Claims
- 1. A wire feed mechanism for receiving wire from a wire source and advancing the wire, comprising:a cavity within which to receive wire from the source; a wire-supplying device in contact with the wire from the source and operative to supply wire from the source into the cavity as slack wire; the slack wire within the cavity curving into two bends defining an S-shaped configuration that does not permanently deform the slack wire within the cavity; a wire-advancing device in contact with the slack wire from the cavity and operative to withdraw slack wire from the cavity and to advance the wire withdrawn from the cavity; a sensor located in the cavity to sense the curvature of at least one of the bends of the slack wire in the S-shaped configuration within the cavity, the sensor supplying a signal indicative of the curvature sensed; and a controller responsive to the signal from the sensor and connected to the wire-supplying device to control the wire-supplying device to supply wire from the source into the cavity in response to the signal from the sensor to maintain the slack wire in the cavity in the S-shaped configuration as the wire-advancing device withdraws slack wire from the cavity.
- 2. A wire feed mechanism as defined in claim 1 further comprising:a second sensor in addition to the sensor first aforesaid; and wherein: the first sensor senses the curvature of a first one of the two bends of the slack wire within the cavity defining the S-shaped configuration, the first sensor supplying a first signal related to the curvature of the first bend; the second sensor senses the curvature of a second one of the two bends of the slack wire within the cavity defining S-shaped configuration, the second sensor supplying a second signal related to the curvature of the second bend; and the controller is responsive to the first and second signals to control the wire-supplying device to supply the wire from the source into the cavity to maintain the two bends of the slack wire in the S-shaped configuration in the cavity.
- 3. A wire feed mechanism as defined in claim 2 wherein:the first and second signals relate to the extent of curvature of the two bends of the S-shaped configuration in the cavity; and the controller controls the wire-supplying device to supply the wire into the cavity until first and second sensors have sensed that the bends of the slack wire in the S-shaped configuration have each achieved a predetermined extent of curvature within the cavity.
- 4. A wire feed mechanism as defined in claim 2 wherein:each sensor includes a contact which touches one bend of the slack wire in the S-shaped configuration within the cavity to indicate a predetermined extent of curvature of the bend; the first and second sensors supply the first and second signals upon the two bends of the slack wire in the S-shaped configuration touching the contacts of the first and second sensors, respectively; and the controller activates the wire-supplying device to continue to supply wire until the first and second sensors supply the first and second signals, respectively.
- 5. A wire feed mechanism as defined in claim 1 wherein:the sensor includes a contact within the cavity which is touched by one bend of the slack wire within the cavity in the S-shaped configuration upon the one bend attaining a predetermined curvature characteristic; the slack wire in the cavity is electrically connected to an electrical source; the signal is supplied by the sensor when the one bend of the slack wire touches the contact of the sensor; and the signal is created by electrical conductivity between the contact and the one bend of the slack wire which touches the contact.
- 6. A wire feed mechanism as defined in claim 1 wherein:the wire-supplying device and the wire-advancing device are positioned vertically relative to one another to supply the wire into the cavity and withdraw the wire from the cavity at substantially vertically oriented locations relative to one another; and the two bends of the S-shaped configuration of the slack wire within the cavity are located on respectively opposite and lateral sides of a vertical line extending between the vertically oriented locations at which the wire-supplying device and the wire-advancing device supply the wire into the cavity and withdraw the wire from the cavity, respectively.
- 7. A wire feed mechanism as defined in claim 6 wherein:the wire-supplying device is oriented to supply the wire substantially vertically into the cavity; and the wire-advancing device is oriented to withdraw the slack wire substantially vertically from the cavity.
- 8. A wire feed mechanism as defined in claim 1 wherein:the wire-supplying device supplies wire to the cavity independently of the wire-advancing device withdrawing wire from the cavity.
- 9. A wire feed mechanism as defined in claim 8 wherein:the wire-advancing device is positioned exteriorly from the cavity in contact with the slack wire from the cavity and is operative to withdraw a predetermined amount of slack wire from the cavity and advance the predetermined amount of withdrawn wire at one time.
