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    • 1. 发明申请
    • CMOS BASED RF ANTENNA SWITCH
    • CMOS基于射频天线开关
    • WO2014052413A1
    • 2014-04-03
    • PCT/US2013/061618
    • 2013-09-25
    • DSP GROUP INC.
    • MOSTOV, AlexanderHASSON, Yaron
    • H01Q1/52H01Q1/24H01Q3/01
    • H03F1/0211H01L23/645H01L23/66H01L2223/6611H01L2223/6672H01L2223/6677H01L2924/0002H03F1/0261H03F3/24H01L2924/00
    • A novel and useful radio frequency (RF) front end module (FEM) circuit that provides high linearity and power efficiency and meets the requirements of modern wireless communication standards such as 802.11 WLAN, 3G and 4G cellular standards, Bluetooth, ZigBee, etc. The configuration of the FEM circuit permits the use of common, relatively low cost semiconductor fabrication techniques such as standard CMOS processes. The FEM circuit includes a power amplifier made up of one or more sub-amplifiers having high and low power circuits and whose outputs are combined to yield the total desired power gain. An integrated multi-tap transformer having primary and secondary windings arranged in a novel configuration provide efficient power combining and transfer to the antenna of the power generated by the individual sub-amplifiers.
    • 一种新颖有用的射频(RF)前端模块(FEM)电路,提供高线性度和功率效率,并满足现代无线通信标准(如802.11 WLAN,3G和4G蜂窝标准,蓝牙,ZigBee等)的要求。 有限元电路的配置允许使用常见的,相对低成本的半导体制造技术,例如标准CMOS工艺。 FEM电路包括由具有高功率电路和低功率电路的一个或多个子放大器组成的功率放大器,并且其输出被组合以产生总的期望功率增益。 具有以新颖配置布置的初级和次级绕组的集成多抽头变压器提供了由各个子放大器产生的功率的有效功率组合和传输到天线。
    • 4. 发明申请
    • MULTI-BAND ANTENNA STRUCTURE
    • 多束天线结构
    • WO2005048398A2
    • 2005-05-26
    • PCT/US2004035711
    • 2004-10-28
    • DSP GROUP INC
    • SIEGLER MICHAEL JSAINATI ROBERT
    • H01Q1/22H01Q1/24H01Q1/36H01Q5/00H01Q9/28H01Q9/36H01Q21/29H01Q23/00H01Q
    • H01Q1/2275H01Q1/22H01Q1/2258H01Q1/243H01Q1/36H01Q5/321H01Q9/285H01Q9/36H01Q21/29H01Q23/00
    • The invention provides a multi-band antenna structure for use in a wireless communication system. The antenna structure includes integrated inductive elements and capacitive elements that function as a tuned circuit to allow the antenna structure to operate in multiple frequency ranges. In particular, the capacitive elements electromagnetically couple to the inductive elements. The capacitive elements provide the inductive elements with parallel capacitance at a given set of frequencies, thereby providing the antenna structure with frequency selectivity. At a particular frequency range, the inductive elements act as short circuits, thereby lengthening the radiating elements, which radiate energy at the particular frequency. At another frequency range, the inductive components act as open circuits, virtually shortening the radiating elements in order to radiate the higher frequencies. In this manner, the multi-band antenna structure operates within multiple frequency ranges.
    • 本发明提供一种用于无线通信系统的多频带天线结构。 天线结构包括集成的电感元件和用作调谐电路的电容元件,以允许天线结构在多个频率范围内操作。 特别地,电容元件电磁耦合到感应元件。 电容元件在给定的一组频率下提供具有并联电容的电感元件,从而为天线结构提供频率选择性。 在特定频率范围内,电感元件用作短路,从而延长辐射元件,辐射元件以特定频率辐射能量。 在另一个频率范围内,电感元件充当开路,实际上缩短了辐射元件以辐射较高的频率。 以这种方式,多频带天线结构在多个频率范围内工作。
    • 6. 发明申请
    • REMOTE CONTROL OF TRANSMITTER-SIDE RATE ADAPTATION
    • 发射机侧速度适应的远程控制
    • WO2011146399A2
    • 2011-11-24
    • PCT/US2011/036660
    • 2011-05-16
    • DSP GROUP INC.JANECEK, John, M.DILLON, Daniel, R.
