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    • 101. 发明申请
    • Control Method of Exhaust Gas Purification System and Exhaust Gas Purification System
    • 废气净化系统和废气净化系统的控制方法
    • US20090183494A1
    • 2009-07-23
    • US12227901
    • 2007-05-14
    • Takuro IwashitaTetsuya MurataTakashi IkedaTatsuo Mashiko
    • Takuro IwashitaTetsuya MurataTakashi IkedaTatsuo Mashiko
    • F01N9/00F01N3/00F01N3/10
    • F02D41/029F01N3/0231F01N3/0235F01N2260/14F02D41/2416F02D41/2422F02D41/402F02D2250/12F02D2250/21Y02T10/44
    • In forced regeneration control of an exhaust gas purification device 12, the number of data for injection control such as the number of meshes of a data map and the number of data maps for multi injection control is decreased while occurrence of torque shock, which is a rapid fluctuation of a generated torque, is avoided. In the forced regeneration control of the exhaust gas purification device 12, when an operation state of an internal combustion engine 10 is a high-load operation state, the normal injection control by stopping the multi injection is carried out and according to a rotation speed Ne and a load Q of the internal combustion engine 10, a region for control is divided into a multi-injection control region Rm, a transition region Rt, and a normal injection control region Rn, and in the transition region Rt, data Ft(i) for injection control obtained by interpolation of data Fml(i) for injection control on the multi-injection control region Rm side and data Fnl(i) for injection control on the normal injection control region Rn side is used.
    • 在废气净化装置12的强制再生控制中,数据图的网格数量和多次喷射控制的数据图的数量等喷射控制数据减少,同时产生作为 避免产生转矩的快速波动。 在排气净化装置12的强制再生控制中,当内燃机10的运转状态为高负荷运转状态时,通过停止多次喷射进行正常喷射控制,并根据转速Ne 和内燃机10的负载Q,将用于控制的区域划分为多喷射控制区域Rm,过渡区域Rt和正常喷射控制区域Rn,并且在过渡区域Rt中,数据Ft(i )用于通过对用于多喷射控制区域Rm侧的喷射控制的数据Fml(i)进行插值获得的喷射控制,并且使用用于喷射控制区域Rn侧的喷射控制的数据Fn1(i)。
    • 102. 发明授权
    • Illuminating device, and projection type video display
    • 照明装置和投影型视频显示器
    • US07524084B2
    • 2009-04-28
    • US11091482
    • 2005-03-29
    • Takashi IkedaHideyuki Kanayama
    • Takashi IkedaHideyuki Kanayama
    • F21V9/00
    • F21V29/74F21V29/02F21V29/76G02F1/133603H04N9/3105H04N9/3144
    • Three light sources are provided as a light source. A first light source emits a light in red, a second light source emits a light in green, and a third light source emits a light in blue. Each light source is a light source in which a plurality of LEDs (light-emitting diodes) are arranged in the same plane surface. The first light source, the second light source, and the third light source are arranged on the same plane surface. Furthermore, lines connecting the first light source, the second light source, and the third light source form a triangle. Light fluxes (primary optical axes) of each light source are parallel with each other. The first light source, the second light source, and the third light source are arranged on one piece of a cooling plate.
    • 提供三个光源作为光源。 第一光源发出红色的光,第二光源发出绿色的光,第三光源发出蓝色的光。 每个光源是其中多个LED(发光二极管)布置在同一平面中的光源。 第一光源,第二光源和第三光源布置在同一平面上。 此外,连接第一光源,第二光源和第三光源的线形成三角形。 每个光源的光通量(主光轴)彼此平行。 第一光源,第二光源和第三光源布置在一片冷却板上。
    • 104. 发明申请
    • Method for Detecting Target Substance and Target-Substance Detection Kit
    • 检测目标物质和目标物质检测试剂盒的方法
    • US20090000360A1
    • 2009-01-01
    • US12162789
    • 2007-03-30
    • Miki OgawaMasato MinamiTakeshi ImamuraTakashi IkedaKazumichi Nakahama
    • Miki OgawaMasato MinamiTakeshi ImamuraTakashi IkedaKazumichi Nakahama
    • G01N30/62G06K7/08
    • G01N33/54373Y10S436/807
    • The present invention provides a method for detecting a target substance by detecting the presence or concentration of a target substance in a sample solution by bringing the sample solution into contact with a detecting element including a detecting part and a non-detecting part and detecting the presence or number of a magnetic label (magnetic marker) present in the vicinity of the surface of the detecting part and provides a target-substance detection kit. The surface potential ψ1 of the magnetic label in the sample solution, the surface potential ψ2 of the detecting parts and the surface potential ψ3 of the non-detecting part satisfy any one of the following relationships i) to iv): ψ1ψ3>0 and ψ2=0,  i) ψ1ψ2 0, and |ψ2|>|ψ3|, and  iii) ψ1ψ2
    • 本发明提供了一种通过使样品溶液与包括检测部分和非检测部分的检测元件接触来检测样品溶液中目标物质的存在或浓度来检测目标物质的方法, 或存在于检测部件表面附近的磁性标签(磁性标记)的数量,并提供目标物质检测试剂盒。 样品溶液中的磁性标记的表面电位psi1,检测部分的表面电位psi2和非检测部分的表面电位psi3满足以下关系式i)至iv)中的任何一个:<?in-line -formulae description =“In-line Formulas”end =“lead”?> psi1psi3> 0 and psi2 = 0,i)<?in-line-formula description =“In-line Formulas”end =“tail”?> ?in-line-formula description =“In-line Formulas”end =“lead”?> psi1psi2 <0 and psi3 = 0,ii)<?in-line-formula description =“In-line Formulas”end =“tail “?> <?in-line-formula description =”在线公式“end =”lead“?> psi1psi2 <0,psi2psi3> 0和| psi2 |> | psi3 |,以及iii) -formulae description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line formula”end =“lead”?> psi1psi2 <0 and psi2psi3 <0; iv)<?in-line-formula description =“In-line Formulas”end =“tail”?>,由磁性标签承载的目标物质由检测部分所承载的主捕获体或目标物质 由被检测部分承载的主要捕获体捕获的捕获体被由磁性标签承载的次级捕获体俘获。