DocumentCode
1201654
Title
Power Gain and Stability of Multistage Narrow-Band Amplifiers Employing Nonunilateral Electron Devices
Author
Lim, Macrobio
Volume
7
Issue
2
fYear
1960
fDate
6/1/1960 12:00:00 AM
Firstpage
158
Lastpage
166
Abstract
This paper gives an analysis of the transducer power gain and stability of a multistage, narrow-band amplifier employing nonunilateral electron devices. The amplifier is assumed to consist of n identical stages with the input and output terminations. The individual amplifier stage consists of a general active two-port device, such as the transistor, characterized by its four short-circuit admittance parameters, plus a two-terminal interstage network and an ideal coupling transformer. Both the individual amplifier stage and the over-all cascade of n amplifier stages, considered as a composite active two-port, are also characterized by their short-circuit admittance (Y) parameters. Relations between these Y parameters of the individual amplifier stage and the Y parameters of the over-all iterative amplifier have been derived. The transducer gain of the amplifier as a function of the interstage and the terminating network parameters has been studied. The transducer gain is optimized with respect to the external passive terminations and is expressed in terms of a design parameter
, which is directly related to the terminating conductances of the amplifier. It is shown that for an amplifier employing inherently stable active devices, there is a value of
which gives maximum transducer power gain; for an amplifier employing potentially unstable active devices, the optimum transducer power gain of the amplifier will, in general, be a monotonically decreasing function of
. In any case any prescribed value of
determines the maximum gain obtainable from the amplifier. The amplifier\´s margin toward instability is prescribed through prescribing a number
. For
greater than unity, the amplifier will be stable. Control of
is effected through appropriate choice of the design parameter
. A relation relating
, and
has been derived. Some fundamental considerations in the design of multistage, narrow-band amplifiers employing general active two-port devices are given. Results of experimental two-and three-stage transistor amplifiers are presented which show excellent agreement between the theoretical an- d the experimental results.
, which is directly related to the terminating conductances of the amplifier. It is shown that for an amplifier employing inherently stable active devices, there is a value of
which gives maximum transducer power gain; for an amplifier employing potentially unstable active devices, the optimum transducer power gain of the amplifier will, in general, be a monotonically decreasing function of
. In any case any prescribed value of
determines the maximum gain obtainable from the amplifier. The amplifier\´s margin toward instability is prescribed through prescribing a number
. For
greater than unity, the amplifier will be stable. Control of
is effected through appropriate choice of the design parameter
. A relation relating
, and
has been derived. Some fundamental considerations in the design of multistage, narrow-band amplifiers employing general active two-port devices are given. Results of experimental two-and three-stage transistor amplifiers are presented which show excellent agreement between the theoretical an- d the experimental results.Keywords
Admittance; Bandwidth; Circuit stability; Circuit theory; Electron devices; Electron tubes; Feedback; Narrowband; Power amplifiers; Termination of employment;
fLanguage
English
Journal_Title
Circuit Theory, IRE Transactions on
Publisher
ieee
ISSN
0096-2007
Type
jour
DOI
10.1109/TCT.1960.1086654
Filename
1086654
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