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By W. Gosling (auth.)

ISBN-10: 1349023604

ISBN-13: 9781349023608

ISBN-10: 1349023620

ISBN-13: 9781349023622

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Additional info for A First Course in Applied Electronics: An Introduction to Microelectronic Systems

Example text

For all types of amplifiers, however, there will be certain other spurious outputs which cannot be entirely eliminated. c. c. ) which are called drift. c. c. amplifiers, wherever possible. Drift and noise can arise from physical effects which are ultimately not totally unrelated at a fundamental level. c. amplifier, could itself give rise to drift-like outputs. Even so the problems caused by drift and noise, and the precautions taken to limit their effects are so different that it will be convenient to treat them quite separately.

In practical terms, narrow-band amplifiers are of enormous importance, so a great deal of effort has been, and is still being, devoted to understanding and improving them. 9 Signal handling capacity The essential characteristic of an amplifier is that it delivers a controlled power to the load. However, the maximum amount of power which can possibly be delivered to the load is certainly not unlimited. There is always a fairly well defined maximum power that can be delivered. Any attempt to draw still more power from the amplifier will lead to some kind of malfunction: the condition is known as over-loading.

In other words the whole system can be regarded as being at all times in steady state. Of course, just how slowly the signal must vary for this to be true depends on the nature of the amplifier concerned: for a large rotating machine the maximum input frequency might need to be less than one hertz (that is, one cycle per second) but for some transistors the low-frequency equivalent circuit is still approximately valid for input signals up to as high as 5 x 10 7 hertz. Integrated circuit amplifiers will probably push this limit even higher.

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A First Course in Applied Electronics: An Introduction to Microelectronic Systems by W. Gosling (auth.)


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