method and base station apparatus
    • 分布式天线系统,通信控制方法和基站装置
    • US08676241B2
    • 2014-03-18
    • US13355121
    • 2012-01-20
    • Koichi HashimotoTsuyoshi Tamaki
    • Koichi HashimotoTsuyoshi Tamaki
    • H04B7/00
    • H04B7/022H04B7/0413H04B7/0691
    • The selection range of antenna candidates effective for MIMO communication is widened in a base station to increase the throughput of MIMO communication. A terminal sends a sounding signal at given time intervals with the maximum transmission power or with an antenna selection transmission power threshold or larger. With this transmission, since the number of antenna candidates that receive the signal is increased at a base station in the distributed antenna system, the radio propagation channel state between the terminal and the base station apparatus is checked to select the combination of antennas having good orthogonality. Before the terminal sends the sounding signal, the terminal reserves beforehand the transmission timing of the sounding signal or performs carrier sensing to determine whether a surrounding terminal is sending a signal to avoid the collision/interference of packets of sounding signals between terminals.
    • 在MIMO通信中有效的天线候选的选择范围在基站中扩大,以增加MIMO通信的吞吐量。 终端以最大发射功率或天线选择发射功率阈值或更大的给定时间间隔发送探测信号。 通过这种传输,由于在分布式天线系统中的基站处接收到信号的天线候选的数量增加,所以检查终端与基站装置之间的无线传播信道状态,选择具有良好正交性的天线的组合 。 在终端发送探测信号之前,终端预先预留探测信号的发送定时或执行载波侦听,以确定周围终端是否发送信号,以避免终端之间的探测信号包的冲突/干扰。
    • 62. 发明授权
    • Particle removing member of substrate processing equipment
    • 基板加工设备的颗粒去除构件
    • US08108960B2
    • 2012-02-07
    • US11063546
    • 2005-02-24
    • Koichi HashimotoYoshio Ota
    • Koichi HashimotoYoshio Ota
    • B08B7/00
    • B08B7/0028H05K3/26Y10T428/31504
    • The present invention intends to provide a particle removing member of a substrate processing equipment which can be assuredly conveyed into the substrate processing equipment and can conveniently and assuredly remove an adhered foreign matter, and a particle removing method of a substrate processing equipment that uses the particle removing member.A particle removing member of a substrate processing equipment comprising a particle removing layer in which a time necessary for a signal intensity of free induction decay measured by a pulse NMR-Solid Echo method to decay to 37% of an initial value at a measurement temperature of 100 degrees centigrade is 1000 μs or less, in particular, a particle removing sheet comprising the above-constituted particle removing layer on a support, and a conveying member with particle removing function formed by adhering the above-constituted particle removing sheet on the conveying member, and furthermore a method of removing particle of a substrate processing equipment, comprising conveying the above-constituted conveying member with particle removing function into a substrate processing equipment.
    • 本发明旨在提供一种能够确实地输送到基板加工设备中的基板加工设备的颗粒除去部件,并且能够方便且可靠地除去附着的异物,以及使用该粒子的基板加工设备的粒子除去方法 去除构件。 一种基板处理设备的颗粒去除部件,其包括除粒层,其中通过脉冲NMR固体回波法测量的自由感应衰减的信号强度所需的时间在测量温度下衰减到初始值的37% 100摄氏度为1000μs以下,特别是在支撑体上具有上述颗粒除去层的颗粒除去片,以及具有除去上述功能的传送部件,其通过将上述颗粒除去片粘合在传送部件上而形成 以及除去基板加工设备的颗粒的方法,包括将具有颗粒去除功能的上述传送部件输送到基板处理设备中。
    • 63. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20110081155A1
    • 2011-04-07
    • US12897867
    • 2010-10-05
    • Ryota MatsumotoYukwi HongShingo HoritaKoichi Hashimoto
    • Ryota MatsumotoYukwi HongShingo HoritaKoichi Hashimoto
    • G03G15/02
    • G03G15/0241G03G15/0266G03G15/5033G03G15/5037G03G2215/022
    • An image forming apparatus includes a rotatable drum; charging means for charging the drum, the charging means including a first carrying member for carrying electroconductive magnetic particles and a second carrying member for carrying the magnetic particles, the second carrying member being disposed at a downstreammost position with respect to a rotational direction of the drum, wherein the magnetic particle is in contact with the drum while charging the drum; latent image forming means, disposed at a position downstream of the charging means, for forming a latent image on the drum; potential detecting means for detecting a surface potential of the drum, the potential detecting means being disposed downstream of the charging means and upstream of the latent image forming means; phase detecting means for detecting information relates to a rotational phase of the second carrying member; control means for controlling voltages applied to the first carrying member and to the second carrying member; and wherein the control means is capable of executing an operation in a control mode for controlling the voltages applied to the first carrying member and to the second carrying member, on the basis of a result of detection by the potential detecting means and a result of detection by the phase detecting means.
