Scan compression architecture with bypassable scan chains for low test mode power
    116.
    发明授权
    Scan compression architecture with bypassable scan chains for low test mode power 有权
    扫描压缩架构,具有旁路扫描链,可实现低测试模式电源

    公开(公告)号:US08856601B2

    公开(公告)日:2014-10-07

    申请号:US12868253

    申请日:2010-08-25

    CPC classification number: G01R31/3177 G01R31/318547

    Abstract: This invention permits selectively bypasses serial scan chains. Constant or low toggle data is directed to the bypassed serial scan chain, thus reducing power consumption. The number and identity of serial scan chains bypassed during a particular test can be changed dynamically dependent upon the semiconductor process variations of a particular integrated circuit. This enables an optimal test to be preformed for integrated circuits having differing semiconductor process variations.

    Abstract translation: 本发明允许有选择地绕过串行扫描链。 恒定或低电平触发数据被引导到旁路的串行扫描链,从而降低功耗。 在特定测试期间旁路的串行扫描链的数量和身份可以根据特定集成电路的半导体工艺变化动态地改变。 这使得能够对具有不同半导体工艺变化的集成电路进行最佳测试。

    Built-in self-test methods, circuits and apparatus for concurrent test of RF modules with a dynamically configurable test structure
    118.
    发明授权
    Built-in self-test methods, circuits and apparatus for concurrent test of RF modules with a dynamically configurable test structure 有权
    内置自检方法,电路和设备,用于通过动态配置的测试结构对射频模块进行并发测试

    公开(公告)号:US08694276B2

    公开(公告)日:2014-04-08

    申请号:US13042849

    申请日:2011-03-08

    CPC classification number: G01R31/31917 G01R31/31716 G01R31/31724

    Abstract: A testable integrated circuit chip (80, 100) includes a functional circuit (80) having modules (IP.i), a storage circuit (110) operable to hold a table representing sets of compatible tests that are compatible for concurrence, and an on-chip test controller (140, 150) coupled with said storage circuit (110) and with said functional circuit modules (IP.i), said test controller (140, 150) operable to dynamically schedule and trigger the tests in those sets, whereby promoting concurrent execution of tests in said functional circuit modules (IP.i). Other circuits, wireless chips, systems, and processes of operation and processes of manufacture are disclosed.

    Abstract translation: 可测试的集成电路芯片(80,100)包括具有模块(IP.i)的功能电路(80),存储电路(110),其可操作以保持表示兼容兼容的兼容测试集合的表,以及on 与所述存储电路(110)和所述功能电路模块(IP.i)耦合的芯片测试控制器(140,150),所述测试控制器(140,150)可操作以动态地调度和触发这些组中的测试,由此 促进在所述功能电路模块(IP.i)中并行执行测试。 公开了其他电路,无线芯片,系统以及操作过程和制造过程。

    Fluid Loss Control Composition and Method of Using the Same
    119.
    发明申请
    Fluid Loss Control Composition and Method of Using the Same 审中-公开
    流体损失控制组合物及其使用方法

    公开(公告)号:US20140073538A1

    公开(公告)日:2014-03-13

    申请号:US13611187

    申请日:2012-09-12

    CPC classification number: C09K8/035 C09K8/512

    Abstract: Fluid loss materials including carboxymethylcellulose and zirconium-based crosslinkers may be employed as fluid loss materials in methods of treating subterranean formations. One method includes providing a treatment fluid including carboxymethylcellulose (CMC) and a crosslinker including zirconium, wherein the carboxymethylcellulose has a degree of substitution in a range of from about 0.5 to about 2.5, wherein the crosslinker including zirconium includes one selected from the group consisting of ammonium zirconium fluoride, zirconium 2-ethylhexanoate, zirconium acetate, zirconium neodecanoate, zirconium acetylacetonate, tetrakis(triethanolamine) zirconate, zirconium carbonate, ammonium zirconium carbonate, zirconyl ammonium carbonate, zirconium complex of hydroxyethyl glycine, zirconium malonate, zirconium propionate, zirconium lactate, zirconium acetate lactate, and zirconium tartrate, and placing the treatment fluid in a subterranean formation, wherein the treatment fluid controls fluid loss in a permeable portion of the subterranean formation penetrated by a wellbore.

    Abstract translation: 包括羧甲基纤维素和锆基交联剂在内的流体损失材料可用作处理地下地层的方法中的流体损失材料。 一种方法包括提供包括羧甲基纤维素(CMC)和包含锆的交联剂的处理流体,其中羧甲基纤维素的取代度为约0.5至约2.5,其中包括锆的交联剂包括选自以下的一种: 氟化锆锆,2-乙基己酸锆,乙酸锆,新癸酸锆,乙酰丙酮酸锆,四(三乙醇胺)锆酸锆,碳酸锆,碳酸锆锆,碳酸锆铵,羟乙基甘氨酸锆络合物,丙二酸锆,丙酸锆,乳酸锆, 乙酸锆酸乙酯和酒石酸锆,并将处理流体置于地层中,其中处理流体控制渗透在井底中的渗透部分中的流体损失。

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