Series-resonant vibrating micromechanical resonator oscillators, using a custom-designed, single-stage, zero-phase-shift sustaining amplifier together with surface-micromachined micromechanical resonators, are demonstrated to have performance that satisfy the stringent phase noise specifications for GSM wireless communications reference oscillator standards. Since the short-term stability of a reference oscillator is dependent mainly upon the Q and power handling of its resonant tank element, this work achieves GSM performance by introducing micromechanical resonator designs with Q's exceeding 160,000 and distortionless in-band power handling on the order of -12 dBm, both substantially larger than achieved by previous designs. Pursuant to...
Thesis (Ph.D.)--University of Washington, 2016-03Low power and low phase noise RF frequency referenc...
Wireless communication technology has revolutionized our daily life through rapid development in the...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
Series-resonant vibrating micromechanical resonator oscillators, using a custom-designed, single-sta...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
Micromechanical resonant devices have recently emerged as potential replacements for off-chip, discr...
Micromechanical resonant devices have recently emerged as potential replacements for off-chip, discr...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...
Electronic oscillators using an electromechanical device as a frequency reference are irreplaceable ...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...
Wireless technology, which already plays a major part in our daily lives, is expected to further exp...
Thesis (Ph.D.)--University of Washington, 2016-03Low power and low phase noise RF frequency referenc...
Wireless communication technology has revolutionized our daily life through rapid development in the...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
Series-resonant vibrating micromechanical resonator oscillators, using a custom-designed, single-sta...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
Micromechanical resonant devices have recently emerged as potential replacements for off-chip, discr...
Micromechanical resonant devices have recently emerged as potential replacements for off-chip, discr...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...
Electronic oscillators using an electromechanical device as a frequency reference are irreplaceable ...
AbstractIn this paper, the operation of a high Q–10 MHz micromechanical oscillator is presented. A l...
Wireless technology, which already plays a major part in our daily lives, is expected to further exp...
Thesis (Ph.D.)--University of Washington, 2016-03Low power and low phase noise RF frequency referenc...
Wireless communication technology has revolutionized our daily life through rapid development in the...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...