Low-cost realization of ISM band pass filters using integrated combline structures

Author(s):  
Mi-Hyun Son ◽  
Sung-Soo Lee ◽  
Yong-Jun Kim
Keyword(s):  
Low Cost ◽  
Ism Band ◽  
2021 ◽  
pp. 359-367
Author(s):  
Kirti Kumar Yadav ◽  
Tanvi Joshi ◽  
Kartik Patidar ◽  
Dinesh Yadav

2014 ◽  
Vol 2014 ◽  
pp. 1-9 ◽  
Author(s):  
Fang Zhang ◽  
Xin Liu ◽  
Fan-Yi Meng ◽  
Qun Wu ◽  
Jong-Chul Lee ◽  
...  

This paper presents a compact planar rectenna with high conversion efficiency in the ISM band. The proposed rectenna is developed by the decomposing of a planar rectenna topology into two functional parts and then recombining the two parts into a new topology to make the rectenna size reduction. The operation mechanism of the antenna and rectifying circuit in the proposed novel topology is explained and the design methodology is presented in detail. The proposed topology not only reduces the rectenna design cycle time but also leads to easy realization at the required frequency ranges with a very low cost. For validation, a 2.45 GHz rectenna system is designed and measured to show their microwave performances.


Author(s):  
S.R. Gilbert ◽  
R. Parker ◽  
M.K. Small ◽  
U.B. Koelle ◽  
J.D. Larson ◽  
...  
Keyword(s):  
Low Cost ◽  

Sensors ◽  
2018 ◽  
Vol 18 (12) ◽  
pp. 4140
Author(s):  
Maoxiang Hou ◽  
Jun He ◽  
Xizhen Xu ◽  
Ziliang Li ◽  
Zhe Zhang ◽  
...  

We propose and demonstrate a cascaded hollow-core fiber (HCF) device for multi-parameter sensing based on the combination of antiresonant reflecting guidance (ARRG) and Mach-Zender interference (MZI). The device was fabricated by splicing two sections of HCF together. Two sets of fringes, which have different free spectral ranges, were generated from ARRG and MZI, respectively, and were aliasing in the transmission spectrum. The two sets of fringes were then separated using a band pass filter and a Gaussian fitting technique. The wavelengths at two transmission loss dips formed by ARRG and MZI exhibit a temperature sensitivity of 14.1 and 28.5 pm/°C, and a strain sensitivity of 0.4 and −0.8 pm/με, respectively. By using a crossing matrix with differences sensitivities, the cross-sensitivity between temperature and strain can be solved. The gas pressure response of the cascaded HCF device was also tested up to 300 °C, and linear relationships between the gas pressure sensitivities and temperature were found, which can be used in gas pressure application in various temperatures. Moreover, the proposed cascaded HCF sensor is compact, low cost, and simple for fabrication, and hence offers a promising way for the simultaneous measurement of multiple parameters, such as temperature, strain, and gas pressure.


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