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    • 2. 发明授权
    • Amplifying circuit for use with a high impedance source transducer
    • 用于高阻抗源传感器的放大电路
    • US3993869A
    • 1976-11-23
    • US513756
    • 1974-10-10
    • Osamu KonoTakeshi MatsudairaMakoto Ishikawa
    • Osamu KonoTakeshi MatsudairaMakoto Ishikawa
    • H03F3/18H03F3/185H03F3/20H03F3/30H03F3/34H03F3/345H04R3/00
    • H03F3/1855
    • An amplifying circuit for use with a transducer includes a pair of field-effect transistors which are of different conductive types from each other and each of which has gate, drain and source electrodes. The gate electrodes of the field-effect transistors are connected to each other and are further connected to an output terminal of an electrostatic type mechanical-electrical transducer, while the source electrodes of the field-effect transistors are connected to each other and are further connected to an output circuit. One of the drain electrodes is connected to a voltage source and the other drain electrode is connected to the circuit ground. High input impedance is maintained by using no gate resistor at the input, and using a current-sourced source-follower secondstage. Source resistors improve linear performance.
    • 与换能器一起使用的放大电路包括一对具有不同导电类型的场效应晶体管,每一个具有栅极,漏极和源极。 场效应晶体管的栅电极彼此连接并且进一步连接到静电型机电换能器的输出端,而场效应晶体管的源极彼此连接并进一步连接 到输出电路。 一个漏电极连接到电压源,另一个漏电极连接到电路接地。 通过在输入端不使用栅极电阻,并使用电流源跟随器第二级来保持高输入阻抗。 源电阻提高线性性能。
    • 3. 发明授权
    • Transmitting and reproducing system having improved noise reduction
characteristics for quadraphonic audio information signals
    • 具有改善的四声道音频信息信号的降噪特性的发射和再现系统
    • US4006313A
    • 1977-02-01
    • US534299
    • 1974-12-19
    • Takeshi MatsudairaShoichi Nakamura
    • Takeshi MatsudairaShoichi Nakamura
    • H04H20/89H04S3/00H04S3/02G11B3/74
    • H04H20/89H04S3/006
    • A transmitting and reproducing system includes an encoder for selectively combining at least four signals for transmission along two channels. At least three of the signals are combined in a predetermined amplitude and phase relationship to form a first unmodulated signal and at least one of the three signals is used to vestigially modulate a carrier. The unmodulated signal and the modulated carrier are combined for transmission along one of the channels. A different grouping of three of the signals are combined in a different predetermined amplitude and phase relationship to form a second unmodulated signal, and at least one signal different from the first modulating signal is used as a second modulating signal for vestigial modulation of the carrier. The second unmodulated signal and the carrier modulated by the different signal are combined for transmission on the second channel. The signals used to modulate the carrier are passed through noise reduction circuits that have frequency response characteristics that compress signal components above a frequency that depends upon the amplitude of the signals passing through the noise reduction circuits. The reproducing part of the system includes a decoder that selectively combines the composite signal on each of the channels with the demodulated signals from the two signals that were originally modulated, thereby reproducing two main signals without interference.
    • 发送和再现系统包括用于选择性地组合至少四个信号以用于沿两个信道传输的编码器。 至少三个信号以预定的幅度和相位关系组合以形成第一未调制信号,并且使用三个信号中的至少一个来对载波进行残留调制。 未调制信号和调制载波被组合以沿着一个通道传输。 将三个信号的不同组合以不同的预定幅度和相位关系组合以形成第二未调制信号,并且使用与第一调制信号不同的至少一个信号作为用于载波的残留调制的第二调制信号。 第二未调制信号和由不同信号调制的载波被组合以在第二信道上传输。 用于调制载波的信号通过具有频率响应特性的噪声降低电路,频率响应特性将信号分量压缩在取决于通过降噪电路的信号的幅度的频率上。 系统的再现部分包括一个解码器,其选择性地将每个信道上的复合信号与来自最初被调制的两个信号的解调信号相组合,由此再现两个主信号而不受干扰。