- 10. A wire feed mechanism for receiving wire from a wire source and advancing the wire, comprising:a cavity within which to receive wire from the source; a wire-supplying device in contact with the wire from the source and operative to supply wire from the source into the cavity as slack wire; the slack wire curving in the cavity into two bends that do not permanently deform the slack wire within the cavity; a wire-advancing device in contact with the slack wire from the cavity and operative to withdraw slack wire from the cavity and to advance the wire withdrawn from the cavity; a first sensor located in the cavity to sense a predetermined characteristic of a first one of the two bends of the slack wire within the cavity and to supply a first signal indicative of the occurrence of the predetermined characteristic of the first bend; a second sensor located in the cavity to sense a predetermined characteristic of a second one of the two bends of the slack wire within the cavity and to supply a second signal indicative of the occurrence of the predetermined characteristic of the second bend; and a controller responsive to the first and second signals and connected to the wire-supplying device to control the wire-supplying device to supply wire from the source into the cavity in response to the first and second signals to maintain the slack wire in the cavity bent into the two bends as the wire-advancing device withdraws slack wire from the cavity.
- 11. A wire feed mechanism as defined in claim 10 wherein:the two bends of the slack wire in the cavity define an S-shaped configuration of the slack wire within the cavity; and the predetermined characteristics sensed by the first and second sensors is the extent of curvature of the first and second bends within the cavity, respectively.
- 12. A wire feed mechanism as defined in claim 11 wherein:the first sensor includes a first contact within the cavity; the second sensor includes a second contact within the cavity; the first sensor supplies the first signal in response to the first bend of the S-shaped configuration of the slack wire interacting with the contact of the first sensor; and the second sensor supplies the second signal in response to the second curve of the S-shaped configuration of the slack wire interacting with the contact of the second sensor.
- 13. A wire feed mechanism as defined in claim 12 wherein:the first and second contacts are respectively positioned at laterally opposite positions within the cavity; the first bend of slack wire of the S-shaped configuration curves within the cavity laterally toward the first contact; and the second bend of the slack wire of the S-shaped configuration curves within the cavity laterally toward the second contact.
- 14. A wire feed mechanism as defined in claim 13 wherein:the controller controls the wire-supplying device to supply wire to the cavity upon the assertion of only one of the first and second signals; and the controller controls the wire-supplying device to terminate the supply of wire to the cavity upon the concurrent assertion of both the first and second signals.
- 15. A wire feed mechanism as defined in claim 10 wherein the wire source is a spool upon which the wire has been wound and from which the wire is unwound by the wire-supplying device, and wherein the wire-supplying device comprises:a roller which frictionally contacts the wire at a location between the spool and the cavity; and a roller drive motor connected to rotate the roller.
- 16. A wire feed mechanism as defined in claim 15 wherein:the controller supplies a power control signal for energizing the roller drive motor, the power control signal having a repeating duty cycle characteristic, the duty cycle characteristic having an on-time during which power is supplied to the roller drive motor and an off-time during which power is not supplied to the roller drive motor.
- 17. A wire feed mechanism as defined in claim 16 wherein:the wire-supplying device further comprises a gear head connected between the roller drive motor and the roller, the roller drive motor rotating the gear head, and the gear head rotating the roller.
- 18. A wire feed mechanism as defined in claim 10 wherein:the roller drive motor is a direct current (DC) motor.
- 19. A wire feed mechanism as defined in claim 10 wherein the wire-advancing device comprises:a spindle positioned in frictional contact with the wire and operative when rotated to withdraw slack wire from the cavity; and a spindle drive motor connected to the spindle to rotate the spindle while in contact with the wire to advance the wire as a result of the rotation of the spindle.
- 20. A wire feed mechanism as defined in claim 19 wherein:the spindle drive motor is a stepper motor.
- 21. A wire feed mechanism as defined in claim 10 wherein:each sensor includes a contact which is touched by one bend of the slack wire within the cavity in the S-shaped configuration upon the one bend achieving the predetermined characteristic; the slack wire in the cavity is electrically connected to an electrical source; the first signal is supplied by the first sensor when a first one of the two bends of the slack wire in the cavity touches the contact of the first sensor; the second signal is supplied by the second sensor when a second one of the two bends of the slack wire in the cavity touches the contact of the second sensor; and the first and second signals are created by electrical conductivity between the contact and the bend of the slack wire which touches the contact.
