Claims
- 1. A service unit for a network element, comprising:
a first backplane interface to said network element, wherein said first backplane interface conveys payload data using a first communication protocol; and a second backplane interface to said network element, wherein said second backplane interface conveys payload data using a second communication protocol.
- 2. The service unit of claim 1, wherein said first communication protocol is asynchronous transfer mode.
- 3. The service unit of claim 2, wherein said second communication protocol is synchronous transfer mode.
- 4. The service unit of claim 1, wherein said first communication protocol is Ethernet.
- 5. The service unit of claim 3, wherein said first backplane interface is to couple with a first star interconnect configuration within said network element.
- 6. The service unit of claim 5, wherein said second backplane interface is to couple with a second star interconnect configuration within said network element.
- 7. The service unit of claim 6, wherein said first star interconnect includes a line unit slot as a hub, and wherein said second star interconnect includes a switch fabric slot as a hub, and wherein said first star interconnect further includes said switch fabric slot, and wherein said second star interconnect further includes said line unit slot.
- 8. The service unit of claim 1, further comprising a third backplane interface to couple with a control star interconnect configuration within said network element.
- 9. The service unit of claim 1, further comprising an input output (I/O) interface external to said network element.
- 10. The service unit of claim 9, wherein said input output interface is a local area network interface.
- 11. The service unit of claim 10, wherein said local area network interface is an Ethernet interface.
- 12. The service unit of claim 9, wherein said input output interface is a telecommunications interface.
- 13. The service unit of claim 12, wherein said telecommunications interface is a digital multiplex hierarchy (DMH) interface.
- 14. The service unit of claim 13, wherein said digital multiplex hierarchy interface is a digital signal 1 (DS-1) interface.
- 15. The service unit of claim 14, wherein said digital multiplex hierarchy interface is a digital signal 3 (DS-3) interface.
- 16. The service unit of claim 12, wherein said telecommunications interface is an optical carrier 3 (OC-3) interface.
- 17. The service unit of claim 9, further comprising a data forwarding mechanism for forwarding a first data unit received from said first backplane interface to said second backplane interface, and a second data unit received from said first backplane interface to said input output interface.
- 18. The service unit of claim 17, further comprising a data forwarding mechanism for forwarding a first data unit received from said second backplane interface to said first backplane interface, and a second data unit received from said second backplane interface to said input output interface.
- 19. The service unit of claim 9, further comprising a data forwarding mechanism for forwarding a first data unit received from said input output interface to said first backplane interface, and a second data unit received from said input output interface to said second backplane interface.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a Divisional of U.S. patent application Ser. No. 09/325,187, filed Jun. 3, 1999, entitled ARCHITECTURE FOR A HYBRID STM/ATM ADD-DROP MULTIPLEXER.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09325187 |
Jun 1999 |
US |
Child |
10100208 |
Mar 2002 |
US |