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Jul 01, 2001 TECHNICAL FEATURE A Ka-band Planar Printed Antipodal Linearly-tapered Slot Antenna A Ka-band (27 to 32 GHz) planar antipodal linearly-tapered slot antenna (ALTSA) is designed, fabricated and measured. The numerical simulation was performed by 3D finite-element method (FEM). The printed ALTSA has been realized by using an RT/Duroid printed circuit. In this paper, a miniaturized coplanar waveguide fed (CPW-fed) tapered slot antenna (TSA) is introduced for breast cancer detection. Here, a modified CPW to slot-line transition structure with an air-bridge is employed to broaden the transition bandwidth and increase the radiation efficiency. Through these applied modifications, negative features of the original TSA (limitation of transition.
- A coplanar waveguide fed notch band antenna is proposed in this paper to notch WLAN operating band. A tapered step ground with notched circular patch is used in the proposed antenna design to get notch band characteristics. Half wavelength slits are introduced inside the tapered slot ground and in the circular patch respectively. An FR4 substrate.
- The antenna is fed by a novel tapered coplanar waveguide (CPW) to coplanar stripline (CPS) transition feed.
- In this paper, we present a new coplanar waveguide-fed tapered ring slot antenna for ultrawideband (UWB) applications. This antenna consists of a 50 Ω coplanar waveguide feeding line, wideband.
- Introduces the proposed antenna design steps. Designing the symmetric tapered slot antenna, designing the asymmetric coplanar slot line, designing the CPW to CPS transition, adding rolled back elongated arm and the corrugated structures, etching air cavities inside the substrates and studying the effect of.
- A nonplanar linearly tapered slot antenna (LTSA) has been fabricated and tested at frequencies from 8 to 32 GHz. The LTSA is excited by a broadband balanced microstrip transformer. The measured results include the input return loss as well as the radiation pattern of the antenna. SUBJECT TERMS.
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Abstract
Proposed is a novel method to improve the bandwidth of a coplanar waveguide (CPW) fed tapered slot antenna (TSA) using a stub with multi-transformation characteristics for ultra-wideband applications. By inserting multipaths inside a conventional circular slotline open stub, the necessary condition for multi-transformation characteristics for bandwidth enhancement is fulfilled. To verify this characteristic, the equivalent models of TSAs including the stub are presented, and the performance of each TSA is experimentally demonstrated.
Identifiers
Tapered Slot Antenna Coplanar Waveguide Table
journal ISSN : | 0013-5194 |
DOI | 10.1049/el.2010.1624 |
Tapered Slot Antenna Coplanar Waveguide Calculator
Authors
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Kim, H.
- Samsung Adv. Inst. of Technol., Yongin, South Korea
Jung, C.W.
- Grad. Sch. of NID Fusion Technol., Seoul Nat. Univ. of Technol., Seoul, South Korea
Keywords
slot antennasantenna feedscoplanar waveguide componentsultrawideband applicationsbandwidth enhancementCPW fed tapered slot antennacoplanar waveguide
Hallmark casino bonus. slot antennasantenna feedscoplanar waveguide componentsultrawideband applicationsbandwidth enhancementCPW fed tapered slot antennacoplanar waveguide