- 22. A wire feed mechanism as defined in claim 10 wherein:the wire-supplying device and the wire-advancing device are positioned substantially vertically relative to one another to supply the wire into the cavity and withdraw the wire from the cavity at substantially vertically oriented locations relative to one another; and the first and second bends of the slack wire within the cavity are located on respectively opposite and lateral sides of a vertical line extending between the vertically oriented locations at which the wire-supplying device and the wire-advancing device supply the wire into the cavity and withdraw the wire from the cavity, respectively.
- 23. A wire feed mechanism as defined in claim 22 wherein:the wire-supplying device is oriented to supply the wire substantially vertically into the cavity; and the wire-advancing device is oriented to withdraw the slack wire substantially vertically from the cavity.
- 24. A wire feed mechanism as defined in claim 22 wherein:the two bends of the slack wire in the cavity define an S-shaped configuration of the slack wire within the cavity.
- 25. A wire feed mechanism as defined in claim 10 wherein:the wire-supplying device supplies wire to the cavity independently of the wire-advancing device withdrawing wire from the cavity.
- 26. A wire feed mechanism as defined in claim 25 wherein:the wire-advancing device is positioned exteriorly from the cavity in contact with the slack wire from the cavity and is operative to withdraw a predetermined amount of slack wire from the cavity and advance the predetermined amount of withdrawn wire at one time.
- 27. A wire feed mechanism for receiving wire from a source and advancing the wire, comprising:a cavity within which to receive wire from the source; a wire-supplying device in contact with the wire from the source and operative to supply wire from the source into the cavity as slack wire; the slack wire within the cavity bending into a curved configuration having oppositely curved bends that do not permanently deform the slack wire within the cavity; a wire-advancing device in contact with the slack wire from the cavity and operative to withdraw slack wire from the cavity and to advance the wire withdrawn from the cavity; an electrical source connected to the slack wire; a contact within the cavity at a position to be touched by one of the bends of the curved configuration of the slack wire within the cavity upon the slack wire attaining a predetermined degree of curvature within the cavity; the contact and the slack wire creating a signal by electrical conductivity between the wire and the contact when the one bend of the slack wire touches the contact; and a controller connected to the wire-supplying device and operative to control the wire-supplying device to supply wire from the source to maintain the slack wire in the cavity in the curved configuration in response to the signal as the wire-advancing device withdraws slack wire from the cavity.
- 28. A wire feed mechanism for receiving wire from a source and advancing the wire, comprising:a cavity within which to receive wire from the source; a wire-supplying device in contact with the wire from the source and operative to supply wire from the source into the cavity as slack wire; the slack wire within the cavity bending into a curved configuration having two bends that do not permanently deform the slack wire within the cavity; a wire-advancing device in contact with the slack wire from the cavity and operative to withdraw slack wire from the cavity and to advance the wire withdrawn from the cavity; an electrical source connected to the slack wire; a contact within the cavity at a position to be touched by the bend of the curved configuration of the slack wire within the cavity upon the slack wire attaining a predetermined degree of curvature within the cavity; a signal created by electrical conductivity when the bend of the slack wire touches the contact; and a controller connected to the wire-supplying device and operative to control the wire-supplying device to supply wire from the source to maintain the slack wire in the cavity in the curved configuration in response to the signal as the wire-advancing device withdraws slack wire from the cavity; and wherein: the wire-supplying device and the wire-advancing device are positioned vertically relative to one another to supply the wire into the cavity and withdraw the wire from the cavity at substantially vertically oriented locations relative to one another; and the two bends of the curved configuration of the slack wire within the cavity are located on respectively opposite and lateral sides of a vertical line extending between the vertically oriented locations at which the wire-supplying device and the wire-advancing device supply the wire into the cavity and withdraw the wire from the cavity, respectively.
