178
Views
36
CrossRef citations to date
0
Altmetric
Original Articles

Inductor implementation using a canonical number of active and passive elements

Pages 317-326 | Received 25 Nov 2006, Accepted 26 Feb 2007, Published online: 05 Apr 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Deepak Agrawal & Sudhanshu Maheshwari. (2020) Electronically tunable grounded immittance simulators using an EX-CCCII. International Journal of Electronics 107:10, pages 1625-1648.
Read now
Firat Yucel & Erkan Yuce. (2016) New highly linear tunable transconductor circuits with low number of MOS transistors. International Journal of Electronics 103:8, pages 1301-1317.
Read now
Shahram Minaei, Izzet Cem Göknar, Merih Yıldız & Erkan Yuce. (2015) Memstor, memstance simulations via a versatile 4-port built with new adder and subtractor circuits. International Journal of Electronics 102:6, pages 911-931.
Read now
Bilgin Metin. (2012) Canonical inductor simulators with grounded capacitors using DCCII. International Journal of Electronics 99:7, pages 1027-1035.
Read now
Fırat Kaçar & Abdullah Yeşil. (2012) FDCCII-based FDNR simulator topologies. International Journal of Electronics 99:2, pages 285-293.
Read now

Articles from other publishers (31)

Yumnam Shantikumar Singh, Ashish Ranjan, Shuma Adhikari & Benjamin A Shimray. (2022) A Modern VDCCTA Active Element and Its Electronic Application. Journal of Circuits, Systems and Computers 32:03.
Crossref
Data Ram Bhaskar, Garima & Pragati Kumar. (2022) Single operational transresistance amplifier‐based grounded resistance‐controlled synthetic inductor configuration. International Journal of Circuit Theory and Applications 50:7, pages 2642-2652.
Crossref
İslombek Mamatov, Yasin Özçelep & Fırat Kaçar. (2022) CNTFET based inductance simulator circuits employing single CFOA and its filter applications. Analog Integrated Circuits and Signal Processing 111:2, pages 235-242.
Crossref
Navnit Kumar, Manjeet Kumar & Neeta Pandey. (2021) Unified floating immittance emulator based on CCTA. Microelectronics Journal 118, pages 105289.
Crossref
Erkan Yuce, Leila Safari, Shahram Minaei, Giuseppe Ferri, Gianluca Barile & Vincenzo Stornelli. (2021) A New Simulated Inductor with Reduced Series Resistor Using a Single VCII±. Electronics 10:14, pages 1693.
Crossref
Leila Safari, Erkan Yuce, Shahram Minaei, Giuseppe Ferri & Vincenzo Stornelli. (2020) A second‐generation voltage conveyor (VCII)–based simulated grounded inductor. International Journal of Circuit Theory and Applications 48:7, pages 1180-1193.
Crossref
Ahmet Abaci & Erkan Yuce. (2019) Single DDCC based new immittance function simulators employing only grounded passive elements and their applications. Microelectronics Journal 83, pages 94-103.
Crossref
Alok Kumar Singh, Pragati Kumar & Raj Senani. (2017) New grounded immittance simulators employing a single CFCC. The Journal of Engineering 2017:8, pages 435-447.
Crossref
Norbert Herencsar & Aslihan Kartci. (2017) Resistorless electronically tunable grounded inductance simulator design. Resistorless electronically tunable grounded inductance simulator design.
Ahmet Abaci & Erkan Yuce. (2017) Modified DVCC based quadrature oscillator and lossless grounded inductor simulator using grounded capacitor(s). AEU - International Journal of Electronics and Communications 76, pages 86-96.
Crossref
Muhammad Taher Abuelma’atti, Sagar Kumar Dhar & Zainulabideen Jamal Khalifa. (2017) New two-CFOA-based floating immittance simulators. Analog Integrated Circuits and Signal Processing 91:3, pages 479-489.
Crossref
Erkan Yuce & Shahram Minaei. (2016) Commercially Available Active Device Based Grounded Inductor Simulator and Universal Filter with Improved Low Frequency Performances. Journal of Circuits, Systems and Computers 26:04, pages 1750052.
Crossref
