Claims
- 1. A lockout for a reset mechanism of an electrical protective device, comprising:
a spring biasing said lockout; a resistor body which holds said lockout in a first position against action of said spring, wherein said first position permits resetting said electrical protective device; and a switch responsive to an internal fault in said electrical protective device, wherein activation of said switch sends a current through said resistor body; wherein when said resistor body reaches a predetermined temperature, said resistor body ceases to hold said lockout in said first position, whereby said lockout moves to a second position by action of said spring, and wherein said second position prevents resetting of said electrical protective device.
- 2. A lockout according to claim 1, wherein said lockout and spring are one-piece.
- 3. A lockout according to claim 1, further comprising a rotatable body having a pivot, said rotatable body containing a hole that aligns with a reset stem of said reset mechanism when said lockout is in said first position, and when said lockout is in said second position, said hole is misaligned with said reset stem.
- 4. A lockout according to claim 3, wherein when said resistor body reaches said predetermined temperature, said resistor body burns in half permitting said lockout to move to said second position.
- 5. A lockout according to claim 1, wherein said spring includes first and second ends, said first end being attached to a printed circuit board, said second end being aligned with a hole in a reset block such that when said lockout is in said second position, said second end of said spring blocks a reset stem of said reset mechanism.
- 6. A lockout according to claim 5, wherein said first end of said spring is part of a current path for said current passing through said resistor body when said switch is activated.
- 7. A lockout according to claim 5, wherein when said resistor body reaches said predetermined temperature, said resistor body burns in half permitting said lockout to move to said second position.
- 8. A lockout according to claim 5, wherein said resistor body is attached to said printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said lockout to move to said second position.
- 9. A lockout according to claim 1, wherein said resistor body is attached to a printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said lockout to move to said second position.
- 10. A lockout for a reset mechanism of an electrical protective device, comprising:
a resistor body which holds said lockout in a first position, wherein said first position permits resetting said electrical protective device; means, responsive to an internal fault in said electrical protective device, for sending a current through said resistor body; and means, responsive to said resistor body reaching a predetermined temperature, for moving said lockout to a second position, wherein said second position prevents resetting of said electrical protective device.
- 11. A lockout according to claim 10, wherein said means for moving said lockout to said second position includes a rotatable body having a pivot, said rotatable body containing a hole that aligns with a reset stem of said reset mechanism when said lockout is in said first position, and when said lockout is in said second position, said hole is misaligned with said reset stem.
- 12. A lockout according to claim 11, wherein when said resistor body reaches said predetermined temperature, said resistor body burns in half permitting said lockout to move to said second position.
- 13. A lockout according to claim 10, wherein said means for moving said lockout to said second position includes a spring having first and second ends, said first end being attached to a printed circuit board, said second end being aligned with a hole in a reset block such that when said lockout is in said second position, said second end of said spring blocks a reset stem of said reset mechanism.
- 14. A lockout according to claim 13, wherein said first end of said spring is part of a current path for said current passing through said resistor body.
- 15. A lockout according to claim 13, wherein when said resistor body reaches said predetermined temperature, said resistor body burns in half permitting said lockout to move to said second position.
- 16. A lockout according to claim 13, wherein said resistor body is attached to said printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said lockout to move to said second position.
- 17. A lockout according to claim 10, wherein said means for moving said lockout includes a lockout spring.
- 18. A lockout according to claim 10, wherein said means for sending a current through said resistor body includes:
a first diode in series with a switch such that activating said switch in response to a fault sensed by said electrical protective device passes current through said diode; and a second diode in series with said resistor body and said series combination of said second diode and said resistor body is in parallel with said first diode such that said series combination of said second diode and said resistor is reverse biased to said switch, such that shorting said switch sends current through said resistor body.
- 19. A lockout according to claim 10, wherein said means for sending a current through said resistor body includes a circuit which sends decreased current through said resistor body when no internal fault is present in said electrical protective device, but which sends full current through said resistor body when said internal fault is present in said electrical protective device.
- 20. A lockout for a reset mechanism of an electrical protective device, comprising:
a reset mechanism which is biased by a reset spring; a lockout spring; a resistor body which holds said lockout spring in a first position against action of said lockout spring, wherein said first position permits resetting said electrical protective device; and a switch responsive to an internal fault in said electrical protective device, wherein activation of said switch sends a current through said resistor body; wherein when said resistor body reaches a predetermined temperature, said resistor body ceases to hold said lockout spring in said first position, whereby said lockout spring moves to a second position, and wherein said second position prevents resetting of said electrical protective device.
- 21. A lockout according to claim 20, wherein said resistor body is attached to a printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said lockout spring to move to said second position.
- 22. A method for locking out a reset mechanism of an electrical protective device, comprising the steps of:
providing a spring driven lockout for said reset mechanism; providing a resistor body which holds said lockout in a first position, wherein said first position permits resetting said electrical protective device; sending a current through said resistor body in response to an internal fault in said electrical protective device; and moving said lockout to a second position in response to said resistor body reaching a predetermined temperature, wherein said second position prevents resetting of said electrical protective device.
- 23. A method according to claim 22, wherein said step of moving said lockout to said second position includes pivoting a rotatable body, said rotatable body containing a hole that aligns with a reset stem of said reset mechanism when said lockout is in said first position, and when said lockout is in said second position, said hole is misaligned with said reset stem.
