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    • 81. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US06205259B1
    • 2001-03-20
    • US08969937
    • 1997-11-28
    • Yasuhiro KomiyaTatsuo NagasakiKangda WangTakeshi MoriRyoichi SawakiYoichi IbaToshiyuki EbiharaHideo Tomabechi
    • Yasuhiro KomiyaTatsuo NagasakiKangda WangTakeshi MoriRyoichi SawakiYoichi IbaToshiyuki EbiharaHideo Tomabechi
    • G06T300
    • H04N1/19515G06T5/50H04N1/19505H04N1/19584H04N1/3876H04N5/23238H04N5/3415H04N9/045H04N9/093H04N2209/048
    • Disclosed herein is an image processing apparatus, in which an object image focused by a lens is split into a plurality of images by means of a light splitting section. These images are converted into image data items by a plurality of imaging devices which are arranged with their imaging area overlapping in part. The image data items are stored temporarily in an image storing section. A displacement detecting section detects displacement coefficients (rotation angle R and parallel displacement S) from the image signals representing the mutual overlap region of two images which are to be combined and which are represented by two image data items read from the image storing section. The position of any specified pixel of the image displayed is identified by the pixel signal generated by the corresponding pixel of any imaging device. An interpolation section performs interpolation on the pixel values of the imaging device, thereby correcting the values of the other pixels of the image displayed and ultimately generating interpolated image signals. The interpolated image signals are combined with the image signals produced by the imaging device, whereby a display section displays a high-resolution image.
    • 这里公开了一种图像处理装置,其中由透镜聚焦的对象图像通过分光部分被分割成多个图像。 这些图像通过多个成像装置被转换成图像数据项,这些成像装置被布置成它们的成像区域部分重叠。 图像数据项被临时存储在图像存储部中。 位移检测部分从表示要组合的两个图像的相互重叠区域的图像信号中检测位移系数(旋转角度R和平行位移S),并且由从图像存储部分读取的两个图像数据项表示。 所显示的图像的任何指定像素的位置由任何成像装置的相应像素生成的像素信号来识别。 内插部分对成像装置的像素值执行内插,从而校正显示的图像的其他像素的值,并最终产生内插图像信号。 内插图像信号与由成像装置产生的图像信号组合,由此显示部分显示高分辨率图像。
    • 82. 发明授权
    • Method of making embedded wiring system
    • 嵌入式布线系统的制作方法
    • US06184124B2
    • 2001-02-06
    • US09078510
    • 1998-05-14
    • Makiko HasegawaYoshihiko ToyodaTakeshi MoriTetsuo Fukada
    • Makiko HasegawaYoshihiko ToyodaTakeshi MoriTetsuo Fukada
    • H01L214763
    • H01L21/76849H01L21/76844H01L21/76847H01L23/53233H01L23/53238H01L2924/0002H01L2924/00
    • A method of preparing a multilevel embedded wiring system for an IC comprising a first wiring formation step, a first connecting portion formation step, and a second wiring formation step, wherein the first wiring formation step comprises forming a first trench for a first embedded wiring in a first insulating layer disposed on a substrate and embedding in the first trench, in turn, a first conductive layer and a first conductive capping layer; the first connecting portion formation step comprises forming a second insulating layer on the first insulating layer and the first conductive capping layer, forming a via-hole in a part of the second insulating layer at the first conductive capping layer, and embedding a conductive connecting portion in the via-hole and connected to the first conductive layer; and the second formation step comprises forming a third insulating layer on the second insulating layer and the conductive connecting portion, forming a second trench for a second wiring in the third insulating layer at the conductive connecting portion, and embedding a second conductive layer in the second trench and connected to the conductive connecting portion.
