Amplifiers – With semiconductor amplifying device – Including gain control means
Reexamination Certificate
2001-04-04
2003-09-16
Choe, Henry (Department: 2817)
Amplifiers
With semiconductor amplifying device
Including gain control means
C330S129000, C330S141000
Reexamination Certificate
active
06621345
ABSTRACT:
CROSS REFERENCE TO RELATED APPLICATION
This application is based on and incorporates herein by reference Japanese Patent Application No. 2000-102656 field Apr. 4, 2000.
BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a gain control device for performing gain control of received signals, and particularly to a gain control device suitable for reception of packet signals.
2. Related Art
It is proposed to employ communication using packets (i.e., communication in which signals are transmitted/received at random and non-predetermined times, instead of communication using time slots (i.e., communication in which signals are transmitted/received at predetermined times), as a means for matching in a computer network.
Further, communication techniques such as QAM or OFDM, in which the amplitude of a signal will greatly vary, are proposed for improving a transmission rate.
In a digital receiver, signals are sampled by an A/D converter. In order to obtain signals accurately, it is desirable to make full use of the dynamic range of the A/D converter. On the other hand, particularly in mobile communication systems, received power will widely vary depending on the distance between communication terminals. Therefore, in order to make full use of the dynamic range of the A/D converter as described above, a gain control device capable of controlling received power to provide constant power regardless of the magnitude of the received power is needed at the input side of the A/D converter.
In order for the gain control device to be applied to packet communication, it should detect a packet signal transmitted at random and non-predetermined times, and perform gain control at high speed for immediately regulating the signal to the constant output power. However, the signal wave will be distorted if the gain is controlled in direct response to variation in the signal amplitude. Thus, in this case, it should perform gain control of the signal at low speed.
JP-A-9-307601 proposed a gain control device for gain control of QAM transmitting waves. In this device, a component of envelope detection of transmitting waves (i.e., voltage values corresponding to power) is sampled-and-held and integrated for performing gain control. Further, in this device, the period of sampling-and-holding is set short immediately after the start of transmitting so that a control rate is made higher. After a while, the period is set longer in order to make the control rate lower. This technique is limited to transmitting waves. In the case of transmitting waves, control can be accomplished easily since the time when a signal is transmitted is known. However the technique is not applicable to received signals without modification. Particularly it is not applicable to received signals in packet communication because the time when a signal is received is unknown. Further, this device sample-and-holds a signal and generates step waves before passing the waves through an integration circuit for generating a control signal. In this case, compared to the case of integrating continuous waves, quantization errors are produced and as a result control precision is lowered.
SUMMARY OF THE INVENTION
The present invention overcomes the above drawbacks, and has an object to provide a gain control device which is capable of performing gain control of packet signals at a signal receiver side.
The gain control device according to the present invention is for a receiver used in packet communication. In response to reception of a packet signal, the device begins to perform high-speed gain control of the signal. Thus the output power of the device is controlled stably immediately after the start of reception of the signal. Thereafter, the device shifts from a high-speed gain control mode to a low-speed gain control mode after the output power has converged. Thus, the gain control does not follow variation in the signal amplitude and the device can provide stable output power without distorting the signal wave. Alternatively the device may compensate for the output power, which is provided as a result of high-speed gain control, by a control voltage used for controlling the gain for stabilizing the output power.
REFERENCES:
patent: 4928307 (1990-05-01), Lynn
patent: 5752171 (1998-05-01), Akiya
patent: 6151400 (2000-11-01), Seligman
patent: 09-307601 (1997-11-01), None
patent: 11-136294 (1999-05-01), None
Matsugatani Kazuoki
Sasaki Kunihiko
Choe Henry
Denso Corporation
Harness Dickey & Pierce PLC
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