Title :
0°-360° wide range digital phase shifters for large array antenna systems
Author :
Yarman, Binboga Siddik
Author_Institution :
STFA Savronik Defense Electron. Co., Istanbul, Turkey
Abstract :
Four different circuit configurations are proposed for designing 0°-360° wide-range, low-loss, loss-balanced phase shifters. Each configuration utilizes three p-i-n diodes. As a consequence of this work construction of 180° phase shifting cells for multibit phase-array antenna systems using three p-i-n diodes has been simplified. Operation of the new circuits is based on the phase shifting properties of symmetric low/high-pass three-element LC ladders. Assuming the utilization of lossless p-i-n diodes and ideal reactive elements, explicit design equations are presented. A numerical method, which includes the diode losses as well as component parasitics, is described for designing practical phase shifters with minimum balanced loss at a given operating frequency. Examples are included to exhibit the use of explicit design formulas, and computer simulations are performed to analyze the loss and phase characteristics of the new circuits. It is expected that the new configurations will find application in the commercial and military large-array antenna systems over the EHF band to be implemented as microwave monolithic integrated circuits
Keywords :
MMIC; antenna phased arrays; ladder networks; p-i-n diodes; phase shifters; EHF band; array antenna systems; component parasitics; computer simulations; digital phase shifters; diode losses; microwave monolithic integrated circuits; minimum balanced loss; multibit phase-array antenna; numerical method; p-i-n diodes; phase characteristics; reactive elements; three-element LC ladders; Application software; Circuits; Computer simulation; Equations; Frequency; Military computing; P-i-n diodes; Performance analysis; Phase shifters; Phased arrays;
Conference_Titel :
Circuits and Systems, 1990., IEEE International Symposium on
Conference_Location :
New Orleans, LA
DOI :
10.1109/ISCAS.1990.112421