Abstract

Error analysis and uncertainty estimation for a millimeter-wave phase-shift measurement system at 325GHz are presented. The measurement errors due to inductive voltage divider, receiver noise, phase drift, mismatch at test ports, gauge-block attenuator, leakage and repeatability have been identified and evaluated. The standard uncertainty of these error components have been estimated and combined to obtain the expanded uncertainty in phase-shift measurement. The differential phase-shift measurement uncertainty for a 0–60dB WR-03 rotary vane attenuator is estimated to be 0.57–1.3° at 325GHz.

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