2014
DOI: 10.1109/lawp.2014.2325033
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Low-Profile Substrate Integrated Dielectric Resonator Antenna Implemented With PCB Process

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Cited by 56 publications
(23 citation statements)
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“…The antenna element is mainly composed of two parts: an SIDR and a feeding SIW. The SIDR is integrated in the top Rogers RT6010 (ε r1 = 10.2, tanδ = 0.0031 at 10 GHz, thickness h 1 = 0.635 mm) substrate using the perforation technique with S 1 ≥ λ 0 /10 and S 2 ≥ λ 0 /10 (λ 0 is the wavelength at center frequency in free space) [19]. The end-shorted feeding SIW is constructed in the bottom Rogers RT5880 substrate (ε r2 = 2.2, tanδ = 0.0013 at 10 GHz, thickness h 2 = 0.254 mm) supporting the dominant mode of TE 10 within the antenna operating bandwidth.…”
Section: Design Of the Antenna Elementmentioning
confidence: 99%
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“…The antenna element is mainly composed of two parts: an SIDR and a feeding SIW. The SIDR is integrated in the top Rogers RT6010 (ε r1 = 10.2, tanδ = 0.0031 at 10 GHz, thickness h 1 = 0.635 mm) substrate using the perforation technique with S 1 ≥ λ 0 /10 and S 2 ≥ λ 0 /10 (λ 0 is the wavelength at center frequency in free space) [19]. The end-shorted feeding SIW is constructed in the bottom Rogers RT5880 substrate (ε r2 = 2.2, tanδ = 0.0013 at 10 GHz, thickness h 2 = 0.254 mm) supporting the dominant mode of TE 10 within the antenna operating bandwidth.…”
Section: Design Of the Antenna Elementmentioning
confidence: 99%
“…, S 1 , and S 2 ) can be obtained from the method of references [19,20]. Then, these parameters along with L s and W s are optimized by using HFSS for good matching and high radiation performance.…”
Section: Design Of the Antenna Elementmentioning
confidence: 99%
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“…As the DRA is an effective radiator in high frequency because of low loss, it has drawn keen attention to the researchers working in this specific area. The collected literature is sequentially discussed in this section and the overall summary of this section is illustrated in Table . However, as per volume of articles, these are differentiated as work done prior to 2010 as well as 2010 onward.…”
Section: Dras For Millimeter‐wave Communicationmentioning
confidence: 99%
“…The UC‐EBG fed aperture coupled DRA has been designed for millimeter applications followed by low‐profile cube‐shaped DRA operating at 60 GHz, EBG DRA with reduced back radiation and DRA for system in package millimeter wave transmitter purpose over 14% impedance bandwidth covering (56.5 GHz‐to‐65 GHz) . An SIW fed low profile DR‐antenna has been used in PCB process followed by substrate integrated DR‐antenna using two‐layer PCB applicable for millimeter‐wave applications with 12% impedance BW near 35 GHz …”
Section: Dras For Millimeter‐wave Communicationmentioning
confidence: 99%