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Original Articles

A Method to Improve the Performance of Compact Fluorescent Lamps

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Pages 40-48 | Published online: 19 Sep 2013

References

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  • IES Light Sources Committee. 1963. The effect of temperature on fluorescent lamps. Illuminating Engineering 58(no. 2):101–105.
  • EvansG.S. and SnyderP.E. 1966. Performance characteristics of fluorescent lamps utilizing amalgam control of mercury-vapor pressure. Illuminating Engineering 61(no. 1):51–57.
  • BernierC.J. and HeffermanJ.C. 1964. Design and applications of new high-temperature fluorescent lamps. Illuminating Engineering 59(no. 12):801–807.
  • WaymouthJ.F. 1971. Electric Discharge Lamps. Cambridge: Massachusetts Institute of Technology.
  • BleekerN. and VeenstraW. 1990. The Performance of four foot fluorescent lamps as a function of ambient temperature for 60 Hz and high frequency ballasts. Paper presented at the 1990 IESNA Annual Conference.
  • SimonovitchM.J.; RubensteinF.M.; and VerderberR.R. 1984. Determining lamp/ballast system performance with a temperature-controlled integrating chamber. J of the IES 14(no. 1):364–378.
  • BloemJ.; BouwkneftA.; and WesselinkG.A. 1977. Some new mercury alloys for use in fluorescent lamps. J of the IES 6(no. 3):141–147.
  • FrankG. 1971. Z. Naturforschung. 26A: 150.

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