NAVY MIL-STD-2042-2 B-2002 FIBER OPTIC CABLE TOPOLOGY INSTALLATION STANDARD METHODS FOR NAVAL SHIPS (EQUIPMENT) (PART 2 OF 7 PARTS)《海军舰光缆拓扑装置标准方法(设备)》.pdf
《NAVY MIL-STD-2042-2 B-2002 FIBER OPTIC CABLE TOPOLOGY INSTALLATION STANDARD METHODS FOR NAVAL SHIPS (EQUIPMENT) (PART 2 OF 7 PARTS)《海军舰光缆拓扑装置标准方法(设备)》.pdf》由会员分享,可在线阅读,更多相关《NAVY MIL-STD-2042-2 B-2002 FIBER OPTIC CABLE TOPOLOGY INSTALLATION STANDARD METHODS FOR NAVAL SHIPS (EQUIPMENT) (PART 2 OF 7 PARTS)《海军舰光缆拓扑装置标准方法(设备)》.pdf(70页珍藏版)》请在麦多课文档分享上搜索。
1、METRICMIL-STD-2042-2B(SH)25 July 2002SUPERSEDINGMIL-STD-2042-2A(SH)29 September 1997MIL-STD-2042-2(SH)7 July 1993DEPARTMENT OF DEFENSESTANDARD PRACTICEFIBER OPTIC CABLE TOPOLOGY INSTALLATIONSTANDARD METHODS FOR NAVAL SHIPS(EQUIPMENT)(PART 2 OF 7 PARTS)AMSC N/A AREA GDRQDISTRIBUTION STATEMENT A. Appr
2、oved for public release; distribution is unlimited.Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-2042-2B(SH)iiFOREWORD1. This Department of Defense Standard Practice is approved for use by theNaval Sea Systems Command, Department of the Nav
3、y, and is available for use by allDepartments and Agencies of the Department of Defense.2. Beneficial comments (recommendations, additions, deletions) and anypertinent data which may be of use in improving this document should be addressedto: Department of the Navy, Naval Sea Systems Command, ATTN:
4、SEA 05Q, 1333 IsaacHull Avenue Southeast, Stop 5160, Washington Navy Yard, DC 20376-5160 by using theself-addressed Standardization Document Improvement Proposal (DD Form 1426)appearing at the end of this document or by letter.3. This standard practice provides detailed information and guidance tope
5、rsonnel concerned with the installation of fiber optic cable topologies (opticalfiber cabling and associated components) on Naval surface ships and submarines. Themethods specified herein are not identifiable to any specific ship class or type,but are intended to standardize and minimize variations
6、in installations to enhancethe compatibility of the installations on all Naval ships.4. In order to provide flexibility in the use and update of the installationmethods, this standard practice is issued in eight parts; the basic standardpractice and seven numbered parts as follows:Part 1 CablesPart
7、2 EquipmentPart 3 Cable PenetrationsPart 4 CablewaysPart 5 Connectors and InterconnectionsPart 6 TestsPart 7 Pierside Connectivity Cable Assemblies and Interconnection HardwareProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-2042-2B(SH)iiiCONT
8、ENTSPARAGRAPH PAGE1. SCOPE . 11.1 Scope . 11.1.1 Applicability . 12. APPLICABLE DOCUMENTS 22.1 General . 22.2 Government documents 22.2.1 Specifications, standards and handbooks . 22.2.2 Other government documents 32.3 Non-Government publications . 32.4 Order of precedence . 43. DEFINITIONS . 53.1 G
9、eneral fiber optics terms 53.2 Acronyms 53.3 Allocated and not used fiber 53.4 Allocated and used fiber 53.5 Alternate channel . 53.6 Authorized approval . 53.7 BOF bundle 53.8 BOF cable . 53.9 BOF fiber . 53.10 BOF path 53.11 BOF tube 53.12 BOF tube coupler 53.13 BOF tube routing box (TRB) 53.14 En
10、d user equipment 53.15 Fiber optic cable plant . 53.16 Fiber optic cable topology 63.17 Fiber optic interconnection box (FOICB) . 63.18 Installing activity . 63.19 Local cable . 63.20 Minimum bend diameter . 63.21 Multicable penetrator (MCP) . 63.22 Non-redundant channel (NRC) . 63.23 Normal channel
11、 63.24 Optical fiber cable . 63.25 Optical fiber cable component (OFCC). . 63.26 Outlet box 63.27 Spare fiber . 63.28 Trunk . 73.29 Trunk cable . 73.30 Tube furcation unit . 73.31 Unused fiber 74. GENERAL REQUIREMENTS 84.1 Fiber optic equipment installation 84.1.1 Interconnection box and tube routin
