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    • 94. 发明申请
    • PERFORMANCE-ADJUSTABLE MEMORY MODULE
    • 性能可调存储模块
    • US20160139649A1
    • 2016-05-19
    • US13652500
    • 2012-10-16
    • Moon J. Kim
    • Moon J. Kim
    • G06F1/32G06F3/06
    • G06F1/3275Y02D10/14
    • A performance-adjustable memory module configured for power consumption optimization is provided. In a typical approach, the memory module (e.g., a DRAM-type memory module) comprises a set of memory segments coupled to a set of power supplies. A controller (e.g., an external controller) will supply control information via a set of control registers that is used to vary levels of power provided by the set of power supplies to the set of memory segments. The varying levels of power allow for the performance levels of the set of memory segment to be varied, and thus provide a more optimized memory system.
    • 提供了配置用于功耗优化的性能可调内存模块。 在典型的方法中,存储器模块(例如,DRAM型存储器模块)包括耦合到一组电源的一组存储器段。 控制器(例如,外部控制器)将经由一组控制寄存器来提供控制信息,所述控制寄存器用于将由该组电源提供的功率电平改变为存储器段组。 功率变化的级别允许存储器段集合的性能水平变化,并且因此提供更优化的存储器系统。
    • 95. 发明授权
    • Multi-sided card having a resistive fingerprint imaging array
    • 具有电阻指纹成像阵列的多面卡
    • US09189676B2
    • 2015-11-17
    • US14230355
    • 2014-03-31
    • Moon J. Kim
    • Moon J. Kim
    • G06K9/00G06Q20/40G07F7/08G07C9/00
    • G06K9/0002G06Q20/40145G07C9/00158G07F7/0833
    • Embodiments of the present invention provide an adaptive and intelligent fingerprint scanning device and approach for a multi-sided card. Specifically, embodiments of the present invention utilize DC resistive image scanning to reduce overall scanning time and energy consumption (e.g., by identifying a targeted scanning area). In a typical embodiment, a scanning device will be provided that includes a scanning area comprised of a set (e.g., at least one) of imaging pixel electrodes (e.g., arranged adjacent to one another in a grid-like or other fashion). As a user presses his/her finger against the scanning area, a first portion of the finger will contact a first electrode while a second portion of the finger will contact a second electrode. When this occurs, a voltage source of the device will apply an initial voltage across the first and second finger portions. A meter of the device will take an electrical measurement (e.g., resistance and/or charged skin voltage) across the two finger portions. Based on the electrical measurement, a location of the finger on the device will be identified, and the fingerprint will be scanned accordingly. Thus, the entire scanning surface need not be scanned, only the portions thereof where the finger was detected.
    • 本发明的实施例提供了一种用于多边卡的自适应和智能指纹扫描装置和方法。 具体地,本发明的实施例利用DC电阻图像扫描来减少总扫描时间和能量消耗(例如,通过识别目标扫描区域)。 在典型的实施例中,将提供一种扫描装置,其包括由成像像素电极(例如,以格子状或其他方式彼此相邻布置)的组(例如至少一个)组成的扫描区域。 当用户将他/她的手指压靠扫描区域时,手指的第一部分将接触第一电极,而手指的第二部分将接触第二电极。 当这种情况发生时,装置的电压源将施加跨越第一和第二手指部分的初始电压。 设备的一米将跨两个手指部分进行电测量(例如,电阻和/或带电皮肤电压)。 基于电测量,将识别手指在设备上的位置,并且相应地扫描指纹。 因此,整个扫描表面不需要被扫描,仅仅是其中检测到手指的部分。
    • 98. 发明申请
    • DYNAMIC INFORMATION RADIO-FREQUENCY IDENTIFICATION (RFID) CARD WITH BIOMETRIC CAPABILITIES
    • 具有生物能力的动态信息无线电频率识别(RFID)卡
    • US20140353389A1
    • 2014-12-04
    • US14460616
    • 2014-08-15
    • Moon J. Kim
    • Moon J. Kim
    • G06K19/07G06K19/073
    • G06K19/0718G06F21/32G06F21/35G06K19/0725G06K19/07354
    • Embodiments of the present invention implement dynamic elements within a RFID card. Specifically, the embodiments update card information dynamically, using a biometric image scanner (e.g., for scanning a fingerprint passively). The scanner is activated only when a user intends to use it with a designated reader by bringing the RFID card within the reader RF field range, thus preventing unauthorized reader's RFID scan. Even if an unauthorized reader comes into contact with the RFID card, the reader cannot read the user's biometric information, unless the user holds the card for use by the reader. Thus, unauthorized biometric information scanning is effectively prevented. The medium owned and controlled by the user collects a biometric fingerprint image for safety and security. When a card is swiped by the user, the biometric imaging array sensor captures user fingerprints and transfers the corresponding image data to a verification system to match and track user biometric information with a predefine accuracy, and track changes of repeated uses.
