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    • 2. 发明申请
    • Method of Analyzing Organic Chemical Substances and Apparatus for Analysis
    • 分析有机化学物质的方法和分析仪器
    • US20080209983A1
    • 2008-09-04
    • US10581317
    • 2004-12-03
    • Ryoichi SasanoYutaka Nakanishi
    • Ryoichi SasanoYutaka Nakanishi
    • G01N1/28
    • G01N30/462G01N2030/062G01N30/14
    • A combination of a liquid chromatograph and a gas chromatograph was a possible measure for improving precision in analyzing organic chemical substances. However, because elutes from liquid chromatoghaphies contain water and a highly polar solvent, injection thereof into a gas chromatograph has been impossible. Consequently, to develop an analytical method which realizes that combination and an apparatus thereof has been a subject. The method of the quantitative analysis comprises subjecting a sample for analysis prepared beforehand by extracting organic chemical substances from an assay sample to fractionation by a liquid chromatograph, continuously adsorbing a fractionated elute containing a substance to be determined onto a solid-phase cartridge while conducting the fractionation, eluting this substance, which has been adsorbed on the solid-phase cartridge, with an eluent, and transferring the elute to a storage chamber of a gas chromatograph.
    • 液相色谱仪和气相色谱仪的组合是提高分析有机化学物质精度的可行措施。 然而,因为来自液体色谱法的洗脱液含有水和高极性溶剂,所以注入气相色谱仪是不可能的。 因此,开发一种实现该组合的分析方法及其装置已经成为一个主题。 定量分析方法包括:将样品预先分析,通过从测定样品中提取有机化学物质进行分析,通过液相色谱仪进行分级,将含有待测物质的分馏洗脱液连续吸附到固相盒上,同时进行 分离,用吸附在固相柱上的该物质洗脱,并将洗脱液转移到气相色谱仪的储存室中。
    • 3. 发明授权
    • Method of analyzing organic chemical substances and apparatus for analysis
    • 有机化学物质分析方法和分析仪器
    • US08042379B2
    • 2011-10-25
    • US10581317
    • 2004-12-03
    • Ryoichi SasanoYutaka Nakanishi
    • Ryoichi SasanoYutaka Nakanishi
    • G01N1/28G01N30/84
    • G01N30/462G01N2030/062G01N30/14
    • A combination of a liquid chromatograph and a gas chromatograph was a possible measure for improving precision in analyzing organic chemical substances. However, because elutes from liquid chromatoghaphies contain water and a highly polar solvent, injection thereof into a gas chromatograph has been impossible. Consequently, to develop an analytical method which realizes that combination and an apparatus thereof has been a subject. The method of the quantitative analysis comprises subjecting a sample for analysis prepared beforehand by extracting organic chemical substances from an assay sample to fractionation by a liquid chromatograph, continuously adsorbing a fractionated elute containing a substance to be determined onto a solid-phase cartridge while conducting the fractionation, eluting this substance, which has been adsorbed on the solid-phase cartridge, with an eluent, and transferring the elute to a storage chamber of a gas chromatograph.
    • 液相色谱仪和气相色谱仪的组合是提高分析有机化学物质精度的可行措施。 然而,因为来自液体色谱法的洗脱液含有水和高极性溶剂,所以注入气相色谱仪是不可能的。 因此,开发一种实现该组合的分析方法及其装置已经成为一个主题。 定量分析方法包括:将样品预先分析,通过从测定样品中提取有机化学物质进行分析,通过液相色谱仪进行分级,将含有待测物质的分馏洗脱液连续吸附到固相盒上,同时进行 分离,用吸附在固相柱上的该物质洗脱,并将洗脱液转移到气相色谱仪的储存室中。
    • 4. 发明申请
    • Analytical Method for Organic Compounds Utilizing Spe Cartridges and Apparatus Therefor
    • 有机化合物利用香烟的分析方法及其设备
    • US20080179252A1
    • 2008-07-31
    • US11661264
    • 2005-06-14
    • Ryoichi SasanoKazuaki KijiYutaka Nakanishi
    • Ryoichi SasanoKazuaki KijiYutaka Nakanishi
    • B01D15/08
    • G01N30/24G01N35/1095G01N2030/085
    • This invention relates to an analytical method and an apparatus utilizing a SPE cartridge, which can realize enhanced accuracy and workability in the analysis of trace substances, such as residual pesticides, can clean the inside of piping, needle valves etc, can eliminate the influence on the analysis and can conduct these operations automatically. In the analytical method and apparatus utilizing a SPE cartridge, analytes previously adsorbed to a SPE cartridge is eluted with a solvent from a liquid feed pump. The eluate was injected into a storage chamber in a gas chromatograph through a needle inserted into an injection port in the storage chamber. The needle is pulled up from the injection port, and the inside of the needle is washed with a solvent fed from the liquid feed pump. The wash liquid is discarded, and the analysis of organic compounds as analytes in an subject sample is carried out.
