Choose a country or area to see content specific to your location
确认您的国家或地区
请确认
Confirm your country to access relevant pricing, special offers, events, and contact information.
Explore dual-channel and ultra-wideband signal analysis for demanding RF workflows.
Get faster, clearer insights with our new multicore, 12-bit oscilloscope up to 33 GHz. Trade in your old oscilloscope and get credit toward a new XR8.
Bridging design and physical testing to evaluate drop, impact, shock, and vibration compliance before hardware exists.
Unlock your free upgrade to the next bandwidth tier.
Strengthen 1.6T network reliability for AI-scale workloads from transceivers to interconnects.
Pair Keysight VSA software with the new XA5 signal analyzer for advanced visualization, demodulation, and analysis — start your 30-day trial today.
With extra memory and storage, these enhanced NPBs run Keysight's AI security and performance monitoring software and AI stack.
Explore end-to-end workflows spanning IC design, validation, wafer test, and photonics.
Explore curated support plans, prioritized to keep you innovating at speed.
Maximize accuracy and performance with precision accessories engineered for Keysight instruments.
Purpose-built solutions engineered for the design and test challenges unique to your industry.
Use Cases mapped to every stage of your product lifecycle, from design through operations.
Success Stories
Authoritative application notes, data sheets, reference designs, and test procedures to accelerate design and validation decisions.
Hands‑on bootcamps that teach system design, test methods, and production workflows engineers can apply immediately.
Learning Hub
Explore methodologies, test strategies, and technical resources for designing, validating, and scaling AI systems and networks.
欢迎访问 24x7 自助服务门户网站
其他产品支持
勤学以博览工程师智慧知识宝库
您希望搜索哪方面的内容?
W2382EP 雷达验证测试台组件包括两个工作区:一个雷达发射机工作区和一个雷达发射机信号源工作区。
雷达发射机(TX)工作区提供了一个验证测试台,使您能够测量频谱、波形和 ACF 等雷达发射机特征。它在 SystemVue 中的设计原理图如下。
被测器件(设计中的 SVE_Link)输入信号的中心频率通过 FCarrier_In 设定,而输出信号的中心频率则通过 FCarrier_Out 设定。通过设置 GainImbalance、PhaseImbalance 等参数,可对射频失真进行仿真。本工作区提供了多个雷达信号模型。您可以选择 SignalType 来配置不同的雷达信号,包括 BarkerCode、FrankCode、CW、PloyTimeCode、FSK、LFM 和脉冲信号。当选定雷达信号类型后,相应参数便处于有效状态。发射信号的平均功率通过 SignalPower 设定。SignalPower 用于指定所发射信号的平均功率。
了解更多信息,请浏览知识中心(需要登录)的雷达_发射机页面。
雷达发射机(TX)信号源工作区提供了一个用于生成雷达信号的验证测试台。它在 SystemVue 中的设计原理图如下。
被测器件(设计中的 SVE_Link)输入信号的中心频率通过 FCarrier_In 设定,而输出信号的中心频率则通过 FCarrier_Out 设定。通过设置 GainImbalance、PhaseImbalance 等参数,可对射频失真进行仿真。本工作区提供了多个雷达信号模型。您可以选择 SignalType 来配置不同的雷达信号。所支持的雷达信号类型包括 BarkerCode、FrankCode、CW、PolyTimeCode、FSK、LFM 和脉冲信号。发射信号的平均功率通过 SignalPower 设定。SignalPower 用于指定所发射信号的平均功率。