Biconic Antennas
attenna conductors are flared into two cones diametrically opposed, sharing a common axis and vertex.
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Horn Antennas
Broadband antennas, compared to half wave dipoles, reduce test time because the technician did not have to stop the test to adjust the dipole antenna for each frequency. Most compliance standards now require the use of such antennas. The latest version of Mil-Std 461E states the used of broadband double ridge guide horn antenna as the antenna of choice for frequencies above 200 MHz.
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EMF Measurements Antennas
An isotropic antenna that allows to carry out radiated emission and environment exposure measurement (elettrosmog) to the radio frequencies in proximity of radio and television stations and repeaters for mobile telephone.
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Frequency and Timing System for ESAs Deep Space Antennas DSA1&2
TimeTech Frequency and Timing System for ESAs Deep Space Antennas DSA1&2
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Antennas
an·ten·na ex·per·tise 1. the expert skill and know-how gained from designing and building thousands of antennas including many that have become industry standards 2. having the knowledge to answer questions others haven't thought to ask
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Antenna Testing Services
Our chamber measures 28' x 14' x 14' with 12" to 36" pyramidal anechoic absorbers and is fully shielded using a dual layer metal enclosure. Our test chamber is designed to for frequencies ranging from .700 to 6.00 GHz.
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Antennas for EMC testing
The Laplace antennas cover 3 main groups...*Conventional log periodic types for OATS applications.*Miniature antennas for chamber and small enclosure applications.*Large loop antenna for EN55015 compliance testing.
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AIS Antennas
Built with quality elements to provide excellent range and reception, our AIS antennas allow for effective and reliable exchange of data with other ships, AIS base stations, and satellites.
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Antenna, Octave Band Horn
EM-7021 | 2 GHz – 5 GHz
Electro-Metrics offers three horn antennas, each covering an octave bandwidth from 1 to 10 GHz. The horns are individually calibrated and can be used for either receiving or transmitting applications. They are especially suited to radiated immunity testing and can be used to generate fields in excess of 200 Volts/meter. All three horns feature type “N” connectors and exhibit low VSWR to ensure compatibility with power amplifiers.
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Standard Gain Horn Antennas
Linear polarized Broadband Horn Antenna (Brass with Plastic mounting body) for Receive and Transmit Applications.
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Antennas
A specialized transducer that converts electric current into electromagnetic (EM) waves or vice versa.
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Bilogical Antenna
For rapid deployment along with the mobility of small package, these Bilogical Antenna Kits provides an inexpensive solution to broadband applications. Suitable for FCC, MIL-STD, VDE, TEMPEST, and immunity testing, each Bilogical antenna will provide reliable, repeatable measurements. The ability to sweep in one trace makes the Bilogical antenna a versatile performer.
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Rectangular Horn Antennas
SAGE Millimeter wave rectangular gain horns, also called pyramidal gain horns, are offered as both standard and custom models with a rectangular waveguide interface. The pyramidal gain horns only support linear polarization. With a calibrated gain chart, these horns can be used to measure the gain of other antennas by comparing the generated signal levels of both. For this reason, these horns are also referred to as standard gain horns. The listed models offer 23 dB nominal gain, 10/11 degrees typical half power beamwidth and 14 dB/30 dB typical side lobe levels at the center frequency of the band. These horns cover full waveguide bandwidths within the frequency range of 8.2 to 170 GHz. In addition to the models listed below, models with 10, 15, 20 and 25 dB gain and other frequency bands are also available.
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5G Active Antenna Innovator’s Kit
AWMF-0129
The AWMF-0129 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0108 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0108, the antenna provides +50dBmi output power while consuming just 12W DC power in the RF circuits and has achieved Gb/s data rates in OTA trials. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWMF-0129 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.
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Millimeter Wave Antenna Testing
If you are involved in antenna or system level design using mmWave or THz frequencies, then you understand the importance of dependable testing equipment. It may be that you are designing passive phase array or that you are designing a mmWave radar sensor system, but when it comes to validation of your design, simulation can only bring you so far. Phased array antennas have to be measured over the air (OTA) to ensure the radiation pattern of your design efficiently conducts energy in the right direction which is where the MilliBox comes in.
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Conical Horn Antennas
Conical gain horns are offered as both standard and custom models with either a circular or rectangular waveguide interface. While conical gain horns with a rectangular waveguide interface can only support linear polarization, models with a circular waveguide interface can support various polarization types including horizontal, vertical, left-handed circular, and right-handed circular polarization for broader applications. The listed models operate across the full waveguide band and offer 23 dB nominal gain, 12 degrees typical half power beamwidth, a 24 dB typical side lobe level and 1.15:1 VSWR at center frequency. The below standard offering covers the frequency range of 8.5 to 140 GHz. However, other frequencies and standard models with 10, 15, 20 and 25 dB gain are also available.
