2015
DOI: 10.1109/jssc.2015.2428278
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A Closed-Loop <formula formulatype="inline"> <tex Notation="TeX">$\Sigma\Delta$</tex></formula> Interface for a High-Q Micromechanical Capacitive Accelerometer With 200 ng/<formula formulatype="inline"><tex Notation="TeX">$ \surd$</tex></formula>Hz Input Noise Density

Abstract: In this paper, a fully-differential high-order switchedcapacitor (SC) sigma-delta interface in a standard 0.5 m CMOS technology for a micromechanical capacitive accelerometer is presented. A 1 bit digital output is attained by the interface circuit based on a low-noise front-end and a back-end third-order SC modulator, avoiding the use of a separate high-resolution converter to digitize the analog feedback signal. In addition, a micromechanical capacitive sensor element with a high quality factor (high-Q) is u… Show more

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Cited by 90 publications
(35 citation statements)
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“…When the magnetization direction is in parallel state, the equivalent resistance is in low state, when the magnetization direction is in antiparallel state, the equivalent resistance is in high state. In order to achieve the higher sensitivity, the Wheastone bridge structure is used in TMR sensors [8]. In this work, the magnetization sensor element operates in a vacuum package with high sensitivity 15 mV/Oe and high resolution less than 1 nT/Hz 1=2 (@10 Hz).…”
Section: Sensor Elementmentioning
confidence: 99%
“…When the magnetization direction is in parallel state, the equivalent resistance is in low state, when the magnetization direction is in antiparallel state, the equivalent resistance is in high state. In order to achieve the higher sensitivity, the Wheastone bridge structure is used in TMR sensors [8]. In this work, the magnetization sensor element operates in a vacuum package with high sensitivity 15 mV/Oe and high resolution less than 1 nT/Hz 1=2 (@10 Hz).…”
Section: Sensor Elementmentioning
confidence: 99%
“…To save chip area, virtual switch technique is not employed in all of switches. Only used in the first order integrator that will highly affect the performance of the whole system and transmission path of signal that will change with the charge feedthrough [5,6,7].…”
Section: Proposed Architecturementioning
confidence: 99%
“…Sigmadelta (AEÁ) interface is attractive for MEMS accelerometer since it is simple, provides a digital output, and has a large bandwidth [2]. Many capacitive accelerometer interfaces using direct AEÁ modulator structure have been published [3,4,5], however as the large mechanical and parasitic capacitors must be charged and discharged on the rhythm of the high oversampling clock of the modulator, leading to high power consumption.…”
Section: Introductionmentioning
confidence: 99%