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    • 61. 发明申请
    • DIFFERENTIAL OSCILLATION APPARATUS AND MODULATOR
    • 差分振荡器和调制器
    • US20100237957A1
    • 2010-09-23
    • US12303727
    • 2007-05-23
    • Shigeru KobayashiSuguru Fujita
    • Shigeru KobayashiSuguru Fujita
    • H03B5/12
    • H03L7/00H03B5/06H03B5/1215H03B5/1231H03B5/1271H03C1/36H03L3/00H04B1/7174
    • It is an object of the present invention to shorten a time required until phases of output signals being output from two output terminals are inverted respectively from a start time of an oscillation in a differential oscillation apparatus. In a differential oscillation apparatus according to the present invention which includes a differential oscillator portion 103 having an external input terminal at a terminal of one transistor 105 and a switch circuit 104, a first control signal generation circuit 101 for generating a first control signal to control an oscillation start and an oscillation stop of the differential oscillator portion 103, and a second control signal generation circuit 102 for generating a second control signal input into the terminal of one transistor 105 of the differential oscillator portion 103, when a phase relationship between collector currents flowing through two transistors 105, 106 is decided by the second control signal, output signals being output from two output terminals are opposite in phase from a start time of an oscillation.
    • 本发明的目的是缩短从两个输出端子输出的输出信号的相位分别从差分振荡装置的振荡的开始时刻反转所需的时间。 在根据本发明的差分振荡装置中,包括在一个晶体管105的端子处具有外部输入端子的差分振荡器部分103和开关电路104,用于产生控制信号的第一控制信号的第一控制信号产生电路101 差分振荡器部分103的振荡开始和振荡停止;以及第二控制信号产生电路102,用于产生输入到差分振荡器部分103的一个晶体管105的端子中的第二控制信号,当集电极电流 流过两个晶体管105,106由第二控制信号决定,从两个输出端子输出的输出信号与振荡的开始时间相位相反。
    • 63. 发明申请
    • INTERMITTENT OPERATION CIRCUIT AND MODULATION DEVICE
    • 间歇操作电路和调制装置
    • US20090128247A1
    • 2009-05-21
    • US12064446
    • 2006-08-23
    • Shigeru KobayashiSuguru Fujita
    • Shigeru KobayashiSuguru Fujita
    • H03C1/00G06F1/04
    • H04B1/7174H03K3/66
    • There is provided a small-size, low-power-consumption intermittent operation circuit capable of obtaining an output waveform having a rapid rise and fall. The intermittent operation circuit includes an active circuit (106), a first control signal generation circuit (101) for generating a first control signal (S1) for controlling the operation start and the operation end of the active circuit (106), a second control signal generation circuit (102) for generating a second control signal (S2) causing the active circuit (106) to perform ringing vibration and controlling the frequency and the amplitude value of the ringing vibration, and a timing adjusting circuit (103) for adjusting the input timing of the first and the second control signal (S1, S2) into the active circuit (106) so that the ringing vibration and the safety vibration are outputted continuously from the active circuit (106).
    • 提供了能够获得快速上升和下降的输出波形的小尺寸,低功耗的间歇运行电路。 间歇运行电路包括有源电路(106),用于产生用于控制有源电路(106)的运行开始和运行结束的第一控制信号(S1)的第一控制信号发生电路(101) 信号发生电路(102),用于产生使有源电路(106)执行振铃振动并控制振铃的频率和振幅值的第二控制信号(S2),以及用于调整振铃振动的频率和振幅值的定时调整电路(103) 将所述第一和第二控制信号(S1,S2)的输入定时输入到所述有源电路(106)中,使得所述振铃和所述安全振动从所述有源电路(106)连续输出。
    • 64. 发明申请
    • Optical Connector
    • 光连接器
    • US20070211999A1
    • 2007-09-13
    • US11684439
    • 2007-03-09
    • Shigeru KobayashiNobuaki OhtsuTakehiro Hayashi
    • Shigeru KobayashiNobuaki OhtsuTakehiro Hayashi
    • G02B6/32
    • G02B6/32G02B6/3878G02B6/3883
    • The optical fiber connector of the present invention includes a housing having a ferrule receiving passageway and a lens receiving portion which is disposed on the front end portion of this ferrule receiving passageway. A central axis is coaxial with the central axis of the ferrule receiving passageway. A spherical lens is fastened to the lens receiving portion and a ferrule is inserted into the ferrule receiving passageway from the rear side and is incorporated with an optical fiber whose front end surface is perpendicular to the central axis. A transparent block having a refractive index that is substantially the same as the refractive indices of the lens and optical fiber is disposed between the lens and the ferrule so that this block contacts the lens, the ferrule, and the optical fiber. A refractive index matching agent having a refractive index substantially the same as the refractive indices of the lens and optical fiber is applied around the contact point between the lens and the block and around the contact surface between the ferrule and the block. The thickness of the block in the direction of beam transmission is set to be the same as the distance to the focal point from the end surface of the lens.
