gczl20060027-ZXMP+S385+Engineering+Document

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ZXMP S385 SDH Based Multi-Service Node Equipment Engineering Document Contract No. __________________ Project Name __________________ User __________________ ZTE CORPORATION

Transcript of gczl20060027-ZXMP+S385+Engineering+Document

ZXMP S385 SDH Based Multi-Service Node Equipment Engineering Document Contract No.__________________ Project Name __________________ User __________________ ZTE CORPORATION ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record ZXMP S385 SDH Based Multi-Service Node Equipment Engineering Document Document Version20060627-R1.0 Product VersionV1.0V1.1V2.0V2.1 Copyright ZTE Corporation All rights reserved. Nopartofthisdocumentationmaybeexcerpted,reproduced,translated,annotatedor duplicated,inanyformorbyanymeanswithoutthepriorwrittenpermissionofZTE Corporation. ZTE CORPORATION ZTE Plaza, Keji Road South, Hi-Tech Industrial Park, Nanshan District, Shenzhen, P.R.China Postcode: 518057 Technical Support Website: http://support.zte.com.cn Customer Support Center: Tel: (+86755) 26771900800-9830-9830 Fax: (+86755) 26770801 Email: [email protected] **** S.N.: gczl20060027 ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record Contract No.__________________ Project Name__________________ User__________________ Date of Acceptance __________________ ZTE CORPORATION ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record -1- 1. Project Acceptance Organization UserProject Name Date of Commencement Date of Completion Users Personnel Person in charge: Participants: ZTEs Personnel Person in charge: Participants: Project supervisors Personnel Person in charge: Participants: Constructor s Personnel Person in charge: Participants: Remark ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record -1- 2. Test Record of Basis System Functions Test No.DescriptionCriteria Test Result Conclusion Remark 1-1-1-APrimary power voltage-57 V ~-43 VPass Fail 1-1-2-A The voltage between the working ground and protective ground Less than 1VPass Fail 1-2-1-ATesting the plug-in box of the fan Pass Fail 1-3-1-AAlarm indicatorPass Fail 1-3-2-AAlarm buzzerPass Fail 1-4-1-ALOS protection switchingPass Fail 1-4-2-AAIS protection switchingPass Fail 1-4-3-A1:N protection switchingPass Fail 1-5-1-A Changeover between two external timing sources Pass Fail 1-5-2-A Changeoverbetweenexternal timingsourceandlinetiming source Pass Fail 1-5-3-AClock alarmPass Fail 1-6-1-AEndpoint callPass Fail 1-6-2-AGroup callPass Fail 1-6-3-ACall break-inPass Fail 1-6-4-AVoice quality and volumePass Fail 1-7-1-A15-minute errored secondsPass Fail 1-7-2-A24-hour errored secondsPass Fail ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record -1- 3. Test Record of NE-Level Management Functions Test No.DescriptionTest ResultConclusionRemark 2-1-1-A Connectionbetweenthe EMSterminaltheand equipment Pass Fail 2-1-2-A Sendingcommandsand receiving data Pass Fail 2-1-3-AClosing /accessing the EMSPass Fail 2-2-1-APreventing illegal login Pass Fail 2-2-2-AUser operation authority Pass Fail 2-3-1-AReporting alarm messages Pass Fail 2-3-2-ARecording alarm messages Pass Fail 2-3-3-ASetting alarm mask Pass Fail 2-3-4-ASetting alarm severity Pass Fail 2-3-5-A Queryingcurrentand historical alarms Pass Fail 2-4-1-A Samplingperformance parameters Pass Fail 2-5-1-A Graphicalnetwork configuration Pass Fail 2-5-2-A Establishingandcanceling service channels Pass Fail 2-5-3-A Protectionswitching parameter settings Pass Fail 2-6-1-AInserting loopback Pass Fail 2-6-2-AData backup and recovery Pass Fail ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record -1- 4. Test Records of Service Card Indices The optical interface of _______________ at _________________ siteTest No.DescriptionTest ResultConclusionRemark 3-1-1-A Transmittingoptical power Pass Fail 3-2-1-AReceiving optical power Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail Pass Fail ZXMP S385 SDH Based Multi-Service Node Equipment Acceptance Test Record -1- 5. Acceptance Conclusion Users representative Signed by:Date: ZTEs representative Signed by:Date: Project supervisors representative Signed by:Date: Constructor s representative Signed by:Date: -1- ZXMP S385 SDH Based Multi-Service Node Equipment Installation Acceptance Report Contract No.