- 29. A wire feed mechanism as defined in claim 28 wherein:the wire-supplying device is oriented to supply the wire substantially vertically into the cavity; and the wire-advancing device is oriented to withdraw the slack wire substantially vertically from the cavity.
- 30. A wire feed mechanism as defined in claim 27 wherein:the wire-supplying device supplies wire to the cavity independently of the wire-advancing device withdrawing wire from the cavity.
- 31. A wire feed mechanism as defined in claim 30 wherein:the wire-advancing device is positioned exteriorly from the cavity in contact with the slack wire from the cavity and is operative to withdraw a predetermined amount of slack wire from the cavity and advance the predetermined amount of withdrawn wire at one time.
- 32. A wire feed mechanism for receiving wire from a source and advancing the wire, comprising:a cavity within which to receive wire from the source; a wire-supplying device in contact with the wire from the source and operative to supply wire from the source into the cavity as slack wire; the slack wire within the cavity bending into a curved configuration having first and second bends that do not permanently deform the slack wire within the cavity; a wire-advancing device in contact with the slack wire from the cavity and operative to withdraw slack wire from the cavity and to advance the wire withdrawn from the cavity; an electrical source connected to the slack wire; a first contact within the cavity at a position to be touched by the first bend of the curved configuration of the slack wire within the cavity upon the slack wire attaining a predetermined degree of curvature within the cavity; the first contact at a position to be touched by the first bend of the curved configuration of the slack wire within the cavity upon the first bend attaining a predetermined degree of curvature within the cavity; the first contact and the slack wire creating a first signal, by electrical conductivity when the first bend of the slack wire touches the first contact; a second contact within the cavity at a position to be touched by the second bend of the curved configuration of the slack wire within the cavity upon the second bend attaining a predetermined degree of curvature within the cavity; and the second contact and the slack wire creating a second signal by electrical conductivity when the second bend of the slack wire touches the second first contact; and a controller connected to the wire-supplying device and operative to control the wire-supplying device to supply wire from the source to maintain the slack wire in the cavity in the curved configuration in response to the first and second signals as the wire-advancing device withdraws slack wire from the cavity.
- 33. A wire feed mechanism as defined in claim 32 wherein:the first and second bends of the curved configuration of the slack wire in the cavity define an S-shaped configuration of the slack wire within the cavity.
- 34. A wire feed mechanism as defined in claim 32 wherein:the wire-supplying device and the wire-advancing device are positioned vertically relative to one another to supply the wire into the cavity and withdraw the wire from the cavity at substantially vertically oriented locations relative to one another; and the first and second bends of the curved configuration of the slack wire within the cavity are located on respectively opposite and lateral sides of a vertical line extending between the vertically oriented locations at which the wire-supplying device and the wire-advancing device supply the wire into the cavity and withdraw the wire from the cavity, respectively.
- 35. A wire feed mechanism as defined in claim 34 wherein:the wire-supplying device is oriented to supply the wire substantially vertically into the cavity; and the wire-advancing device is oriented to withdraw the slack wire substantially vertically from the cavity.
- 36. A wire feed mechanism for receiving wire from a source and advancing the wire, comprising:a cavity within which to receive wire from the source; a wire-supplying device in contact with the wire from the source and operative to supply wire from the source into the cavity as slack wire; the slack wire within the cavity bending into an S-shaped configuration that does not permanently deform the slack wire within the cavity; a wire-advancing device in contact with the slack wire from the cavity and operative to withdraw slack wire from the cavity and to advance the wire withdrawn from the cavity; a sensor located within the cavity to sense a predetermined characteristic of the slack wire indicative of the S-shaped configuration within the cavity; and a controller connected to the sensor and to the wire-supplying device to control the wire-supplying device to supply wire from the source to maintain the slack wire in the cavity in the S-shaped configuration indicated by the sensor as the wire-advancing device withdraws slack wire from the cavity.
- 37. A wire feed mechanism as defined in claim 36 wherein:the wire-advancing device is positioned exteriorly from the cavity in contact with the slack wire from the cavity and is operative to withdraw a predetermined amount of slack wire from the cavity and advance that predetermined amount of wire.
