• 제목/요약/키워드: magnetic resistor

검색결과 35건 처리시간 0.024초

저 내열 기판소재 전자부품 실장을 위한 자기유도 솔더링 (Magnetic Induction Soldering Process for Mounting Electronic Components on Low Heat Resistance Substrate Materials)

  • 김영도;최정식;김민수;김동진;고용호;정명진
    • 마이크로전자및패키징학회지
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    • 제31권2호
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    • pp.69-77
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    • 2024
  • 최근 전자기기의 소형화, 다기능화 등으로 인한 전자부품 실장 영역의 한계치를 극복하고 플라스틱 사출물에 직접 회로를 인쇄하고 소자 및 부품을 실장하는 molded interconnect device (MID) 형태의 패키징 기법이 도입되고 있다. 다만 열 안정성이 낮은 플라스틱 사출물을 사용하는 경우, 종래의 리플로우 공정을 통한 부품 실장에 어려움이 있다. 본 연구에서는 특정 부위 혹은 소재만을 가열할 수 있는 유도가열 현상을 이용하여 플라스틱에 어떠한 열 데미지 없이 솔더를 용융시켜 실장하는 공정을 개발하였다. 가열하고자 하는 부위에 자속을 집중시킬 수 있는 유도가열용 Cu 코일 형상을 설계하고, 유한요소해석을 통해 패드부 자속 집중 및 가열 정도를 검증하였다. Polycarbonate 기판 위에 실장공정 검증을 위한 LED, capacitor, resistor, connector를 각각 유도가열을 통해 실장하고 작동여부를 확인하였다. 본 연구를 통해 리플로우 공법의 한계를 극복가능한 자기유도를 통한 선택적 가열 공정의 적용 가능성을 제시하였다.

A Light Incident Angle Stimulated Memristor Based on Electrochemical Process on the Surface of Metal Oxide

  • 박진주;용기중
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.174-174
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    • 2014
  • Memristor devices are one of the most promising candidate approaches to next-generation memory technologies. Memristive switching phenomena usually rely on repeated electrical resistive switching between non-volatile resistance states in an active material under the application of an electrical stimulus, such as a voltage or current. Recent reports have explored the use of variety of external operating parameters, such as the modulation of an applied magnetic field, temperature, or illumination conditions to activate changes in the memristive switching behaviors. Among these possible choices of signal controlling factors of memristor, photon is particularly attractive because photonic signals are not only easier to reach directly over long distances than electrical signal, but they also efficiently manage the interactions between logic devices without any signal interference. Furthermore, due to the inherent wave characteristics of photons, the facile manipulation of the light ray enables incident light angle controlled memristive switching. So that, in the tautological sense, device orienting position with regard to a photon source determines the occurrence of memristive switching as well. To demonstrate this position controlled memory device functionality, we have fabricated a metal-semiconductor-metal memristive switching nanodevice using ZnO nanorods. Superhydrophobicity employed in this memristor gives rise to illumination direction selectivity as an extra controlling parameter which is important feature in emerging. When light irradiates from a point source in water to the surface treated device, refraction of light ray takes place at the water/air interface because of the optical density differences in two media (water/air). When incident light travels through a higher refractive index medium (water; n=1.33) to lower one (air; n=1), a total reflection occurs for incidence angles over the critical value. Thus, when we watch the submerged NW arrays at the view angles over the critical angle, a mirror-like surface is observed due to the presence of air pocket layer. From this processes, the reversible switching characteristics were verified by modulating the light incident angle between the resistor and memristor.

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제어 가능한 전류원 기반의 인버터를 이용한 실제적 태양광 발전 시스템 모델링 (Modeling of Practical Photovoltaic Generation System using Controllable Current Source based Inverter)

  • 오윤식;조규정;김민성;김지수;강성범;김철환;이유진;고윤태
    • 전기학회논문지
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    • 제65권8호
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    • pp.1340-1346
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    • 2016
  • Utilization of Distributed Generations (DGs) using Renewable Energy Sources (RESs) has been constantly increasing as they provide a lot of environmental, economic merits. In spite of these merits, some problems with respect to voltage profile, protection and its coordination system due to reverse power flow could happen. In order to analyze and solve the problems, accurate modeling of DG systems should be preceded as a fundamental research task. In this paper, we present a PhotoVoltaic (PV) generation system which consists of practical PV cells with series and parallel resistor and an inverter for interconnection with a main distribution system. The inverter is based on controllable current source which is capable of controlling power factors, active and reactive powers within a certain limit related to amount of PV generation. To verify performance of the model, a distribution system based on actual data is modeled by using ElectroMagnetic Transient Program (EMTP) software. Computer simulations according to various conditions are also performed and it is shown from simulation results that the model presented is very effective to study DG-related researches.

전기차용 고전압 케이블의 화재 위험성에 관한 연구 (A Study on the Fire Risk of High-voltage Cables for Electrical Vehicles)

  • 강신동;박예진;김시현;김재호
    • 한국안전학회지
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    • 제38권4호
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    • pp.8-14
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    • 2023
  • This study presents the characteristics of short circuits (SCs) caused by excessive currents in high-voltage cables used in electric vehicles and emphasizes the need to calculate the cross-sectional areas of these cables according to the SC current. Three direct current power supplies were connected in parallel to test the SC characteristics caused by excessive currents, and a timer and a magnetic contactor were used to deliver the conduction time and SC current. A circular infrared-radiation heater was used to test the temperature-dependent SC characteristics, a thermocouple was used to measure the temperature, and a shunt resistor was used to measure the current. As the SC current increased, the fusing time of the cable decreased. Additionally, a high-voltage cable (with an area of 16 mm2 ) used in electric vehicles fused when a current (approximately equal to 55 times the allowable current) flowed for 0.2 s (operating time of the protective device). When the SC current is 10 kA, the cable may fuse during the operating time of the protective device, thus creating a fire hazard. In electric vehicles, the size of the SC current increases in proportion to the capacity of the battery. Thus, the cross-sectional areas of the cables used should be calculated accordingly, and cable operations should be properly coordinated with the surrounding protective devices.

부성 임피던스 변환기를 적용한 자기공명 방식 무선전력전송 시스템의 효율 개선 (Improvement of Power Transfer Efficiency Using Negative Impedance Converter for Wireless Power Transfer System with Magnetic Resonant Coupling)

  • 윤세화;김태형;박진관;김성태;윤기호;육종관
    • 한국전자파학회논문지
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    • 제28권12호
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    • pp.933-940
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    • 2017
  • 본 논문에서는 부성 임피던스 변환기(Negative Impedance Converter: NIC)를 적용한 무선전력전송 시스템을 제안하였다. 차폐물질의 영향을 고려하여 전송 시스템을 구성하였다. 전송효율 개선을 위하여 부성 임피던스 변환기에서 발생한 부성저항을 적용하여 송신단의 Q 인자가 향상했다. NIC는 연산증폭기와 저항 소자로 구현하였으며, 특정 저항에 따른 부성저항 특성을 얻었다. 송신 코일의 크기는 $250mm{\times}250mm{\times}0.8mm$이며, 임피던스와 Q 인자는 각각 $31+j1874{\Omega}$, 60이다. 부성저항이 약 $30{\Omega}$일 때, 송신단의 저항이 감소하여 Q 인자는 약 900으로 증가했으며, 이는 기존 대비 약 15배 향상된 결과이다. 제안하는 시스템에 대하여 전송 효율을 측정하였으며, 기존 시스템과 비교하여 효율이 크게 향상되었다. 따라서 NIC의 효과로 전송 효율이 개선될 수 있는 것을 검증하였다.