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    • 1. 发明申请
    • Modulator and modulation method for a wireless data transmission device
    • 一种用于无线数据传输设备的调制器和调制方法
    • US20070109102A1
    • 2007-05-17
    • US11652563
    • 2007-01-12
    • Ulrich FriedrichMartin FischerMichael Pangels
    • Ulrich FriedrichMartin FischerMichael Pangels
    • H04Q5/22
    • G06K7/0008G06K19/0723
    • The invention concerns a modulator (M) for data transmission between a transponder and a base station, which amplitude modulates and/or phase modulates a received electromagnetic carrier signal as a function of data to be transmitted, having a control input at which a modulation control signal is present, having a rectifier (GL) circuit for rectifying the received electromagnetic carrier signal which has at least one rectifier stage (S1-S3), having at least one switching device (SE) which is controllable through the modulation control signal and whose output side intervenes in at least one rectifier stage of the rectifier circuit, and by means of which a reference voltage can be applied to at least one node (H1-H3) of said rectifier stage. The invention further concerns a transponder with such a modulator and a modulation method for operating such [a modulator]. The invention concerns a modulator for data communication between a transponder and a base station, which amplitude modulates and/or phase modulates a received electromagnetic carrier signal as a function of data to be transmitted, having a control input at which a modulation control signal is present, having a rectifier circuit for rectifying the received electromagnetic carrier signal which has at least one rectifier stage, having at least one switching device which is controllable through the modulation control signal and whose output side intervenes in at least one rectifier stage of the rectifier circuit, and by means of which a reference voltage can be applied to at least one node of said rectifier stage. The invention further concerns a transponder with such a modulator and a modulation method for operating such a modulator.
    • 本发明涉及一种用于在应答器和基站之间进行数据传输的调制器(M),所述调制器(M)根据要传输的数据对幅度进行幅度调制和/或相位调制接收的电磁载波信号,具有控制输入,调制控制 信号存在,具有整流器(GL)电路,用于整流接收的电磁载波信号,该信号具有至少一个整流器级(S1-S3),具有至少一个可通过调制控制信号控制的开关器件(SE) 并且其输出侧插入整流器电路的至少一个整流器级中,并且借助其可以将参考电压施加到所述整流器级的至少一个节点(H 1 -H 3)。 本发明还涉及具有这种调制器的转发器和用于操作这种调制器的调制方法。 本发明涉及用于应答器和基站之间的数据通信的调制器,该调制器根据要传输的数据对接收的电磁载波信号进行幅度调制和/或相位调制,该信号具有存在调制控制信号的控制输入 具有用于对接收到的电磁载波信号进行整流的整流电路,其具有至少一个整流器级,具有至少一个可通过调制控制信号控制的开关装置,并且其输出侧插在整流器电路的至少一个整流级中, 并且通过该参考电压可以将参考电压施加到所述整流器级的至少一个节点。 本发明还涉及具有这种调制器的转发器和用于操作这种调制器的调制方法。
    • 3. 发明申请
    • Circuit arrangement and method for increasing the functional range of a transponder
    • 用于增加应答器的功能范围的电路布置和方法
    • US20050122651A1
    • 2005-06-09
    • US11002852
    • 2004-11-30
    • Martin FischerVolkhard FlassnoeckerUlrich FriedrichDirk Ziebertz
    • Martin FischerVolkhard FlassnoeckerUlrich FriedrichDirk Ziebertz
    • G06K19/07G06K19/073H02H3/24
    • G06K19/0701G06K19/0715G06K19/0723G06K19/073
    • A transponder receives its operating energy from an external source such as a radio signal or a battery. Such transponders are used for example in a vehicle or in a remote sensor. The response range of the transponder is increased by converting the received energy into an operating voltage which in turn is used to generate a function voltage required for performing a current function sequence. The generated function voltage is checked to determine at least one characteristic of the generated function voltage. The determined function voltage characteristic, for example a voltage value directly representing the function voltage, is then used to acknowledge or reject a result of performing the function sequence. Thus, the time duration for performing any current function sequence is flexibly adapted to the current requirements of that function sequence, whereby the power consumption of the transponder is optimally reduced and the response range respectively increased.
