2021
DOI: 10.1109/tcsii.2020.3047148
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Effect of Various Delay Line Ratios and Their Non-Linearity on the Performance of DIFM

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Cited by 2 publications
(2 citation statements)
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“…Above techniques mentioned in the literature for the suppression of bandpass filter harmonics are not sufficient for present requirements, because they provide a large bandwidth of rejection. As per current requirement, BSF should reject unwanted 860 MHz (2.25 GHz ±$\pm$ 430 MHz) 3 dB frequency in the band of 1–10 GHz [10]. A distributed element‐based “synthesis by optimization technique” is proposed to achieve band stop filters characteristics with extended upper passbands [11].…”
Section: Introductionmentioning
confidence: 99%
“…Above techniques mentioned in the literature for the suppression of bandpass filter harmonics are not sufficient for present requirements, because they provide a large bandwidth of rejection. As per current requirement, BSF should reject unwanted 860 MHz (2.25 GHz ±$\pm$ 430 MHz) 3 dB frequency in the band of 1–10 GHz [10]. A distributed element‐based “synthesis by optimization technique” is proposed to achieve band stop filters characteristics with extended upper passbands [11].…”
Section: Introductionmentioning
confidence: 99%
“…Techniques mentioned in the literature for the suppression of bandpass filter harmonics are not sufficient for present requirements, because they provide large bandwidth of rejection. As per current requirement, BSF should reject unwanted 2.25 GHz ± 430 MHz frequency in the band of 1-10 GHz [13]. A distributed element-based 'synthesis by optimization technique' is proposed to achieve band stop filters characteristics with extended upper passbands [14].…”
Section: Introductionmentioning
confidence: 99%