Design of ferroelectric phase shifters for minimum performance variation over temperature

Dongsu Kim, Sang-Soo Je, J. Kenney, P. Marry
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引用次数: 11

Abstract

This paper investigates design techniques for continuously variable ferroelectric phase shifters to minimize their performance variations over temperature. Various compositions of barium strontium titanate (BST) thin films on sapphire substrates were characterized in the temperature range of 0/spl deg/C-80/spl deg/C to assess their change in capacitance and tenability. It was found that a minimum capacitance variation (C/sub max//C/sub min/) of around 1.17 could be obtained using a Ba/Sr ratio of 1.2 and (Ba+Sr)/Ti ratio of 0.8. Based on this composition, all-pass network phase shifters were designed using 2 /spl mu/m- and 4 /spl mu/m-spaced interdigital capacitors (IDCs). In the case of the phase shifter with 2 /spl mu/m-spaced IDC, a phase shift of more than 100/spl deg/ was obtained over a 40 V bias range at 2.4 GHz. The loss figure-of-merit (FOM) of the phase shifter was held to 62.5/spl deg//dB /spl plusmn/ 2.5/spl deg//dB from 10/spl deg/C to 75/spl deg/C. The variation of a phase shift was held to only 4/spl deg/ in the temperature range of 10/spl deg/C-50/spl deg/C.
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温度变化最小的铁电移相器设计
本文研究了连续可变铁电移相器的设计技术,以尽量减少其性能随温度的变化。在0/spl℃~ 80/spl℃的温度范围内,对蓝宝石衬底上不同成分的钛酸锶钡(BST)薄膜进行了表征,以评估其电容和可持续性的变化。当Ba/Sr比为1.2,(Ba+Sr)/Ti比为0.8时,电容变化最小(C/sub max//C/sub min/)约为1.17。在此基础上,采用2 /spl mu/m和4 /spl mu/m间距的数字间电容(idc)设计了全通网络移相器。对于具有2 /spl μ /m间距IDC的移相器,在2.4 GHz的40 V偏置范围内获得了超过100/spl度/的相移。相移器的损耗值(FOM)在10/spl°C到75/spl°C范围内保持在62.5/spl°//dB /spl plusmn/ 2.5/spl°//dB。在10/spl°C-50/spl°C的温度范围内,相移的变化仅为4/spl°C。
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