TERAHERTZ SCANNING REFLECTOMETER
    1.
    发明申请
    TERAHERTZ SCANNING REFLECTOMETER 有权
    TERAHERTZ扫描反射计

    公开(公告)号:US20140103215A1

    公开(公告)日:2014-04-17

    申请号:US14144155

    申请日:2013-12-30

    Abstract: A terahertz scanning reflectometer is described herein. A high sensitivity terahertz scanning reflectometer is used to measure dynamic surface deformation and delamination characteristics in real-time. A number of crucial parameters can be extracted from the reflectance measurements such as dynamic deformation, propagation velocity, and final relaxation position. A terahertz reflectometer and spectrometer are used to determine the permeation kinetics and concentration profile of active ingredients in stratum corneum.

    Abstract translation: 本文描述了太赫兹扫描反射计。 高灵敏度太赫兹扫描反射计用于实时测量动态表面变形和分层特性。 可以从诸如动态变形,传播速度和最终松弛位置的反射率测量中提取许多关键参数。 太赫兹反射计和光谱仪用于确定角质层中活性成分的渗透动力学和浓度分布。

    Dendrimer Based Electro-Optic Sensor
    2.
    发明申请
    Dendrimer Based Electro-Optic Sensor 有权
    基于树枝状聚合物的电光传感器

    公开(公告)号:US20080128618A1

    公开(公告)日:2008-06-05

    申请号:US11862473

    申请日:2007-09-27

    Abstract: A high efficiency electro-optic dendrimer based technology for nanophotonic integrated circuit devices is presented. In particular, an electro-optic waveguide dendrimer for electro-optic sensor applications is implemented. A terahertz system for detecting and imaging objects is implemented using electro-optic dendrimer based terahertz emitters and probing sensors.

    Abstract translation: 提出了一种用于纳米光子集成电路器件的高效电光树枝状大分子技术。 特别地,实现了用于电光传感器应用的电光波导树枝状聚合物。 用于检测和成像物体的太赫兹系统使用基于电光树枝状大分子的太赫兹发射器和探测传感器来实现。

    Volumetric Infusion Pump and Method
    4.
    发明申请
    Volumetric Infusion Pump and Method 审中-公开
    体积输液泵及方法

    公开(公告)号:US20100040490A1

    公开(公告)日:2010-02-18

    申请号:US12190132

    申请日:2008-08-12

    Applicant: Anis Rahman

    Inventor: Anis Rahman

    CPC classification number: F04B53/14 F04B35/045 F04B35/06 F05C2251/12

    Abstract: In a first embodiment, an electromagnetic pump has a housing including first and second spaced apart electromagnets. A controller for controlling the magnets and a power source for powering the electromagnets within the housing. A removable cassette is in engagement with the housing between the first and second electromagnets and includes a cavity. The pump also has inlet and outlet ports in communication with the cavity and a magnetic piston disposed within the cavity. In preferred embodiments the electromagnets are capable of operating at different strengths and different polarities.

    Abstract translation: 在第一实施例中,电磁泵具有包括第一和第二间隔开的电磁体的壳体。 用于控制磁体的控制器和用于为壳体内的电磁体供电的电源。 可拆卸的盒子与第一和第二电磁体之间的壳体接合并且包括空腔。 泵还具有与空腔连通的入口和出口以及设置在空腔内的磁性活塞。 在优选实施例中,电磁体能够以不同的强度和不同的极性工作。

    Active packet content analyzer for communications network
    5.
    发明申请
    Active packet content analyzer for communications network 有权
    用于通信网络的活动分组内容分析器

    公开(公告)号:US20070002769A1

    公开(公告)日:2007-01-04

    申请号:US11174248

    申请日:2005-07-01

    CPC classification number: H04L69/22 H04L41/22 H04L43/00 H04L63/0245

    Abstract: An active packet inspection device for a communications network, comprises a first terminal and a second terminal each adapted to couple the appliance in-line in the network and communicate data packets with network devices. A packet processor is coupled to the first terminal and second terminal and configured to normalize the data packets. A network search engine coupled to the packet processor and the memory, and configured to compare the data packets with the stored signatures, and when a match is found and other specified conditions are met, to perform an action identified in an associated rule. In one aspect, the network search engine includes a network search engine controller and a network search engine table including a memory configured to store a plurality of replicated signatures. Advantages of the invention include the ability to perform deep packet inspections actively on a communications network at high-speed.

