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Realization of Filter/Inverse Filter Topologies Using Single FTFNTA

Published: 16 October 2024 Publication History

Abstract

In this manuscript, two different topologies are presented for the realization of a conventional filter/inverse filter using the Four Terminal Floating Nullor Transconductance Amplifier. The first topology can synthesize the inverse low-pass, inverse high-pass (IHP), and inverse band-pass (IBP) filter with applicable impedance choices. Subsequently, another topology that can synthesize conventional low-pass, and band-pass active filter, as well as inverse high-pass (IHP), and inverse band-pass (IBP) filter from the same circuit topology with a viable solution of impedances as resistor/capacitor. To verify the workability of both topologies, SPICE simulation is performed using 180 nm CMOS TSMC technology.

References

[1]
Tugnait JK Identification and deconvolution of multichannel linear non-Gaussian processes using higher order statistics and inverse filter criteria IEEE Transaction on Signal Processing 1997 45 3 658-672
[2]
Watanabe A Formant estimation method using inverse-filter control IEEE Transaction on Speech and Audio Processing 2001 9 4 317-326
[3]
Kirkeby O and Nelson PA Digital filter design for inversion problems in sound reproduction Journal of the Audio Engineering Society 1999 47 7–8 583-595
[4]
Zhang, Z., Wang, D., Wang, W., Du, H. & Zu, J. (2008). A group of inverse filters based on stabilized solutions of fredholm integral equations of the first kind. In Processing of the IEEE International Instrumentation and Measurement Technology Conference, pp. 668-671.
[5]
Leuciuc A Using nullors for realisation of inverse transfer functions and characteristics Electronics Letter 1997 33 949-951
[6]
Chipipop B and Surakampontorn W Realisation of current mode FTFN-based inverse filter Electronics Letter 1999 35 690-692
[7]
Wang HY and Lee CT Using nullors for realization of current-mode FTFN-based inverse filters Electronics Letter 1999 35 1889-1890
[8]
Abuelma'atti MT Identification of cascadable current-mode filters and inverse-filters using single FTFN Frequenz 2000 54 284-289
[9]
Senani R and Gupta SS Universal voltage-mode/current-mode biquad filter realised with current feedback op-amps Frequenz 1997
[10]
Shah NA and Rather MF Realization of voltage-mode CCII-based all pass filter and its inverse version Indian Journal of Pure and Applied Physics 2006 44 3 269-271
[11]
Shah NA, Quadri M, and Iqbal SZ High output impedance current-mode all pass inverse filter using CDTA Indian Journal of Pure and Applied Physics 2008 46 12 893-896
[12]
Gupta SS, Bhaskar DR, Senani R, and Singh AK Inverse active filters employing CFOAs Electronics Engineering 2009 91 23-26
[13]
Herencsar, N., Lahiri, A., Koton, J., & Vrba, K. (2010). Realization of Second-order inverse active filter using minimum passive components and DDCC. In Processing of 33rd International Conference on Telecommunication and Signal Processing-TSP2010, pp. 38–41.
[14]
Gupta SS, Bhaskar DR, and Senani R New analogue inverse filters realised with current feedback op-amps International Journal of Electronics 2011 98 1103-1113
[15]
Wang HY, Chang SH, Yang TY, and Tsai PY Novel multifunction CFOA-based inverse filter Circuits and Systems 2011 3 14-17
[16]
Garg, K., Bhagat, R., & Jaint, B. A. (2012). Novel multifunction Modified CFOA based inverse filter. In Proceeding of IEEE International. Conference on Power Electronic-IICPE, pp.1–5. .
[17]
Pandey R, Pandey N, Negi T, and Garg V CDBA based universal inverse filter ISRN Electronics 2013
[18]
Nasir AR and Ahmad SN A new current-mode multifunction inverse filter using CDBAs International Journal of Computer Science and Information Security 2013 11 12 50-52
[19]
Patil VN and Sharma RK Novel inverse active filters employing CFOA International journal for Scientific Research & Development 2015 3 359-360
[20]
Sharma A, Kumar A, and Whig P On performance of CDTA based novel analog inverse low pass filter using 0.35μm CMOS parameter International Journal of Science, Technology & Management 2015 4 1 594-601
[21]
Tsukutani T, Sumi Y, and Yabuki N Electronically tunable inverse active filters employing OTAs and grounded capacitors International Journal of Electronics Letter 2016 4 166-176
[22]
Bhaskar DR, Kumar M, and Kumar P Fractional order inverse filters using operational amplifier Analog Integrated Circuit & Signal Processing 2018 97 149-158
[23]
Tsukutani T, Kunugasa Y, and Yabuki N CCII-based inverse active filters with grounded passive components Journal of Electrical Engineering 2018 6 212-215
[24]
Singh K, Gupta A, and Senani R OTRA-based multi-function inverse filter configuration Advances in Electrical and Electronics Engineering 2018 15 846-856
[25]
Kumar P, Pandey N, and Paul SK Realization of resistor less and electronically tunable inverse filters using VDTA Journal of Circuits System & Computers 2018 28 9 1950143
[26]
Bhagat R, Bhaskar DR, and Kumar P Inverse band reject and all pass filter structure employing CMOS CDBAs International Journal of Engineering Research and Technology 2019 8 9 39-44
[27]
Pradhan A and Sharma RK Generation of OTRA-based inverse all pass and inverse band reject filters Proceedings of the National Academy of Science India Section A: Physical Science 2019
[28]
Bhagat R, Bhaskar DR, and Kumar P Multifunction filter/inverse filter configuration employing CMOS CDBAs International Journal of Recent Technology and Engineering 2019 8 4 8844-8853
[29]
Singh R and Prasad D Novel current-mode universal filter using single FTFNTA Indian Journal of Pure & Applied Physics 2020 58 8 599-604
[30]
Tarunkumar H, Singh YS, and Ranjan A An active inductor employing a new four terminal floating nullor transconductance amplifier (FTFNTA) International Journal of Electronics 2020 107 5 683-702

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Information & Contributors

Information

Published In

cover image Wireless Personal Communications: An International Journal
Wireless Personal Communications: An International Journal  Volume 138, Issue 4
Oct 2024
693 pages

Publisher

Kluwer Academic Publishers

United States

Publication History

Published: 16 October 2024
Accepted: 01 October 2024

Author Tags

  1. Active filter
  2. Inverse filter
  3. Four terminal floating nullor
  4. Four terminal floating nullor transconductance amplifier

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