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    • 21. 发明申请
    • SEMICONDUCTOR DEVICE AND METHOD OF MANUFACTURING THE SAME
    • 半导体器件及其制造方法
    • US20090090964A1
    • 2009-04-09
    • US12240246
    • 2008-09-29
    • Shinichi WatanabeHirofumi Inoue
    • Shinichi WatanabeHirofumi Inoue
    • H01L27/115H01L21/336
    • H01L21/28123H01L29/4238
    • A semiconductor device includes a device isolation insulating film which is buried in a semiconductor substrate, a gate insulation film which is provided on the semiconductor substrate, a gate electrode which is provided on the gate insulation film, a source region and a drain region which are provided in the semiconductor substrate and spaced apart from each other in a manner to sandwich the gate electrode, both end portions of each of the source region and the drain region being offset from the device isolation insulating film in a channel width direction by a predetermined distance, and first and second gate electrode extension portions which are provided in a manner to cover both end portions of each of the source region and the drain region in a channel length direction.
    • 半导体器件包括埋在半导体衬底中的器件隔离绝缘膜,设置在半导体衬底上的栅极绝缘膜,设置在栅极绝缘膜上的栅极电极,源极区域和漏极区域 设置在半导体基板中并且以夹着栅电极的方式彼此间隔开,源极区域和漏极区域中的每一个的两个端部在沟道宽度方向上偏离器件隔离绝缘膜预定距离 以及第一和第二栅电极延伸部分,其以在沟道长度方向上覆盖源极区域和漏极区域中的每一个的两个端部的方式设置。
    • 23. 发明授权
    • Waterproof housing compatible for a plurality of cameras
    • 防水外壳兼容多台摄像机
    • US07352961B2
    • 2008-04-01
    • US10887447
    • 2004-07-08
    • Shinichi WatanabeKoji Funahashi
    • Shinichi WatanabeKoji Funahashi
    • G03B17/08
    • G03B17/08
    • A system includes a plurality of cameras and a waterproof housing. The plurality of cameras include a first camera including a first operating member, a second camera including a second operating member which is superposed to the position of the first operating member in the waterproof housing upon storing the second camera in the waterproof housing. The waterproof housing can store whichever one of the first camera and the second camera. The waterproof housing includes a third operating member and a fourth operating member. The third operating member operates the first operating member upon storing the first camera in the waterproof housing, and the fourth operating member operates the second operating member upon storing the second camera.
    • 系统包括多个照相机和防水外壳。 多个照相机包括第一照相机,其包括第一操作构件,第二照相机包括第二操作构件,当将第二照相机存储在防水外壳中时,第二操作构件与防水外壳中的第一操作构件的位置重叠。 防水外壳可以存储第一台相机和第二台相机中的哪一台。 防水壳体包括第三操作构件和第四操作构件。 第三操作构件在将第一相机存储在防水壳体中时操作第一操作构件,并且第四操作构件在存储第二相机时操作第二操作构件。
    • 25. 发明申请
    • DEVICE FOR DNA ANALYSIS AND DNA ANALYSIS APPARATUS
    • DNA分析装置和DNA分析装置
    • US20070298975A1
    • 2007-12-27
    • US11766328
    • 2007-06-21
    • Mikio IhamaShinichi Watanabe
    • Mikio IhamaShinichi Watanabe
    • C40B60/12
    • G01N21/6454C12Q1/6825G01N2021/6439G01N2021/6471C12Q2523/319
    • A device for DNA analysis includes: an imaging device having a plurality of pixel parts; and microarrays arranged and fixed on a surface on a side of light incidence of the imaging device, wherein each of the plurality of pixel parts includes plural kinds of photoelectric conversion parts stacked on a semiconductor substrate and each capable of detecting light with a different wavelength region from each other to generate a charge corresponding thereto; the plural kinds of photoelectric conversion parts are stacked such that they are able to receive light from the same subject; and the plural kinds of photoelectric conversion parts are each configured of at least one photoelectric conversion device having sensitivity to the light to be detected in the photoelectric conversion part and arranged on a same plane.
