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"MBE"

Correction Measures That Take Humidity into Account in Insulating Oil Test Measurement Results
Wansu Kim, Jae-pil Roh, Seock-gu Kang
J Electr Electron Mater 2024;37(5):541-546.   Published online September 1, 2024
DOI: https://doi.org/10.4313/JKEM.2024.37.5.11
Climate conditions, especially transport and storage, are a very important factor in the process of sampling and testing insulation oil in the field. The samples of insulating oil exposed to the atmosphere affect the dielectric strength, total acid number and moisture test value by oxygen and high humidity environment and may also affect the results according to the criteria specified in each test. Therefore, reliable test values for insulating oil testing require consideration of the atmospheric environment of the test site, including oxygen and humidity. In this paper, each test was conducted on insulating oil exposed to various time and humidity environments, and the effect of the atmospheric environment on the test results was analyzed by comparing and analyzing with the first insulating oil.
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Development of NCS-Based Technical Education Program for Analog Signal Processing
Choon-nam Cho
J Electr Electron Mater 2020;33(6):510-514.   Published online November 1, 2020
DOI: https://doi.org/10.4313/JKEM.2021.33.6.15
Vocational education needs to be transformed to cultivate talents with diverse fusion competencies, which is in line with the recent changes that have become a part of the complex technological developments in the 4th Industrial Revolution. Therefore, it is very important for college graduates to obtain employment skills as they are required to prepare for careers within the complex environments of future societies. With the transition to the Internet of Things (IoT)-based control in the manufacturing industry, the development of technological education and related training programs is required to cultivate practical talents for students who have acquired not only the information on existing programmable logic controller (PLC)-based technology, but also that on embedded programming technology. Therefore, to develop an NCS-based education program for analog signal processing to ensure that programming can easily be learned for cultivating practical talent, this study summarizes the opinions of field experts, selects the appropriate NCS competency unit, and designs an adequate technology education training program.
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Development of Embedded System Based Cortex-M for Smart Manufacturing
Choon-nam Cho
J Electr Electron Mater 2020;33(4):326-330.   Published online July 1, 2020
DOI: https://doi.org/10.4313/JKEM.2021.33.4.14
Small-scale production control systems for smart manufacturing are becoming increasingly necessary as the manufacturing industry seeks to maximize manufacturing efficiency as the demand for customized product production increases. Correspondingly, the development of an embedded system to realize this capability is becoming important. In this study, we developed an embedded system based on an open source system that is cheaper than a widely applied programmable logic controller (PLC)-based production control system that is easier to install, configure, and process than a conventional relay control panel. This embedded system is system is based on a low-power, high-performance Cortex M4 processor and can be applied to smart manufacturing. It is designed to improve the development environment and compatibility of existing PLCs, control small-scale production systems, and enable data collection through heterogeneous communication. The real-time response characteristics were confirmed through an operation test for input/output control and data collection, and it was confirmed that they can be used in industrial sites.
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The Electrochemical Property of the Single-Chamber Solid Oxide Fuel Cell Based on a Zirconia Electrolyte
Hee Jung Park, Jong Hoon Joo, Jae Kyo Yang, Yun Ho Jin, Kyu Hyoung Lee
J Electr Electron Mater 2016;29(8):510-515.   Published online August 1, 2016
Single-chamber solid oxide fuel cells (SC-SOFCs) consist of only one gas chamber, in which both the anode and the cathode are exposed to the same fuel-oxidant mixture. Thus, this configuration shows good thermal and mechanical resistance and allows rapid start-up and -down. In this study, the unit cell consisting of La0.8Sr0.2MnO3 (cathode) / Zr0.84Y0.16O2-x (electrolyte) / Ni-Zr0.84Y 0.16O2-x (anode) was fabricated and its electrochemical property was investigated as a function of temperature and the volume ratio of fuel and oxidant for SC-SOFCs. Impedance spectra were also investigated in order to figure out the electrical characteristics of the cell. As a result, the cell performance was governed by the polarization resistances of the electrodes. The cell exhibited an acceptable cell-performance of 86 mW/cm2 at 800℃ and stable performance for 3 hs under 0.7 V.
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Insulation Materials : A Study on the Insulating Properties of Pressboard for High Voltage Transformer Applied the Mold of Eddy Current Loss
Wang Byuck Suh
J Electr Electron Mater 2015;28(8):508-512.   Published online August 1, 2015
Some insulating materials are tested and analyzed with variables to obtain the reliable pressboard which is located to core and coil of high voltage transformer. The high voltage transformer is used in electrical power system and operating reliability. Optimization possibility of pressboard shape including electrical insulation performance could be achieved by analysis simulation. Using insulating pressboard, which is made by mold applied eddy current loss, it could be measured the influences of moisture content for electrical properties. As a result, it is to contribute to improve the performance and ensure the reliability of the pressboard by investigating electrical strength according to the variation oil temperature. In addition pressboard thickness is important design factor to ensure electrical strength in high voltage transformer.
