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Dive into the research topics where Brian G. Drost is active.

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Featured researches published by Brian G. Drost.


international solid-state circuits conference | 2012

A 0.55V 61dB-SNR 67dB-SFDR 7MHz 4 th -order Butterworth filter using ring-oscillator-based integrators in 90nm CMOS

Brian G. Drost; Mrunmay Talegaonkar; Pavan Kumar Hanumolu

Integrators are key building blocks in many analog signal processing circuits and systems. They are typically implemented using either an opamp-RC or a Gm-C architecture depending on bandwidth and linearity requirements. The performance of both these topologies depends on the operational transconductance amplifier (OTA) used to implement the integrator. Reduced supply voltage and lower transistor output impedance make it difficult to implement high-gain wide-bandwidth OTAs in a power-efficient manner. Consequently, the DC gain of the integrator is often severely limited when designed in deep-submicron CMOS processes. Conventional integrators employ multi-stage OTAs operating in weak inversion and forward body biasing to achieve large DC gain at low supply voltages [1]. These techniques require automatic biasing to guarantee robust operation under all conditions and the use of frequency compensation combined with large dimensions needed to bias the transistors in weak inversion severely limits the bandwidth and increases power dissipation. In this paper, we propose a ring-oscillator-based integrator (ROI) that seeks to overcome the limitations of conventional OTA-based integrators.


Archive | 2013

Integrated mems design for manufacturing

Aaron J. Caffee; Brian G. Drost; Emmanuel P. Quevy


Archive | 2012

Digitally programmable high voltage charge pump

Brian G. Drost; Aaron J. Caffee


Archive | 2013

Rotational MEMS resonator for oscillator applications

Aaron J. Caffee; Jeffrey L. Sonntag; Brian G. Drost; Mehrnaz Motiee


Archive | 2015

CALIBRATION OF DIGITAL-TO-TIME CONVERTER

Aaron J. Caffee; Brian G. Drost


Archive | 2014

CLOCK GENERATOR USING FREE-RUNNING OSCILLATOR AND METHOD THEREFOR

Aaron J. Caffee; Brian G. Drost; Hendricus De Ruijter


Archive | 2018

Wide Range Glitchless Switchable Clock Divider With Modified 2/3 Divider Stages

Brian G. Drost


Archive | 2016

Time signal conversion using dual time-based digital-to-analog converters

Aaron J. Caffee; Brian G. Drost; Volodymyr Kratyuk


Archive | 2016

Feedback control system with rising and falling edge detection and correction

Aaron J. Caffee; Brian G. Drost; Vaibhav Karkare


Archive | 2016

***WITHDRAWN PATENT AS PER THE LATEST USPTO WITHDRAWN LIST***Calibration of digital-to-time converter

Aaron J. Caffee; Brian G. Drost

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