    • 本发明涉及一种利用SPE滤芯的分析方法和装置,其可以在残留农药等痕量物质的分析中实现更高的精度和可操作性,可以清洗管道内部,针阀等,可以消除对 分析并自动进行这些操作。 在使用SPE柱的分析方法和装置中,先前被吸附到SPE柱的分析物用来自液体进料泵的溶剂洗脱。 将洗脱液通过插入储存室中的注入口中的针注入气相色谱仪的储存室中。 针从注射口拉起,针头内部用从液体供给泵供给的溶剂洗涤。 将洗涤液弃去,对被检样品中的有机化合物作为分析物进行分析。
    • 5. 发明申请
    • Stationary Phase Extraction Cartridge
    • 固定相萃取筒
    • US20070240777A1
    • 2007-10-18
    • US10594546
    • 2005-03-24
    • Ryoichi SasanoKazuaki KijiYutaka Nakanishi
    • Ryoichi SasanoKazuaki KijiYutaka Nakanishi
    • B05B1/22
    • G01N30/603G01N30/6065Y10T137/9464
    • An inflow side frit (3), a stationary phase filler (4), and an outflow side frit (5) are installed in a cylindrical cartridge body (1A) from the upper side, a stopper part (1f) supporting the outflow side frit is formed at the inner surface bottom end of the cartridge body (1A), and a fitting part capable of holding the inserted state of the lower end of the other cartridge body (1A) inserted from the upper end of the cartridge body (1A) to a specified position is formed on the cartridge body (1A). The fitting part comprises an inside tapered surface (1g) formed on the inner surface of the cartridge body (1A) on the inserted side and having a diameter increased toward the upper side and an outside tapered surface formed on the outer surface of the cartridge body on the insert side and having a diameter increased toward the upper side.
    • 流入侧玻璃料(3),固定相填料(4)和流出侧玻璃料(5)从上侧安装在圆筒形筒体(1A)中,支撑流出物的止动部分(1f) 在盒主体(1A)的内表面底端形成侧玻璃料,并且能够保持从盒的上端插入的另一个盒体(1A)的下端的插入状态的装配部 主体(1A)到指定位置形成在盒体(1A)上。 装配部分包括形成在插入侧的盒体(1A)的内表面上的内锥形表面(1g),并且具有朝向上侧增加的直径和形成在该外壳的外表面上的外锥形表面 盒体在插入物侧上并且具有朝向上侧增加的直径。
    • 6. 发明申请
    • INCENTIVE-BASED SERVER COOPERATION SYSTEM, INCENTIVE-BASED SERVER COOPERATION METHOD AND INCENTIVE-BASED SERVER COOPERATION PROGRAM
    • 基于激励的服务器合作系统,基于激励的服务器合作方法和基于激励的服务器合作计划
    • US20120041807A1
    • 2012-02-16
    • US13263235
    • 2010-04-06
    • Takushi SogoYutaka NakanishiTomohiro Chuzenji
    • Takushi SogoYutaka NakanishiTomohiro Chuzenji
    • G06Q30/02
    • G06Q30/06G06F2213/0038G06Q30/0214
    • Only a limited number of service servers have been provided with the function of feeding back profits obtained through cooperation of multiple service servers to developers of cooperation modules and business entities running the service servers as incentives. In the present invention, a cooperation server for achieving cooperation between the service servers includes: a business entity data storage means for storing business entity data of the respective service servers; a cooperation module storage means for storing cooperation modules used for achieving cooperation between the service servers; a developer data storage means for storing developer data related to developers of the cooperation modules; a cooperation history storage means for storing cooperation history data of the cooperation modules; and an incentive settlement means for performing calculation of amounts of incentives and payment of the incentives.
