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    • 4. 发明授权
    • Structure of mounting shield cover and display device
    • 安装屏蔽罩和显示装置的结构
    • US07719857B2
    • 2010-05-18
    • US11928401
    • 2007-10-30
    • Yuji Ogawa
    • Yuji Ogawa
    • H05K9/00
    • H05K9/0054
    • A structure of mounting a shield cover according to the present invention includes a shield cover having an insertion part which is inserted into a gap formed between a circuit substrate and a shield cover fastening part along the circuit substrate. The insertion part of the shield cover includes a convex part that is elastic and deformable, and the end of the insertion part and the shield cover fastening part come in contact with each other by the elasticity with the convex part being in contact with the circuit substrate as the fulcrum.
    • 根据本发明的安装屏蔽罩的结构包括屏蔽盖,其具有插入部分,插入部分沿着电路基板插入形成在电路基板和屏蔽盖紧固部分之间的间隙中。 屏蔽罩的插入部分包括弹性和可变形的凸起部分,并且插入部分和屏蔽盖紧固部分的端部通过弹性而彼此接触,凸起部分与电路基板接触 为支点。
    • 6. 发明申请
    • PROCESS FOR PRODUCTION OF AROMATIC COMPOUND
    • 芳香化合物生产工艺
    • US20090240093A1
    • 2009-09-24
    • US12067148
    • 2006-09-29
    • Masaru IchikawaRyoichi KojimaYuji OgawaMasamichi Kuramoto
    • Masaru IchikawaRyoichi KojimaYuji OgawaMasamichi Kuramoto
    • C07C2/00
    • C07C2/76C07C15/02
    • An aromatic compound, particularly benzene, is stably produced in the presence of a catalyst from a lower hydrocarbon having 2 or more carbon atoms, particularly from an ethane-containing gas composition such as ethane gas and natural gas. Disclosed is a process for producing an aromatic compound by reacting ethane or an ethane-containing raw gas in the presence of a catalyst. The catalyst may comprise molybdenum carried on metallosilicate such as H-type ZSM-5H or H-type MCM-22. In the reaction, the temperature is from 550 to 750° C., preferably not lower than 600° C. and not higher than 680° C. Additionally, the raw gas further contains methane and hydrogen is added thereto, thereby improving the production efficiency and stability.
    • 在具有2个或更多个碳原子的低级烃的催化剂的存在下,特别是从含乙烷的气体组合物如乙烷气体和天然气中稳定地制备芳族化合物,特别是苯。 公开了一种在催化剂存在下使乙烷或含乙烷的原料气体反应生成芳族化合物的方法。 催化剂可以包括载在金属硅酸盐上的钼,例如H型ZSM-5H或H型MCM-22。 在该反应中,温度为550〜750℃,优选为600℃以上且不高于680℃。此外,原料气体还含有甲烷,向其中添加氢,从而提高生产效率 和稳定性。
    • 7. 发明申请
    • Saw device manufacturing method
    • 锯装置制造方法
    • US20060150381A1
    • 2006-07-13
    • US10559238
    • 2004-06-01
    • Tatsuya AnzaiYuji OgawaYasuhide Onozawa
    • Tatsuya AnzaiYuji OgawaYasuhide Onozawa
    • H04R17/00
    • H03H9/1085H01L2224/0554H01L2224/05568H01L2224/05573H01L2224/16225H01L2924/00014H03H3/08Y10T29/42H01L2224/05599H01L2224/0555H01L2224/0556
    • To provide a high quality SAW device with enhanced productivity, wherein an outer face of a SAW chip mounted on a mounting substrate is covered with a heat-softened resin sheet and resin is filled on the SAW chip to form an airtight space below an IDT in the SAW device. A method for manufacturing the SAW device includes: a step of flip-chip mounting the SAW chip on the mounting substrate, a step of placing the resin sheet on an upper face of the SAW chip; a laminating step of setting ambient environment to pressure-reduced or vacuum atmosphere and covering the outer face of the SAW chip with resin while securing the airtight space by pressurizing the resin sheet while heating the resin sheet; a press forming step of curing the resin while maintaining the airtight space by maintaining pressurized and heated state in the laminating step; and a post-curing step of performing heating at a temperature and for a time in which the resin completely cures, wherein a thickness tr of the resin sheet before the laminating step satisfies an equation of L/{(X+Gx)(Y+Gy)}≦tr.
