원문정보
초록
영어
Core-contact measuring method is used as a non-invasive contact measurement technique for temperature measurement across various fields, including semiconductors, electronic devices, and medical equipment. This non-invasive contact measurement method is employed to enhance the accuracy and precision of temperature measurement compared to conventional methods. It is essential in fields requiring high-performance and high-precision temperature measurement. The non-contact system employs an IR sensor for detection and displays the measured output value on the temperature device's screen. Core-Contact Measuring System (CCMS) consists of an IR sensor that detects heat and a component that accepts the measured heat via the core method. The obtained measurement data is converted into a digital signal via an ADC and processed through a microprocessor to become usable data. The converted data is connected as a communication signal and utilized as a digitized signal. Data obtained by detecting the human body is converted into a mode capable of diagnosing diseases for use. Data for diagnosis is transmitted to medical centers and hospitals, where it is used to determine disease values and monitor the patient's vital signs. The results of the Core-Contact Measuring System (CCMS) indicate temperature variation values with depth, which were the far temperature values of the CCMS-FA-εMED with 5.80±1.20 units, which were the convenient temperature values of the CCMS-CO-εMED with 4.06±(-0.04) units, which were the flank temperature values of the CCMS-εMED with 0.91±0.07 units, which were the vicinage temperature values of the CCMS-VI-εMED with 0.18±(-0.03) units. We anticipate that the Core-contact Measuring method will serve as a core technology to enhance the accuracy and precision of temperature measurement across diverse fields such as semiconductors, healthcare, and biotechnology, and expect it to be effective for non-invasive continuous monitoring.
목차
1. INTRODUCTION
2. Substances and Methods
2.1 Core-Contact Measuring procedure
2.2. Spill-over Deep Temperature methods
2.3. Spill-over Deep Temperature Form
2.4. Core-contact Measuring Technique Dot
2.5. Core-contact Measuring Form
3. Result
3.1 Spill-over deep temperature-form sequence
3.2 Improvements of spill-over deep temperature-form sequence selections
4. Conclusion
REFERENCES
키워드
- Core-Contact Measuring System
- Core-contact Measuring method
- Digital Signal
- Temperature Measurement
