Claims
- 1. A detonator assembly comprising:
an energy source having a surface, the energy source further having electrodes; and a resistor formed on the surface of the energy source, one end of the resistor being electrically connected to one of the electrodes.
- 2. The detonator assembly of claim 1, wherein the energy source comprises a capacitor.
- 3. The detonator assembly of claim 1, further comprising an integrated capacitor discharge unit having the capacitor and the resistor.
- 4. The detonator assembly of claim 3, wherein the integrated capacitor discharge unit comprises a thick-film circuit that electrically connects the capacitor and the resistor.
- 5. The detonator assembly of claim 4, wherein the integrated capacitor discharge unit comprises at least another component, the at least another component electrically connected by the thick-film circuit.
- 6. The detonator assembly of claim 4, wherein the resistor comprises a charging resistor formed by thick-film deposition.
- 7. The detonator assembly of claim 3, further comprising a switch electrically connected to the capacitor discharge unit.
- 8. The detonator assembly of claim 3, further comprising an initiator electrically connected to the capacitor discharge unit.
- 9. The detonator assembly of claim 3, wherein the initiator comprises one of a semiconductor bridge (SCB) detonator, exploding bridge wire (EBW) detonator, and exploding foil initiator (EFI) detonator.
- 10. The detonator assembly of claim 2, wherein the capacitor comprises a housing, the housing defining the surface.
- 11. The detonator assembly of claim 2, wherein the resistor is further electrically connected to another one of the electrodes.
- 12. The detonator assembly of claim 2, wherein the resistor comprises a bleed resistor adapted to bleed charge form the capacitor.
- 13. The detonator assembly of claim 12, wherein the capacitor has a housing with plural surfaces, the detonator assembly further comprising a second resistor formed on one of the surfaces of the capacitor housing, one end of the second resistor being electrically connected to one of the electrodes.
- 14. The detonator assembly of claim 13, wherein the second resistor has a second end to receive a charging voltage for the capacitor.
- 15. The detonator assembly of claim 14, further comprising a charging pad electrically connected to the second end of the second resistor.
- 16. The detonator assembly of claim 2, wherein the capacitor has a housing with plural surfaces, the detonator assembly further comprising a switch on one of the surfaces of the capacitor housing, one side of the switch being electrically connected to one end of the electrodes of the capacitor.
- 17. The detonator assembly of claim 16, wherein the switch comprises an overvoltage switch responsive to application of a predetermined voltage.
- 18. The detonator assembly of claim 17, wherein the over-voltage switch comprises plural electrically conductive layers and at least one insulator layer between the electrically conductive layers.
- 19. The detonator assembly of claim 16, wherein the switch comprises a triggered switch.
- 20. The detonator assembly of claim 19, wherein the switch comprises at least three electrically conductive layers and at least two insulator layers, each insulator layer being between two successive electrically conductive layers.
- 21. The detonator assembly of claim 16, wherein the switch has a second side connected to an initiator, the switch when activated to electrically couple charge from the capacitor to the initiator.
- 22. The detonator assembly of claim 21, wherein the initiator comprises an exploding foil initiator.
- 23. The detonator assembly of claim 22, wherein the exploding foil initiator is placed on one of the surfaces of the capacitor.
- 24. The detonator assembly of claim 21, further comprising an explosive proximate the initiator.
- 25. The detonator assembly of claim 1, wherein the energy source comprises a ceramic capacitor.
- 26. The detonator assembly of claim 1, wherein the resistor is selected from the group consisting of a thick-film resistor and a thin-film resistor.
- 27. A discharge unit for a detonator assembly, comprising:
a capacitor having a housing with a surface; and a resistor formed on the surface of the capacitor.
- 28. The discharge unit of claim 27, wherein the capacitor comprises a ceramic capacitor.
- 29. The discharge unit of claim 27, wherein the resistor comprises a thick-film capacitor formed on the surface.
- 30. The discharge unit of claim 27, wherein the resistor comprises a thin-film capacitor formed on the surface.
- 31. The discharge unit of claim 27, wherein the resistor comprises a charging resistor having one end electrically connected to a first electrode of the capacitor, and a second end to receive a charging voltage.
- 32. The discharge unit of claim 31, further comprising a bleed resistor electrically connected between the first electrode and a second electrode of the capacitor.
- 33. A method of fabricating a detonator assembly, comprising:
providing a capacitor having a housing with a surface; and forming a resistor on the housing surface of the capacitor.
- 34. The method of claim 33, further comprising electrically connecting one end of the resistor to a first electrode of the capacitor.
- 35. The method of claim 34, wherein the resistor comprises a charging resistor, the method further comprising connecting a bleed resistor between the electrodes of the capacitor.
- 36. The method of claim 33, further comprising providing an initiator and a switch on the capacitor, the switch to couple charge from the capacitor to the initiator.
- 37. The method of claim 33, further comprising providing an explosive proximate the initiator.
- 38. The method of claim 37, further comprising activating the initiator to initiate the explosive.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This claims the benefit under 35 U.S.C. § 119(e) of U.S. Provisional Application Serial No. 60/333,586, entitled “Integral Capacitor Discharge Unit,” filed Nov. 27, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60333586 |
Nov 2001 |
US |