MULTISERVICE COMMUNICATION DEVICE WITH LOGICAL CONTROL CHANNEL
    41.
    发明申请
    MULTISERVICE COMMUNICATION DEVICE WITH LOGICAL CONTROL CHANNEL 有权
    具有逻辑控制通道的多设备通信设备

    公开(公告)号:US20100113088A1

    公开(公告)日:2010-05-06

    申请号:US12264419

    申请日:2008-11-04

    IPC分类号: H04M1/00

    摘要: A multiservice communication device includes a plurality of transceivers that wirelessly transceive network data with a corresponding plurality of networks in accordance with a corresponding plurality of network protocols, wherein at least one of the plurality of transceivers further transceives control channel data with a remote management unit contemporaneously with the network data via a logical control channel carried using the corresponding one of the plurality of network protocols, wherein the control channel data includes local control data sent to the management unit and remote control data received from the management unit. A processing module processes the remote control data and generates a least one control signal in response thereto, the at least one control signal for adapting at least one of the plurality of transceivers based on the remote control data.

    摘要翻译: 多业务通信设备包括多个收发器,其根据相应的多个网络协议与相应的多个网络无线地收发网络数据,其中所述多个收发器中的至少一个收发器进一步与远程管理单元同时收发控制信道数据 与通过使用多个网络协议中的相应一个所携带的逻辑控制信道的网络数据进行通信,其中控制信道数据包括发送到管理单元的本地控制数据和从管理单元接收的远程控制数据。 处理模块处理遥控数据并响应于此产生至少一个控制信号,所述至少一个控制信号用于根据遥控数据调整多个收发器中的至少一个。

    MULTIPLE FREQUENCY BAND INFORMATION SIGNAL UNIVERSAL FRONT END
    42.
    发明申请
    MULTIPLE FREQUENCY BAND INFORMATION SIGNAL UNIVERSAL FRONT END 审中-公开
    多频段信号信号通用前端

    公开(公告)号:US20100261437A1

    公开(公告)日:2010-10-14

    申请号:US12550542

    申请日:2009-08-31

    IPC分类号: H04B1/40

    CPC分类号: H04B1/005 H04B1/0003

    摘要: A wireless device includes processing circuitry, a receiver section, a transmitter section, and an antenna. The processing circuitry determines a set of information signals of a RF Multiple Frequency Bands Multiple Standards (MFBMS) signal. The receiver section includes a plurality of receive paths, each having down-conversion circuitry that down-converts a portion of the RF MFBMS signal by a respective shift frequency to produce a corresponding baseband/low Intermediate Frequency (BB/IF) information signal. A combiner combines the plurality of BB/IF information signals to form a BB/IF MFBMS signal, from which the processing circuitry extracts data. The transmitter section includes a plurality of transmit paths, each having up-conversion circuitry operable to up-convert a respective BB/IF information signal received from the processing circuitry by a respective shift frequency to produce a corresponding RF information signal and a combiner that combines the RF information signals to form a RF MFBMS signal.

    摘要翻译: 无线设备包括处理电路,接收机部分,发射机部分和天线。 处理电路确定RF多频带多标准(MFBMS)信号的一组信息信号。 接收器部分包括多个接收路径,每个接收路径具有下变频电路,其将RF MFBMS信号的一部分下变频相应的移位频率以产生相应的基带/低中频(BB / IF)信息信号。 组合器组合多个BB / IF信息信号以形成BB / IF MFBMS信号,处理电路从该信号提取数据。 发射机部分包括多个发射路径,每个发射路径具有上转换电路,其可操作以将从处理电路接收的相应BB / IF信息信号上变频相应的移位频率以产生对应的RF信息信号和组合器 RF信息信号以形成RF MFBMS信号。

    Multiple frequency band multiple standard device with reduced blocker
    43.
    发明授权
    Multiple frequency band multiple standard device with reduced blocker 有权
    多频段多标准设备减少阻塞

    公开(公告)号:US08107890B2

    公开(公告)日:2012-01-31

    申请号:US12328579

    申请日:2008-12-04

    IPC分类号: H04B1/38 H04J3/22

    摘要: A device includes a transcevier and a processing module. The transceiver is operable to receive a wireless communication request from a requesting wireless communication device and to convert the wireless communication request into a baseband or near baseband request signal. The processing module is operable to determine multiple frequency band multiple standard (MFBMS) capabilities of the requesting and the target wireless communication devices based on the baseband or near baseband request signal. When the devices have at least two frequency band standards in common, the processing module allocates a communication resource of one of the two frequency band standards for a first communication path from the requesting wireless communication device to the target wireless communication device and allocates a communication resource of another one of the two frequency band standards for a second communication path from the target wireless communication device to the requesting wireless communication device.