    • JANECEK, John, M.DILLON, Daniel, R.
    • H04L1/18
    • H04L1/1829H04L1/0002H04L1/0036
    • In general, this disclosure is directed to techniques for remotely controlling a transmitter-side rate adaptation algorithm. According to one aspect, a method includes detecting, with a receiver device, that a packet received from a transmitter is corrupted. The method further includes sending, with the receiver device, a positive acknowledgement for the packet to the transmitter in response to at least detecting that the packet is corrupted. According to another aspect, a method includes determining, with a receiver device, a targeted outcome for a rate adaptation algorithm performed by a transmitter. The method further includes using, with the receiver device, positive acknowledgements to remotely control the rate adaptation algorithm performed by the transmitter based on at least the targeted outcome.
    • 通常,本公开涉及用于远程控制发射机侧速率适配算法的技术。 根据一个方面,一种方法包括使用接收机设备检测从发射机接收的分组被破坏。 所述方法还包括响应于至少检测到所述分组被破坏,与所述接收机设备一起向所述发射机发送所述分组的肯定确认。 根据另一方面,一种方法包括使用接收机设备确定由发射机执行的速率自适应算法的目标结果。 该方法还包括使用接收机设备,至少基于目标结果来远程控制由发射机执行的速率自适应算法的肯定确认。
    • 7. 发明申请
    • ANALOG TO DIGITAL CONVERTER WITH PING-PONG ARCHITECTURE
    • 模拟数字转换器与PING-PONG建筑
    • WO2007005392A1
    • 2007-01-11
    • PCT/US2006/024888
    • 2006-06-27
    • DSP GROUP INC.MAZHAR, Salman
    • MAZHAR, Salman
    • H03D3/00H03M1/12
    • H03M1/1225
    • The invention provides a receiver for use in a wireless communication system that substantially reduces mismatch between an in-phase (I) component and a quadrature (Q) component of a received signal. The receiver achieves this by sharing or "ping-ponging" an analog-to-digital converter (ADC) between the I and Q components. By sharing a single pipelined ADC between the I and Q components, both the I and Q components are processed by the same circuitry inside the pipelined ADC thereby eliminating many dominant sources of I-Q mismatch. The pipelined ADC operates at approximately twice the speed as other circuit components. Consequently, I-Q mismatch, which negatively affects performance, may be substantially reduced. At the same time, system complexity, cost, and power dissipation are reduced by eliminating an additional ADC typically used to process the I and Q components in parallel signal paths.
    • 本发明提供了一种在无线通信系统中使用的接收机,其基本上减少了接收信号的同相(I)分量和正交(Q)分量之间的失配。 接收器通过在I和Q组件之间共享或“乒乓”模数转换器(ADC)实现这一点。 通过在I和Q组件之间共享单个流水线ADC,I和Q分量由流水线ADC内的相同电路处理,从而消除了许多主要的I-Q失配源。 流水线ADC的工作速度大约是其他电路组件的两倍。 因此,可以显着地减少对性能的负面影响的I-Q不匹配。 同时,通过消除通常用于处理并行信号路径中的I和Q组件的额外ADC,可以降低系统复杂性,成本和功耗。
    • 8. 发明申请
    • DATA RECEPTION TECHNIQUE
    • 数据接收技术
    • WO1992012483A1
    • 1992-07-23
    • PCT/US1992000222
    • 1992-01-07
    • THE DSP GROUP, INC.
    • THE DSP GROUP, INC.HEIMAN, Arie
    • G06F11/10
    • H04N1/409H04L1/22H04N1/419
    • A data reception system and technique are disclosed. The system includes a modem (18) for receiving transmitted data including inherent redundant data and for providing received data and information regarding the received data and error recovery apparatus (22) operating on the received data for utilizing the inherent redundant data and the information regarding the received data to identify and to correct errors introduced into the received data. The technique includes the steps of receiving the transmitted data including inherent redundant data, providing received data and information regarding the received data, identifying a plurality of suspected erroneous datapoints in the received data and checking that the inherent redundant data is consistent with the received data. The method then continues by replacing the first value with a second possible value and by repeating the steps of checking and replacing until the received data is consistent with the inherent redundant data.
