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    • 1. 发明申请
    • Unobstrusive placement of wireless antenna for CE devices
    • CE设备无线天线的无障碍放置
    • US20090231212A1
    • 2009-09-17
    • US12075972
    • 2008-03-14
    • Robert L. HardackerJames R. Milne
    • Robert L. HardackerJames R. Milne
    • H01Q1/24H01P11/00
    • H01Q1/12H01Q1/22H01Q1/2266H04N5/64Y10T29/49016
    • An embodiment of the present invention includes a technique to attach a wireless antenna to a consumer electronics (CE) device. A removable bezel holds a display assembly of the CE device. An antenna attachment mechanism integrated to the removable bezel at a pre-determined location to allow connection to a radio frequency (RF) communication circuit internal to the CE device. The antenna attachment mechanism is adapted for attachment to a wireless antenna used in a wireless transmission. In another embodiment, a wireless antenna is integrated within the removable bezel at a pre-determined location. The wireless antenna is coupled to the RF communication circuit for a wireless transmission. In yet another embodiment, an antenna assembly is attached to the removable bezel at a pre-determined location. The antenna assembly has a wireless antenna coupled to the RF communication circuit for a wireless transmission.
    • 本发明的实施例包括将无线天线连接到消费电子设备(CE)设备的技术。 可移动挡板保持CE设备的显示组件。 天线附接机构,其在预定位置处集成到可拆卸边框,以允许连接到CE设备内部的射频(RF)通信电路。 天线连接机构适用于连接到无线传输中使用的无线天线。 在另一个实施例中,无线天线在预定位置处集成在可移除的边框内。 无线天线耦合到RF通信电路用于无线传输。 在另一个实施例中,天线组件在预定位置处附接到可移除的边框。 天线组件具有耦合到RF通信电路的无线天线用于无线传输。
    • 2. 发明授权
    • Unobstrusive placement of wireless antenna for CE devices
    • CE设备无线天线的无障碍放置
    • US07768472B2
    • 2010-08-03
    • US12075972
    • 2008-03-14
    • Robert L. HardackerJames R. Milne
    • Robert L. HardackerJames R. Milne
    • H01Q1/12
    • H01Q1/12H01Q1/22H01Q1/2266H04N5/64Y10T29/49016
    • An embodiment of the present invention includes a technique to attach a wireless antenna to a consumer electronics (CE) device. A removable bezel holds a display assembly of the CE device. An antenna attachment mechanism integrated to the removable bezel at a pre-determined location to allow connection to a radio frequency (RF) communication circuit internal to the CE device. The antenna attachment mechanism is adapted for attachment to a wireless antenna used in a wireless transmission. In another embodiment, a wireless antenna is integrated within the removable bezel at a pre-determined location. The wireless antenna is coupled to the RF communication circuit for a wireless transmission. In yet another embodiment, an antenna assembly is attached to the removable bezel at a pre-determined location. The antenna assembly has a wireless antenna coupled to the RF communication circuit for a wireless transmission.
    • 本发明的实施例包括将无线天线连接到消费电子设备(CE)设备的技术。 可移动挡板保持CE设备的显示组件。 天线附接机构,其在预定位置处集成到可拆卸边框,以允许连接到CE设备内部的射频(RF)通信电路。 天线连接机构适用于连接到无线传输中使用的无线天线。 在另一个实施例中,无线天线在预定位置处集成在可移除的边框内。 无线天线耦合到RF通信电路进行无线传输。 在另一个实施例中,天线组件在预定位置处附接到可移除的边框。 天线组件具有耦合到RF通信电路的无线天线用于无线传输。
    • 6. 发明授权
    • Lower power wake-up device
    • 低功率唤醒设备
    • US08019316B2
    • 2011-09-13
    • US12151214
    • 2008-05-05
    • James HustonJames R. Milne
    • James HustonJames R. Milne
    • H04B1/06
    • H04B1/24H04W52/0229H04W52/0245Y02D70/40
    • A circuit producing a wake-up signal with a frequency selective RF amplifier that produces an amplified RF output. An RF detector detects the RF output and produces a signal W indicative of the the RF output signal's presence. A threshold detector determines if the amplified output signal has reached a predetermined threshold and produces an output T. A clock signal is generated in response to the threshold detector output signal T. A data decoder logic circuit turns off the clock in the absence of an RF output signal for a time period and decodes the RF detector output W into a stream of output signals. A serial comparator compares a most recent stream of N output data from the data decoder logic with a stored reference to generate a wake-up signal that enables power to an electronic system. This abstract is not to be considered limiting, since other embodiments may deviate from the features described in this abstract.
