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Lamp starting circuit

  • US 5,047,694 A
  • Filed: 06/30/1989
  • Issued: 09/10/1991
  • Est. Priority Date: 06/30/1989
  • Status: Expired due to Term
First Claim
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1. A starting, operating and hot restarting circuit for a high pressure sodium lamp comprising the combination offirst and second terminals connectable to an AC source;

  • connector means connectable to an HPS lamp;

    an inductive ballast connected to said first terminal and to one of said connector means so that, in use, said ballast is in series with a lamp connected to said connector means across said AC source, said ballast includingfirst and second winding portions and a tap at the junction of said portions, said second portion being connected to said first terminal and having a significantly larger number of windings than said first portion;

    a semiconductor switch having a controllable conductive path connected at one end to said ballast so that said first portion is between said one end and said tap;

    a storage capacitor connected between the other end of said conductive path and said tap;

    a voltage-sensitive breakdown device connected to said switch, said breakdown device having a breakdown voltage significantly greater than the amplitude of said AC source, said breakdown device being responsive to the voltage across said storage capacitor so that when the voltage across said storage capacitor exceeds the breakdown voltage of said breakdown device, said device conducts and said switch becomes conductive, causing current flow through said first portion of said ballast, inducing high voltage in said second portion which is applied to said lamp connector means to start a lamp connected thereto;

    a charging circuit connected between said tap and said second terminal, said charging circuit including a first diode, a pumping capacitor and a choke in series with each other and a second diode connected between said storage and pumping capacitors,said diodes being oppositely poled so that said pumping capacitor is charged during one-half of each AC cycle and said storage capacitor is charged during the other half of each cycle to a voltage higher than the half cycle amplitude of said source by an amount proportional to the charge on said pumping capacitor, the voltage on said storage capacitor increasing during each cycle until said breakdown device conducts.

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