    • 一种制备用于IC的多层嵌入式布线系统的方法,包括:第一布线形成步骤,第一连接部分形成步骤和第二布线形成步骤,其中所述第一布线形成步骤包括:形成用于第一嵌入布线的第一沟槽 第一绝缘层,设置在基板上并嵌入第一沟槽中,依次具有第一导电层和第一导电覆盖层; 第一连接部分形成步骤包括在第一绝缘层和第一导电覆盖层上形成第二绝缘层,在第一导电覆盖层的第二绝缘层的一部分中形成通孔,并且将导电连接部分 在所述通孔中并连接到所述第一导电层; 并且第二形成步骤包括在第二绝缘层和导电连接部分上形成第三绝缘层,在导电连接部分处在第三绝缘层中形成用于第二布线的第二沟槽,并在第二绝缘层中嵌入第二导电层 沟槽并连接到导电连接部分。
    • 84. 发明授权
    • Computerized music apparatus processing waveform to create sound effect,
a method of operating such an apparatus, and a machine-readable media
    • 计算机化音乐装置处理波形以产生声音效果,操作这种装置的方法和机器可读介质
    • US6025552A
    • 2000-02-15
    • US716552
    • 1996-09-18
    • Hirofumi MukainoTakeshi Mori
    • Hirofumi MukainoTakeshi Mori
    • G10H1/00G10H1/02G10H7/00G10H7/02
    • G10H7/006G10H1/0091G10H1/02G10H7/002G10H7/02G10H2210/241G10H2250/595G10H2250/641
    • A computerized music apparatus is installed with a program which is executed to perform reproduction of a musical tone by reading out a corresponding waveform. A storage is provided for storing a plurality of waveforms corresponding to different musical tones, each waveform being stored in the form of a sequence of amplitude value data arranged at a given sampling period. Tapping pads are provided for designating at least one of the stored waveforms to command reproduction of a corresponding one of the musical tones. A panel switch is operable by a user for switching the reproduction of the musical tone between a normal mode and an optional mode. A CPU is allotted with relatively high performance under the normal mode for concurrently reading out a number of the designated waveforms from the storage according to the program so as to concurrently reproduce the number of the corresponding musical tones. Otherwise, the CPU is allotted with relatively low performance under the optional mode such that the number of the musical tones concurrently reproduced under the optional mode is reduced as compared to that under the normal mode while the CPU is allotted with additional performance under the optional mode for digitally processing the designated waveform to impart a scratch effect to the reproduced musical tone according to the program. The scratch effect may be also applied to a fresh waveform inputted from an external source in real time.
    • 计算机化音乐装置安装有通过读出相应的波形来执行音乐再现的程序。 提供存储用于存储对应于不同乐音的多个波形,每个波形以在给定采样周期排列的振幅值数据序列的形式存储。 提供敲击垫用于指定所存储的波形中的至少一个,以命令再现对应的音乐音调。 面板开关可由用户操作,用于在正常模式和可选模式之间切换乐音的再现。 在正常模式下分配CPU具有相对较高的性能,用于根据程序从存储器同时读出多个指定波形,以便同时再现相应乐音的数量。 否则,CPU在可选模式下被分配相对较低的性能,使得在可选模式下同时再现的音调的数量与正常模式下的音调相比减少,而CPU在可选模式下被分配了额外的性能 用于对指定波形进行数字处理,以根据程序对再现的乐音赋予划痕效果。 刮擦效果也可以应用于从外部源实时输入的新鲜波形。
    • 85. 发明授权
    • Flow rate control device having priming mechanism
    • 具有启动机构的流量控制装置
    • US5931193A
    • 1999-08-03
    • US862436
    • 1997-05-23
    • Katsuhiro HiejimaTakeshi Mori
    • Katsuhiro HiejimaTakeshi Mori
    • A61M5/168A61M5/14A61M39/22
    • A61M39/225A61M2005/1403Y10T137/87394
    • A flow rate control device which does not constitute an obstruction when it is connected to a liquid medicine continuous injector, which is not influenced by the body temperature of a patient and which can perform a priming operation of the liquid medicine continuous injector in a short period of time is disclosed. The control device is provided with a reservoir, a flow rate control tube and a release valve, which are preferably incorporated in a housing. The housing is provided with a through hole such that the reservoir can be pressed by a pressing means, and is also provided with a liquid medicine inlet and a liquid medicine outlet for the reservoir. A check valve is preferably provided in the liquid medicine inlet and the flow rate control tube and the release valve are provided in the liquid medicine outlet. The flow rate control tube and the release valve are provided coaxially with each other or in parallel with each other.
