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    • 1. 发明申请
    • RADIO RECEIVER
    • 无线接收器
    • US20070111688A1
    • 2007-05-17
    • US11558785
    • 2006-11-10
    • Takeshi UenoTetsuro ItakuraRui ItoHiroshi YoshidaHidenori Okuni
    • Takeshi UenoTetsuro ItakuraRui ItoHiroshi YoshidaHidenori Okuni
    • G06F3/033
    • H04B1/30
    • A radio receiver, including: a receiver configured to receive a radio signal; a frequency converter configured to generate a baseband signal by converting frequency the radio signal; a subtractor configured to generate a differential signal by subtracting an analog signal from the baseband signal; an amplifier configured to generate an amplified differential signal by amplifying the difference signal by a first amplification factor or a second amplification factor; an analog-digital converter configured to convert the amplified difference signal to a digital signal; an integrator configured to generate an integration signal by integrating a value indicated by the digital signal; a memory configured to store the integration signal into a first address when the amplifier amplifies the difference signal by the first amplification factor, and configured to store the integration signal into a second address when the amplifier amplifies the difference signal by the second amplification factor; and a digital-analog converter configured to generate the analog signal by converting the integration signal stored in the first address of the memory when the amplifier amplifies the difference signal by the first amplification factor, and configured to generate the analog signal by converting the integration signal stored in the second address of the memory when the amplifier amplifies the difference signal by the second amplification factor.
    • 一种无线电接收机,包括:被配置为接收无线电信号的接收机; 变频器,被配置为通过将频率转换成无线电信号来产生基带信号; 减法器,被配置为通过从所述基带信号中减去模拟信号来产生差分信号; 放大器,被配置为通过以第一放大因子或第二放大因子放大差分信号来产生放大的差分信号; 模拟数字转换器,被配置为将放大的差分信号转换为数字信号; 积分器,被配置为通过对由数字信号指示的值进行积分来产生积分信号; 存储器,被配置为当放大器将差分信号放大第一放大因子时将积分信号存储到第一地址中,并且被配置为当放大器将差分信号放大第二放大因子时将积分信号存储为第二地址; 以及数模转换器,被配置为当放大器将差分信号放大第一放大因子时,通过转换存储在存储器的第一地址中的积分信号来产生模拟信号,并且被配置为通过转换积分信号 当放大器将差分信号放大第二放大因子时,存储在存储器的第二地址中。
    • 2. 发明申请
    • RECEIVER, WIRELESS DEVICE AND METHOD FOR CANCELLING A DC OFFSET COMPONENT
    • 接收器,无线设备和用于取消直流偏移分量的方法
    • US20080198949A1
    • 2008-08-21
    • US11851851
    • 2007-09-07
    • Hidenori OKUNIRui ItoHiroshi Yoshida
    • Hidenori OKUNIRui ItoHiroshi Yoshida
    • H04L25/06H04L25/10
    • H04L25/06
    • A receiver includes a memory for storing DC offset amounts generated by an analog circuit; an amplifier; a DC offset amount generator for generating a first offset value and a second offset value to be removed from the received signal amplified at the amplifier; a first DC offset component-removing unit for removing the first DC offset value from the received signal before the amplifier; a second DC offset component-removing unit for removing the second DC offset value from the received signal after the amplifier; and an updating unit for updating the DC offset amount stored in the memory in view of the second DC offset value generated by the DC offset amount generator. A maximum value of the second DC offset value is set larger than a multiplication value of a gain of the amplifier by a minimum resolution value of the first DC offset value.
    • 接收机包括用于存储由模拟电路产生的DC偏移量的存储器; 放大器 DC偏移量发生器,用于产生从放大器放大的接收信号中去除的第一偏移值和第二偏移值; 第一DC偏移分量去除单元,用于从放大器之前的接收信号中去除第一DC偏移值; 第二DC偏移分量去除单元,用于从放大器之后的接收信号中去除第二DC偏移值; 以及更新单元,用于根据由DC偏移量产生器生成的第二DC偏移值来更新存储在存储器中的DC偏移量。 将第二DC偏移值的最大值设定为大于放大器的增益乘以第一DC偏移值的最小分辨率值。
    • 3. 发明授权
    • Receiver, wireless device and method for cancelling a DC offset component
    • 接收机,无线设备和消除DC偏移分量的方法
    • US07764748B2
    • 2010-07-27
    • US11851680
    • 2007-09-07
    • Hidenori OkuniRui ItoHiroshi Yoshida
    • Hidenori OkuniRui ItoHiroshi Yoshida
    • H03K9/00H04L27/00
    • H04L25/06H03M1/1019H03M1/12
    • A receiver includes a memory for storing DC offset amounts in accordance with a DC offset component remaining in a received signal; a first DC offset component-removing unit configured so as to generate a first DC offset amount from the DC offset amounts stored in the memory and to remove the first DC offset amount from the received signal; an amplifier for amplifying a signal output from the first DC offset component-removing unit; and a second DC offset component-removing unit configured so as to generate a second DC offset amount from the DC offset amounts stored in the memory in view of a gain of the amplifier and remove the second DC offset amount from the signal amplified by the amplifier.
