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Design of the radiation-hardened analog processors and signal converters of the sensors systems based on basic structural crystal MH2XA010

Keywords:

O.V. Dvornikov – Dr. Sc. (Eng.), Professor, Main Research Scientist, PLC «Minsk Research Instrument-Making Institute». E-mail: Oleg_dvornikov@tut.by N.N. Prokopenko – Dr. Sc. (Eng.), Professor, Head of Department «Information Systems and Radio Engineering», Don State Technical University (Rostov-on-Don). E-mail: prokopenko@sssu.ru I.V. Pakhomov – Post-graduate Student, Department «Information Systems and Radio Engineering», Don State Technical University (Rostov-on-Don). E-mail: ilyavpakhomov@sssu.ru N.V. Butyrlagin – Post-graduate Student, Department «Information Systems and Radio Engineering», Don State Technical University (Rostov-on-Don). E-mail: nbutyrlagin@mail.ru A.V. Bugakova – Master, Department «Information Systems and Radio Engineering», Don State Technical University (Rostov-on-Don). E-mail: annabugakova.1992@mail.ru


The features of the design of analog devices, communication systems and instrument engineering based on new basic structure crystal (BSC) MH2XA010 are considered. It contains 6 functionally completed IP-modules and matrix of not connected elements. BSC allows to create multi-channel radiation-hardened integrated circuits (ICs) for analog signal processing, including interfaces of sensors systems. IC design in this case is performed at IP blocks level. More than one third of the most common IP-module and active elements used in today\'s analog electronics may be implemented based on the new BSC. Structures of BSC IP-modules, and also the functional schemes of standard active components based on them (classical operational amplifiers, operational amplifiers with the current negative feedback, differential difference amplifiers, transimpedance amplifiers, etc.) are considered. Existence in BSC of rather large number of in advance created active components allows to create the radiation-hardened analog processors of different function including ICs based on operational, differential difference and instrumentation amplifiers, low noise amplifiers and charge sensitive, RC-filters and spectrum limiters, bridge measuring circuits, receivers of differential communication lines, multi-channel active adders of potential signals, piezoelectric acceleration sensors, controlled amplifiers, differential converters of capacity, differential and differential difference amplifiers of currents, converters of photo-sensor elements signals, precision voltage reference, analogue commutators, comparators of ADCs, etc.
References:

 

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