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    • 2. 发明申请
    • TECHNIQUES FOR FILTERING MULTI-COMPONENT SIGNALS
    • 用于过滤多组分信号的技术
    • WO2016069840A1
    • 2016-05-06
    • PCT/US2015/057952
    • 2015-10-29
    • OSSIA INC.
    • SHYLENDRA, PrithviJOHNSON, Anthony L.ZEINE, HatemWILLIAMS, Douglas Wayne
    • G01V1/36G01V1/28
    • H04B5/0037H02J7/025H04B5/0075H04L43/028
    • Techniques are described herein for filtering and/or otherwise isolating or extracting components of multi-component signals. More specifically, embodiments of the present disclosure describe techniques for filtering and/or otherwise extracting a continuous wave component (or wireless power component) (515) and a modulated data component (510) from a multi-component signal (525). In some embodiments, the techniques describe systems (505, 605), apparatuses (750) and methods (800) for filtering and/or otherwise isolating or extracting a frequency (e.g., modulated data component) (510) from a continuous wave (e.g., wireless power component) (515) without affecting the levels of other frequencies. The individual components or signals (510, 515) can be transmitted by one or more sources and received at one or more existing antennas (520, 620) of an electronic device (602) simultaneously.
    • 这里描述了用于过滤和/或以其他方式隔离或提取多分量信号的组件的技术。 更具体地,本公开的实施例描述了用于从多分量信号(525)滤波和/或以其它方式提取连续波分量(或无线功率分量)(515)和调制数据分量(510)的技术。 在一些实施例中,技术描述了用于过滤和/或以其他方式从连续波(例如,调制数据分量)(510)分离或提取频率(例如,调制数据分量)(510)的系统(505,605),设备(750)和方法(800) ,无线功率分量)(515),而不影响其他频率的电平。 各个组件或信号(510,515)可以由一个或多个源发送并同时在电子设备(602)的一个或多个现有天线(520,620)处接收。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR IMPROVED PHASE DETERMINATIONS IN WIRELESS POWER DELIVERY ENVIRONMENTS
    • 无线电力交付环境中改进相位确定的系统和方法
    • WO2017035316A1
    • 2017-03-02
    • PCT/US2016/048586
    • 2016-08-25
    • OSSIA INC.
    • WILLIAMS, DouglasQAMHEYEH, RashaZEINE, HatemMAYES, Dale Donald
    • H04B3/46
    • H02J50/10G01R29/0892H02J7/025H02J50/80H04B5/0037
    • Systems and methods for improvement in transmission antenna design and, more particularly, for rapid determine phase determination of incoming signals are described herein. In some embodiments, a phase detection system is described. The phase detection system includes a phase detection apparatus (800) and a control system (310). The phase detection apparatus includes a phase shifting element (810) and a phase detector element (820). The phase shifting element is configured to phase-shift a reference signal (805) multiple times per detection cycle. The phase detector element (820) is configured to compare an incoming signal (835) to multiple phases of the phase-shifted reference signal, e.g., phase-shifted reference signal (806), during the detection cycle, and generate an output (830) indicating a relative phase difference between the incoming signal (830) and the phase-shifted reference signal (806) for each of the multiple phases. The control system is configured to determine a relative phase of the incoming signal based, at least in part, on the outputs.
    • 在此描述用于改进发射天线设计的系统和方法,更具体地说,用于快速确定输入信号的相位确定。 在一些实施例中,描述了相位检测系统。 相位检测系统包括相位检测装置(800)和控制系统(310)。 相位检测装置包括相移元件(810)和相位检测元件(820)。 相移元件被配置为每个检测周期多次相移基准信号(805)。 相位检测器元件(820)被配置为在检测周期期间将输入信号(835)与移相参考信号的多个相位(例如相移基准信号(806))进行比较,并产生输出(830 ),其指示对于多个相中的每一个,输入信号(830)和相移参考信号(806)之间的相对相位差。 控制系统被配置为至少部分地基于输出来确定输入信号的相对相位。
    • 6. 发明申请
    • TECHNIQUES FOR DELIVERING RETRODIRECTIVE WIRELESS POWER
    • 提供回溯无线电力的技术
    • WO2016164785A1
    • 2016-10-13
    • PCT/US2016/026735
    • 2016-04-08
    • OSSIA INC.
    • ZEINE, Hatem
    • H04W40/06H02J50/27H04W52/30
    • H02J50/80H02J50/10H02J50/40
    • Techniques are described herein for delivering retrodirective wireless radio frequency (RF) power to a client device in a wireless power delivery environment. More specifically, embodiments of the present disclosure describe techniques for delivering directed wireless RF power to a client device (502) in a wireless power delivery environment (501) via multiple wireless power signals over multiple wireless power delivery paths (PATH P 1 - PATH P 3 ). The client device (502) includes one or more RF client transceivers (503) that collectively have a radiation and reception pattern (510) in a three-dimensional space proximate to the client device. The techniques identify the wireless power delivery paths over which wireless power signals can be delivered and deliver the wireless power in a manner that matches the client radiation and reception pattern in the three-dimensional space proximate to the client device.
    • 本文描述了在无线电力输送环境中向客户端设备提供逆向无线射频(RF)功率的技术。 更具体地,本公开的实施例描述了通过多个无线功率传递路径(PATH P1-PATH P3)经由多个无线功率信号将有向无线RF功率传送到无线功率传递环境(501)中的客户端设备(502)的技术, 。 客户端设备(502)包括一个或多个RF客户收发器(503),其在靠近客户端设备的三维空间中共同具有辐射和接收模式(510)。 该技术识别无线功率传输路径,无线功率信号可以通过哪个无线功率传递路径传送,并以与客户端设备邻近的三维空间中的客户端辐射和接收模式匹配的方式传递无线功率。
    • 7. 发明申请
    • SYSTEMS AND METHODS FOR WIRELESS POWER AND COMMUNICATION
    • 无线电和通信系统与方法
    • WO2015112514A2
    • 2015-07-30
    • PCT/US2015/012099
    • 2015-01-20
    • OSSIA, INC.
    • ZEINE, Hatem
    • H04B5/00H02J7/02
    • H04B5/0037H02J7/025H02J50/20H02J50/80H04B5/0031H04W4/80H04W52/0296
    • The present invention relates to systems and methods for a charger which interacts with devices equipped with receivers. The charger may likewise have access to a server via a network connection. The charger receives a beacon signal from the receiver, and transmits power, and a control signal, to the device. Applications enable proper communication between the charger and the receiver. The receiver interprets and effectuates the commands. The receiver also includes sensors which generate data regarding the device status and usage. This data is provided to the server, via the charger. The server maintains a database of all user data collected from the devices, as well as user configurations. The user and third parties may access this data.
    • 本发明涉及与配备有接收器的设备相互作用的充电器的系统和方法。 充电器也可以经由网络连接访问服务器。 充电器从接收器接收信标信号,并向设备发送电力和控制信号。 应用程序可以实现充电器和接收器之间的正常通信。 接收器解释并实现命令。 接收器还包括生成关于设备状态和使用的数据的传感器。 该数据通过充电器提供给服务器。 服务器维护从设备收集的所有用户数据的数据库以及用户配置。 用户和第三方可以访问此数据。