IP Library Granted Patent US 8,467,679
Granted Patent B2
US 8,467,679 · App. 12/333,928 · Granted Jun 18, 2013

Pluggable module for a network with add-drop functionality

Inventor: Henning Hinderthuer (Finning, DE)
Assignee: Adva Optical Networking SE
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Quick Facts
Patent No.
US 8,467,679
App. No.
12/333,928
Granted
Jun 18, 2013
Kind
B2
Abstract

The invention provides a network and a method for bidirectional transport of data and in particular a pluggable module for bidirectional transport of data via at least one optical fiber between host devices providing an add/drop functionality by means of an integrated bandwidth adaption unit. The network comprises at least one host device having an interface card connected to a backplane of the host device, wherein the interface card comprises at least one cage for receiving a pluggable module which provides the add/drop functionality between an optical interface and the electrical host interface.

Claims (30)

1. A network comprising at least one host device having an interface card connected to a backplane of said host device,

wherein said interface card comprises at least one cage for receiving a pluggable module which provides an add-drop-functionality between an optical network interface and an electrical host interface,

wherein said pluggable module comprises an integrated bandwidth adaption unit,

wherein said bandwidth adaption unit provides a data packet based add-drop-functionality between said optical network interface and the electrical host interface, and

wherein said bandwidth adaption unit provides a homogeneous distribution of an available protocol bandwidth to each host device of said network.

2. The network according to claim 1 , wherein said optical network interface comprises at least two bidirectional optical interface ports each performing a simple fibre working (SFW) to provide bidirectional east and west communication within said network.

3. The network according to claim 1 , wherein said bandwidth adaption unit provides a symmetric or an asymmetric timeslot based add-drop-functionality between said optical network interface and the electrical host interface.

4. The network according to claim 1 , wherein the electrical host interface is a standard MSA interface.

5. The network according to claim 1 , wherein host devices of said network are connected to each other by means of pluggable modules in a daisy chain.

6. The network according to claim 1 , wherein a topology discovery performed by a master host device of said network using a topology discovery protocol for detecting a network topology of said network.

7. The network according to claim 6 , wherein the number of host devices of said network is detected by the topology discovery.

8. The network according to claim 6 , wherein said master host device allocates usable bandwidth to the other host devices of said network depending on the electrical topology of the network using a bandwidth allocation management protocol.

9. The network according to claim 6 , wherein said pluggable module provides a management protocol between multiple pluggable modules that performs said network topology discovery.

10. The network according to claim 9 , wherein said pluggable module further provides a management protocol between multiple pluggable modules that performs an automatic configuration of multiple pluggable modules that are connected to said common network based upon topology information data and a set of default parameters.

11. The network according to claim 1 , wherein a configuration of an add/drop protocol bandwidth within a standard protocol and an add/drop network element topology is configurable from the far end side.

12. The network according to claim 1 , wherein said pluggable module is adapted to configure an add/drop protocol bandwidth within a standard protocol and an add/drop network element topology from a far end pluggable module.

13. A pluggable module for bidirectional transport of data via at least one optical fibre between host devices, comprising an integrated bandwidth adaption unit,

wherein said integrated bandwidth adaption unit provides a data packet based add-drop-functionality between an optical network interface and an electrical host interface,

wherein the pluggable module is adapted to be pluggable into a cage of one of said host devices, and

wherein said bandwidth adaption unit provides a homogeneous distribution of an available protocol bandwidth to each host device of said network.

14. The pluggable module according to claim 13 , wherein said pluggable module comprises: at least two bidirectional optical interface ports each performing single fibre working (SFW) to provide bidirectional East and West communication within a network and an integrated bandwidth adaption unit provides an homogeneous distribution of available protocol bandwidth to each host device of said network.

15. An interface card for a host device comprising at least one cage for receiving a pluggable module according to claim 13 .

16. A host device comprising at least one interface card according to claim 15 connected to a backplane of said host device.

17. A data transport system for transporting bidirectional optical data via at least one optical fibre, wherein at both ends of said optical fibre a pluggable module according to claim 13 is attached which provides the data packet based add-drop-functionality between the optical network interface and the electrical host interface.

18. A method for bidirectional transport of data between host devices of a network via at least one optical fibre,

wherein a pluggable module attached to said optical fibre is connected to a cage of one of said host devices,

wherein said pluggable module comprises an integrated bandwidth adaption unit, and

wherein said bandwidth adaption unit provides a data packet based add-drop-functionality between an optical network interface and an electrical host interface, and

the method comprising providing an add-drop functionality by said pluggable module,

wherein said bandwidth adaption unit provides a homogeneous distribution of an available protocol bandwidth to each host device of said network.

Assignments (4)
CHANGE OF NAME Recorded Nov 14, 2023
From: ADVA OPTICAL NETWORKING SE
To: ADTRAN NETWORKS SE
Reel/Frame 065567/0165 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ADDRESS INCORRECTLY NOTED AS: MÄRZENQUELLE 1-3, 98617 MEININGEN OT DREIBIGACKER PREVIOUSLY RECORDED ON REEL 030071 FRAME 0578. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT ADDRESS SHOULD BE: MAERZENQUELLE 1-3, 98617 MEININGEN OT DREISSIGACKER GERMANY. Recorded Apr 22, 2014
From: ADVA AG OPTICAL NETWORKING
To: ADVA OPTICAL NETWORKING SE
Reel/Frame 032732/0816 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2013
From: ADVA AG OPTICAL NETWORKING
To: ADVA OPTICAL NETWORKING SE
Reel/Frame 030071/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2009
From: HINDERTHUER, HENNING
To: ADVA AG OPTICAL NETWORKING
Reel/Frame 022344/0230 →
Priority Claims (2)
EP 07123047 · Dec 12, 2007 · regional
EP 08156577 · May 20, 2008 · regional
Continuity (1)
Related Publication 20090154930A1 · Jun 18, 2009