This paper presents a low-power low-phase noise multiphase VCO that operates in 2.5 GHz and 5.0 GHz frequency bands. The dual-band multiphase VCO uses the frequency doubling method to generate the higher band signals from the lower band signals, and it shows excellent phase noise performance compared to other dual-band multiphase VCOs presented in literature. The VCO has been implemented in 0.18 μm CMOS technology, and its frequency is tunable from 2.23 GHz to 2.68 GHz and from 4.46 GHz to 5.36 GHz. The measured phase difference between the I/Q signals is 90.0°/88.9° for the two frequency bands respectively. The phase noise figure-of-merits (FOMs) for the two frequency bands are −189.4 dB and −185.1 dB
Abstract—In this paper, we analyze the potentials of a four-phase 14-GHz CMOS voltage-controlled osc...
This paper presents a four-core LC-VCO array in 55 nm CMOS technology. Based on the multi-core VCO a...
A triple-mode 65nm CMOS VCO is designed to be reconfigurable to operate in two frequency bands, 4.7-...
This paper presents a low-power low-phase noise multiphase VCO that operates in 2.5 GHz and 5.0 GHz ...
This paper proposes a dual band VCO with a standard 0.35 ㎛ CMOS process to generate 1.07GHz and 2.06...
A dual band, fully integrated, low phase-noise and low-power voltage-controlled oscillator (VCO) ope...
A novel circuit topology for low-phase-noise voltage controlled oscillators (VCOs) is presented in t...
A low-phase-noise low-phase-error 1.8 GHz quadrature CMOS VCO was presented. The VCO with three meta...
This paper demonstrates a dual-band LO generation system using a low phase noise single-band 40GHz V...
A 2 V, 6 mA, 15 % tuning range, 1.8 GHz VCO implemented in a standard 0.35pm CMOS process is present...
A low-voltage wideband 3.0-5.0 GHz complementary VCO was designed and fabricated in an 0.13 μm SOI C...
A 5-GHZ CMOS VCO with improved phase noise is proposed in this article. A gate voltage boosting tech...
With growing demand for 5G applications, there is huge amount of interest for communication systems ...
Abstract — This paper proposes a multiple-divide technique using by-2, by-3, and by-4 frequency divi...
[[abstract]]In this article, a low-power low-phase-noise 48-GHz CMOS LC voltage-control oscillator (...
Abstract—In this paper, we analyze the potentials of a four-phase 14-GHz CMOS voltage-controlled osc...
This paper presents a four-core LC-VCO array in 55 nm CMOS technology. Based on the multi-core VCO a...
A triple-mode 65nm CMOS VCO is designed to be reconfigurable to operate in two frequency bands, 4.7-...
This paper presents a low-power low-phase noise multiphase VCO that operates in 2.5 GHz and 5.0 GHz ...
This paper proposes a dual band VCO with a standard 0.35 ㎛ CMOS process to generate 1.07GHz and 2.06...
A dual band, fully integrated, low phase-noise and low-power voltage-controlled oscillator (VCO) ope...
A novel circuit topology for low-phase-noise voltage controlled oscillators (VCOs) is presented in t...
A low-phase-noise low-phase-error 1.8 GHz quadrature CMOS VCO was presented. The VCO with three meta...
This paper demonstrates a dual-band LO generation system using a low phase noise single-band 40GHz V...
A 2 V, 6 mA, 15 % tuning range, 1.8 GHz VCO implemented in a standard 0.35pm CMOS process is present...
A low-voltage wideband 3.0-5.0 GHz complementary VCO was designed and fabricated in an 0.13 μm SOI C...
A 5-GHZ CMOS VCO with improved phase noise is proposed in this article. A gate voltage boosting tech...
With growing demand for 5G applications, there is huge amount of interest for communication systems ...
Abstract — This paper proposes a multiple-divide technique using by-2, by-3, and by-4 frequency divi...
[[abstract]]In this article, a low-power low-phase-noise 48-GHz CMOS LC voltage-control oscillator (...
Abstract—In this paper, we analyze the potentials of a four-phase 14-GHz CMOS voltage-controlled osc...
This paper presents a four-core LC-VCO array in 55 nm CMOS technology. Based on the multi-core VCO a...
A triple-mode 65nm CMOS VCO is designed to be reconfigurable to operate in two frequency bands, 4.7-...