Module overview
Every microphone, loudspeaker and headphone depends on a single idea: converting energy between electrical and acoustic form. This electroacoustic transduction sits at the heart of the audio and acoustics industries, and any engineer working with sound needs to understand how these devices work and why they behave as they do. From studio recording to consumer audio and precision measurement, transducers are the point where the electrical and acoustic worlds meet.
In this module you will develop the theory that describes electroacoustic transduction and learn to predict the behaviour of a wide range of devices from first principles. You will connect the underlying models to real transducer technology, seeing how the mechanisms you study explain the performance, strengths and limitations of the microphones and loudspeakers used in practice. This builds directly on your earlier work in acoustics and dynamics, drawing it together to analyse complete electromechanical and acoustic systems.
By the end of the module, you will be able to model and predict the performance of electroacoustic transducers and relate your analysis to the design of real devices. These skills are directly relevant to careers in audio engineering, transducer design and acoustic measurement, and they prepare you for advanced study and research in audio technology and applied acoustics.