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Electromagnetic Simulation of Ring-shaped Electrodeless fluorescent Lamps and its Electrical and Optical Characteristics

환형 무전극 형광램프의 전자계 시뮬레이션, 전기적 및 광학적 특성

  • 최용성 (원광대학교 전기전자 및 정보공학부) ;
  • 조주웅 (원광대학교 전자재료공학) ;
  • 이영환 (원광대학교 전자재료공학) ;
  • 김광수 (원광대학교 전자재료공학) ;
  • 박대희 (원광대학교 전기전자 및 정보공학부)
  • Published : 2004.05.01

Abstract

In recent, there have been several developments in lamp technology that promise savings in electrical power consumption and improved quality of the lighting space. Above all, the advantage of ring-shaped electrodeless fluorescent lamp is the removal of internal electrodes and heating filaments that are a light-limiting factor of conventional fluorescent lamps. The ring-shaped electrodeless lamp is intended as a high efficiency replacement for the incandescent reflector lamp in many applications. Therefore, the life time of ring-shaped electrodeless fluorescent lamps is substantially higher than that of conventional fluorescent lamps and last up to 60,000 hours. In this paper, maxwell 3D finite element analysis program(Ansoft) was used to obtain electromagnetic properties associated with the coil and nearby structures. The electromagnetic emitting properties were presented by 3D simulation software operated at 250 KHz and some specific conditions. The optical characteristics were measured luminance and a temperature and an optical spectrum distribution for 10 min in a one minute interval at the same time. With a goal of finding alternative materials, we show measurement results of electrical characteristics of a ring-shaped electrodeless fluorescent lamp as a function of frequency and the number of coil turns using a highly permeable($\mu$$_{r}$(equation omitted) 2,000) Mn-Zn ferrite. These results are compared with those of conventional ring-shaped electrodeless fluorescent lamp. It is found that the resistance, inductance and impedance are increased while the quality factor decreases as frequency increases.s.

Keywords

References

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