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TANAPHATSIRI, C. KHATEB, F. ŠOTNER, R. JAIKLA, W.
Original Title
Gain-Controllable Transadmittance-Mode First-Order Allpass Filters with Electronic Tune Using Single Active Element
Type
journal article in Web of Science
Language
English
Original Abstract
First-order allpass filters are analog filters with a unit magnitude response, but they change the phase shift between input and output signals at various frequencies. This paper presents the transadmittance-mode first-order allpass filters based on the modified current-controlled current differencing transconductance amplifier (M-CCCDTA). The proposed filters utilize a single M-CCCDTA and a grounded capacitor with no external resistors, making them well suited for implementation in an integrated circuit. The gain and phase response of the proposed filters can be adjusted electronically and separately. Also, the high output impedance of the proposed filters at both the input voltage node and the output current node makes cascading easy without the need for buffer devices. A quadrature sinusoidal oscillator based on the proposed first-order allpass filter has been designed as an example of an application. The PSpice simulation and actual experiments are utilized to validate the functionality of the proposed filters. The simulation and experimental results are consistent with the idea of anticipation.
Keywords
Transadmittance mode; M-CCCDTA; allpass filter; phase shifter; integrated circuit; analog circuit
Authors
TANAPHATSIRI, C.; KHATEB, F.; ŠOTNER, R.; JAIKLA, W.
Released
1. 2. 2024
Publisher
WORLD SCIENTIFIC PUBL CO PTE LTD
Location
SINGAPORE
ISBN
1793-6454
Periodical
JOURNAL OF CIRCUITS SYSTEMS AND COMPUTERS
Year of study
33
Number
3
State
Republic of Singapore
Pages from
1
Pages to
23
Pages count
URL
https://doi.org/10.1142/S0218126624500464
BibTex
@article{BUT184516, author="Chaiya {Tanaphatsiri} and Fabian {Khateb} and Roman {Šotner} and Winai {Jaikla}", title="Gain-Controllable Transadmittance-Mode First-Order Allpass Filters with Electronic Tune Using Single Active Element", journal="JOURNAL OF CIRCUITS SYSTEMS AND COMPUTERS", year="2024", volume="33", number="3", pages="1--23", doi="10.1142/S0218126624500464", issn="1793-6454", url="https://doi.org/10.1142/S0218126624500464" }