Title :
Light-controlled transducer with pulse width modulated output based on non-equilibrium metal oxide semiconductor capacitors
Author :
Malik, O. ; De la Hidalga-W, F.J.
Author_Institution :
Dept. of Electron., INAOE, Puebla, Mexico
Abstract :
A novel conception of practical applications of non-equilibrium processes in illuminated metal-oxide-semiconductor capacitors is presented. It is shown that the time dependent variations of the displacement current in such capacitors, biased in strong inversion condition by a functional voltage generator, is the basis of the new transducers. Triangular or sawtooth voltage waveforms supplied by a generator together with a dc voltage bias are used in the processing circuit containing a semiconductor capacitor as the sensitive optical transducer. The main advantages of these proposed low-cost transducers is the direct pulse width modulated (PWM) output electric signal, with a duty that can change from 2 to 98% under microwatts´ variations of the incident light intensity. This transducer does not need an A/D converter, which may be important for several applications, such as automatic control, robotic, feedback electronic systems, and non-contact optical position sensing for nulling and centering measurements. The operating principles, mathematical modeling and experimental results of this novel transducer are considered in detail in this work.
Keywords :
MOS capacitors; pulse width modulation; transducers; centering measurement; displacement current; functional voltage generator; incident light intensity; light-controlled transducer; non-equilibrium metal oxide semiconductor capacitors; nulling measurement; pulse width modulated output; sensitive optical transducer; strong inversion condition; Capacitors; Logic gates; MOS capacitors; Optical sensors; Pulse width modulation; Substrates; Transducers; metal-oxide semiconductor capacitor; non-equilibrium processes; pulse width modulation output; strong inversion; transducer;
Conference_Titel :
Electrical Engineering Computing Science and Automatic Control (CCE), 2010 7th International Conference on
Conference_Location :
Tuxtla Gutierrez
Print_ISBN :
978-1-4244-7312-0
DOI :
10.1109/ICEEE.2010.5608591