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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 Analysisency 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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The 4-Player Gambler’s Ruin Probleme dominating poles to the transfer from input to output. If there are two or more dominating poles, the phase margin of the frequency response is negative, and overall feedback of the OpAmp is not possible. To change this, frequency compensation techniques must be applied that give the OpAmp one dom
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Trends in the History of Science Section 6.1 describes the design of the commercially available 2-V OpAmp NE5234. This OpAmp was developed for the Signetics Company as follow-up to the low-voltage OpAmp NE5230 [.]. In Section 6.2 the 1-V OpAmp IS549, processed at the Delft Institute of MicroElectronics and Sub-micron technology (D
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Input Stages,dditive interferences such as, for instance, noise, the common-mode (CM) input-voltage range should be as wide as possible, preferably reaching from the positive to the negative supply rail. Further, a rail-to-rail CM input-voltage range also enhances the general-purpose nature of the OpAmp.
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0893-3405 nce of semiconductor and communication technology, the wireless communication market has been booming in the last two decades. It evolved from simple pagers to emerging third-generation (3G) cellular phones. In the meanwhile, broadband communication market has also gained a rapid growth. As the mark
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