1-Bit Reconfigurable Unit Cell for Ka-Band Transmitarrays

This letter presents an electronically reconfigurable, linearly polarized unit cell for transmitarray applications in Ka-band. A 1-bit phase resolution (namely with two phase states 0 ° and 180 °) is obtained using two p-i-n diodes mounted on a slot-loaded patch antenna. The design, realization, and...

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Published inIEEE antennas and wireless propagation letters Vol. 15; pp. 560 - 563
Main Authors Di Palma, Luca, Clemente, Antonio, Dussopt, Laurent, Sauleau, Ronan, Potier, Patrick, Pouliguen, Philippe
Format Journal Article
LanguageEnglish
Published New York IEEE 2016
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Institute of Electrical and Electronics Engineers
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Abstract This letter presents an electronically reconfigurable, linearly polarized unit cell for transmitarray applications in Ka-band. A 1-bit phase resolution (namely with two phase states 0 ° and 180 °) is obtained using two p-i-n diodes mounted on a slot-loaded patch antenna. The design, realization, and experimental characterization in a standard waveguide simulator are reported. The measured insertion losses only reach 1.09 and 1.29 dB for the two-phase states, respectively, with a 3-dB transmission bandwidth of about 11.2%.
AbstractList This letter presents an electronically reconfigurable, linearly polarized unit cell for transmitarray applications in Ka-band. A 1-bit phase resolution (namely with two phase states 0 ° and 180 °) is obtained using two p-i-n diodes mounted on a slot-loaded patch antenna. The design, realization, and experimental characterization in a standard waveguide simulator are reported. The measured insertion losses only reach 1.09 and 1.29 dB for the two-phase states, respectively, with a 3-dB transmission bandwidth of about 11.2%
This letter presents an electronically reconfigurable, linearly polarized unit cell for transmitarray applications in Ka-band. A 1-bit phase resolution (namely with two phase states 0[Formula Omitted] and 180[Formula Omitted]) is obtained using two p-i-n diodes mounted on a slot-loaded patch antenna. The design, realization, and experimental characterization in a standard waveguide simulator are reported. The measured insertion losses only reach 1.09 and 1.29 dB for the two-phase states, respectively, with a 3-dB transmission bandwidth of about 11.2%.
This letter presents an electronically reconfigurable, linearly polarized unit cell for transmitarray applications in Ka-band. A 1-bit phase resolution (namely with two phase states 0$ logical or circ$ and 180$ logical or circ$ ) is obtained using two p-i-n diodes mounted on a slot-loaded patch antenna. The design, realization, and experimental characterization in a standard waveguide simulator are reported. The measured insertion losses only reach 1.09 and 1.29 dB for the two-phase states, respectively, with a 3-dB transmission bandwidth of about 11.2%.
Author Di Palma, Luca
Sauleau, Ronan
Potier, Patrick
Pouliguen, Philippe
Clemente, Antonio
Dussopt, Laurent
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  surname: Pouliguen
  fullname: Pouliguen, Philippe
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Keywords p-i-n diodes
reconfigurable antenna
slot-loaded patch antenna
beam-steering
discrete lens
Transmitting antennas
Ka-band transmitarrays
Frequency measurement
microstrip antenna arrays
standard waveguide simulator
Beamforming
transmitarray
phase resolution
Bandwidth
Insertion loss
Propagation losses
slot antenna arrays
Scattering parameters
linear polarized unit cell
Antennas
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SubjectTerms Antennas
Bandwidth
beam-steering
Beamforming
Computer Science
Design standards
Diodes
discrete lens
Electronics
Engineering Sciences
Frequency measurement
Insertion loss
Networking and Internet Architecture
P-i-n diodes
Patch antennas
Propagation losses
reconfigurable antenna
Scattering parameters
Simulation
transmitarray
Two phase
Unit cell
Title 1-Bit Reconfigurable Unit Cell for Ka-Band Transmitarrays
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