DocumentCode
1203739
Title
The Visualization of Frequency-Modulation Transients by Means of Mechanical Models
Author
Golay, Marcel J.E.
Volume
9
Issue
1
fYear
1962
fDate
3/1/1962 12:00:00 AM
Firstpage
78
Lastpage
82
Abstract
It has long been known that electrical circuits have equivalent mechanical circuits, and that the correspondence between the two can be established in two ways, namely, either voltage
force, current
velocity, capacitance
compliance, etc., or voltage
velocity, current
force, capacitance
mass, etc. If, however, one searches for a mechanical model which preserves the elegance and strength of Argand\´s vectorial diagram, in which voltages at or near the center frequency of a band-pass circuit can be represented by stationary or slowly rotating phasors, the classical equivalent mechanical circuits are inadequate, and a new form of equivalence must be adopted. This article describes this new equivalence which is obtained, for a large class of important circuits, by dropping Kirchhoff\´s laws and utilizing Thevenin\´s theorem, so that the mechanical models so established give a correct and easily visualized representation of input and output voltages; albeit intermediate points in the electrical circuits do not correspond generally to intermediate points in the mechanical model.
force, current
velocity, capacitance
compliance, etc., or voltage
velocity, current
force, capacitance
mass, etc. If, however, one searches for a mechanical model which preserves the elegance and strength of Argand\´s vectorial diagram, in which voltages at or near the center frequency of a band-pass circuit can be represented by stationary or slowly rotating phasors, the classical equivalent mechanical circuits are inadequate, and a new form of equivalence must be adopted. This article describes this new equivalence which is obtained, for a large class of important circuits, by dropping Kirchhoff\´s laws and utilizing Thevenin\´s theorem, so that the mechanical models so established give a correct and easily visualized representation of input and output voltages; albeit intermediate points in the electrical circuits do not correspond generally to intermediate points in the mechanical model.Keywords
Admittance; Capacitance; Electrical resistance measurement; Frequency; Impedance; Inductance; Springs; Tuned circuits; Visualization; Voltage;
fLanguage
English
Journal_Title
Circuit Theory, IRE Transactions on
Publisher
ieee
ISSN
0096-2007
Type
jour
DOI
10.1109/TCT.1962.1086864
Filename
1086864
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