A low-power, low-phase-noise quadrature oscillator for Medical Implantable Communications Service (MICS) transceivers is presented. The proposed quadrature oscillator generates 349~689 MHz I/Q (In-phase and Quadrature) signals covering the MICS band. The oscillator is based on a differential pair with positive feedback. Each delay cell consists of a few transistors enabling lower voltage operation. Since the oscillator is very sensitive to disturbances in the supply voltage and ground, a self-bias circuit for isolating the voltage disturbance is proposed to achieve bias voltages which can track the disturbances from the supply and ground. The oscillation frequency, which is controlled by the bias voltages, is less sensitive to the supply an...
Abstract — A low phase noise, power efficient VCO using UMC 0.18µm CMOS technology has been proposed...
The design of low-phase-noise fully integrated frequency references is often a critical aspect in th...
This paper presents an ultra low-noise, low-voltage complete analog signal conditioning chip, fabric...
The 402–405 MHz medical implant communication service (MICS) band has recently been allocated by the...
The 402-405 MHz MICS (Medical Implant Communication Service) band has recently been allocated by the...
The 402–405 MHz medical implant communication service (MICS) band has recently been allocated by the...
The demand for high-speed wireless data communication systems is continuously increasing such as 802...
The 402-405 MHz MICS (medical implant communication service) band has recently been allocated by the...
For transceiver design in low cost CMOS technologies, one of the most challenging elements is the vo...
Recent research to accommodate increasing customers' demand is focusing on low power wireless applic...
167 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2004.This research encompasses the...
WOS: 000425151000013This paper proposes a new biasing technique for LC-based voltage controlled osci...
This paper presents and implements a low power receiver for medical implantable communication system...
This paper presents and implements a low power receiver for medical implantable communication system...
The paper presents a monolithic voltage controlled oscillator (VCO) prototype designed with micro-el...
Abstract — A low phase noise, power efficient VCO using UMC 0.18µm CMOS technology has been proposed...
The design of low-phase-noise fully integrated frequency references is often a critical aspect in th...
This paper presents an ultra low-noise, low-voltage complete analog signal conditioning chip, fabric...
The 402–405 MHz medical implant communication service (MICS) band has recently been allocated by the...
The 402-405 MHz MICS (Medical Implant Communication Service) band has recently been allocated by the...
The 402–405 MHz medical implant communication service (MICS) band has recently been allocated by the...
The demand for high-speed wireless data communication systems is continuously increasing such as 802...
The 402-405 MHz MICS (medical implant communication service) band has recently been allocated by the...
For transceiver design in low cost CMOS technologies, one of the most challenging elements is the vo...
Recent research to accommodate increasing customers' demand is focusing on low power wireless applic...
167 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2004.This research encompasses the...
WOS: 000425151000013This paper proposes a new biasing technique for LC-based voltage controlled osci...
This paper presents and implements a low power receiver for medical implantable communication system...
This paper presents and implements a low power receiver for medical implantable communication system...
The paper presents a monolithic voltage controlled oscillator (VCO) prototype designed with micro-el...
Abstract — A low phase noise, power efficient VCO using UMC 0.18µm CMOS technology has been proposed...
The design of low-phase-noise fully integrated frequency references is often a critical aspect in th...
This paper presents an ultra low-noise, low-voltage complete analog signal conditioning chip, fabric...