Title :
Development of a Type-N Coaxial Microcalorimeter for RF and Microwave Power Standards at KRISS
Author :
Jae-Yong Kwon ; Tae-Weon Kang ; Jeong-Hwan Kim ; No-Weon Kang
Author_Institution :
Center for Electromagn. Wave, Korea Res. Inst. of Stand. & Sci., Daejeon, South Korea
Abstract :
This paper introduces a newly constructed type-N coaxial microcalorimeter that will serve as a primary power standard in Korea Research Institute of Standards and Science. The detailed design scheme of the microcalorimeter is presented, and its characteristics are evaluated. The performance of an adiabatic line was simulated with a finite-element-method-based tool and predicted. The measured insertion loss of the assembled adiabatic line was less than 0.15 dB. Frequency and power sweep measurements were performed on a reference standard to find a substituted power level that minimized the dual-element error. We also propose evaluation standards that can be used for the measurement of radio frequency loss. The correction factor for the effective efficiency of the reference standard was experimentally evaluated. We also present an uncertainty evaluation process and the corrected effective efficiency of a type-N coaxial reference standard.
Keywords :
calorimeters; finite element analysis; frequency measurement; loss measurement; measurement standards; microsensors; microwave measurement; power measurement; KRISS; Korea Research Institute of Standards and Science; adiabatic line simulation; assembling; dual-element error minimization; finite-element-method-based; frequency sweep measurement; insertion loss measurement; microwave power standard; power sweep measurement; radiofrequency loss measurement standard; reference standard; type-N coaxial microcalorimeter; type-N coaxial reference standard; uncertainty evaluation process; Conductors; Heating; Radio frequency; Standards; Temperature measurement; Thermistors; Uncertainty; Calibration; calorimetry; coaxial transmission lines; electromagnetic measurements; measurement standards; measurement uncertainty; thermistors; thermistors.;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2015.2408802