    • 本发明的光纤连接器包括具有套圈接收通道的壳体和设置在该套圈接收通道的前端部的透镜容纳部。 中心轴与套圈接收通道的中心轴线同轴。 将球面透镜紧固到透镜容纳部,并且将套圈从后侧插入到套圈接收通道中,并且与前端表面垂直于中心轴的光纤结合。 具有与透镜和光纤的折射率基本相同的折射率的透明块设置在透镜和套圈之间,使得该块与透镜,套圈和光纤接触。 折射率匹配剂的折射率基本上与透镜和光纤的折射率相同,被施加在透镜和块之间的接触点周围以及套圈和块之间的接触表面周围。 将光束透射方向上的块的厚度设定为与从透镜的端面到焦点的距离相同。
    • 65. 发明申请
    • Opening and closing member control system
    • 开闭成员控制系统
    • US20070084120A1
    • 2007-04-19
    • US11390418
    • 2006-03-28
    • Shigeru KobayashiKazuyuki Hirai
    • Shigeru KobayashiKazuyuki Hirai
    • E05F15/10
    • H02H7/0851E05F15/41E05Y2400/554E05Y2900/55G05B19/4061G05B2219/37624G05B2219/45242H02H3/006H02H3/44
    • An opening and closing member control system includes a rotation sensing device, which outputs a pulse signal synchronously to a movement of a window glass, and a controller, which senses pinching of an object by an opening and closing member based on the pulse signal. The controller has leaning stored data Δωm based on the pulse signal. The controller computes a rotational speed difference Δω at a current position of the window glass based on the pulse signal while the window glass is driven in a closing direction. The controller computes a difference between the rotational speed difference Δω and leaning stored data Δωm in such a manner that the controller determines whether the pinching of the object based on a comparison between the difference and a pinching determining threshold value β.
    • 开闭构件控制系统包括:旋转检测装置,其与窗玻璃的移动同步地输出脉冲信号;以及控制器,其基于脉冲信号感测由打开和关闭构件夹持物体。 控制器基于脉冲信号倾斜存储数据Deltaomega<> m< / SUB。 当窗玻璃沿关闭方向驱动时,控制器基于脉冲信号计算窗玻璃的当前位置处的转速差Deltaomega。 控制器以这样的方式计算旋转速度差Deltaomega和倾斜存储数据Deltaomega的差异,使得控制器基于差异和捏合确定阈值之间的比较来确定对象的捏合 价值β。
    • 67. 发明授权
    • Foldable accommodating box
    • 可折叠收纳盒
    • US07066332B2
    • 2006-06-27
    • US10668762
    • 2003-09-23
    • Shigeru KobayashiMasahiro KatayamaKiyoshi Kasuya
    • Shigeru KobayashiMasahiro KatayamaKiyoshi Kasuya
    • B65D19/12
    • B65D7/28
    • A foldable accommodating box includes a floor having a sidewall accommodating pocket, a pair of end walls pivotally supported on the floor, and a pair of sidewalls capable of being accommodated in the sidewall accommodating pocket in a mutually piled state. Each of the sidewalls includes a wall plate formed into a right-angled quadrilateral shape, a frame plate secured at right angles to an outer surface of an outer periphery of the wall plate, and a plurality of metal bars combined in a lattice shape and secured to the wall plate and the frame plate. The frame plate is provided with a notch for ensuring that when the sidewalls are piled on each other in an embraced manner so that their outer surfaces are opposed to each other, they are piled on each other with the frame plates partially adjoining each other on inner and outer sides. Thus, it is possible to prevent a portion of an accommodated member from protruding, and the sidewall can be constructed to have a sufficient strength, while avoiding an increase in weight. Moreover, it is possible to prevent an increase in thickness of the pair of sidewalls.
