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Super Wideband Spherical Antenna for Omnidirectional Communication

标题
Spherical Monopole Antenna
详细技术说明
None
*Abstract

3-Dimensional Antenna Improves Efficiency and Reduces Manufacturing Costs

This spherical monopole antenna with a tapered feeding line improves wireless data transmission quality. Antennas are used in a variety of devices, from surveillance to health monitoring systems. Although planar monopole antennas show good bandwidth performance, they suffer from loss of data (lossiness) in signals received and distortion in the signals transmitted. Available 3-D super wideband antennas (SWB) provide better omnidirectional signals, but are expensive to manufacture. Researchers at the University of Florida have developed a 3-dimensional wideband antenna capable of transmitting and receiving high quality data that is inexpensive to manufacture. This antenna can be applied in nearly any wireless data device or system, and is positioned to capture a large portion of the $31 billion telecommunications market.

APPLICATIONS

Super wideband antenna with improved wireless signal transmission and reduced manufacturing costs

ADVANTAGES

  • Fabricated using a polyurethane mold, reducing the manufacturing costs
  • 3D multidirectional design ensures a high-quality, omnidirectional signal
  • Adjustable diameter of conductive sphere, enlarging frequency cutoff range

TECHNOLOGY

This spherical super wideband (SWB) monopole antenna consists of a conductive sphere as a main radiator, a tapered feeding line and a polyurethane mold. The diameter of the conductive sphere can be adjusted to determine the low frequency cutoff. The 3D tapered feeding line is fabricated using polyurethane and multidirectional UV lithography. Using the tapered feeding line between the coaxial and the sphere greatly enlarges the upper cutoff. By enlarging both the upper and lower cutoff ranges, UF researchers have created an SWB antenna that provides a better omnidirectional radiation pattern with low cost.
*IP Publication Date
Dec 22, 2016
*Principal Investigation

Name: Yong Yoon

Department:


Name: Cheolbok Kim

Department:


Name: Jong Kyu Kim

Department:

申请日期
Dec 30, 2015
其他
国家/地区
美国

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