    • 公开了一种数据接收系统和技术。 该系统包括用于接收包括固有冗余数据的传输数据的调制解调器(18),并且用于提供接收的数据和关于接收到的数据的信息和关于接收到的数据的错误恢复装置(22)的信息,以利用固有的冗余数据和关于 接收到的数据来识别和纠正引入到接收到的数据中的错误。 该技术包括以下步骤:接收包括固有冗余数据的发送数据,提供接收到的数据和关于接收到的数据的信息,识别接收到的数据中的多个可疑的错误数据点,并检查固有冗余数据是否与接收到的数据一致。 该方法然后通过用第二可能值替换第一值并通过重复检查和替换的步骤来继续,直到所接收的数据与固有的冗余数据一致。
    • 9. 发明申请
    • CMOS BASED TX/RX SWITCH
    • CMOS基于TX / RX开关
    • WO2014052417A1
    • 2014-04-03
    • PCT/US2013/061623
    • 2013-09-25
    • DSP GROUP, INC.
    • MOSTOV, AlexanderHASSON, YaronPONGRATZ, Ron
    • H04B1/44
    • H03F1/0211H01L23/645H01L23/66H01L2223/6611H01L2223/6672H01L2223/6677H01L2924/0002H03F1/0261H03F3/24H01L2924/00
    • A novel and useful radio frequency (RF) front end module (FEM) circuit that provides high linearity and power efficiency and meets the requirements of modern wireless communication standards such as 802.11 WLAN, 3G and 4G cellular standards, Bluetooth, ZigBee, etc. The configuration of the FEM circuit permits the use of common, relatively low cost semiconductor fabrication techniques such as standard CMOS processes. The FEM circuit includes a power amplifier made up of one or more sub-amplifiers having high and low power circuits and whose outputs are combined to yield the total desired power gain. An integrated multi-tap transformer having primary and secondary windings arranged in a novel configuration provide efficient power combining and transfer to the antenna of the power generated by the individual sub-amplifiers.
    • 一种新颖有用的射频(RF)前端模块(FEM)电路,提供高线性度和功率效率,并满足现代无线通信标准(如802.11 WLAN,3G和4G蜂窝标准,蓝牙,ZigBee等)的要求。 有限元电路的配置允许使用常见的,相对低成本的半导体制造技术,例如标准CMOS工艺。 FEM电路包括由具有高功率电路和低功率电路的一个或多个子放大器组成的功率放大器,并且其输出被组合以产生总的期望功率增益。 具有以新颖配置布置的初级和次级绕组的集成多抽头变压器提供了由各个子放大器产生的功率的有效功率组合和传输到天线。
    • 10. 发明申请
    • A SYSTEM AND METHOD FOR COMPRESSION AND DECOMPRESSION OF AUDIO SIGNALS
    • 用于音频信号的压缩和分解的系统和方法
    • WO1995015549A1
    • 1995-06-08
    • PCT/US1994013288
    • 1994-12-01
    • DSP GROUP, INC.
    • DSP GROUP, INC.BIALIK, Leon
    • G10L03/02
    • G10L19/10G10L19/09
    • A speech compression/decompression system and method which do not require special hardware are described. The compression unit represents an input audio signal (19) as a collection of parameters, wherein the parameters are a remnant excitation pulse sequence (27), a set of spectral coefficients (A) and a set of pitch parameters (B & C). The decompression unit utilizes the pitch parameters and remnant excitation pulse sequence to produce a reconstructed excitation signal. The decompression unit also utilizes the spectral coefficients to filter the reconstructed excitation signal into a speech waveform. The compression unit includes a short-term predictor (22), a two-step long-term predictor (24) and a multipulse analyzer (26).
    • 描述不需要特殊硬件的语音压缩/解压缩系统和方法。 压缩单元表示作为参数集合的输入音频信号(19),其中参数是剩余激励脉冲序列(27),一组频谱系数(A)和一组音调参数(B&C)。 减压单元利用音调参数和剩余激励脉冲序列产生重建的激励信号。 解压缩单元还利用频谱系数将重构的激励信号滤波成语音波形。 压缩单元包括短期预测器(22),两步长期预测器(24)和多脉冲分析器(26)。