    • 可折叠的容纳盒包括具有侧壁容纳凹部的底板,可枢转地支撑在地板上的一对端壁和能够以相互堆叠状态容纳在侧壁容纳凹部中的一对侧壁。 每个侧壁包括形成为直角四边形形状的壁板,与壁板的外周的外表面成直角固定的框架板和多个金属棒,其组合成格子形状并固定 到墙板和框架板。 框架板设置有凹口,用于确保当侧壁以彼此堆叠的方式使得它们的外表面彼此相对时,它们彼此堆叠,框架板在内部彼此部分地邻接 和外侧。 因此,可以防止容纳构件的一部分突出,并且侧壁可以被构造成具有足够的强度,同时避免了重量的增加。 此外,可以防止一对侧壁的厚度增加。
    • 68. 发明授权
    • Mass-production transfer support system and semiconductor manufacturing system
    • 批量生产转移支持系统和半导体制造系统
    • US06990388B2
    • 2006-01-24
    • US11020395
    • 2004-12-27
    • Hiroyuki AkimoriYasushi OhyamaHidetaka NishimuraShigeru Kobayashi
    • Hiroyuki AkimoriYasushi OhyamaHidetaka NishimuraShigeru Kobayashi
    • G06F19/00
    • G06Q10/06G06Q50/04Y02P90/30
    • A mass-production transfer support system has a mass-production transfer source managing computer for managing information generated in a trial-production process of a semiconductor device and a mass-production transfer destination managing computer for managing a mass-production process of the semiconductor device. The mass-production transfer source managing computer comprises: quality/recipe information input accepting means; quality/recipe information sending means; apparatus-difference correction information input accepting means for accepting an input of apparatus-difference correction information for correcting a difference in the quality of the semiconductor device associated with an apparatus-difference between semiconductor manufacturing apparatuses; apparatus-difference correction information storing means; and apparatus-difference correction information providing means for storing the apparatus-difference correction information in a database accessible by the mass-production transfer destination managing computer.
    • 批量生产转移支持系统具有用于管理在半导体器件的试生产过程中生成的信息的批量生产转移源管理计算机和用于管理半导体器件的批量生产过程的批量生产转移目的地管理计算机 。 批量生产转移源管理计算机包括:质量/食谱信息输入接收装置; 质量/配方信息发送装置; 装置差异校正信息输入接受装置,用于接受用于校正与半导体制造装置之间的装置差相关的半导体装置的质量差异的装置差校正信息的输入; 装置差校正信息存储装置; 以及装置差异校正信息提供装置,用于将装置差异校正信息存储在可由大规模生产转移目的地管理计算机访问的数据库中。
    • 69. 发明申请
    • Mass-production transfer support system and semiconductor manufacturing system
    • 批量生产转移支持系统和半导体制造系统
    • US20050143853A1
    • 2005-06-30
    • US11020395
    • 2004-12-27
    • Hiroyuki AkimoriYasushi OhyamaHidetaka NishimuraShigeru Kobayashi
    • Hiroyuki AkimoriYasushi OhyamaHidetaka NishimuraShigeru Kobayashi
    • G06Q10/00G06Q50/00G06F19/00
    • G06Q10/06G06Q50/04Y02P90/30
    • A mass-production transfer support system has a mass-production transfer source managing computer for managing information generated in a trial-production process of a semiconductor device and a mass-production transfer destination managing computer for managing a mass-production process of the semiconductor device. The mass-production transfer source managing computer comprises: quality/recipe information input accepting means; quality/recipe information sending means; apparatus-difference correction information input accepting means for accepting an input of apparatus-difference correction information for correcting a difference in the quality of the semiconductor device associated with an apparatus-difference between semiconductor manufacturing apparatuses; apparatus-difference correction information storing means; and apparatus-difference correction information providing means for storing the apparatus-difference correction information in a database accessible by the mass-production transfer destination managing computer.
    • 批量生产转移支持系统具有用于管理在半导体器件的试生产过程中生成的信息的批量生产转移源管理计算机和用于管理半导体器件的批量生产过程的批量生产转移目的地管理计算机 。 批量生产转移源管理计算机包括:质量/食谱信息输入接收装置; 质量/配方信息发送装置; 装置差异校正信息输入接受装置,用于接受用于校正与半导体制造装置之间的装置差相关的半导体装置的质量差异的装置差校正信息的输入; 装置差校正信息存储装置; 以及装置差异校正信息提供装置,用于将装置差异校正信息存储在可由大规模生产转移目的地管理计算机访问的数据库中。