Keysight Technologies showcased solutions that help engineers accelerate spectrum utilization by solving complex RF design, emulation, and validation challenges. Demonstrations highlighted how engineers can move faster from concept to deployment while reducing risk across next-generation wireless, aerospace and defense, satellite, quantum computing, and 6G applications. At booth #19035, Keysight featured three interactive solution zones.
Simulate Cutting-Edge RF Designs: Design faster, explore more, and optimize RF systems earlier in the workflow. Featured demonstrations included: Transform RF Designs with AI ? Demonstrates how AI-driven workflows automate RF design tasks, accelerate optimization, and improve design reuse across complex RF systems. Accelerate Quantum Design ?
Showcases unified quantum circuit, EM, and system simulations that streamlines superconducting qubit development and reduces costly test iterations. Emulate Real-World RF Environments: Create realistic RF environments to uncover issues before deployment. Featured demonstrations included: Turn Signal Complexity into Clarity ?
Demonstrates how advanced signal analysis accelerates spurious searches, spectral analysis, and MIMO evaluation in congested RF environments. Master High-Performance Signal Analysis ? Showcases how wideband signal analysis enables high-speed validation of emerging V-band, satellite, and 6G waveforms. Unlock Sub-THz Device Characterization up to 250 GHz ?
Demonstrates sub-THz (250 GHz) four-port differential measurements for precise AI hardware characterization in a single sweep. Validate Complex RF Systems: Verify performance with confidence across increasingly complex RF architectures. Featured demonstrations included: Generate High-Fidelity Signal Generation ?
Demonstrates ultra-low phase noise and fast-switching signal generation for advanced 5G, 6G, NTN, and radar applications. Push PNT Systems to Their Limits ? Features realistic PNT emulation that validates GNSS and complementary PNT systems under complex real-world conditions.

















