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Beschreibung

Tube amplifiers suffer from distortion. Fortunately, circuits such as the SRPP amplifier, mu-follower, and beta-follower produce minimal distortion even at output voltages of 50 to 100 V
peak
.

These designs are often published with errors. Without a sound understanding of the theory, it is easy to arrive at a flawed design.

In the first section of this book, we investigate the origin of distortion, while in the second we investigate the design of and SRPP and a mu-follower.

On the internet we can find the most exotic designs. Evaluating them teaches us that these designs often make matters worse rather than better. In the chapter on incorrect SRPPs and mu-followers, we sometimes see bizarre and misguided designs where using a simple single-triode amplifier would perform much better.

Push-pull output stages also exist. A great number of them are examined, and their similarity to the SRPP is discussed. This is done especially with the help of the theory behind the OTL based on the 'mother' of all OTLs, the Philips HF303.

Finally, attention is given to frequency characteristics and technical matters such as the supply voltage and the filament power supply.

To illustrate these points, there are a few designs covering the subjects discussed.

This book presents much new theory that has not been published before. It is often an eye-opener, showing that many things have a beautiful and unexpected simplicity.

Tube amplifiers suffer from distortion. Fortunately, circuits such as the SRPP amplifier, mu-follower, and beta-follower produce minimal distortion even at output voltages of 50 to 100 V
peak
.

These designs are often published with errors. Without a sound understanding of the theory, it is easy to arrive at a flawed design.

In the first section of this book, we investigate the origin of distortion, while in the second we investigate the design of and SRPP and a mu-follower.

On the internet we can find the most exotic designs. Evaluating them teaches us that these designs often make matters worse rather than better. In the chapter on incorrect SRPPs and mu-followers, we sometimes see bizarre and misguided designs where using a simple single-triode amplifier would perform much better.

Push-pull output stages also exist. A great number of them are examined, and their similarity to the SRPP is discussed. This is done especially with the help of the theory behind the OTL based on the 'mother' of all OTLs, the Philips HF303.

Finally, attention is given to frequency characteristics and technical matters such as the supply voltage and the filament power supply.

To illustrate these points, there are a few designs covering the subjects discussed.

This book presents much new theory that has not been published before. It is often an eye-opener, showing that many things have a beautiful and unexpected simplicity.

Über den Autor
Peter Dieleman studied electrotechnology ('Electrotechniek') at Delft University of Technology in the Netherlands. He then earned his living as a television repairman, back when televisions still used tubes. He was a lecturer at the universities of Groningen and Twente in the Netherlands for about 25 years. He has always kept his love for tubes alive. In 2003 Elektor published his first book on the theory and practice of tube amplifiers. In 2009, he finished his second book on tube designs such as SRPPs, mu-followers and OTLs. The first book was translated into German and French; the second into German.
Details
Erscheinungsjahr: 2026
Fachbereich: Nachrichtentechnik
Genre: Mathematik, Medizin, Naturwissenschaften, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: 366 S.
ISBN-13: 9783895767333
ISBN-10: 3895767336
Sprache: Englisch
Herstellernummer: 21297
Einband: Klappenbroschur
Autor: Dieleman, Peter
Hersteller: Elektor Verlag
Verantwortliche Person für die EU: Elektor Verlag GmbH, Roel Willems, Lukasstr. 1, D-52070 Aachen, roel.willems@elektor.com
Maße: 170 x 239 x 23 mm
Von/Mit: Peter Dieleman
Erscheinungsdatum: 15.04.2026
Gewicht: 0,69 kg
Artikel-ID: 135327813