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    • 84. 发明公开
    • A MULTIPLE COIL STRUCTURE FOR SUPPORTING MULTIPLE TYPES OF WIRELESS CHARGING AND NEAR FIELD COMMUNICATIONS
    • 多线圈结构用于无线存储和近场多种类型
    • EP3136543A1
    • 2017-03-01
    • EP16185016.9
    • 2016-08-19
    • Motorola Mobility LLC
    • VAN BOSCH, JamesSHOSTAK, Pavel
    • H02J50/10H01F38/14H04B5/00H02J50/27
    • H02J7/025H01F27/2871H01F38/14H02J50/10H02J50/27H02J2007/0096H04B5/0037H04B5/0087
    • The present invention provides a multiple coil structure (400) for supporting multiple types of charging and near field communications. The multiple coil structure includes an inner charging coil (402) comprising a first conductor path forming one or more loops, wherein the direction of travel of the conductor path from an end point of the first conductor path is one of a substantially clockwise direction or a substantially counter-clockwise direction, and wherein the inner charging coil has an inner boundary and an outer boundary. The multiple coil structure further includes an outer charging coil (408) comprising a second conductor path forming one or more loops, which extend around the outer boundary of the inner charging coil, wherein the direction of travel of the conductor path from an end point of the second conductor path is one of a substantially clockwise direction or a substantially counter-clockwise direction, and wherein the outer charging coil has an inner boundary and an outer boundary. The multiple coil structure still further includes a near field communication coil (414) comprising a third conductor path (416) forming one or more loops within the inner boundary of the inner charging coil, wherein the direction of travel of the conductor path from an end point of the third conductor path is one of a substantially clockwise direction or a substantially counter-clockwise direction.
    • 本发明提供了一个多线圈结构(400),用于支持多个类型的充电和近场通信。 所述多个线圈结构包括在内部充电线圈(402),包括第一导体路径形成一个或多个环中,在第一导体路径的结束点从worin导体路径的行进方向是顺时针基本上方向中的一个或一个 大致沿逆时针方向,和worin内部充电线圈具有内部边界和外部边界。 所述多个线圈结构还包括在外部充电线圈(408),包括第二导体路径形成一个或多个环,其中内充电线圈的外边界周围延伸,在终点从worin导体路径的行进方向 所述第二导体路径是顺时针方向中的一个或一个逆时针基本上基本上方向,并且外worin充电线圈具有内部边界和外部边界。 所述多个线圈结构悄然另外包括含有形成内充电线圈的内边界内的一个或多个环的第三导体路径(416),从对端worin导体路径的行进方向上的近场通信线圈(414) 第三导体路径的点是顺时针方向中的一个或一个逆时针基本上基本上方向。
    • 86. 发明公开
    • ON-DEMAND ACTIVATION OF RADIO FREQUENCY IDENTIFICATION (RFID) TAG
    • BEDARFSABHÄNGIGEAKTIVIERUNG EINES HOCHFREZZENENTIFIKATIONS(RFID)-ETIKETTS
    • EP3107043A1
    • 2016-12-21
    • EP16173948.7
    • 2016-06-10
    • Motorola Mobility LLC
    • DEBATES, ScottFOREST, FrancisHOR-LAO, MaryLAUTNER, DouglasSHAH, Jagatkumar
    • G06K19/073G06K19/077
    • G06K7/10019G06K19/07345G06K19/07726
    • In embodiments of on-demand RFID tag activation, an RFID tag is configured so as to enable a person to activate the RFID tag if or when the person wishes. An RFID tag includes an integrated circuit (IC), an antenna coupled to the IC, activation circuitry, and a detachable disable tab. For an example implementation, the RFID tag is in an active state if the IC is capable of responding to an interrogation signal and is in an inactive state if the IC is incapable of responding to an interrogation signal. The activation circuitry is configured to establish the inactive state if the disable tab is attached to the RFID tag or to establish the active state if the disable tab is detached from the RFID tag. The disable tab, if attached to the RFID tag, may impose a short-circuit linkage against the activation circuitry to prevent operation of the tag.
    • 在点播RFID标签激活的实施例中,RFID标签被配置为使得如果或者当人们期望时,人们可以激活RFID标签。 RFID标签包括集成电路(IC),耦合到IC的天线,激活电路和可拆卸的禁用标签。 对于示例实现,如果IC能够响应询问信号并且如果IC不能响应询问信号,则RFID标签处于活动状态。 激活电路被配置为如果禁用标签被附接到RFID标签,则建立无效状态,或者如果禁用标签与RFID标签分离,则建立活动状态。 禁用选项卡(如果连接到RFID标签)可能会对激活电路施加短路连接,以防止标签的操作。
    • 90. 发明公开
    • METHOD AND APPARATUS FOR SPEECH RECONSTRUCTION IN A DISTRIBUTED SPEECH RECOGNITION SYSTEM
    • 方法和设备语音重建分布式语音识别系统
    • EP2945154A1
    • 2015-11-18
    • EP15173401.9
    • 2002-01-18
    • Motorola Mobility LLC
    • KUSHNER, William MMEUNIER, JeffreyJASIUK, Mark ARAMABADRAN, Tenkasi V.
    • G10L15/00G10L15/28G10L19/00G10L19/093G10L15/30G10L25/18
    • G10L15/30G10L19/00G10L19/093G10L25/18
    • A method of reconstructing speech input at a communication device comprises receiving, at the communication device, encoded data that includes encoded spectral data and encoded energy data of the speech input, the encoded spectral data being encoded as a series of mel-frequency cepstral coefficients. The method further comprises decoding, at the communication device, the encoded spectral data and encoded energy data to determine the spectral data and energy data, wherein decoding comprises: performing an inverse discrete cosine transform on the mel-frequency cepstral coefficients at harmonic mel-frequencies corresponding to a pitch period of the speech input to determine log-spectral magnitudes of the speech input at the harmonic mel-frequencies, and exponentiating the log-spectral magnitudes to determine the spectral magnitudes of the speech input. The method also comprises combining the spectral data and energy data to reconstruct the speech input at the communication device. A communication device for use in distributed speech recognition system is also disclosed.
    • 在通信设备处重建的语音输入的方法包括:接收,在通信设备处,编码数据确实包括编码的频谱数据与所述语音输入的编码能量数据,将编码的频谱数据被编码为一系列梅尔频率倒谱系数的。 该方法进一步包括解码,在通信装置中,所述编码的频谱数据和编码的能量数据来确定矿的光谱数据和能量数据,worin解码的步骤包括:对梅尔频率倒谱系数进行在逆离散余弦变换在谐波梅尔频率 对应于在谐波频率梅尔语音输入到版speechInput确定性矿日志频谱幅度的音调周期,并取幂日志频谱幅度确定性矿版speechInput的频谱幅度。 因此,该方法包括组合的光谱数据和能量数据来重建在所述通信装置中的语音输入。 在分布式语音识别系统中使用的通信装置是这样游离缺失盘。