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    • 2. 发明授权
    • Semiconductor device, method for manufacturing the same, and flexible substrate for mounting semiconductor
    • 半导体装置及其制造方法以及用于安装半导体的柔性基板
    • US07714425B2
    • 2010-05-11
    • US12233663
    • 2008-09-19
    • Masahiro YamaguchiHisashi TanieNaoto Saito
    • Masahiro YamaguchiHisashi TanieNaoto Saito
    • H01L23/02
    • H01L25/0657H01L23/4985H01L24/50H01L25/105H01L2225/06572H01L2225/06579H01L2225/1023H01L2225/107
    • A semiconductor device includes a second semiconductor package, which includes a substrate and at least one semiconductor package. The substrate includes a terminal group formed on a surface thereof. At least one first semiconductor package is stacked on the substrate, and includes a plurality of flexible substrates, each of which includes a wiring group on a surface thereof and each of which is bending-deformable. At least one first semiconductor package includes a plurality of semiconductor elements mounted on a plurality of flexible substrates. Electric conduction through the second semiconductor package is established by connecting the wiring group on each of a plurality of flexible substrates to the terminal group on the substrate. Further, at least one terminal of the terminal group on the substrate is electrically connected to all of the plurality of semiconductor elements on at least one first semiconductor package, and at least one other terminal of the terminal group is electrically connected only to particular semiconductor elements of the plurality of semiconductor elements.
    • 半导体器件包括第二半导体封装,其包括衬底和至少一个半导体封装。 基板包括在其表面上形成的端子组。 至少一个第一半导体封装堆叠在基板上,并且包括多个柔性基板,每个柔性基板在其表面上包括布线组,每个可弯曲变形。 至少一个第一半导体封装包括安装在多个柔性基板上的多个半导体元件。 通过将多个柔性基板中的每一个上的布线组连接到基板上的端子组来建立通过第二半导体封装的导电。 此外,衬底上的端子组的至少一个端子与至少一个第一半导体封装上的所有多个半导体元件电连接,并且端子组的至少一个其它端子仅电连接到特定的半导体元件 的多个半导体元件。
    • 3. 发明授权
    • Method of manufacturing a bipolar transistor
    • 制造双极晶体管的方法
    • US06335256B1
    • 2002-01-01
    • US09516985
    • 2000-03-01
    • Naoto Saito
    • Naoto Saito
    • H01L21331
    • H01L29/66272H01L21/8249
    • There is provided a bipolar transistor integrated circuit device having excellent characteristics by a simple process. A region where an impurity is not introduced is disposed in a part of a buried layer region for separating a collector region from a substrate, so that a bipolar transistor having low collector resistance can be formed. This can be applied also to a BiCMOS where insulated field effect transistors exist on the same substrate. These processes can be realized without adding a number of steps to a conventional process.
    • 提供一种通过简单的工艺具有优异特性的双极晶体管集成电路器件。 在用于从基板分离集电极区域的掩埋层区域的一部分中设置不引入杂质的区域,从而可以形成具有低集电极电阻的双极晶体管。 这也可以应用于同一衬底上存在绝缘场效应晶体管的BiCMOS。 可以实现这些过程,而不需要对常规方法添加多个步骤。
    • 4. 发明授权
    • Corrosive environment sensor, corrosive environment measuring apparatus
and corrosive environment control system
    • 腐蚀性环境传感器,腐蚀性环境测量仪器和腐蚀性环境控制系统
    • US5556596A
    • 1996-09-17
    • US308542
    • 1994-09-21
    • Makoto HayashiSatoshi KannoNaoto Saito
    • Makoto HayashiSatoshi KannoNaoto Saito
    • G01N3/32G01N3/00G01N3/02G01N3/20G01N17/00G01N27/26C01N17/00
    • G01N3/20G01N17/00G01N2203/0066G01N2203/024
    • A corrosive environment sensor comprises an elongate metal member having a pair of beam portions, each extending in a length direction between first and second ends of the metal member, and having a crack growth portion formed therein and extending in the length direction of the metal member from a crack starting end toward the second end, wherein the crack starting end is at an intermediate position between the first and second ends of the metal member and is between the pair of beam portions, a changeable load member having an expansible chamber disposed between the beam portion around the first end of the metal member and a means for supplying pressurized fluid to the expansible chamber. The changeable load member applies a load to the crack growth portion and the means for supplying pressurized fluid to the expansible chamber is responsible for ensuring that the displacement of the beam portions is accomplished in such a manner so as to provide a constant stress intensity factor at a crack growing point.
