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    • 1. 发明申请
    • LONG RANGE WIRELESS CREDENTIALS FOR ENTRYWAY
    • 入户通道的长距离无线证书
    • WO2016049159A3
    • 2016-09-01
    • PCT/US2015051685
    • 2015-09-23
    • SCHLAGE LOCK CO LLC
    • BAUMGARTE JOSEPH W
    • G07C9/00G06K19/07
    • G07C9/00309G06K7/10158G06K19/0709G06K19/0724G07C9/00571G07C9/00658G07C2009/00579G07C2209/63
    • An access control system having one or more system antennas that are configured to emit a first signal having a first frequency that is detected by the credential device. The credential device is configured to harvest electrical power from at least a portion of the detected first signal. At least a portion of the harvested electrical power may be used by the credential device to transmit a second signal to a reader device, the second signal containing information indicative of a credential stored on the credential device. Further, the second signal has a second frequency that is different than the first frequency of the first signal. The reader device and/or a server may evaluate the transmitted credential to determine whether the credential is associated with an authority to operate the reader device, such as, for example, an authority to unlock a lock mechanism of the reader device.
    • 一种具有一个或多个系统天线的访问控制系统,所述系统天线被配置为发射具有由所述证件设备检测到的第一频率的第一信号。 凭证设备被配置为从检测到的第一信号的至少一部分收集电力。 收获的电力的至少一部分可以被证书设备用来传输第二信号到读取器设备,第二信号包含指示存储在证书设备上的证书的信息。 此外,第二信号具有不同于第一信号的第一频率的第二频率。 读取器设备和/或服务器可以评估传送的证书以确定证书是否与操作读取器设备的权限相关联,例如解锁读取器设备的锁定机构的权限。
    • 5. 发明申请
    • APPARATUS AND METHOD FOR RECOGNIZING TAG BY READER IN RFID SYSTEM
    • RFID系统读写器识别标签的装置和方法
    • WO2011071307A3
    • 2011-10-27
    • PCT/KR2010008733
    • 2010-12-08
    • SAMSUNG TECHWIN CO LTDCHOI JAE-WONKIM HEE-KYUNG
    • CHOI JAE-WONKIM HEE-KYUNG
    • H04B5/00G06K17/00
    • H04B5/0056G06K7/0008G06K7/10158H04B5/0031H04B5/0037Y02D70/00Y02D70/166
    • A method and apparatus for recognizing a tag capable of reducing consumption power and heat generation of a board when a reader recognizes the tag in a radio frequency identification (RFID) system. The apparatus for recognizing the tag includes: a RF transmission/reception unit for performing wireless data communication with the tag; a power unit for providing predetermined power; a power supply controller for supplying or blocking a power to the RF transmission/reception unit based on a power control signal; and a controller for setting a standby state and a continuous state of the transmission/reception unit, outputting the power control signal according to the state, transmitting a tag search signal by a predetermined period in the standby state, converting a state to the continuous state when the response is received from the tag, and maintaining the standby state when the response is not received from the tag.
    • 一种识别标签的方法和装置,其能够在读取器识别射频识别(RFID)系统中的标签时降低板的消耗功率和发热量。 用于识别标签的装置包括:RF发送/接收单元,用于与标签进行无线数据通信; 用于提供预定功率的功率单元; 电源控制器,用于基于功率控制信号向RF发送/接收单元提供或阻断电力; 以及控制器,用于设置发送/接收单元的待机状态和连续状态,根据状态输出功率控制信号,在待机状态下将标签搜索信号发送预定周期,将状态转换为连续状态 当从标签接收到响应时,并且当没有从标签接收到响应时保持备用状态。
    • 6. 发明申请
    • CONTACTLESS INTEGRATED MICROCIRCUIT
    • 无缝集成微型计算机
    • WO2006036080A1
    • 2006-04-06
    • PCT/RU2004/000339
    • 2004-09-02
    • H01L31/0232
    • H02S99/00G06K7/10009G06K7/10158G06K19/06112G06K19/0707
    • The invention is used for technical information electronic means. The sense of the invention lies in that the inventive contactless integrated microcircuit (CIMC) is embodied in the form of a device similar in operation to contactless radiofrequency identifiers used for electronic workflow hardware and for data protection. According to said invention, the CIMC comprises a peripheral part used for contactlessly communicating with a peripheral device supplying power thereto, the information input and output according to a specified protocol comprises at least one photovoltaic semiconductor structure which converts an optical range emission (light) incident thereon into electric power and is connected to the central part of the CIMC on the side of the power and information input. At least two voltage controllable optical active structures modulating the light emission reflected thereby are disposed on the side of an information output. The information exchange protocol corresponds to at least one single scanning which is carried out by a light beam which is focused and modulated according to the input information and belongs to photovoltaic and optically active structures disposed on the path thereof associated with the detection of the emission reflected thereby. A light source can be embodied in the form of the semiconductor laser of the peripheral device. The invention makes it possible to develop an CIMC embodied in an integrated form, wherein the structural modifications of disc drives and the electronic units thereof are minimum.
    • 本发明用于技术信息电子手段。 本发明的意义在于,本发明的非接触式集成微电路(CIMC)以与用于电子工作流程硬件和数据保护的非接触式射频标识符相似的设备的形式实施。 根据本发明,CIMC包括用于与向其提供电力的外围设备进行非接触式通信的外围部分,根据指定协议的信息输入和输出包括至少一个光电半导体结构,其转换光学范围发射(光)事件 在电力和信息输入一侧连接到中集集团的中心部分。 调制由此反射的光的至少两个电压可控的光学有源结构被布置在信息输出的一侧。 信息交换协议对应于由根据输入信息进行聚焦和调制的光束执行的至少一个单次扫描,并且属于设置在与发射反射的检测相关联的路径上的光伏和光学活动结构 从而。 光源可以以外围设备的半导体激光器的形式实现。 本发明使得可以开发以集成形式实现的CIMC,其中盘驱动器及其电子单元的结构修改是最小的。