987 resultados para Printed strip monopole antenna


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Printed blank for arrival of goods by Great Western Railway at St. Catharines, Nov. 18 [1876].

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Printed blank from Frank Pearce and Co. regarding charges for shipping of the porcelain cask, Oct. 26, 1876.

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Printed blank from Grand Trunk Railway for shipping to St. Catharines from Buffalo for table, 1888.

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Printed Blank of an Orderly Officer’s Report signed by J.P. Bradley, Lieutenant of the Royal Quebec Volunteers.

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Map (printed) of the Shipman Tract in the Town of St. Catharines, 38 cm. x 48 cm., April 1846.

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Map (printed) of Bellevue near Niagara Falls, New York, 48 cm. x 60 cm. There some staining and the map has been taped on the back. This does not affect the item. There is an illustration of the Suspension Bridge at Bellevue at the bottom of the page, 1847.

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Map (printed) of the state of Missouri issued by the State Board of Immigration (50 cm. x 58 cm.), n.d.

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Map (printed) of Canada and the northern United States 40 cm. x 54 cm. presented to subscribers of the Globe, Toronto, March 1857

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Affiche de projet terminal, baccalauréat en Urbanisme. Institut d'urbanisme, Université de Montréal.

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A dual-port microstrip antenna with a crescent shaped patch with excellent isolation betwecn the ports has been reportcd [I]. Since circular-sided geometries are inore compact than rectangular oncs, thcy find morc applications in microstrip arrays. The crcscent shaped antenna geometry [ I ] provides greater area rcductioii compared to other circular sided patches for broadband operation [2]. In this Lctter, formulac for calculating thc TM, I and TMZI mode resonant frequencies of this microstrip antenna, obtained by modifying the equations of a standard circular patch [3] are presentcd. Thcorctical results are compared with experimental observations aid the validity of the computation is established.

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The arrow shaped microstrip antenna, which produces dual frequency dual polarisation operation with considera-ble size reduction compared to conventional patches has been reported [I]. These antennas provide greater area reduction and improved gain compared to drum shaped patches [2]. Prediction of the resonance frequency of drum shaped patches [3] and circular patches for broadband operation [4] are available in the literature. In this Letter, we propose empirical formulas for calculating the resonance frequencies of the arrow shaped microstrip antenna. These antennas can be employed for obtaining dual frequency with the same polarisation, bandwidth enhancement, circular polarisation etc. by varying its different parameters or by introducing slots. The proposed design equations provide an easier and simple way of predicting the resonant frequencies of these patches.

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A new microstrip antenna geometry with considerable reduction in size, with similar radiation characteristics to those of an equivalent rectangular patch antenna is proposed. A relationship has been suggested for fmding out the resonant frequency of the new geometry, and its validity has been established by the experimental results. Without increasing the aperture area, this geometry also offers a facility for considerably reducing the resonant frequency compared to conventional patches.