    • 本发明的实施例实现了RFID卡内的动态元件。 具体地,实施例使用生物测定图像扫描仪动态地更新卡片信​​息(例如,用于被动地扫描指纹)。 只有当用户打算通过将RFID卡放置在读取器RF场范围内来使用指定读取器时,才能激活扫描仪,从而防止未经授权的读取器的RFID扫描。 即使未经授权的读卡器与RFID卡接触,读卡器也不能读取用户的生物特征信息,除非用户握住读卡器使用的卡。 因此,有效地防止了未授权的生物信息扫描。 用户拥有和控制的媒体为安全起见收集生物识别指纹图像。 当用户刷卡时,生物识别成像阵列传感器捕获用户指纹,并将相应的图像数据传送到验证系统,以预定义精度匹配和跟踪用户生物信息,并跟踪重复使用的变化。
    • 100. 发明申请
    • MULTI-SIDED CARD HAVING A RESISTIVE FINGERPRINT IMAGING ARRAY
    • 具有电阻指纹图像阵列的多张卡
    • US20140294260A1
    • 2014-10-02
    • US14230355
    • 2014-03-31
    • Moon J. Kim
    • Moon J. Kim
    • G06K9/00
    • G06K9/0002G06Q20/40145G07C9/00158G07F7/0833
    • Embodiments of the present invention provide an adaptive and intelligent fingerprint scanning device and approach for a multi-sided card. Specifically, embodiments of the present invention utilize DC resistive image scanning to reduce overall scanning time and energy consumption (e.g., by identifying a targeted scanning area). In a typical embodiment, a scanning device will be provided that includes a scanning area comprised of a set (e.g., at least one) of imaging pixel electrodes (e.g., arranged adjacent to one another in a grid-like or other fashion). As a user presses his/her finger against the scanning area, a first portion of the finger will contact a first electrode while a second portion of the finger will contact a second electrode. When this occurs, a voltage source of the device will apply an initial voltage across the first and second finger portions. A meter of the device will take an electrical measurement (e.g., resistance and/or charged skin voltage) across the two finger portions. Based on the electrical measurement, a location of the finger on the device will be identified, and the fingerprint will be scanned accordingly. Thus, the entire scanning surface need not be scanned, only the portions thereof where the finger was detected.
    • 本发明的实施例提供了一种用于多边卡的自适应和智能指纹扫描装置和方法。 具体地,本发明的实施例利用DC电阻图像扫描来减少总扫描时间和能量消耗(例如,通过识别目标扫描区域)。 在典型的实施例中,将提供一种扫描装置,其包括由成像像素电极(例如,以格子状或其他方式彼此相邻布置)的组(例如至少一个)组成的扫描区域。 当用户将他/她的手指压靠扫描区域时,手指的第一部分将接触第一电极,而手指的第二部分将接触第二电极。 当这种情况发生时,装置的电压源将施加跨越第一和第二手指部分的初始电压。 设备的一米将跨两个手指部分进行电测量(例如,电阻和/或带电皮肤电压)。 基于电测量,将识别手指在设备上的位置,并且相应地扫描指纹。 因此,整个扫描表面不需要被扫描,仅仅是其中检测到手指的部分。