Claims
- 1. For use with a telecommunication equipment housing that is configured to support a communication circuit monitoring unit adapted to monitor one or more parameters of a communication circuit over which respective communication devices communicate with each other, a method of selectively coupling said monitoring unit with said communication circuit or causing said communication circuit to by-pass said monitoring unit, said method comprising the steps of:
(a) installing, in a first portion of said telecommunication equipment housing, a circuit card containing said monitoring unit; and (b) installing, in a second portion of said telecommunication equipment housing separate from said first portion thereof, a monitoring unit by-pass switching circuit, which includes a switchable circuit path portion that is controllably operative to selectively couple said monitoring unit with said communication circuit, or to provide communication connectivity between said respective communication devices over said communication circuit, by-passing said monitoring unit, and a switchable circuit path control portion that is adapted to control the connectivity path through said switchable circuit path portion.
- 2. The method according to claim 1, wherein step (b) includes providing power for operating said by-pass switching circuit at said second portion of said telecommunication equipment housing.
- 3. The method according to claim 1, wherein said by-pass switching circuit comprises a controlled relay, the switchable circuit path control portion of which comprises a relay coil portion, and the switchable circuit path portion of which is adapted to provide connectivity therethrough, between said monitoring unit and said communication circuit, in response to energization of said relay coil portion, and to provide communication connectivity therethrough between said respective communication devices, in the absence of energization of said relay coil portion.
- 4. The method according to claim 3, wherein step (b) includes selectively controlling the operation of said relay coil portion in accordance with the operational capability of said monitoring unit.
- 5. The method according to claim 4, wherein step (b) includes selectively activating an indicator in accordance with deficiency in operational capability of said monitoring unit.
- 6. The method according to claim 3, wherein step (b) includes activating an indicator in association with de-energization of said relay coil portion of said controlled relay.
- 7. The method according to claim 1, wherein said switchable circuit path control portion is operative to cause said switchable circuit path portion to provide communication connectivity between said respective communication devices over said communication circuit, by-passing said monitoring unit, in response to a decoupling of said circuit card from said first portion of said telecommunication equipment housing.
- 8. The method according to claim 1, wherein said communication circuit comprises a digital communication circuit and said monitoring unit resides in a network interface unit.
- 9. The method according to claim 1, wherein step (b) comprises causing said switchable circuit path control portion to provide communication connectivity between said respective communication devices over said communication circuit, by-passing said monitoring unit, in response to occurrence of an anomaly associated with the intended operation of said monitoring unit.
- 10. A method comprising the steps of:
(a) providing a telecommunication equipment housing supporting a communication circuit monitoring unit that is adapted to monitor one or more parameters of a communication circuit over which respective digital communication devices conduct digital communications with each other; (b) configuring said telecommunication equipment housing so as to allow removal of said monitoring unit therefrom without interrupting digital communications over said communication circuit between said respective digital communication devices.
- 11. The method according to claim 10, wherein step (b) comprises installing, in a first portion of said telecommunication equipment housing, a circuit card containing said monitoring unit, and installing, in a second portion of said telecommunication equipment housing separate from said first portion thereof, a monitoring unit by-pass switching circuit, which includes a switchable circuit path portion that is controllably operative to selectively couple said monitoring unit with said communication circuit, or to provide digital communication connectivity between said respective digital communication devices over said communication circuit, by-passing said monitoring unit, and a switchable circuit path control portion that is adapted to control the connectivity path through said switchable circuit path portion.
- 12. The method according to claim 11, wherein said by-pass switching circuit is operative to continue to by-pass said monitoring unit subsequent to re-installation of said card into said first portion of said telecommunication equipment housing, until receipt by said switchable circuit path control portion of a control signal representative of an acceptable operational status of said monitoring unit.
- 13. A telecommunication equipment housing architecture comprising:
a communication circuit monitoring unit that is adapted to monitor one or more parameters of a communication circuit over which respective communication devices communicate with each other, said monitoring unit being installed in a first portion of said telecommunication equipment housing; and a monitoring unit by-pass switching circuit installed in a second portion of said telecommunication equipment housing separate from said first portion thereof, said monitoring unit by-pass switching circuit including a switchable circuit path portion that is controllably operative to selectively couple said monitoring unit with said communication circuit, or to provide communication connectivity between said respective communication devices over said communication circuit, by-passing said monitoring unit, and a switchable circuit path control portion that is adapted to control the connectivity path through said switchable circuit path portion.
- 14. The telecommunication equipment housing architecture according to claim 13, wherein power for operating said by-pass switching circuit is provided at said second portion of said telecommunication equipment housing.
- 15. The telecommunication equipment housing architecture according to claim 13, wherein said by-pass switching circuit comprises a controlled relay, the switchable circuit path control portion of which comprises a relay coil portion, and the switchable circuit path portion of which is adapted to provide connectivity therethrough, between said monitoring unit and said communication circuit, in response to energization of said relay coil portion, and to provide communication connectivity therethrough between said respective communication devices, in the absence of energization of said relay coil portion.
- 16. The telecommunication equipment housing architecture according to claim 15, wherein said circuit card further includes a control circuit that is adapted to control the operation of said relay coil portion in accordance with a control signal associated with the operational capability of said monitoring unit.
- 17. The telecommunication equipment housing architecture according to claim 16, wherein said control circuit is adapted to activate an indicator in the absence of application to said control circuit of said control signal representative of the operational capability of said monitoring unit.
- 18. The telecommunication equipment housing architecture according to claim 17, wherein said indicator adapted to be activated in association with de-energization of said relay coil portion of said controlled relay.
- 19. The telecommunication equipment housing architecture according to claim 13, wherein said switchable circuit path control portion is operative to cause said switchable circuit path portion to provide communication connectivity between said respective communication devices over said communication circuit, by-passing said monitoring unit, in response to a decoupling of said circuit card from said first portion of said telecommunication equipment housing.
- 20. The telecommunication equipment housing architecture according to claim 13, wherein said communication circuit comprises a digital communication circuit and said monitoring unit resides in a network interface unit.
- 21. A method of providing selectable communication circuit connectivity between communication devices coupled to a network interface unit located in a card slot of a telecommunication equipment housing, where said network interface unit has a status of pass for fail, said method comprising:
(a) connecting said communication devices through said network interface unit when the status is pass; and (b) by-passing said network interface unit when the status is fail, or when a network card is absent from said card slot.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application claims the benefit of copending U.S. Provisional Patent Application Serial No. 60/313,100, filed Aug. 17, 2001, by David E. Jones et al, entitled: “DS3 NETWORK INTERFACE UNIT BY-PASS WITHIN HOUSINGS AND SHELVES,” assigned to the assignee of the present application and the disclosure of which is incorporated herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60313100 |
Aug 2001 |
US |