    摘要翻译: 一种设备包括一个收发器和一个处理模块。 收发器可操作以从请求无线通信设备接收无线通信请求,并将无线通信请求转换为基带或近基带请求信号。 处理模块可操作以基于基带或近基带请求信号确定请求和目标无线通信设备的多个频带多标准(MFBMS)能力。 当设备具有共同的至少两个频带标准时,处理模块分配用于从请求无线通信设备到目标无线通信设备的第一通信路径的两个频带标准之一的通信资源,并且分配通信资源 用于从目标无线通信设备到请求无线通信设备的第二通信路径的两个频带标准中的另一个。

    Simultaneous testing of semiconductor components on a wafer
    47.
    发明授权
    Simultaneous testing of semiconductor components on a wafer 有权
    同时测试晶圆上的半导体元件

    公开(公告)号:US09002673B2

    公开(公告)日:2015-04-07

    申请号:US13025657

    申请日:2011-02-11

    摘要: Methods and apparatus are disclosed to simultaneously, wirelessly test semiconductor components formed on a semiconductor wafer. The semiconductor components transmit respective outcomes of a self-contained testing operation to wireless automatic test equipment via a common communication channel. Multiple receiving antennas observe the outcomes from multiple directions in three dimensional space. The wireless automatic test equipment determines whether one or more of the semiconductor components operate as expected and, optionally, may use properties of the three dimensional space to determine a location of one or more of the semiconductor components. The wireless testing equipment may additionally determine performance of the semiconductor components by detecting infrared energy emitted, transmitted, and/or reflected by the semiconductor wafer before, during, and/or after a self-contained testing operation.

    摘要翻译: 公开了同时无线地测试形成在半导体晶片上的半导体元件的方法和装置。 半导体部件通过公共通信信道将各自的测试结果传送到无线自动测试设备。 多个接收天线在三维空间中观察多个方向的结果。 无线自动测试设备确定一个或多个半导体组件是否按预期运行,并且可选地,可以使用三维空间的属性来确定一个或多个半导体组件的位置。 无线测试设备还可以通过检测在独立测试操作之前,期间和/或之后由半导体晶片发射,传输和/或反射的红外能量来确定半导体组件的性能。

    Simultaneously tagging of semiconductor components on a wafer
    50.
    发明授权
    Simultaneously tagging of semiconductor components on a wafer 有权
    同时在晶片上标记半导体元件

    公开(公告)号:US08866502B2

    公开(公告)日:2014-10-21

    申请号:US13029653

    申请日:2011-02-17

    摘要: Methods and apparatus are disclosed to simultaneously, wirelessly test semiconductor components formed on a semiconductor wafer. The semiconductor components transmit respective outcomes of a self-contained testing operation to wireless automatic test equipment via a common communication channel. Multiple receiving antennas observe the outcomes from multiple directions in three dimensional space. The wireless automatic test equipment determines whether one or more of the semiconductor components operate as expected and, optionally, may use properties of the three dimensional space to determine a location of one or more of the semiconductor components. The wireless testing equipment may additionally determine performance of the semiconductor components by detecting infrared energy emitted, transmitted, and/or reflected by the semiconductor wafer before, during, and/or after a self-contained testing operation.

    摘要翻译: 公开了同时无线地测试形成在半导体晶片上的半导体元件的方法和装置。 半导体部件通过公共通信信道将各自的测试结果传送到无线自动测试设备。 多个接收天线在三维空间中观察多个方向的结果。 无线自动测试设备确定一个或多个半导体组件是否按预期运行,并且可选地,可以使用三维空间的属性来确定一个或多个半导体组件的位置。 无线测试设备还可以通过检测在独立测试操作之前,期间和/或之后由半导体晶片发射,传输和/或反射的红外能量来确定半导体组件的性能。