Title :
Terahertz CMOS Frequency Generator Using Linear Superposition Technique
Author :
Huang, Daquan ; LaRocca, Tim R. ; Chang, Mau-Chung Frank ; Samoska, Lorene ; Fung, Andy ; Campbell, Richard L. ; Andrews, Michael
Author_Institution :
Univ. of California at Los Angeles, Los Angeles, CA
Abstract :
A low Terahertz (324 GHz) frequency generator is realized in 90 nm CMOS by linearly superimposing quadruple (N=4) phase shifted fundamental signals at one fourth of the output frequency (81 GHz). The developed technique minimizes the fundamental, second and third order harmonics without extra filtering and results in a high fundamental-to-4 th harmonic signal conversion ratio of 0.17 or -15.4 dB. The demonstrated prototype produces a calibrated -46 dBm output power when biased at 1 V and 12 mA with 4 GHz tuning range and extrapolated phase noise of -91 dBc/Hz at 10 MHz frequency offset. The linear superposition (LS) technique can be generalized for all even number cases (N=2k, where k=1,2,3,4,...,n) with different tradeoffs in output power and frequency. As CMOS continues to scale, we anticipate the LS N=4 VCO to generate signals beyond 2 Terahertz by using 22 nm CMOS and produce output power up to -1.5 dBm with 1.7% power added efficiency with an LS VCO + Class-B Power Amplifier cascaded circuit architecture.
Keywords :
CMOS digital integrated circuits; signal generators; submillimetre wave amplifiers; submillimetre wave integrated circuits; submillimetre wave oscillators; voltage-controlled oscillators; Class-B power amplifier; VCO; cascaded circuit architecture; current 12 mA; frequency 4 GHz; frequency 81 GHz; fundamental-to-4th harmonic signal conversion ratio; linear superposition; phase noise; quadruple phase shifted fundamental signals; terahertz CMOS frequency generator; tuning; voltage 1 V; Filtering; Frequency; Power amplifiers; Power generation; Power harmonic filters; Prototypes; Signal generators; Submillimeter wave filters; Tuning; Voltage-controlled oscillators; CMOS Terahertz generator; DAC-to-RF conversion efficiency; fundamental-to-fourth harmonic signal conversion ratio; linear superposition (LS) circuit technique; phase noise of terahertz CMOS signal generation; terahertz signal generation;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2008.2004868