• Title/Summary/Keyword: Thermometer

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Size-of-source Effect and Self-radiation Effect of an Infrared Radiation Thermometer (적외선 복사온도계의 복사원 크기효과 및 자기복사효과)

  • Yoo, Yong-Shim;Kim, Bong-Hwak;Park, Chul-Woung;Park, Seung-Nam
    • Korean Journal of Optics and Photonics
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    • v.21 no.4
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    • pp.133-138
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    • 2010
  • All radiation thermometers have a size-of-source effect (SSE) and a self-radiation effect (SRE). The SSE,defined as dependence of the detector signal of a radiation thermometer on the diameter of a source, is critically dependent on the wavelength since diffraction is the main cause. In this paper, we have measured the SSE and the SRE of TRT2 (Transfer Radiation Thermometer 2, HEITRONICS) widely used as a transfer standard in low and middle temperature range. At $300^{\circ}C$, The radiation temperature difference between the 60 mm diameter blackbody and 10 mm diameter blackbody due to the SSE was estimated to be $3.5^{\circ}C$ in low temperature mode ($8-14\;{\mu}m$) and $0.5^{\circ}C$ in middle temperature mode ($3.9\;{\mu}m$). In addition, the measured radiation temperature difference of the blackbody due to the SRE was found to be 110 mK when the body temperature change of TRT2 was set at $2.6^{\circ}C$.

Portable thermocouple thermometer on the nonlinearity compensation (비선형 특성을 보정한 휴대용 열전대 온도계)

  • Kim, Seong-Kuk;Song, Jae-Won
    • Journal of Sensor Science and Technology
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    • v.4 no.1
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    • pp.21-28
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    • 1995
  • A portable type K thermocouple thermometer is designed and fabricated to compensate the linearity to the high temperature $1000^{\circ}C$. The problems to be solved, which use a thermocouple thermometer are the compensation of the nonlinearity characters and reference compensation. The nonlinear character of the thermocouple is compensated, using an EPROM, and the reference compensation done using an IC AD595A. Before this compensation, there was the maximum error of $23.6^{\circ}C$(2.69%) at $876^{\circ}C$. However the results measured by the portable type K thermocouple thermometer fabricated show the character of the error of ${\pm}2^{\circ}C$(0.2%) in the range of the total temperature. This character satisfies the precision specifications of the type K thermal sensors in the range available $1000^{\circ}C$, which can be measured by the use of type K thermocouples. Therefore the portable type K thermocouple thermometer fabricated can be comparatively exactly used for the wide range of temperature of interest. Then this technique of compensating the nonlinear characters can be applied to the other kinds of thermal sensor compensation.

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A Study on the Correlation of Heart Rate Variability and Coldness of Hands (수부 냉증 정도와 Heart Rate Variability(HRV)의 상관성 연구)

  • Nam, Eun-Young;Yoo, Su-Jeoung;Kim, Hyung-Jun
    • The Journal of Korean Obstetrics and Gynecology
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    • v.28 no.4
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    • pp.46-56
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    • 2015
  • Objectives : Cold hypersensitivity has been regarded to be associated with Autonomic Nervous System (ANS). This study aims to investigate the indicator of cold hypersensitivity of hands and evaluate the correlation between indicator of coldness of hands and Heart Rate Variability (HRV). Methods : We studied 55 patients with cold hypersensitivity of hands who visited in SeMyung University Hospital from 17 August 2015 to 21 August 2015. Thermometer and VAS scale were used for the diagnosis of cold hypersensitivity. After careful examination to rule out other disease which may affect thermometer and HRV data, patients were taken thermometer, those with thermal difference between upper arm (L4) and palm(P8), also asked to answer a VAS scale of cold hypersensitivity of hands, VAS more than 4 were enrolled for evaluation. Results : There was significant correlation between L4-P8 temperature difference and VAS score of cold hypersensitivity. In HRV data, normalized high frequency (HF normal) was significantly correlated with L4-P8 temperature difference, which was objective indicator of cold hypersensitivity of hands. Conclusions : L4-P8 temperature difference using thermometer is objective indicator of cold hypersensitivity, based on VAS scale. Cold hypersensitivity is highly related with ANS, regulating body heat and temperature. HRV is considered to be widely used in cold hypersensitivity in hands for evaluation of ANS.

