IP Library Granted Patent US 7,015,652
Granted Patent B2
US 7,015,652 · App. 10/688,507 · Granted Mar 21, 2006

Electronic ballast having end of lamp life, overheating, and shut down protections, and reignition and multiple striking capabilities

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Quick Facts
Patent No.
US 7,015,652
App. No.
10/688,507
Granted
Mar 21, 2006
Kind
B2
Abstract

An electronic ballast having end of lamp life and overheating protection, and automatic reignition and multiple striking capabilities includes AC/DC rectifier, PFC/boost, inverter, and ballast protection and control circuits. The ballast protection and control circuit is operable to place the ballast in a protected state when the lamp load connected to the ballast reaches an end of lamp life condition or the ballast overheats. The ballast protection and control circuit also automatically ignites the lamp load when it is connected to the ballast and generates multiple striking attempts for hard to strike lamp loads. The ballast may be connected to AC or DC power sources and different types of lamp loads, and may include various different types of inverter circuits.

Claims (38)

1. An electronic ballast protection and control circuit, comprising:

an end of lamp life sensing and control circuit adapted to sense an end of lamp life condition in a gas discharge lamp load connected to an electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to be capacitively coupled across an output of the electronic ballast, to sense the end of lamp life condition by sensing a peak-to-peak voltage that develops across the gas discharge lamp load when the end of lamp life condition occurs, to generate an end of lamp life control signal when the peak-to-peak voltage exceeds a predetermined end of lamp life reference voltage, and adapted to set the predetermined end of lamp life reference voltage using an end of lamp life reference component included in the end of lamp life sensing and control circuit, and

wherein the end of lamp life sensing and control circuit is adapted to sense DC rectification and excessively high AC voltage end of lamp life conditions.

2. An electronic ballast protection and control circuit, comprising:

an end of lamp life sensing and control circuit adapted to sense an end of lamp life condition in a gas discharge lamp load connected to an electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to be capacitively coupled across an output of the electronic ballast, to sense the end of lamp life condition by sensing a peak-to-peak voltage that develops across the gas discharge lamp load when the end of lamp life condition occurs, to generate an end of lamp life control signal when the peak-to-peak voltage exceeds a predetermined end of lamp life reference voltage, and adapted to set the predetermined end of lamp life reference voltage using an end of lamp life reference component included in the end of lamp life sensing and control circuit, and

wherein the end of lamp life sensing and control circuit is adapted to be connected in parallel with the gas discharge lamp load.

3. An electronic ballast protection and control circuit, comprising:

an end of lamp life sensing and control circuit adapted to sense an end of lamp life condition in a gas discharge lamp load connected to an electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to be capacitively coupled across an output of the electronic ballast, to sense the end of lamp life condition by sensing a peak-to-peak voltage that develops across the gas discharge lamp load when the end of lamp life condition occurs, to generate an end of lamp life control signal when the peak-to-peak voltage exceeds a predetermined end of lamp life reference voltage, and adapted to set the predetermined end of lamp life reference voltage using an end of lamp life reference component included in the end of lamp life sensing and control circuit, and

wherein the end of lamp life sensing and control circuit is adapted so that current flowing through the sensing circuit is less than current flowing through the gas discharge lamp load.

4. An electronic ballast protection and control circuit, comprising:

an end of lamp life sensing and control circuit adapted to sense an end of lamp life condition in a gas discharge lamp load connected to an electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to be capacitively coupled across an output of the electronic ballast, to sense the end of lamp life condition by sensing a peak-to-peak voltage that develops across the gas discharge lamp load when the end of lamp life condition occurs, to generate an end of lamp life control signal when the peak-to-peak voltage exceeds a predetermined end of lamp life reference voltage, and adapted to set the predetermined end of lamp life reference voltage using an end of lamp life reference component included in the end of lamp life sensing and control circuit, and

wherein the end of lamp life sensing and control circuit includes an AC sensing component adapted to sense AC voltage developed across the gas discharge lamp load.

5. An electronic ballast protection and control circuit, comprising:

an end of lamp life sensing and control circuit adapted to sense an end of lamp life condition in a gas discharge lamp load connected to an electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to be capacitively coupled across an output of the electronic ballast, to sense the end of lamp life condition by sensing a peak-to-peak voltage that develops across the gas discharge lamp load when the end of lamp life condition occurs, to generate an end of lamp life control signal when the peak-to-peak voltage exceeds a predetermined end of lamp life reference voltage, and adapted to set the predetermined end of lamp life reference voltage using an end of lamp life reference component included in the end of lamp life sensing and control circuit, and

wherein the end of lamp life sensing and control circuit is further adapted to sense an overheating condition in the electronic ballast and to cause the electronic ballast to enter an overheating protected state when the overheating condition occurs.

