IP Library › Granted Patent US 8,894,296
Granted Patent B2
US 8,894,296 · App. 13/503,965 · Granted Nov 25, 2014

Powered cat 5 plug and socket

Inventor: Raymond John Peto (Dorset, GB)
H01R24/60H01R2107/00
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Quick Facts
Patent No.
US 8,894,296
App. No.
13/503,965
Granted
Nov 25, 2014
Kind
B2
Abstract

The invention provides a plug ( 100 ) which is adapted to be connected to a cable, such as an Ethernet cable, the plug ( 100 ) having a generally rectangular cross section and being dimensioned and arranged to be received by an aperture in a socket. On opposite lateral faces of the plug a region, or layer, of conductive material ( 24, 26 ) is provided for the transmission of electrical current to/from the cable. Use of the invention therefore permits cabling that has conventionally been used to supply data to also supply power, typically in excess of 200 Watts or so. Such amounts of power are sufficient for operating most equipment that also requires a data connection.

Claims (32)

1. A plug is adapted to be connected to a cable, the plug has electrical contacts and a generally rectangular cross section that is dimensioned and arranged to be received by an aperture in a socket; a conductor is provided on each of two opposite lateral faces of the plug, said conductors are isolated from electrical connection with the cable that is connected to the plug, prior to insertion of the plug into the socket (floating); and a means is provided to urge the electrical conductors to connect to the cable when the plug is inserted into the socket, whereby insertion of the plug into the socket causes the conductors to connect to contacts on opposite lateral faces of the socket so as to permit transmission of electrical current to/from the cable, via the conductors in the plug, to contacts in the socket.

2. A plug according to claim 1 , wherein the shroud is mounted on the plug and is displaceable with respect to the plug.

3. A plug according to claim 2 , wherein a resilient means displaces the at least one shroud, to a closed position upon removal of the plug from the socket.

4. A plug according to claim 1 , wherein the conductors have conductive faces that are capable of carrying in excess of 3 Amps of current.

5. A plug according to claim 1 , wherein the conductors have conductive faces that are capable of carrying in excess of 5 Amps of current.

6. A plug according to claim 1 , wherein the conductors have conductive faces that are capable of carrying in excess of 10 Amps of current.

7. A plug according to claim 4 , wherein the conductive faces are capable of supplying in excess of 50 Watts of power.

8. A plug according to claim 5 , wherein the conductive faces are capable of supplying in excess of 200 Watts of power.

9. A plug according to claim 6 , wherein the conductive faces are capable of supplying in excess of 500 Watts of power.

10. A plug according to claim 1 includes at least one optical communication cable.

11. A plug according to claim 10 , wherein the optical communication cable is formed from a polymer optical fibre.

12. A plug according to claim 10 includes a support for said at least one optical communication cable, the support being displaceable with respect to an opto coupler which is adapted to cooperate with an external optical communication channel.

13. A plug according to claim 1 includes a pip, lug or projection dimensioned and arranged so as to prevent inadvertent insertion of the plug into a non-compatible socket.

14. A plug is adapted to be connected to a cable, the plug has a generally rectangular cross section that is dimensioned and arranged to be received by an aperture in an electrical socket; an electrical conductor is provided on each of two opposite lateral faces of the plug; at least one shroud isolates the electrical conductors prior to insertion of the plug into the socket (floating) from electrical contacts in the socket, whereby the action of inserting the plug into the socket causes the at least one shroud to displace so permitting the conductors of the plug to connect to contacts in the socket and thereby enables transmission of electrical current to/from the cable via conductors in the plug, to contacts in the socket.

15. A plug according to claim 14 , wherein the shroud is mounted on the plug and is displaceable with respect to the plug.

16. A plug according to claim 15 , wherein a resilient means displaces the at least one shroud, to a closed position upon removal of the plug from the socket.

17. A plug according to claim 14 , includes a plurality of connections supported on the plug for transmitting and receiving signals to and/or from at least one data channel.

18. A plug according to claim 14 , wherein the conductors have conductive faces that are capable of carrying in excess of 3 Amps of current.

19. A plug according to claim 14 , wherein the conductors have conductive faces that are capable of carrying in excess of 5 Amps of current.

20. A plug according to claim 14 , wherein the conductors have conductive faces that are capable of carrying in excess of 10 Amps of current.

21. A plug according to claim 18 , wherein the conductive faces are capable of supplying in excess of 50 Watts of power.

22. A plug according to claim 19 , wherein the conductive faces are capable of supplying in excess of 200 Watts of power.

23. A plug according to claim 20 , wherein the conductive faces are capable of supplying in excess of 500 Watts of power.

24. A plug according to claim 14 includes at least one optical communication cable.

25. A plug according to claim 24 wherein the optical communication cable is formed from a polymer optical fibre.

26. A plug according to claim 24 includes a support for said at least one optical communication cable, the support being displaceable with respect to an opto coupler which is adapted to cooperate with an external optical communication channel.

27. A plug according to claim 14 includes a pip, lug or projection dimensioned and arranged so as to prevent inadvertent insertion of the plug into a non-compatible socket.

28. A socket has an aperture which receives a plug there being a plurality of contacts arranged to receive signals from one or more data carrying connections on the plug, when inserted in the socket, and contacts are provided in the socket for making electrical connection with said conductors so as to supply electrical current to power a device, there being a means to isolate the contacts in the socket, when the plug with conductors is removed therefrom so as to prevent inadvertent shorting.

29. A socket according to claim 28 , includes a shroud provided in the socket and at least one shutter or cover arranged to isolate the at least one contact.

30. A socket according to claim 29 wherein a resilient means displaces the at least one shutter or cover to its closed position upon removal of the plug from the socket.

31. A socket according to claim 28 wherein a pair of contacts is provided said contacts are adapted to provide a data connection in addition to a power supply.

32. A socket according to claim 28 wherein the aperture is shaped and configured to receive a conventional standard 8 way category 5 plug.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2015
From: PETO, RAYMOND JOHN
To: FIBREPOINT LIMITED
Reel/Frame 036436/0364 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2015
From: FIBREPOINT LIMITED
To: POWDAC LIMITED
Reel/Frame 036436/0496 →
Priority Claims (1)
GB 0919157.8 · Oct 31, 2009 · national
Continuity (1)
Related Publication 20120269484A1 · Oct 25, 2012