Abstract:
PROBLEM TO BE SOLVED: To provide an RF receiver capable of controlling the signal component of a desired channel at a proper level without saturating a high-frequency amplifying stage. SOLUTION: The RF receiver has an RF amplifying means amplifying a received high-frequency signal, a mixing means converting the output high-frequency signal of the RF amplifying means into an intermediate-frequency signal and an IF amplifying means amplifying the output intermediate-frequency signal of the mixing means. The RF receiver further has a first level detecting means detecting the signal level of the output high-frequency signal of the RF amplifying means, a second level detecting means detecting the signal level of the output intermediate-frequency signal of the mixing means and a third level detecting means detecting the signal level of the intermediate-frequency signal amplified by the IF amplifying means. The RF receiver further has an RF reference-level generating means generating an RF reference level on the basis of at least one of the detecting-signal levels of the first and second level detecting means and an RF-gain control means controlling the amplifying gain of the RF amplifying means so that a value corresponding to the detecting-signal level of the third level detecting means is equalized to the RF reference level. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To realize appropriate AGC for a desired wave signal and an interference wave signal. SOLUTION: There are provided attenuator circuits 42-44 cascade-connected to a received signal SRX and differential amplifiers 51-54 to which the received signal SRX and output signals of the attenuator circuits 42-44 are supplied, respectively. There are also provided resistors R55, R56 connected in common to output terminals of the differential amplifiers 51-54 so as to extract level-controlled output signals and a control current generating circuit 34 for generating control currents I51-I54 of predetermined characteristics from first and second AGC voltages VAGC, VOL. The control currents I51-I54 outputted from the control current generating circuit 34 are supplied to the differential amplifiers 51-54 as their operation switching and gain control signals. A control current Im equal to the control currents I51-I54 is negatively fed back by the control current generating circuit 34. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
신호처리를위한수신기는제1 증폭회로와제2 증폭회로를포함한다. 제1 증폭회로는제1 이득프로파일과관련되어동작한다. 제2 증폭회로는제2 이득프로파일과관련되어동작한다. 수신기는또한변조된신호와관련된품질표시자를결정하는이득제어회로를포함한다. 이득제어회로는결정된품질표시자에적어도부분적으로기초하여제1 이득프로파일및 제2 이득프로파일을조정한다.
Abstract:
본 발명의 AGC 회로는 수신 신호에 대해서 직렬 접속된 복수의 감쇠회로와, 상기 수신 신호 및 상기 복수의 감쇠회로의 각 출력 신호가 각각 공급되는 복수의 가변 이득 증폭기와, 복수의 가변 이득 증폭기의 출력단에 공통으로 접속되어 레벨 제어된 출력 신호를 출력하는 신호 출력 회로와, 제 1 및 제 2AGC 전압으로부터 소정의 특성의 제어 전류를 생성하는 제어 전류 생성 회로를 가지고, 제어 전류 생성 회로로부터 출력되는 상기 제어 전류는 상기 가변 이득 증폭기에 그 동작의 전환 및 이득의 제어 신호로서 공급되고, 상기 제어 전류에 대응하는 제어 전류가 제어 전류 생성 회로에 부귀환된다.
Abstract in simplified Chinese:一种处理信号用之接收器包含第一放大器电路和第二放大器电路。该第一放大器电路系结合第一增益侧绘一起操作。该第二放大器电路系结合第二增益侧绘一起操作。该接收器进一步包含可测定与经调制的信号相关联的品质指针的增益控制电路。该增益控制电路至少部分基于该所测定的品质指针来调整该第一增益侧绘和该第二增益侧绘。
Abstract in simplified Chinese:一种处理信号用之接收器包含第一放大器电路和第二放大器电路。该第一放大器电路系结合第一增益侧绘一起操作。该第二放大器电路系结合第二增益侧绘一起操作。该接收器进一步包含可测定与经调制的信号相关联的品质指针的增益控制电路。该增益控制电路至少部分基于该所测定的品质指针来调整该第一增益侧绘和该第二增益侧绘。