OXS Connector/Interface Sample Clauses

OXS Connector/Interface. With the decision to use ribbon single-mode fibre, deciding which optical connector to use is straightforward. The MTRJ only supports 2 or 4 fibres and has been made effectively obsolete by the MTP connector family. The MTP connector is currently available in 4, 8, 12, 24, and 72 fibre densities for multi-mode fibre (50 μm and 62.5 μm cores) and 4, 8, 12, and 24 fibre densities for single-mode fibre. The MTP Elite (low-loss) single-mode connector is available in both 8 and 12 fibre densities. Figure 8 presents the major features of various MTP connectors. For high performance characterization the angled variant has been selected..
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OXS Connector/Interface. Given the decision for ribbon single mode fiber, the decision for which optical connector to use is straight forward. The MTRJ only supports 2 or 4 fibers and has been made effectively obsolete by the MTP connector family. For high performance characterization the angled variant has been selected.

Related to OXS Connector/Interface

  • Access Toll Connecting Trunk Group Architecture 9.2.1 If CBB chooses to subtend a Verizon access Tandem, CBB’s NPA/NXX must be assigned by CBB to subtend the same Verizon access Tandem that a Verizon NPA/NXX serving the same Rate Center Area subtends as identified in the LERG.

  • Network Interconnection Architecture Each Party will plan, design, construct and maintain the facilities within their respective systems as are necessary and proper for the provision of traffic covered by this Agreement. These facilities include but are not limited to, a sufficient number of trunks to the point of interconnection with the tandem company, and sufficient interoffice and interexchange facilities and trunks between its own central offices to adequately handle traffic between all central offices within the service areas at P.01 grade of service or better. The provisioning and engineering of such services and facilities will comply with generally accepted industry methods and practices, and will observe the rules and regulations of the lawfully established tariffs applicable to the services provided.

  • Network Interconnection 26.1 Interconnection between the networks of different SERVICE PROVIDERs shall be as per National Standards of CCS No.7 issued from time to time by Telecom Engineering Centre (TEC) and also subject to technical feasibility and technical integrity of the Networks and shall be within the overall framework of interconnection regulations issued by the TRAI from time to time. However, if situation so arises, INTERCONNECTION with R2MF signaling may be permitted by LICENSOR.

  • Network Interface Device (NID) 2.7.1 The NID is defined as any means of interconnection of end-user customer premises wiring to BellSouth’s distribution plant, such as a cross-connect device used for that purpose. The NID is a single-line termination device or that portion of a multiple-line termination device required to terminate a single line or circuit at the premises. The NID features two independent xxxxxxxx or divisions that separate the service provider’s network from the end user’s customer-premises wiring. Each chamber or division contains the appropriate connection points or posts to which the service provider and the end user each make their connections. The NID provides a protective ground connection and is capable of terminating cables such as twisted pair cable.

  • One-Way Interconnection Trunks 2.3.1 Where the Parties have agreed to use One-Way Interconnection Trunks for the delivery of traffic from PCS to Verizon, PCS, at PCS’s own expense, shall:

  • Network Resource Interconnection Service (check if selected)

  • Access to Network Interface Device (NID 2.4.3.1. Due to the wide variety of NIDs utilized by BellSouth (based on subscriber size and environmental considerations), Mpower may access the on-premises wiring by any of the following means: BellSouth shall allow Mpower to connect its loops directly to BellSouth’s multi-line residential NID enclosures that have additional space and are not used by BellSouth or any other telecommunications carriers to provide service to the premise. Mpower agrees to install compatible protectors and test jacks and to maintain the protection system and equipment and to indemnify BellSouth pursuant to Section 8 of the General Terms and Conditions of this Agreement.

  • Signaling protocol The Parties will interconnect their networks using SS7 signaling where Technically Feasible and available as defined in GR 905 Telcordia Standards including ISDN User Part (ISUP) for trunk signaling and TCAP for CCS-based features in the Interconnection of their networks. All Network Operations Forum (NOF) adopted standards shall be adhered to. Where available, CenturyLink signaling services to link its Signaling Transfer Points (STPs) for CLEC switches which connect to CenturyLink’s STPs via “A” links or for CLEC’s STPs to connect to CenturyLink’s STPs via “D” links which are dedicated to the transport of signaling for local Interconnection, may be ordered from the CenturyLink Tariff.

  • Loop Provisioning Involving Integrated Digital Loop Carriers 2.6.1 Where InterGlobe has requested an Unbundled Loop and BellSouth uses IDLC systems to provide the local service to the End User and BellSouth has a suitable alternate facility available, BellSouth will make such alternative facilities available to InterGlobe. If a suitable alternative facility is not available, then to the extent it is technically feasible, BellSouth will implement one of the following alternative arrangements for InterGlobe (e.g. hairpinning):

  • Programming Phase 2.2.1.2. Schematic Design Phase: 2.2.1.3. Design Development Phase:

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