This work presents a design and measurement of pierce oscillator circuit for microelectromechanical system (MEMS) SAW resonator. The pierce oscillator circuit was fabricated using MIMOS 0.35um CMOS technology process. The pierce oscillator circuit provides gain to offset the losses of the resonator. The open loop gain of the fabricated oscillator circuit is 17.5dB and consumes 3mW power. When integrated with SAW resonators, the phase noise performance is -84.6dBc/Hz 100 kHz offset frequency. The far from carrier noise is -103dBc/Hz
We present the design and analysis result of a low power, low noise, 20 MHz CMOS-MEMS oscillators. T...
AbstractThis paper describes the design and characterization of a MEMS resonator oscillator fabricat...
[[abstract]]This paper describes the design and characterization of a MEMS resonator oscillator fabr...
This work presents a design and measurement of pierce oscillator circuit for microelectromechanical ...
Development of microelectromechanical system (MEMS) based oscillators have drawn significant attenti...
The design of a cascode Pierce oscillator circuit with separation supply for a MEMS surface acoustic...
This paper presents the design and simulation results for a multi-frequency oscillator based on comp...
In this paper we describe the design and implementation of a CMOS surface acoustic wave (SAW) oscill...
This paper highlights the design and analysis of a pierce oscillator circuit for CMOS MEMS surface a...
This paper presents the design and simulation results for a multi-frequency oscillator based on com...
This paper presents a 35μW SAW oscillator operating at 843MHz. The low power consumption is achieved...
The design and fabrication of an integrated 1GHz surface acoustic wave (SAW) resonator is described ...
The accelerated growth of wireless communication system has increased the interest of research in CM...
Abstract—A surface transverse wave (STW) resonator-based oscillator was developed in response to SON...
A 180-nm gap micromechanical resonator biased at 20 V and full custom integrated electronics are use...
We present the design and analysis result of a low power, low noise, 20 MHz CMOS-MEMS oscillators. T...
AbstractThis paper describes the design and characterization of a MEMS resonator oscillator fabricat...
[[abstract]]This paper describes the design and characterization of a MEMS resonator oscillator fabr...
This work presents a design and measurement of pierce oscillator circuit for microelectromechanical ...
Development of microelectromechanical system (MEMS) based oscillators have drawn significant attenti...
The design of a cascode Pierce oscillator circuit with separation supply for a MEMS surface acoustic...
This paper presents the design and simulation results for a multi-frequency oscillator based on comp...
In this paper we describe the design and implementation of a CMOS surface acoustic wave (SAW) oscill...
This paper highlights the design and analysis of a pierce oscillator circuit for CMOS MEMS surface a...
This paper presents the design and simulation results for a multi-frequency oscillator based on com...
This paper presents a 35μW SAW oscillator operating at 843MHz. The low power consumption is achieved...
The design and fabrication of an integrated 1GHz surface acoustic wave (SAW) resonator is described ...
The accelerated growth of wireless communication system has increased the interest of research in CM...
Abstract—A surface transverse wave (STW) resonator-based oscillator was developed in response to SON...
A 180-nm gap micromechanical resonator biased at 20 V and full custom integrated electronics are use...
We present the design and analysis result of a low power, low noise, 20 MHz CMOS-MEMS oscillators. T...
AbstractThis paper describes the design and characterization of a MEMS resonator oscillator fabricat...
[[abstract]]This paper describes the design and characterization of a MEMS resonator oscillator fabr...