Resistance standards with calculable, nearly negligible AC-DC difference at frequencies up to 2 MHz for the calibration of precision LCR meters
J\"urgen Schurr, Rolf H. Judaschke, Shakil A. Awan

TL;DR
This paper introduces novel impedance standards based on thin-film SMD resistors with nearly negligible AC-DC differences up to 2 MHz, enabling highly precise calibration and verification in electrical metrology.
Contribution
The development of calculable impedance standards with minimal frequency dependence up to 2 MHz, surpassing conventional standards by four orders of magnitude in accuracy.
Findings
Frequency dependence of a few parts per million at 2 MHz
Calibration of LCR meter with a few parts per million uncertainty
Verification of models and standards with high precision
Abstract
We have developed novel impedance standards based on thin-film surface-mount-device (SMD) resistors. Due to the small dimensions of such resistors, the quantities determining their frequency dependence are very small and can be either measured or numerically calculated. A series connection of thin-film SMD resistors allows us to further improve the DC and the AC properties. The nominal resistance value of our application is 12.906 kohm but other values are just as possible. At frequencies up to 2 MHz, the calculated frequency dependence amounts to only a few parts per million of the DC value, which is about four orders of magnitude smaller than for all conventional calculable AC-DC resistors having a similar nominal DC value. To measure the frequency dependence, we use a precision inductance-capacitance-resistance (LCR) meter at frequencies up to 2 MHz that has a reproducibility of a…
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Taxonomy
TopicsAdvanced Electrical Measurement Techniques · Analytical Chemistry and Sensors · Sensor Technology and Measurement Systems
