2011•Unpublished venueRequires access

Double quadrature harmonic rejection architecture insensitive to gain and phase mismatch for analog/digital TV tuner IC

Jaeyoung Ryu, Seungwoo Cho, Jeongsu Lee, Jong-Jin Kim, Yeonwoo Ku, Kuduck Kwon, Hyun-Koo Kang

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Abstract

Image rejection and harmonic rejection are important performance parameters in wideband low-IF TV system. In this paper, double quadrature harmonic rejection architecture insensitive to gain and/or phase mismatch is proposed to satisfy stringent image rejection ratio (IRR) and harmonic rejection ratio (HRR) for analog/digital TV tuner ICs. Fabricated in 0.13μm CMOS process, more than 60dB of the IRR is achieved over 42-864MHz RF frequency and more than 69dB of the 3rd HRR is achieved over 42-306MHz RF frequency without any calibration.

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Image rejection and harmonic rejection are important performance parameters in wideband low-IF TV system. In this paper, double quadrature harmonic rejection architecture insensitive to gain and/or phase mismatch is proposed to satisfy stringent image rejection ratio (IRR) and harmonic rejection ratio (HRR) for analog/digital TV tuner ICs. Fabricated in 0.13μm CMOS process, more than 60dB of the IRR is achieved over 42-864MHz RF frequency and more than 69dB of the 3rd HRR is achieved over 42-306MHz RF frequency without any calibration.

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Available abstract

Image rejection and harmonic rejection are important performance parameters in wideband low-IF TV system. In this paper, double quadrature harmonic rejection architecture insensitive to gain and/or phase mismatch is proposed to satisfy stringent image rejection ratio (IRR) and harmonic rejection ratio (HRR) for analog/digital TV tuner ICs. Fabricated in 0.13μm CMOS process, more than 60dB of the IRR is achieved over 42-864MHz RF frequency and more than 69dB of the 3rd HRR is achieved over 42-306MHz RF frequency without any calibration.

Key concepts: Tuner, Image response, Quadrature (astronomy), Electronic engineering, Wideband, Radio frequency, Harmonic analysis, Harmonic

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