Operation of a 14 MHz micromechanical oscillator is demonstrated and analyzed. Single-crystal silicon microbridge with submicron electrode gaps is utilized as the resonator element. The oscillator shows a noise floor of −120 dBc/Hz and a near-carrier noise of −105 dBc/Hz at 1 kHz offset. The oscillator noise is dominated by amplifier noise. By comparing the oscillator performance with conventional quartz oscillators, advantages and limitations of the micromechanical components in rf-technology are discussed
Abstract — A completely monolithic high-Q oscillator, fabri-cated via a combined CMOS plus surface m...
The very significant growth of the wireless communication industry has spawned tremendous interest i...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...
Operation of a 14 MHz micromechanical oscillator is demonstrated and analyzed. Single-crystal silico...
Operation of a 14 MHz micromechanical oscillator is demonstrated and analyzed. Single-crystal silico...
A 180-nm gap micromechanical resonator biased at 20 V and full custom integrated electronics are use...
e demonstrate a bulk acoustic mode silicon micromechanical resonator with the first eigen frequency ...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
The need for miniaturized frequency-selective components in electronic systems is clear. The questi...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
Series-resonant vibrating micromechanical resonator oscillators, using a custom-designed, single-sta...
This paper presents an overview of micro electromechanical (MEMS) based oscillators. The accuracy an...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
Abstract — A completely monolithic high-Q oscillator, fabri-cated via a combined CMOS plus surface m...
The very significant growth of the wireless communication industry has spawned tremendous interest i...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...
Operation of a 14 MHz micromechanical oscillator is demonstrated and analyzed. Single-crystal silico...
Operation of a 14 MHz micromechanical oscillator is demonstrated and analyzed. Single-crystal silico...
A 180-nm gap micromechanical resonator biased at 20 V and full custom integrated electronics are use...
e demonstrate a bulk acoustic mode silicon micromechanical resonator with the first eigen frequency ...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
The need for miniaturized frequency-selective components in electronic systems is clear. The questi...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
Series-resonant vibrating micromechanical resonator oscillators, using a custom-designed, single-sta...
This paper presents an overview of micro electromechanical (MEMS) based oscillators. The accuracy an...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
Abstract — A completely monolithic high-Q oscillator, fabri-cated via a combined CMOS plus surface m...
The very significant growth of the wireless communication industry has spawned tremendous interest i...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...