    • 应答器从诸如无线电信号或电池的外部源接收其工作能量。 这种应答器例如用于车辆或远程传感器中。 通过将接收到的能量转换成工作电压来增加应答器的响应范围,该操作电压又被用于产生执行当前功能序列所需的功能电压。 检查产生的功能电压以确定产生的功能电压的至少一个特性。 确定的功能电压特性,例如直接表示功能电压的电压值,然后用于确认或拒绝执行功能序列的结果。 因此,执行任何当前功能序列的持续时间灵活地适应于该功能序列的当前要求,由此应答器的功耗被最佳地降低并且响应范围分别增加。
    • 4. 发明授权
    • Method, transponder, and system for secure data exchange
    • 方法,应答器和用于安全数据交换的系统
    • US08138889B2
    • 2012-03-20
    • US11819132
    • 2007-06-25
    • Martin FischerUlrich FriedrichJens MasuchMichael PangelsDirk Ziebertz
    • Martin FischerUlrich FriedrichJens MasuchMichael PangelsDirk Ziebertz
    • H04Q5/22
    • H04L9/3226H04L2209/805
    • A method for data exchange is provided, whereby a first code is generated by a transponder, which is transmitted to a base station, a first transmission information is generated by the base station by encoding a base station code with a first identification and the first random number code, the first transmission information is transmitted to the transponder and the base station code is extracted by the transponder, a second code is generated by the transponder, which is transmitted to the base station upon an associated request from the base station, whereby before a transmission to the base station the second code is encoded with the extracted base station code, a second encoded transmission information comprising a second identification is generated by the base station with use of the second code and transmitted to the transponder, and at least one memory region of the transponder is released for read and/or write access after the second identification was verified as valid. The invention relates further to a transponder and to a system for secure data exchange.
    • 提供了一种用于数据交换的方法,其中第一代码由发送到基站的应答器生成,基站通过对具有第一标识的基站代码进行编码来生成第一传输信息,并且第一随机 数字代码,将第一传输信息发送到应答器,并且基站代码由应答器提取,第二代码由应答器产生,该应答器根据来自基站的相关请求发送到基站,由此在 利用所提取的基站代码对第二代码进行编码的传输到基站,由基站使用第二代码生成包括第二标识的第二编码的传输信息并将其发送到应答器,以及至少一个存储器 在第二次识别被验证为有效之后,应答器的区域被释放用于读取和/或写入访问。 本发明进一步涉及应答器和用于安全数据交换的系统。
    • 6. 发明申请
    • CIRCUIT ARRANGEMENT FOR USE IN RF TRANSPONDERS AND METHOD FOR CONTROLLING A NUMBER OF SUCH TRANSPONDERS
    • RF TRANSPONDERS中使用的电路装置和用于控制多个这种传输器的方法
    • US20080180219A1
    • 2008-07-31
    • US11968637
    • 2008-01-02
    • Martin FischerUlrich Friedrich
    • Martin FischerUlrich Friedrich
    • H04Q5/22
    • G06K19/0701G06K7/10019G06K19/0723
    • A storage circuit arrangement for a semi-passive or passive RFID transponder is provided. In prior-art circuit arrangements, storage capacitors are routinely discharged in an undefined fashion via leakage currents for a control mode of the transponder, so that the persistence times depend greatly on the ambient temperature and on existing manufacturing tolerances. It is proposed according to an embodiment to charge a first electrical storage device with a first reference voltage and then to discharge it again in a defined fashion during a time t via discharge device. Advantageously, in addition a storage mode of the first storage device to hold the control mode can be transmitted in a controlled fashion via a switching device to a second storage device with C2
    • 提供了一种用于半无源或无源RFID应答器的存储电路装置。 在现有技术的电路装置中,存储电容器通过用于转发器的控制模式的泄漏电流以不定义的方式常规地放电,使得持续时间在很大程度上取决于环境温度和现有的制造公差。 根据一个实施例提出了对具有第一参考电压的第一蓄电装置充电,然后在经由放电装置的时间t期间以限定的方式再次对其进行放电。 有利地,另外,用于保持控制模式的第一存储装置的存储模式可以通过切换装置以受控的方式发送到具有C 2 << C 1的第二存储装置,以缩短安置时间并加速防冲突 。
    • 7. 发明授权
    • Circuit arrangement with simplified input circuit for phase modulation in a backscattering transponder
    • 具有简化的输入电路的电路布置,用于后向散射转发器中的相位调制
    • US07173519B2
    • 2007-02-06
    • US10855866
    • 2004-05-26
    • Ulrich FriedrichMartin Fischer
    • Ulrich FriedrichMartin Fischer
    • H04Q5/22H01Q9/00H01Q15/14
    • G01S13/756G06K19/0723
    • A circuit arrangement for phase modulation in an input circuit of a backscattering transponder includes a varactor and at most one capacitor connected in series between two antenna terminals, as well as a varactor control arrangement applying a control voltage to the varactor to selectively vary the capacitance thereof. One of the antenna terminals is connected directly to one of the varactor terminals without a capacitor therebetween. The other antenna terminal is connected either directly or through a capacitor to the other varactor terminal. One antenna terminal and/or one varactor terminal can be grounded. A DC-decoupling capacitor can be connected between a transponder circuit unit or a circuit ground and the common junction of the antenna terminal with the varactor terminal. The circuit arrangement is simple, economical, and uses minimal chip area by omitting further capacitors between the antenna terminals.
