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Supplier: Richardson RFPD
Description: Richardson RFPD, an Arrow Company, is a specialized electronic component distributor providing design engineers with deep technical expertise and localized global design support for the latest new products from the world's leading suppliers of RF, Wireless, Energy and Power Technologies.
- Gain: 12 dB
- Polarization Type: Linear
- Primary Frequency Range: 757 to 788 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: Richardson RFPD
Description: The MYA UHF yagis are unsurpassed in their price to performance ratio. All models feature rugged 6061-T6 seam less aluminum construction, stainless steel hardware, and through boom mounting of all elements for years of reliable service. Elements are DC grounded to the boom. Select models are
- Gain: 9.2 dB
- Polarization Type: Horizontal Linear, Vertical Linear
- Primary Frequency Range: 420 to 440 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: Richardson RFPD
Description: Our PLC series heavy-duty Yagis are factory assembled and adjusted for easy installation. They feature heavy-wall tubing elements and large rugged machined aluminum blocks for the boom-to-element junctions. Six and ten element models are available.
- Gain: 7.5 dB
- Primary Frequency Range: 450 to 470 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: Richardson RFPD
Description: The BMYD210G has been engineered to meet the requirements of a high gain, broadband, premium quality antenna. This antenna provides 6.5 dBd gain and operates in the 215-225 MHz range. The BMYD210G is manufactured using high strength 6061-T6 Aluminum to withstand heavy ice, high wind
- Gain: 6.5 dB
- Polarization Type: Horizontal Linear, Vertical Linear
- Primary Frequency Range: 215 to 225 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: DigiKey
Description: 850MHz, 900MHz, 1.8GHz, 1.9GHz, 2.1GHz, 2.6GHz GPRS, GSM, LTE, UMTS Yagi RF Antenna 8dBi SMA Male Bracket Mount
- Applications: Broadband Network / WLAN, Cellular / PCS Terminal, Other
- Gain: 8 dB
- Primary Frequency Range: 850 to 2600 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: DigiKey
Description: 460MHz Yagi, 3-Element RF Antenna 450MHz ~ 470MHz 9.2dBi N Type Female Bracket Mount
- Applications: Other
- Gain: 9.2 dB
- Primary Frequency Range: 460 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: DigiKey
Description: 2.45GHz Bluetooth, Wi-Fi Whip, Straight RF Antenna 2.4GHz ~ 2.5GHz 12dBi N Type Female Pole Mount
- Applications: Broadband Network / WLAN, Other
- Gain: 12 dB
- Primary Frequency Range: 2450 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: DigiKey
Description: 2.4GHz WLAN Yagi, 15-Element RF Antenna 2.4GHz ~ 2.483GHz 16dBi SMA Male Bracket Mount
- Applications: Broadband Network / WLAN, Other
- Gain: 16 dB
- Primary Frequency Range: 2400 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: Quarktwin Technology Ltd.
Description: 350MHz Yagi, 6-Element RF Antenna 340MHz ~ 360MHz 10.2dBd N Type Female Bracket Mount
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: L-com, Inc.
Description: The HyperLink HG5817Y-NF-1 radome enclosed yagi antenna features high gain and a 30° beam width. It is ideally suited for directional and multipoint IEEE 802.11a/n WiFi and wireless LAN applications and other systems operating in the 5.8GHz ISM band. The HG5817Y-NF-1 is enclosed
- Gain: 16.5 dB
- Primary Frequency Range: 5800 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: HUBER+SUHNER AG
Description: Features Directional yagi antenna for railway trackside and tunnel applications Gain 14 dBi Configuration SiSo Norms: Railway EN 50125, Railway EN 45545-2
- Gain: 14 dB
- Pattern Type: Directional
- Primary Frequency Range: 2400 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: RS Components, Ltd.
Description: Supported Frequency Bands = 2400 - 2700 MHz, 5150 - 5975 MHz Connector Type = SMA Antenna Type = Yagi Series = SENCITY� Spot-S
- Applications: Broadband Network / WLAN
- Form Factor: External
- Primary Frequency Range: 2400 to 5975 MHz
- Technology Type: Yagi or Yagi-Uda Array
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Supplier: Comtelco Industries, Inc.
