ELECTRONIC APPARATUS AND CONTROL METHOD THEREFOR
    91.
    发明申请
    ELECTRONIC APPARATUS AND CONTROL METHOD THEREFOR 有权
    电子设备及其控制方法

    公开(公告)号:US20150046734A1

    公开(公告)日:2015-02-12

    申请号:US14524084

    申请日:2014-10-27

    Abstract: An electronic apparatus and a control method are provided that are capable of reducing power consumption. The electronic apparatus having a normal mode in which first electric power is consumed and a power-saving mode in which second electric power lower than the first electric power is consumed includes a first sensor and a second sensor whose power consumption is lower than that of the first sensor. In the power-saving mode, supply of power to the first sensor is restricted, the second sensor is set to the power-saving mode, a trigger for restoring the power-saving mode to the normal mode is detected by using the second sensor set to the power-saving mode, and the power-saving mode is restored to the normal mode based on the detected trigger.

    Abstract translation: 提供能够降低功耗的电子设备和控制方法。 具有消耗第一电力的正常模式的电子设备和消耗低于第一电力的第二电力的功率节省模式包括第一传感器和功率消耗低于第一电力的第二传感器 第一传感器 在省电模式下,对第一传感器的供电受到限制,第二传感器被设置为省电模式,通过使用第二传感器组来检测将功率恢复模式恢复到正常模式的触发 到省电模式,并且基于检测到的触发将节电模式恢复到正常模式。

    Wireless communication method between a control unit and an electronic housing mounted on a vehicle member
    92.
    发明授权
    Wireless communication method between a control unit and an electronic housing mounted on a vehicle member 有权
    控制单元和安装在车辆构件上的电子壳体之间的无线通信方法

    公开(公告)号:US08791808B2

    公开(公告)日:2014-07-29

    申请号:US13509038

    申请日:2010-10-07

    Inventor: Nicolas Guinart

    CPC classification number: G08C17/02 G08C2201/10

    Abstract: In a method for wireless communication between a control unit and an electronic housing mounted on a vehicle member, information for the electronic housing is transmitted in the form either of continuous signals, or of signals modulated by encoded data. Each electronic housing includes a switching strategy between reception modes for the two types of signals, including establishing a permanent standby state for continuous signal reception and, upon the reception of a continuous signal, controlling a switchover to the modulated-signal reception mode for a time T, after which the electronic housing processes the data of the potential detected modulated signal and, if no such modulated signal is detected, processes the continuous signal at the origin of the switchover. Furthermore, after the time T, a reverse switchover control to the permanent standby state is delivered.

    Abstract translation: 在控制单元和安装在车辆构件上的电子壳体之间进行无线通信的方法中,以连续信号或由编码数据调制的信号的形式发送电子壳体的信息。 每个电子壳体包括用于两种类型的信号的接收模式之间的切换策略,包括建立用于连续信号接收的永久待机状态,并且在接收到连续信号时,控制切换到调制信号接收模式一段时间 T之后,电子壳体处理潜在检测到的调制信号的数据,并且如果没有检测到这样的调制信号,则处理在切换原点的连续信号。 此外,在时间T之后,传送到永久待机状态的反向切换控制。

    SYSTEM AND METHOD FOR TRANSMITTING MEASUREMENT SIGNALS IN SPATIALLY EXTENSIVE SUPPLY NETWORKS
    94.
    发明申请
    SYSTEM AND METHOD FOR TRANSMITTING MEASUREMENT SIGNALS IN SPATIALLY EXTENSIVE SUPPLY NETWORKS 有权
    用于在空间广泛的供应网络中传输测量信号的系统和方法

    公开(公告)号:US20130054174A1

    公开(公告)日:2013-02-28

    申请号:US13662818

    申请日:2012-10-29

    Abstract: Exemplary systems and methods for monitoring a current state of a spatially extensive supply network having at least one control station that monitors and controls the supply network and a plurality of sensors that transmit measurement values relating to operating behavior to the at least one control station. Current measurement values are measured at positions on the supply network corresponding to each sensor. Each sensor analyzes measured signal variations and signal trends of the measured current values via an evaluating unit. The measurement values of each respective sensor are transmitted to the at least one control station in data packets at a defined time. At each respective sensor, when the analysis detects an abnormal measurement signal variation, a frequency of transmission of the respective sensor and each adjacent sensor is increased, the respective sensor transmitting the measurement values to the at least one control station or to adjacent sensors to which the respective sensor is connected to through a common supply line and which measure an identical or physically similar quantity.