- 38. A wire feed mechanism as defined in claim 36 wherein:the wire-supplying device supplies wire to the cavity independently of the wire-advancing device withdrawing wire from the cavity.
- 39. A wire feed mechanism as defined in claim 36 wherein the wire is formed from helically coiled strands, the wire is advanced to be used as an electrical connector, the electrical connector is a twist pin having a length with a predetermined position where strands of the wire have been uncoiled in an anti-helical direction to form a bulge, and wherein:the wire-advancing device advances the wire into a bulge forming mechanism; and the wire-advancing device advances the wire to a predetermined position where a bulge is formed in the wire by the bulge forming mechanism.
- 40. A wire feed mechanism as defined in claim 36 wherein:the predetermined characteristic of the slack wire sensed by the sensor is a degree of curvature of a bend of the S-shaped configuration within the cavity.
- 41. A method of withdrawing wire from a wire source and advancing the withdrawn wire, comprising the steps of:withdrawing wire from the wire source and applying the withdrawn wire as slack wire; bending the slack wire into a curved configuration having at least two oppositely curved bends; electrically connecting the slack wire to an electrical source; sensing a predetermined characteristic of at least one bend of slack wire in the curved configuration by touching the one bend to a contact upon the one bend achieving the predetermined characteristic; advancing slack wire from the curved configuration; sensing a change in the predetermined characteristic by sensing electrical conductivity between the one bend and the contact; and maintaining the curved configuration of the slack wire by supplying additional slack wire to the curved configuration to compensate for the slack wire advanced from the curved configuration in response to the change in the sensed characteristic of the one bend.
- 42. A method as defined in claim 41 further comprising the step of:supplying the additional wire independently of advancing the slack wire.
- 43. A method as defined in claim 41 further comprising the step of:limiting the curvature of the one bend of the curved configuration to a curvature that does not result in a permanent deforming in the wire.
- 44. A method withdrawing wire formed from helically coiled strands, from a wire source and advancing the withdrawn wire for use as a twist pin electrical connector, having a length with a predetermined position where strands of the wire have been uncoiled in an anti-helical direction to form a bulge, comprising the steps of:withdrawing wire from the wire source and applying the withdrawn wire as a slack wire; bending the slack wire into a curved configuration having at least one bend; electrically connecting the slack wire to an electrical source; sensing a predetermined characteristic of at least one bend of slack wire in the curved configuration by touching the one bend to a contact upon the one bend achieving the predetermined charcteristic; advancing the slack wire from the curved configuration to establish the predetermined position at which to form a bulge; sensing a change in the predetermined characteristic by sensing electrical conductivity between the one bend and the contact; maintaining the curved configuration of the slack wire by supplying additional slack wire to the curved configuration to compensate for the slack wire advanced from the curved configuration in response to the change in the sensed characteristic of the one bend; and forming the bulge at the predetermined position after the slack wire has been advanced to the predetermined position.
- 45. A method of withdrawing wire from a wire source and advancing the withdrawn wire, comprising the steps of:withdrawing wire from the wire source and applying the withdrawn wire as slack wire; bending the slack wire into first and second bends which define a curved configuration; electrically connecting the slack wire to an electrical source; sensing a predetermined characteristic of the first and second bends of slack wire in the curved configuration by touching the first bend to a first contact upon the first bend achieving the predetermined characteristic; and by touching the second bend to a second contact upon the second bend achieving the predetermined characteristic; determining touching of the first bend to the first contact by sensing a change in electrical conductivity between the first bend and the first contact; determining touching of the second bend to the second contact by sensing a change in electrical conductivity between the second bend and the second contact; and advancing slack wire from the curved configuration; sensing a change in the predetermined characteristic by sensing electrical conductivity between at least one of the first bend and the first contact and the second band and the second contact; and maintaining the curved configuration of the slack wire by supplying additional slack wire to the curved configuration to compensate for the slack wire advanced from the curved configuration in response to changes in the predetermined characteristics sensed in both the first and second bends.
- 46. A method as defined in claim 45 further comprising the step of:bending the slack wire into an S-shaped configuration defined by the two bends.