    • 用于后向散射应答器的输入电路中的相位调制的电路装置包括变容二极管和至多一个串联连接在两个天线端子之间的电容器,以及向变容二极管施加控制电压以选择性地改变其电容的变容二极管控制装置 。 其中一个天线端子直接连接到一个变容二极管端子,而其间没有电容器。 另一个天线端子直接或通过电容器连接到另一个变容二极管端子。 一个天线端子和/或一个变容二极管端子可以接地。 一个直流去耦电容器可以连接在应答器电路单元或电路地之间,天线端子与变容二极管的公共端连接。 电路布置简单,经济,并且通过省略天线端子之间的另外的电容器来使用最小的芯片面积。
    • 8. 发明授权
    • Receiving/backscattering arrangement and method with two modulation modes for wireless data transmission as well as modulation arrangement therefor
    • 具有用于无线数据传输的两种调制模式的接收/后向散射布置和方法以及其调制方案
    • US07151436B2
    • 2006-12-19
    • US10753859
    • 2004-01-07
    • Martin FischerUlrich Friedrich
    • Martin FischerUlrich Friedrich
    • H04Q5/22
    • G06K7/10861G06K19/0723H03C5/00
    • For transmitting data, a receiving/backscattering arrangement receives, modulates and reflects or backscatters electromagnetic waves emitted by a base station. The modulation corresponds to the data to be transmitted and is carried out selectively using first and/or second different modulation methods depending on the received field strength of the received electromagnetic waves. Preferably, phase shift keying is used especially or at least at low field strengths at far range, while amplitude shift keying is used additionally or alternatively for high field strengths at close range. The two modulation methods can be superimposed. A circuit arrangement includes two different modulator arrangements to perform the two modulation methods depending on the received field strength. The second modulator arrangement preferably comprises a multi-stage voltage multiplier circuit with a modulated switching device intervening in one of the stages to achieve the modulation.
    • 为了发送数据,接收/反向散射装置接收,调制和反射或反向散射由基站发射的电磁波。 所述调制对应于要发送的数据,并且根据所接收的电磁波的接收的场强,选择性地使用第一和/或第二不同的调制方法来执行。 优选地,相移键控特别地或至少在远距离的低场强下使用,而幅移键控在附近或替代地用于近距离的高场强。 可以叠加两种调制方式。 电路装置包括两种不同的调制器装置,以根据接收的场强来执行两种调制方法。 第二调制器装置优选地包括具有插入在一个级中的调制开关装置以实现调制的多级电压倍增器电路。
    • 10. 发明授权
    • Circuit arrangement for use in RF transponders and method for controlling a number of such transponders
    • 用于RF转发器的电路装置以及用于控制多个这样的转发器的方法
    • US07592919B2
    • 2009-09-22
    • US11968637
    • 2008-01-02
    • Martin FischerUlrich Friedrich
    • Martin FischerUlrich Friedrich
    • G08B13/14
    • G06K19/0701G06K7/10019G06K19/0723
    • A storage circuit arrangement for a semi-passive or passive RFID transponder is provided. In prior-art circuit arrangements, storage capacitors are routinely discharged in an undefined fashion via leakage currents for a control mode of the transponder, so that the persistence times depend greatly on the ambient temperature and on existing manufacturing tolerances. It is proposed according to an embodiment to charge a first electrical storage device with a first reference voltage and then to discharge it again in a defined fashion during a time t via discharge device. Advantageously, in addition a storage mode of the first storage device to hold the control mode can be transmitted in a controlled fashion via a switching device to a second storage device with C2
    • 提供了一种用于半无源或无源RFID应答器的存储电路装置。 在现有技术的电路装置中,存储电容器通过用于转发器的控制模式的泄漏电流以不定义的方式常规地放电,使得持续时间在很大程度上取决于环境温度和现有的制造公差。 根据一个实施例提出了对具有第一参考电压的第一蓄电装置充电,然后在经由放电装置的时间t期间以限定的方式再次对其进行放电。 有利地,另外,用于保持控制模式的第一存储装置的存储模式可以通过切换装置以受控的方式发送到具有C2 << C1的第二存储装置,以缩短安置时间并加速防冲突。