DocumentCode :
1225603
Title :
A Broadband CMOS Frequency Tripler Using a Third-Harmonic Enhanced Technique
Author :
Zheng, You ; Saavedra, Carlos E.
Author_Institution :
Queen´´s Univ., Kingston
Volume :
42
Issue :
10
fYear :
2007
Firstpage :
2197
Lastpage :
2203
Abstract :
A third harmonic enhanced technique is proposed to implement a broadband and low-phase-noise CMOS frequency tripler. It nonlinearly combines a pair of differential fundamental signals to generate deep cuts at the peaks of the fundamental waveform, resulting in a strong third harmonic frequency output. This mechanism has inherent suppression on the fundamental and the other harmonics so that only a low-Q high-pass filter on the lossy silicon substrate is applied at the output to further reject the fundamental and the second harmonic frequencies, in contrast to the high-Q filters used in most of the previous tripler designs. The fabricated circuit using 0.18 m CMOS technology is compact and has an input frequency range from 1.7 GHz to 2.25 GHz, or an output frequency range from 5.1 GHz to 6.75 GHz, resulting in about 28% frequency bandwidth. The optimum conversion loss from the tripler is 5.6 dB (27.5% efficiency) at an input power of 2 dBm. The suppressions for the fundamental, second and fourth harmonics in the measurement are better than 11 dB, 9 dB, and 20 dB within an input power range from 2 dBm to 7 dBm.
Keywords :
CMOS analogue integrated circuits; MMIC frequency convertors; frequency multipliers; high-pass filters; broadband CMOS frequency tripler; frequency 1.7 GHz to 2.25 GHz; frequency 5.1 GHz to 6.75 GHz; low-Q high-pass filter; low-phase-noise CMOS frequency tripler; size 0.18 micron; third harmonic frequency; third-harmonic enhanced technique; CMOS technology; Capacitance; Capacitance-voltage characteristics; Frequency conversion; Power harmonic filters; Semiconductor diodes; Signal generators; Silicon; Varactors; Voltage; CMOS; broadband; frequency multiplication; frequency tripler;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2007.905238
Filename :
4317720
Link To Document :
بازگشت