Description
Despite the growth of technology in music composition and performance, professional clarinetists maintain that air microphones are superior to piezoelectric pickups. Pickups offer increased mobility, isolation, and reduced feedback, but air microphones are used simply for the perceived sound quality. In this study a ported barrel pickup and a contact transducer pickup placed at various intervals on the clarinet were sampled and compared to a reference recording to determine how the sound differed for each method. In addition, the history of wind instrument pickups, the acoustics of the clarinet, and the basics of piezoelectricity were discussed to help examine the results. The pickups were examined in three ways: overall level in decibels, frequency cutoff, and overtone displacement. Through these results it was determined that the most accurate methods of clarinet pickup are the ported barrel pickup, contact transducers closer to the vibration of the reed such as the ligature or barrel surface, or a transducer placed at the end of the bell. These findings were consistent with the discussions regarding history, clarinet acoustics, and piezoelectricity. This study also produced a reference for the sounds associated with different pickup methods, as well as possible improvements for clarinet pickup design.
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Details
Title
- Analysis of current electric pickup technology utilized in clarinet performance and investigation into potential improvements
Contributors
- Englert, Patrick William (Author)
- Spring, Robert S (Thesis advisor)
- Gardner, Joshua T (Thesis advisor)
- Caslor, Jason (Committee member)
- Rogers, Rodney (Committee member)
- Arizona State University (Publisher)
Date Created
The date the item was original created (prior to any relationship with the ASU Digital Repositories.)
2018
Subjects
Resource Type
Collections this item is in
Note
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thesisPartial requirement for: D.M.A., Arizona State University, 2018
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bibliographyIncludes bibliographical references (pages 82-85)
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Field of study: Music
Citation and reuse
Statement of Responsibility
by Patrick William Englert