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    • 13. 发明授权
    • Level detection system having a band-pass characteristic and a servo
system including the same
    • 具有带通特性的电平检测系统和包括该带通特性的伺服系统
    • US4016471A
    • 1977-04-05
    • US467578
    • 1974-05-06
    • Seiichi MatsumotoKazuya Hosoe
    • Seiichi MatsumotoKazuya Hosoe
    • G05D3/14G05B11/01
    • G05D3/14
    • A level detection system and a servo system employing the level detection system are disclosed. The level detection and servo system employs the use of a reasonably broad band-pass characteristic to avoid criticality in narrow band-pass systems. The level detection system includes an input level comparison circuit responsive to an input signal having a recurrent frequency and a reference signal. A filter having a band-pass characteristic which will pass the recurrent frequency of the input signal and its side-bands is responsive to the input level comparison circuit. The output of the filter is coupled to a second comparison circuit. The second comparison circuit is employed as a control means to drive the servo motor in the servo system.
    • 公开了一种使用电平检测系统的电平检测系统和伺服系统。 电平检测和伺服系统采用相当宽的带通特性,以避免窄带通系统中的关键性。 电平检测系统包括响应于具有复现频率和参考信号的输入信号的输入电平比较电路。 具有通过输入信号及其边带的反复频率的带通特性的滤波器响应于输入电平比较电路。 滤波器的输出耦合到第二比较电路。 第二比较电路被用作驱动伺服系统中的伺服电动机的控制装置。
    • 14. 发明授权
    • Ultrasonic measuring method and ultrasonic measuring system
    • 超声波测量方法和超声波测量系统
    • US08826739B2
    • 2014-09-09
    • US13356908
    • 2012-01-24
    • Seiichi MatsumotoHiroyuki KawakiShinya KurokiKazuhiro UchidaKiyokazu Ito
    • Seiichi MatsumotoHiroyuki KawakiShinya KurokiKazuhiro UchidaKiyokazu Ito
    • G01N29/024G01B17/02
    • G01B17/025G01B2210/44
    • In an ultrasonic measuring method for measuring the thickness of a coating material applied by coating to one surface or both surfaces of a substrate made of a metal so as to provide a coated product, a pair of first ultrasonic sensor and second ultrasonic sensor are provided such that the first ultrasonic sensor is placed on one side of the coated product, as viewed in its thickness direction, via an air layer, while the second ultrasonic sensor is placed on the other side of the coated product, via an air layer, and the thickness of the coating material is measured by transmitting ultrasonic waves between the first and the second ultrasonic sensors. A flat-type transmitting sensor that permits propagation of unfocused ultrasonic waves is used as the first ultrasonic sensor, and a flat-type receiving sensor that permits propagation of unfocused ultrasonic waves is used as the second ultrasonic sensor.
    • 在用于测量通过涂覆在由金属制成的基底的一个表面或两个表面上涂覆的涂层材料的厚度以提供涂覆产品的超声波测量方法中,提供一对第一超声波传感器和第二超声波传感器, 通过空气层将第一超声波传感器放置在涂覆产品的沿其厚度方向观察的一侧上,而第二超声波传感器经由空气层放置在涂覆产品的另一侧上,并且 通过在第一和第二超声波传感器之间传输超声波来测量涂层材料的厚度。 作为第一超声波传感器,使用允许未聚焦的超声波的传播的平面型发送传感器,作为允许未聚焦的超声波的传播的平面型接收传感器被用作第二超声波传感器。
    • 17. 发明授权
    • Thin film transistor array and method for fabricating the same
    • 薄膜晶体管阵列及其制造方法
    • US06569725B1
    • 2003-05-27
    • US09722738
    • 2000-11-28
    • Seiichi Matsumoto
    • Seiichi Matsumoto
    • H01L2100
    • G02F1/136204H01L27/1214
    • A TFT array for a liquid crystal display device in which inferiority due to electrification or abnormal discharge during fabrication process can be decreased. The TFT array comprises TFTs for display each connected to a respective one of pixel electrodes disposed in a matrix, gate wirings, signal lines, a common conductor line on the gate wiring side, a common conductor line on the signal line side, nonlinear elements respectively disposed between the gate wirings and the common conductor line on the gate wiring side and between the signal lines and the common conductor line on the signal line side. A gate electrode of a TFT in each of the nonlinear elements is formed separately from the corresponding common conductor line and is electrically coupled thereto via contact holes and a third conductor layer. A source/drain electrode of a TFT in each of the nonlinear elements is formed seprately from the corresponding common conductor line and is electrically coupled thereto via contact holes and the third conductor layer.