- 47. A method as defined in claim 45 further comprising the steps of:supplying slack wire to the cavity when neither the first bend nor the second bend touch the first or second contacts, respectively, and when only one of the first or second bends touches one of the first or second contacts, respectively; and terminating supplying slack wire to the curved configuration when both the first and second bend touch the first and second contacts, respectively.
- 48. A method of withdrawing wire from a wire source and advancing the withdrawn wire, comprising the steps of:withdrawing wire from the wire source and applying the withdrawn wire as a slack wire; bending the slack wire into a curved configuration having first and second bends; electrically connecting the slack wire to an electrical source; sensing a predetermined characteristic of at least one bend of slack wire in the curved configuration by touching the one bend to a contact upon the one bend achieving the predetermined characteristic; advancing slack wire from the curved configuration; sensing a change in the predetermined characteristic by sensing electrical conductivity between the one bend and the contact; maintaining the curved configuration of the slack wire by supplying additional slack wire to the curved configuration to compensate for the slack wire advanced from the curved configuration in response to the change in the sensed characteristic of the one bend; supplying the slack wire to the curved configuration and advancing the slack wire from the curved configuration at locations which are substantially vertically oriented relative to one another; and locating the first and second bends of the slack wire at respectively opposite and lateral sides of a vertical line extending between the vertical positions at which the slack wire is supplied to and advanced from the curved configuration.
- 49. A method as defined in claim 48 further comprising the steps of:supplying the slack wire substantially vertically to the curved configuration; and advancing the slack wire substantially vertically from the curved configuration.
- 50. A method of withdrawing wire from a wire source and advancing the withdrawn wire, comprising the steps of:withdrawing wire from the wire source and supplying the withdrawn wire as slack wire; bending the slack wire into an S-shaped configuration having two bends; sensing a predetermined characteristic of at least one of the bends of slack wire in the S-shaped configuration; advancing slack wire from the S-shaped configuration; supplying slack wire to the S-shaped configuration from the wire source to compensate for the slack wire advanced from the S-shaped configuration; and maintaining the S-shaped configuration of the slack wire in response to a change in the sensed predetermined characteristic of the one bend.
- 51. A method as defined in claim 50 further comprising the steps of:sensing the predetermined characteristic with respect to both bends of the S-shaped configuration; and maintaining the S-shaped configuration of the slack wire in response to changes in the sensed predetermined characteristics of both bends.
- 52. A method as defined in claim 51 further comprising the steps of:sensing the predetermined characteristic of a first one of the two bends of slack wire in the S-shaped configuration by touching the first bend to a first contact upon the first bend achieving the predetermined characteristic; sensing the predetermined characteristic of a second one of the two bends of the slack wire in the S-shaped configuration by touching the second bend to a second contact upon the second bend achieving the predetermined characteristic; and determining the changes in the sensed predetermined characteristics of the first and second bends by the touching of the first and second bends with the first and second contacts, respectively.
- 53. A method as defined in claim 52 further comprising the steps of:electrically connecting the slack wire to an electrical source; determining whether the first bend touches the first contact by sensing electrical conductivity between the first bend and the first contact; and determining whether the second bend touches the second contact by sensing electrical conductivity between the second bend and the second contact.
- 54. A method as defined in claim 53 further comprising the steps of:supplying slack wire to the cavity when neither the first nor the second bends touching the first or second contacts, respectively, and when only one of the first or second bends touches one of the first or second contacts, respectively; and terminating supplying of slack wire to the S-shaped configuration upon both the first and second bends touching the first and second contacts, respectively.
- 55. A method as defined in claim 50 further comprising the step of:sensing the extent of curvature of the one bend of the S-shaped configuration as the predetermined characteristic.
- 56. A method as defined in claim 50 further comprising the step of:sensing the position of the one bend of the S-shaped configuration as the predetermined characteristic.
- 57. A method as defined in claim 50 further comprising the steps of:touching the one bend of the slack wire in the S-shaped configuration to a contact upon the one bend achieving the predetermined characteristic; and determining the change in the sensed predetermined characteristic of the one bend by the touch of the one bend to the contact.
