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    • 6. 发明申请
    • CUTTING TOOLS
    • 切割工具
    • US20090188361A1
    • 2009-07-30
    • US12042438
    • 2008-03-05
    • Peter SimpsonRainer Glauning
    • Peter SimpsonRainer Glauning
    • B26D5/00
    • A01G3/053A01D34/135A01D34/30A01D34/37A01D34/408A01G2003/0461Y10T83/525Y10T83/536
    • The present invention relates to cutting tools, in particular, to control systems for cutters such as vegetation cutters, especially hedge cutters or trimmers (10). Hedge cutters (10) frequently suffer in use from a problem of blocked cutting blades when they encounter a twig or branch whose size or density exceeds the capacity of the blades. We describe a vegetation cutting apparatus (10) having a plurality of cutting blades (11,12), at least one of which blades (11,12) is drivable by means of an electric motor. At least one driven blade (11,12) is movable between two predefined points of maximum travel. The apparatus (10) comprises a control means which causes a change of direction in the movement of the at least one movable blade at a point intermediate the points of maximum travel in response to an event sensed by the control means.
    • 技术领域本发明涉及切割工具,特别涉及用于诸如植被切割器,特别是树篱刀或修剪器(10)的切割器的控制系统。 冲锋刀(10)经常遭受使用中的切割刀片的问题,当它们遇到尺寸或密度超过刀片容量的枝条或枝条​​时。 我们描述具有多个切割刀片(11,12)的植被切割设备(10),其中至少一个刀片(11,12)可以通过电动机驱动。 至少一个从动叶片(11,12)可在两个预定的最大行程点之间移动。 装置(10)包括控制装置,其响应于由控制装置感测到的事件,使至少一个可动刀片在最大行程点之间的点处的移动方向发生变化。
    • 10. 发明申请
    • Electrode systems for electrochemical sensors
    • 电化学传感器用电极系统
    • US20050115832A1
    • 2005-06-02
    • US10897312
    • 2004-07-21
    • Peter SimpsonJames PetisceVictoria Carr-BrendelJames Brauker
    • Peter SimpsonJames PetisceVictoria Carr-BrendelJames Brauker
    • G01N20060101G01N27/26G01N27/416
    • G01N27/3274A61B5/14532A61B5/14865C12Q1/001
    • The present invention relates generally to systems and methods for improved electrochemical measurement of analytes. The preferred embodiments employ electrode systems including an analyte-measuring electrode for measuring the analyte or the product of an enzyme reaction with the analyte and an auxiliary electrode configured to generate oxygen and/or reduce electrochemical interferants. Oxygen generation by the auxiliary electrode advantageously improves oxygen availability to the enzyme and/or counter electrode; thereby enabling the electrochemical sensors of the preferred embodiments to function even during ischemic conditions. Interferant modification by the auxiliary electrode advantageously renders them substantially non-reactive at the analyte-measuring electrode, thereby reducing or eliminating inaccuracies in the analyte signal due to electrochemical interferants.
    • 本发明一般涉及用于改进分析物的电化学测量的系统和方法。 优选实施例采用电极系统,包括用于测量被分析物的分析物测量电极或与分析物的酶反应的产物以及被配置为产生氧和/或减少电化学干扰剂的辅助电极。 通过辅助电极产生氧气有利地提高了对酶和/或对电极的氧气可利用性; 从而使得优选实施例的电化学传感器能够在缺血状况下起作用。 通过辅助电极的干扰修饰有利地使得它们在分析物 - 测量电极处基本上不反应,从而减少或消除由于电化学干扰剂引起的分析物信号的不准确性。