会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Information storage apparatus using a magnetic medium coated with a wear-resistant thin film
    • 使用涂有耐磨薄膜的磁性介质的信息存储装置
    • US07027364B2
    • 2006-04-11
    • US10232326
    • 2002-09-03
    • Seung-bum HongJong Up JeonHyun-jung Shin
    • Seung-bum HongJong Up JeonHyun-jung Shin
    • G11B11/00
    • G11B9/08B82Y10/00G11B5/58G11B5/596G11B9/14G11B11/08G11B13/00
    • There is provided an information storage apparatus including recording medium and a head. The recording medium has an electrode layer, a magnetic layer that is stacked on the electrode layer, and a wear-resistant thin film that is stacked on the magnetic layer. The head has a conductive probe for injecting charge to record information and sensing the charge injected into the recording medium to reproduce information in a state that the conductive probe contacts the recording medium. A magnetic medium, which is coated with a wear-resistant thin film, stores charges to record information and reproduce information using an electrostatic force. Thus, it is possible to stably store highly integrated information. Also, a probe contacts a recording medium to record and reproduce information at a high speed. Thus, sensitivity and resolution can be improved.
    • 提供了一种包括记录介质和头部的信息存储装置。 记录介质具有电极层,堆叠在电极层上的磁性层和堆叠在磁性层上的耐磨薄膜。 头具有用于注入电荷以记录信息并感测注入到记录介质中的电荷的导电探针,以在导电探针接触记录介质的状态下再现信息。 涂有耐磨薄膜的磁性介质存储电荷以记录信息并使用静电力再现信息。 因此,可以稳定地存储高度集成的信息。 此外,探针接触记录介质以高速记录和再现信息。 因此,可以提高灵敏度和分辨率。
    • 4. 发明授权
    • Lorentz force microscope and method of measuring magnetic domain using Lorentz force
    • 洛仑兹力显微镜和使用洛伦兹力测量磁畴的方法
    • US06696833B2
    • 2004-02-24
    • US10138643
    • 2002-05-06
    • Seung-bum HongJong Up JeonHyun-jung Shin
    • Seung-bum HongJong Up JeonHyun-jung Shin
    • G01R3302
    • G01Q60/54G01R33/0385
    • A Lorentz force microscope and a method of measuring magnetic domains using Lorentz force are provided. The Lorentz force microscope includes: a conductive probe which is actuated by Lorentz force occurring due to the interaction between a magnetic field of the magnetic medium and current applied into the magnetic field; a bottom electrode which is prepared on one side of the magnetic medium, for charging the magnetic field with electricity; a scanner for supporting the magnetic medium on which the bottom electrode is prepared and actuating the magnetic medium when the conductive probe opposite to a record of the magnetic medium scans the record of the magnetic medium; and an information detector for controlling the scanner and detecting information on magnetization of the magnetic medium from motion components of the conductive probe. Directions of Lorentz force which is applied to the conductive probe are sensed in a state that the conductive probe contacts or does not contact the magnetic medium to detect magnetization directions of the magnetic domains. Thus, a magnetic domain distribution map having improved resolution can be obtained.