    • 只有有限数量的服务服务器具有将通过多个服务服务器的合作获得的利润反馈给运营服务服务器的合作模块和业务实体的开发者的功能作为激励。 在本发明中,用于实现服务服务器之间的协作的协作服务器包括:业务实体数据存储装置,用于存储各服务服务器的业务实体数据; 合作模块存储装置,用于存储用于实现服务服务器之间的协作的协作模块; 用于存储与所述协作模块的开发者相关的开发者数据的开发者数据存储装置; 合作历史存储装置,用于存储合作模块的合作历史数据; 以及激励结算手段,用于计算奖励金额和支付奖励。
    • 7. 发明申请
    • Thermally Conductive Adhesive Composition and Adhesion Method
    • 导热粘合剂组合物和粘合方法
    • US20080295959A1
    • 2008-12-04
    • US12121938
    • 2008-05-16
    • Tsukasa IshigakiYutaka NakanishiHisashi Aoki
    • Tsukasa IshigakiYutaka NakanishiHisashi Aoki
    • B29C65/54C08F2/44
    • C09J133/04C08F220/26C09J4/06
    • A thermally conductive adhesive composition contains a polymerizable (meth)acrylic compound (A) comprising at least one of a (meth)acrylic monomer and a (meth)acrylic oligomer, an organic peroxide (B), a thermally conductive filler (C) and a vanadium compound (D). The volume ratio α of the polymerizable (meth)acrylic compound (A) to the thermally conductive filler (C) determined by the following formula (1) is 0.40 to 0.65. 40 to 100% by mass of the thermally conductive filler (C) is subjected to hydrophobic surface treatment. Volume ratio α=Volume of Thermally conductive filler (C)/(Volume of Polymerizable(meth)acrylic compound (A)+Volume of Thermally conductive filler (C))   (1)
    • 导热性粘合剂组合物含有包含(甲基)丙烯酸系单体和(甲基)丙烯酸系低聚物,有机过氧化物(B),导热性填料(C)和导热性填充剂(C)中的至少一种的聚合性(甲基)丙烯酸系化合物 钒化合物(D)。 由下式(1)确定的可聚合(甲基)丙烯酸化合物(A)与导热性填料(C)的体积比α为0.40〜0.65。 40〜100质量%的导热性填料(C)进行疏水性表面处理。 体积比α=导热填料的体积(C)/(聚合性(甲基)丙烯酸化合物的体积(A))+体积比 导热填料(C))(1)<?in-line-formula description =“In-line Formulas”end =“tail”?>
    • 8. 发明授权
    • Camera-equipped recording/reproducing apparatus
    • 相机配备的录音/再现设备
    • US07339624B2
    • 2008-03-04
    • US10659276
    • 2003-09-11
    • Yutaka Nakanishi
    • Yutaka Nakanishi
    • H04N5/225
    • G11B31/006H04N5/2251
    • A camera-equipped recording/reproducing apparatus is equipped with a lens assembly having a lens group and a body having a first side face and a second side face opposite to the first side face when viewed from an object to be photographed. The body is provided in series with and behind the lens assembly in a direction of an optical axis of the lens group when viewed from the object. A monitor screen is provided on the first side face of the body. A grip is provided on the second side face of the body. The grip houses a recording/reproducing unit. The grip is rotatable about an axis almost orthogonal to the optical axis.
    • 具有照相机的记录/再现装置配备有具有透镜组的透镜组件和当从被拍摄对象观察时具有第一侧面和与第一侧面相对的第二侧面的主体。 当从物体观察时,本体在透镜组的光轴的方向上与透镜组件串联设置并在其后面。 在身体的第一侧面上设置有监视器屏幕。 在本体的第二侧面设置有把手。 手柄装有记录/再现单元。 手柄可以绕与光轴几乎正交的轴线旋转。
    • 10. 发明授权
    • Remote control receiver
    • 遥控接收器
    • US06181741B2
    • 2001-01-30
    • US09102086
    • 1998-06-22
    • Yutaka Nakanishi
    • Yutaka Nakanishi
    • H03K708
    • G08C23/04A63F2300/1025G08C19/28
    • The back end position of a pulse, which is transmitted from a remote control, varies according to the transmission distance, and the pulse width changes. A remote control receiver of the present invention detects the pulse width of a header, which is formed at the head of each frame in a remote control signal from the remote control, so as to detect the transmission distance of the remote control signal and a change in back end position of each pulse in a data part, which is transmitted after the header. Then, the back end position of each pulse is corrected to original. This eliminates the change in pulse width resulting from a change in transmission distance, and increases the allowable range of the transmission distance of the remote control.
    • 从遥控器发送的脉冲的后端位置根据传输距离而变化,并且脉冲宽度变化。 本发明的遥控接收机检测来自遥控器的遥控信号中每帧头部形成的报头的脉冲宽度,以便检测遥控信号的传输距离和变化 在头部之后发送的数据部分中的每个脉冲的后端位置。 然后,将每个脉冲的后端位置校正为原始位置。 这消除了由于传输距离变化引起的脉冲宽度的变化,并增加了遥控器的传输距离的允许范围。