This paper presents class-D CMOS oscillators capable of an excellent phase noise performance from a very low power supply voltage. Starting from the recognition of the time-variant nature of the class-D LC tank, accurate expressions of the oscillation frequency, oscillation amplitude, current consumption, phase noise, and figure-of-merit (FoM) have been derived. Compared with the commonly used class-B/C architectures, the optimal class-D oscillator produces less phase noise for the same power consumption, at the expense of a higher power supply pushing. A prototype of a class-D voltage-controlled oscillator (VCO) targeted for mobile applications, implemented in a standard 65-nm CMOS process, covers a 46% tuning range between 3.0 and 4.8 GHz...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
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 ...
This paper presents the co-design of a class-D digitally-controlled oscillator (DCO) and a low-dropo...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
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 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...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
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 ...
This paper presents the co-design of a class-D digitally-controlled oscillator (DCO) and a low-dropo...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
An oscillator topology demonstrating an improved phase noise performance is proposed in this paper. ...
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 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...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
A CMOS oscillator employing differential transistor pairs working in Class-C in push-pull configurat...
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 ...