    Abstract translation: 用于监测空间广泛的供应网络的当前状态的示例性系统和方法,其具有监控和控制供应网络的至少一个控制站以及将与操作行为相关的测量值传送到至少一个控制站的多个传感器。 在与每个传感器对应的供电网络上的位置处测量电流测量值。 每个传感器通过评估单元分析测量的电流值的测量信号变化和信号趋势。 每个相应传感器的测量值在定义的时间内被传送到数据分组中的至少一个控制站。 在每个相应传感器处,当分析检测到异常的测量信号变化时,相应的传感器和每个相邻的传感器的传输频率增加,相应的传感器将测量值传送到至少一个控制站或相邻传感器 相应的传感器通过公共供应管线连接,并测量相同或物理上相似的数量。

    Mechanized Playing Card Dealing Shoe with Automatic Jam Recovery
    95.
    发明申请
    Mechanized Playing Card Dealing Shoe with Automatic Jam Recovery 审中-公开
    机械化纸牌处理鞋与自动卡纸恢复

    公开(公告)号:US20120146285A1

    公开(公告)日:2012-06-14

    申请号:US13399094

    申请日:2012-02-17

    CPC classification number: G08C17/00 A63F1/14 G08C2201/10 G08C2201/50

    Abstract: A distinct dealing shoe having no shuffling functionality receives a shuffled, randomized or ordered group of cards. The cards may be mechanically moved one at a time from a receiving area for the deck to a buffer area where more than one card is temporarily stored. The cards in the buffer area are then mechanically moved to a card delivery area where the cards may be manually removed, one at a time, by a dealer. The cards are read one at a time inside of the dealing shoe, either before the buffer area or after leaving the buffer area, but preferably before the cards are being manually removed from a card delivery area. Information from the card reading may be used for game tracking, hand tracking, player information, and other security issues at casino table card games.

    Abstract translation: 没有洗牌功能的独特交易鞋接收洗牌,随机或有序的一组卡片。 卡可以一次一个地从卡片的接收区域移动到暂时存储多于一个卡的缓冲区域。 然后将缓冲区中的卡机械地移动到卡片传送区域,其中可以由经销商手动地移除卡片,每次一个。 在缓冲区之前或离开缓冲区之后,优选地,在卡被从卡交付区域手动地移除之前,这些卡在交易鞋内部一次读取。 来自读卡的信息可以用于游戏跟踪,手跟踪,玩家信息以及赌场桌牌游戏中的其他安全问题。

    CONTROLLING A REMOTE ELECTRONIC DEVICE IN A CONTROL STATE
    96.
    发明申请
    CONTROLLING A REMOTE ELECTRONIC DEVICE IN A CONTROL STATE 有权
    在控制状态下控制远程电子设备

    公开(公告)号:US20120050622A1

    公开(公告)日:2012-03-01

    申请号:US13196225

    申请日:2011-08-02

    Abstract: An electronic device for controlling a remote electronic device is described. The electronic device includes a processor and instructions stored in memory that is in electronic communication with the processor. The electronic device enters a control state that is not a power off state and is not a power on state. The electronic device also generates a control message for a remote electronic device while in the control state. The electronic device further transmits the control message for controlling the remote electronic device while in the control state.

