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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.
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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.
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只需按一个键,即可组成具有幅度分析功能的业界最精确的抖动分析仪。
为了有效地确定幅度域中任何类型的信号降级的原因,您首先必须确定故障是否由随机源或确定性源引起。为了完成此项任务,86100C-300 采用了时域中使用的分析技术(抖动分析),并将这项技术扩展至幅度域。因此,对于与信号电平相关的减损,无论是逻辑 1 或逻辑 0,只要偏离其理想位置,都可进行深入分析。 事实上,86100C DCA-J 执行推断分析与执行抖动分析的方式相同。先进的触发技术可对每个比特进行检测以确定相关效应,并对单个比特进行多项测量以确定非相关效应。您可以通过 FFT 进行频域分析来提取随机分量,还可以将抖动域中的双 Dirac 建模技术引入到干扰域中使用。
86100C 在隔离 1(ONE)逻辑电平的随机噪声的同时,还能够快速、精确地测量光收发信机参数,例如相对强度噪声(RIN)和 IEEE 802.3ae RIN OMA。 实施86100C-001 增强噪声和 86100C-200 增强噪声分析需要使用 86100C-300。