R. Sotner Et Al. , "Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit," Microelectronics Journal , vol.86, pp.114-129, 2019
Sotner, R. Et Al. 2019. Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit. Microelectronics Journal , vol.86 , 114-129.
Sotner, R., Jerabek, J., ÖZAKIN, A., Domansky, O., Herencsar, N., Kledrowetz, V., ... ALAGÖZ, B. B.(2019). Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit. Microelectronics Journal , vol.86, 114-129.
Sotner, Roman Et Al. "Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit," Microelectronics Journal , vol.86, 114-129, 2019
Sotner, Roman Et Al. "Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit." Microelectronics Journal , vol.86, pp.114-129, 2019
Sotner, R. Et Al. (2019) . "Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit." Microelectronics Journal , vol.86, pp.114-129.
@article{article, author={Roman Sotner Et Al. }, title={Electronically reconfigurable two-path fractional-order PI/D controller employing constant phase blocks based on bilinear segments using CMOS modified current differencing unit}, journal={Microelectronics Journal}, year=2019, pages={114-129} }