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    • 82. 发明申请
    • RE-CONFIGURABLE LOW NOISE AMPLIFIER UTILIZING FEEDBACK CAPACITORS
    • 可重新配置低噪声放大器,利用反馈电容器
    • US20090195316A1
    • 2009-08-06
    • US12358419
    • 2009-01-23
    • Jae-woo ParkChang-sik Yoo
    • Jae-woo ParkChang-sik Yoo
    • H03F3/16
    • H03F3/193H03F3/72H03F2200/111H03F2200/294H03F2200/378H03F2200/387H03F2200/429H03F2200/451
    • A re-configurable low noise amplifier utilizing feedback capacitors is disclosed. The low noise amplifier has output transistors, capacitor switch cells, and capacitance distributors all in an output terminal. The output transistors are for controlling selection of a specific frequency band in a wide band of frequencies. The capacitor switch cells are for adjusting a harmonic frequency for the specific frequency band. The capacitance distributor is for determining an amount of gain, and according to the gain, an output impedance feeds back to an input terminal of the low noise amplifier for input matching. Since the output terminal is at high impedance and suitable for a wide band of frequencies, input matching not only makes the low noise amplifier applicable to kinds of wireless communication standards, but also fulfills high gain and low noise figure.
    • 公开了一种利用反馈电容器的可重构低噪声放大器。 低噪声放大器具有输出晶体管,电容开关单元和电容分配器。 输出晶体管用于控制宽频带中的特定频带的选择。 电容开关单元用于调整特定频带的谐波频率。 电容分配器用于确定增益量,并且根据增益,输出阻抗反馈到低噪声放大器的输入端以进行输入匹配。 由于输出端子处于高阻抗并且适用于宽频带,所以输入匹配不仅可以使低噪声放大器适用于各种无线通信标准,而且可以实现高增益和低噪声系数。
    • 83. 发明申请
    • Method and system for user-friendly forwarding entry management based on inter-process communication
    • 基于进程间通信的用户友好转发入口管理方法和系统
    • US20090106773A1
    • 2009-04-23
    • US12157524
    • 2008-06-11
    • Won-kyoung LeeJae-woo ParkYoung-sik ChungBheom-soon Joo
    • Won-kyoung LeeJae-woo ParkYoung-sik ChungBheom-soon Joo
    • G06F9/46
    • G06F13/4022
    • A method and system for user-friendly forwarding entry management based on inter-process communication (IPC) is provided. The system includes a function input unit inputting a command for forwarding entry management; and an automated process unit verifying parameters included in the function to create a user table, extracting information for creating a forwarding entry management table from the user table, and outputting a forwarding entry management message including the extracted information. The method includes inputting a command for forwarding entry management; verifying parameters included in the command; creating a user table using the parameters if the verification is successful; extracting information for creating a forwarding entry management table from the user table; and outputting a forwarding entry management message including the extracted information.
    • 提供了一种基于进程间通信(IPC)的用户友好转发入口管理的方法和系统。 该系统包括输入用于转发入口管理的命令的功能输入单元; 以及自动处理单元,其验证包括在功能中的参数以创建用户表,从用户表提取用于创建转发条目管理表的信息,以及输出包括提取的信息的转发条目管理消息。 该方法包括输入用于转发入口管理的命令; 验证命令中包含的参数; 如果验证成功,则使用参数创建用户表; 从用户表提取用于创建转发条目管理表的信息; 并输出包括提取的信息的转发条目管理消息。
    • 84. 发明申请
    • SENSOR MODULE FOR DETECTING RELATIVE DISPLACEMENT AND METHOD OF DETECTING MOVING DIRECTION USING THE SAME
    • 用于检测相对位移的传感器模块及使用该传感器检测移动方向的方法
    • US20080265876A1
    • 2008-10-30
    • US11780835
    • 2007-07-20
    • Dong-Rak LEEJae-Woo ParkBong-Geun ChoHyoung-Jun Moon
    • Dong-Rak LEEJae-Woo ParkBong-Geun ChoHyoung-Jun Moon
    • G01B7/00G01R33/09
    • G01D5/145B82Y25/00G01R33/093
    • The present invention relates to a sensor module for detecting a relative displacement of an object having a groove pattern with alternately formed projection and depression, which comprises a magnet for generating a magnetic field; a giant magneto resistance (GMR) sensor installed between the magnet and the object to detect a variation in the magnetic field and output an electric signal; a signal processing part for processing the output signal from the GMR sensor to output a square wave; and a housing for supporting the magnet the GMR sensor and the signal processing part, and a method of detecting a moving direction using the same.It is possible to detect in non contact manner and stably a moving direction, a moving distance, a moving speed and the like using the sensor module of the present invention. In addition, the sensor module of the present invention can be used regardless of a shape or a kind of an actuator and can detect accurately even if a contact point with an object is limited in a small, area. In addition, it is possible to provide a sensor module having superior durability and rigidity compared with conventional optical or contact sensor.
