TY - GEN
T1 - New Gm-C first-order all-pass and amplitude equalizer circuit
AU - Kamath, Vaishnavi D.
AU - Bhandary, Shreya R.
AU - Soubhagyaseetha, N.
AU - Kamath, Dattaguru V.
N1 - Publisher Copyright:
© 2022 IEEE.
PY - 2022
Y1 - 2022
N2 - In this work, a general OTA-based two-admittance voltage-mode (VM) circuit arrangement is explored to derive new 1st-order all-pass (AP) and amplitude equalizer (AE) filters. The proposed filter circuits are attractive as they use only grounded capacitors. The proposed circuits require single Operational Transcondcutance Amplifier (OTA), single dual output OTA (DO-OTA) and one grounded capacitor. The non-ideality analysis of first-order Gm-C AP and AE are discussed. The results obtained by simulating Gm-C filters realized with CMOS OTA circuits using LTspice have been given.
AB - In this work, a general OTA-based two-admittance voltage-mode (VM) circuit arrangement is explored to derive new 1st-order all-pass (AP) and amplitude equalizer (AE) filters. The proposed filter circuits are attractive as they use only grounded capacitors. The proposed circuits require single Operational Transcondcutance Amplifier (OTA), single dual output OTA (DO-OTA) and one grounded capacitor. The non-ideality analysis of first-order Gm-C AP and AE are discussed. The results obtained by simulating Gm-C filters realized with CMOS OTA circuits using LTspice have been given.
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U2 - 10.1109/MysuruCon55714.2022.9972537
DO - 10.1109/MysuruCon55714.2022.9972537
M3 - Conference contribution
AN - SCOPUS:85145357110
T3 - MysuruCon 2022 - 2022 IEEE 2nd Mysore Sub Section International Conference
BT - MysuruCon 2022 - 2022 IEEE 2nd Mysore Sub Section International Conference
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2nd IEEE Mysore Sub Section International Conference, MysuruCon 2022
Y2 - 16 October 2022 through 17 October 2022
ER -