МЕТОД ВИЗНАЧЕННЯ ПОХИБКИ ТЕРМОЕЛЕКТРИЧНИХ ПЕРЕТВОРЮВАЧІВ НА МІСЦІ ЕКСПЛУАТАЦІЇ
Journal Title: Вимірювальна техніка та метрологія - Year 2014, Vol 1, Issue 75
Abstract
The method of periodic verification in operation condition of the main thermocouple of thermocouple based sensor with controlled profile of temperature field (TBS with CPTP) is proposed in this paper. This periodic verification can be done without dismantling out of sensor from operation place as well as without any working standards. The reference thermocouples of either 1-st or 3-rd level of hierarchy scheme can be used for verification of TBS with CPTP right after produce. Evaluation of self verification error in this case has shown value of error at either 1ºC or 1.2ºC respectively.
Authors and Affiliations
Орест Кочан
МЕТРОЛОГІЧНА НАДІЙНІСТЬ ТЕРМОЕЛЕКТРИЧНОГО НАНОСЕНСОРА КВАНТОВОГО ЕТАЛОНА ТЕМПЕРАТУРИ
While studying the physical foundations of the temperature standard, we obtained a quantum unit of temperature as the value of the temperature jump when one electron-phonon scattering per unit time. We expressed it in te...
СПОСІБ ВИМІРЮВАННЯ ДИНАМІЧНОГО ТИСКУ В РЕАЛЬНОМУ МАСШТАБІ ЧАСУ
The method of dynamic pressure measurement which give a possibility measurement in real time has been proposed.
ДОСЛІДНА УСТАВА ДЛЯ ДОСЛІДЖЕНЬ РЕОЛОГІЧНИХ ХАРАКТЕРИСТИК МАТЕРІАЛІВ
Offered experimental complex for research of descriptions of materials for creation of sensible elements of ultrasonic thermometers.
ФОРМУЛЮВАННЯ ЗАСАД ДЛЯ РОЗРОБЛЕННЯ МЕТОДИКИ ОЦІНЮВАННЯ ЯКОСТІ МЕДИЧНИХ ПОСЛУГ
The urgent task of present time is reformation of the health protection system in Ukraine with quality medical care. Requirements to quality of medical care and services should be set for all association of the world. In...
ВИМІРЮВАННЯ ЕЛЕКТРИЧНОГО ОПОРУ МІКРО РОЗМІРНИХ ОБ’ЄКТІВ
In the article the review of the methods of measurement of electrical resistance. Based on the analysis concluded the feasibility of applying the method of contactless measurement of electrical resistance of micro.