6. A protection and control circuit for an electronic ballast, comprising:

an end of lamp life sensing and control circuit adapted to be capacitively coupled across an output of the electronic ballast, to sense an end of lamp life condition in a gas discharge lamp load connected to the electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to generate an end of lamp life control signal that is used to cause the electronic ballast to enter the end of lamp life protected state,

wherein the end of lamp life sensing and control circuit is adapted to generate the end of lamp life control signal when a DC end of lamp life reference voltage generated by the end of lamp life sensing and control circuit exceeds a predetermined DC end of lamp life reference voltage, and

wherein the end of lamp life sensing and control circuit is adapted to generate the DC end of lamp life reference voltage by generating an AC end of lamp life reference voltage representative of a peak-to-peak voltage across the gas discharge lamp load and converting the AC end of lamp life reference voltage into the DC end of lamp life reference voltage.

7. The protection and control circuit of claim 6 , wherein the end of lamp life sensing and control circuit is adapted to generate the AC end of lamp life reference voltage by dividing the peak-to-peak voltage across the gas discharge lamp load using a voltage divider network.

8. The protection and control circuit of claim 6 , wherein the end of lamp life sensing and control circuit is adapted to convert the AC end of lamp life reference voltage into the DC end of lamp life reference voltage by:

rectifying the AC end of lamp life reference voltage to generate an end of lamp life charging current; and

charging a rectifier circuit capacitor using the end of lamp life charging current to generate the DC end of lamp life reference voltage.

9. A protection and control circuit for an electronic ballast, comprising:

an end of lamp life sensing and control circuit adapted to be capacitively coupled across an output of the electronic ballast, to sense an end of lamp life condition in a gas discharge lamp load connected to the electronic ballast and to cause the electronic ballast to enter an end of lamp life protected state when the end of lamp life condition occurs,

wherein the end of lamp life sensing and control circuit is adapted to generate an end of lamp life control signal that is used to cause the electronic ballast to enter the end of lamp life protected state,

wherein the end of lamp life sensing and control circuit is adapted to generate the end of lamp life control signal when a DC end of lamp life reference voltage generated by the end of lamp life sensing and control circuit exceeds a predetermined DC end of lamp life reference voltage, and

wherein the end of lamp life sensing and control circuit is adapted to determine that the DC end of lamp life reference voltage exceeds the predetermined DC end of lamp life reference voltage by:

applying the DC end of lamp life reference voltage to an end of lamp life voltage controlled switch included in the end of lamp life sensing and control circuit; and

wherein the end of lamp life voltage controlled switch includes an end of lamp life switching voltage that is equal to the predetermined DC end of lamp life reference voltage.

10. The protection and control circuit of claim 9 , wherein the end of lamp life sensing and control circuit is adapted to generate the end of lamp life control signal when the end of lamp life switching voltage of the end of lamp life voltage controlled switch is exceeded by the DC end of lamp life reference voltage.

11. The protection and control circuit of claim 9 , wherein the end of lamp life voltage controlled switch is a Zener diode.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jan 10, 2008
From: BACK BAY CAPITAL FUNDING LLC
To: UNIVERSAL LIGHTING TECHNOLOGIES, INC.
Reel/Frame 020339/0410 →
RELEASE OF SECURITY INTEREST Recorded Jan 2, 2008
From: BANK OF AMERICA, N.A.
To: UNIVERSAL LIGHTING TECHNOLOGIES, INC.
Reel/Frame 020299/0935 →
SECURITY INTEREST Recorded Nov 10, 2004
From: UNIVERSAL LIGHTING TECHNOLOGIES, INC.
To: FLEET CAPITAL CORPORATION, AS AGENT
Reel/Frame 015361/0359 →
SECURITY AGREEMENT Recorded Nov 9, 2004
From: UNIVERSAL LIGHTING TECHNOLOGIES, INC.
To: BACK BAY CAPITAL FUNDING LLC
Reel/Frame 015377/0396 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2004
From: SHI, RUHE
To: UNIVERSAL LIGHTING TECHNOLOGIES
Reel/Frame 015313/0213 →