    • 用于DNA分析的装置包括:具有多个像素部分的成像装置; 以及配置并固定在成像装置的入射侧的表面上的微阵列,其中,所述多个像素部分中的每一个包括堆叠在半导体衬底上并且能够检测具有不同波长区域的光的多种光电转换部分 彼此产生相应的电荷; 多个光电转换部分堆叠成能够接收来自相同被摄体的光; 多个光电转换部分由至少一个光电转换装置构成,该光电转换装置对光电转换部中的被检测光具有敏感度,并且配置在同一平面上。
    • 26. 发明授权
    • Class D amplifier
    • D类放大器
    • US07102432B2
    • 2006-09-05
    • US10999172
    • 2004-11-29
    • Shinichi Watanabe
    • Shinichi Watanabe
    • H03F3/217H03K4/06
    • H03F3/217
    • A class D amplifier capable of compressing a dynamic range and reproduction by changing on a real time basis a modulation ratio to a non-linear ratio in accordance with amplitude of an input signal. The class D amplifier including a triangular waveform generation circuit that generates a deformed triangular waveform used as a comparison waveform for amplitude modulating an analog input signal, the triangular waveform generation circuit comprising a pulse generation circuit for generating a plurality of first pulse signals, a plurality of pulse extraction circuit for extracting said first pulse signals selectively, and for outputting second pulse signals during the time according to extracted first pulse signals, a plurality of three state buffers to which a clock pulse signal for basic cycles is provided as an input signal, one of said second pulse signals is provided as a control signal, and said clock pulse signal for basic cycles is output during a period for said one of second pulse signal is provided, and a integration circuit, having a time constant thereof changing in accordance with the output of said three state buffer, for generating said deformed triangular waveform corresponding to the time constant based on the clock pulse signal for basic cycles.
    • D类放大器能够通过根据输入信号的幅度在实时基础上将调制比改变为非线性比来压缩动态范围和再现。 D类放大器包括三角波形生成电路,其生成用作对模拟输入信号进行幅度调制的比较波形的变形三角波形,所述三角波形生成电路包括用于产生多个第一脉冲信号的脉冲发生电路,多个 脉冲提取电路,用于选择性地提取所述第一脉冲信号,并且在根据提取的第一脉冲信号的时间期间输出第二脉冲信号;多个三个状态缓冲器,其中提供用于基本周期的时钟脉冲信号作为输入信号, 提供所述第二脉冲信号中的一个作为控制信号,并且在提供用于所述第二脉冲信号的所述一个的周期期间输出用于基本周期的所述时钟脉冲信号,并且其积分电路的时间常数根据 所述三态缓冲器的输出用于产生所述变形的三角波形 基于基本周期的时钟脉冲信号响应时间常数。
    • 29. 发明申请
    • Transfer system and semiconductor manufacturing system
    • 转移系统和半导体制造系统
    • US20050005808A1
    • 2005-01-13
    • US10886708
    • 2004-07-09
    • Takayuki WakabayashiShinichi Watanabe
    • Takayuki WakabayashiShinichi Watanabe
    • B65G49/07G05D1/02H01L21/00H01L21/677B61K1/00
    • H01L21/67276
    • The present invention provides a transfer technique that can improve the transfer ability when reinforcing and expanding the transfer system, with effectively using the existing system. The transfer system includes tracks that link a plurality of manufacturing equipments, a plurality of carriers having different performances that run on the tracks to transfer objects between the manufacturing equipments and the like in a factory space having a plurality of manufacturing equipments, and the plurality of carriers having different performances are simultaneously provided and run on the same tracks. The plurality of carriers are composed of old carriers and new carriers that provided together and run depending on their own performances (running performance such as running speed, acceleration/deceleration, and the like and transfer performance such as transfer speed and the like).
    • 本发明提供了一种转移技术,其可以有效地利用现有的系统来提高加强和扩大转移系统时的转移能力。 传送系统包括链接多个制造设备的轨道,在具有多个制造设备的工厂空间中在轨道上运行的具有不同性能的多个载体在制造设备之间转移物体,并且多个 同时提供具有不同性能的载波并在同一轨道上运行。 多个载体由根据其自己的性能(诸如行驶速度,加速/减速等的运行性能以及诸如传送速度等的传送性能)组合并运行的旧载体和新载体构成。