Claims
- 1. A circuit for driving cold cathode tubes comprising:
an oscillator having a high side MOSFET driver and a low side MOSFET driver; two high voltage MOSFETs; a resistor/capacitor network; and a set of resonance elements comprising a single wound inductive storage device, a resonance capacitor and a cold cathode tube, wherein said resistor/capacitor network directs said oscillator to achieve a first resonance frequency to drive said resonance elements and causes said cold cathode tube to conduct and thereafter said resistor/capacitor network directs said oscillator to achieve a second resonance frequency to drive said resonance elements and illuminate said cold cathode tube.
- 2. The circuit of claim 1, further comprising a low direct current voltage power source to supply power to said oscillator.
- 3. The circuit of claim 1, wherein said circuit has a first resistor/capacitor network to direct said oscillator to achieve said first resonance frequency and a second resistor/capacitor network to direct said oscillator to achieve said second resonance frequency.
- 4. The circuit of claim 1, wherein said first resonance frequency is about 1800 root mean square and said second resonance frequency is about 835 root mean square.
- 5. The circuit of claim 1, wherein said circuit further comprises a direct current converter circuit to rectify and filter an alternating current input.
- 6. The circuit of claim 5, wherein said direct current converter circuit is a split voltage device.
- 7. The circuit of claim 5, wherein said direct current converter circuit is a full wave device and said circuit further comprises a direct current blocking capacitor.
- 8. The circuit of claim 1, wherein said set of resonance elements further comprises a filter capacitor and said circuit further comprises a current sensor.
- 9. The circuit of claim 8, wherein said circuit has at least two sets of resonance elements.
- 10. The circuit of claim 1, further comprising a feedback loop to control current by controlling voltage supply.
- 11. A circuit for driving cold cathode tubes comprising:
a split voltage direct current power converter; a low direct current voltage power source; an oscillator having a high side MOSFET driver and a low side MOSFET driver; two high voltage MOSFETs; a resistor/capacitor network; and a set of resonance elements comprising a single wound inductive storage device, a resonance capacitor and a cold cathode tube, wherein said resistor/capacitor network directs said oscillator to achieve a first resonance frequency to drive said resonance elements and causes said cold cathode tube to conduct and thereafter said resistor/capacitor network directs said oscillator to achieve a second resonance frequency to drive said resonance elements and illuminate said cold cathode tube.
- 12. The circuit of claim 11, wherein said circuit has a first resistor/capacitor network to direct said oscillator to achieve said first resonance frequency and a second resistor/capacitor network to direct said oscillator to achieve said second resonance frequency.
- 13. The circuit of claim 11, wherein said first resonance frequency is about 1800 root mean square and said second resonance frequency is about 835 root mean square.
- 14. A circuit for driving cold cathode tubes comprising:
a full wave direct current power converter; a low direct current voltage power source; an oscillator having a high side MOSFET driver and a low side MOSFET driver; two high voltage MOSFETs; a direct current blocking capacitor; a resistor/capacitor network; a set of resonance elements comprising a single wound inductive storage device, a filter capacitor, a resonance capacitor and a cold cathode tube, and a current sensor, wherein said resistor/capacitor network directs said oscillator to achieve a first resonance frequency to drive said resonance elements and causes said cold cathode tube to conduct and thereafter said resistor/capacitor network directs said oscillator to achieve a second resonance frequency to drive said resonance elements and illuminate said cold cathode tube.
- 15. The circuit of claim 14, wherein said first resonance frequency is about 1800 root mean square and said second resonance frequency is about 835 root mean square.
- 16. The circuit of claim 14, wherein said circuit comprises a plurality of sets of resonance elements and a plurality of current sensors.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Patent Application Serial No. 60/414,096, filed Sep. 25, 2002. The disclosure of this application is hereby incorporated by reference in its entirety, including all figures, tables, and drawings.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60414096 |
Sep 2002 |
US |