By Rudolf Graf, William Sheets
Diagrams and describes the fundamental circuits utilized in alarms, switches, voltmeters, battery chargers, modulators, receivers, transmitters, oscillators, amplifiers, converters, pulse turbines, and box energy meters.
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Extra resources for Encyclopedia of Electronic Circuits
Vol. 39, no. 8, pp. 4041–4070, Aug. 1998. , The Wigner Distribution — Theory and Applications in Signal Processing, Elsevier, Amsterdam, The Netherlands, 1997. [PAG 52] PAGE C. , “Instantaneous power spectra,” J. Appl. , vol. 23, pp. 103–106, 1952. , B OUDREAUX -BARTELS G. , “The hyperbolic class of quadratic time-frequency representations — Part I: Constant-Q warping, the hyperbolic paradigm, properties, and members,” IEEE Trans. , vol. 41, no. 12, pp. 3425–3444, Dec. 1993. , B OUDREAUX -BARTELS G.
33, no. 6, pp. 1461–1470, Dec. 1985. , “Time-frequency transfer function calculus (symbolic calculus) of linear time-varying systems (linear operators) based on a generalized underspread theory,” J. Math. , vol. 39, no. 8, pp. 4041–4070, Aug. 1998. , The Wigner Distribution — Theory and Applications in Signal Processing, Elsevier, Amsterdam, The Netherlands, 1997. [PAG 52] PAGE C. , “Instantaneous power spectra,” J. Appl. , vol. 23, pp. 103–106, 1952. , B OUDREAUX -BARTELS G. , “The hyperbolic class of quadratic time-frequency representations — Part I: Constant-Q warping, the hyperbolic paradigm, properties, and members,” IEEE Trans.
It is based on a result sometimes called the Bedrosian theorem [BED 63], which can be stated as follows. Let us consider two real signals x1 (t) and x2 (t) with respective FT x1 (f ) and x2 (f ). We suppose that x1 (f ) = 0 for |f | > B and x2 (f ) = 0 for |f | < B. It is sometimes said that x1 (t) is a Low Frequency B (LFB) signal and x2 (t) is a High Frequency B (HFB) signal. ] represents the Hilbert transform. The proof of this result follows easily from the structure of the FT of the two signals [PIC 83].
Encyclopedia of Electronic Circuits by Rudolf Graf, William Sheets