Repeatedly Resonating Ignition Circuit for HID Lamp Electronic Ballasts

An ignition circuit is proposed for the electronic ballast of high-intensity discharge (HID) lamps. The igniter can be integrated into the bridge inverter by commonly using the power switches of the inverter and the reactive components of the output filter. The reactive components act like an energy...

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Veröffentlicht in:IEEE transactions on industrial electronics (1982) 2011-01, Vol.58 (1), p.244-249
Hauptverfasser: Moo, Chin-Sien, Huang, Chun-Kai, Lee, Kuo-Hsing, Huang, Dai-Jie
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container_end_page 249
container_issue 1
container_start_page 244
container_title IEEE transactions on industrial electronics (1982)
container_volume 58
creator Moo, Chin-Sien
Huang, Chun-Kai
Lee, Kuo-Hsing
Huang, Dai-Jie
description An ignition circuit is proposed for the electronic ballast of high-intensity discharge (HID) lamps. The igniter can be integrated into the bridge inverter by commonly using the power switches of the inverter and the reactive components of the output filter. The reactive components act like an energy tank that can resonate repeatedly by turning the two power switches of the inverter on and off alternately. As a result, a high voltage can be accumulated on the capacitor to ignite the HID lamp. Once the lamp has been ignited successfully, the energy tank stops resonating but performs as the output filter of the inverter. A laboratory circuit of the igniter is built and implemented on an electronic ballast, with the full-bridge inverter designed for 150-W metal halide lamps. Experimental results demonstrate that the proposed circuit accomplishes the expected functions of ignition and filtering.
doi_str_mv 10.1109/TIE.2010.2044739
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The igniter can be integrated into the bridge inverter by commonly using the power switches of the inverter and the reactive components of the output filter. The reactive components act like an energy tank that can resonate repeatedly by turning the two power switches of the inverter on and off alternately. As a result, a high voltage can be accumulated on the capacitor to ignite the HID lamp. Once the lamp has been ignited successfully, the energy tank stops resonating but performs as the output filter of the inverter. A laboratory circuit of the igniter is built and implemented on an electronic ballast, with the full-bridge inverter designed for 150-W metal halide lamps. Experimental results demonstrate that the proposed circuit accomplishes the expected functions of ignition and filtering.</abstract><cop>New York</cop><pub>IEEE</pub><doi>10.1109/TIE.2010.2044739</doi><tpages>6</tpages></addata></record>
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subjects Ballast
Bridge circuits
Capacitors
Circuits
Electronic ballast
Electronic ballasts
Electronics
Filters
High intensity discharge lamps
high-intensity discharge (HID) lamp
igniter
Igniters
Ignition
Inverters
Laboratories
Lamps
resonant energy tank
Tanks
Turning
Voltage
title Repeatedly Resonating Ignition Circuit for HID Lamp Electronic Ballasts
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