会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Method and device for assay
    • 测定方法和装置
    • US08802426B2
    • 2014-08-12
    • US13262526
    • 2010-03-30
    • Mikinaga MoriJunichi KatadaTakayoshi OyamadaHideyuki KarakiMasayasu KonishiHiroki Terada
    • Mikinaga MoriJunichi KatadaTakayoshi OyamadaHideyuki KarakiMasayasu KonishiHiroki Terada
    • B01L3/00G01N33/543
    • G01N33/54386
    • A device for assay can evenly develop solution, and performs highly accurate and sensitive measurement. A first device part (10) maintains a second insoluble carrier (12) and a third insoluble carrier (13) in such a manner that they overlap with each other at a detection portion (14) of a first insoluble carrier (11). These three carriers (11), (12) and (13) are housed not in contact with each other. A pressing unit (18) having a pressing surface (18a) that is parallel to the detection portion (14) is provided on an inner surface of the second device part (20) facing the detection portion (14). The pressing surface (18a) is displaced by being pressed toward the detection portion (14), and presses, from the upper side of the first insoluble carrier (11), the second insoluble carrier (12) and the third insoluble carrier (13) onto the first insoluble carrier (11). The first device part (10) and the second device part (20) are joined together.
    • 用于测定的装置可以均匀地开发溶液,并进行高度精确和灵敏的测量。 第一装置部分(10)以这样的方式保持第二不溶性载体(12)和第三不溶性载体(13),使得它们在第一不溶性载体(11)的检测部分(14)处彼此重叠。 这三个载体(11),(12)和(13)彼此不接触地容纳。 在与检测部(14)相对的第二装置部(20)的内表面上设置有具有与检测部(14)平行的按压面(18a)的按压部(18)。 按压面(18a)通过朝向检测部(14)被按压而移位,从第一不溶性载体(11)的上侧按压第二不溶性载体(12)和第三不溶性载体(13) 到第一不溶性载体(11)上。 第一装置部件(10)和第二装置部件(20)连接在一起。
    • 5. 发明申请
    • METHOD AND DEVICE FOR ASSAY
    • 用于测定的方法和装置
    • US20120058465A1
    • 2012-03-08
    • US13262526
    • 2010-03-30
    • Mikinaga MoriJunichi KatadaTakayoshi OyamadaHideyuki KarakiMasayasu KonishiHiroki Terada
    • Mikinaga MoriJunichi KatadaTakayoshi OyamadaHideyuki KarakiMasayasu KonishiHiroki Terada
    • C12Q1/70C12M1/34
    • G01N33/54386
    • A device for assay can evenly develop solution, and performs highly accurate and sensitive measurement. A first device part (10) maintains a second insoluble carrier (12) and a third insoluble carrier (13) in such a manner that they overlap with each other at a detection portion (14) of a first insoluble carrier (11). These three carriers (11), (12) and (13) are housed not in contact with each other. A pressing unit (18) having a pressing surface (18a) that is parallel to the detection portion (14) is provided on an inner surface of the second device part (20) facing the detection portion (14). The pressing surface (18a) is displaced by being pressed toward the detection portion (14), and presses, from the upper side of the first insoluble carrier (11), the second insoluble carrier (12) and the third insoluble carrier (13) onto the first insoluble carrier (11). The first device part (10) and the second device part (20) are joined together.
    • 用于测定的装置可以均匀地开发溶液,并进行高度精确和灵敏的测量。 第一装置部分(10)以这样的方式保持第二不溶性载体(12)和第三不溶性载体(13),使得它们在第一不溶性载体(11)的检测部分(14)处彼此重叠。 这三个载体(11),(12)和(13)彼此不接触地容纳。 在与检测部(14)相对的第二装置部(20)的内表面上设置有具有与检测部(14)平行的按压面(18a)的按压部(18)。 按压面(18a)通过朝向检测部(14)被按压而移位,从第一不溶性载体(11)的上侧按压第二不溶性载体(12)和第三不溶性载体(13) 到第一不溶性载体(11)上。 第一装置部件(10)和第二装置部件(20)连接在一起。
    • 9. 发明授权
    • Diagnostic device for exhaust gas recirculation system
    • 废气再循环系统诊断装置
    • US07104259B2
    • 2006-09-12
    • US11085176
    • 2005-03-22
    • Hiroki Terada
    • Hiroki Terada
    • F02M25/07G01M15/00
    • F02D41/0055F02D41/222F02D2011/108F02D2200/0406F02M26/47F02M26/49Y02T10/47
    • A failure diagnostic device for an exhaust gas recirculation (EGR) apparatus, which can detect an intake pipe pressure at a high accuracy with a simple control and can prevent false diagnosis of an EGR system. If at least either one of first and second off-mode intake pipe pressures P1off, P2off exceeds a cancel determination value K, an ECU determines that the intake pipe pressures P1off, Pon and P2off are not properly detected, and cancels the failure diagnosis of the EGR system. Therefore, the false diagnosis of the EGR system can be avoided with a simplified process without requiring specific determinations on individual abnormal states of the various components other than the EGR system. By setting the cancel determination value K based on the intake pipe pressure P resulting when EGR off-control is executed in a state of an EGR valve being stuck in a fully-open position, each improperly-detected intake pipe pressure can be excluded with reliability.
    • 一种用于排气再循环(EGR)装置的故障诊断装置,其能够以简单的控制以高精度检测进气管压力并且可以防止EGR系统的错误诊断。 如果第一和第二离模式进气管压力P 1off,P 2off以上的至少任一个超过取消判定值K,则ECU判定进气管压力P 没有正确检测到<1>,<! - SIPO - >和<! - SIPO - >分离,并且不排除EGR系统的故障诊断。 因此,可以通过简化的处理来避免EGR系统的错误诊断,而不需要对EGR系统以外的各种组件的各个异常状态进行特定的确定。 通过根据在EGR阀处于完全打开位置的状态下执行EGR控制时的进气管压力P来设定取消判定值K,可以可靠地排除不正确检测的进气管压力 。