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Novel Low-Power OTA using New Block to Eliminate Common-Mode Signal | ||
| International Journal of Industrial Electronics Control and Optimization | ||
| مقاله 10، دوره 9، شماره 1، خرداد 2026، صفحه 111-117 اصل مقاله (597.63 K) | ||
| نوع مقاله: Research Articles | ||
| شناسه دیجیتال (DOI): 10.22111/ieco.2025.50359.1637 | ||
| نویسندگان | ||
| Khalil Monfaredi* ؛ Mousa Yousefi | ||
| Faculty of Engineering, Azarbaijan Shahid Madani University, Tabriz, Iran. | ||
| چکیده | ||
| Objective: In this paper, a trans-conductance amplifier based on Common Mode Rejection Ratio (CMRR) enhancement block is presented. The proposed block is capable of eliminating common mode signals at input stage. This feature improves the gain and CMRR of the amplifier substantially. The Cascode structure is also eliminated in proposed architecture, which resulted in favorably reduced power consumption due to low supply voltage requirements. Materials and Methods: The presented OTA is simulated in 180nm CMOS technology at Cadence Spectre environment with 1.5 v supply voltage proving it appropriate for low-voltage applications. The bias current of the proposed circuit is very low value of 3.9 μA. Results: Gain and phase margin for this block are achieved to be 83.96 dB and 61.68 degree, respectively. These results achieved while the circuit drive a 5pF load at its output. The power consumption of the proposed amplifier is interestingly very low value of 5.9 μW. Conclusion: It is interestingly concluded that the achieved specifications makes the block very much suitable for low-power applications. | ||
| کلیدواژهها | ||
| CMRR Enhancement؛ High gain؛ Low power؛ Trans-conductance amplifier | ||
| مراجع | ||
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[1] M. Akbari, "Single‐stage fully recycling folded cascode OTA for switched‐capacitor circuits," Electronics Letters, vol. 51, no. 13, pp. 977-979, 2015.
[2] P. J. Ilagan Matibag, "Design and test of a CMOS folded cascode OTA with current recycling," Universitat Politècnica de Catalunya, 2024. [3] M. P. Garde, A. Lopez-Martin, R. G. Carvajal, and J. Ramírez-Angulo, "Super class-AB recycling folded cascode OTA," IEEE Journal of Solid-State Circuits, vol. 53, no. 9, pp. 2614-2623, 2018. [4] M. Yavari and M. Mohtashamnia, "A fully-differential improved recycling folded-cascode amplifier for fastsettling switched-capacitor applications," Engineering Science and Technology, an International Journal, vol. 59, p. 101886, 2024. [5] F. Gagliardi, A. Catania, M. Piotto, P. Bruschi, and M. Dei, "Parallel Slew-Rate Enhancer With Current-Recycling Core for Switched-Capacitors Circuits," IEEE Transactions on Circuits and Systems II: Express Briefs, 2024. [6] C. Wu, P. Cai, J. Li, J. Xie, and Z. Luo, "Power-Efficient Recycling Folded Cascode Operational Transconductance Amplifier Based on Nested Local Feedback and Adaptive Biasing," Sensors, vol. 25, no. 8, p. 2523, 2025. [7] M. Alioto, "Understanding DC behavior of subthreshold CMOS logic through closed-form analysis," IEEE Transactions on Circuits and Systems I: Regular Papers, vol. 57, no. 7, pp. 1597-1607, 2010. [8] S. J. Azhari, K. Monfaredi, and H. F. Baghtash, "A novel ultra low power high performance atto-ampere CMOS current mirror with enhanced bandwidth," Journal of Electronic Science and Technology, vol. 8, no. 3, pp. 251- 256, 2010.
[9] X. Zhao, Y. Wang, and L. Dong, "Super current recycling folded cascode amplifier with ultra-high current efficiency," Integration, vol. 62, pp. 322-328, 2018. [10] A. S. Khade, V. Vyas, and M. Sutaone, "Performance enhancement of advanced recycling folded cascode operational transconductance amplifier using an unbalanced biased input stage," Integration, vol. 69, pp. 242-250, 2019. [11] S. Kumaravel and B. Venkataramani, "An improved recycling folded cascode OTA with positive feedback," WSEAS Trans. Circuits Syst, vol. 13, pp. 85-93, 2014. [12] B. Razavi, Design of analog CMOS integrated circuits. McGraw-Hill Higher Education, 2001. [13] K. Monfaredi and Y. Belghisazar, "Improved low voltage low power recycling folded fully differential cascode amplifier," TABRIZ Journal of electrical Engineering, vol. 48, no. 1, pp. 327-334, 2018. [14] R. S. Assaad and J. Silva-Martinez, "The recycling folded cascode: A general enhancement of the folded cascode amplifier," IEEE Journal of Solid-State Circuits, vol. 44, no. 9, pp. 2535-2542, 2009. [15] P. Patra, P. K. Jha, and A. Dutta, "An enhanced recycling folded cascade OTA with a positive feedback," in 2013 IEEE Asia Pacific Conference on Postgraduate Research in Microelectronics and Electronics (PrimeAsia), 2013, pp. 153-157: IEEE. [16] Y. Li, K. Han, X. Tan, N. Yan, and H. Min, "Transconductance enhancement method for operational transconductance amplifiers," Electronics letters, vol. 46, no. 19, pp. 1321-1323, 2010. [17] T. Voo and C. Toumazou, "High-speed current mirror resistive compensation technique," Electronics Letters, vol. 31, no. 4, pp. 248-250, 1995. [18] Z. Yan, P.-I. Mak, and R. P. Martins, "Two stage operational amplifiers: Power and area efficient frequency compensation for driving a wide range of capacitive load," IEEE Circuits and Systems Magazine, vol. 11, no. 1, pp. 26-42, 2011. [19] J. Ramirez-Angulo, A. Lopez-Martin, A. Garimella, L. M. Kalyani-Garimella, and R. Carvajal, "Low-voltage, lowpower rail-to-rail two stage op-amp with dynamic biasing and no Miller compensation," in 2007 50th Midwest Symposium on Circuits and Systems, 2007, pp. 25-28: IEEE. [20] J. Mahattanakul, "Design procedure for two-stage CMOS operational amplifiers employing current buffer," IEEE Transactions on Circuits and Systems II: Express Briefs, vol. 52, no. 11, pp. 766-770, 2005. | ||
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