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    • 1. 发明授权
    • RFID transponder, in particular for assembly on metal and manufacturing method therefor
    • RFID应答器,特别是用于组装金属及其制造方法
    • US08576124B2
    • 2013-11-05
    • US12801258
    • 2010-05-28
    • Alexander PopugaevRalner WanschJosef BernhardAlexander Pflaum
    • Alexander PopugaevRalner WanschJosef BernhardAlexander Pflaum
    • H01Q1/38H01Q7/00
    • G06K19/07749H01Q1/2208H01Q1/2225H01Q1/38H01Q7/00
    • An RFID transponder including an antenna, a chip having at least one transmission and reception circuit as well as a memory, a dielectric carrier element which is covered on a first surface with a structured first metallization and which is covered on a second surface disposed opposite the first surface with a second metallization. The first and second metallizations are mutually electrically conductively connected, thereby forming the antenna. The first metallization is structured such that it forms two electric terminals of the antenna arranged on the first surface of the dielectric carrier element. The chip can be or is electrically contacted via these two terminals. An adaptation network is at least partly formed by the structuring of the first metallization and adapting the input impedance of the antenna in a conjugate complex manner to the impedance of the chip.
    • 一种包括天线的RFID应答器,具有至少一个发送和接收电路以及存储器的芯片,介电载体元件,其被覆盖在具有结构化的第一金属化的第一表面上,并且被覆盖在与第一表面相对设置的第二表面上 第一表面具有第二金属化。 第一和第二金属化层相互导电连接,从而形成天线。 第一金属化被构造成使得它形成布置在电介质载体元件的第一表面上的天线的两个电端子。 芯片可以通过这两个端子被电接触。 至少部分地通过构造第一金属化形成自适应网络,并以共轭复合方式将天线的输入阻抗调整到芯片的阻抗。
    • 3. 发明申请
    • RFID transponder, in particular for assembly on metal and manufacturing method therefor
    • RFID应答器,特别是用于组装金属及其制造方法
    • US20110025471A1
    • 2011-02-03
    • US12801258
    • 2010-05-28
    • Alexander PopugaevRalner WanschJosef BernhardAlexander Pflaum
    • Alexander PopugaevRalner WanschJosef BernhardAlexander Pflaum
    • H04Q5/22G06K19/077H05K13/00
    • G06K19/07749H01Q1/2208H01Q1/2225H01Q1/38H01Q7/00
    • The invention relates to an RFID transponder comprising: an antenna, a chip comprising at least one transmission and reception circuit as well as a memory, a dielectric carrier element which is covered on a first surface at least sectionally with a structured first metallization and which is covered on a second surface disposed opposite the first surface at least sectionally with a second metallization, wherein the first and second metallizations are mutually electrically conductively connected, thereby forming the antenna, wherein the first metallization is structured such that it forms two electric terminals of the antenna arranged on the first surface of the dielectric carrier element, and wherein the chip can be or is electrically contacted via these two terminals and is positionable or arranged on the first surface and/or is positionable or arranged at least sectionally integrated into this surface, and an adaptation network at least partly formed by the structuring of the first metallization and adapting the input impedance of the antenna in a conjugate complex manner to the impedance of the chip.
    • 本发明涉及一种RFID应答器,其包括:天线,包括至少一个发送和接收电路以及存储器的芯片,电介质载体元件,其至少部分地被覆盖在第一表面上并且具有结构化的第一金属化, 覆盖在与第一表面相对设置的第二表面上,至少部分地具有第二金属化,其中第一和第二金属化层相互导电连接,从而形成天线,其中第一金属化构造成使得其形成两个电极 布置在电介质载体元件的第一表面上的天线,并且其中芯片可以经由这两个端子或与之电接触,并且可定位或布置在第一表面上和/或可定位或布置成至少部分地集成到该表面中, 以及至少部分地由第一m的构造形成的适配网络 使天线的输入阻抗以共轭复合方式适应于芯片的阻抗。
    • 4. 发明申请
    • System and Method for the Monitoring of Grouped Objects
    • 用于监视分组对象的系统和方法
    • US20090213785A1
    • 2009-08-27
    • US11883022
    • 2006-01-25
    • Jürgen HuppVolker GehrmannAlexander Pflaum
    • Jürgen HuppVolker GehrmannAlexander Pflaum
    • H04W84/02H04B7/00
    • H04W4/02G06Q10/08H04W84/18
    • A system and a method for monitoring grouped objects with a gateway and a plurality of radio nodes attachable to the objects. Each radio node has a computing unit, a short-range communications unit and an energy supply unit. One of the radio nodes or the gateway has a localization unit. Optionally, one of the radio nodes also has a long-range communications unit. The computing unit contains a control program for the processing of predetermined tasks in radio nodes, which is designed for the control of bi-directional communications between the radio nodes via the short-range communications unit for the formation of an ad hoc network. The control program undertakes the control of a tuning process between the radio nodes and selects one of the radio nodes for the processing of one of the predetermined tasks, the selected node at that instant being best suited for the task according to predetermined criteria.
    • 一种用于利用可连接到对象的网关和多个无线电节点来监视分组对象的系统和方法。 每个无线电节点具有计算单元,短距离通信单元和能量供应单元。 无线电节点或网关中的一个具有定位单元。 可选地,无线电节点之一还具有远程通信单元。 计算单元包括用于处理无线电节点中的预定任务的控制程序,其被设计用于经由用于形成自组织网络的短距离通信单元的无线电节点之间的双向通信的控制。 控制程序承担控制无线电节点之间的调整过程,并且选择一个无线电节点用于处理预定任务中的一个,在该时刻的所选节点根据预定标准最适合于该任务。
    • 7. 发明授权
    • System and method for the monitoring of grouped objects
    • 用于监视分组对象的系统和方法
    • US08223730B2
    • 2012-07-17
    • US11883022
    • 2006-01-25
    • Jürgen HuppVolker GehrmannAlexander Pflaum
    • Jürgen HuppVolker GehrmannAlexander Pflaum
    • H04W4/00
    • H04W4/02G06Q10/08H04W84/18
    • A system and a method for monitoring grouped objects with a gateway and a plurality of radio nodes attachable to the objects. Each radio node has a computing unit, a short-range communications unit and an energy supply unit. One of the radio nodes or the gateway has a localization unit. Optionally, one of the radio nodes also has a long-range communications unit. The computing unit contains a control program for the processing of predetermined tasks in radio nodes, which is designed for the control of bi-directional communications between the radio nodes via the short-range communications unit for the formation of an ad hoc network. The control program undertakes the control of a tuning process between the radio nodes and selects one of the radio nodes for the processing of one of the predetermined tasks, the selected node at that instant being best suited for the task according to predetermined criteria.
    • 一种用于利用可连接到对象的网关和多个无线电节点来监视分组对象的系统和方法。 每个无线电节点具有计算单元,短距离通信单元和能量供应单元。 无线电节点或网关中的一个具有定位单元。 可选地,无线电节点之一还具有远程通信单元。 计算单元包括用于处理无线电节点中的预定任务的控制程序,其被设计用于经由用于形成自组织网络的短距离通信单元的无线电节点之间的双向通信的控制。 控制程序承担控制无线电节点之间的调整过程,并且选择一个无线电节点用于处理预定任务中的一个,在该时刻的所选节点根据预定标准最适合于该任务。