    • 腐蚀性环境传感器包括细长金属构件,其具有一对梁部分,每一个梁部分沿金属构件的第一和第二端之间的长度方向延伸,并且在其中形成有裂纹扩展部分,并且在金属构件的长度方向上延伸 从裂纹起始端朝向第二端,其中裂纹起始端处于金属构件的第一和第二端之间的中间位置,并且位于一对梁部之间,可变载荷构件具有可扩张室, 围绕金属构件的第一端的梁部分和用于将加压流体供应到可膨胀室的装置。 可变负载构件向裂纹扩展部分施加负载,并且用于向可膨胀室供应加压流体的装置负责确保梁部分的位移以这样的方式实现,以便在 一个裂缝增长点。
    • 5. 发明授权
    • Corrosive environment sensor, corrosive environment measuring apparatus
and corrosive environment control system
    • 腐蚀性环境传感器,腐蚀性环境测量仪器和腐蚀性环境控制系统
    • US5378429A
    • 1995-01-03
    • US74320
    • 1993-06-09
    • Makoto HayashiSatoshi KannoNaoto Saito
    • Makoto HayashiSatoshi KannoNaoto Saito
    • G01N3/32G01N3/00G01N3/02G01N3/20G01N17/00G01N27/26G01N19/08
    • G01N3/20G01N17/00G01N2203/0066G01N2203/024
    • A corrosive environment sensor comprises an elongate member having a pair of elongate beam portions and a crack growth portion formed between the pair of beam portions so as to extend axially, and a wedge inserted between the pair of beam portions, wherein the crack growth portion has width thereof defined by quadratic curves extending axially so as to decrease from an axially intermediate portion of the sensor member to an axially intermediate portion of the crack growth portion and increase from the axially intermediate portion of the crack growth portion toward an end of the sensor member. The quadratic curves each consist of a first circular arc with first radius between the axially intermediate portion of the sensor member and the axially intermediate portion of the crack growth portion and a second circular arc with second radius less than the first radius between the axially intermediate portion of the crack growth portion and around the second end of the sensor member. There are further disclosed a corrosive environment measuring apparatus employing the above-mentioned corrosive environment sensor, and a corrosive environment control system employing the above-mentioned corrosive environment measuring apparatus.
