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Home > Art, Film & Photography > Network Synthesis Filters: Butterworth Filter, Chebyshev Filter, Elliptic Filter, Bessel Filter, Linkwitz-Riley Filter, Optimum "L" Filter
Network Synthesis Filters: Butterworth Filter, Chebyshev Filter, Elliptic Filter, Bessel Filter, Linkwitz-Riley Filter, Optimum "L" Filter

Network Synthesis Filters: Butterworth Filter, Chebyshev Filter, Elliptic Filter, Bessel Filter, Linkwitz-Riley Filter, Optimum "L" Filter


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About the Book

Chapters: Butterworth Filter, Chebyshev Filter, Elliptic Filter, Bessel Filter, Linkwitz-Riley Filter, Optimum "L" Filter. Source: Wikipedia. Pages: 45. Not illustrated. Free updates online. Purchase includes a free trial membership in the publisher's book club where you can select from more than a million books without charge. Excerpt: The Butterworth filter is one type of signal processing filter design. It is designed to have a frequency response which is as flat as mathematically possible in the passband. Another name for it is maximally flat magnitude filter. The Butterworth type filter was first described by the British engineer Stephen Butterworth in his paper entitled "On the Theory of Filter Amplifiers," in Wireless Engineer (also called Experimental Wireless and the Wireless Engineer), vol. 7, 1930, pp. 536541. Butterworth had a reputation for solving mathematical problems that were thought to be impossible to solve. His paper was far ahead of its time and the filter was not in common use for over 30 years after its publication. At the time filters were largely designed by trial and error because of their mathematical complexity. Butterworth stated the goal of his paper thusly: At the time the frequency response of filters contained substantial amounts of ripple in the passband and the choice of component values was highly interactive. Butterworth showed that low pass filters could be designed whose frequency response (gain) was, where is the angular frequency in radians per second and n is the number of reactive elements (poles) in the filter. Butterworth only dealt with filters with an even number of poles in his paper. His plot of the frequency response of 2, 4, 6, 8, and 10 pole filters is shown as A, B, C, D, and E in this original graph. Frequency response plot from the original paper.Butterworth solved the equations for two and four pole filters and showed how the latter could be cascaded when separated by ...More: http: //booksllc.net/?id=562353


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Product Details
  • ISBN-13: 9781156457924
  • Publisher: Books LLC
  • Publisher Imprint: Books LLC
  • Height: 152 mm
  • Sub Title: Butterworth Filter, Chebyshev Filter, Elliptic Filter, Bessel Filter, Linkwitz-Riley Filter, Optimum "L" Filter
  • Width: 229 mm
  • ISBN-10: 1156457920
  • Publisher Date: 15 Sep 2010
  • Binding: Paperback
  • Spine Width: 3 mm
  • Weight: 82 gr


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