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Titlebook: Electronics for Guitarists; Denton J. Dailey Book 2022Latest edition The Editor(s) (if applicable) and The Author(s), under exclusive lice

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https://doi.org/10.1007/978-3-322-81460-9 covered in the last chapter have a maximum theoretical efficiency of 25%. This means that if you were to design a perfect class A amplifier that delivered 10 W to a load, the amplifier itself would dissipate 30 W. Nearly all of this power would be dissipated by the output transistor(s), which would
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https://doi.org/10.1007/978-3-031-25095-8n circuits. These circuits are usually fairly simple, and their basic operation is relatively easy to understand. The second group includes more advanced effects such as phase shifters, wah-wah pedals, vocoders, compressors, reverbs, and so on. Many of these circuits can be quite complex. A third ca
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Ines Al-Ameery-Brosche,Franz Reschmer coupling and the determination of maximum amplifier output power. We will concentrate primarily on cathode-biased, class A output stages, using both single-ended and push-pull amplifier configurations. The operation of parallel-connected tubes and additional aspects of power supply design are al
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Power Supplies,especially true for guitar effects boxes (stomp boxes) and pedals. In this chapter, we will examine the operation of linear, single-polarity, and bipolar power supplies, as well as basic vacuum tube diode-based power supply circuits.
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