    • 腐蚀性环境传感器包括细长构件,其具有一对细长的梁部分和在所述一对梁部分之间形成以便轴向延伸的裂纹扩展部分,以及插入在所述一对梁部分之间的楔形物,其中所述裂纹扩展部分具有 其宽度由沿轴向延伸的二次曲线限定,以便从传感器构件的轴向中间部分减小到裂纹增长部分的轴向中间部分,并且从裂纹扩展部分的轴向中间部分向传感器构件的端部增加 。 二次曲线各自包括第一圆弧,其第一半径在传感器构件的轴向中间部分与裂纹扩展部分的轴向中间部分之间,第二圆弧的第二半径小于轴向中间部分之间的第一半径 的裂纹生长部分和传感器部件的第二端周围。 还公开了采用上述腐蚀性环境传感器的腐蚀性环境测量装置和采用上述腐蚀性环境测量装置的腐蚀性环境控制系统。
    • 8. 发明申请
    • COMPRESSED FIBER STRUCTURAL MATERIAL AND METHOD FOR PRODUCING THE SAME
    • 压缩纤维结构材料及其制造方法
    • US20140336779A1
    • 2014-11-13
    • US14345668
    • 2012-03-09
    • Noboru NakayamaMasaomi HoritaNaoki IzawaHiroto TamaiNaoto SaitoYuki UsuiNobuhide Ogihara
    • Noboru NakayamaMasaomi HoritaNaoki IzawaHiroto TamaiNaoto SaitoYuki UsuiNobuhide Ogihara
    • A61F2/28
    • A61F2/28A61F2002/2835A61F2310/00023A61F2310/00425A61L27/04B22F3/002C22C49/11C22F1/183
    • Provided is a method for easily producing a lamellar compressed fiber structural material which has mechanical characteristics close to those of in vivo bone and which is capable of easily increasing osteoblast even when a difference in strength exists. In order to solve the issues, the method for producing compressed fiber structural material 1, includes: a step of preparing biocompatible fiber 14 having an average diameter of 5 μm-50 μm and an aspect ratio of 20-500; and a step of molding compressed fiber structural material 1 by cold pressing/shearing biocompatible fiber 14, compressed fiber structural material 1 having an average pore diameter that is in the range of 60 μm-100 μm inclusive and a void fraction that is in the range of 25%-50% inclusive, both obtained by measurement in accordance with the mercury penetration method. Further, it is preferable for the cold pressing/shearing is performed by controlling a compressive pressure in the range of 200 MPa-2000 MPa, a shearing stroke length in the range of 0.2 mm-5 mm and a shearing velocity in the range of 0.5 mm/min-5 mm/min.
    • 本发明提供一种容易制造层状压缩纤维结构材料的方法,其具有接近体内骨的机械特性,并且即使存在强度差也能够容易地增加成骨细胞。 为了解决这些问题,制造压缩纤维结构材料1的方法包括:制备平均直径为5μm〜50μm,长径比为20-500的生物相容性纤维14的工序; 以及通过冷压/剪切生物相容性纤维14成型压缩纤维结构材料1的步骤,平均孔径在60μm-100μm范围内的压缩纤维结构材料1和在该范围内的空隙率 为25%-50%,均为根据汞渗透法测量得到的。 此外,优选通过将压缩压力控制在200MPa〜2000MPa,剪切行程长度在0.2mm-5mm范围内,剪切速度在0.5的范围内进行冷压/剪切 mm / min-5mm / min。
    • 10. 发明授权
    • Image sensor unit and image reading apparatus using the same
    • 图像传感器单元和使用其的图像读取装置
    • US08049937B2
    • 2011-11-01
    • US12921659
    • 2009-03-18
    • Naoto Saito
    • Naoto Saito
    • H04N1/04
    • H04N1/02815H04N1/02835H04N1/0311H04N1/0312H04N1/1017H04N2201/02458H04N2201/0247H04N2201/02474H04N2201/02481
    • In a frame (8) holding a sensor board (7) with a plurality of photoelectric conversion elements (6k) arranged and mounted and an imaging element (5) for focusing light reflected from an original onto the sensor board (7), the imaging element (5) includes a plurality of rod lens arrays (5) each having at least one cut end in a lengthwise direction, and cut portions of the rod lens arrays (5) are connected to each other to be tailored to a predetermined reading width, the frame (8) includes a holding section (13) for holding the rod lens arrays (5), and the holding section (13) includes a bottom surface (13B) widened at a part where a cut portion and/or a connection portion of the rod lens arrays (5) is located.
    • 在安装有安装有多个光电转换元件(6k)的传感器基板(7)的框架(8)和用于将从原稿反射的光聚焦到传感器基板(7)上的成像元件(5) 元件(5)包括多个棒状透镜阵列(5),每个棒状透镜阵列(5)在长度方向具有至少一个切割端,并且棒状透镜阵列(5)的切割部分彼此连接以适应预定的读取宽度 框架(8)包括用于保持棒状透镜阵列(5)的保持部分(13),并且保持部分(13)包括在切割部分和/或连接部分 棒状透镜阵列(5)的一部分被定位。