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    • 2. 发明授权
    • User interface design framework
    • 用户界面设计框架
    • US09483239B2
    • 2016-11-01
    • US14011724
    • 2013-08-27
    • Jin You ZhuXiang Cai
    • Jin You ZhuXiang Cai
    • G06F9/44
    • G06F3/04847G06F3/0481G06F3/04842G06F8/38
    • Disclosed herein are technologies for a WYSIWYG user interface (UI) design tool that enables runtime behaviors (e.g., content update and user interaction) with UI controls during design time of such controls. That is, using a UI design tool in accordance with the technology described herein, the human designer can see and experience the runtime behavior of the UI controls while designing those controls. This Abstract is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
    • 这里公开的是用于所见即所得用户界面(UI)设计工具的技术,其使得在这种控制的设计时间期间具有UI控件的运行时行为(例如,内容更新和用户交互)。 也就是说,使用根据本文描述的技术的UI设计工具,人类设计者可以在设计这些控件时看到并体验UI控件的运行时行为。 提交本摘要的理解是,它不会用于解释或限制权利要求的范围或含义。
    • 3. 发明授权
    • Electrolytic sensor providing controlled burn-off of deposits on the
electrodes
    • 电解传感器提供电极上沉积物的受控烧毁
    • US5851369A
    • 1998-12-22
    • US716998
    • 1996-09-20
    • Xiang Cai
    • Xiang Cai
    • G01N27/407
    • G01N27/407
    • A sensor having a working electrode, a solid electrolyte and a counter electrode forming an electrolytic cell within a protective casing is provided. The sensor is utilized for monitoring the concentration of a specific constituent within a sample fluid by measuring the electrical potential difference between the electrode exposed to the sample fluid, which is the working electrode, and the counter electrode, which is exposed to a reference fluid. A protective casing shields the electrolytic cell from the sample fluid and access to the working electrode is provided by sample fluid ports provided in the protective casing. To minimize the surface area of the working electrode exposed to the sample fluid, a restricter is placed in the channel defined by the protective casing and the working electrode. Additionally, a burn-off gas inlet port is provided to controllably supply burn-off gas to the working electrode surface to burn-off any residual film formed on the working electrode surface exposed to the sample fluid. Additionally, a control system is provided which can use the output from a potential measuring device to control the supply of burn-off gas to the working electrode surface.
    • 提供一种具有工作电极,固体电解质和在保护壳内形成电解槽的对电极的传感器。 传感器用于通过测量暴露于作为工作电极的样品流体的电极与暴露于参考流体的对电极之间的电位差来监测样品流体中特定组分的浓度。 保护套管将电解槽与样品流体隔离,并且通过设在保护套管中的样品流体端口提供对工作电极的访问。 为了最小化暴露于样品流体的工作电极的表面积,将限制器放置在由保护壳体和工作电极限定的通道中。 另外,设置了燃烧气体入口,以可控制地向工作电极表面供给燃尽气体,以烧掉在暴露于样品流体的工作电极表面上形成的残留膜。 此外,提供了一种控制系统,其可以使用来自潜在测量装置的输出来控制向工作电极表面供应燃尽气体。