    • 产生具有产生放大RF输出的频率选择性RF放大器的唤醒信号的电路。 RF检测器检测RF输出并产生指示RF输出信号存在的信号W. 阈值检测器确定放大的输出信号是否已经达到预定阈值并产生输出T.响应于阈值检测器输出信号T产生时钟信号。数据解码器逻辑电路在没有RF的情况下关闭时钟 输出信号并将RF检测器输出W解码为输出信号流。 串行比较器将来自数据解码器逻辑的N个输出数据的最新流与存储的参考进行比较,以生成启用电子系统的唤醒信号。 该摘要不被认为是限制性的,因为其他实施例可能偏离本摘要中描述的特征。
    • 7. 发明申请
    • Point of Deployment Module to Retrofit Upstream Transmission Capability to an Audiovisual Device
    • 将视频设备的上行传输能力进行改造的部署模块
    • US20100005484A1
    • 2010-01-07
    • US12060008
    • 2008-03-31
    • Brant CandeloreWilliam G. BennettJames R. Milne
    • Brant CandeloreWilliam G. BennettJames R. Milne
    • H04N7/167H04N7/173
    • H04N7/163H04N21/4181H04N21/4183H04N21/42623H04N21/4405
    • A point of deployment module includes a HOST-POD interface for connecting the point of deployment module to a digital audiovisual receiver. A first connector on the point of deployment module may receive a downstream signal from a service provider. A second connector on the point of deployment module may provide a signal to a tuner of the digital audiovisual receiver. An out of band transmitter in the point of deployment module provides an upstream signal to the service provider. A combiner may be coupled to the first connector, the second connector, and the out of band transmitter. The combiner may transfer the downstream signal from the first connector to the second connector and may transfer the upstream signal from the out of band transmitter to the first connector. The point of deployment module may include a receptacle for a second point of deployment module connected to the HOST-POD interface.
    • 部署模块部分包括HOST-POD接口,用于将部署模块的部分连接到数字视听接收机。 部署模块点上的第一个连接器可以从服务提供商处接收下行信号。 在部署模块点上的第二连接器可以向数字视听接收机的调谐器提供信号。 在部署模块点的带外发射机向服务提供商提供上行信号。 组合器可以耦合到第一连接器,第二连接器和带外发射器。 组合器可以将下游信号从第一连接器传送到第二连接器,并且可以将来自带外发射机的上行信号传送到第一连接器。 部署模块的部分可以包括用于连接到HOST-POD接口的第二部署模块的插座。
    • 8. 发明申请
    • Lower power wake-up device
    • 低功率唤醒设备
    • US20090275302A1
    • 2009-11-05
    • US12151214
    • 2008-05-05
    • James HustonJames R. Milne
    • James HustonJames R. Milne
    • H04B1/06
    • H04B1/24H04W52/0229H04W52/0245Y02D70/40
    • A circuit for producing a wake-up signal to control powering up an electronic system, has a frequency selective radio frequency (RF) amplifier circuit that amplifies signals within a predetermined frequency range and produces an amplified RF output signal. An RF detector detects the presence of amplified RF output at the output of the amplifier circuit and produces a signal W indicative of the instantaneous presence of the RF output signal. A threshold detector circuit determines if the amplified output signal has reached a predetermined threshold and produces an output signal T. A clock generates a clock signal having clock period in response to the threshold detector output signal T. A data decoder logic circuit turns off the clock in the absence of an RF output signal for a prescribed time period and decodes the RF detector output signal W into a stream of output signals. A serial comparator circuit compares a most recent stream of N output data signals from the data decoder logic circuit with a stored reference pattern, wherein when the most recent stream of N output logic signals from the data decoder logic circuit matches the stored synchronization pattern the serial comparator circuit generates a wake-up signal that enables power to the electronic system. This abstract is not to be considered limiting, since other embodiments may deviate from the features described in this abstract.
    • 用于产生唤醒信号以控制向电子系统供电的电路具有放大在预定频率范围内的信号并产生放大的RF输出信号的频率选择性射频(RF)放大器电路。 RF检测器检测在放大器电路的输出处存在放大的RF输出,并产生指示RF输出信号的瞬时存在的信号W. 阈值检测器电路确定放大的输出信号是否已经达到预定阈值并产生输出信号T.时钟响应于阈值检测器输出信号T产生具有时钟周期的时钟信号。数据解码器逻辑电路关闭时钟 在没有RF输出信号达规定时间段的情况下,将RF检测器输出信号W解码为输出信号流。 串行比较器电路将来自数据解码器逻辑电路的N个输出数据信号的最新流与存储的参考模式进行比较,其中当来自数据解码器逻辑电路的N个输出逻辑信号的最新流与所存储的同步模式匹配时, 比较器电路产生唤醒信号,使得电子系统能够通电。 该摘要不被认为是限制性的,因为其他实施例可能偏离本摘要中描述的特征。