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    • 6. 发明授权
    • Portable device comprising a communication station configuration and a data carrier configuration
    • 便携式设备包括通信站配置和数据载体配置
    • US07185813B2
    • 2007-03-06
    • US10507947
    • 2003-02-19
    • Franz AmtmannKlemens BreitfussHolger KunkatReinhard MeindlStefan Posch
    • Franz AmtmannKlemens BreitfussHolger KunkatReinhard MeindlStefan Posch
    • G06K7/08
    • G06K7/10237G06K7/0008G06K7/10386G06K19/0723
    • A portable device (1) includes a communication station configuration (10) for contactless communication with at least one external data carrier (13) and a data carrier configuration (11) for contactless communication with at least one external communication station (14), wherein a detection circuit (32) is provided which is designed to detect the presence of an external data carrier (13) and the presence of an external communication station (14) in a communication zone of the internal communication station configuration (10) and the internal data carrier configuration (11) designed for contactless communication, and wherein an activation circuit (33) cooperating with the detection circuit (32) is provided, by means of which activation circuit (33) one of the two configurations (10, 11) can be activated as a function of the detection result (INFO1, INFO2, INFO3) supplied in each case by the detection circuit (32).
    • 便携式设备(1)包括用于与至少一个外部数据载体(13)和数据载体配置(11)进行非接触式通信的通信站配置(10),用于与至少一个外部通信站(14)进行非接触式通信,其中 提供检测电路(32),其被设计为检测外部数据载体(13)的存在以及内部通信站配置(10)的通信区域中的外部通信站(14)的存在以及内部 设置用于非接触通信的数据载体配置(11),并且其中与检测电路(32)配合的激活电路(33)通过其中的两个配置(10,11)之一的激活电路(33)可以 根据由检测电路(32)提供的检测结果(INFO 1,INFO 2,INFO 3)的功能被激活。
    • 8. 发明申请
    • Circuit for Contractless Device Having Active and Passive Send Modes
    • 具有主动和被动发送模式的无承载设备的电路
    • US20080096499A1
    • 2008-04-24
    • US10554382
    • 2004-04-21
    • Franz AmtmannMarkus HarnischHolger KunkatStefan Posch
    • Franz AmtmannMarkus HarnischHolger KunkatStefan Posch
    • H04B1/04
    • H04B5/02G06K7/0008
    • In a circuit (2) for a communication partner appliance (1) designed for contactless communication having two activatable send modes (ABM, PBM), which send modes (ABM, PBM) differ from one another with regard to their energy requirement, a determination stage (15) is provided, which is designed to determine first energy source information (SI1), which first energy source information (SI1) is characteristic of at least one parameter of at least one energy source (11, 12) serving to supply the circuit with electrical energy, and a decision stage (26) is additionally provided, which is designed to form a decision result taking account of the first energy source information (SI1) determined with the determination stage (15), which decision result influences which send mode (ABM, PBM) is to be activated in the circuit (2) of the communication appliance (1).
    • 在设计用于具有两个可激活发送模式(ABM,PBM)的无接触通信的通信伙伴设备(1)的电路(2)中,其发送模式(ABM,PBM)相对于它们的能量需求彼此不同,确定 提供了阶段(15),其被设计为确定第一能量源信息(SI1),其中第一能量源信息(SI1)是至少一个能量源(11,12)的至少一个参数的特征,用于提供 另外提供了一个决定阶段(26),其被设计成考虑到由确定阶段(15)确定的第一能量源信息(SI1)形成决策结果,该决定结果影响哪个发送 在通信设备(1)的电路(2)中激活模式(ABM,PBM)。
    • 9. 发明授权
    • Circuit for contractless device having active and passive send modes
    • 具有主动和被动发送模式的无收缩装置的电路
    • US07603090B2
    • 2009-10-13
    • US10554382
    • 2004-04-21
    • Franz AmtmannMarkus HarnischHolger KunkatStefan Posch
    • Franz AmtmannMarkus HarnischHolger KunkatStefan Posch
    • H01Q11/12
    • H04B5/02G06K7/0008
    • In a circuit (2) for a communication partner appliance (1) designed for contactless communication having two activatable send modes (ABM, PBM), which send modes (ABM, PBM) differ from one another with regard to their energy requirement, a determination stage (15) is provided, which is designed to determine first energy source information (SI1), which first energy source information (SI1) is characteristic of at least one parameter of at least one energy source (11, 12) serving to supply the circuit with electrical energy, and a decision stage (26) is additionally provided, which is designed to form a decision result taking account of the first energy source information (SI1) determined with the determination stage (15), which decision result influences which send mode (ABM, PBM) is to be activated in the circuit (2) of the communication appliance (1).
    • 在设计用于具有两个可激活发送模式(ABM,PBM)的无接触通信的通信伙伴设备(1)的电路(2)中,其发送模式(ABM,PBM)相对于它们的能量需求彼此不同,确定 提供了阶段(15),其被设计为确定第一能量源信息(SI1),其中第一能量源信息(SI1)是至少一个能量源(11,12)的至少一个参数的特征,用于提供 另外提供了一个决定阶段(26),其被设计成考虑到由确定阶段(15)确定的第一能量源信息(SI1)形成决策结果,该决定结果影响哪个发送 在通信设备(1)的电路(2)中激活模式(ABM,PBM)。
    • 10. 发明申请
    • DATA CARRIER PROVIDED WITH AT LEAST TWO DECODING STAGES
    • 数据载体提供至少两个解码阶段
    • US20090262866A1
    • 2009-10-22
    • US12496584
    • 2009-07-01
    • Franz AmtmannDominik J. BergerWolfgang EberStefan PoschRobert Rechberger
    • Franz AmtmannDominik J. BergerWolfgang EberStefan PoschRobert Rechberger
    • H04L27/22H04L27/06
    • G06K19/0723G06K19/073
    • In a data carrier (1) which includes receiving means (5) for receiving a modulated carrier signal (MTS) which contains a data signal (DS1) encoded in conformity with an encoding method (MA, PW, MI, RTZ, FSK, PSK), demodulation means (9) for demodulating the received modulated carrier signal (MTS) and for outputting the encoded data signal (DS1) contained therein, decoding means (10, 20) for decoding the encoded data signal (DS1) and for outputting data (D1, D2), and data processing means (11) for processing the data (D1, D2) output by the decoding means (10, 20), the decoding means (10, 20) are provided with at least a first decoding stage (12) and a second decoding stage (13), the first decoding stage (12) being arranged to decode a data signal (DS1) encoded in conformity with a first method (RTZ) whereas the second decoding stage (13) is arranged to decode a data signal (DS1) encoded in conformity with a second method (MI).
    • 在包括接收装置(5)的数据载体(1)中,所述接收装置(5)用于接收包含根据编码方法(MA,PW,MI,RTZ,FSK,PSK)编码的数据信号(DS1)的调制载波信号 ),用于解调所接收的调制载波信号(MTS)并用于输出其中包含的编码数据信号(DS1)的解调装置(9),用于对编码数据信号(DS1)进行解码并输出数据的解码装置(10,20) (D1,D2)和用于处理由解码装置(10,20)输出的数据(D1,D2)的数据处理装置(11),解码装置(10,20)至少设置有第一解码级 (12)和第二解码级(13),所述第一解码级(12)被布置为对根据第一方法(RTZ)编码的数据信号(DS1)进行解码,而所述第二解码级(13)被布置为 解码按照第二种方法(MI)编码的数据信号(DS1)。