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Antenna Test
See Also: Antenna Measurement, Test Ranges
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Antenna Test Chamber for Automotive Radar
ATS1500C
The R&S®ATS1500C radar test chamber is a compact antenna test range (CATR), consisting of a gold-plated parabolic reflector and a two-axis positioner for 3D movements of the radar module. Combined with the R&S®AREG800A target simulator and other Rohde & Schwarz test and measuring instruments, it can be used for a variety of applications, including antenna characterization, module calibration, RF performance validation, interference testing or in-band compliance testing. The chamber is equipped with a universal feed antenna which gives access to both polarizations in parallel. Automated temperature testing over the range of -40 to 85°C is possible with an optional enclosure.
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Rack based antenna test system
R&S®ATS800R CATR
Very compact far-field over-the-air (OTA) test system based on compact antenna test range (CATR) technologyUnrivaled quiet zone size within 0.8 m2 footprintState-of-the-art reflector ensuring a high quiet zone accuracyUnique rack based CATR system supporting over 50 GHzIndirect far-field method (approved by 3GPP for 5G OTA testing)
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CATR Benchtop Antenna Test System
ATS800B
Very compact far-field over-the-air (OTA) test system based on compact antenna test range (CATR) technologyUnrivaled quiet zone size within 0.8 m2 footprintState-of-the-art reflector ensuring a high quiet zone accuracyUnique benchtop CATR system supporting over 50 GHzIndirect far-field method (approved by 3GPP for 5G OTA testing)
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Antenna Test & Measurement Solutions
MVG offers the broadest choice of solutions based on near-field, far-field and compact range measurement techniques for Antenna, EMC, RCS and Radome testing. Our solutions support the measurement needs of the Aerospace & Defense, Telecommunications and Automotive industries, as well as Academic and Research institutes. MVG standard systems are customizable, facilitating selection, allowing for specifications, and guaranteeing an upgrade path for the enhancement of system capabilities. From components and parts to full turn-key solutions, the right combination enables our customers to meet specific measurement needs in a variety of testing configurations.
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Compact Antenna Test Range
700.00 MHZ – 110000.00 MHZ
A Compact Antenna Test Range (CATR) allows electrically large antennas to be measured at a significantly shorter distance than would be necessary in a traditional far-field test range. Compact ranges use a source antenna (feed) to radiate a spherical wave in the direction of a parabolic reflector, collimating it into a planar wave for aperture illumination of a Device under Test (DUT). It's lowest operational frequency is determined by the size of the reflector, its edge treatment and the absorbers. The two edge treatments available are serrated edge for general purpose applications, and rolled edge to achieve higher accuracy for special applications. Multiple-feed systems may be used to improve the far-field characteristics. A compact range test system also allows system level testing of a complete device architecture.
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Antenna Test Chambers
Special design for low PIM antenna measurements Shielding > 90 dB Frequency Range 700/1000 MHz to 6000 MHz Residual PIM < -165 dBc (@ 2 x 43 dBm) Up to 6 antenna ports for multi-band and MIMO antennas Standard models for antennas up to 2.7 m length Customized solutions available on request
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Shielding Solutions
Antenna Test Chambers are especially designed for testing RF devices and antennas from frequency ranges of 700 MHz to 6000 MHz. These Antenna Test Chambers provide a shielding of more than 90 dB as well as lowest residual passive intermodulation.
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Near-field Chambers
Most antenna measurements need to be carried out in the far field; that is, the test antenna should be illuminated by a plane wave. Typically this is carried out by providing sufficient separation between the source and the AUT so the spherical wave approaches a plane-wave character.
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PXI-5651, 3.3 GHz RF Signal Generator
779670-01
3.3 GHz PXI RF Analog Signal Generator—The PXI‑5651 features continuous-wave generation capabilities with FM, 2‑FSK, or OOK modulation. It uses direct digital synthesis (DDS) for high-resolution frequency hopping or phase-continuous sweeping for fixture and device characterization applications. The PXI‑5651 is ideal for clocking nonstandard sample rates, such as WCDMA signals at baseband or intermediate frequency (IF). With these versatile signal generators, you can perform analog and digital modulation through the onboard DDS circuit, which gives you frequency modulation and frequency-shift keying for applications such as bit error rate test, antenna testing, or even keyless entry. You can also perform amplitude modulation using on-off keying.
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Antenna Test Chamber
Comtest provides Antenna test ranges fully covered with microwave absorbers for both near-field and far-field measurements. Because we always strive for new solutions, our R&D department developed our ‘Javelin Tip’ polystyrene absorbers. The enhanced material composition and altered shape, lead to improved performance and cleaner working space, enabling you to make high precision antenna testing fast, reliable, and worry-free.
