A novel frequency tripler consisting of a harmonics generating stage and a converting stage is proposed. A common-emitter transistor in the first stage is used to produce mainly the first to third harmonics, while, a common-emitter transistor in the second stage converts simultaneously the first and the second harmonics into the third harmonic, and also amplifies the third harmonic at the input. The third harmonics obtained from different mechanisms add in favorably phase, and consequently improving the tripler\u27s conversion gain. A proof-of-concept circuit is designed and manufactured in a 0.25 mu m InP DHBT Technology. The tripler has a conversion gain between 0 dB to 7 dB in the output frequency range from 110 to 155 GHz. It demonstrat...
This paper presents a novel frequency tripler circuit topology which yields a remarkable improvement...
A coplanar single-ended frequency doubler based on a 100 nm metamorphic HEMT technology is presented...
A balanced MMIC doubler implemented in a metamorphic HEMT technology is described. The multiplier is...
A novel frequency tripler consisting of a harmonics generating stage and a converting stage is propo...
A novel frequency sixtupler is proposed and verified experimentally. It consists of an even-order ha...
A novel frequency sixtupler is proposed and verified experimentally. It consists of an even-order ha...
A single-chip active frequency tripler circuit with output at F-band (90-140 GHz) is presented. A co...
An active frequency tripler MMIC achieving an output frequency of 330 GHz is presented. With the use...
A D-band frequency quadrupler consisting of two cascaded push-push doublers is designed and manufact...
This letter presents an optimized single-stage MMIC tripler with W-band output frequency (76.5 GHz)....
A novel design methodology for the successful implementation of high efficiency class E frequency mu...
An active frequency-tripler MMIC achieving an output frequency of 315 GHz is presented. Without the ...
A novel design methodology for the successful implementation of high efficiency class E frequency mu...
The presented D-band sixtupler consists of a frequency tripler, a frequency doubler, as well as ampl...
This paper reports on the recent development of monolithic frequency tripler array employing a back-...
This paper presents a novel frequency tripler circuit topology which yields a remarkable improvement...
A coplanar single-ended frequency doubler based on a 100 nm metamorphic HEMT technology is presented...
A balanced MMIC doubler implemented in a metamorphic HEMT technology is described. The multiplier is...
A novel frequency tripler consisting of a harmonics generating stage and a converting stage is propo...
A novel frequency sixtupler is proposed and verified experimentally. It consists of an even-order ha...
A novel frequency sixtupler is proposed and verified experimentally. It consists of an even-order ha...
A single-chip active frequency tripler circuit with output at F-band (90-140 GHz) is presented. A co...
An active frequency tripler MMIC achieving an output frequency of 330 GHz is presented. With the use...
A D-band frequency quadrupler consisting of two cascaded push-push doublers is designed and manufact...
This letter presents an optimized single-stage MMIC tripler with W-band output frequency (76.5 GHz)....
A novel design methodology for the successful implementation of high efficiency class E frequency mu...
An active frequency-tripler MMIC achieving an output frequency of 315 GHz is presented. Without the ...
A novel design methodology for the successful implementation of high efficiency class E frequency mu...
The presented D-band sixtupler consists of a frequency tripler, a frequency doubler, as well as ampl...
This paper reports on the recent development of monolithic frequency tripler array employing a back-...
This paper presents a novel frequency tripler circuit topology which yields a remarkable improvement...
A coplanar single-ended frequency doubler based on a 100 nm metamorphic HEMT technology is presented...
A balanced MMIC doubler implemented in a metamorphic HEMT technology is described. The multiplier is...