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CMOS Realization of VDVTA and OTA Based Fully Electronically Tunable First Order All Pass Filter with Optimum Linearity at Low Supply Voltage ± 0.85 V

DOI: 10.4236/cs.2020.114004, PP. 39-49

Keywords: Operational Transconductance Amplifier (OTA), Voltage Differencing Trans-conductance Amplifier (VDVTA), CMOS Technology

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Abstract:

This paper presents a new first order all pass filter configurations. The proposed all pass filter configuration employs two configurations namely VDVTA and OTAs based first order all pass filter configuration. The first proposed configuration employs a single VDVTA and one grounded capacitor whereas the second proposed configuration employs two OTAs and one grounded capacitor. Both types of proposed configurations are fully electronically tunable and their quality factors do not depend on tunable pole frequency range. The reported configurations yield low active and passive sensitivities and also have low power consumption with very low supply voltage ± 0.85 V with Bias Voltage ± 0.50 V. The PSPICE simulation of the proposed VDVTA and two OTAs based first order all pass filter configurations are verified using 0.18 μm CMOS Technology Process Parameters.

References

[1]  Iamarejin, A., Maneewan, S., Suwanjan, W.P. and Jaikla, W. (2013) Current-Mode Current Gain First-Order All Pass Filter Employing CFTAs. Przeglad Elektrotechniczny, 89, 187-190.
[2]  Maneewan, S., Udorn, N., Dungmalai, D. and Silapanp, J.W. (2014) A Voltage-Mode First Order All Pass Filter Based on VDTA. Advance in Electrical and Electronic Engineering, 12, 40-46.
https://doi.org/10.15598/aeee.v12i1.846
[3]  Maheshwari, S. (2007) Voltage-Mode All-Pass Filters Including Minimum Component Count Circuits. Active and Passive Electronic Component, 2007, Article ID: 79159.
[4]  Mohan, J., Maheshwari, S. and Chauhan, D.S. (2015) Voltage-Mode Cascadable All-Pass Section Using Single Active Element and Grounded Passive Component. Circuits and Systems, 1, 5-11.
https://doi.org/10.4236/cs.2010.11002
[5]  Singh, G., Prasad, D. and Bhaskar, D.R. (2015) Single VDVTA Based Voltage-Mode Biquad Filter. Circuit and System, 6, 55-59.
https://doi.org/10.4236/cs.2015.63006
[6]  Singh, S.V., Maheshwari, S. and Chauhan, D.S. (2011) Single MO-CCCCTA-Based Electronically Tunable Current/Trans-Impedance-Mode Biquad Universal Filter. Circuit and System, 2, 1-6.
https://doi.org/10.4236/cs.2011.21001
[7]  Maheshwari, S., Singh, S.V. and Chauhan, D.S. (2011) Electronically Tunable Low Voltage Mixed-Mode Universal Biquad Filter. IET Circuits, Devices and Systems, 5, 149-158.
https://doi.org/10.1049/iet-cds.2010.0061
[8]  Kumngern, K. and Torteanchai, U. (2011) Current-Tunable Current-Mode All-Pass Section Using DDCC. International Conference on Electronic Devices, Systems, and Applications, Kuala Lumpur, 25-27 April 2011, 217-220.
https://doi.org/10.1109/ICEDSA.2011.5959038
[9]  Tsukutani, T., Tsukutani, H., Sumi, Y. and Yabuki, N. (2010) Electronically Tunable First-Order All Pass Section Using OTAs. Computer Applications and Industrial Electronics (ICCAIE 2010), Kuala Lumpur, 5-7 December 2010, 548-511.
https://doi.org/10.1109/ICCAIE.2010.5735141
[10]  Tangsrirat, W., Tanjaroen, W. and Pukkalanum, T. (2009) Current-Mode Multi Phase Sinusoidal Oscillator Using CDTA-Based All Pass Sections. International Journal of Electronics and Communications, 63, 616-622.