___________ Project Name___________ Installation Site___________ Acceptance Date___________ ZTE CORPORATIONZXMP S385 SDH Based Multi-Service Node Equipment Installation Acceptance Report 1 1.1 Introduction ThisInstallationAcceptanceReportiscompiledinaccordancewiththerelevant standardsoftheMinistryofInformationIndustryandonthebasisoftheactual situation with the Unitrans ZXMP S385. It is to be used in the hardware installation acceptance of the Unitrans ZXMP S385. ZXMP S385 SDH Based Multi-Service Node Equipment Installation Acceptance Report 2 1.2 Arrangement for Project Acceptance User companyProject Name Start DateFinish Date Userpersonnel arrangement Person in charge: Participants: ZTEpersonnel arrangement Person in charge: Participants: Project supervisor arrangement Person in charge: Participants: Construction contractor personnel arrangement Person in charge: Participants: Remarks ZXMP S385 SDH Based Multi-Service Node Equipment Installation Acceptance Report 3 1.3 Items for Hardware Acceptance ItemAcceptance Contents and AcceptabilityResultAcceptance ConclusionCabinetsmustbeputintoplacesdesignatedinthedesignshop drawing (or required by the user). PassFail The reserved space around the cabinet for maintenance should meet the equipment requirements. PassFail Racksmustbeinstalledfixedly,withverticalandhorizontal deviations less than 0.1of the rack height. PassFail Racks in a row should be closely arranged in an orderly way. And the gap between the racks should not be greater than 3 mm. PassFail No parts of racks should fall off or be damaged or lost. The rack paint coating should be in good state, and the various device marks should be correct, clear and complete. PassFail Racks must be fixed to the ground with expansion bolts, and to the upper beam of the column conduit with clamps. PassFail All fasteners must be screwed down. The part of the same type screws that is shown out of the screw caps must be in the same height. PassFail Rack installation acceptance The device earthquake proof must be up to the relevant standards of the Ministry of Posts and Telecommunications. The earthquake proof measuresmustconformtotherequirementofthedesignandshop drawings (or the user). PassFail Thereinforcementofracksandsub-racksmustconformtothe requirements for equipment installation. PassFail Sub-racksmustbeinstalledfirmlyandarrangedorderly,with connection components in good contact. PassFail The alarm box must be installed fixedly, with connection components in good contact. PassFail Sub-rack installation acceptance The cables inside a sub-rack should be correctly connected. And the connection components should be in good contact. PassFail Theinstallationofthemaintenanceconsoleshouldmeetthe requirements of the design and shop drawings (or the user). PassFailEMS installation acceptance The installation of the network management equipment should meet the requirements of the design and shop drawings (or the user). PassFail Powercable routing process Thepowercablesandgroundcablesshouldbeconnectedcorrectly and placed firmly in order, and should be in good contact. PassFail Opticalfiber routing Theroutinganddirectionsofopticalfibersshouldmeetthe requirements of the design and shop drawings (or the user). PassFail ZXMP S385 SDH Based Multi-Service Node Equipment Installation Acceptance Report 4 ItemAcceptance Contents and AcceptabilityResultAcceptance ConclusionThe reserved length on both ends of the optical fibers should be the same and up to the process requirements. PassFail The curvature radius at the turning curve of an optical cable inside a conduit should be within 38 mm ~40 mm. PassFail The optical cables in the slot should be protected with cable sleeves andtroughs.Fibersnotprotectedwithcablesleevesshouldbe bundled with cable tie in a slipknot mode with appropriate tightness. PassFail Bundled optical cables should be kept straight in conduits. PassFail process Both ends of the routed pigtails should be clearly marked. PassFail The directions and routing of various types of cables should comply with the corresponding design specifications. PassFail Cables in a channel should be bundled. The bundled cables should be kept together closely and neatly. PassFail All cables and jumpers should be bundled with appropriate tightness and kept straight. PassFail The turnings of all cables should be bent evenly and smoothly. The part other than the turnings of the cables should be kept straight either vertically or horizontally. PassFail Both ends of the inter-rack cables and wires must be clearly labeled to avoid misconnection and neglect. PassFail Coaxial cables should have consistent reserved ends. The lengths of stripped parts of the coaxial cables should correspond to the relevant parts of the cable connectors. PassFail The core wires should be soldered firmly and smoothly without sharp points and knobs. PassFail Theconnectorsofthecoaxialcablesshouldbecompleteand assembled correctly and firmly. PassFail TheRJ 45connectorsofanetworkcableshouldbeconnected correctly. And the connectors and wires should be in good contact. PassFail Cable routing process Thestrippedpartsofshieldedwiresshouldbeoftheconsistent lengths.Andtheyshouldbeingoodcontactwiththeexternal conductors of the coaxial cable terminals. PassFail 11.4 Acceptance Conclusion User Representative: Signature: Date: ZTE representative Signature: Date: Project supervisor representative Signature: Date: Construction contractor representative Signature: Date: -2-