    • 为了提供提高生产率的高品质SAW器件,其中安装在安装基板上的SAW芯片的外表面被热软化的树脂片覆盖,树脂填充在SAW芯片上,以在IDT下方形成气密空间 SAW器件。 一种制造SAW器件的方法包括:将SAW芯片倒装安装在安装基板上的步骤,将树脂片放置在SAW芯片的上表面上的步骤; 将周围环境设置为减压或真空气氛并用树脂覆盖SAW芯片的外表面的层压步骤,同时通过在加热树脂板的同时加压树脂板来确保气密空间; 压制成形步骤,通过在层叠步骤中保持加压和加热状态,同时保持气密空间而固化树脂; 以及在树脂完全固化的温度和时间进行加热的后固化步骤,其中层压步骤之前的树脂片的厚度tr满足方程式<?in-line-formula description =“In 线/公式“end =”lead“?> L / {(X + Gx)(Y + Gy)} <= tr。 <?in-line-formula description =“In-line Formulas”end =“tail”?>
    • 8. 发明申请
    • Chromatographic separator
    • 色谱分离器
    • US20050230297A1
    • 2005-10-20
    • US10524802
    • 2003-07-30
    • Yuji Ogawa
    • Yuji Ogawa
    • G01N30/86B01D15/00B01D15/18B01D17/02G01N30/26G01N30/44G01N30/46B01D15/08
    • B01D15/1842B01D17/0202B01D17/0217G01N30/02G01N2030/445B01D15/1821
    • An intermittently-moving-head or simulated-moving-bed chromatographic separator capable of stably maintaining purities of separated components, wherein a loop path (16) is formed by connecting four or more columns (14) to one another. Feed liquid material containing component-A and component-C and liquid eluent are injected into the loop path (16), followed by circulating the same in the loop path (16). A density detector (54) is disposed in the loop path (16) at a position adjacent to a component-A extraction valve (41), to detect the component density in the loop path (16) during the circulation step. When the density of the components reaches a reference density or higher, it is judged that component-A and component-C of the feed liquid material are separated from each other and the process moves from the circulation step to a next component extraction step.
    • 一种间歇移动头或模拟移动床层析分离器,其能够稳定地保持分离的组分的纯度,其中通过将四个或更多个柱(14)彼此连接而形成环路径(16)。 将含有组分A和组分C和液体洗脱液的进料液体材料注入循环路径(16)中,然后在循环路径(16)中循环。 密度检测器(54)在邻近部件A抽取阀(41)的位置处设置在环路(16)中,以在循环步骤中检测环路径(16)中的部件密度。 当组分的密度达到参考密度或更高时,判定进料液体材料的组分A和组分C彼此分离,并且处理从循环步骤移动到下一组分提取步骤。
    • 9. 发明授权
    • Intermittent moving layer type chromatographic separation device
    • 间歇移动层型色谱分离装置
    • US06471859B1
    • 2002-10-29
    • US09787544
    • 2001-06-22
    • Yuji Ogawa
    • Yuji Ogawa
    • B01D1508
    • B01D15/1842B01D2215/022B01D2215/023
    • The rotary member (12) of the rotary valve (10) includes columns (separation vessels) (14) coupled to each other to form an endless circular path (16) and rotates to separate components A and C from a feed liquid material containing two or more components. A concentration sensor (17) is connected to a tube (141) that connects between columns (14) and is mounted on the rotary member (12) rotatably in unison with the columns (14) to detect the concentration of the component A flowing in the circular path (16). Based on the detected result of the concentration sensor (17), fine tuning of the timing of start and the time length of each step can be effected, thereby providing an improved separation performance for the chromatographic separator.
    • 旋转阀(10)的旋转构件(12)包括彼此联接以形成环形圆形路径(16)的列(分离容器)(14)并且旋转以将部件A和C与包含两个的进料液体材料分离 或更多的组件。 浓度传感器(17)连接到连接柱(14)的管(141),并与柱(14)一体地可旋转地安装在旋转构件(12)上,以检测流入的组分A的浓度 圆形路径(16)。 基于浓度传感器(17)的检测结果,可以进行各步骤的启动时间和时间长度的微调,从而提供色谱分离器的分离性能的改善。
    • 10. 发明授权
    • Apparatus for eliminating backlash in a zoom finder
    • 用于消除变焦取景器中的反向间隙的装置
    • US5740474A
    • 1998-04-14
    • US803152
    • 1997-02-19
    • Yuji Ogawa
    • Yuji Ogawa
    • G02B7/04G02B7/10G03B5/00G03B13/12G03B13/04G03B15/03G03B17/04
    • G02B7/10G03B13/12
    • An apparatus for eliminating a backlash in a zoom finder of a zoom lens camera. A cam member is provided with a cam surface that is engaged with movable variable power lens of the finder. The cam member is driven in association with the zoom-photographing lens, and the cam surface is provided with a zoom section as well as a transfer section in which no movement of the movable variable power lens occurs. A backlash eliminating cam surface is provided separately from the cam surface on the cam member for the movable variable power lens. An oblique cam surface is provided on the backlash eliminating cam surface and is inclined with respect to a plane perpendicular to the optical axis of the movable variable power lens. The oblique cam surface is formed in a section corresponding to the zoom section side of the transfer section of the cam surface. A backlash eliminating member is biased and pressed against the oblique cam surface to exert a drive force on the cam member.
    • 一种用于消除变焦镜头相机的变焦取景器中的间隙的装置。 凸轮构件设置有与取景器的可移动可变功率透镜接合的凸轮表面。 凸轮构件与变焦拍摄镜头相关联地被驱动,并且凸轮表面设置有变焦部分以及其中不移动可变功率透镜的移动的转印部分。 与可动可变功率透镜的凸轮构件上的凸轮表面分开设置有间隙消除凸轮表面。 斜齿轮表面设置在齿隙消除凸轮表面上,并且相对于可移动可变功率透镜的光轴垂直的平面倾斜。 倾斜凸轮表面形成在与凸轮表面的转印部分的变焦部分侧对应的部分中。 齿隙消除部件偏置并压靠在倾斜凸轮表面上,以对凸轮部件施加驱动力。