(1) Methods of Measuring Temperature (2) Pyrometers: Recent Developments in Pyrometric Appliances and Methods for Calibrating Temperature-Measuring Instruments; with Notes on Electric Furnaces

Nature ◽  
1926 ◽  
Vol 117 (2948) ◽  
pp. 617-617
Author(s):  
C. H. D.
2020 ◽  
Vol 21 (1) ◽  
pp. 26
Author(s):  
Bhakti Hardian Yusuf ◽  
I Made Satriya Wibawa ◽  
I Ketut Putra

A low temperature measuring device has been successfully developed using a microcontroller-based PT-100 sensor ATmega328. The temperature is measured using a PT-100 sensor, as the main processor using the ATmega 328 microcontroller, and the measured temperature is displayed on a 2x16 LCD. The results of the calibration at a temperature of 77 - 300 K against the reference measuring instrument obtained that, the ratio of the measured temperature between the reference measuring instrument and the measuring instrument made was 0.9893 ± 3.69 K and the coefficient of determination R2 = 0.9987. This indicates that the measurement results of the measuring instruments made have an accuracy level of 98.93% and a precision of 99.87%. Keywords: Low temperature, PT-100 Sensor, ATmega328 Microcontroller, LCD 2x16


Author(s):  
Payal ◽  
Parijat Pandey

Background: Nanotechnology assures to be the base of the upcoming industrial revolution. The role that nanotechnology plays in electronic devices became a question of concern among the researchers when nanotechnology started to be the focal point of research programs in developed and developing countries of the world. Nanoelectronics, formed by combining nanotechnology and electronics deals with the handling, characterization, engineering, and manufacturing of electronic devices at nanoscale. Method: By reducing the size of materials, their electronic properties alter, and inter-atomic interactions and quantum effects gain significant importance. The challenge lies in interpreting their electronic properties at nanoscale so that they can be exploited for use in new generation electronic devices. Need to trim downsize and have a higher component density have ushered us into an era of nanoelectronics. Results: This work presents a detailed review of nanotechnology, its approach towards nanoelectronics, classification and types of nanomaterials used in nanoelectronics, application areas of nanoelectronics and measuring instruments with characterization at nanoscale. Also, the work incorporates latest developments and patents in nanoelectronics. Conclusion: In this manuscript, the authors have reviewed different aspects of nanotechnology in the field of electronics, recent patents and related advancements.


2013 ◽  
Vol 56 (5) ◽  
pp. 497-502 ◽  
Author(s):  
Yu. I. Shtern ◽  
Ya. S. Kozhevnikov ◽  
R. E. Mironov ◽  
M. Yu. Shtern ◽  
I. S. Karavaev

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