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A Study on the Thermal and Optical Properties of a LED Chamber Light for Vessels
Sang Hyun Kim, Do Yup Lee, Woo Sung Kim, Nak Won Jang
J Electr Electron Mater 2015;28(1):57-63.   Published online January 1, 2015
Recently, LED is widely used in the kinds of display devices or lighting. In this paper, we fabricated LED chamber light for naval vessels to replace to conventional chamber light using incandescent lamp. The LED package of chamber light was designed with luminous intensity of 5.5 cd, color temperature of 6,000 ± 500 K, forward voltage of 3~3.2 V and input current of 60 mA. A LED module was composed of 36 LED packages and metal PCB. The VF and luminous intensity of LED package were getting down when temperature increased. The temperature of LED chamber light was measured by changing the number of LED package and applied current for one hour when an electric current flow. The heat transfer capability have been improved by using metal PCB. The power consumption of LED chamber light reduced by 86% compared to the conventional chamber light using incandescent lamp.
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Regular Paper Characterization of Amorphous In-Si-O Multilayer for Low Emissivity Applications
Young Seong Lee, Sang Yeol Lee
J Electr Electron Mater 2014;27(8):483-485.   Published online August 1, 2014
Transparent amorphous In-Si-O (ISO)/Ag/In-Si-O (ISO) has been reported for low emissivity(low-e) applications. Effective Si doping into the In2O3 matrix led to a completely amorphous ISO film aswell as a low resistivity and a high optical transmittance. The optical and electrical performances wereexamined by measuring transmittance with a UV-VIS spectrophotometer and resistivity with a Hall effectmeasurement. Consequently, low-e glass with ISO/Ag/ISO showed a high transparency in the visibleregion and low emissivity in the infrared region, indicating that ISO is a promising amorphoustransparent electrode for low-e glass.
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Electric Field Strength and Shielding Effectiveness Comparison According to the Size of Shielding Facility
Ho Jae Kang, Chang Su Huh, Jeong Ju Bang, Jin Su Choi, Woo Chul Park
J Electr Electron Mater 2014;27(4):221-225.   Published online April 1, 2014
In modern times, threat of high power electromagnetic wave is increasing. When the electrical grid and communication network are attacked by these high power electromagnetic wave, the whole infrastructure is paralyzed. To protect the infrastructure from these high power electromagnetic wave threat, the shielding facility that can block high power electromagnetic wave is constructed. Also shielding effectiveness evaluation about the constructed facility is important. But, because of space efficiency and saving of construction cost to construct the actual shielding facility, the shielding room wall is generally adjacent to exterior concrete structures. As space between shielding facility wall and concrete structures is very small, arranging the transmitting antenna exterior shielding facility is realistically difficult. Therefore, in this research, The shielding effectiveness measurement plan in the state of exterior narrow space of HEMP shielding facility is presented. And to apply this plan, The influence of shielding effectiveness according to the size of the shielding facility is analyzed.
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Thin Films and Sensors : Regular Paper ; The Effect of V/III Ratio on Growth Mechanism of Gas Source MBEc
Sung Kuk Choi, Jin Yeop Yoo, Soo Hoon Jung, Won Beom Chang, Ji Ho Chang
J Electr Electron Mater 2013;26(6):446-450.   Published online June 1, 2013
Growth mechanism of GS-MBE (Gas source-Molecular Beam Epitaxy) has been investigated. We observed that the growth rate of GaN films is changing from 520 nm/h to 440nm/h by the variation of V/III ratio under nitrogrn-rich growth condition. It was explained the amount of hydrogen on the growth front varies by the ammonia flow, and gallium hydrides are generated on the surface by a reaction of hydrogen and gallium, resultantly the amount of gallium supplying is changing along with the NH3 flow. Reflection high energy electron diffraction (RHEED) observation was used to confirm the N-rich condition. The crystal quality of GaN was estimated by photoluminescence (PL) and X-ray diffraction (XRD).
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Insulation Materials : Research of Flow Velocity and BTA According to the Streaming Electrification of Vegetable Insulating Oils
Sun Ho Choi, Jeong Ju Bang, Chang Su Huh
J Electr Electron Mater 2012;25(10):791-797.   Published online October 1, 2012
Mineral insulating oils are an important insulating materials in oil-filled transformer, However, the mineral oil is the cause of the environmental problem, The vegetable oils are substitutes for mineral oil because of its biodegradability characteristic, As large size and high rating of the transformer increases, the losses increase at a faster rate, So insulating oil is forced circulation in the oil-filled transformer by using oil pumps. The flow electrification occurs when insulating oil was forced to be circulated. To check the flow electrification, had conducted experiments varying factors. As a result, the streaming electrification could see the changes according to flow velocity, oil temperature and insulation materials.
