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Showing results: 46 - 60 of 161 items found.

  • Custom Test System Solutions

    Astronics Corporation

    No time to think about test? One-size-fits-all testers not ideal? Existing solution no longer fits your needs? Then count on integrated test solutions from Astronics. We’ll assist you with your test strategy and your test system, setting you on the path to market at a pace and ROI that ensures your program success.

  • Digital Test Instruments

    Astronics Corporation

    Conduct pattern-based digital tests incorporating the latest parallel, digital, serial, and bus protocols with the PXIe-6943 digital test instrument.

  • 2-Module ICT System, I317x Series 6

    E9902G - Keysight Technologies

    Keysight's family of i3070 Series 6 In-Circuit Test (ICT) systems are built on a proven technology foundation, and they improve test efficiency with time-tested software, hardware, and programmability. I3070 Series 6 ICT tester supports a wide range of printed circuit board assembly (PCBA) sizes for applications including IoT and 5G, as well as automotive and energy. The i3070 features a unique design that delivers the shortest signal path between measurement circuitry and devices under test to minimize undesired effects from parasitic capacitance, improve immunity to crosstalk, and eliminate stray signal coupling effects, delivering consistent and repeatable measurements. The Series 6 is fully backward compatible with previous systems and makes highly repeatable measurements.

  • Testing Large Radar Sensors with CATR Technology

    CATR Radar Test System UTP 5069 - NOFFZ Computer Technik GmbH

    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.

  • Radar Systems / Millimeter Wave Radar / Micro Wave Radar

    KEYCOM Corp

    KEYCOM develops various radars for versatile applications based on its knowledge and expertise on millimeter wave and microwave technologies. KEYCOM’s product line of radars includes Radar Test Systems (RTS) to evaluate distance accuracy or output, Radar Alignment Systems (RAS) to help you adjust the alignment of radars, and Radar Cross Section (RCS) measurement systems to measure RCS of such radar targets as aircraft, ships and automobiles.

  • Radar Cross Section (RCS) Measurement and Evaluation System

    XRC - KEYCOM Corp

    KEYCOM develops various radars for versatile applications based on its knowledge and expertise on millimeter wave and microwave technologies. KEYCOM’s product line of radars includes Radar Test Systems (RTS) to evaluate distance accuracy or output, Radar Alignment Systems (RAS) to help you adjust the alignment of radars, and Radar Cross Section (RCS) measurement systems to measure RCS of such radar targets as aircraft, ships and automobiles.

  • Simulators/Threat Emitters

    Antenna Research Associates

    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.

  • Radar Simulator

    SPx - Cambridge Pixel Ltd.

    SPx Radar Simulator is a Windows-based application that generates simulated radar video data, along with any combination of tracks, AIS, navigation and secondary radar. The data may be output in network format (including ASTERIX for radar video and tracks), or as radar signals (video, trigger, ACP/ARP) with the HPx-300 radar output card. The simulation software provides an excellent test tool for the creation of complex multi-radar, multi-target simulations of radar and related data, allowing systems to be tested before access to real radar data.

  • Weather Radar Panel for Primus

    TA-3B - Tech-Aid Products

    A weather radar panel similar to the TA-3 panel but with more specific test jacks for testing the Primus 300/400 series radars. Specific test jacks for power supply, antenna and indicator.

  • Flightline breakout for TA-270 series Servo

    TA-270 - Tech-Aid Products

    Universal weather radar test panel with integral gyro simulator and monitor jacks. Discrete test jacks for common signals, altitude select switches and a dedicated connector for the RDS series radars.

  • Generic RF ATE Test

    Data Patterns Pvt. Ltd.

    The Generic RF ATE is developed to test the Radar and Radar Subsystems. The ATE is primarily built using an instrumentation control, precision RF routing systems and rack mounted test instruments. Generic RF ATE system enables measurement of parameters of Radar equipment such as Local Oscillators, Waveform Generators, Up and Down Converters, Analog Receivers, Array Group Receiver Units, TR Modules. The ATE is configured to test the Radars upto 18GHz frequency range.

  • Doppler Radar Target Simulators

    ERAVANT

    Automotive radar sensors play a vital role in the current development of autonomous driving. Their ability to detect objects even under adverse conditions makes them indispensable for environment-sensing tasks in autonomous vehicles. As their functional operation must be validated in-place, a fully integrated test system is required. Radar Target Simulators (RTS) are capable of executing end-of-line, over-the-air validation tests by looping back a received and afterward modified radar signal and have been incorporated into existing Vehicle-in-the-Loop (ViL) test beds before. However, the currently available ViL test beds and the RTS systems that they consist of lack the ability to generate authentic radar echoes with respect to their complexity. The paper at hand reviews the current development stage of the research as well as commercial ViL and RTS systems. Furthermore, the concept and implementation of a new test setup for the rapid prototyping and validation of ADAS functions is presented. This represents the first-ever integrated radar validation test system to comprise multiple angle-resolved radar target channels, each capable of generating multiple radar echoes. A measurement campaign that supports this claim has been conducted.

  • Radar Power Bus Simulation

    AMETEK Programmable Power, Inc.

    Provides sequenced programmable power to a phased array radar test facility

  • Radar Target Simulator

    E8707A - Keysight Technologies

    Rapid developments in the autonomous vehicle and demand for greater safety features is fueling the need for more sensitive and accurate automotive radar technology being deployed in advanced driver assistance systems (ADAS). With its rich expertise in radar test technology, Keysight now offers the E8707A radar target simulator to help automotive electronics manufacturers confidently simulate radar targets in various realistic scenarios.

  • Radar Echo Generation

    Rohde & Schwarz GmbH & Co. KG

    Developing new automotive radar sensors, radar based Advanced Driver Assistance Systems (ADAS) or Autonomous Driving (AD) features have demanding challenges, during each step of the development process. Dynamic, flexible and scalable test concepts and test environments are required.

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