Jakrawat Budboonchu & Worapong Tangsrirat. (2016) Resistorless floating inductance simulation using CCCTAs. Resistorless floating inductance simulation using CCCTAs.
Halil Alpaslan. (2016) A modified VDVTA and its applications to floating simulators and a quadrature oscillator. Microelectronics Journal 51, pages 1-14.
Crossref
Orapin Channumsin, Jirapun Pimpol, Chanchai Thongsopa & Worapong Tangsrirat. (2015) VDBA-based floating inductance simulator with a grounded capacitor. VDBA-based floating inductance simulator with a grounded capacitor.
Raj Senani, D. R. Bhaskar & A. K. SinghRaj Senani, D. R. Bhaskar & A. K. Singh. 2015. Current Conveyors. Current Conveyors 85 138 .
Shahram Minaei, Merih Yildiz, Izzet Cem Goknar & Erkan Yuce. (2014) Negative impedance inverter and all-pass filter realizations using adder and subtractor blocks. Negative impedance inverter and all-pass filter realizations using adder and subtractor blocks.
Fırat Kaçar, Abdullah Yeşil, Shahram Minaei & Hakan Kuntman. (2014) Positive/negative lossy/lossless grounded inductance simulators employing single VDCC and only two passive elements. AEU - International Journal of Electronics and Communications 68:1, pages 73-78.
Crossref
B. Metin, N. Herencsar & J. Koton. (2013) DCCII based inductance simulator circuit with minimum number of element. DCCII based inductance simulator circuit with minimum number of element.
Muhammad Taher Abuelma’atti. (2011) New grounded immittance function simulators using single current feedback operational amplifier. Analog Integrated Circuits and Signal Processing 71:1, pages 95-100.
Crossref
E. ARSLAN, B. METIN, N. HERENCSAR, J. KOTON, A. MORGUL & O. CICEKOGLU. (2012) High Performance Wideband CMOS CCI and its Application in Inductance Simulator Design. Advances in Electrical and Computer Engineering 12:3, pages 21-26.
Crossref
Indrit Myderrizi, Shahram Minaei & Erkan Yuce. (2011) DXCCII-based grounded inductance simulators and filter applications. Microelectronics Journal 42:9, pages 1074-1081.
Crossref
Muhammed A. Ibrahim, Shahram Minaei, Erkan Yuce, Norbert Herencsar & Jaroslav Koton. (2011) Lossless grounded inductance simulation using only one modified dual output DDCC. Lossless grounded inductance simulation using only one modified dual output DDCC.
Jan Jerabek, Roman Sotner & Kamil Vrba. (2011) Current-mode filters with single-ended and fully-differential Nth-order synthetic elements. Current-mode filters with single-ended and fully-differential Nth-order synthetic elements.
Jan Jerabek & Kamil Vrba. (2011) Design of fully-differential filters with nth-order synthetic elements and comparison with single-ended solution. Design of fully-differential filters with nth-order synthetic elements and comparison with single-ended solution.
Fırat Kaçar & Abdullah Yeşil. (2010) Novel grounded parallel inductance simulators realization using a minimum number of active and passive components. Microelectronics Journal 41:10, pages 632-638.
Crossref
Fırat Kaçar. (2010) New lossless inductance simulators realization using a minimum active and passive components. Microelectronics Journal 41:2-3, pages 109-113.
Crossref
Erkan Yuce & Shahram Minaei. (2009) On the Realization of Simulated Inductors with Reduced Parasitic Impedance Effects. Circuits, Systems, and Signal Processing 28:3, pages 451-465.
Crossref
Erkan Yuce. (2008) Novel lossless and lossy grounded inductor simulators consisting of a canonical number of components. Analog Integrated Circuits and Signal Processing 59:1, pages 77-82.
Crossref
E. Yuce. (2008) Grounded Inductor Simulators With Improved Low-Frequency Performances. IEEE Transactions on Instrumentation and Measurement 57:5, pages 1079-1084.
Crossref
E. Yuce. (2008) Negative Impedance Converter With Reduced Nonideal Gain and Parasitic Impedance Effects. IEEE Transactions on Circuits and Systems I: Regular Papers 55:1, pages 276-283.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.