https://doi.org/10.1016/j.aeue.2008.05.001
[11]  Herencsar, N., Minaei, S., Koton, J., Yuce, E. and Vrba, K. (2012) New Resistorless and Electronically Tunable Realization of Dual-Output VM All-Pass Filter Using VDIBA. Analog Integrated Circuits and Signal Processing, 74, 141-154.
https://doi.org/10.1007/s10470-012-9936-2
[12]  Mohan, J. and Maheshwari, S. (2013) Cascadable Current-Mode First Order All-Pass Filter Based on Minimal Components. The Scientific Word Journal, 2013, Article ID: 859784.
https://doi.org/10.1155/2013/859784
[13]  Herencsar, N., Koton, J., Jerabek, J., Vrba, K. and Cicekoglu, O. (2011) Voltage-Mode All-Pass Filters Using Universal Voltage Conveyor and MOSFET-Based Electronic Resistors. Radioengineering, 20, 10-18.
[14]  Mohan, J., Maheshwari, S. and Chauhan, D.S. (2010) Voltage Mode Cascadable All-Pass Sections Using Single Active Element and Grounded Passive Components. Circuits and Systems, 1, 5-11.
https://doi.org/10.4236/cs.2010.11002
[15]  Tsukutani, T., Tsunetsugu, H., Sumi, Y. and Yabuki, N. (2010) Electronically Tunable First-Order All-Pass Circuit Employing DVCC and OTA. International Journal of Electronics, 97, 285-293.
https://doi.org/10.1080/00207210903289409
[16]  Minaei, S. and Yuce, E. (2010) Novel Voltage-Mode All-Pass Filter Based on Using DVCCs. Circuits, Systems, and Signal Processing, 29, 391-402.
https://doi.org/10.1007/s00034-010-9150-3
[17]  Minaei, S. and Cicekoglu, O. (2006) A Resistorless Realization of the First-Order All-Pass Filter. International Journal of Electronics, 93, 177-183.
https://doi.org/10.1080/00207210600562173
[18]  Maheshwari, S. (2008) High Input Impedance Voltage-Mode First-Order All-Pass Sections. International Journal of Circuit Theory and Applications, 36, 511-522.
https://doi.org/10.1002/cta.452
[19]  Minaei, S. and Yuce, E. (2010) Unity/Variable-Gain Voltage-Mode/Current-Mode First-Order All-Pass Filters Using Single Dual-X Second-Generation Current Conveyor. IETE Journal of Research, 56, 305-312.
https://doi.org/10.1080/03772063.2010.10876319
[20]  Biolek, D. and Biolkova, V. (2010) First-Order Voltage-Mode All-Pass Filter Employing One Active Element and One Grounded Capacitor. Analog Integrated Circuits and Signal Processing, 65, 123-129.
https://doi.org/10.1007/s10470-009-9435-2
[21]  Metin, B. and Cicekoglu, O. (2009) Component Reduced All-Pass Filter with a Grounded Capacitor and High-Impedance Input. International Journal of Electronics, 96, 445-455.
https://doi.org/10.1080/00207210802640595
[22]  Singh, G. (2018) Realization of Grounded Inductor Based Band Pass Filter Design to Achieve Optimum Linearity with Bandwidth Using Single VDVTA. International Journal of Science, Technology and Management, 7, 37-43.
[23]  Beg, P., Siddiqi, M.A. and Ansari, M.S. (2011) Multi Output Filter and Four Phase Sinusoidal Oscillator Using CMOS DX-MOCCII. International Journal of Electronics, 98, 1185-1198.
https://doi.org/10.1080/00207217.2011.582451
[24]  Kacar, F. and Yesil, A. (2012) FDCCII Based Electronically Tunable Voltage Mode Biquad Filter. International Journal of Circuit Theory and Application, 40, 377-383.
[25]  Pandey, R., Pandey, N., Negi, T. and Garg, V. (2013) CDBA Based Universal Inverse Filter. ISRN Electronics, 2013, Article ID: 181869.
https://doi.org/10.1155/2013/181869

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