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... the sinusoidal generator forces node A to a given voltage, which inhibits the role of capacitor C1. The resonance is only based on L1, R1 and C2, which shifts the frequency to higher frequencies. Secondly, the simulation of the inductor effect requires a significant amount of computation, with a hig ...
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... amplifier in the hold mode decreases, which reduces the effective number of bits. This is because the isolation of a CMOS switch degrades at high frequencies. In a series switch, the gate-source (CGs) and gate-drain (CGD) parasitic capacitors provides an alternate path for the signal to pass. This p ...
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... diodes are non-linear. The current they pass varies with the applied voltage. As a result, the demodulated output is slightly distorted in a way which depends upon the diode's I/V characteristic. For example, most AM transistor radios produce output signals (music, Radio 4, etc) with about 5-10% dis ...
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Chirp spectrum



The spectrum of a chirp pulse describes its characteristics in terms of its frequency components. This frequency-domain representation is an alternative to the more familiar time-domain waveform, and the two versions are mathematically related by the Fourier transform. The spectrum is of particular interest when pulses are subject to signal processing. For example, when a chirp pulse is compressed by its matched filter, the resulting waveform contains not only a main narrow pulse but, also, a variety of unwanted artifacts many of which are directly attributable to features in the chirp's spectral characteristics. The simplest way to derive the spectrum of a chirp, now computers are widely available, is to sample the time-domain waveform at a frequency well above the Nyquist limit and call up an FFT algorithm to obtain the desired result. As this approach was not an option for the early designers, they resorted to analytic analysis, where possible, or to graphical or approximation methods, otherwise. These early methods still remain helpful, however, as they give additional insight into the behavior and properties of chirps.
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