Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Andranik K. Hayrapetyan"'
Autor:
Hayk Grigoryan, Armen A. Martirosyan, Vazgen Melikyan, Cjsc Synopsys Armenia, Yerevan, Armenia, Hayk V. Margaryan, Andranik K. Hayrapetyan, Hakob T. Kostanyan
Publikováno v:
Proceedings of Universities. Electronics. 24:248-256
Autor:
Harutyun Azatyan, Sergo Harutyunyan, Grigor Hovsepyan, Armen Stepanyan, Andranik K. Hayrapetyan, Hrayr Sahakyan
Publikováno v:
2020 IEEE 40th International Conference on Electronics and Nanotechnology (ELNANO).
A Low Dropout Voltage Regulator with a higher than supply output voltage is designed and implemented using SAED 14nm finFET technology. A feedback system is added to detect changes in the load line and adjust the drivability of the regulator via cont
Autor:
Harutyun T. Kostanyan, Gegham A. Petrosyan, Arman S. Petrosyan, Hakob T. Kostanyan, Andranik K. Hayrapetyan, Davit K. Marukhyan
Publikováno v:
2019 IEEE 39th International Conference on Electronics and Nanotechnology (ELNANO).
A novel approach for design and simulation method of 5V wide supply voltage bandgap reference circuit for automotive application is presented. The main concept of proposal is to scale down the 5V external source by additional voltage converter and us
Autor:
Vagaen Sh. Melikyan, Bagrat E. Baghramyan, Arman S. Trdatyan, Anush Z. Ramazyan, Artur Kh. Mkhitaryan, Shavarsh Melikyan, Andranik K. Hayrapetyan, Ara E. Mkrtchyan
Publikováno v:
EWDTS
Calibration of receiver and transmitter input/output resistances is very imperative for high-speed link standards such as Peripheral Component Interconnect (PCI), Universal Serial Bus (USB), X Attachment Unit Interface (XAUI) etc. As the interface sp
Autor:
Nune H. Beglaryan, Vardan P. Grigoryants, Zaven M. Avetisyan, Andranik K. Hayrapetyan, Simon H. Gharibyan, Artur Kh. Mkhitaryan, Vazgen Melikyan, Gegham A. Petrosyan
Publikováno v:
EWDTS
Low power, area efficient clocked comparator with high resolution was designed in SAED 32/28nm CMOS process for SAR ADC applications. The analog comparator is based on digital cells, hence doesn't have stability issues, mismatches induced by the diff
Autor:
Shavarsh V. Melikyan, Zaven M. Avetisyan, Artur A. Petrosyan, Andranik K. Hayrapetyan, Artur Kh. Mkhitaryan, Vazgen Melikyan
Publikováno v:
2018 IEEE 38th International Conference on Electronics and Nanotechnology (ELNANO).
This paper proposes a method of voltage overshoot correction during the load switching-off in the integrated circuits (ICs) where the negative feedback voltage regulators are used. Method uses fictive dynamic load to compensate the fast switching-off