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    • 3. 发明申请
    • RECEIVING CIRCUIT
    • 接收电路
    • US20100237906A1
    • 2010-09-23
    • US12696335
    • 2010-01-29
    • Tetsuya HAYASHIDaisuke Suzuki
    • Tetsuya HAYASHIDaisuke Suzuki
    • H03K5/24
    • H04L25/0272H04L25/0292
    • A receiving circuit includes an impedance compensating circuit, a first input terminal and a second input terminal coupled to a first signal line and a second signal line, a first signal and a second signal corresponding to differential signals being transmitted at the first input terminal and the second input terminal, respectively, a signal input circuit, coupled to the first input terminal and the second input terminal, which receives the first signal and the second signal are input, and a differential-signal detector that detects whether or not the differential signals are supplied to the first input terminal and the second input terminal.
    • 接收电路包括阻抗补偿电路,耦合到第一信号线和第二信号线的第一输入端和第二输入端,对应于在第一输入端发送的差分信号的第一信号和第二信号, 分别输入接收第一信号和第二信号的耦合到第一输入端和第二输入端的信号输入电路,差分信号检测器检测差分信号是否为 提供给第一输入端子和第二输入端子。
    • 5. 发明申请
    • DRAWING APPARATUS AND METHOD, AND COMPUTER PROGRAM
    • 绘图设备和方法以及计算机程序
    • US20100079571A1
    • 2010-04-01
    • US12519611
    • 2006-12-21
    • Tetsuya HAYASHI
    • Tetsuya HAYASHI
    • B41J2/47
    • G11B23/40G11B7/24038
    • A drawing device includes a drawing element irradiating laser light to a label surface of a recording medium according to drawing data of tracks to compose a desired pattern and draw it on the label surface. The drawing device further includes a juncture specifying element that specifies a juncture portion between drawing start and end positions according to the drawing data and a non-drawing portion specifying element that specifies a non-drawing portion corresponding to the drawing data not to direct the irradiation of the laser light in accordance with the drawing data. The drawing device includes a control element controlling the drawing element to carry out movement processing so the drawing start position in each of a plurality of the tracks moves relative to the desired pattern to be drawn in order for at least a part of the specified juncture portion to be received in the specified non-drawing portion.
    • 绘图装置包括根据轨迹的绘制数据将激光照射到记录介质的标签表面上的绘图元件,以组成所需的图案并将其画在标签表面上。 绘图装置还包括根据绘图数据指定绘制开始和结束位置之间的接合部分的接合指定元件和指定与不引导照射的绘图数据相对应的非绘制部分的非绘图部分指定元素 的激光根据图纸数据。 绘图装置包括控制绘图元件以执行移动处理的控制元件,使得多个轨道中的每一个中的绘图开始位置相对于要绘制的期望图案移动,以便至少指定接合部分的一部分 在指定的非绘图部分中被接收。
    • 6. 发明申请
    • OPTICAL TRANSMISSION LINE
    • 光传输线
    • US20130094819A1
    • 2013-04-18
    • US13609568
    • 2012-09-11
    • Tatsuya KONISHITetsuya NAKANISHITetsuya HAYASHI
    • Tatsuya KONISHITetsuya NAKANISHITetsuya HAYASHI
    • G02B6/028G02B6/255
    • G02B6/0285G02B6/03627G02B6/0365G02B6/14G02B6/255G02B6/26
    • There is provided an optical transmission line that includes a bend insensitive fiber (BIF) defined by ITU-T Recommendation G.657 and that reduces the influence of MPI. An optical transmission line 1 includes a first optical fiber 11, a second optical fiber 12 joined to an incident end of the first optical fiber 11, and a third optical fiber 13 joined to an exit end of the first optical fiber 11. The first optical fiber 11 is a bend insensitive fiber (BIF), and each of the second optical fiber 12 and the third optical fiber 13 is a general single mode optical fiber. An attenuation coefficient of an LP11 mode in the first optical fiber 11 at a wavelength of 1310 nm, a splice loss between the first optical fiber and the second optical fiber, a splice loss between the first optical fiber and the third optical fiber, and a length of the first optical fiber satisfy a predetermined relational equation.
    • 提供了一种光传输线,其包括由ITU-T G.657建议书定义的弯曲不敏感光纤(BIF),并减少MPI的影响。 光传输线1包括第一光纤11,连接到第一光纤11的入射端的第二光纤12和与第一光纤11的出口端连接的第三光纤13.第一光 光纤11是弯曲不敏感光纤(BIF),第二光纤12和第三光纤13都是一般的单模光纤。 第一光纤11中的波长1310nm处的LP11模式的衰减系数,第一光纤与第二光纤之间的接合损耗,第一光纤与第三光纤之间的接合损耗,以及 第一光纤的长度满足预定的关系式。
    • 10. 发明申请
    • METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE
    • 制造半导体器件的方法
    • US20110117699A1
    • 2011-05-19
    • US13014190
    • 2011-01-26
    • Tetsuya HAYASHIMasakatsu HoshiYoshio ShimoidaHideaki TanakaShigeharu Yamagami
    • Tetsuya HAYASHIMasakatsu HoshiYoshio ShimoidaHideaki TanakaShigeharu Yamagami
    • H01L21/336H01L21/04
    • H01L29/7828H01L29/0623H01L29/1608H01L29/267H01L29/66068
    • A semiconductor substrate made of a semiconductor material is prepared, and a hetero semiconductor region is formed on the semiconductor substrate to form a heterojunction in an interface between the hetero semiconductor region and the semiconductor substrate. The hetero semiconductor region is made of a semiconductor material having a bandgap different from that of the semiconductor material, and a part of the hetero semiconductor region includes a film thickness control portion whose film thickness is thinner than that of the other part thereof. By oxidizing the hetero semiconductor region with a thickness equal to the film thickness of the film thickness control portion, a gate insulating film adjacent to the heterojunction is formed. A gate electrode is formed on the gate insulating film. This makes it possible to manufacture a semiconductor device including the gate insulating film with a lower ON resistance, and with a higher insulating characteristic and reliability.
    • 制备由半导体材料制成的半导体衬底,并且在半导体衬底上形成异质半导体区域,以在异质半导体区域和半导体衬底之间的界面中形成异质结。 异质半导体区域由具有与半导体材料的带隙不同的带隙的半导体材料制成,并且异质半导体区域的一部分包括膜厚度比其他部分薄的膜厚控制部分。 通过以等于膜厚控制部分的膜厚的厚度氧化杂半导体区域,形成与异质结相邻的栅极绝缘膜。 在栅极绝缘膜上形成栅电极。 这使得可以制造包括具有较低导通电阻的栅极绝缘膜以及更高的绝缘特性和可靠性的半导体器件。