- 24. A method according to claim 22, wherein when said resistor body reaches said predetermined temperature, said resistor body burns in half permitting said lockout to move to said second position.
- 25. A method according to claim 22, wherein step of moving said lockout to said second position includes attaching a first end of a spring to a printed circuit board, and aligning a second end of said spring with a hole in a reset block such that when said lockout is in said second position, said second end of said spring blocks a reset stem of said reset mechanism.
- 26. A method according to claim 25, wherein said step of sending said current through said resistor body also sends current thorough said first end of said spring.
- 27. A method according to claim 25, wherein when said resistor body reaches said predetermined temperature, said resistor body burns in half permitting said lockout to move to said second position.
- 28. A method according to claim 25, wherein said resistor body is attached to said printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said lockout to move to said second position.
- 29. A lockout for a reset mechanism of an electrical protective device, comprising:
a spring biasing said lockout; a resistor body which holds said lockout in a first position against action of said spring, wherein said first position permits resetting said electrical protective device; and a current path responsive to an internal fault in said electrical protective device, wherein activation of said current path sends a current through said resistor body; wherein when said resistor body reaches a predetermined temperature, said resistor body ceases to hold said lockout in said first position, whereby said lockout moves to a second position by action of said spring, and wherein said second position prevents resetting of said electrical protective device.
- 30. A lockout for a reset mechanism of an electrical protective device, comprising:
a spring biasing against a resistor body, wherein an electrical current through said resistor body maintains lockout; said resistor body reaching a predetermined temperature when said current has sufficient energy from a duration or magnitude of said current; when said resistor body reaches said predetermined temperature, said biasing of said spring displaces said resistor body such that electrical current through said resistor body is interrupted, wherein said interruption permits resetting said reset mechanism.
- 31. A lockout according to claim 30, wherein said lockout is caused by miswiring a supply voltage to said electrical protective device, and said interruption occurs when said supply voltage is properly wired to said electrical protective device.
- 32. A lockout according to claim 30, wherein said resistor body is attached to a printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said displacement of said resistor body.
- 33. A lockout according to claim 30, wherein said predetermined temperature causes said resistor body to weaken by burning.
- 34. A lockout for a reset mechanism of an electrical protective device, comprising:
a spring biasing said lockout; a resistor body which holds said lockout in a first position against action of said spring, wherein said first position permits resetting said electrical protective device; means for sending a current through said resistor body in response to an internal fault in said electrical protective device; wherein when said resistor body reaches a predetermined temperature, said resistor body ceases to hold said lockout in said first position, and said lockout moves to a second position by action of said spring; and wherein said second position prevents resetting of said electrical protective device.
- 35. A lockout according to claim 34, wherein said resistor body is attached to a printed circuit board by solder, and when said resistor body reaches said predetermined temperature, said solder melts permitting said lockout to move to said second position.
- 36. A lockout according to claim 34, wherein said predetermined temperature causes said resistor body to weaken by burning.
- 37. A lockout according to claim 34, wherein said means for sending a current through said resistor body in response to an internal fault in said electrical protective device includes a shorting malfunction of a switch.
- 38. A lockout according to claim 37, wherein said switch is an SCR.
- 39. A lockout for a reset mechanism of an electrical protective device, comprising:
a spring biasing said lockout; an electrical component which holds said lockout in a first position against action of said spring, wherein said first position permits resetting said electrical protective device; means for sending a current through said electrical component in response to an internal fault in said electrical protective device; wherein when said electrical component reaches a predetermined temperature, said electrical component ceases to hold said lockout in said first position, and said lockout moves to a second position by action of said spring; and wherein said second position prevents resetting of said electrical protective device.
- 40. A lockout according to claim 39, wherein said electrical component is a solenoid coil.
- 41. A lockout according to claim 40, wherein said predetermined temperature is a melting point of an adhesive.
- 42. A lockout according to claim 40, wherein said predetermined temperature is a melting point of a solder.
- 43. A lockout for a reset mechanism of an electrical protective device, comprising:
a hold-off body which holds said lockout in a first position, wherein said first position permits resetting said electrical protective device, said hold-off body being affixed to a part of said electrical protective device with a compound having a melting point; an electrical component of said electrical protection device being adjacent said hold-off body; means, responsive to an internal fault in said electrical protective device, for sending a current through said electrical component; and means, responsive to said electrical component reaching said melting point of said compound, for moving said lockout to a second position, wherein said second position prevents resetting of said electrical protective device.
- 44. A lockout for a reset mechanism of an electrical protective device, comprising:
a resistor body which holds said lockout in a first position, wherein said first position prevents resetting said electrical protective device; means, responsive to correctly wiring a supply voltage to said electrical protective device, for sending a current through said resistor body; and means, responsive to said resistor body reaching a predetermined temperature, for moving said lockout to a second position, wherein said second position permits resetting of said electrical protective device.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Application Ser. No. 60/195,037 filed Apr. 6, 2000 and entitled LOCKOUT MECHANISM FOR USE WITH GROUND AND ARC FAULT CIRCUIT INTERRUPTERS, incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60195037 |
Apr 2000 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09827007 |
Apr 2001 |
US |
Child |
10308549 |
Dec 2002 |
US |