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    • 62. 发明授权
    • Multi layer ceramic electronic parts
    • 多层陶瓷电子零件
    • US06344963B1
    • 2002-02-05
    • US09536548
    • 2000-03-28
    • Takeshi Mori
    • Takeshi Mori
    • H01G4228
    • H01G4/232
    • A multi-layer ceramic electronic part is made up of: a laminated body in which a ceramic layer and internal electrodes are laminated on one another and external electrodes are provided at end portions of the laminated body. The internal electrodes oppose each other reach to either one of at least a pair of edges of the ceramic layer, thereby leading out the internal electrodes opposing each other to either one of the end surfaces of the laminated body and connecting the internal electrodes led out to the end surfaces of the laminated body to the external electrodes. Each of the external electrodes has a first conductor layer which is closely contacting with only the end surface of the laminated body and a second conductor layer which covers from the first conductor layer to a portion of a side surface adjacent to the end surface of the laminated body. The first conductor layer is larger than the second conductor layer in the content of a common material which is commonly used with ceramic material for forming the ceramic layer. With this multi-layer ceramic electronic part, cracks due to heat-shock can be prevented from occurring within the laminated body and the soldering property of the external electrode can be kept in good condition.
    • 多层陶瓷电子部件由以下层叠体构成:层叠体,陶瓷层和内部电极彼此层叠,外部电极设置在层叠体的端部。 内部电极彼此相对到达陶瓷层的至少一对边缘中的任一个,从而将彼此相对的内部电极引导到层压体的任一个端面,并将引出的内部电极连接到 层叠体的端面到外部电极。 每个外部电极具有仅与层叠体的端面紧密接触的第一导体层和从第一导体层覆盖到与层叠体的端面相邻的侧面的一部分的第二导体层 身体。 在通常用于形成陶瓷层的陶瓷材料的普通材料的含量中,第一导体层大于第二导体层。 通过该多层陶瓷电子部件,能够防止在层叠体内产生由于热冲击而产生的裂纹,能够使外部电极的焊接性能保持良好。
    • 63. 发明授权
    • Apparatus and method for synthesizing musical tones using extended tone color settings
    • 使用扩展音色设置合成乐音的装置和方法
    • US06303852B1
    • 2001-10-16
    • US09546572
    • 2000-04-10
    • Takahiro KizakiTakeshi Mori
    • Takahiro KizakiTakeshi Mori
    • G10H106
    • G10H1/06G10H1/0066
    • A musical tone synthesizing apparatus and method are provided to enable automatic addition of parts in response to addition of extended tone colors. Herein, prescribed tone colors are set to the tone-generation instructors, which are respectively assigned to performance inputs for inputting performance data from designated devices such as a keyboard, a sequencer and other MIDI instruments or devices. The tone-generation instructors produce output performance data based on which a tone generator generates corresponding musical tone signals. Addition of the extended tone colors can be actualized by installation of an extended board into an extended slot. Upon detection of the addition of the extended tone colors at a start of system, the apparatus automatically extends tone-generation instructors so that a user is capable of selecting the extended tone colors for the extended tone generation instructors, respectively. In addition, the user is capable of editing the extended tone colors to produce extended tone color edit data.
    • 提供了一种乐音合成装置和方法,以响应于延长的音色的添加而自动添加部分。 这里,规定的色调被设置为音调生成指导者,它们分别被分配给用于从诸如键盘,定序器和其他MIDI乐器或设备的指定装置输入演奏数据的演奏输入。 音调生成指导者产生输出性能数据,基于该输出性能数据,音调发生器产生相应的乐音信号。 扩展音色的添加可以通过将扩展板安装到扩展槽中来实现。 当在系统开始时检测到扩展音色的添加时,设备自动地扩展音调生成指导者,使得用户能够分别选择扩展音色生成指导者的扩展音色。 此外,用户能够编辑扩展音色以产生扩展音色编辑数据。
    • 66. 发明授权
    • Self-administration device for liquid medicines
    • 液体药物自我管理装置
    • US06213981B1
    • 2001-04-10
    • US09256998
    • 1999-02-25
    • Katsuhiro HiejimaTakeshi Mori
    • Katsuhiro HiejimaTakeshi Mori
    • A61M5178
    • A61M5/1424A61M2005/1405
    • A liquid medicine self-administration device which is capable of administering a liquid medicine to a patient in a single shot and with which the refilling of the liquid medicine can be performed by a one-touch operation. The device includes a casing 1 having two open ends, a port portion 2 closing one of the open ends of the casing, a reservoir 3 attached to the port portion 2 and capable of being easily deformed by pressing and of being restored to its original shape. A pushing means 4 is slidably inserted into the other open end of the casing 1 and is adapted to press and deform the reservoir 3. The pushing means 4 comprises a cylindrical member 41 inserted into the casing 1 so as to be able to slide along the inner wall of the casing 1 and a spring 42 housed within the cylindrical member 41. The device operates such that when the cylindrical member 41 is pushed down by the pushing means 4, the cylindrical member 41 is automatically held in engagement with an engaging hook 5 while engagement of the cylindrical member 41 with the engaging hook is released by a push-button operation.
    • 一种液体药物自给药装置,其能够一次性地向患者施用液体药物,并且可以通过一次触摸操作进行液体药物的补充。 该装置包括具有两个开口端的壳体1,封闭壳体的开口端中的一个的端口部分2,附接到端口部分2并且能够通过按压容易地变形并且恢复到其原始形状的储存器3 。 推动装置4可滑动地插入壳体1的另一开口端,并且适于压缩和变形储存器3.推动装置4包括插入壳体1中的圆柱形构件41,以便能够沿着 壳体1的内壁和容纳在圆柱形构件41内的弹簧42.该装置操作使得当圆柱形构件41被推动装置4向下推动时,圆柱形构件41自动地与接合钩5卡合 同时通过按钮操作来释放圆柱形构件41与接合钩的接合。
    • 67. 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。
    • 68. 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。