Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components

A recently developed active building block, namely Voltage Differencing Extra X Current Conveyor (VD-EXCCII), is employed in the design of multi input single output (MISO), electronically tunable mixed-mode universal filter. The filter provides low pass (LP), high pass (HP), band pass (BP), band rej...

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Main Authors: Mohammad Faseehuddin, Norbert Herencsar, Musa Ali Albrni, Jahariah Sampe
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/1/55
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spelling doaj-bdb91fd8b5704f37a6d0fd511bda2dd02020-12-24T00:05:19ZengMDPI AGApplied Sciences2076-34172021-12-0111555510.3390/app11010055Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive ComponentsMohammad Faseehuddin0Norbert Herencsar1Musa Ali Albrni2Jahariah Sampe3Faculty of Engineering, Symbiosis Institute of Technology (SIT), Symbiosis International University (SIU), Pune, Maharashtra 412115, IndiaDepartment of Telecommunications, Brno University of Technology, Technicka 3082/12, 616 00 Brno, Czech RepublicLevel 4 MINES Lab UKM, Institute of Microengineering and Nanoelectronics (IMEN), University Kebangsaan Malaysia (UKM), Bangi 43600, Selangor, MalaysiaLevel 4 MINES Lab UKM, Institute of Microengineering and Nanoelectronics (IMEN), University Kebangsaan Malaysia (UKM), Bangi 43600, Selangor, MalaysiaA recently developed active building block, namely Voltage Differencing Extra X Current Conveyor (VD-EXCCII), is employed in the design of multi input single output (MISO), electronically tunable mixed-mode universal filter. The filter provides low pass (LP), high pass (HP), band pass (BP), band reject (BR) and all pass (AP) responses in current-mode (CM), voltage-mode (VM), trans-impedance-mode (TIM) and trans-admittance-mode (TAM). The filter employs a single VD-EXCCII, three resistors and two capacitors. Additionally, a CM single input multi output (SIMO) filter can be derived from the same circuit topology by only adding current output terminals. The attractive features of the filter include: (i) the ability to operate in all four modes, (ii) the tunability of the <i>Q</i> factor independent of pole frequency, (iii) the low output impedance for the VM filter, (iv) the high output impedance current output for CM and TAM filters and (v) no requirement for double/negative input signals (voltage/current) for response realization. The VD-EXCCII and its layout is designed and validated in Cadence Virtuoso using 0.18 µm pdk from Silterra Malaysia with a supply voltage of ±1.25 V. The operation of the filter is examined at the 8.0844 MHz characteristic frequency. A non-ideal parasitic and sensitivity analysis is also carried out to study the effect of process and components spread on the filter performance.https://www.mdpi.com/2076-3417/11/1/55communicationcurrent conveyorcurrent-modemixed-modevoltage-modeuniversal filter
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Faseehuddin
Norbert Herencsar
Musa Ali Albrni
Jahariah Sampe
spellingShingle Mohammad Faseehuddin
Norbert Herencsar
Musa Ali Albrni
Jahariah Sampe
Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components
Applied Sciences
communication
current conveyor
current-mode
mixed-mode
voltage-mode
universal filter
author_facet Mohammad Faseehuddin
Norbert Herencsar
Musa Ali Albrni
Jahariah Sampe
author_sort Mohammad Faseehuddin
title Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components
title_short Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components
title_full Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components
title_fullStr Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components
title_full_unstemmed Electronically Tunable Mixed-Mode Universal Filter Employing a Single Active Block and a Minimum Number of Passive Components
title_sort electronically tunable mixed-mode universal filter employing a single active block and a minimum number of passive components
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-12-01
description A recently developed active building block, namely Voltage Differencing Extra X Current Conveyor (VD-EXCCII), is employed in the design of multi input single output (MISO), electronically tunable mixed-mode universal filter. The filter provides low pass (LP), high pass (HP), band pass (BP), band reject (BR) and all pass (AP) responses in current-mode (CM), voltage-mode (VM), trans-impedance-mode (TIM) and trans-admittance-mode (TAM). The filter employs a single VD-EXCCII, three resistors and two capacitors. Additionally, a CM single input multi output (SIMO) filter can be derived from the same circuit topology by only adding current output terminals. The attractive features of the filter include: (i) the ability to operate in all four modes, (ii) the tunability of the <i>Q</i> factor independent of pole frequency, (iii) the low output impedance for the VM filter, (iv) the high output impedance current output for CM and TAM filters and (v) no requirement for double/negative input signals (voltage/current) for response realization. The VD-EXCCII and its layout is designed and validated in Cadence Virtuoso using 0.18 µm pdk from Silterra Malaysia with a supply voltage of ±1.25 V. The operation of the filter is examined at the 8.0844 MHz characteristic frequency. A non-ideal parasitic and sensitivity analysis is also carried out to study the effect of process and components spread on the filter performance.
topic communication
current conveyor
current-mode
mixed-mode
voltage-mode
universal filter
url https://www.mdpi.com/2076-3417/11/1/55
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