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    • 4. 发明授权
    • Heat exchange assembly and methods of assembling same
    • 换热组件及组装方法
    • US08811014B2
    • 2014-08-19
    • US13340058
    • 2011-12-29
    • Shakti Singh ChauhanStanton Earl Weaver, Jr.Tao DengChristopher Michael EastmanWenwu Zhang
    • Shakti Singh ChauhanStanton Earl Weaver, Jr.Tao DengChristopher Michael EastmanWenwu Zhang
    • H05K7/20
    • H01L23/427H01L2924/0002H01L2924/00
    • A heat exchange assembly for use in cooling an electrical component is described herein. The heat assembly includes a casing that includes an evaporator section, a condenser section, and a transport section extending between the evaporator section and the condenser section along a longitudinal axis. The casing is configured to bend along a bending axis oriented with respect to the transport section. The casing also includes at least one sidewall that includes at least one fluid chamber extending between the evaporator section and the condenser section to channel a working fluid between the evaporator section and the condenser section. A plurality of fluid channels are defined within the inner surface to channel liquid fluid from the condenser section to the evaporator section. At least one vapor channel is defined within the inner surface to channel gaseous fluid from the evaporator section to the condenser section.
    • 本文描述了用于冷却电气部件的热交换组件。 热组件包括壳体,其包括蒸发器部分,冷凝器部分和沿着纵向轴线在蒸发器部分和冷凝器部分之间延伸的输送部分。 壳体被构造成沿着相对于传送部分定向的弯曲轴线弯曲。 壳体还包括至少一个侧壁,其包括在蒸发器部分和冷凝器部分之间延伸的至少一个流体室,以在蒸发器部分和冷凝器部分之间引导工作流体。 多个流体通道限定在内表面内以将液体流体从冷凝器部分引导到蒸发器部分。 至少一个蒸汽通道限定在内表面内,以将气态流体从蒸发器部分引导到冷凝器部分。
    • 5. 发明授权
    • Adaptive regression test selection within testing environments
    • 测试环境中的自适应回归测试选择
    • US08276123B1
    • 2012-09-25
    • US12351457
    • 2009-01-09
    • Tao DengSachin Vasudeva
    • Tao DengSachin Vasudeva
    • G06F9/44G06F11/00
    • G06F11/3688G06F11/368
    • In general, techniques are described for intelligently selecting test cases within testing environments. Specifically, a computing device may include a user interface with which a user interacts to specify a safety level. The device also includes a control unit that determines those functions of source code that changed. Based on these changed functions, the control unit determines those functions of the source code not changed but impacted by the changes within a set distance. The control unit then selects, for each of these determined functions, one or more test cases in accordance with one or more test selection algorithms by adaptively applying these algorithms in order of decreasing safety assurances and increasing precision. The control unit further aggregates these selected test cases and implement the test cases to ensure the safety level with respect to a percentage of functional errors occurring within a software program compiled from the source code.
    • 一般来说,描述了在测试环境中智能选择测试用例的技术。 具体而言,计算设备可以包括用户交互以指定安全级别的用户界面。 该设备还包括一个控制单元,用于确定改变的源代码的功能。 基于这些改变的功能,控制单元确定源代码未被改变但受设定距离内的变化影响的那些功能。 然后,控制单元根据一个或多个测试选择算法,通过以降低安全性保证和提高精度的顺序自适应地应用这些算法,为这些确定的功能中的每一个选择一个或多个测试用例。 控制单元进一步聚合这些选定的测试用例并实现测试用例,以确保在从源代码编译的软件程序中发生的一定百分比的功能错误的安全级别。
    • 10. 发明授权
    • Method for forming nanoparticle films and application thereof
    • 形成纳米颗粒膜的方法及其应用
    • US07212284B2
    • 2007-05-01
    • US10843832
    • 2004-05-12
    • Tao DengAmy Linsebigler Smentkowski
    • Tao DengAmy Linsebigler Smentkowski
    • G01J3/44G01N21/65
    • C03C17/006B05D1/00B05D1/20B05D1/202B05D7/222B82Y30/00C03C17/10C03C2217/255C03C2217/42C03C2218/111C23C2/04C23C26/00G01N21/658Y10S977/84Y10T428/25
    • Disclosed herein is a method for making a nanoparticle film comprising dispersing nanoparticles in a first liquid; adding a second liquid to the first liquid to form a nanoparticle film on top of a solution comprising the first liquid, the second liquid and the nanoparticles, wherein the second liquid has a dielectric constant that is different from a dielectric constant of the first liquid; and contacting a substrate with the solution to deposit the nanoparticle film onto the contacted portion of the substrate. Disclosed herein too is a method for detecting an analyte comprising dispersing nanoparticles in a first liquid; adding a second liquid to the first liquid to form a nanoparticle film on top of a solution comprising the first liquid, the second liquid and the nanoparticles, wherein the second liquid has a dielectric constant that is different from a dielectric constant of the first liquid; contacting a substrate with the solution to deposit the nanoparticle film onto the substrate; disposing upon the nanoparticle film an analyte; and performing surface enhanced Raman spectroscopy to determine the identity of the analyte.
    • 本文公开了一种制备纳米颗粒膜的方法,包括将纳米颗粒分散在第一液体中; 向第一液体添加第二液体以在包含第一液体,第二液体和纳米颗粒的溶液的顶部上形成纳米颗粒膜,其中第二液体具有不同于第一液体的介电常数的介电常数; 以及使基底与溶液接触以将纳米颗粒膜沉积在基底的接触部分上。 本文还公开了一种用于检测分析物的方法,包括将纳米颗粒分散在第一液体中; 向第一液体添加第二液体以在包含第一液体,第二液体和纳米颗粒的溶液的顶部上形成纳米颗粒膜,其中第二液体具有不同于第一液体的介电常数的介电常数; 使基底与溶液接触以将纳米颗粒膜沉积到基底上; 在纳米颗粒膜上放置分析物; 并进行表面增强拉曼光谱以确定分析物的身份。