Title :
A New Harmonic Noise Frequency Filtering VCO and Mixer Co-design
Author :
Yoon, Jae-Ho ; Kim, Nam-Young
Author_Institution :
RFIC Res. & Educ. Center, Kwangwoon Univ., Seoul
Abstract :
An asymmetrical inductance tank (AIT) structure provides high quality factor in tank and harmonic noise frequency filtering (HNFF) technique shorts harmonic noises to ground. The VCO directly drives the on-chipped double balanced mixer to convert RF carrier to IF frequency through local oscillator. Further, output amplifier improves final power performance. This paper presents the design for a prototype 1.721 GHz LC VCO, mixer, and output amplifier that have been designed for low phase noise and high output power. The HNFF-VCO exhibited a phase noise of -133.96 dBc/Hz at 1 MHz offset and a tuning range of 261 MHz. While totally on-chipped downconverter shows a third-order input intercept point (IIP3) of 12.44 dBm, a third-order output intercept point (OIP3) of 21.44 dBm, an input P1dB of 3 dBm, an RF return loss of -31 dB, and an IF return loss of -26 dB. The RF-IF isolation is 57 dB. Also, this downconverter has a conversion gain of 8.9 dB through output amplifier. The totally on-chipped downconverter is 2.56 times 1.07 mm2 of chip area
Keywords :
UHF amplifiers; UHF mixers; UHF oscillators; filtering theory; phase noise; voltage-controlled oscillators; 1.721 GHz; 26 dB; 31 dB; 8.9 dB; IF return loss; RF return loss; RF-IF isolation; UHF mixer; VCO; asymmetrical inductance tank structure; double balanced mixer; harmonic noise frequency filtering technique; local oscillator; on-chipped downconverter; output amplifier; phase noise; quality factor; third-order input intercept point; third-order output intercept point; voltage controlled oscillators; Filtering; Inductance; Mixers; Phase noise; Power amplifiers; Power harmonic filters; Q factor; Radio frequency; Radiofrequency amplifiers; Voltage-controlled oscillators; Asymmetric inductance tank structure; double balanced mixer; harmonic noise frequency filtering technique; phase noise; voltage controlled oscillators;
Conference_Titel :
European Microwave Integrated Circuits Conference, 2006. The 1st
Conference_Location :
Manchester
Print_ISBN :
2-9600551-8-7
DOI :
10.1109/EMICC.2006.282654