2005
DOI: 10.1109/tcsi.2005.852020
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Distortion cancellation by polyphase multipath circuits

Abstract: It is well known that in balanced (or differential) circuits, all even harmonics are canceled. This cancellation is achieved by using two paths and exploiting phase differences of 180 between the paths. The question addressed in this paper is: what distortion products (harmonics and intermodulation products) are canceled if more than two paths (and phases) are used? These circuits are called polyphase multipath circuits. It turns out that the more paths (and phases) are used, the more distortion products are c… Show more

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Cited by 56 publications
(49 citation statements)
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“…The signals at the output of these phase shifters can be written as: In equation (2), the phase of the fundamental component is identical for all the paths, but the phases of the harmonics are different for each path. If the phase φ is chosen such that φ=360 o /n, then all the higher harmonics are cancelled [2], except for the k th harmonics for which k equals j×n+1 (j=0, 1, 2, 3, ..).…”
Section: Polyphase Multi-path Circuits For Spectral Purity Enhancmentioning
confidence: 99%
See 3 more Smart Citations
“…The signals at the output of these phase shifters can be written as: In equation (2), the phase of the fundamental component is identical for all the paths, but the phases of the harmonics are different for each path. If the phase φ is chosen such that φ=360 o /n, then all the higher harmonics are cancelled [2], except for the k th harmonics for which k equals j×n+1 (j=0, 1, 2, 3, ..).…”
Section: Polyphase Multi-path Circuits For Spectral Purity Enhancmentioning
confidence: 99%
“…Due to the nonlinearity, the phase rotation for the k th harmonic is k times the input phase. Thus the respective phases at the output of the nonlinear block for path [1,2,3] are [0°, 120°, 240°] for ω, [0°, 240°, 120°] for 2ω and [0°, 0°, 0°] for 3ω products. Fig.2 also shows how the phases of the harmonics at the output of each path combine.…”
Section: Polyphase Multi-path Circuits For Spectral Purity Enhancmentioning
confidence: 99%
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“…Phase errors degrade performance, e.g. by generating spurious tones [3] or limiting the achievable image and harmonic rejection [4].…”
Section: Introductionmentioning
confidence: 99%