IP Library › Granted Patent US 8,678,860
Granted Patent B2
US 8,678,860 · App. 13/770,425 · Granted Mar 25, 2014

Shieldless, high-speed, low-cross-talk electrical connector

Inventors: Steven E. Minich (York, PA); Douglas M. Johnescu (York, PA); Stefaan Hendrik Jozef Sercu (Wuustwezel, BE); Jonathan E. Buck (Hershey, PA)
Assignees: FCI Americas Technology LLC; FCI
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Quick Facts
Patent No.
US 8,678,860
App. No.
13/770,425
Granted
Mar 25, 2014
Kind
B2
Abstract

An electrical connector may include a first connector with electrically-conductive contacts. The contacts may have blade-shaped mating ends, and may be arranged in a centerline. The electrical connector may include a second connector with electrically-conductive receptacle contacts, which may also be arranged in a centerline. The connectors may be mated such that the mating portion of a first contact in the second connector may physically contact of a corresponding blade-shaped mating end of a contact in the first connector.

Claims (39)

1. An electrical connector comprising:

a plurality of insert molded leadframe assemblies (IMLA), each IMLA including a leadframe housing that supports four edge coupled differential signal pairs and interleaved ground contacts along a respective leadframe housing centerline, wherein the four differential signal pairs and the respective interleaved ground contacts of each IMLA fit within a 25 mm card pitch, and wherein a pair of the interleaved ground contacts are (1) separated by one of the four differential signal pairs of a first IMLA, and (2) define a distance of approximately 3.6 mm from a centerline of a first ground contact of the pair of interleaved ground contacts to a centerline of the other ground contact of the pair of interleaved ground contacts.

2. The electrical connector as recited in claim 1 , wherein the electrical connector is shieldless.

3. The electrical connector as recited in claim 1 , wherein the electrical connector is a right-angle electrical connector.

4. The electrical connector as recited in claim 3 , wherein the electrical connector is shieldless.

5. The electrical connector as recited in claim 1 , wherein the pair of interleaved ground contacts are separated by a distance of approximately 3.0 mm from the centerline of the first ground contact of the pair of interleaved ground contacts to the centerline of the other ground contact of the pair of interleaved ground contacts.

6. The electrical connector as recited in claim 5 , wherein the number of differential signal pairs per inch of card edge is approximately 68.

7. The electrical connector as recited in claim 1 , wherein the number of differential signal pairs per inch of card edge is approximately 56.

8. The electrical connector as recited in claim 1 , wherein four differential signal pairs and respective interleaved ground contacts of each IMLA fit within an 18 mm card pitch.

9. The electrical connector as recited in claim 1 , wherein the leadframe housing is overmolded onto the differential signal pairs.

10. The electrical connector as recited in claim 9 , wherein the leadframe housing is further overmolded onto the ground contacts.

11. The electrical connector as recited in claim 1 , wherein (1) the connector is devoid of metallic crosstalk plates, (2) the connector operates at a data transfer rate of at least 4 Gigabits/sec, (3) the one of the four differential signal pairs of the first IMLA is a victim pair, (4) six differential signal pairs closest to the victim differential signal pair are aggressor pairs, and (5) the six aggressor pairs produce no more than 6% worst-case, multi-active cross talk on the victim differential signal pair as determined by the sum of the absolute values of the six aggressor pairs.

12. The electrical connector as recited in claim 11 , wherein the data transfer rate is at or between 6.25 and 12.5 Gigabits/sec.

13. An electrical connector comprising:

a plurality of IMLAs, each IMLA including a leadframe housing that supports five edge coupled differential signal pairs and interleaved ground contacts along a respective leadframe housing centerline, wherein the five differential signal pairs and respective interleaved ground contacts of each IMLA fit within a 21 mm card pitch.

14. The electrical connector as recited in claim 13 , wherein a pair of interleaved ground contacts are (1) separated by one of the five differential signal pairs of a first IMLA, and (2) define a distance of approximately 3.6 mm from a centerline of a first ground contact of the pair of interleaved ground contacts to a centerline of the other ground contact of the pair of interleaved ground contacts.

15. The electrical connector as recited in claim 14 , wherein (1) the connector is devoid of metallic crosstalk plates, (2) the connector operates at a data transfer rate of at least 4 Gigabits/sec, (3) the one of the four differential signal pairs of the first IMLA is a victim pair, (4) six differential signal pairs closest to the victim differential signal pair are aggressor pairs, and (5) the six aggressor pairs produce no more than 6% worst-case, multi-active cross talk on the victim differential signal pair as determined by the sum of the absolute values of the six aggressor pairs.

