Title :
A wide dynamic range self-biased fully differential operational amplifier for micro mechanical sensors and actuators circuitry
Author :
Abdelmoneum, Mohamed ; Duarte, David E. ; Taylor, Greg
Author_Institution :
Intel Archit. Group, Intel Corp., Hillsboro, OR, USA
Abstract :
An all-new, self-biased, wide-range, high gain, fully differential folded cascode operational amplifier topology for interfacing with capacitive Micro Electro-Mechanical (MEMS) actuators interfaces designed in 45 nm technology is presented. The proposed topology shows seamless scalability across different technology nodes and low sensitivity to Vt & Le process variations. The designed amplifier is the first of its kind in the literature and is the first attempt to develop circuit interfaces for high impedance MEMS actuators on any advanced process technology. A new self-bias mechanism is used to limit the amplifier biasing requirements, eliminating the need of any additional bias circuitry. The amplifier average differential gain is about 35dB across process corners and across a 110°C temperature range.
Keywords :
microactuators; microsensors; operational amplifiers; actuator circuitry; additional bias circuitry; amplifier average differential gain; amplifier biasing requirement; capacitive microelectromechanical actuator; circuit interface; fully differential folded cascode operational amplifier topology; high impedance MEMS actuator; micromechanical sensor; process corner; process variation; seamless scalability; self bias mechanism; wide dynamic range self biased fully differential operational amplifier;
Conference_Titel :
Sensors, 2010 IEEE
Conference_Location :
Kona, HI
Print_ISBN :
978-1-4244-8170-5
Electronic_ISBN :
1930-0395
DOI :
10.1109/ICSENS.2010.5690386