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    • 3. 发明申请
    • PANEL JOINT STRUCTURE
    • 面板接头结构
    • US20140016993A1
    • 2014-01-16
    • US13814206
    • 2012-01-16
    • Daisuke Itoh
    • Daisuke Itoh
    • B32B37/18
    • B32B37/18B23K11/115B23K33/004B23K2101/18Y10T403/477Y10T403/479
    • In a panel joint structure, a first joint portion and first load transfer portions are formed on an end portion of a first panel, and a second joint portion and second load transfer portions are formed on an end portion of a second panel. A first joint surface of the first joint portion and a second joint surface of the second joint portion are welded and adhered to each other, and first load transfer surfaces of the first load transfer portions and second load transfer surfaces of the second load transfer portions are adhered to each other. The first load transfer surfaces are contained in the range of the plate thickness of a first panel body portion, and the second load transfer surfaces are contained in the range of the plate thickness of a second panel body portion.
    • 在面板接合结构中,第一接合部和第一负载传递部形成在第一面板的端部上,第二接合部和第二负载传递部形成在第二面板的端部。 第一接合部的第一接合面和第二接合部的第二接合面被焊接并粘接,第一负载传递部和第二负载传递部的负载传递面的第一负载传递面为 彼此相依。 第一负载传递面包含在第一面板主体部的板厚的范围内,第二负载传递面被容纳在第二面板主体部的板厚的范围内。
    • 5. 发明授权
    • Speaker
    • 扬声器
    • US08213671B2
    • 2012-07-03
    • US12447240
    • 2006-11-01
    • Kyoichi MatsudaToshihiro HikichiDaisuke ItohTeruaki Kaiya
    • Kyoichi MatsudaToshihiro HikichiDaisuke ItohTeruaki Kaiya
    • H04R1/00H04R7/00
    • H04R9/06
    • A speaker having improved sound quality by reducing a phase difference and also having an outstanding outward appearance is provided. In a speaker comprising a vibrating element 10, a drive unit 20 for vibrating the vibrating element 10, and a frame 30 supporting the vibrating element 10 and the drive unit 20, the vibrating element 10 comprises a front face region 10A which forms a continuously curved face having a convex-shaped cross-sectional portion T1 formed in its central portion and a concave-shaped cross-sectional portion T2 formed around the portion T1, and a connecting region 10B located on the rear side of the front face region 10A and connected to the drive unit 20.
    • 提供了通过减小​​相位差并且具有优异的外观来改善声音质量的扬声器。 在包括振动元件10的扬声器中,用于使振动元件10振动的驱动单元20和支撑振动元件10和驱动单元20的框架30,振动元件10包括:前面区域10A,其形成连续弯曲的 在其中央部形成有凸状的截面部分T1和形成在该部分T1周围的凹形截面部分T2的面以及位于正面区域10A后侧的连接区域10B, 到驱动单元20。
    • 7. 发明授权
    • Digital camera and method of controlling the same
    • 数码相机及其控制方法
    • US07620308B2
    • 2009-11-17
    • US11634900
    • 2006-12-07
    • Daisuke Itoh
    • Daisuke Itoh
    • G03B13/18G03B15/03
    • G03B13/36G02B7/32H04N5/23212
    • In order to carry out relatively accurate AF control while eliminating the adverse effect on a reproduced moving picture, a subject is imaged every 1/30 seconds, so that subject images are obtained. Image data representing the subject images respectively corresponding to odd-numbered frames are recorded on a memory card as image data representing the moving picture. At timing where the subject images respectively corresponding to even-numbered frames are obtained by the imaging, auxiliary light is irradiated onto the subject. A high-frequency component is extracted from the image data representing each of the subject images respectively corresponding to even-numbered frames, so that focusing data representing the degree of focusing of the subject image is obtained. Since the subject image used for focusing control is bright, focusing control can be carried out relatively accurately. The image data to be recorded is not affected by the auxiliary light, so that the reproduced moving picture is also avoided being affected by the auxiliary light.
    • 为了进行相对精确的AF控制,同时消除对再现的运动图像的不利影响,每1/30秒对被摄体进行成像,从而获得被摄体图像。 表示分别对应于奇数帧的被摄体图像的图像数据作为表示运动图像的图像数据被记录在存储卡上。 在通过成像获得分别对应于偶数帧的被摄体图像的定时,辅助光被照射到被摄体上。 从表示与偶数帧对应的每个被摄体图像的图像数据中提取高频分量,从而获得表示被摄体图像的聚焦程度的聚焦数据。 由于用于聚焦控制的被摄体图像明亮,所以可以相对精确地进行聚焦控制。 要记录的图像数据不受辅助光影响,使得再现的运动图像也避免受到辅助光的影响。
    • 9. 发明申请
    • Metal nanoparticle dispersion usable for ejection in the form of fine droplets to be applied in the layered shape
    • 金属纳米粒子分散体可用于以层状形式施加的微小液滴形式的喷射
    • US20070098883A1
    • 2007-05-03
    • US10571507
    • 2004-09-10
    • Daisuke ItohAkihito IzumitaniNoriaki HataYorishige MatsubaKazuhiro MurataHiroshi Yokoyama
    • Daisuke ItohAkihito IzumitaniNoriaki HataYorishige MatsubaKazuhiro MurataHiroshi Yokoyama
    • B05D1/12
    • H05K3/125C09D5/24C09D17/006H01B1/02H01B1/22H05K2201/0257H05K2203/013
    • The present invention provides a dispersion usable for forming an electroconductive layer having an extremely fine pattern and a high thickness/minimum width ratio in the cross-section, and which has a high fluidity enabling application of inkjet to draw a fine pattern at high accuracy and contains only metal nanoparticles as a conductive medium. According to the present invention, a metal nanoparticle dispersion suitable to multiple layered coating by jetting in the form of fine droplets is prepared by dispersing metal nanoparticles having an average particle size of 1 to 100 nm in a dispersion solvent having a boiling point of 80° C. or higher in such a manner that the volume percentage of the dispersion solvent is selected in the range of 55 to 80% by volume and the fluid viscosity (20° C.) of the dispersion is chosen in the range of 2 mPa·s to 30 mPa·s, and then when the dispersion is discharged in the form of fine droplets by inkjet method or the like, the dispersion is concentrated by evaporation of the dispersion solvent in the droplets in the course of flight, coming to be a viscous dispersion which can be applicable to multi-layered coating.
    • 本发明提供了一种可用于形成横截面具有极细图案和高厚度/最小宽度比的导电层的分散体,并且具有高流动性,能够应用喷墨以高精度绘制精细图案, 仅含有金属纳米粒子作为导电介质。 根据本发明,通过将平均粒度为1〜100nm的金属纳米粒子分散在沸点为80℃的分散溶剂中,制备适用于多层涂层的金属纳米粒子分散体, C以上,分散溶剂的体积百分比在55〜80体积%的范围内选择,分散体的流体粘度(20℃)选择在2mPa的范围内。 s至30mPa.s,然后当通过喷墨法等以微细液滴的形式将分散体排出时,通过在飞行中蒸发分散溶剂在液滴中浓缩分散体,成为 粘性分散体,可应用于多层涂料。