16. The electrical connector as recited in claim 15 , wherein the data transfer rate is at or between 6.25 and 12.5 Gigabits/sec.

17. The electrical connector as recited in claim 13 , wherein the electrical connector is shieldless.

18. The electrical connector as recited in claim 13 , wherein the electrical connector is a right-angle electrical connector.

19. The electrical connector as recited in claim 18 , wherein the electrical connector is shieldless.

20. The electrical connector as recited in claim 13 , wherein the pair of interleaved ground contacts are separated by a distance of approximately 3.0 mm from the centerline of the first ground contact of the pair of interleaved ground contacts to the centerline of the other ground contact of the pair of interleaved ground contacts.

21. The electrical connector as recited in claim 20 , wherein the number of differential signal pairs per inch of card edge is approximately 85.

22. The electrical connector as recited in claim 13 , wherein the number of differential signal pairs per inch of card edge is approximately 71.

23. The electrical connector as recited in claim 13 , wherein the leadframe housing is overmolded onto the differential signal pairs.

24. The electrical connector as recited in claim 23 , wherein the leadframe housing is further overmolded onto the ground contacts.

25. An electrical connector comprising:

a plurality of IMLAs, each IMLA including a leadframe housing that supports six edge coupled differential signal pairs and interleaved ground contacts along a respective leadframe housing centerline, wherein the six differential signal pairs and respective interleaved ground contacts of each IMLA fit within a 35 mm card pitch, and wherein a pair of the interleaved ground contacts are (1) separated by one of the six differential signal pairs of a first IMLA, and (2) define a distance of approximately 3.6 mm from a centerline of a first ground contact of the pair interleaved ground contacts to a centerline of the other ground contact of the pair of interleaved ground contacts.

26. The electrical connector as recited in claim 25 , wherein the electrical connector is shieldless.

27. The electrical connector as recited in claim 25 , wherein the electrical connector is a right-angle electrical connector.

28. The electrical connector as recited in claim 27 , wherein the electrical connector is shieldless.

29. The electrical connector as recited in claim 25 , wherein the pair of interleaved ground contacts are separated by a distance of approximately 3.0 mm from the centerline of the first ground contact of the pair of interleaved ground contacts to the centerline of the other ground contact of the pair of interleaved ground contacts.

30. The electrical connector as recited in claim 25 , wherein the number of differential signal pairs per inch of card edge is approximately 101 to 102.

31. The electrical connector as recited in claim 25 , wherein the number of differential signal pairs per inch of card edge is approximately 84 to 85.

32. The electrical connector as recited in claim 25 , wherein six differential signal pairs and respective interleaved ground contacts of each IMLA fit within a 25 mm card pitch.

33. The electrical connector as recited in claim 25 , wherein the leadframe housing is overmolded onto the differential signal pairs.

34. The electrical connector as recited in claim 33 , wherein the leadframe housing is further overmolded onto the ground contacts.

35. The electrical connector as recited in claim 25 , wherein (1) the connector is devoid of metallic crosstalk plates, (2) the connector operates at a data transfer rate of at least 4 Gigabits/sec, (3) the one of the six differential signal pairs of the first IMLA is a victim pair, (4) six differential signal pairs closest to the victim differential signal pair are aggressor pairs, and (5) the six aggressor pairs produce no more than 6% worst-case, multi-active cross talk on the victim differential signal pair as determined by the sum of the absolute values of the six aggressor pairs.

36. The electrical connector as recited in claim 35 , wherein the data transfer rate is at or between 6.25 and 12.5 Gigabits/sec.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2013
From: MINICH, STEVEN E.; JOHNESCU, DOUGLAS M.; BUCK, JONATHAN E.
To: FCI AMERICAS TECHNOLOGY LLC
Reel/Frame 030057/0784 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2013
From: SERCU, STEFAAN HENDRIK JOZEF
To: FCI
Reel/Frame 030057/0863 →
Continuity (11)
Continuation 13310970 · Dec 5, 2011
Continuation 12843735 · Jul 26, 2010
Continuation 12396086 · Mar 2, 2009
Division 11958098 · Dec 17, 2007
Continuation In Part 11726936 · Mar 23, 2007
Provisional Application 60870791 · Dec 19, 2006
Provisional Application 60870793 · Dec 19, 2006
Provisional Application 60870796 · Dec 19, 2006
Provisional Application 60887081 · Jan 29, 2007
Provisional Application 60917491 · May 11, 2007
Related Publication 20130183869A1 · Jul 18, 2013