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    • 12. 发明授权
    • Cold field emission cathode using carbon nanotubes
    • 使用碳纳米管的冷场发射阴极
    • US09171688B2
    • 2015-10-27
    • US13994015
    • 2011-04-14
    • Sandeep Venkit AnandArvind KrishnaswamyDebiprosad Roy Mahapatra
    • Sandeep Venkit AnandArvind KrishnaswamyDebiprosad Roy Mahapatra
    • H01J1/14H01J19/06H01K1/04H01J1/304H01J9/02B82Y99/00
    • H01J1/304B82Y99/00H01J9/025
    • Devices for use in cold-field emission and methods of forming the device are generally presented. In one example, a method may include providing a conductive base, dispersing carbon-filled acrylic onto the conductive base to form a conductive film, coupling a copper plate to a first side of the conductive film, and irradiating the conductive film. The method may further include dispersing carbon nanotubes (CNTs) on a second side of the conductive film to form a substantially uniform layer of CNTs, removing excess CNTs from the second side, and curing the conductive film. In one example, a device may include a polycarbonate base, a layer of carbon-filled acrylic on one side of the polycarbonate base and a layer of irradiated carbon-filled acrylic on the other, a copper plate coupled to the carbon-filled acrylic, and a substantially uniform layer of randomly aligned CNTs dispersed on the irradiated carbon-filled acrylic.
    • 通常提供用于冷场发射的装置和形成装置的方法。 在一个示例中,方法可以包括提供导电基底,将碳填充的丙烯酸分散到导电基底上以形成导电膜,将铜板耦合到导电膜的第一侧,以及照射导电膜。 该方法可以进一步包括在导电膜的第二面上分散碳纳米管(CNT)以形成基本均匀的CNT层,从第二侧除去多余的CNT,并固化导电膜。 在一个示例中,装置可以包括聚碳酸酯基底,聚碳酸酯基底的一侧上的填充碳的丙烯酸层和另一个辐照的碳填充丙烯酸层,与填充碳的丙烯酸酯连接的铜板, 以及分散在经过照射的填充碳的丙烯酸酯上的大致均匀的随机排列的CNT层。
    • 14. 发明申请
    • BINARY TRANSLATOR DRIVEN PROGRAM STATE RELOCATION
    • 二进制转换器驱动程序状态转移
    • US20140229717A1
    • 2014-08-14
    • US13766233
    • 2013-02-13
    • ASHISH VENKATArvind KrishnaswamyKOICHI YAMADAPALANIVELRAJAN RAJAN SHANMUGAVELAYUTHAM
    • ASHISH VENKATArvind KrishnaswamyKOICHI YAMADAPALANIVELRAJAN RAJAN SHANMUGAVELAYUTHAM
    • G06F21/79
    • G06F21/52G06F21/79
    • This disclosure is directed to binary translator driven program state relocation. In general, a device may protect vulnerable program functions by setting them as non-executable. If an attempt is made to execute a protected program function, the program may trap to a binary translator in the device that may be configured to relocate program state from what has already been established (e.g., on a stack register). Program state may include resources (e.g., memory locations) used by the program during the course of execution. The binary translator may then translate the program into an executable form based on the relocated program state, and may be executed accordingly. Intruding code that attempts to overcome normal program execution and implement hostile operations (e.g., based the program state that is reflected in the stack register) will not function as intended since the relocated program state will cause unexpected results.
    • 本公开涉及二进制转换器驱动的程序状态重定位。 通常,设备可以通过将其设置为不可执行来保护易受攻击的程序功能。 如果尝试执行受保护的程序功能,程序可能陷入设备中的二进制翻译器,该二进制翻译器可被配置为将程序状态从已经建立的位置重新定位(例如,在堆栈寄存器上)。 程序状态可以包括程序在执行过程中使用的资源(例如,存储器位置)。 然后,二进制翻译器可以基于重新定位的程序状态将程序转换成可执行形式,并且可以相应地执行。 尝试克服正常程序执行和实施敌对操作(例如,基于反映在堆栈寄存器中的程序状态)的入侵代码将不会按预期运行,因为重新定位的程序状态将导致意外的结果。
    • 17. 发明申请
    • Energy Harvesting Devices Using Carbon Nanotube (CNT)-Based Electrodes
    • 使用碳纳米管(CNT)的电极的能量收集设备
    • US20120043858A1
    • 2012-02-23
    • US13139413
    • 2010-11-22
    • Debiprosad Roy MahapatraArvind Krishnaswamy
    • Debiprosad Roy MahapatraArvind Krishnaswamy
    • H02N2/18H01L41/22H01L41/16B82Y15/00
    • B82Y15/00F03G7/005Y10T29/42
    • Energy harvesting elements or membranes are provided that use a layer of electrodes with a mixture of carbon nanotubes (CNT). The energy harvesting device of this type can be used as in sensor-based system in which on application of a bending load, the energy harvesting device produces a voltage across the electrodes. The energy harvesting device may include an electrode coating including carbon nanotubes (CNT) substantially homogenously dispersed in epoxy resin system to form a CNT-epoxy electrode coating. The CNT-epoxy electrode can be realized by dispersing about 5% CNT (by weight) in an epoxy-resin system, followed by mixing the system to achieve a near-homogenous dispersion resulting in a CNT-epoxy mixture. The CNT-epoxy mixture can then be uniformly coated on surfaces of a polymer to form electrodes.
    • 提供能量收集元件或膜,其使用具有碳纳米管(CNT)的混合物的电极层。 这种能量收集装置可以用作基于传感器的系统,其中在施加弯曲载荷时,能量收集装置在电极两端产生电压。 能量收集装置可以包括包括基本均匀分散在环氧树脂体系中的碳纳米管(CNT)的电极涂层,以形成CNT-环氧电极涂层。 CNT-环氧电极可以通过在环氧树脂体系中分散约5%的CNT(重量)来实现,然后混合该系统以实现几乎均匀的分散体,产生CNT-环氧树脂混合物。 然后可以将CNT-环氧混合物均匀地涂覆在聚合物的表面上以形成电极。