    • 提供洛伦兹力显微镜和使用洛伦兹力测量磁畴的方法。 洛伦兹力显微镜包括:由于磁介质的磁场和施加到磁​​场中的电流之间的相互作用而产生的由洛伦兹力驱动的导电探针; 制备在磁介质一侧的用于对电磁场充电的底电极; 用于支撑制备底部电极的磁性介质的扫描器,当与磁性介质的记录相对的导电探针扫描磁性介质的记录时,致动磁性介质; 以及信息检测器,用于控制扫描仪并且从导电探针的运动分量检测关于磁介质的磁化的信息。 在导电探针接触或不接触磁介质以检测磁畴的磁化方向的状态下感测施加到导电探针的洛伦兹力的方向。 因此,可以获得具有改善的分辨率的磁畴分布图。
    • 6. 发明授权
    • Method of processing data used in wireless applications using unstructured supplementary service data (USSD) and computer readable medium therefor
    • 使用非结构化补充业务数据(USSD)和其计算机可读介质来处理在无线应用中使用的数据的方法
    • US06771975B1
    • 2004-08-03
    • US09616376
    • 2000-07-13
    • Hyun-jung Shin
    • Hyun-jung Shin
    • H04Q720
    • H04W4/14H04L67/04H04W4/12H04W80/00H04W80/12
    • A method for processing data, in a wireless application protocol for wireless applications using Unstructured Supplementary Service Data (USSD), includes the steps of: (a) receiving data from an upper layer into a Wireless Datagram Protocol (WDP) layer; (b) storing the data received in the WDP layer in step (a) in a common buffer which is commonly used by the WDP layer and a USSD Dialogue Control Protocol (UDCP) layer; and (c) forming packets in the UDCP layer using the data stored in the common buffer in step (b), and then transmitting the packets through the USSD. According to the method, memories for the WDP layer and the UDCP layer, which is an adaptation layer for a Global System for Mobile communication (GSM) USSD bearer, are integrated into one, effectively reducing a required memory size compared to conventional methods in which the WDP layer and the UDCP layer use separate memories.
    • 一种用于在使用非结构化补充业务数据(USSD)的无线应用的无线应用协议中处理数据的方法包括以下步骤:(a)从上层接收数据到无线数据报协议(WDP)层; (b)在步骤(a)中将在WDP层中接收的数据存储在由WDP层和USSD对话控制协议(UDCP)层共同使用的公共缓冲器中; 和(c)使用在步骤(b)中存储在公共缓冲器中的数据在UDCP层中形成分组,然后通过USSD发送分组。 根据该方法,作为全球移动通信系统(GSM)USSD承载的适配层的WDP层和UDCP层的存储器被集成为一个,与以往的方法相比,有效地减少了所需的存储器大小 WDP层和UDCP层使用单独的存储器。
    • 7. 发明授权
    • Method of processing data used in wireless applications using unstructured supplementary service data (USSD) and computer readable medium therefor
    • 使用非结构化补充业务数据(USSD)和其计算机可读介质来处理在无线应用中使用的数据的方法
    • US07103373B2
    • 2006-09-05
    • US10793757
    • 2004-03-08
    • Hyun-jung Shin
    • Hyun-jung Shin
    • H04Q7/20
    • H04W4/14H04L67/04H04W4/12H04W80/00H04W80/12
    • A method for processing data, in a wireless application protocol for wireless applications using Unstructured Supplementary Service Data (USSD), includes the steps of: (a) receiving data from an upper layer into a Wireless Datagram Protocol (WDP) layer; (b) storing the data received in the WDP layer in step (a) in a common buffer which is commonly used by the WDP layer and a USSD Dialogue Control Protocol (UDCP) layer; and (c) forming packets in the UDCP layer using the data stored in the common buffer in step (b), and then transmitting the packets through the USSD. According to the method, memories for the WDP layer and the UDCP layer, which is an adaptation layer for a Global System for Mobile communication (GSM) USSD bearer, are integrated into one, effectively reducing a required memory size compared to conventional methods in which the WDP layer and the UDCP layer use separate memories.