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256-Element Active Antenna Innovator’s Kit
AWA-0142
The AWA-0142 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0135 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0135, the antenna provides +60dBmi (1000 W) of EIRP. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWA-0142 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.
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2D Antenna Pattern Measurements
The world's top antenna manufacturers utilize MET Labs for 2D Antenna Pattern Measurements to compare an antenna's real-world performance versus its theoretical performance
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Antenna, Tactical, Log Periodic
EM-6942 | 400 MHz – 4 GHz
The EM-6942 is designed for harsh environmental conditions and its folding elements and 2-section design simplifies transport and storage. The antenna can be mounted on a tripod or any ¼-20 mount and be positioned for horizontal or vertical polarization.
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Adjustable Dipole Antenna
SNA600a
The SNA600 antenna is a versatile tool for use with wireless microphone receivers or IFB transmitters. The center frequency of its 100 MHz bandwidth is tunable from 550 to 800 MHz. The frequency is set by adjusting the dipole elements using the scale printed on the body of the antenna. The elements fold for storage.
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Antenna Measurement Software
Raymond RF's Antenna Measurement Software performs 2-D (polar/rectangular) and 3-D (spherical) antenna pattern measurements for passive antennas and active wireless mobile stations (cell phones). Insertion loss of passive devices is included as part of the calibration component. Data management and reporting of antenna properties such as half power beam-width, directivity, gain, radiation efficiency, total radiated power, and total isotropic sensitivity. AMS performs and reports all measurements required by the CTIA Over-the-Air Performance Test Plan.
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Antennas
Specialist antennas for signal intelligence, radiomonitoring and super resolution direction finding.
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Dipole Antenna
ZOJ7-20-100-1399
Dipole Antenna, Frequency 20~100MHz, Gain-7dBi, VSWR 3.5, Linear Polarization, N Type Female
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FLAT Antennas
CTG recently developed a new paradigm in linearly-polarized antennas called the Flat Lens Antenna Technology or ‘FLAT’. These antennas have directivities similar to conventional dual-ridge antennas, but in a much lighter and “flatter” package. They can be used as a direct replacement for conventional horns for a wide variety of applications. They are made using composites technology so are also rugged and are ideal for both indoor and out-door applications.
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Antenna, Pyramidal Horn
EM-6119 | 1.7 GHz – 1.9 GHz
The EM-6119 Pyramidal Horn Antenna is specifically designed for operation in the PCS and DCS bands (1700 MHz to 1900 MHz). Over this frequency range this antenna exhibits a typical gain of 10 dBi, and provides an excellent match with typical VSWR of <1.2:1. This antenna is useful in transmitting as well as receiving signals in this band.
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Fixed LEO/MEO Antenna Systems
Kratos Defense & Security Solutions, Inc.
Kratos Low Earth Orbit (LEO) and Medium Earth Orbit (MEO) antennas antennas are precision engineered to provide stable, high throughput links to LEO and MEO constellations. Designed to work in open air without a radome, they provide a high pointing accuracy with low backlash, controlled by Kratos’ NGC2 Controller.
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S-Band Planar Antennas with 8 dBi Gain
LS-08-PS
The Lumistar LS-08-PS S-Band Planar Antenna is the ideal companion to the LS-25/27/28 Series Receivers to provide a low cost receiving system with extremely high performance. This small, lightweight antenna is available in various polarizations. The Standard version offers the quickest delivery, but other versions including ones with Polarization Diversity. Combining (dual linear with ±45 slant range) is also available.
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TEV Antenna
TEV sensor is a partial discharge sensor whose working principle is based on a direct Capacitive coupling with a Switchgears earthed metal case. The two ends of TEV sensor can be coupled magnetically to virtually any opening on a metal Surface. It picks up the electric signal given by PD activity onto the two metallic surfaces. Thanks to its special design has high sensitivity, larger than other single ended TEV sensors. His compact and robust design (passive sensor) makes the TEV the optimal sensor for direct installation on medium voltage Switchgears.
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Antenna Beamforming
Learn more on antenna beamforming.Learn more on Antenna Beamforming at Precision website here.
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Discone Antenna
ZPZ7-30-500-1184
Discone Antenna,Frequency 30~500MHz, Gain-3dBi, VSWR 2.5, Vertical Polarization, N-Female
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Antenna and Component Testing
Alpha Omega Electromagnetics, L.L.C.
We extensively test and characterize our antennas and related RF components to ensure they meet and exceed required performance parameters as well as our customer expectations. Antennas and active and passive RF components are characterized in the lab at AOE and antennas are also fully characterized in anechoic chambers. Passive antennas are characterized for gain, antenna patterns, polarization, etc. and active antennas are additionally fully characterized for EIRP, G/T and Noise Figure.





