    • 接收机包括用于根据接收信号中剩余的DC偏移分量存储DC偏移量的存储器; 第一DC偏移分量去除单元,被配置为从存储在存储器中的DC偏移量产生第一DC偏移量,并从接收信号中去除第一DC偏移量; 放大器,用于放大从第一DC偏移分量去除单元输出的信号; 以及第二DC偏移分量去除单元,被配置为从放大器的增益的视角考虑存储在存储器中的DC偏移量产生第二DC偏移量,并且从由放大器放大的信号中去除第二DC偏移量 。
    • 4. 发明授权
    • Receiver, wireless device and method for cancelling a DC offset component
    • 接收机,无线设备和消除DC偏移分量的方法
    • US07778358B2
    • 2010-08-17
    • US11851851
    • 2007-09-07
    • Hidenori OkuniRui ItoHiroshi Yoshida
    • Hidenori OkuniRui ItoHiroshi Yoshida
    • H04L25/06H04L25/10
    • H04L25/06
    • A receiver includes a memory for storing DC offset amounts generated by an analog circuit; an amplifier; a DC offset amount generator for generating a first offset value and a second offset value to be removed from the received signal amplified at the amplifier; a first DC offset component-removing unit for removing the first DC offset value from the received signal before the amplifier; a second DC offset component-removing unit for removing the second DC offset value from the received signal after the amplifier; and an updating unit for updating the DC offset amount stored in the memory in view of the second DC offset value generated by the DC offset amount generator. A maximum value of the second DC offset value is set larger than a multiplication value of a gain of the amplifier by a minimum resolution value of the first DC offset value.
    • 接收机包括用于存储由模拟电路产生的DC偏移量的存储器; 放大器 DC偏移量发生器,用于产生从放大器放大的接收信号中去除的第一偏移值和第二偏移值; 第一DC偏移分量去除单元,用于从放大器之前的接收信号中去除第一DC偏移值; 第二DC偏移分量去除单元,用于从放大器之后的接收信号中去除第二DC偏移值; 以及更新单元,用于根据由DC偏移量产生器生成的第二DC偏移值来更新存储在存储器中的DC偏移量。 将第二DC偏移值的最大值设定为大于放大器的增益乘以第一DC偏移值的最小分辨率值。
    • 7. 发明授权
    • Variable time constant circuit and filter circuit using the same
    • 可变时间常数电路和滤波电路使用相同
    • US07123082B2
    • 2006-10-17
    • US11258934
    • 2005-10-27
    • Daisuke KuroseTetsuro ItakuraRui Ito
    • Daisuke KuroseTetsuro ItakuraRui Ito
    • H04B1/10
    • H03H11/32H03F3/345H03F3/45475H03F2203/45511H03F2203/45512H03F2203/45592H03F2203/45652H03H11/1291H03H11/245
    • A variable time constant circuit includes an inverting amplifier which has an amplifier input terminal and an amplifier output terminal connected to a signal output terminal and inverts a signal inputted to the amplifier input terminal, a first and a second resistor which are connected in series between the signal input terminal and the amplifier input terminal, a capacitor connected between the amplifier input terminal and the amplifier output terminal, a field effect transistor including a gate terminal connected to a junction point of the first and second resistors, a source terminal kept at a constant potential, and a drain terminal connected to the amplifier input terminal, the transistor flowing a current through the drain terminal according to a voltage between the gate terminal and the source terminal, and a control circuit which controls a voltage-current conversion ratio of the transistor according to a time constant control signal.
    • 可变时间常数电路包括反相放大器,其具有放大器输入端和连接到信号输出端的放大器输出端,并且反相输入到放大器输入端的信号,第一和第二电阻串联在第 信号输入端子和放大器输入端子,连接在放大器输入端子和放大器输出端子之间的电容器,场效应晶体管,其包括连接到第一和第二电阻器的接合点的栅极端子,源极端子保持恒定 电位和连接到放大器输入端子的漏极端子,晶体管根据栅极端子和源极端子之间的电压流过漏极端子,以及控制电路,其控制晶体管的电压 - 电流转换比 根据时间常数控制信号。
    • 9. 发明授权
    • Transconductor
    • 跨导体
    • US07538585B2
    • 2009-05-26
    • US11847503
    • 2007-08-30
    • Rui ItoTetsuro Itakura
    • Rui ItoTetsuro Itakura
    • H02M11/00H03F3/45
    • H03G1/0029H03F1/3211H03F3/45179H03F3/45475H03F2203/45318H03F2203/45342H03F2203/45352H03F2203/45398H03H11/04
    • Disclosed is a transconductor including: first and second transistors each having first and second gates, the first and second gates being independently controlled, differential voltage input being supplied between the one first gate and the other first gate, the one source and the other source being connected, a first control voltage being commonly given to both of the second gates, and the drains being differential current output terminals; third and fourth transistors each having the same connection as the first and second transistors, each of the one drain and the other drain being connected with either of the one drain and the other drain of the first and the second transistors so that polarities are opposite to each other; and a current source connected with both of the sources of the first and the second transistors and both of the sources of the third and the fourth transistors.
    • 公开了一种跨导体,包括:第一和第二晶体管,每个具有第一和第二栅极,第一和第二栅极被独立地控制,差分电压输入被提供在一个第一栅极和另一个第一栅极之间,一个源极和另一个源极 所述第一控制电压通常被提供给所述第二栅极,并且所述漏极是差动电流输出端子; 第三和第四晶体管各自具有与第一和第二晶体管相同的连接,一个漏极和另一个漏极中的每一个与第一和第二晶体管的一个漏极和另一个漏极中的任一个连接,使得极性与 彼此; 以及与第一和第二晶体管的源极以及第三和第四晶体管的源极两者连接的电流源。