U-Healthcare Patch Type Wireless Body Temperature Monitoring System (유헬스케어 패치형 무선 체온 모니터링 시스템 구현)

  • Park, Young-Sang;Kwon, Oeon;Cho, Hyun-Sung;Son, Jaebum
    • Journal of Biomedical Engineering Research
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    • v.41 no.1
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    • pp.55-61
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    • 2020
  • Recently, there have been many research on fever management using u-healthcare technology. Especially, fever of infants requires continuous monitoring of body temperature by parents. For infants between 4 weeks and under 5 years old, it is recommended to use an electronic thermometer or chemical thermometer in the axilla, or to use an infrared thermometer. However, in order to overcome the reality of not being able to waste significant time on continuous monitoring, there have been demands of patch type thermometers with the internet of things (IoT) and wireless communication technologies. Existing IoT thermometers are difficult to attach to infants' body because they do not take into account its size, and their interoperability is not guaranteed because they do not comply with standards in communication. Therefore, in this study, a patch-type thermometer with a diameter of 20 mm and a weight of 2.9 g was developed to manage the fever of infants, while it communicates wirelessly with Bluetooth Low Energy (BLE) communication protocol and complies with IEEE 11073 PHD(Personal Health Device) at the same time. We verified its performance under the requirements of thermometers regulated by the Korean Ministry of Food and Drug Safety.

Calibration by Comparison and Uncertainty Assessment of Industrial Thermometers at the Boiling Point of Nitrogen (질소의 끓는점에서의 산업용 온도계 비교 교정과 불확도 평가)

  • Yang, Inseok;Gam, Kee Sool;Joung, Wukchul;Kim, Yong-Gyoo
    • Journal of Sensor Science and Technology
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    • v.22 no.6
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    • pp.404-409
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    • 2013
  • We devised calibration procedure for industrial thermometers by a comparison method at the boiling point of nitrogen (${\sim}-196^{\circ}C$). The uncertainty of the calibration was 4 mK (k = 2). As experimentally demonstrated in this work, the effect of the atmospheric pressure on the boiling point of nitrogen can be easily detected by the thermometer. Therefore, when the boiling point of nitrogen is used for calibration of thermometer by comparison, either a reference thermometer must be used to provide the reference temperature or the effect of atmospheric pressure should be carefully considered. The use of a copper block with a large thermal mass soaked into the liquid nitrogen was proven to be more reliable, and the stability of the temperature immersed into the copper block was 1.4 mK. The temperatures at the thermometer wells, evaluated by the crossed-measurement method to compensate for the inaccuracy of the thermometers and the linear drift of the temperature of the copper block, were equivalent within 0.23 mK of standard uncertainty.

A Study on the Improvement of Spatial Resolution with Miniaturization of Plate Thermometer (판형 열유속계의 소형화에 따른 공간 해상도 개선에 관한 연구)

  • Yun, Hong-Seok;Han, Ho-Sik;Hwang, Cheol-Hong
    • Fire Science and Engineering
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    • v.33 no.2
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    • pp.39-46
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    • 2019
  • This study assessed the measurement errors and improvement of the spatial resolution through miniaturization of the plate thermometer used to measure the heat flux in a fire environment. As a result, the heat loss to the side of plate thermometer was found to have a significant influence on the measurement error through analysis of the measurement values according to the thickness and density change to the insulation installed on the back side of the plate. Based on the existing 10 cm square shape, it was also confirmed that the 3 cm size plate thermometer could measure the heat flux with satisfactory accuracy through miniaturization. These results are expected to be useful for accurate measurements of the heat flux at local locations in a fire environment.

