Claims
- 1. A socket connector for a pin connector, comprising:a module body including a plurality of slots; a plurality of wafers each installable in a corresponding one of said plurality of slots, each wafer having multiple offset tuning fork, wherein said tuning forks comprise two beams joined at a base; said module body having a coring wall having multiple wedge shaped protusions for each of said offset tuning fork, wherein said protrusions extend adjacent to the base of the tuning fork and align with a pin receiving opening of said module body thereby allowing a distal end of a pin of the pin connector to be guided by the protrusions and pass beyond the base without interfering with the base.
- 2. The socket connector of claim 1, wherein said wafer includes a multiple pin receiving portion for receiving a distal end of a corresponding pin.
- 3. The socket connector of claim 1, wherein said module body includes an opening corresponding to each slot and said wafer includes a retention member fitted to said opening of said module body.
- 4. The socket connector of claim 3, wherein said retention member is a flexible beam retention mechanism.
- 5. The socket connector of claim 1, wherein said offset tuning forks comprise two beams joined at a base of a throat section of said tuning forks.
- 6. The socket connector of claim 5, wherein said wedge shaped protrusion extends nearly to the base of said offset tuning forks.
- 7. The socket connector of claim 5, wherein said beams have opposed mating v-ramp ends.
- 8. The socket connector of claim 6, wherein said wafer includes a multiple pin receiving portion for receiving a distal end of a corresponding pin.
- 9. The socket connector of claim 8, wherein said distal end is extendable beyond said base of said offset tuning forks.
- 10. A socket connector for a pin connector, comprising;a module body including a plurality of slots, wherein said module body has a coring wall having multiple wedge shape protrusions; a wafer block installable in multiple corresponding plurality of slots, each wafer block having multiple offset tuning fork wherein said tuning forks comprising two beams joined at a base, wherein said tuning forks interact with said protrusion, wherein said protrusions extend adjacent to the base of the tuning fork and align with a pin receiving opening of said module body thereby allowing a distal end of a pin of the pin connector to be guided by the protrusions and pass beyond the base without interfering with the base.
- 11. The socket connector of claim 10, wherein said wafer block includes a multiple pin receiving portion for receiving a distal end of a corresponding pin.
- 12. The socket connector of claim 10, wherein said module body includes an opening corresponding to each slot and said wafer includes a retention member fitted to said opening of said module body.
- 13. The socket connector of claim 12, wherein said retention member is a flexible beam retention mechanism.
- 14. The socket connector of claim 10, wherein said offset tuning forks comprise two beams joined at a base of a throat section of said tuning forks.
- 15. The socket connector of claim 14, wherein said wedge shaped protrusion extends nearly to the base of said offset tuning forks.
- 16. The socket connector of claim 14, wherein said beams have opposed mating v-ramp ends.
- 17. The socket connector of claim 15, wherein said wafer includes a multiple pin receiving portion for receiving a distal end of a corresponding pin.
- 18. The socket connector of claim 17, wherein said distal end is extendable beyond said base of said offset tuning forks.
RELATED APPLICATION
This application claims the benefit of U.S. Provisional Application Serial No. 60/281,826 filed Apr. 6, 2001.
US Referenced Citations (9)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0 717 468 |
Jun 1996 |
EP |
0 924 806 |
Jun 1999 |
EP |
2 168 550 |
Jun 1986 |
GB |
10-2002-0002298 |
Jan 2002 |
KR |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/281826 |
Apr 2001 |
US |