    • 一种用于液晶显示装置的TFT阵列,其可以减少由于在制造过程中带电或异常放电而导致的劣化。 TFT阵列包括用于显示的TFT,每个TFT分别连接到布置在矩阵中的像素电极,栅极布线,信号线,栅极布线侧的公共导体线,信号线侧的公共导体线,非线性元件 设置在栅极布线和栅极布线侧的公共导体线之间以及信号线与信号线侧的公共导体线之间。 每个非线性元件中的TFT的栅极电极与相应的公共导线分开形成,并通过接触孔和第三导体层与其电耦合。 每个非线性元件中的TFT的源极/漏极电极与相应的公共导体线分开形成,并通过接触孔和第三导体层与其电耦合。
    • 19. 发明授权
    • Range finder system
    • 测距仪系统
    • US4123650A
    • 1978-10-31
    • US755006
    • 1976-12-28
    • Kazuya HosoeSeiichi MatsumotoHideo YokotaTsuyoshi AsaedaTadahide FukushimaTamotsu ShinguShigeru HashimotoTomonori Iwashita
    • Kazuya HosoeSeiichi MatsumotoHideo YokotaTsuyoshi AsaedaTadahide FukushimaTamotsu ShinguShigeru HashimotoTomonori Iwashita
    • G01S17/32G02B7/32G01J1/20G03B7/08
    • G01S17/32G02B7/32
    • A range finder system to detect distance to an object by irradiating radiation toward an object, a distance to which is to be detected based on the principle of a base line range finder and receiving radiation being reflected by said object. It is particularly characterized by that a distance to an object is detected by irradiating a photoelectric conversion means with radiation and then comparing the signal outputted by said photoelectric conversion means with a prescribed reference signal. And the system of the present invention has, for that end, a radiation generation source to generate radiation, a light receiving system being positioned with a prescribed base line distance from said radiation generation source for receiving the reflected radiation being emitted by the radiation generation source and reflected by the object, a photoelectric conversion means to take in the radiation from said light receiving system being reflected by said object, an oscillating device having such function as intermittently irradiating the above mentioned photoelectric conversion means with the radiaton reflected by the above mentioned object within the radiation path between said photoelectric conversion means and the above mentioned radiation source, a reference signal generation means to generate reference signal, and a signal comparison means to compare the signal generated by the above mentioned photoelectric conversion means and the above mentioned reference signal.
    • 测距仪系统,用于通过向物体照射辐射来检测到物体的距离,基于基线测距仪的原理和接收被所述物体反射的辐射来检测距离。 其特征在于,通过用光线照射光电转换装置,然后将由所述光电转换装置输出的信号与规定的参考信号进行比较来检测与物体的距离。 本发明的系统为此产生了用于产生辐射的辐射发生源,光接收系统被定位成与所述辐射发生源具有规定的基线距离,用于接收辐射发生源发射的反射辐射 并且被物体反射的光电转换装置,用于吸收来自所述物体的所述光接收系统的辐射,具有如下功能的振荡装置:具有上述光电转换装置间歇地照射由上述物体反射的辐射的功能 在所述光电转换装置和上述辐射源之间的辐射路径内,产生参考信号的参考信号产生装置和用于比较由上述光电转换装置产生的信号和上述参考信号的信号比较装置。
    • 20. 发明授权
    • Sharp focus detecting system
    • 锐焦检测系统
    • US4104650A
    • 1978-08-01
    • US604535
    • 1975-08-14
    • Kazuya HosoeSeiichi MatsumotoShigeru HashimotoTomonori IwashitaTadahide FukushimaHideo Yokota
    • Kazuya HosoeSeiichi MatsumotoShigeru HashimotoTomonori IwashitaTadahide FukushimaHideo Yokota
    • G02B7/36G03B7/08
    • G02B7/36
    • A camera having an objective and visual or automatic focusing means for the objective. For assistance in bringing into sharpest focus an image of an object formed by the objective at the focal plane of the camera, there is provided a sharp focus detecting apparatus constructed in the form of an attachment unit attachable to and detachable from the camera and essentially comprising an optical system subsidiary to the objective, photoelectric means arranged upon receiving light coming from the object through the objective and subsidiary optical system for producing an electrical output signal proportional to the degree of sharpness of the image and oscillatory motion imparting means or scanning means associated with the photoelectric means for periodically varying the spatial relationship along the projection path between the photoelectric means and the subsidiary optical system.
    • 具有用于该目的的客观和视觉或自动聚焦装置的相机。 为了帮助将目标物体在相机的焦平面上形成的物体的图像最清晰地聚焦在一起,提供了一种以可附接到照相机并且可从相机拆卸的附件单元的形式构造的锐利焦点检测装置,并且基本上包括 光学装置,被配置为通过物镜和辅助光学系统接收来自物体的光,用于产生与图像的清晰度和振荡运动施加装置成正比的电输出信号或与扫描装置相关联的扫描装置 用于周期性地改变沿光电装置和辅助光学系统之间的投影路径的空间关系的光电装置。