Claims
- 1. An adaptive switching control module comprising:
- a single-piece elongated shape memory alloy actuator having a first portion and a second portion;
- a switching arm, coupled to the first and second actuator portions, the arm having first and second positions;
- a first electrical contact;
- a second electrical contact connected to the switching arm, and disposed to be electrically isolated from the first electrical contact when said arm is in the first position and disposed to be electrically connected to the first electrical contact when said arm is in the second position;
- a first electrical path for applying an electrical current through the first actuator portion;
- a second electrical path for applying an electrical current through the second actuator portion;
- a housing; and
- an adaptive control device for effecting movement of the switching arm from the first position to the second position and from the second position to the first position.
- 2. The control module of claim 1, wherein the control device includes adaptive means for changing control parameters of the control device based on previous operation.
- 3. The control module of claim 1, wherein the control device includes a potentiometer.
- 4. The control module of claim 1, wherein the control device includes a thermostat.
- 5. The control module of claim 1, wherein the control device includes a microprocessor.
- 6. The control module of claim 1, wherein the control device includes a printed circuit board.
- 7. The control module of claim 1, wherein the switching arm includes:
- a fixed point; and
- a movable portion for moving about the fixed point, said second electrical contact disposed on the movable portion.
- 8. The control module of claim 7, wherein said first electrical path includes the first actuator portion and at least a portion of the switching arm.
- 9. The control module of claim 7, wherein said second electrical path includes the second actuator portion and at least a portion of the switching arm.
- 10. The control module of claim 1, further comprising:
- a first control switch for passing an electric current through said first electrical path; and
- a second control switch for passing an electric current through said second electrical path.
- 11. An adaptive switching control module comprising:
- an elongated shape memory allow actuator having a first part and a second part;
- a switching arm, coupled to the first and second actuator parts, the arm having first and second positions;
- a first electrical contact;
- a second electrical contact connected to the switching arm, and disposed to be electrically isolated from the first electrical contact when said arm is in the first position and disposed to be electrically connected to the first electrical contact when said arm is in the second position;
- a first electrical path for applying an electrical current through the first actuator part;
- a second electrical path for applying an electrical current through the second actuator part;
- a housing;
- an adaptive control device for effecting movement of the switching arm from the first position to the second position and from the second position to the first position;
- a first control switch for passing an electric current through said first electrical path; and
- a second control switch for passing an electric current through said second electrical path; and
- wherein each of the first and second control switches includes an SCR.
- 12. The control module of claim 1, wherein the actuator includes a wire with a diameter between about 0.004-0.010 inches.
- 13. The control module of claim 1, wherein the actuator includes a wire with an electrical resistance of about 1 to 2 ohms per inch.
- 14. The control module of claim 1, wherein at least one of the first and second portions of the actuator have a first length when an internal temperature of such portion is less than a given threshold temperature and a second length when the internal temperature is greater than the given threshold temperature.
- 15. The control module of claim 14, wherein the second length is shorter than the first length.
- 16. The control module of claim 15, wherein the second length is shorter than the first length by an amount between about 2 to 8 percent.
- 17. The control module of claim 15, wherein:
- the switching arm is in the first position when the length of the second actuator portion is the second length; and
- the switching arm is in the second position when the length of the first actuator portion is the second length.
- 18. The control module of claim 1, wherein the switching arm is electrically and mechanically coupled to the first and second actuator portions.
- 19. The control module of claim 18, wherein the switching arm is bonded to at least one of the first and second actuator portions.
- 20. The control module of claim 18, wherein the actuator includes a ferrule connected to the first and second actuator portions and disposed in physical contact with the switching arm.
- 21. The module of claim 1, wherein the first position is a latching position.
- 22. The module of claim 1, wherein the second position is a latching position.
- 23. A method of switching an electrical load current with an adaptive control module, comprising:
- providing a single-piece elongated shape memory alloy actuator having a first portion and a second portion;
- providing a switching arm with first and second positions, and coupled to the first and second actuator portions;
- operating first and second control switches with a microprocessor;
- applying an electric control current from one of the first and second control switches through one of the first and second portions;
- decreasing the length of said one of the first and second portions when said electric control current passes therethrough;
- moving the switching arm from one of the first and second positions to the other of the first and second positions;
- electrically isolating a first electrical load contact from a second electrical load contact when the switching arm is in a first position; and
- electrically connecting the first electrical load contact to the second electrical load contact when the switching arm is in a second position.
