Key Features
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S-parameters DC to 40 GHz, single-ended and mixed-mode
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Impedance Profile with <1 mm resolution, differential and common mode
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Built-in automatic calibration, no manual setup required
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TDR-powered impedance profiling enables precise de-embedding
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Advanced de-embedding including Time Gating and 2Xthru
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Emulate eye diagrams with equalization and advanced jitter analysis
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Complete NRZ and PAM analysis suite for high-speed serial data
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All-in-one solution for testing, compliance, and diagnostics.
S-Parameters
Complete frequency characterization with a frequency range from DC to 40 GHz and supporting single-ended and mixed-mode S-parameters. Built-in automatic internal calibration is fast and easy. The OLST calibration kit supplied in the WavePulser-40iX-BUNDLE permits the measurement reference plane to be moved as required.
Impedance Profile
Precisely locate impairments with a spatial resolution of <1 mm and supporting both differential and common-mode impedance profiles. Both TDR and TDT capability are provided for complete coverage of both reflected and transmitted responses.
Deep Toolbox
WavePulser 40iX delivers simulation-ready measurements with a comprehensive toolbox for de-embedding and high-speed signal analysis. It supports S-parameter de-embedding, including Time Gating, 1x-Reflect (Short/Open), 2x-Thru, and (impedance-corrected) 2x-Thru with Gating. The integrated eye diagram enables equalized emulation, while advanced jitter analysis quantifies Total (Tj), Random (Rj), and Deterministic (Dj) jitter with full Dj deconvolution.
Internal, Automatic Calibration
WavePulser calibration standards are built-in (included in the standard unit) and calibration is always automated, simple and fast - make one connection to the DUT and press Go. WavePulser does not require purchase of additional, external calibration standards. Furthermore, WavePulser's TDR/TDT-based approach is independent of setup, making calibration less likely.
Full-range DC to 40 GHz
WavePulser provides results to DC, and extending to 40 GHz of bandwidth, so TDR step response and time-gated and/or emulated physical layer signal responses can avoid extrapolations for low-frequency and DC response - ideal for interconnection systems. set and usability for high-speed interconnect testing.