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Titlebook: Design of Low-Voltage Bipolar Operational Amplifiers; M. Jeroen Fonderie,Johan H. Huijsing Book 1993 Springer Science+Business Media New Y

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Applied and Numerical Harmonic Analysisout the use of emitter followers as output transistors, because such a use would result in the loss of one diode voltage. The actual output transistors of the output stages discussed in this Chapter therefore have a common-emitter configuration.
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Book 1993rail input stages,rail-to-rail output stages, intermediatestages,protectioncircuitry and frequency compensation techniques.Ofeachof these,various implementations are examined. Furthermore,thebookdiscussesrealizationsinsiliconofthe amplifiers..Thedesignandimplementationoflow-voltagebipolar Operationa
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Introduction, An OpAmp is a universal amplifier that ideally amplifies its differential input voltage with an infinite gain to a single output. It has an infinite input resistance and a zero output resistance. Because of this infinite gain, the use of the OpAmp requires the application of external feedback. Fig.
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Output Stages,ltage rail to the other. After all, the supply-voltage range is by definition not very great so we want to be able to make full use of it. This rules out the use of emitter followers as output transistors, because such a use would result in the loss of one diode voltage. The actual output transistor
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Other Circuit Parts,ency design, which will be examined in the next Chapter, and various circuit parts that are examined in this Chapter. Although these circuits are dealt with in less detail, this does not imply that they are insignificant; it is rather that either the solutions found in literature could be adapted qu
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