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Original Articles

Fluorescent Lamp Starting Voltage Relationships at 60 HZ and High Frequency

Pages 36-46 | Published online: 20 Sep 2013

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Nanjou Aoike, Kouhei Yuhara & Yorikiyo Nobuhara. (1984) IES Transaction: Electronic Ballast for Fluorescent Lamp Lighting System of 100 Lm/W Overall Efficiency. Journal of the Illuminating Engineering Society 14:1, pages 225-239.
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Articles from other publishers (18)

J. Fraytag, M. F. da Silva, N. B. Chagas, R. N. do Prado & M. A. Dalla Costa. (2010) Lighting systems energy efficiency based on different human visual conditions. Lighting systems energy efficiency based on different human visual conditions.
C. Branas, F.J. Azcondo & S. Bracho. (2005) Design of<tex>$LC_pC_s$</tex>Resonant Inverters as a Power Source for HID Lamp Ballast Applications. IEEE Transactions on Industry Applications 41:6, pages 1584-1593.
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F.E. Bisogno, A.R. Seidel, R. Holsbach & R.N. do Prado. (2002) Resonant filter applications in electronic ballast. Resonant filter applications in electronic ballast.
M.A.D. Costa, M.L. Landerdahl & R.N. do Prado. (2002) Independent multi-lamp electronic ballast. Independent multi-lamp electronic ballast.
C. Branas, F.J. Azcondo & S. Bracho. (1999) Electronic ballast for 250 W HPS lamps based on the LCC resonant inverter with soft start-up and quasi-optimum control. Electronic ballast for 250 W HPS lamps based on the LCC resonant inverter with soft start-up and quasi-optimum control.
R.N. do Prado, M.F. da Silva, M. Jungbeck & A.R. Seidel. (1999) Low cost high-power-factor electronic ballast for compact fluorescent lamps. Low cost high-power-factor electronic ballast for compact fluorescent lamps.
R.N.D. Prado & S.A. Bonafldo. (1999) A high-power-factor electronic ballast using a flyback push-pull integrated converter. IEEE Transactions on Industrial Electronics 46:4, pages 796-802.
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Guan-Chyun Hsieh, Chang-Hua Lin & Ben-Jong Yu. (1998) Igniting behaviour of the fluorescent lamp in high-frequency operation. Igniting behaviour of the fluorescent lamp in high-frequency operation.
Zhi Li, P.K.T. Mok, Wing-Hung Ki & J.K.O. Sin. (1997) A simple method to design resonant circuits of electronic ballast for fluorescent lamps. A simple method to design resonant circuits of electronic ballast for fluorescent lamps.
R.N. de Prado, S.A. Bonaldo, D.S. Greff & F.E. Bisogno. (1997) A unity power factor electronic ballast for fluorescent lighting. A unity power factor electronic ballast for fluorescent lighting.
R.N. do Prado, S.A. Bonaldo, M.C. Moreira & D.L.R. Vidor. (1996) Electronic ballast with a high power factor for fluorescent lamps. Electronic ballast with a high power factor for fluorescent lamps.
T.-H. Yu, L.-M. Wu & T.-F. Wu. (1994) Comparisons among self-excited parallel resonant, series resonant and current-fed push-pull electronic ballasts. Comparisons among self-excited parallel resonant, series resonant and current-fed push-pull electronic ballasts.
M.C. Cosby & R.M. Nelms. (1994) A resonant inverter for electronic ballast applications. IEEE Transactions on Industrial Electronics 41:4, pages 418-425.
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M.C. Cosby & R.M. Nelms. (1993) Designing a parallel-loaded resonant inverter for an electronic ballast using the fundamental approximation. Designing a parallel-loaded resonant inverter for an electronic ballast using the fundamental approximation.
E.E. Hammer. (1990) Starting voltage characteristics of 40-W biaxial fluorescent lamps. IEEE Transactions on Industry Applications 26:3, pages 498-502.
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R.R. Verderber, O.C. Morse & F.M. Rubinstein. (1989) Performance of electronic ballast and controls with 34 and 40 Watt F40 fluorescent lamps. IEEE Transactions on Industry Applications 25:6, pages 1049-1059.
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E.E. Hammer. (1988) Starting voltage characteristics of 40 W biaxial fluorescent lamps. Starting voltage characteristics of 40 W biaxial fluorescent lamps.
Muhammad TOLA, Atsushi HATTORI & Hiroshi BO. (1985) An investigation of the model constants for the fluorescent lamps with resistance ballast circuit.. Journal of Light & Visual Environment 9:1, pages 49-53.
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