    • 图像形成装置包括:可旋转滚筒; 充电装置,用于对滚筒进行充电,充电装置包括用于承载导电磁性颗粒的第一承载构件和用于承载磁性颗粒的第二承载构件,第二承载构件设置在相对于滚筒的旋转方向的最下位置 ,其中所述磁性颗粒在对所述滚筒充电时与所述滚筒接触; 潜像形成装置,设置在充电装置的下游位置,用于在鼓上形成潜像; 电位检测装置,用于检测滚筒的表面电位,电位检测装置设置在充电装置的下游和潜像形成装置的上游; 用于检测信息的相位检测装置涉及第二承载构件的旋转相位; 用于控制施加到第一承载构件和第二承载构件的电压的控制装置; 并且其中所述控制装置能够基于由所述电位检测装置的检测结果和检测结果执行用于控制施加到所述第一承载构件和所述第二承载构件的电压的控制模式中的操作 通过相位检测装置。
    • 65. 发明授权
    • Impact tool
    • 冲击工具
    • US07828072B2
    • 2010-11-09
    • US12493918
    • 2009-06-29
    • Koichi HashimotoHiroyuki TsubakimotoHisashi Oda
    • Koichi HashimotoHiroyuki TsubakimotoHisashi Oda
    • B25D16/00
    • B25D11/064B25D11/062B25D16/00B25D2250/141B25D2250/371Y10T74/18056
    • An impact tool for simultaneously providing a rotational force and an impact force to an object has an output shaft rotated by a motor, hammer for intermittently providing an impact force to the output shaft, hammer holder for movably holding the hammer, and an impact force generator for generating the impact force from an output of the motor. An air chamber is formed between the hammer and the hammer holder such that a volume of the air chamber is variable in response to a position of the hammer relative to the hammer holder. In addition, the hammer receives a bias force generated in a direction toward the output shaft by a biasing device. This bias force effectively increases the impact force in cooperation with an air pressure caused by a volume change of the air chamber.
    • 用于同时向物体提供旋转力和冲击力的冲击工具具有由马达旋转的输出轴,用于间歇地向输出轴提供冲击力的锤,用于可移动地保持锤的锤保持器和冲击力发生器 用于从电动机的输出产生冲击力。 在锤和锤保持器之间形成空气室,使得空气室的体积响应于锤相对于锤保持器的位置是可变的。 此外,锤子通过偏置装置接收在朝向输出轴的方向上产生的偏压力。 与空气室的体积变化引起的空气压力协调,该偏压力有效地增加冲击力。
    • 66. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20100193800A1
    • 2010-08-05
    • US12665556
    • 2009-05-11
    • Masao UchidaKazuya UtsunomiyaKoichi Hashimoto
    • Masao UchidaKazuya UtsunomiyaKoichi Hashimoto
    • H01L29/24H01L23/52H01L29/772
    • H01L29/812H01L23/544H01L29/045H01L29/0696H01L29/1608H01L29/66068H01L29/7828H01L2223/54426H01L2223/5446H01L2924/0002H01L2924/00
    • A semiconductor device is fabricated on an off-cut semiconductor substrate 11. Each unit cell 10 thereof includes: a first semiconductor layer 12 on the surface of the substrate 11; a second semiconductor layer 16 stacked on the first semiconductor layer 12 to have an opening 16e that exposes first and second conductive regions 15 and 14 at least partially; a first conductor 19 located inside the opening 16e of the second semiconductor layer 16 and having a conductive surface 19s that contacts with the first and second conductive regions 15 and 14; and a second conductor 17 arranged on the second semiconductor layer 16 and having an opening 18e corresponding to the opening 16s of the second semiconductor layer 16. In a plane that is defined parallel to the surface of the substrate 11, the absolute value of a difference between the respective lengths of the second semiconductor layer 16 and the second conductor 18 as measured in the off-cut direction is greater than the absolute value of their difference as measured perpendicularly to the off-cut direction.
    • 半导体器件制造在截止半导体衬底11上。每个单电池10包括:在衬底11的表面上的第一半导体层12; 堆叠在第一半导体层12上以具有至少部分地暴露第一和第二导电区域15和14的开口16e的第二半导体层16; 第一导体19位于第二半导体层16的开口16e的内部,并且具有与第一和第二导电区域15和14接触的导电表面19s; 以及布置在第二半导体层16上并具有对应于第二半导体层16的开口16s的开口18e的第二导体17.在与衬底11的表面平行定义的平面中,差异的绝对值 在沿切断方向测量的第二半导体层16和第二导体18的各自长度之间的距离大于垂直于偏离方向测量的它们的差的绝对值。
    • 69. 发明申请
    • Image reading device and printing system
    • 图像读取装置和打印系统
    • US20090147298A1
    • 2009-06-11
    • US11990920
    • 2006-10-16
    • Junji TakahashiKazuo NakanoKoichi Hashimoto
    • Junji TakahashiKazuo NakanoKoichi Hashimoto
    • G06F3/12
    • H04N1/6033H04N1/3935
    • Image reading device, when connected directly with a printer supporting a predetermined communications standard, enables the printer to print an image with a size or a layout desired by a user, irrespective of the internal setting of the printer. The inventive devices comprises an image detecting portion reading an original image, an image data generating portion generating an original image data, an image data outputting portion which outputs an image data with a communication mode which can be received by a printer supporting a predetermined communication standard and which renders an image represented by the image data printable with the printer, and an image modification processing portion modifying the original image data based on an image data for modification obtained by reading a reference image containing a predetermined pattern printed through the printer, and thereby an original image will printed with a desired size or a desired layout.
    • 图像读取装置当与支持预定通信标准的打印机直接连接时,无论打印机的内部设置如何,使打印机能够以用户所期望的尺寸或布局打印图像。 本发明的装置包括读取原始图像的图像检测部分,产生原始图像数据的图像数据产生部分,输出具有可由支持预定通信标准的打印机接收的通信模式的图像数据的图像数据输出部分 并且其呈现由可打印机打印的图像数据表示的图像,以及图像修改处理部分,基于通过读取包含通过打印机印刷的预定图案的参考图像获得的用于修改的图像数据修改原始图像数据,从而 将以期望的尺寸或期望的布局打印原始图像。