50-Gb/s silicon modulator using 250-µm-Long phase shifter based-on forward-biased pin diodes

Author(s):  
S. Akiyama ◽  
T. Baba ◽  
M. Imai ◽  
T. Akagawa ◽  
M. Noguchi ◽  
...  
2021 ◽  
Vol 7 (1) ◽  
pp. 54-62
Author(s):  
Yu. Pasternak ◽  
E. Ishchenko ◽  
V. Pendyurin ◽  
S. Fedorov

Active metamaterials usage is one of the most promising ways to control the characteristics of antennas, waveguides, and other microwave devices. This article proposes the controlled metamaterial design in the form of an electromagnetic crystal with switches located at the nodes of the crystal lattice. This metamaterial application for changing the fundamental mode phase of the WR-137 waveguide is investigated. Controlling the characteristics of the metamaterial is performed by switching pin diodes at the nodes of the lattice, so this control method allows you to achieve a high speed system, as well as to switch only certain pin diodes. Electrodynamic modeling was carried out, on the basis of which the characteristics of the waveguide were obtained for different metamaterial closed nodes combination, which changes the the electromagnetic wave phase.


2021 ◽  
Vol 2021 ◽  
pp. 1-9
Author(s):  
Biswarup Rana ◽  
In-Gon Lee ◽  
Ic-Pyo Hong

In this paper, an electronically reconfigurable polarization converter unit cell operating at X-band is proposed. The polarization converter unit cell consists of a passive patch, a phase shifter, and an active patch. There are two PIN diodes on the active patch. By switching the bias conditions of those PIN diodes, an electronically reconfigurable polarization converter is conceived. Both the passive and active patches are circular, and there are circular types of slots on both patches to enhance the operating bandwidth. To compensate for the capacitance introduced by PIN diodes, an equivalent capacitance structure is introduced on the active patch. 2 × 2 unit cells are designed to check the performance of the unit cell for polarization conversion applications. In addition, a novel type of experimental characterization technique is proposed to check the performance of polarization conversion using 2 × 2 unit cells. Two WR-90 waveguide sections, two rectangular to square sections, and a power supply are taken for the measurements. The rectangular to square waveguide transition section is designed in such a way so that 2 × 2 unit cells can be perfectly adjusted on the transition section and the performance of the 2 × 2 unit cells can be measured. The simulation results of the 8 × 8 array are also added to a miniaturized X-band horn antenna to check the performance of the overall array.


2015 ◽  
Vol 23 (26) ◽  
pp. 32950 ◽  
Author(s):  
Takeshi Baba ◽  
Suguru Akiyama ◽  
Masahiko Imai ◽  
Tatsuya Usuki
Keyword(s):  

Frequenz ◽  
2015 ◽  
Vol 69 (9-10) ◽  
Author(s):  
Badar Muneer ◽  
Zhu Qi ◽  
Shanjia Xu

AbstractA new idea of Substrate integrated waveguide (SIW) based digital phase shifter by controlling the transverse slots etched over the top metallic surface of SIW is proposed. A PIN diode is mounted on each transverse slot. Slots are made “enabled” or “disabled” by switching the state of PIN diode. A detailed explanation and demonstration is presented in this paper. As a result, a digital four bit phase shifter can be realized. Furthermore, equivalent circuit model for proposed device has also been discussed. Insertion loss is as low as 1.5 dB for a wide bandwidth of 31% (6.75–9.25 GHz), with a phase imbalance of ±4° and amplitude imbalance of ±0.5 dB. Simulation results agree well with the measured results.


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