- 24. The method of claim 23, wherein:
- the step of operating includes the step of changing at least one control parameter by the microprocessor based on previous operating history.
- 25. The method of claim 23, wherein:
- the step of operating at least one control switch includes the steps of:
- determining the state of at least one control parameter with the microprocessor;
- closing the first control switch with the microprocessor to pass the control current through the first actuator portion if the at least one control parameter has a first state; and
- closing the second control switch with the microprocessor to pass the control current through the second actuator portion if the at least one control parameter has a second state.
- 26. The method of claim 23, wherein the step of applying an electric control current includes the step of passing the electric control current through the first actuator portion.
- 27. The method of claim 26, wherein the step of moving includes the step of moving the switching arm from the first position to the second position when the length of the first actuator portion is decreased.
- 28. The method of claim 27, wherein the step of moving further includes the step of latching the switching arm in the second position.
- 29. The method of claim 23, wherein the step of applying an electric control current includes the step of passing the electric control current through the second actuator portion.
- 30. The method of claim 29, wherein the step of moving includes the step of moving the switching arm from the second position to the first position when the length of the second actuator portion is decreased.
- 31. The method of claim 30, wherein the step of moving further includes the step of latching the switching arm in the first position.
- 32. The method of claim 23, wherein the step of applying an electric control current includes the step of increasing a temperature of one of the first and second portions of said actuator through current-induced heating.
- 33. The method of claim 32, wherein the step of increasing a temperature includes the step of increasing the temperature above a threshold temperature.
- 34. The method of claim 33, wherein the step of moving includes the step of decreasing a length of one of the first and second portions of the actuator by the step of increasing the temperature above the threshold temperature.
- 35. An adaptive switching control module comprising:
- an elongated shape memory alloy actuator having a first portion and a second portion;
- a switching arm, coupled to the first and second actuator portions, the arm having first and second positions;
- a first electrical contact;
- a second electrical contact connected to the switching arm, and disposed to be electrically isolated from the first electrical contact when said arm is in the first position and disposed to be electrically connected to the first electrical contact when said arm is in the second position;
- a first electrical path for applying an electrical current through the first actuator portion;
- a second electrical path for applying an electrical current through the second actuator portion;
- a housing;
- an adaptive control device for effecting movement of the switching arm from the first position to the second position and from the second position to the first position; and
- wherein a linear dimension of the first portion is shorter when a temperature of the first portion exceeds a predetermined temperature and a linear dimension of the second portion is shorter when a temperature of the second portion exceeds the predetermined temperature,
- wherein the first and second portions are each substantially straight and are disposed at an angle to each other.
- 36. The adaptive switching control module of claim 35, wherein the angle is substantially a right angle.
- 37. The adaptive switching control module of claim 35, wherein each of the first and second portions is disposed at an acute angle to the switching arm.
- 38. An adaptive switching control module comprising:
- an elongated shape memory alloy actuator having a first portion and a second portion;
- a switching arm, coupled to the first and second actuator portions, the arm having first and second positions;
- a first electrical contact;
- a second electrical contact connected to the switching arm, and disposed to be electrically isolated from the first electrical contact when said arm is in the first position and disposed to be electrically connected to the first electrical contact when said arm is in the second position;
- a first electrical path for applying an electrical current through the first actuator portion;
- a second electrical path for applying an electrical current through the second actuator portion;
- a housing;
- an adaptive control device for effecting movement of the switching arm from the first position to the second position and from the second position to the first position; and
- wherein a linear dimension of the first portion is shorter when a temperature of the first portion exceeds a predetermined temperature and a linear dimension of the second portion is shorter when a temperature of the second portion exceeds the predetermined temperature,
- wherein the switching arm includes a bistable snap-action arm.
Parent Case Info
This application claims benefit of provisional application No. 60/049,445 filed Jun. 12, 1997.
US Referenced Citations (21)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0145204 |
Jun 1985 |
EPX |
3731146 |
Mar 1989 |
DEX |
3731146A1 |
Mar 1989 |
DEX |
01183027 |
Jul 1989 |
JPX |
2143015 |
Jan 1985 |
GBX |