By Mingliang (Michael) Liu
This e-book is helping engineers to know primary theories and layout ideas by means of proposing actual and intuitive causes of switched-capacitor circuits. quite a few circuit examples are mentioned and the writer emphasizes an important and basic rules curious about imposing state of the art switched-capacitor circuits for analog sign processing and tool administration functions. in the course of the e-book, the writer provides various step by step tutorials and offers functional layout examples.
While a few quantitative research is important to appreciate underlying ideas, tedious mathematical equations and formal proofs are shunned. An intuitive appreciation for switched-capacitor circuits is completed. a lot of the prevailing details on modern switched-capacitor circuit functions is within the kind of purposes notes and information sheets for numerous switched-capacitor ICs. This e-book compiles such info in one quantity and coherently organizes and buildings it.
* step by step tutorials which emphasize the main basic principals
* Few tedious mathematical equations
* the 1st easy-to-understand compilation in this topic
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Additional resources for Demystifying Switched Capacitor Circuits
The relationships of several circuit performance parameters with respect to capacitance ratios were explained. The discussion emphasized that capacitance ratios play a critical role in the frequency and magnitude characterizations of an SC circuit. The subject of the next section is one of the most important active elements for building filters and data converters—the SC integrator. 2(a). It is assumed that all the op-amps used in this section are ideal—that is, dc-offset-free, with infinite gain and bandwidth, powered by sufficient supply voltages and so on.
1(e) can in fact be used to build a bilinear SC circuit, for example, an integrator (for C1 = C2), whose input signal should also be sampled and held . 1(f)  has been one of the most widely adopted solutions to the simulation of a continuous-time resistor so far. 1 mainly because of its insensitivity to parasitic/stray capacitances in the circuit, from which the others suffer. In an integrated capacitor, the troublesome parasitic capacitances usually reside between certain nodes on the lower polysilicon layers, which are neither grounded nor connected to a low impedance point such as an op-amp’s output in most cases.
Since phase margin is one of the most commonly used quantitative criteria of stability (although not the perfectly reliable measure) in practice, we can say that in general pole splitting helps improve the op-amp’s stability. 2), if the output load capacitance, C2, is increased, then w p2 will be moved closer to w p1. , larger than 10 pF). The right-half-plane (RHP) zero, w z, is not desirable because it introduces a phase lag to the system, resulting in a smaller phase margin. Hence, the system may become unstable.