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Original Articles

Igniting High-Pressure Lamps with Electronic Ballasts

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Pages 14-20 | Published online: 19 Sep 2013

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Ray G. Gibson. (2005) Yellow to White: Ceramic Discharge Metal Halide Retrofit Lamps. LEUKOS 1:2, pages 69-84.
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Articles from other publishers (13)

D. Lin, W. Yan & S.Y.R. Hui. (2011) Modelling the warm-up phase of the starting processes of high-intensity discharge lamps. IET Science, Measurement & Technology 5:6, pages 199-205.
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Chin-Sien Moo, Sheng-Yi Tang, Wen-Tian Tsai & Hung-Liang Cheng. (2008) Acceleration Scenarios of Metal Halide Lamps. IEEE Transactions on Plasma Science 36:4, pages 1907-1912.
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Wei Yan & S.Y.R. Hui. (2007) The Influence of the Startup Process of Small Metal-Halide (MH) Lamps on Electronic Ballast Design. IEEE Transactions on Power Electronics 22:5, pages 1583-1591.
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Sheng Y. Tang, Jia H. Chen, Ching R. Lee & Hung L. Cheng. (2007) Starting Transient Characteristics of Metal Halide Lamps. Starting Transient Characteristics of Metal Halide Lamps.
Jia Chen, Kong Ng, Chin Moo, Sheng Tang & Ching Lee. (2006) Accelerating Start-up of Metal Halide Lamps. Accelerating Start-up of Metal Halide Lamps.
Kyu-Chan Lee & Bo Hyung Cho. (2003) Design and analysis of automotive high intensity discharge lamp ballast using micro controller unit. IEEE Transactions on Power Electronics 18:6, pages 1356-1364.
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J. Garcia-Garcia, M. Rico-Secades, E.L. Corominas, J.M. Alonso, J. Ribas, J. Cardesin & A.J. Calleja. (2002) Using solid-state over-voltage protection devices for high intensity discharge lamps ignition. Using solid-state over-voltage protection devices for high intensity discharge lamps ignition.
Kyu-Chan Lee & B.H. Cho. (2000) Design and analysis of automotive HID lamp ballast system using auxiliary winding. Design and analysis of automotive HID lamp ballast system using auxiliary winding.
T.F. Lin, C.S. Moo, M.J. Soong, W.M. Chen & C.R. Lee. (2000) A high-power-factor electronic ballast for metal halide lamps with hot restarting. A high-power-factor electronic ballast for metal halide lamps with hot restarting.
S. A. El‐Hamamsy & M. H. Kheraluwala. 2000. Wiley Encyclopedia of Electrical and Electronics Engineering. Wiley Encyclopedia of Electrical and Electronics Engineering.
J.M. Alonso, C. Blanco, E. Lopez, A.J. Calleja & M. Rico. (1998) Analysis, design, and optimization of the LCC resonant inverter as a high-intensity discharge lamp ballast. IEEE Transactions on Power Electronics 13:3, pages 573-585.
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C.S. Moo, C.R. Lee & H.C. Yen. (1998) A high-power-factor constant-frequency electronic ballast for metal halide lamps. A high-power-factor constant-frequency electronic ballast for metal halide lamps.
J.M. Alonso, C. Blanco, A.J. Calleia, E. Lopez & M. Rico. (1996) Current-clamped resonant inverter: analysis and design as a high pressure sodium lamp ballast. Current-clamped resonant inverter: analysis and design as a high pressure sodium lamp ballast.

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