- 58. A method as defined in claim 57 further comprising the steps of:electrically connecting the slack wire to an electrical source; and determining whether the one bend touches the contact by sensing electrical conductivity between the one bend and the contact.
- 59. A method as defined in claim 50 further comprising the steps of:supplying the slack wire to the S-shaped configuration and advancing the slack wire from the S-shaped configuration at positions which are substantially vertically oriented relative to one another; and locating the first and second bends of the slack wire at respectively opposite and lateral sides of a vertical line extending between the vertically oriented positions at which the slack wire is supplied to and advanced from the S-shaped configuration.
- 60. A method as defined in claim 59 further comprising the steps of:supplying the slack wire substantially vertically to the S-shaped configuration; and advancing the slack wire substantially vertically from the S-shaped configuration.
- 61. A method as defined in claim 50 further comprising the step of:supplying the additional slack wire independently of advancing the slack wire.
- 62. A method as defined in claim 50 further comprising the steps of:limiting the curvature of each bend to avoid permanently deforming the wire.
- 63. A method of withdrawing wire from a wire source and advancing the withdrawn wire, comprising the steps of:withdrawing wire from the wire source and supplying the withdrawn wire as slack wire; bending the slack wire in a curved configuration having a first bend and a second bend; sensing a predetermined characteristic of the curved configuration; advancing slack wire from the curved configuration; supplying the slack wire to the curved configuration and advancing the slack wire from the curved configuration at positions which are located substantially vertical relative to one another; locating the first and second bends at respectively opposite and lateral sides of a vertical line extending between the vertical positions at which the slack wire is supplied to and advanced from the curved configuration; sensing a change in the predetermined characteristic of the curved configuration; and maintaining the curved configuration of the slack wire by supplying additional slack wire to the curved configuration to compensate for the slack wire advanced from the curved configuration in response to the change in the sensed characteristic of the curved configuration.
- 64. A method as defined in claim 63 further comprising the steps of:supplying the slack wire substantially vertically to the curved configuration; and advancing the slack wire substantially vertically from the curved configuration.
- 65. A method as defined in claim 63 further comprising the steps of:electrically connecting the slack wire to an electrical source; sensing a predetermined characteristic of both the first and second bends of the curved configuration; sensing a change in the predetermined characteristics of the first bend of slack wire in the curved configuration by touching the first bend to a first contact upon the first bend achieving the predetermined characteristic; sensing a change in the predetermined characteristics of the second bend of slack wire in the curved configuration by touching the second bend to a second contact upon the second bend achieving the predetermined characteristic; determining touching of each of the first bend to the first contact by sensing a change in electrical conductivity between the first bend and the first contact; determining touching of each of the second bend to the second contact by sensing a change in electrical conductivity between the second bend and the second contact; and maintaining the curved configuration of the slack wire by supplying additional slack wire to the curved configuration to compensate for the slack wire advanced from the curved configuration in response to changes in the sensed predetermined characteristics of both the first and second bends.
- 66. A method as defined in claim 65 further comprising the steps of:supplying slack wire to the cavity when neither the first nor the second bends touch the first or second contacts, respectively, and when only one of the first or second bends touches one of the first or second contacts, respectively; and terminating supplying slack wire to the curved configuration upon both the first and second bends touching the first and second contacts, respectively.
- 67. A method as defined in claim 63 further comprising the step of:supplying the additional slack wire independently of advancing the slack wire.
- 68. A method as defined in claim 63 further comprising the step of:limiting the curvature of each bend to avoid permanently deforming the wire.
CROSS-REFERENCE TO RELATED INVENTIONS
This invention is related to inventions for High-Speed, High-Capacity Twist Pin Connector Fabricating Machine and Method, Rotational Grip Twist Machine and Method for Fabricating Bulges of Twisted Wire Electrical Connectors, and Pneumatic Inductor and Method of Electrical Connector Delivery and Organization, described in the concurrently-filed U.S. patent applications Ser. Nos. 09/782,987; 09/782,888; and 09/780,981, respectively, all of which are assigned to the assignee hereof, and all of which have at least one common inventor with the present application. The disclosures of these concurrently filed applications are incorporated herein by this reference.
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