A Novel Current Steering Cell Matrix DAC Architecture with Reduced Decoder Area (디코더 면적을 줄이는 새로운 전류구동 셀 매트릭스 DAC 구조)

  • Jeong, Sang-Hun;Shin, Hong-Gyu;Cho, Seong-Ik
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.3
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    • pp.627-631
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    • 2009
  • This paper presents a novel current steering cell matrix DAC(digital-to-analog converter) architecture to reduce decoder area. The current cell matrix of a existing architecture is selected by columns and lows thermometer code decoder of input bits. But The current cell matrix of a proposal architecture is divided 2n by the thermometer code decoder of upper input bits and are selected by the thermometer code decoder of middle and lower input bits. Because of this configuration, decoder numbers have increased. But the gate number that composed of decoder has decreased. In case of the designed 8 bit current steering cell matrix DAC, the gate number of decoder has decreased by about 55% in comparison with a existing architecture.

Seasonal Variations of $SO_2$Dry Deposition Velocity Obtained by Sonic Anemometer-Thermometer (초음파 풍속온도계를 이용한 $SO_2$건성침착속도의 계절변화 특징)

  • 이종범;박세영
    • Journal of Korean Society for Atmospheric Environment
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    • v.14 no.5
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    • pp.465-478
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    • 1998
  • In this study, seasonal variations of the dry deposition velocity and deposition flux for the sulfur dioxide were analysed. The field observation was performed during one year (from November 1, 1995 to October 31, 1996) in Chunchon basin. The turbulence data were measured by 3-dimensional sonic anemometer/thermometer, and were estimated by mean meteorological data obtained at two heights (2.5 m and 10 m) of meteorological tower. Also, the estimation methods were evaluated by comparing the turbulence data. The results showed that the estimated dry deposition velocity and turbulence parameter such as uc and sensible heat flux using mean meteorological data were relatively similar to the sonic measurements, but all showed somewhat large differences. The dry deposition velocity was large in summer and small in winter mainly due to canopy resistance (rc). The major factor which affects diurnal variation of the velocity was aerodynamic resistance (rw). The SO2 dry deposition flux was large in winter and small in summer in Chunchon.

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A Study for Accuracy and Usefulness of Tympanic Membrane and Forehead Thermometers (고막 체온계와 이마 체온계의 정확성 및 유용성에 대한 연구)

  • Yun, Gi Wook;Lim, In Seok
    • Clinical and Experimental Pediatrics
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    • v.48 no.8
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    • pp.820-825
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    • 2005
  • Purpose : The presence and degree of fever in children is a useful indicator of illness. This project aimed to assess the accuracy and usefulness of infrared tympanic membrane(TM) & forehead feverscan thermometers for measuring children's temperatures. Methods : Data were obtained from 1,050 children with a median age of 4.5 years. They visited the pediatric clinics at Chung-Ang University Yongsan Hospital from January 2004 to December 2004. We measured body temperatures at axilla by mercury thermometer, at ear by infrared TM thermometer and at forehead by feverscan. Then we analyzed the correlation between these data. Results : Mercury and TM thermometer, and Mercury and forehead feverscan thermometer very well correlated with each others(P<0.05). And the sensitivity of infrared TM thermometer(right and left) to correctly identify febrile children was 81.1 percent and 82.4 percent, the positive predictive value to detect a fever was 81.8 percent and 73.6 percent. The sensitivity of forehead feverscan was 83.3 percent and the positive predictive value was 74.4 percent. Conclusion : The tympanic membrane temperature measured by the BRAUN IRT $3020^{(R)}$ and forehead arterial temperature measured by the HubDIC $DOTORY^{(R)}$ feverscan accurately reflects mercury axillary temperature, validly assesses the presence of fever in children, and is easy to use. The Braun IRT $3020^{(R)}$ & HubDIC $DOTORY^{(R)}$ therefore is an adequate tool to assess fever and may be used both in a clinical setting and for research purposes.

$^{3}$He Solid-Liquid Melting Pressure Thermomety ($^{3}$He의 고체-액체 융해압력 측정)

  • 김상보;최창호;이일수;김동락
    • Proceedings of the Korea Institute of Applied Superconductivity and Cryogenics Conference
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    • 1999.02a
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    • pp.161-164
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    • 1999
  • $^{3}$He melting curve thermometer is made, tested, and compared with Greywall scale. The experimental results show that we can identify the temperature within a few percentage. To improve the accuracy of our thermometer we need temperature fixed points like $^{3}$He superfluid phase transition temperature.

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