Claims
- 1. A synchronous optical network (SONET) multiplexer module, comprising:
a SONET multiplexer circuit, mounted on a supporting surface; and a face plate, coupled to the supporting surface, and having at least one coaxial connector mounted thereto which is electrically coupled to the SONET multiplexer circuit.
- 2. A SONET multiplexer module as claimed in claim 1, wherein:
the face plate has a plurality of coaxial connectors mounted thereto.
- 3. A SONET multiplexer module as claimed in claim 1, wherein:
the supporting surface comprises at least one printed circuit board.
- 4. A SONET multiplexer module as claimed in claim 1, wherein:
the face plate has at least one optical connector mounted thereto which is electrically coupled to the SONET multiplexer circuit.
- 5. A SONET multiplexer module as claimed in claim 1, wherein:
the SONET multiplexer circuit is configured in a standard Type 400 mechanics circuit board arrangement.
- 6. A SONET multiplexer module as claimed in claim 1, wherein:
the supporting surface comprises at least one connector at a location distal from the at least one coaxial connector, the at least one connector being adapted to couple to a connector in an enclosure when the SONET multiplexer module is inserted in a opening in the enclosure.
- 7. A SONET multiplexer module as claimed in claim 1, wherein:
the faceplate further includes mounted thereon at least one indicator light emitting diode (LED) adapted to provide an indication of the status of the SONET multiplexer circuit, and at least one switch coupled to the SONET multiplexer circuit.
- 8. A SONET multiplexer module as claimed in claim 1, wherein:
the SONET multiplexer module dimensions do not exceed an overall height of about 5.6 inches, and overall width of about 1.4 inches, and an overall depth of about 6 inches.
- 9. A method of using a synchronous optical network (SONET) multiplexer module comprising a SONET multiplexer circuit, mounted on a supporting surface, and a face plate coupled to the supporting surface and having at least one coaxial connector mounted thereto which is electrically coupled to the SONET multiplexer circuit, the method comprising:
inserting the SONET multiplexer module into an enclosure in a direction opposite to that in which the at least one coaxial connector projects from the face plate, so that the at least one coaxial connector remains freely accessible outside of the enclosure when the SONET multiplexer module is fully loaded into the enclosure.
- 10. A method as claimed in claim 9, further comprising:
coupling at least one coaxial cable to the at least one coaxial connector when the SONET multiplexer circuit is fully loaded into the enclosure.
- 11. A method as claimed in claim 10, further comprising:
further coupling the at least one coaxial cable that has been coupled to the at least one coaxial connector to at least one coaxial connector of at least one other module that is loaded in the enclosure.
- 12. A method as claimed in claim 10, wherein:
the at least one other module comprises at least one of a DS1-DS3 multiplexer and a wave dimension multiplexing coupler.
- 13. A method as claimed in claim 10, wherein:
the face plate has a plurality of coaxial connectors mounted thereto; and the method further comprises coupling a plurality of the coaxial cables to the plurality of coaxial connectors.
- 14. A method as claimed in claim 9, wherein:
the supporting surface comprises at least one printed circuit board; and the method comprises inserting the SONET module into the enclosure such that the at least one printed circuit board is contained in the enclosure.
- 15. A method as claimed in claim 9, wherein:
the face plate has at least one optical connector mounted thereto which is electrically coupled to the SONET multiplexer circuit and remains accessible when the SONET module is fully loaded in the enclosure during the inserting step.
- 16. A method as claimed in claim 9, wherein:
the supporting surface comprises at least one connector at a location distal from the at least one coaxial connector; and the inserting step includes coupling the at least one connector to a connector in an enclosure when the SONET multiplexer module is inserted in the opening in the enclosure.
- 17. A method as claimed in claim 9,wherein:
the faceplate further includes mounted thereon at least one indicator light emitting diode (LED) adapted to provide an indication of the status of the SONET multiplexer circuit, and at least one switch coupled to the SONET multiplexer circuit, the at least one indicator light and at least one switch remaining accessible when the SONET multiplexer module is fully loaded in the enclosure during the inserting step.
- 18. A method as claimed in claim 9, wherein:
the SONET multiplexer module dimensions do not exceed an overall height of about 5.6 inches, and overall width of about 1.4 inches, and an overall depth of about 6 inches; and the inserting step includes inserting the SONET multiplexer having these dimensions into an opening in the enclosure.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Related subject matters is disclosed in co-pending U.S. patent application of Bruce Lipski et al., filed even date herewith, entitled “Apparatus and Method for Increasing Optical Density of SONET Multiplexer Using Integral Components” (Attorney's File 44783); in co-pending U.S. patent application of Bruce Lipski et al., filed even date herewith, entitled “Compact Enclosure for Interchangeable SONET Multiplexer Cards and Method for Using Same” (Attorney's File 44785); and in co-pending U.S. patent application of Bruce Lipski et al., filed even date herewith, entitled “Apparatus And Method For Automatic Provisioning of SONET Multiplexer” (Attorneys File 44786); the entire contents of each of these applications being expressly incorporated herein by reference.