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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.
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.
Achieve 200+ Gbaud multi-level modulated signals with high-speed AWGs for digital and optical standards.
Maximize accuracy and performance with precision accessories engineered for Keysight instruments.
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.
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A basic introduction to various applications and technologies related to quantum physics.
Learn:
Lesson 1 - Introduction - Quantum Sensing
Provides a broad overview of applications in quantum sensing, such as magnetometry, gradiometry, and PNT. By the end of this lesson, you will have learned what types of quantum sensors exist today.
Lesson 2 - Quantum Sensing Theory
Discusses the theory behind quantum sensing, such as entanglement and coherence. By the end of this lesson, you will have a better understanding of how quantum sensors work.
Lesson 3 - Quantum Radar
Looks at the theory behind quantum radar and LIDAR. By the end of this lesson, you will have a better understanding of how quantum radar could be used to outperform classical radar systems.
Lesson 4 - DNVs (Diamond Nitrogen Vacancies)
Discusses the use of nitrogen-vacancy (NV) centers in diamonds as quantum sensors. By the end of this lesson, you will have a better understanding of how NV centers work and how they can be used to measure physical properties.
Lesson 5 - Quantum Sensing Experiments
Demonstrates how Keysight equipment can be used to conduct quantum sensing experiments. By the end of this lesson, you will have a better understanding of how to use Keysight equipment for quantum sensing.
Clocks in Trapped Ion Quantum Computing
A helpful explanation of how to combat common challenges in trapped ion computing.
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