Reference

[1] D. Kim, B. Goldstein, W. Tang, F. Sigworth and E. Culurciello, "Noise Analysis and Performance Comparison of Low Current Measurement Systems for Biomedical Applications" IEEE Trans. Biomed. Circuits Syst., vol. 1, no. 1, pp. 52-61, 2013.

[2] C. Enz, G. Temes, "Circuit Techniques for Reducing the Effects of Op-Amp Imperfections : Autozeroing , Correlated Double Sampling , and Chopper Stabilization" Proceedings of the IEEE (1996), Volume: 84, Issue: 11, Pages: 1584-1614.

[3] Hogervorst, R., Tero, J. P., Huijsing, J. H. (1994). A Compact Power-Efficient 3 V CMOS Rail-to-Rail Input/Output Operational Amplifier for VLSI Cell Libraries. IEEE Journal of Solid-State Circuits, 29(12), 1505-1513.

[4] Sakurai, S., Ismail, M. (1996). Robust Design of Rail-to-Rail CMOS Operational Amplifiers for a Low Power Supply Voltage, 31(2), 146-156.

[5] Redman-white, W. (1997). Rail-to-Rail CMOS Input Circuit and its Application to Analog Cells for Low Voltage VLSI Systems, 32(5), 701-712.

[6] Carrillo, J. M., Duque-Carrillo, J. F., Torelli, G., J. Ausin, J. L. (2003). Constant-gm constant-slew-rate high-bandwidth low-voltage rail-to-rail CMOS input stage for VLSI cell libraries. IEEE Journal of Solid-State Circuits, 38(8), 1364-1372.



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