Detail publikace

Design of Novel CMOS DCCII with Reduced Parasitics and its All-Pass Filter Applications

ARSLAN, E. PAL, K. HERENCSÁR, N. METIN, B.

Originální název

Design of Novel CMOS DCCII with Reduced Parasitics and its All-Pass Filter Applications

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

angličtina

Originální abstrakt

In this paper, a novel translinear loop based, high performance Complementary Metal-Oxide-Semiconductor (CMOS) second-generation differential current conveyor (DCCII) is introduced. By using super source follower transistors, very low equivalent impedances are obtained at input terminals xn and xp. In addition, new voltage-mode (VM) and current-mode (CM) first-order all-pass filters (APFs) are proposed to highlight the performance of the designed CMOS DCCII. The designed CMOS implementation is simulated with HSpice using AMS 0.35 µm real process parameters. It consumes only 1.3 mW power with using +/- 1.25 V power supply voltages. The simulation results of the proposed CMOS DCII circuit and the experimental results for designed VM APF are in very good agreement with the theoretical ones.

Klíčová slova

Analog signal processing, all-pass filter, current-mode, voltage-mode, DCCII, reduced parasitic, super source follower, translinear loop

Autoři

ARSLAN, E.; PAL, K.; HERENCSÁR, N.; METIN, B.

Vydáno

19. 12. 2016

Nakladatel

Kaunas University of Technology

ISSN

1392-1215

Periodikum

Elektronika Ir Elektrotechnika

Ročník

22

Číslo

6

Stát

Litevská republika

Strany od

46

Strany do

50

Strany počet

5

URL

Plný text v Digitální knihovně

BibTex

@article{BUT128291,
  author="Emre {Arslan} and Kirat {Pal} and Norbert {Herencsár} and Bilgin {Metin}",
  title="Design of Novel CMOS DCCII with Reduced Parasitics and its All-Pass Filter Applications",
  journal="Elektronika Ir Elektrotechnika",
  year="2016",
  volume="22",
  number="6",
  pages="46--50",
  doi="10.5755/j01.eie.22.6.17222",
  issn="1392-1215",
  url="https://eejournal.ktu.lt/index.php/elt/article/view/17222"
}