Claims
- 1. A method of operating a switchable shunt for an integrated lead suspension or component of the type having a conductive lead layer and a spring metal layer separated by an insulating layer, where the shunt has a contact base region on the spring metal layer portion, the method including:
applying a force to a contact arm having a contact pad region electrically connected to at least one of the integrated leads to move
i) from a shunted state in which the contact arm is resiliently biased to cause electrical contact between the contact base region and the contact pad region ii) to an electrically open state in which the contact pad region is electrically isolated from the contact base region.
- 2. The method of claim 1, including
removing the force from the contact arm to allow the contact arm to return to a shunted state at which the contact pad region is in electrical contact with the contact base region.
- 3. The method of claim 1, including
applying a test instrument probe to the contact arm to force the contact arm to switch the shunt to the electrically open state.
- 4. A method of operating a switchable shunt for an integrated lead suspension or component of the type having a conductive lead layer and a spring metal layer separated by an insulating layer, where the shunt has a contact base region on the spring metal layer portion, the method including:
applying a force to one or more contact arms, each contact arm electrically coupled to an integrated lead and formed in the conductive lead layer and at least one of the insulating layer and spring metal layer, with one or more contact pad regions, with each contact pad region electrically coupled to a contact arm and formed in at least the conductive lead layer and one or more gaps with each gap surrounding portions of one or more contact arms and associated contact pad regions, wherein each contact arm extends through the gap and is resiliently biased toward a shunted state at which the contact pad region is in electrical contact with the contact base region to move
i) from the shunted state in which the respective one or more contact arms causes electrical contact between the contact base region and the associated contact pad region ii) to an electrically open state in which the contact pad region is electrically isolated from the associated contact base region.
- 5. A method for operating the switchable shunt of claim 4, including removing the force from the contact arm to switch the shunt to the electrically closed state.
- 6. The method of claim 4, including
applying a test instrument probe to the contact arm to force the contact arm to switch the shunt to the electrically open state.
- 7. A method of operating a switchable shunt for an integrated lead suspension or component of the type having a conductive lead layer and a spring metal layer separated by an insulating layer, and the shunt has a first contact region on the spring metal layer portion, the method including:
applying a force to a contact arm connected to a second contact region electrically connected to at least one of a plurality of integrated leads in the conductive lead layer to move the contact arm
i) from a shunted state in which the first and second contact regions are resiliently biased toward and in electrical contact with each other, ii) to an electrically open state in which the first contact region is electrically disconnected from the second contact region.
- 8. The method of claim 7 including removing the force from the contact arm to switch the shunt to the electrically closed state.
- 9. The method of claim 7 including applying a test instrument probe to the contact arm to force the contact arm to switch the shunt to the electrically open state.
- 10. A method of operating a switchable shunt for an integrated lead suspension or component of the type formed from a laminated sheet of material including a conductive lead layer and a spring metal layer separated by an insulating layer, wherein the shunt has a contact base region on the spring metal layer portion, the method including:
applying a force to the shunt to electrically separate the contact base region from a contact pad region formed in at least the conductive lead layer wherein the contact base region and the at least one contact pad region are resiliently biased towards each other in a shunted state during which the contact pad region is in electrical contact with the contact base region.
- 11. The method of claim 10 including removing the force from the shunt to electrically connect the contact base region to the at least one contact pad region to switch the shunt to the electrically closed state between the contact base region and the at least one contact pad region.
- 12. The method of claim 10 wherein the shunt further includes a contact arm connected to the at least one contact pad region and the force is applied to the contact arm to switch the shunt to the electrically open state.
- 13. The method of claim 12 wherein the force is applied by a test instrument probe to force the contact arm to switch the shunt to the electrically open state.
- 14. A method of operating a switchable shunt for an integrated lead suspension of the type having a conductive lead layer, an insulating layer, and a metal spring layer, the method comprising the steps of:
resiliently biasing a portion of the conductive lead layer and the metal spring layer together in a shunted state in which at least one integrated lead in the lead layer is in electrical contact with the metal spring layer; and selectively applying a separating force to the shunt to move the portion of the conductive layer and the metal spring layer apart, resulting in disconnecting the at least one integrated lead from electrical contact with the metal spring layer.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/152,175, filed on Sep. 2, 1999 and entitled “Switchable Shunts For Integrated Lead Suspensions.” This application also claims the benefit of U.S. Utility Application Serial No. 09/652,958, filed Aug. 31, 2000 and entitled “Switchable Shunts For Integrated Lead Suspensions.”
Provisional Applications (1)
|
Number |
Date |
Country |
|
60152175 |
Sep 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09652958 |
Aug 2000 |
US |
Child |
10349048 |
Jan 2003 |
US |