Wideband Reconfigurable Bandpass-to-Bandstop Filter Based on Embedded Switches on Silicon Technology

This paper proposes a reconfigurable (switchable) bandpass-to-bandstop filter configuration with wideband performances. The suggested configuration is easy to design and implement by just using transmission line sections, avoiding the use of coupled-line stages. The filter is implemented in silicon...

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Published in:2023 53rd European Microwave Conference (EuMC) pp. 174 - 177
Main Authors: Sanchez-Soriano, Miguel A., Allanic, Rozenn, Quendo, Cedric, Le-Berre, Denis, Vasconcellos, Douglas Silva De, Gremal, Virginie, Valente, Damien, Billoue, Jerome
Format: Conference Proceeding
Language:English
Published: European Microwave Association (EuMA) 19-09-2023
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Abstract This paper proposes a reconfigurable (switchable) bandpass-to-bandstop filter configuration with wideband performances. The suggested configuration is easy to design and implement by just using transmission line sections, avoiding the use of coupled-line stages. The filter is implemented in silicon technology by using embedded switches which are co-designed along with the transmission lines, which prevents the parasitic effects from SMD components and facilitates the integration with other subsystems and the system-on-chip (SoC) implementation. When the embedded switches are Off, the bandstop filter state is obtained leading to a fifth-order and very selective response along with a very broad upper passband. When they are turned On, a third-order bandpass filter response is achieved with one transmission zero. The proposed configuration also allows a good design flexibility between states. To validate the concept, a prototype centered at 3.0 GHz has been designed and implemented to present a 3-dB fractional bandwidth of 75% for both states, showing a good agreement between simulations and measurements.
AbstractList This paper proposes a reconfigurable (switchable) bandpass-to-bandstop filter configuration with wideband performances. The suggested configuration is easy to design and implement by just using transmission line sections, avoiding the use of coupled-line stages. The filter is implemented in silicon technology by using embedded switches which are co-designed along with the transmission lines, which prevents the parasitic effects from SMD components and facilitates the integration with other subsystems and the system-on-chip (SoC) implementation. When the embedded switches are Off, the bandstop filter state is obtained leading to a fifth-order and very selective response along with a very broad upper passband. When they are turned On, a third-order bandpass filter response is achieved with one transmission zero. The proposed configuration also allows a good design flexibility between states. To validate the concept, a prototype centered at 3.0 GHz has been designed and implemented to present a 3-dB fractional bandwidth of 75% for both states, showing a good agreement between simulations and measurements.
Author Allanic, Rozenn
Quendo, Cedric
Sanchez-Soriano, Miguel A.
Le-Berre, Denis
Valente, Damien
Vasconcellos, Douglas Silva De
Gremal, Virginie
Billoue, Jerome
Author_xml – sequence: 1
  givenname: Miguel A.
  surname: Sanchez-Soriano
  fullname: Sanchez-Soriano, Miguel A.
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  organization: University of Alicante,Systems Engineering and Signal's Theory,Department of Physics,Spain
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  givenname: Rozenn
  surname: Allanic
  fullname: Allanic, Rozenn
  email: rozenn.allanic@univ-brest.fr
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  givenname: Cedric
  surname: Quendo
  fullname: Quendo, Cedric
  email: cedric.quendo@univ-brest.fr
  organization: Univ Brest,Lab-STICC, CNRS, UMR 6285,France
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  givenname: Denis
  surname: Le-Berre
  fullname: Le-Berre, Denis
  email: denis.le-berre@univ-brest.fr
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  givenname: Douglas Silva De
  surname: Vasconcellos
  fullname: Vasconcellos, Douglas Silva De
  organization: Université de Tours,Laboratoire GREMAN,France
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  givenname: Virginie
  surname: Gremal
  fullname: Gremal, Virginie
  organization: Université de Tours,Laboratoire GREMAN,France
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  givenname: Damien
  surname: Valente
  fullname: Valente, Damien
  organization: Université de Tours,Laboratoire GREMAN,France
– sequence: 8
  givenname: Jerome
  surname: Billoue
  fullname: Billoue, Jerome
  organization: Université de Tours,Laboratoire GREMAN,France
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Snippet This paper proposes a reconfigurable (switchable) bandpass-to-bandstop filter configuration with wideband performances. The suggested configuration is easy to...
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StartPage 174
SubjectTerms Band-pass filters
Co-design
microstrip circuits
Microstrip filters
Power transmission lines
Prototypes
reconfigurable
Silicon
silicon technology
Switches
system-on-chip (SoC)
Transmission line measurements
tunable filters
Title Wideband Reconfigurable Bandpass-to-Bandstop Filter Based on Embedded Switches on Silicon Technology
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