    Abstract translation: 描述用于控制远程电子设备的电子设备。 电子设备包括处理器和存储在与处理器电子通信的存储器中的指令。 电子设备进入不是断电状态并且不是通电状态的控制状态。 电子设备在处于控制状态时也产生用于远程电子设备的控制消息。 电子设备在处于控制状态时进一步发送用于控制远程电子设备的控制消息。

    REMOTE CONTROL SIGNAL RECEIVER AND ELECTRICAL APPARATUS
    97.
    发明申请
    REMOTE CONTROL SIGNAL RECEIVER AND ELECTRICAL APPARATUS 审中-公开
    远程控制信号接收器和电气设备

    公开(公告)号:US20110254722A1

    公开(公告)日:2011-10-20

    申请号:US13072038

    申请日:2011-03-25

    Applicant: Takashi Naiki

    Inventor: Takashi Naiki

    CPC classification number: G08C17/02 G08C23/04 G08C2201/10 G08C2201/71

    Abstract: A remote control signal receiver includes a receiving sensor to receive a remote control signal for remotely controlling an electrical apparatus, a receiving signal processor to judge whether or not the receiving sensor received the remote control signal, to recognize a direction included in the remote control signal and to generate an internal signal in response to the direction in accordance with the receiving signal, and an intermittent controller to drive the receiving sensor intermittently during a standby period of the electrical apparatus.

    Abstract translation: 遥控信号接收机包括:接收传感器,用于接收用于远程控制电气设备的遥控信号;接收信号处理器,用于判断接收传感器是否接收到遥控信号,以识别遥控信号中包含的方向 并且响应于根据接收信号的方向产生内部信号;以及间歇控制器,在电气设备的待机期间间歇地驱动接收传感器。

    MEASURING DEVICE FOR MEASURING RELATIVE ROTATIONAL SPEEDS USING WIRELESS SIGNAL TRANSFER
    99.
    发明申请
    MEASURING DEVICE FOR MEASURING RELATIVE ROTATIONAL SPEEDS USING WIRELESS SIGNAL TRANSFER 审中-公开
    使用无线信号传输测量相对转速的测量装置

    公开(公告)号:US20110018526A1

    公开(公告)日:2011-01-27

    申请号:US12735736

    申请日:2009-02-11

    Abstract: A measuring device for measuring the relative rotational speed of a rotor which rotates with respect to a stator, having at least one inductive pulse generator which is supported by the stator and comprises at least one induction coil in which an electrical voltage which represents a rotational speed measurement signal for the rotational speed is induced by the rotation of the rotor provided with circumferential markings.

    Abstract translation: 一种测量装置,用于测量相对于定子旋转的转子的相对旋转速度,所述转子具有至少一个感应脉冲发生器,所述感应脉冲发生器由定子支撑并且包括至少一个感应线圈,其中表示转速 通过具有圆周标记的转子的旋转引起转速的测量信号。

    Systems and Methods for Zero-Power Security
    100.
    发明申请
    Systems and Methods for Zero-Power Security 审中-公开
    零电力安全系统与方法

    公开(公告)号:US20100085160A1

    公开(公告)日:2010-04-08

    申请号:US12541751

    申请日:2009-08-14

    Inventor: Kevin Edward Fu

    Abstract: The present invention provides systems and methods for utilizing zero-power, energy-harvesting computational modules to provide secure and reprogrammable wireless communications with vulnerable devices comprising integrated circuits (ICs), including active implantable medical devices, electronic lock and key systems, credit cards, access cards, identification cards and passports. The zero-power, energy-harvesting computational modules are powered by radio signals received from an interrogator, and requests from the interrogator are authenticated using an encrypted challenge-response mechanism. Communications between the interrogator and the vulnerable device are enabled if the interrogator requests have been authenticated, thus preventing unauthorized requests from reaching the vulnerable device.

    Abstract translation: 本发明提供了用于利用零功率能量收集计算模块来提供与易受攻击的设备的安全和可编程的无线通信的系统和方法,所述脆弱设备包括集成电路(IC),包括主动植入式医疗设备,电子锁和关键系统,信用卡, 访问卡,身份证和护照。 零功率的能量收集计算模块由从询问器接收的无线电信号提供动力,并且使用加密的挑战 - 响应机制认证来自询问器的请求。 如果询问器请求已被认证,则询问器和易受攻击的设备之间的通信被启用,从而防止未经授权的请求到达易受攻击的设备。

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