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PXIe-5652, 6.6 GHz RF Analog Signal Generator
781217-01
PXIe, 6.6 GHz, PXI RF Analog Signal Generator—The PXIe‑5652 features continuous-wave generation capabilities with FM, 2‑FSK, or OOK modulation. It uses direct digital synthesis (DDS) for high-resolution frequency hopping or phase-continuous sweeping for fixture and device characterization applications. The PXIe‑5652 is ideal for clocking nonstandard sample rates, such as WCDMA signals at baseband or intermediate frequency (IF). With these versatile signal generators, you can perform analog and digital modulation through the onboard DDS circuit, which gives you frequency modulation and frequency-shift keying for applications such as bit error rate test, antenna testing, or even keyless entry. You can also perform amplitude modulation using on-off keying.
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Probe Antennas
Probe antennas are offered as both standard and custom models with a rectangular waveguide interface. Probe antennas can only support linear polarization. These antennas are often used to measure the gain of other antennas by comparing the signal levels of the probe antenna and antenna under testing. The standard models operate across the full waveguide band and offer 6.5 dB nominal gain and 115 and 60 degrees half power beamwidth at center frequency. The below standard offering covers the frequency range of 8.2 to 170 GHz.
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Testing Large Radar Sensors with CATR Technology
CATR Radar Test System UTP 5069
Modern driver assistance systems must recognize increasingly complex traffic scenarios and convert them into appropriate vehicle reactions with the help of artificial intelligence (AI) and specific algorithms. Imaging radar sensors with a higher spatial resolution, so-called imaging radar sensors, are therefore required. These can better distinguish larger from smaller objects and, due to the larger antenna apertures, also require larger dimensions of the test environment or larger far-field distances. Testing these sensors in the direct far field ( UTP 5065 ) would therefore require very large absorber chambers up to ten meters in size and more.Our efficient test system UTP 5069 offers exactly the right solution:By using CATR technology (Compact Antenna Test Range), 4D, imaging and other radar sensors with large far-field distances are calibrated with high precision in a small footprint. With the extremely low-reflection NOFFZ absorber chamber, the system is very well suited not only for validation, but also for EOL tests.
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Antenna Test Facility
Raytheon’s Antenna Test Facility (ATF) provides state-of-the-art measurement capabilities to assist in the development of advanced antenna technologies for a variety of airborne and space applications such as advanced radar and communication systems. The ATF is available for use by Raytheon businesses as well as other companies that design and prototype new and experimental antennas.
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Simulators/Threat Emitters
Antennas for RADAR test, simulation and training are designed for integration into complete threat RADAR simulators for use on combat training and test ranges or in simulators for training and evaluation of RADAR operators, aircrews, air-traffic-control or weather radar applications. All antennas for RADAR simulators have high RF power handling capabilities and generally use pressurized transmission lines. Dual-band, single aperture antennas and a cluster of separate antennas mounted to a single pedestal are ideally suited for RADAR simulators in mobile, fixed, shipboard and airborne environments.
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Saluki S5105 Series Microwave Analyzer (SA/VNA/CA)
S5105 series microwave multifunctional analyzer has the wide frequency range from 30kHz to 40GHz. It integrates multiple functions such as dual-port vector network analysis, cable and antenna feeder test, vector voltage measurement, spectrum analysis, field strength measurement, and power measurement, providing you with powerful comprehensive test capabilities. S5105 series RF analyzer is widely used in the radar performance test and cable TV, wireless communication field.
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High Gain Horn Antenna
BBHA 9120 K
The BBHA 9120 K is a linear polarized high gain horn antenna for immunity testing at short distances, especially optimized forAutomotive 600 V/m Pulse Radar Test 1.2 - 1.4 GHz. Standard: General Motors: GMW3097, Ford: EMC-CS-2009.
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Test Antennas
Lumistar provides small, lightweight portable fixed antennas for Test applications. They are available in lower L thru S bands for transmit and receive applications.
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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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Antenna Test System
ATS1000
Offering measurements on active and passive devices - supporting also extreme temperature testing. 5G is all about data, speed and reliability using high frequency millimeter wave bands. The lack of conventional external RF connectors makes 5G antenna characterization challenging. 5G antenna, chipset and UE manufacturers as well as wireless market operators need a viable solution for research, diagnostics and debugging up to type approval.
