In the paper the advantages of the push-push oscillator topology in terms of phase noise performance are discussed and experimentally verified by means of measurements on X-band and C-band GaInP-GaAs MMIC VCOs. In particular an analytical approach, based on the frequency sensitivity pushing factor parameter, is used to demonstrate the phase noise improvement of at least 9 dB inherently offered by push-push topology, with respect to a fundamental frequency oscillator. This theoretical analysis is for the first time experimentally validated trough the design and characterization of three different MMIC VCOs, specifically developed for this purpose
An X-band low phase noise AlGaN-GaN HEMT MMIC push-push oscillator is designed, fabricated, and char...
none4noThis work presents the design of three low-phase-noise monolithic voltage controlled oscillat...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
In the paper the advantages of the push-push oscillator topology in terms of phase noise performance...
In the paper the advantages of the push-push oscillator topology in terms of phase noise performance...
Voltage controlled oscillators (VCOs) are key components in frequency synthesizers for Radio Frequen...
After investigation of the possible HBT low frequency noise sources and their localization in order...
Abstract—A theoretical analysis on low phase noise of voltage-controlled oscillators (VCOs) based on...
This paper describes a monolithically integrated push-push oscillator fabricated in a production-nea...
none4This paper describes the design and implementation of a C-band MMIC VCO developed in the framew...
In this report, the design of Voltage Controlled Oscillator (VCO) is presented. Fundamental princ...
In this paper the design of a VCO using GaInP/GaAs HBT technology is presented. The VCO is designed ...
In this paper the design of a VCO using GaInP/GaAs HBT technology is presented. The VCO is designed ...
This thesis studied the design techniques of low phase noise and wideband microwave voltage controll...
The thesis presents two major concerns in the design of low phase-noise MMIC VCOs; the active device...
An X-band low phase noise AlGaN-GaN HEMT MMIC push-push oscillator is designed, fabricated, and char...
none4noThis work presents the design of three low-phase-noise monolithic voltage controlled oscillat...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...
In the paper the advantages of the push-push oscillator topology in terms of phase noise performance...
In the paper the advantages of the push-push oscillator topology in terms of phase noise performance...
Voltage controlled oscillators (VCOs) are key components in frequency synthesizers for Radio Frequen...
After investigation of the possible HBT low frequency noise sources and their localization in order...
Abstract—A theoretical analysis on low phase noise of voltage-controlled oscillators (VCOs) based on...
This paper describes a monolithically integrated push-push oscillator fabricated in a production-nea...
none4This paper describes the design and implementation of a C-band MMIC VCO developed in the framew...
In this report, the design of Voltage Controlled Oscillator (VCO) is presented. Fundamental princ...
In this paper the design of a VCO using GaInP/GaAs HBT technology is presented. The VCO is designed ...
In this paper the design of a VCO using GaInP/GaAs HBT technology is presented. The VCO is designed ...
This thesis studied the design techniques of low phase noise and wideband microwave voltage controll...
The thesis presents two major concerns in the design of low phase-noise MMIC VCOs; the active device...
An X-band low phase noise AlGaN-GaN HEMT MMIC push-push oscillator is designed, fabricated, and char...
none4noThis work presents the design of three low-phase-noise monolithic voltage controlled oscillat...
A harmonic oscillator topology displaying an improved phase noise performance is introduced in this ...