Description: YAGI 12-ELEMENT ENCLOSED FEED 10dBd 1710-1880MHz PIGTAIL "N" FEMALE TERMINATION
- Form Factor: External, Stationary / Fixed
- Gain: 10 to 12 dB
- Pattern Type: Directional
- Polarization Type: Horizontal Linear, Vertical Linear
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Supplier: TACO Communications Inc.
Description: Delhi Antenna Products is a leader in the consumer antenna market with quality products and high gain at a competitive price! Engineered for reliability and ease of installation, our antennas work with digital and analogue reception so you have more channels to view. The DELHI
- Applications: TV / Radio Broadcasting, Other
- Form Factor: External
- Gain: 10 dB
- Pattern Type: Directional
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Supplier: AvaLAN Wireless Systems, Inc.
Description: High RF output power provides maximum foliage or wall penetration. 2.5 dBi gain perpendicular to antenna Rubber-coated and flexible Swivel mount
- Applications: Broadband Network / WLAN
- Form Factor: External
- Gain: 2.5 dB
- Operating Temperature: -40 to 158 F
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Supplier: Lone Star Electronics Co.
Description: 3-element Yagi antenna
- Form Factor: External
- Gain: 7 dB
- Pattern Type: Directional
- Primary Frequency Range: 30 to 50 MHz
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Supplier: KP Performance Antennas
Description: The KP Performance KP-960SPY9 880 MHz to 960 MHz Yagi Antenna is designed for the most rugged conditions and ships the same day. Equipped with an N-Female connector, coaxial connections to a radio are simple and easy. This 900 MHz antenna provides 9 dBi of gain and adjustable
- Applications: Cellular / PCS Base Station, Broadband Network / WLAN
- Form Factor: External, Stationary / Fixed
- Gain: 9 dB
- Meets Military / Aerospace Specifications: Yes
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Supplier: Ubiquiti Networks, Inc.
Description: -gain array antenna that delivers high performance in the 900 MHz radio band. Long-Range Deployments The airMAX® Yagi Antenna performs at ultra-long ranges in Non-Line-of-Sight (NLOS) applications. Industrial-Strength Construction airMAX® Antennas are designed
- Applications: Broadband Network / WLAN
- Form Factor: Stationary / Fixed
- Pattern Type: Directional
- Primary Frequency Range: 900 MHz
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2011 Index IEEE Antennas and Wireless Propagation Letters Vol. 10
Nature-Inspired Optimization of High-Impedance Metasurfaces With Ultra- small Interwoven Unit Cells . Bayraktar, Z., +, LAWP 2011 1563-1566 Reflector antenna feeds Elliptically Shaped Quad -Ridge Horn Antennas as Feed for a Reflector. … de Villiers, D. I. L., +, LAWP 2011 947-950 Reflector antennas A Compact Yagi –Uda Antenna With … Topa, T., +, LAWP 2011 480-483 Axisymmetric Resonant Lens Antenna With Improved Directivity in Ka- Band .
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Antenna Theory: Analysis and Design 3rd Edition Complete Document
A helical antenna operating in the normal mode is sometimes used as a monopole antenna for mobile cell and cordless telephones, and it is usually covered with a plastic cover. In general, the helix is a popular communication antenna in the VHF and UHF bands . The Yagi -Uda antenna is primarily an array of linear dipoles with one element serving as the … A special case is the quad antenna which is very popular amongst ham radio operators.
