14.5 fJ/conversion-step 9-bit 100-kS/s nonbinary weighted dual capacitor array based area and energy efficient SAR ADC in 90 nm CMOS

dc.contributor.authorNarasimaiah, J.D.
dc.contributor.authorBhat, M.S.
dc.date.accessioned2026-02-05T09:30:52Z
dc.date.issued2018
dc.description.abstractIn this work, design technique and analysis of low-energy consumption successive approximation register (SAR) analogue-to-digital converter (ADC) is presented. A dual capacitor array (CA) generates a digital-to-analogue reference voltage with increased accuracy. The CA supports multiple parallel operations to enhance conversion speed. Unit sized capacitors in CAs are few in number and present good capacitance density, thereby providing area efficiency and ease of routeing. A 9-bit SAR ADC using the proposed dual CA, implemented in a 90 nm CMOS process, has a small core area footprint of 0.00371 mm2. At a 1 V supply and 100 kS/s, the ADC achieves a signal-to-noise and distortion ratio of 53.55 dB and consumes 0.47 ?W, resulting in a figure-of-merit of 14.5 fJ/conversion step. © The Institution of Engineering and Technology 2018.
dc.identifier.citationIET Circuits, Devices and Systems, 2018, 12, 6, pp. 671-680
dc.identifier.issn1751858X
dc.identifier.urihttps://doi.org/10.1049/iet-cds.2018.5067
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/24936
dc.publisherInstitution of Engineering and Technology journals@theiet.org
dc.subjectCapacitance
dc.subjectCMOS integrated circuits
dc.subjectEnergy efficiency
dc.subjectEnergy utilization
dc.subjectSignal to noise ratio
dc.subjectAnalogue to digital converter (ADC)
dc.subjectCapacitance density
dc.subjectEnergy efficient
dc.subjectLow energy consumption
dc.subjectParallel operations
dc.subjectReference voltages
dc.subjectSignal to noise and distortion ratio
dc.subjectSuccessive approximation Register (SAR)
dc.subjectAnalog to digital conversion
dc.title14.5 fJ/conversion-step 9-bit 100-kS/s nonbinary weighted dual capacitor array based area and energy efficient SAR ADC in 90 nm CMOS

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