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    • 41. 发明申请
    • ARRANGEMENT AND A METHOD FOR OPERATING AN ARRANGEMENT
    • 安排和操作安排的方法
    • US20140045423A1
    • 2014-02-13
    • US13568168
    • 2012-08-07
    • Josef HaidStefan RuepingWalter Kargl
    • Josef HaidStefan RuepingWalter Kargl
    • H04B5/00
    • G08C17/02G08C2201/20H04B5/0031H04B5/0037
    • An arrangement including: an electronic device including a processor; a memory; a communication interface; and a power interface; an electronic circuit including: a communication interface to communicate with the electronic device via a communication interface of the electronic device; a near field communication interface to receive signals via an electromagnetic field; a processor to be powered by the electromagnetic field, to determine an operation program code to operate the electronic device from the signals received via the electromagnetic field, and to generate at least one operation program code message including the operation program code to be transmitted to the electronic device via the communication interfaces; a power interface to transmit electrical energy to the power interface of the electronic device to enable the electronic device to at least one of store and process the at least one operation program code message.
    • 一种装置,包括:包括处理器的电子设备; 记忆 通信接口; 和电源接口; 电子电路,包括:经由所述电子设备的通信接口与所述电子设备通信的通信接口; 近场通信接口,经由电磁场接收信号; 由电磁场供电的处理器,用于根据从电磁场接收到的信号确定操作程序代码,并产生至少一个操作程序代码消息,该操作程序代码消息包括要发送给 电子设备通过通信接口; 电力接口,用于将电能传输到电子设备的电力接口,以使得电子设备能够存储和处理该至少一个操作程序代码消息中的至少一个。
    • 43. 发明授权
    • Power supply input selection circuit
    • 电源输入选择电路
    • US08364989B2
    • 2013-01-29
    • US11861843
    • 2007-09-26
    • Bernd ZimekJosef HaidThomas LeutgebThomas BaglinWalter Kargl
    • Bernd ZimekJosef HaidThomas LeutgebThomas BaglinWalter Kargl
    • G06F1/00G06F9/00G06F9/24G06F15/177
    • H02M1/10
    • A power supply input selection circuit for selecting one of a plurality of power supply inputs to supply power to a driven circuit. The power supply input selection circuit includes a power supply input switching circuit configured to provide operating power to the driven circuit by routing a selected one of the power supply inputs to the driven circuit as a function of power supply selection information; and a logic circuit configured to change the power supply selection information if a default power mode does not match a desired power mode, the logic circuit being further configured to reset the power supply input selection circuit after changing the power supply selection information, the power supply selection information being maintained during the reset, in which the power supply input switching circuit selects a desired one of the power supply inputs after the logic circuit resets the power supply input selection circuit.
    • 一种电源输入选择电路,用于选择多个电源输入中的一个以向驱动电路供电。 电源输入选择电路包括:电源输入切换电路,被配置为根据电源选择信息将所选择的一个电源输入路由到驱动电路,向驱动电路提供工作电源; 以及逻辑电路,其被配置为如果默认功率模式与期望的功率模式不匹配则改变所述电源选择信息,所述逻辑电路还被配置为在改变所述电源选择信息之后复位所述电源输入选择电路,所述电源 在复位期间保持选择信息,其中电源输入切换电路在逻辑电路复位电源输入选择电路之后选择所需的一个电源输入。
    • 45. 发明申请
    • Demodulator and Method for Demodulating a Carrier Signal
    • 解调器和解调载波信号的方法
    • US20110243200A1
    • 2011-10-06
    • US12753450
    • 2010-04-02
    • Walter KarglEdmund Ehrlich
    • Walter KarglEdmund Ehrlich
    • H04B1/40H03D99/00
    • H04L27/0014H03M1/1255H04L2027/0036H04L2027/0067
    • A demodulator includes a sampler and a trigger unit. The sampler is configured to sample a carrier signal based on a trigger signal to obtain a demodulated signal. The trigger unit is configured to detect a zero crossing of the carrier signal or an extreme value of an amplitude of the carrier signal. Further, the trigger unit is configured to provide the trigger signal based on the detected zero crossing or the detected extreme value, so that the carrier signal is sampled by the sampler with a predefined phase shift to the detected zero crossing or the detected extreme value. The predefined phase shift is larger than 30° plus an integer multiple of 90° and lower than 60° plus the same integer multiple of 90° in reference to the carrier signal.
    • 解调器包括采样器和触发单元。 采样器被配置为基于触发信号对载波信号进行采样以获得解调信号。 触发单元被配置为检测载波信号的零交叉或载波信号的幅度的极值。 此外,触发单元被配置为基于检测到的过零点或检测到的极值来提供触发信号,使得载波信号被采样器采样到预定的相移到检测到的过零点或检测到的极值。 相对于载波信号,预定义的相移大于30°加上90°的整数倍,低于60°加上90°的相同整数倍。