    • 一种用于在使用非结构化补充业务数据(USSD)的无线应用的无线应用协议中处理数据的方法包括以下步骤:(a)从上层接收数据到无线数据报协议(WDP)层; (b)在步骤(a)中将在WDP层中接收的数据存储在由WDP层和USSD对话控制协议(UDCP)层共同使用的公共缓冲器中; 和(c)使用在步骤(b)中存储在公共缓冲器中的数据在UDCP层中形成分组,然后通过USSD发送分组。 根据该方法,与作为全球移动通信系统(GSM)USSD承载的适配层的WDP层和UDCP层的存储器集成为一个,与以往的方法相比,有效地减少了所需的存储器大小 WDP层和UDCP层使用单独的存储器。
    • 9. 发明授权
    • Natural view flat panel for cathode ray tube
    • 阴极射线管自然景观平板
    • US06914377B2
    • 2005-07-05
    • US09918634
    • 2001-08-01
    • Yoon-hyoung ChoHyun-jung ShinDo-houn PyunKwang-sik LeeJae-jin AnWon-ho KimYong-geol Kwon
    • Yoon-hyoung ChoHyun-jung ShinDo-houn PyunKwang-sik LeeJae-jin AnWon-ho KimYong-geol Kwon
    • H01J29/86H01J29/10
    • H01J29/861H01J2229/862
    • A flat panel for a cathode ray tube for preventing a screen image from being shown concavely to a user or viewer includes a flat outer surface and a non-spherically formed inner surface, the non-spherically formed inner surface satisfying formula 1: y1≦y2  (formula 1) wherein y1 represents a vertical distance between the outer surface and a refracted screen image on a central axis of the panel, and y2 represents a vertical distance between the outer surface and the refracted screen image in peripheral areas other than the central axis of the panel, and the panel has a high transmission ratio equal to or greater than about 60% for preventing degradation of luminance due to a difference in thickness between a central section and a peripheral section of the panel.
    • 用于防止屏幕图像向用户或观看者凹陷地显示的用于阴极射线管的平板包括平坦的外表面和非球形的内表面,非球形形成的满足公式1的内表面:<θin -line-formula description =“In-line Formulas”end =“lead”?> y <1> <= Y <2>(公式1)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中y 1表示在面板的中心轴线上的外表面与折射的屏幕图像之间的垂直距离,y 2 表示除了面板的中心轴线之外的外围区域中的外表面和折射屏幕图像之间的垂直距离,并且面板具有等于或大于约60%的高透射率以防止劣化 由于面板的中心部分和周边部分之间的厚度差而导致的亮度。
    • 10. 发明授权
    • Cathode-ray tube
    • 阴极射线管
    • US06459196B1
    • 2002-10-01
    • US09724186
    • 2000-11-27
    • Yoon-hyoung ChoHyun-jung ShinDo-houn PyunKwang-sik LeeJae-jin AnWon-ho KimYong-geol Kwon
    • Yoon-hyoung ChoHyun-jung ShinDo-houn PyunKwang-sik LeeJae-jin AnWon-ho KimYong-geol Kwon
    • H01J6130
    • H01J29/861H01J2229/862
    • A faceplate panel for a cathode ray tube includes an exterior surface having a substantially flat shape, and an interior surface having a concave shape. The interior surface curves in a direction toward the flat exterior surface with a diagonal curvature radius Rp satisfying the following condition: 1.2R ≦Rp≦8R, where R=1.767×the diagonal length of the effective screen of the panel. Furthermore, a peripheral thickness t of the faceplate panel at the diagonal end of the effective screen satisfies the following condition: B≦t≦A, where B is the peripheral thickness of the panel at the diagonal end of the effective screen when a diagonal curvature radius Rp of the interior surface is 8R, and A is the peripheral thickness of the panel on the diagonal end of the effective screen when a ratio of the light transmission at the peripheral portion of the diagonal end of the effective screen to the light transmission at the central portion of the effective screen is 0.85.
    • 用于阴极射线管的面板包括具有基本平坦形状的外表面和具有凹形形状的内表面。 内表面沿着平坦的外表面的方向弯曲,对角曲率半径Rp满足以下条件:其中R =面板有效屏幕的对角线长度为1.767。 此外,有效屏幕的对角端处的面板的周边厚度t满足以下条件:其中B是当内表面的对角曲率半径Rp在有效屏幕的对角端处的面板的周边厚度 是8R,当有效屏幕的对角线端部的周边部分的透光率与有效屏幕的中心部分处的透光率的比率在有效屏幕的对角线端部上的面板的外围厚度为A 屏幕是0.85。