DocumentCode
1083424
Title
The theory of maximally flat loudspeaker systems
Author
Lea, Susan M. ; Lampton, Michael L.
Author_Institution
University of California, Berkeley, CA, USA
Volume
20
Issue
3
fYear
1972
fDate
8/1/1972 12:00:00 AM
Firstpage
200
Lastpage
203
Abstract
A convenient mathematical formulation is given for the absolute low-frequency response of an electrodynamic direct radiator loudspeaker mounted in a vented or unvented enclosure. The combined effects of speaker
(ratio of reactance to resistance), enclosure size, and enclosure tuning are shown to control the convergence of the response curve towards its asymptotic value. Mathematical criteria are presented graphically, which enable the designer to find enclosure characteristics that give a frequency response curve flat through fourth order in reciprocal frequency, for a given loudspeaker
. In addition, it is shown that for
the system can be made flat through sixth order by choosing the correct enclosure size and vent tuning. This "triple point" design represents the flattest possible response for direct radiator systems.
(ratio of reactance to resistance), enclosure size, and enclosure tuning are shown to control the convergence of the response curve towards its asymptotic value. Mathematical criteria are presented graphically, which enable the designer to find enclosure characteristics that give a frequency response curve flat through fourth order in reciprocal frequency, for a given loudspeaker
. In addition, it is shown that for
the system can be made flat through sixth order by choosing the correct enclosure size and vent tuning. This "triple point" design represents the flattest possible response for direct radiator systems.Keywords
Coils; Drag; Effective mass; Electrodynamics; Frequency response; Loudspeakers; Pistons; Tuning; Vents; Voltage;
fLanguage
English
Journal_Title
Audio and Electroacoustics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9278
Type
jour
DOI
10.1109/TAU.1972.1162374
Filename
1162374
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