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    • 5. 发明授权
    • Method of improving the quality and efficiency of Iddq testing
    • 提高Iddq测试质量和效率的方法
    • US5914615A
    • 1999-06-22
    • US841175
    • 1997-04-29
    • Brian Chess
    • Brian Chess
    • G01R31/30G01R31/26
    • G01R31/3008G01R31/3004
    • A method of detecting defects within an integrated circuit. Iddq testing for defects within integrated circuits includes measuring the quiescent (Iddq) current conducted by power supply nodes of the integrated circuit which are connected to a power supply while controlling signal levels of a plurality of inputs to the integrated circuit. The method of this invention includes calculating an upper threshold Iddq value and a lower threshold Iddq value. The input nodes are driven to a predetermined combination of input voltages and a corresponding Iddq value is measured. It is determined whether the measured Iddq value is between the upper threshold Iddq value and the lower threshold Iddq value. Another embodiment of this invention includes the upper and lower threshold values being dependent on a measured mean value of Iddq for the integrated circuit.
    • 一种检测集成电路中的缺陷的方法。 集成电路中的缺陷的Iddq测试包括测量在集成电路的电源节点传导的静态(Iddq)电流,其连接到电源,同时控制到集成电路的多个输入的信号电平。 本发明的方法包括计算上限阈值Iddq值和较低阈值Iddq值。 将输入节点驱动到输入电压的预定组合,并测量相应的Iddq值。 确定测量的Iddq值是否在上限阈值Iddq值和较低阈值Iddq值之间。 本发明的另一实施例包括上和下阈值取决于集成电路的Iddq的测量平均值。
    • 10. 发明授权
    • Client-side caching of pages with changing content
    • 客户端缓存内容不断变化的页面
    • US07970816B2
    • 2011-06-28
    • US10071496
    • 2002-03-01
    • Brian ChessEvan GoldbergWilliam Ellery Bailey
    • Brian ChessEvan GoldbergWilliam Ellery Bailey
    • G06F15/16
    • G06F17/30902
    • The present invention relates to Internet based and web applications and the need to reduce page latency and bandwidth usage. The invention can achieve these goals by making use of the cache built in to standard web browsers. In one embodiment, the invention provides that a web application user will use their browser to request a page from the application web server, which responds with a small page that includes a script. The script appends a previously established cookie value to the URL originally requested and the browser then re-requests the URL with the appended cookie value. (The server computes the cookie value based on the last modified time of the data used to generate the page.) If the most recent version of the page is in the browser cache, the browser gets a cache hit, which means the page is retrieved from browser cache rather than from the server, rapidly displaying the page to the user. If, on the other hand, there is only an older version of the page in the browser cache, there is a cache miss (because the rewritten URL will not match any URL in the cache) and the browser will send the request to the server to retrieve the most recent version of the page.
    • 本发明涉及基于因特网和Web应用以及减少页面延迟和带宽使用的需要。 本发明可以通过利用内置于标准网络浏览器中的缓存来实现这些目标。 在一个实施例中,本发明提供一种Web应用程序用户将使用它们的浏览器从应用程序web服务器请求页面,应用程序web服务器用包含脚本的小页面进行响应。 脚本将先前建立的Cookie值追加到最初请求的URL,然后浏览器重新请求带有附加Cookie值的URL。 (服务器根据用于生成页面的数据的最后修改时间计算cookie值。)如果页面的最新版本位于浏览器缓存中,则浏览器将获得缓存命中,这意味着页面被检索 从浏览器缓存而不是从服务器,快速显示页面给用户。 另一方面,如果浏览器缓存中只有旧版本的页面,则会出现缓存未命中(因为重写的URL不会与缓存中的任何URL匹配),并且浏览器会将请求发送到服务器 以检索最新版本的页面。