Junwei YU, Shengxi DIAO. Design of a reconfigurable active filter chip[J]. Journal of East China Normal University(Natural Science), 2022, 2022(2): 143-154.
LEWINSKI A J, SILVA-MARTINEZ J. A 30-MHz fifth-order elliptic low-pass CMOS filter with 65-dB spurious-free dynamic range. IEEE Transactions on Circuit and Systems I: Regular Papers, 2007, 54 (3): 469- 480.
doi: 10.1109/TCSI.2006.887635
2
LAXMINIDHI T, PRASADU V, PAVAN S. Widely programmable high-frequency active RC filters in CMOS technology. IEEE Transactions on Circuit and Systems I: Regular Papers, 2009, 56 (2): 469- 480.
3
BEG P, MAHESHWARI S, SIDDIQI M A. Digitally controlled fully differential voltage- and transadmittance-mode biquadratic filter. IET Circuits, Devices & Systems, 2013, 7 (4): 193- 203.
SCHAUMANN R, VALKENBURG M E V. Design of Analog Filters [M]. New York: Oxford University Press, 2001.
7
RAY S, HELLA M M. A 10 Gb/s inductorless AGC amplifier With 40 dB linear variable gain control in 0.13 μm CMOS. IEEE Journal of Solid-State Circuit, 2016, 51 (2): 440- 456.
doi: 10.1109/JSSC.2015.2496782
8
NAUTA B. A CMOS Transconductance-C filter technique for very high frequencies. IEEE Journal of Solid-State Circuit, 1992, 27 (2): 142- 153.
doi: 10.1109/4.127337
9
REZAEI F. Adaptive gm3 cancellation linearisation and its application to wide-tunable Gm-C filter design . IET Circuits, Devices & Systems, 2017, 11 (5): 478- 486.
10
CROMBEZ P, CRANINCKX J, STEYAERT M. A 100kHz-20MHz reconfigurable nauta Gm-C biquad low-pass filter in 0.13 μm CMOS [C]// IEEE Asian Solid-State Circuits Conference. IEEE, 2007: 444-447.
11
CROMBEZ P, CRANINCKX J, STEYAERT M. A linearity and power efficient design strategy for architecture optimization of Gm-C biquadratic filters [C]// 2007 Ph. D Research in Microelectronics and Electronics Conference. IEEE, 2007: 229-232. DOI: 10.1109/RME.2007.4401854.