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    • 2. 发明申请
    • COMPENSATION CIRCUIT AND COMPENSATION METHOD
    • 补偿电路和补偿方法
    • US20150171854A1
    • 2015-06-18
    • US14403963
    • 2014-03-14
    • Panasonic Corporation
    • Atsushi YoshimotoHiroshi KomoriRyo Kitamura
    • H03K17/14H03K17/56
    • H03K17/14H03F1/301H03F3/45475H03F2203/45528H03F2203/45568H03F2203/45571H03F2203/45594H03K17/56
    • Provided is a compensation circuit capable of improving compensation precision for manufacturing variations. The compensation circuit includes a manufacturing variation detection circuit which detects manufacturing variation of a transistor based on a first voltage output from an output terminal of the transistor having an input terminal applied with a substantially constant first current to temperature or based on a second current output from an output terminal of the transistor having an input terminal applied with a substantially constant second voltage to temperature, and a voltage generation circuit which generates a supply voltage supplied to an electric circuit based on the manufacturing variation. The first current corresponds to the substantially constant second voltage to temperature, and the first voltage corresponds to the substantially constant second current to temperature.
    • 提供了能够提高制造变形的补偿精度的补偿电路。 补偿电路包括制造变化检测电路,其根据从具有施加了基本上恒定的第一电流至温度的输入端子的晶体管的输出端输出的第一电压检测晶体管的制造变化,或者基于从第 所述晶体管的输出端子具有施加基本上恒定的第二电压到温度的输入端子;以及电压产生电路,其基于所述制造变化产生提供给电路的电源电压。 第一电流对应于基本上恒定的第二电压对温度,并且第一电压对应于基本上恒定的第二电流到温度。
    • 3. 发明授权
    • Transmission apparatus
    • 传输装置
    • US09319261B2
    • 2016-04-19
    • US14401085
    • 2014-03-14
    • Panasonic Corporation
    • Shunsuke HiranoAtsushi Yoshimoto
    • H04B17/00H04L27/36H04B1/04H04L27/00
    • H04L27/364H04B1/04H04B1/0475H04B2001/0416H04L27/00H04L27/36H04L27/366
    • A square detection circuit square-detects a portion of a high frequency transmission signal that is extracted by a directional coupler, of a high frequency transmission signal amplified by a power amplifier. A first adjustment circuit extracts a DC component from a detection output of the square detection circuit, and adjusts respective amplitudes of baseband I and Q signals generated by an I/Q signal generation circuit, in response to the extracted DC component. A second adjustment circuit extracts an AC component from the detection output of the square detection circuit, and adjusts the respective amplitudes and phases, and the respective DC offsets of the baseband I and Q signals generated by the I/Q signal generation circuit, in response to the extracted AC component.
    • 平方检测电路对由功率放大器放大的高频发送信号的定向耦合器提取的高频发送信号的一部分进行平方检测。 第一调节电路从平方检测电路的检测输出中提取DC分量,并且响应于提取的DC分量来调整由I / Q信号发生电路产生的基带I和Q信号的各个振幅。 第二调整电路从平方检测电路的检测输出中提取AC分量,并且响应于I / Q信号产生电路产生的基带I和Q信号的相应振幅和相位以及相应的DC偏移进行调整 到提取的AC分量。
    • 4. 发明申请
    • TRANSMISSION APPARATUS
    • 传动装置
    • US20150156054A1
    • 2015-06-04
    • US14401085
    • 2014-03-14
    • Panasonic Corporation
    • Shunsuke HiranoAtsushi Yoshimoto
    • H04L27/36
    • H04L27/364H04B1/04H04B1/0475H04B2001/0416H04L27/00H04L27/36H04L27/366
    • A square detection circuit square-detects a portion of a high frequency transmission signal that is extracted by a directional coupler, of a high frequency transmission signal amplified by a power amplifier. A first adjustment circuit extracts a DC component from a detection output of the square detection circuit, and adjusts respective amplitudes of baseband I and Q signals generated by an I/Q signal generation circuit, in response to the extracted DC component. A second adjustment circuit extracts an AC component from the detection output of the square detection circuit, and adjusts the respective amplitudes and phases, and the respective DC offsets of the baseband I and Q signals generated by the I/Q signal generation circuit, in response to the extracted AC component.
    • 平方检测电路对由功率放大器放大的高频发送信号的定向耦合器提取的高频发送信号的一部分进行平方检测。 第一调节电路从平方检测电路的检测输出中提取DC分量,并且响应于提取的DC分量来调整由I / Q信号发生电路产生的基带I和Q信号的各个振幅。 第二调整电路从平方检测电路的检测输出中提取AC分量,并且响应于I / Q信号产生电路产生的基带I和Q信号的相应振幅和相位以及相应的DC偏移进行调整 到提取的AC分量。