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Modern Antenna Design 2nd Edition Complete Document
… helix antenna, 507 Long wire antennas, 481 Longitudinal waveguide slot, 273 Loop antenna, 49, 218, 260 Alford, 261 cubic quad , 495 ferrite, 260 parasitic … … 263 small, 49, 260 Yagi -Uda, 495 Loss tangent … … 286, 299 Microstrip patch antenna , 285 aperture fed, 306 … … 249 Wire frame model, 73 Woodward line source synthesis, 162 – 164 Wrap angle, spiral, 528, 544 Yagi – Uda antennas, 485 – 497 dipole, 486 multiple feed, 492 optimized over band , 488 resonant loop, 495 Yee’s cell , 78 Zero sampling for …
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2012 Index IEEE Transactions on Antennas and Propagation Vol. 60
Qin, P.-Y., +, TAP Feb. 2012 516-528 A Reconfigurable Antenna for Quad - Band Mobile Handset Applications. Dual Linearly-Polarized Unit- Cells With Nearly 2-Bit Resolution For Re- flectarray Applications In X-Band. Frequency Switchable Printed Yagi -Uda Dipole Sub-Array for Base Station Antennas.
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Table of Contents
A General Method for Modeling Packaged Diode Spanning Multiple Cells in FDTD ........................................ Novel F-Shaped Quad - Band Printed Slot Antenna for WLAN and WiMAX MIMO Systems ............................... Systematic Design of Parasitic Element Antennas—Application to a WLAN Yagi Design ..................................
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Global Mobile Satellite Communications
QPSK (CTPSK), 127 QPSK, 123 Quad -Helix Array Antenna , 196 Quadrature Amplitude Modulation, 120 Quadrature PSK, 120 Quadrifilar Helix Antenna, 186 Quality of Service (QoS), 160, 167-170, 235 Quantizing, 119 … from the Earth’s Surface, 255-256 Reflection Multipath, 256 Refraction, 247 Regenerative Fuel Cells , 445, 456 Regenerative … … Space Environment, 57 Space Segment, 57-106 Space Shuttle, 73 Spacecraft C/L-L/C- band Antenna, 99 Spacecraft … Yagi -Uda Crossed-Dipole Array, 195 Yoshinobu H-II, 75 .
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2011 Index IEEE Transactions on Microwave Theory and Techniques Vol. 59
Compact Ultra-Wideband (UWB) Bandpass Filter With Ultra-Narrow Dual- and Quad -Notched Bands . An Autonomous Wireless Sensor Node Incorporating a Solar Cell Antenna for Energy Harvesting. Yagi -Uda antennas .
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Design and Performance of the Autonomous Data Acquisition System for the ARIANNA High Energy Neutrino Detector
In the new studies, a large amplitude, short-duration (about 1 ns FWHM) electrical pulse from a Pockel Cell Driver was trans- mitted vertically downward and the delayed reflected pulse was observed by a receiver antenna . as a function of frequency (2011 data) and linear fit (solid line) compared to previously published data using two different types of antenna, Yagi and Seavey quad ridge horn. The dashed curves compare data to previously published results at specified frequencies within the band .
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http://calhoun.nps.edu/public/bitstream/handle/10945/27480/researchsummaries05.pdf?sequence=1
Michael, S., “A High Efficiency Advanced Quad -Junction Solar Cell Model, Designed and Optimized Using the SILVACO/ATLAS Software Package,” Twenty-Third AIAA International Communications Satellite Systems Conference, Rome, Italy, 25-29 September 2005. Morgan, M.A., “Optimization of a Wide- Band Impulse Array Antenna Using Hallén’s Time-Domain Integral Equation and the Particle Swarm Optimization Algorithm,” Naval Surface Warfare Center, Dahlgren Progress Report, 5 July 2005. … Array Design Part 1 - Particle-Swarm Optimization with Application to a 3-Element Yagi Array,” Naval …
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2010 Combined Author Index IEEE Industry Applications Society Publications
… 2797-2802 Goossens, Kees, see Molnos, Anca, OPTIM May 2010 870-876 Gopalakrishnan, S., see Naidu, M., TIA March-April 2010 841-848 Gorbachev, Anatoly Petrovich, Kibirev, Oleg Olegovich, and Churkin, Vadim Sergeevich, A modified broad- band planar quasi- Yagi antenna ; SIBIRCON Quad -inverter config- uration for multi-phase multi-level AC motor drives; SIBIRCON July 2010 631-638 … … power control by the modular multilevel cascade converter based on double-star chopper- cells (MMCC-DSCC); ECCE …
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