    • 本发明涉及一种用于检测具有交替形成的突起和凹陷的凹槽图案的物体的相对位移的传感器模块,其包括用于产生磁场的磁体; 安装在磁体和物体之间的巨磁电阻(GMR)传感器,以检测磁场的变化并输出电信号; 用于处理来自GMR传感器的输出信号以输出方波的信号处理部分; 以及用于将磁铁支撑在GMR传感器和信号处理部件上的壳体,以及使用该壳体的移动方向的检测方法。 可以使用本发明的传感器模块以非接触的方式和稳定地检测移动方向,移动距离,移动速度等。 此外,无论驱动器的形状或种类如何,都可以使用本发明的传感器模块,即使与物体的接触点在小的区域中被限制,也能够准确地检测。 此外,与常规光学或接触传感器相比,可以提供具有优异的耐久性和刚度的传感器模块。
    • 86. 发明申请
    • APPARATUS AND METHOD FOR DETECTING SELF-EXECUTABLE COMPRESSED FILE
    • 用于检测自动执行压缩文件的装置和方法
    • US20080127038A1
    • 2008-05-29
    • US11860599
    • 2007-09-25
    • Jae Woo ParkYoung Tae Yun
    • Jae Woo ParkYoung Tae Yun
    • G06F9/44
    • G06F9/445
    • Provided are an apparatus and a method for detecting a self-executable compressed file by analyzing an executable program. The present invention firstly performs a static analysis on an executable file to search an executable file format, examines a section name part to determine whether the executable file format can be executable or not in compliance with a PE format standard based on a general PE file structure, and determines the executable file as a suspicious file if there is an abnormal section name or structure. Secondly, instructions are examined through disassembling in a section range where a corresponding executable file entry point exists if the suspicious part is found in the first analysis, and it is determined that the file is finally self-executable compressed if there is a file jumping from an address space of a section range where the entry point exists and jumping into a memory region of another section having read/write/execute characteristics. Accordingly, it can be determined whether variants of executable compression programs, file heads with modification and change, or files with unknown executable compression formats are self-executable compressed or not.
    • 提供了一种通过分析可执行程序来检测自身可执行压缩文件的装置和方法。 本发明首先对可执行文件执行静态分析以搜索可执行文件格式,检查段名部分,以便基于一般的PE文件结构来确定可执行文件格式是否可以符合PE格式标准 ,并且如果存在异常节名称或结构,则将可执行文件确定为可疑文件。 其次,如果在第一次分析中发现可疑部分,则在分段范围内通过拆卸相应的可执行文件入口点来检查指令,并确定如果文件从 存在入口点的部分范围的地址空间,并且跳转到具有读/写/执行特性的另一部分的存储区域。 因此,可以确定可执行压缩程序,具有修改和改变的文件头,或者具有未知可执行压缩格式的文件的变体是否是可执行的压缩的。
    • 87. 发明申请
    • Fault management system using satellite telemetering technology and method thereof
    • 使用卫星遥测技术的故障管理系统及其方法
    • US20070129009A1
    • 2007-06-07
    • US11607039
    • 2006-12-01
    • Cheol-Oh JeongYong-Deuk LeeJae-Woo ParkSeong-Pal Lee
    • Cheol-Oh JeongYong-Deuk LeeJae-Woo ParkSeong-Pal Lee
    • H04B7/185
    • H04L12/66
    • A fault management system using a satellite telemetering technology and a method thereof are provided. The fault management system includes: a telemetering sensing unit for collecting telemetering data from target apparatuses, which are installed at a remote location and an unattended location and managed through a satellite, in real time and sensing whether the target apparatuses are malfunctioned or not based on the collected telemetering data; a controlling unit for determining whether the target apparatuses are malfunctioned or not by comparing the telemetering data with unique performance request values for normally driving the target apparatuses, analyzing causes of malfunctions, and storing malfunction data into a malfunction data storing unit; a malfunction data analysis unit for managing the malfunction data stored in the malfunction data storing unit and analyzing the malfunction data; and a display unit for outputting the result of analyzing the malfunction data on a display device.
    • 提供了使用卫星遥测技术的故障管理系统及其方法。 故障管理系统包括:远程测量传感单元,用于从目标设备收集远程测量数据,该遥测数据安装在远程位置和无人值守位置,并通过卫星进行实时管理,并基于以下方式检测目标设备是否发生故障 收集的遥测数据; 控制单元,用于通过将遥测数据与用于正常驱动目标设备的唯一性能请求值进行比较来确定目标设备是否发生故障,分析故障原因并将故障数据存储到故障数据存储单元中; 故障数据分析单元,用于管理存储在故障数据存储单元中的故障数据并分析故障数据; 以及显示单元,用于输出在显示装置上分析故障数据的结果。