Claims
- 1. An ionization detection circuit, comprising:
a charge pump; an ignition coil comprising a primary winding with a first end and a second end and a secondary winding with a first end and a second end; an ignition plug operably connected between said second end of said secondary winding and ground; a current mirror having a first terminal operably connected to said first end of said secondary winding, a second terminal operably connected to said charge pump and a third terminal; and a first switch having a command input and a first and a second end, wherein said first switch is operably connected between said second end of said primary winding and ground.
- 2. The ionization detection circuit according to claim 1 further comprising:
a first resistor operably connected between said second end of said first switch and ground; and a second switch having at least two inputs and an output, wherein a first input is operably connected to said third terminal of said current mirror, and a second input is operably connected to said second end of said first switch, whereby said output of said second switch is multiplexed between an ionization signal and a charge current feedback signal.
- 3. The ionization detection circuit according to claim 1 wherein said charge pump comprises a driver chip having an input pin operably connected to a DC voltage and an output pin operably connected to said second terminal of said current mirror.
- 4. The ionization detection circuit according to claim 1 wherein said current mirror comprises a pair of matched transistors.
- 5. The ionization detection circuit according to claim 1 further comprising a second resistor operably connected between said third terminal of said current mirror and ground potential.
- 6. The ionization detection circuit according to claim 1 further comprising a resistor operably connected between said switch and ground potential.
- 7. The ionization detection circuit according to claim 1 further comprising a resistor operably connected between said first terminal of said current mirror and said second end of said secondary winding, whereby ionization current is limited.
- 8. The ionization detection circuit according to claim 1 further comprising a diode operably connected between said first end of said secondary winding and ground potential.
- 9. The integrated ignition system according to claim 2 further comprising a first amplifier having an input and an output, wherein said input is operably connected to said output of said second switch.
- 10. The integrated ignition system according to claim 2 further comprising:
a difference comparator having an output operably connected to said command input of said first switch; a first amplifier having an input and an output, wherein said input is operably connected to said output of said second switch and said output is operably connected to a first input of said difference comparator; a second amplifier having an input and an output, wherein said input is operably connected to said output of said second switch and said output is operably connected to a second input of said difference comparator; and a charge gate signal generator having an output operably connected to said output of said first amplifier.
- 11. The ionization detection circuit according to claim 4 wherein said each of said transistors comprises a base terminal, a collector terminal and an emitter terminal, whereby said base terminals are operably connected to each other and said base terminals are operably connected to each other.
- 12. The integrated ignition system according to claim 9 wherein said integrated ignition system further comprises:
a charge gate input pin operably connected to said command input of said first switch; a ground pin; a battery power supply pin operably connected to a first end of said primary winding; and an output pin operably connected to said output of said amplifier.
- 13. The ionization detection circuit according to claim 9 wherein said charge pump comprises a driver chip having an input pin operably connected to a DC voltage and an output pin operably connected to said second terminal of said current mirror.
- 14. The integrated ignition system according to claim 10 further comprising:
a first resistor operably connected between said output of said first amplifier and said output of said charge gate signal generator; a second resistor operably connected between said output of said charge gate signal generator and ground; and a third resistor operably connected between said output of said second amplifier and ground.
- 15. The integrated ignition system according to claim 14 wherein said integrated ignition system further comprises:
a ground pin; a battery power supply pin operably connected to said first end of said primary winding; and an output pin operably connected to said output of said amplifiers.
- 16. The ionization detection circuit according to claim 14 wherein said charge pump comprises a driver chip having an input pin operably connected to a DC voltage and an output pin operably connected to said second terminal of said current mirror.
- 17. An ionization detection circuit, comprising:
a charge pump; an ignition coil comprising a primary winding having a first end and a second end and a secondary winding having a first end and a second end; a current mirror having a first terminal operably connected to said first end of said secondary winding, a second terminal operably connected to said charge pump and a third terminal; an ignition plug operably connected between said second end of said secondary winding and ground; a first switch having a command input, a first end and a second end, wherein said first switch is operably connected between said second end of said primary winding and ground; a first resistor operably connected between said second end of said first switch and ground potential; a second resistor operably connected between said third terminal of said current mirror and ground potential; a third resistor operably connected between said first terminal of said current mirror and said first end of said secondary winding, whereby ionization current is limited; and a diode operably connected between said first end of said secondary winding and ground potential, wherein said current mirror comprises a pair of matched transistors and wherein each of said transistors comprises a base terminal, a collector terminal and an emitter terminal, whereby said base terminals are operably connected to each other and said base terminals are operably connected to each other.
- 18. The ionization detection circuit according to claim 17 wherein said charge pump comprises a driver chip having an input pin operably connected to a DC voltage and an output pin operably connected to said second terminal of said current mirror.
- 19. The ionization detection circuit according to claim 18 further comprising a second switch having at least two inputs and an output, wherein a first input is operably connected to said third terminal of said current mirror, and a second input is operably connected to said second end of said first switch, whereby said output of said switch is multiplexed between an ionization signal and a charge current feedback signal.
- 20. The integrated ignition system according to claim 19 further comprising a first amplifier having an input and an output, wherein said input is operably connected to said output of said second switch.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. Provisional Application Serial Nos. 60/423,163 filed Nov. 1, 2002, and 60/467,660, filed May 2, 2003, the entire disclosure of these applications being considered part of the disclosure of this application and hereby incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60423163 |
Nov 2002 |
US |
|
60467660 |
May 2003 |
US |