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Insulation Materials : A Survey of Deterioration Causes of High Voltage Motors in Power Plants
Kyeong Yeol Kim, Hee Dong Kim, Byeong Rae Kim, Tae Sik Kong, Byong Han Kim, Sang Kil Lee, Jong Hweon Lee, Hong Suck Choi
J Electr Electron Mater 2011;24(10):807-811.   Published online October 1, 2011
When the high voltage motor fails in power plants, there will be an occurrence where the generator`s output would be reduced or the generators would trip. Despite of these effects, the causes of deterioration of the high voltage motor is very seldom investigated. In this paper, the collected data which tested in the field over 10 years have been treated statistically, and analyzed to correlate the insulation deterioration of high voltage motor and installation environment, number of start/stop, and service life. Moreover, the proper period of insulation test is developed to map out maintenance strategy and reduce maintenance costs.
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Technology Education : Development of Magnetic Sensor for Live Line Detector of the Underground Cable
Ki Joon Kim, Yong Cheul Oh, Kyeong Seob Lee, Han Seok Jung, Tag Yong Kim, Mi Hui Choi, Min Yeong Soung, Cheol Gi Shin, Jin Sa Kim
J Electr Electron Mater 2011;24(2):166-171.   Published online February 1, 2011
We use the electrical energy and it is essential energy in modern life, but we lay cable underground due to the issue for environment and safety. Safety for worker is still insufficient for the development of safety equipment and related research has been focused on the cable lifetime diagnosis at underground cable work. I have to develop live line detector around the magnetic field were investigated at underground cable. In this paper, we were investigated by variation of coil turns and load due to detection of magnetic field at lines around. And detected value of developing products compared with measured value of milli-gauss meter. As a result, the value of the number of coil turns was found to be proportional to the measured value. But turn-numbers increase showed that the weak noise. I could be confirmed that sensor showed the optimum value from 4,000 to 5,0000.
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Regular Paper : System Implementation and Algorithm Development for Classification of the Activity States Using 3 Axial Accelerometer
Yun Hong Noh, Soo Young Ye, Do Un Jeong
J Electr Electron Mater 2011;24(1):81-88.   Published online January 1, 2011
A real time monitoring system from a PC has been developed which can be accessed through transmitted data, which incorporates an established low powered transport system equipped with a single chip combined with wireless sensor network technology from a three-axis acceleration sensor. In order to distinguish between static posture and dynamic posture, the extracted parameter from the rapidly transmitted data needs differentiation of movement and activity structures and status for an accurate measurement. When results interpret a static formation, statistics referring to each respective formation, known as the K-mean algorithm is utilized to carry out a determination of detailed positioning, and when results alter towards dynamic activity, fuzzy algorithm (fuzzy categorizer), which is the relationship between speed and ISVM, is used to categorize activity levels into 4 stages. Also, the ISVM is calculated with the instrumented acceleration speed on the running machine according to various speeds and its relationship with kinetic energy goes through correlation analysis. With the evaluation of the proposed system, the accuracy level stands at 100% at a static formation and also a 96.79% accuracy with kinetic energy and we can easily determine the energy consumption through the relationship between ISVM and kinetic energy.
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Effect of Ceramic Powder Content and Shape on the Electrical Properties of Ceramic(BaTiO3)-polymer(Epoxy) Composite for Embedded Capacitors
Jeong Woo Han, Jung Rag Yoon, Hae June Je, Dong Ho Lee, Kyung Min Lee
J Electr Electron Mater 2009;22(6):495-500.   Published online June 1, 2009
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Characteristics of BMN Thin Films Deposited on Various Substrates for Embedded Capacitor Applications
J Electr Electron Mater 2007;20(4):342-347.   Published online April 1, 2007
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Single Polysilicon EEPROM Cell and High-voltage Devices using a 0.25 ㎛ Standard CMOS Logic Process
J Electr Electron Mater 2006;19(11):994-999.   Published online November 1, 2006
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Growth and Characterization of ZnO Thin Films on R-plane Sapphire Substrates by Plasma Assisted Molecular Beam Epitaxy
J Electr Electron Mater 2006;19(10):923-929.   Published online October 1, 2006
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Fabrication and Characteristic Analysis of Single Poly-Si Flash EEPROM
J Electr Electron Mater 2006;19(7):601-604.   Published online July 1, 2006
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Determination of an Inelastic Collision Cross Sections for C3F8 Molecule by Electron Swarm Method
J Electr Electron Mater 2006;19(3):301-306.   Published online March 1, 2006
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A Study for Stable End Point Detection in 90 nm WSix/poly-Si Stack-down Gate Etching Process
J Electr Electron Mater 2005;18(3):206-211.   Published online March 1, 2005
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Electrical Conductivities of [(CeO2)1-x(ZrO2)x]0.8(SmO1.5)0.2 Solid Solution
Chung Yeon Lee, Yeong Sig Kim, Nam Cheol Kim
J Electr Electron Mater 2003;16(9):775-782.   Published online September 1, 2003
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Characterization of Embedded Inductors using Partial Element Equivalent Circuit Models
Dong Wook Shin, Chang Hoon Oh, Kyu Bok Lee, Jong Kyu Kim, Il Gu Yun
J Electr Electron Mater 2003;16(5):404-408.   Published online May 1, 2003
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Application and Electrochemical Properties of PVDF based Polymer Electrolyte for Dual lon battery
J Electr Electron Mater 1999;12(4):340-346.   Published online April 1, 1999
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