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N9041B UXA

    详细说明

    要点

    通过我们最先进的信号分析平台实现您的下一个突破

    我们的UXA信号分析仪的最终性能,让您以5G、802.11ax/ay、卫星、雷达、电子战(EW)等形式,描绘出当今最具挑战性的信号——快速跳跃、宽带、瞬时信号。
    您将通过行业领先的相声和宽广的无虚假动态范围深入了解您的设计的纯度。

    • 分析带宽要求高的新兴标准,如 5G 和汽车雷达,其内部分析带宽高达 1 GHz,外部分析带宽可达 5 GHz
    • 连续扫描高达 110 GHz
    • 捕获低级别虚假信号,DANL 低至 -150 dBm/Hz (+50 GHz)
    • 记录和分析真实世界环境,无间隙流高达 255 MHz
    • 与 X 系列应用程序兼容,使您能够简化复杂的测量并提供可重复的结果
    • 添加 实时分析选项 并检测短至 3.51 μs 的信号
    • 查看更多,并借用 14.1 英寸屏幕进一步了解您的设计

    UNDERSTAND YOUR SIGNAL'S BEHAVIOR IN REAL-WORLD ENVIRONMENTS

    You can use the UXA with X-COM recorder and PathWave Vector Signal Analysis (89600 VSA) software to create an intuitive test platform. This platform captures and analyzes minutes, hours, or days of real-world signal behavior for radar and electronic warfare systems, so you don't miss a single detail. 89600 VSA software enables you to sort through and analyze this massive quantity of data to find the critical events that require your attention.


    X-SERIES APPLICATIONS — SIMPLIFY MEASUREMENTS AND DELIVER REPEATABLE RESULTS

    Understand the performance of your cellular, wireless, and aerospace/defense devices and designs with downloadable X-Series applications.

    • Gain more insight into device performance from parametric measurements to the latest standards-compliant wireless measurements
    • Accelerate design with integrated applications that put consistent measurements at your fingertips across design, design validation, and production
    • Leverage built-in measurement expertise to quickly understand signals and device performance
    • Share applications across multiple instruments with available transportable licenses


    TINY WAVES, BIG CHALLENGES

    As you reach toward terahertz frequencies, it is easy to underestimate the challenges that arise in design, simulation, measurement, and analysis. Compared to signals at RF or microwave, those at 30 GHz, 300 GHz or 1 THz behave quite differently. Propagation losses in the atmosphere are high, especially at the resonant frequencies of oxygen, water, and carbon dioxide molecules. Plus, it becomes increasingly difficult to generate power and is more challenging to make calibrated measurements and get useful results.

    Learn how you can succeed at testing 110 GHz and beyond with tools created with a proven blend of measurement science and millimeter-wave expertise.

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