A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configuration is presented. The oscillator exhibits the same advantages enjoyed by complementary topologies on oscillators based on a single differential pair, while yielding a substantial power consumption reduction thanks to the Class-C operation. The phase-noise performance and the fundamental conditions required to keep the transistors working in Class-C are analyzed in detail. It is shown that, for an optimal performance, both nMOS and pMOS transistors should not be pushed into the deep triode region by the instantaneous resonator voltage, and a simple circuit solution is proposed to accommodate a large oscillation swing. A 0.18-mu m CMOS prototyp...
This paper implements a complementary Class-C digitally controlled oscillator (DCO) with differentia...
Class-C operation is leveraged to implement a K-band CMOS voltage-controlled oscillator (VCO) where ...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
This paper presents two class-C CMOS VCOs with a dynamic bias of the core transistors, which maximiz...
Abstract—This paper presents a complementary metal-oxide-semiconductor (CMOS) differential voltage-c...
This paper presents class-D CMOS oscillators capable of an excellent phase noise performance from a ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
Many Class-C CMOS VCOs have been introduced in the last decade claiming to achieve improved phase no...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
This paper implements a complementary Class-C digitally controlled oscillator (DCO) with differentia...
Class-C operation is leveraged to implement a K-band CMOS voltage-controlled oscillator (VCO) where ...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
This paper presents two class-C CMOS VCOs with a dynamic bias of the core transistors, which maximiz...
Abstract—This paper presents a complementary metal-oxide-semiconductor (CMOS) differential voltage-c...
This paper presents class-D CMOS oscillators capable of an excellent phase noise performance from a ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
Many Class-C CMOS VCOs have been introduced in the last decade claiming to achieve improved phase no...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...
This paper implements a complementary Class-C digitally controlled oscillator (DCO) with differentia...
Class-C operation is leveraged to implement a K-band CMOS voltage-controlled oscillator (VCO) where ...
This paper presents an analysis of power efficiency in LC voltage-controlled oscillators (VCOs). Thr...