EP1636660B1

High efficiency off-line linear power supply

Abstract

This record has no abstract on file.

EP1636660B1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Expired 8 June 2024, 2.3 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

44 claims: 4 independent, 40 dependent

  1. 1
    A power supply circuit comprising:a first switching device (10) having a control terminal and a control terminal switching threshold, the first switching device (10) charging current from a voltage source into a charge storage element (20);characterized by a control circuit (50) controlling an on/off operation of the first switching device (10) whereby the first switching device (10) is turned on when the voltage of the voltage source is below a predetermined level and turned off when the voltage of the voltage source is above the predetermined level;a control voltage supply circuit (40) providing a control voltage to the control terminal of the first switching device (10) substantially in excess of the switching threshold in response to the control circuit (50) when the voltage of the voltage source is below the predetermined level thereby to drive the switching device (10) on in a saturated region of operation;and the charge storage element (20) for providing an output voltage of the power supply.
  2. 18
    The power supply circuit of one of the claims 1-17 as a catear power supply circuit comprising:a first switching transistor (Q11) having the control terminal and the control terminal switching threshold, the first switching transistor (Q11) charging current from the voltage source (V+) into a charge storage capacitor (C4);the control circuit (50) controlling an on/off operation of the first switching transistor (40) whereby the first switching transistor (40) is enabled to be turned on when the voltage of the voltage source (V+) is below the predetermined level and is turned off when the voltage of the voltage source (V+) is above the predetermined level;the control voltage supply circuit (40) providing the control voltage substantially in excess of the switching threshold, the control voltage being supplied to the control terminal of the first switching transistor (Q11) by the control circuit (50) such that when the voltage of the voltage source (V+) is below the predetermined level, the control voltage is supplied to the control terminal of the first switching transistor (Q11) thereby to drive the first switching transistor (Q11) on in a saturated region of operation and when the voltage of the voltage source (V+) is above the predetermined threshold, the control voltage is not supplied to the control terminal, thereby turning the first switching transistor (Q11) off;and the charge storage capacitor (C4) for providing the output voltage of the power supply.
  3. 34
    A lighting dimmer comprising:an electronic lamp dimmer circuit providing power to a lamp load;a power supply according to one of the claims 1-33 as a cat-ear power supply coupled to the electronic lamp dimmer circuit for providing power to electronic circuits of the lighting dimmer, the catear power supply circuit comprising: the switching device (10) having the control terminal and the control terminal switching threshold, the switching device (10) charging current from the voltage source into the charge storage element (20);the control circuit (50) controlling the on/off operation of the switching device (10) whereby the switching device (10) is turned on when the voltage of the voltage source is below the predetermined level and turned off when the voltage of the voltage source is above the predetermined level;the control voltage supply circuit (40) providing the control voltage to the control terminal of the switching device (10) substantially in excess of the switching threshold when the voltage of the voltage source is below the predetermined level thereby to drive the switching device (10) on in the saturated region of operation;and the charge storage element (20) for providing the output voltage of the power supply.
  4. 39
    A method of providing power to an electronic circuit in a two wire dimmer connecting a hot line of an AC network to a lamp load, the method comprising:obtaining power from the two wire dimmer during regions of an AC waveform formed across a portion of a circuit of the dimmer when a phase cut switching device of the dimmer providing power to the lamp load is substantially off;driving a switching device providing charging current to a charge storage capacitor on in a saturated region of operation of the switching device when a voltage from a voltage source developed in the dimmer from the AC waveform is less than a predetermined level, and turning the switching device off when the voltage is above the predetermined level;and providing a voltage across the charge storage device as an output voltage.