We show how to exploit instrumentation available in undergraduate student laboratories to build a simple vectorial bridge. In particular, we take advantage of the ability to read data from a digital oscilloscope with a personal computer and describe an algorithm to obtain an accurate evaluation of the phase difference etween two sinusoidal signals. The use of the bridge to characterize components of a high-Q RLC filter is shown to greatly improve the understanding of results in electrical resonance experiments. Direct evidence of dielectric losses, skin currents, and the effect of distributed capacitance is obtained

Bartiromo, R., DE VINCENZI, M. (2014). Implementing a simple vectorial bridge with a digital oscilloscope. AMERICAN JOURNAL OF PHYSICS, 82 [10.1119/1.4891655].

Implementing a simple vectorial bridge with a digital oscilloscope

DE VINCENZI, Mario
2014-01-01

Abstract

We show how to exploit instrumentation available in undergraduate student laboratories to build a simple vectorial bridge. In particular, we take advantage of the ability to read data from a digital oscilloscope with a personal computer and describe an algorithm to obtain an accurate evaluation of the phase difference etween two sinusoidal signals. The use of the bridge to characterize components of a high-Q RLC filter is shown to greatly improve the understanding of results in electrical resonance experiments. Direct evidence of dielectric losses, skin currents, and the effect of distributed capacitance is obtained
2014
Bartiromo, R., DE VINCENZI, M. (2014). Implementing a simple vectorial bridge with a digital oscilloscope. AMERICAN JOURNAL OF PHYSICS, 82 [10.1119/1.4891655].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/135063
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