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RFID Label Inspection System
Eurotech RFID FS
The Eurotech RFID FS RFID accurately rewinds rolls of RFID labels and validates their receptivity by running them through the Voyantic Tagsurance RFID inspection system. The unit allows stopping at a predetermined editing spot for the removal and replacement of the defective piece, as well as indicating defective labels by a mark printed by an inkjet system integrated with the machine. Adjustment of the closed loop tension control system can be made through adjusting the parameters on the software that control the servo motor control system. This gives the customer a virtual infinite range with which to wind their labels without cracking the inlay or antenna. As well accurate web adjustment and guidance is provided with a web guide system complete with an ultrasonic sensor. The Eurotech RFID FS RFID label inspection system is equipped with the Voyantic Tagsurance for testing the performance of RFID tags. This is done by verifying that the tag responds to commands on its whole operational frequency range, which means testing the tag on multiple frequencies, also outside the RFID reader frequency. Accurate power output combined with the Voyantic Snoop Pro antenna, optimized for testing tags inline at high speed, allows defining precise acceptance criteria and achieving stable quality.
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Medium-size Compact Antenna Test Range
H-Series CATR
The H-Series CATR chamber provide complete 3D performance assessment for 5G OTA devices and antennas including gain, efficiency, directivity, polarization and beam characteristics for frequencies from 3 up to 110 GHz, capable of supporting forthcoming 5G Sub-6 GHz (from 3 to 6 GHz) and mmWave (24 to 110 GHz) standardized testing including TRP/TIS, EIRP, EIS, IBB and emissions in accordance to 3GPP TR38.810 and TR37.842.
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Automotive Solutions
Over the years, we have acquired profound, specific expertise in a number of areas, especially with respect to RF assembly and antenna technology testing. To give an example, we have acted as general contractor for implementing a number of rotary indexing tables for testing and labelling antenna amplifiers. The implementation as a rotary table has a number of advantages, since all mounting and test processes, as well as the handling of defective parts, are interlocked and concatenated, thereby effectively eliminating possible error sources during these process steps.
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Antenna, Biconical
EM-6917B-1 | 30 MHz To 3 GHz
The EM-6917B-1, a hybrid combination of the industry standard biconical and log periodic antennas, delivers an unmatched combination of frequency coverage and high power handling capability. Featuring exceptionally broad frequency coverage of 26 MHz to 3 GHz, the EM-6917B-1 eliminates the need for adjustments or switching antennas in most test applications up to 3 GHz, and it does so without compromising power handling capability for transmit applications.
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Standard Gain Horns
Standard gain horns can be used to experimentally determine the gain of other antennas by using the substitution method. The standard gain horn and the antenna under test are alternately connected to a well matched detector system in order to compare their relative power levels. The power level difference is then added to the appropriate level of the calibration curve to determine the absolute gain of the antenna under test.View more Standard Gain Horn Antennas
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14-bit 16 Concurrent Channel 65MSPS A/D board
AD14-65Mx16AVE
14-bit 16-concurrent channel 65MSPS A/D board for demanding large-system uses, where signals on multiple time-aligned channels need to be observed with high SNR, such as RADAR, nuclear instrumentation, ultrasound, medical imaging, spectroscopy, communications systems, RF component and antenna testing and other critical applications. An on-board low-jitter LMX2581-based RF synthesizer allows any A/D sampling rate between 20MSPS and 65MSPS to be specified in software. A second on-board LMX2581 with synchronized reference can be optionally used to output four stimulus clocks on SMA connectors that can be vectored to any combination of 4 external transmitters, microwave pulse generators, laser modulators, and other devices.
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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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Antenna, Biconica-log
EM-6917C-1 | 26 MHz – 1 GHz
The EM-6917C-1, a hybrid combination of the industry standard biconical and log periodic antennas, delivers an unmatched combination of frequency coverage and high power handling capability. Featuring exceptionally broad frequency coverage of 26 MHz to 1 GHz, the EM-6917C-1 eliminates the need for adjustments or switching antennas in most test applications up to 1 GHz, and it does so without compromising power handling capability for transmit applications.
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Compact Range Chambers
Most antenna measurements need to be carried out in the far field; that is, the test antenna should be illuminated by a plane wave. Typically this is carried out by providing sufficient separation between the source and the AUT so the spherical wave approaches a plane-wave character.
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Rapid Antenna Testing Services
At JEM we understand the challenges facing antenna, microwave and communication system engineers, and we realize that accurate measurement of antenna electrical performance is critical. That’s why we offer a range of rapid antenna testing services from 50 MHz to 40 GHz.