    Abstract translation: 一种用于通信网络的活动分组检测设备,包括第一终端和第二终端,每个终端适于将设备在线连接到网络中并与网络设备通信数据分组。 分组处理器耦合到第一终端和第二终端,并且被配置为对数据分组进行归一化。 耦合到分组处理器和存储器的网络搜索引擎,并且被配置为将数据分组与存储的签名进行比较,并且当匹配被找到并且满足其他指定的条件时,执行在相关规则中标识的动作。 一方面,网络搜索引擎包括网络搜索引擎控制器和网络搜索引擎表,其包括被配置为存储多个复制签名的存储器。 本发明的优点包括在通信网络上高速执行深度分组检测的能力。

    DENDRIMER BASED TERAHERTZ GENERATOR
    7.
    发明申请
    DENDRIMER BASED TERAHERTZ GENERATOR 有权
    基于DENDRIMER的TERAHERTZ发电机

    公开(公告)号:US20120099827A1

    公开(公告)日:2012-04-26

    申请号:US13281230

    申请日:2011-10-25

    Abstract: A high efficiency electro-optic dendrimer based technology for nanophotonic integrated circuit devices is presented. In particular, a high power terahertz (THz) source is implemented using an electro-optic dendrimer via electro-optic rectification. Electro-optic rectification provides inherent power scalability, because, pump-THz conversion is not limited either by emission saturation or by heat dissipation. Low dielectric loss and high electro-optic coefficient of dendrimer along with a waveguide structure provides higher output power and tunable THz power generation. A dendrimer fiber array is also disclosed by means of which the input/output signals are connected to multiple components and devices.

    Abstract translation: 提出了一种用于纳米光子集成电路器件的高效电光树枝状大分子技术。 特别地,通过电光校正,使用电光树枝状大分子实现高功率太赫兹(THz)源。 电光整流提供固有的功率可扩展性,因为泵 - THz转换不受发射饱和或散热的限制。 低介电损耗和树状聚合物的高电光系数以及波导结构提供更高的输出功率和可调谐的太赫兹发电。 还公开了一种树状聚合物纤维阵列,通过该树枝状聚合物纤维阵列将输入/输出信号连接到多个部件和装置。

    Dendrimer Based Terahertz Generator
    9.
    发明申请
    Dendrimer Based Terahertz Generator 有权
    基于树枝状聚合物的太赫兹发生器

    公开(公告)号:US20080099698A1

    公开(公告)日:2008-05-01

    申请号:US11862474

    申请日:2007-09-27

    Abstract: A high efficiency electro-optic dendrimer based technology for nanophotonic integrated circuit devices is presented. In particular, a high power terahertz (THz) source is implemented using an electro-optic dendrimer via electro-optic rectification. Electro-optic rectification provides inherent power scalability, because, pump-THz conversion is not limited either by emission saturation or by heat dissipation. Low dielectric loss and high electro-optic coefficient of dendrimer along with a waveguide structure provides higher output power and tunable THz power generation. A dendrimer fiber array is also disclosed by means of which the input/output signals are connected to multiple components and devices.

    Abstract translation: 提出了一种用于纳米光子集成电路器件的高效电光树枝状大分子技术。 特别地,通过电光校正,使用电光树枝状大分子实现高功率太赫兹(THz)源。 电光整流提供固有的功率可扩展性,因为泵 - THz转换不受发射饱和或散热的限制。 低介电损耗和树状聚合物的高电光系数以及波导结构提供更高的输出功率和可调谐的太赫兹发电。 还公开了一种树状聚合物纤维阵列,通过该树枝状聚合物纤维阵列将输入/输出信号连接到多个部件和装置。

    Nanophotonic integrated circuit and fabrication thereof
    10.
    发明申请
    Nanophotonic integrated circuit and fabrication thereof 失效
    纳米光子集成电路及其制造

    公开(公告)号:US20060158230A1

    公开(公告)日:2006-07-20

    申请号:US11335110

    申请日:2006-01-19

    Applicant: Anis Rahman

    Inventor: Anis Rahman

    Abstract: A class of nanophotonic integrated circuit (nPIC) has been disclosed that is a platform technology for fiberoptic communication and computing, that is fabricated from waveguides that are based on natural index contrast (NIC) principle. A multifunctional nPIC and its fabrication details have been described. The nPIC is also known as an “optical processor”. A novel nanomaterial “dendrimer” is highlighted as the key ingredient that enables the fabrication of the nPICs and its multifunctionality from the same basic process. Other nanomaterials such as spin-on glass, nano-silica sol, and a combination of any of these materials can also be used via the natural index contrast method. Several preferred embodiments of the nPIC are described.

    Abstract translation: 已经公开了一类纳米光子集成电路(nPIC),它是一种基于自然指数对比(NIC)原理的波导制造的光纤通信和计算平台技术。 已经描述了多功能nPIC及其制造细节。 nPIC也被称为“光学处理器”。 新型纳米材料“树枝状大分子”被强调为能够从相同基本过程制造nPIC及其多功能性的关键成分。 其他纳米材料如旋涂玻璃,纳米二氧化硅溶胶以及任何这些材料的组合也可以通过自然折射率对比法使用。 描述了nPIC的几个优选实施例。

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