    • 一种流量控制装置,其在连接到液体药物连续注射器时不构成阻塞物,其不受患者体温的影响,并且能够在短时间内进行液体药物连续注射器的起动操作 的时间被披露。 控制装置设置有优选地并入壳体中的储存器,流量控制管和释放阀。 壳体设置有通孔,使得储存器可以被按压装置按压,并且还设置有用于储存器的液体药物入口和液体药物出口。 止液阀优选设置在液体药物入口中,流量控制管和释放阀设置在药液出口中。 流量控制管和释放阀彼此同轴或彼此平行地设置。
    • 88. 发明授权
    • Image sensing apparatus having exposure level and dynamic range control
circuit
    • 具有曝光电平和动态范围控制电路的图像感测装置
    • US5264940A
    • 1993-11-23
    • US771433
    • 1991-10-04
    • Yasuhiro KomiyaTakeshi MoriTatsuo Nagasaki
    • Yasuhiro KomiyaTakeshi MoriTatsuo Nagasaki
    • H04N5/235H04N5/238
    • H04N5/235
    • In the exposure control circuit of an image input device according to the present invention, the rays of light from the subject pass through a diaphragm adjusting the amount of light and undergoes photoelectric conversion at a CCD imaging element. The image signal read from the CCD imaging element is accumulated more than once at an accumulating circuit. The luminance of the subject is detected at a luminance detector. Based on the detected luminance, a condition setting circuit sets the amount of incident light, exposure time, and the number of additions to suitable values. With those suitable settings, the amount of light through the diaphragm, the exposure time of the CCD imaging element, and the number of accumulations by the accumulating circuit are controlled so as to enable the subject to be photographed under the best condition.
    • 在根据本发明的图像输入装置的曝光控制电路中,来自对象的光线通过调节光量的光阑,并在CCD成像元件处进行光电转换。 从CCD成像元件读取的图像信号在累积电路上累积不止一次。 在亮度检测器处检测被摄体的亮度。 基于检测到的亮度,条件设定电路将入射光量,曝光时间和添加次数设定为合适的值。 利用这些适当的设置,控制通过光阑的光量,CCD成像元件的曝光时间和累积电路的累积次数,以便能够在最佳条件下拍摄对象。
    • 89. 发明授权
    • Solid-state imaging device having a widened dynamic range
    • 具有加宽的动态范围的固态成像装置
    • US5166800A
    • 1992-11-24
    • US671521
    • 1991-03-19
    • Takeshi MoriTatsuo Nagasaki
    • Takeshi MoriTatsuo Nagasaki
    • H04N5/235H04N5/353H04N5/355H04N5/365H04N5/372
    • H04N5/2355H04N3/1531H04N3/155H04N5/235
    • A solid-state imaging device has a plurality of photoelectric conversion elements, a plurality of first vertical shift registers, a plurality of slice circuits, a plurality of second vertical shift registers, a plurality of charge cumulating media, a read circuit, and a horizontal shift register. The photoelectric conversion elements are arranged in a matrix, and generate charges in accordance with an irradiated light amount. The first vertical shift registers are coupled to the photoelectric conversion elements, and transfer the charges read from the photoelectric conversion elements. The slice circuits are connected to output terminals of the first vertical shift registers, cut excessive charges exceeding a preset slice level from the charges input from the first vertical shift registers, and output effective charges. The second vertical shift registers are connected to output terminals of the slice circuits, have charge storage sections corresponding in number to the photoelectric conversion elements connected to the first vertical shift registers, and transfer the charges output from the slice circuits. The charge adding media are coupled to the charge storage section of the second vertical shift registers, and cumulate the charges from the charge storage sections a plurality of times. The read circuit supplies a read signal at a predetermined timing to the charge storage section. The horizontal shift register receives a sum obtained by the charge adding media, and transfers the sum.
    • 固态成像装置具有多个光电转换元件,多个第一垂直移位寄存器,多个限幅电路,多个第二垂直移位寄存器,多个电荷累积介质,读取电路和水平 移位寄存器 光电转换元件以矩阵形式布置,并根据照射的光量产生电荷。 第一垂直移位寄存器耦合到光电转换元件,并传送从光电转换元件读取的电荷。 切片电路连接到第一垂直移位寄存器的输出端,从第一垂直移位寄存器输入的电荷中切断超过预设限幅电平的过大电荷,并输出有效电荷。 第二垂直移位寄存器连接到片电路的输出端,具有与连接到第一垂直移位寄存器的光电转换元件相对应的电荷存储部分,并且传输从片电路输出的电荷。 充电添加介质耦合到第二垂直移位寄存器的电荷存储部分,并且从电荷存储部分多次累积电荷。 读取电路将预定定时的读取信号提供给电荷存储部。 水平移位寄存器接收由充电添加介质获得的总和,并传送和。