12、g box selection 84.1.2 Location 84.1.3 Interconnection box mounting 84.1.3.1 Bonding, grounding, and shielding . 84.1.3.2 Holes drilled in beams 94.1.3.3 Welding . 94.1.3.4 Fasteners . 94.1.3.5 Dissimilar metals . 9Provided by IHSNot for ResaleNo reproduction or networking permitted without license
13、from IHS-,-,-MIL-STD-2042-2B(SH)ivCONTENTSPARAGRAPH PAGE4.2 Cable entrance to equipment . 94.2.1 Cable slack . 94.2.2 Cable forming and shaping 104.2.3 Tube forming and shaping . 104.2.4 Splice assembly and alignment 104.2.5 Interconnection organization . 104.2.5.1 Connector organization . 104.2.6 N
14、ameplates and marking . 114.2.6.1 Internal interconnection box marking . 114.2.6.2 Internal tube routing box marking 114.2.7 BOF tube end termination . 114.3 Safety precautions . 125. DETAILED REQUIREMENTS 135.1 Fiber optic interconnection equipment installation . 135.1.1 Non-watertight decks and bu
15、lkheads . 135.1.2 Watertight decks and bulkheads . 135.1.3 Stanchions . 135.1.4 Metal joiner bulkheads . 135.1.5 Expanded metal or wire mesh bulkhead . 135.1.6 Refrigerated spaces 135.1.7 GRP (glass reinforced plastic) bulkheads . 135.1.8 Locking devices for installations on submarines 145.2 Cable e
16、ntrance to equipment 145.2.1 Nylon stuffing tubes . 145.2.2 Multiple cable penetrator (MCP) 145.2.3 Cable clamps . 145.3 Interconnection organization . 145.3.1 Conventional cable . 145.3.2 BOF cable 145.4 Splice assembly and alignment 145.5 BOF tube furcation unit fabrication 145.6 BOF tube furcatio
17、n unit installation . 145.7 BOF tube end sealing . 146. NOTES 156.1 Intended use . 156.2 Issue of DODISS 156.3 Standard method designation 156.4 Subject term (key word) listing 15METHOD2A1 Conventional cable entrance to equipment via nylon stuffing tubes . 2A1-12B1 Conventional cable entrance to equ
18、ipment via MCP 2B1-12C1 Conventional cable and buffered fiber forming and shaping . 2C1-12D1 Splice assembly and alignment . 2D1-12E1 BOF tube furcation unit fabrication . 2E1-12F1 BOF tube furcation unit installation 2F1-12G1 BOF cable entrance to equipment via nylon stuffing tubes 2G1-12H1 BOF cab
19、le entrance to equipment via MCP . 2H1-12I1 BOF cable forming, routing, and shaping within tube routing boxes . 2I1-1Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-2042-2B(SH)vCONTENTSMETHOD PAGE2I2 BOF cable forming, routing, and shaping wi
20、thininterconnection boxes . 2I2-12J1 BOF tube end sealing 2J1-1TABLE2A1-I Equipment and materials. 2A1-12A1-II Nylon stuffing tube sizes for optical fiber cable. 2A1-22A1-III Nylon stuffing tube data 2A1-22B1-I Equipment and materials. 2B1-12B1-II MCP data and insert block sizes for optical fiber ca
21、bles 2B1-22C1-I Equipment and materials . 2C1-12D1-I Equipment and materials. 2D1-12E1-I Equipment and materials . 2E1-12F1-I Equipment and materials. 2F1-12F1-II Fiber color coding. . 2F1-82G1-I Equipment and materials . 2G1-12G1-II Nylon stuffing tube sizes for BOF cable. 2G1-22G1-III Nylon stuffi
22、ng tube data 2G1-22H1-I Equipment and materials. 2H1-12H1-II MCP data and insert block sizes for BOF cables 2H1-22I1-I Equipment and materials. 2I1-12I2-I Equipment and materials . 2I2-12J1-I Equipment and materials. 2J1-1FIGURE2-1 Example patch panel configuration . 112A1-1 Straight tube 2A1-32A1-2
23、 “Y“ (45o) tube 2A1-42A1-3 90oangle tube. 2A1-42A1-4 NPT tube 2A1-52B1-1 Interconnection box integral MCP-(typical) 2B1-32C1-1 Forming and shaping - (typical) . 2C1-32C1-2 Compressing ferrule springs . 2C1-52C1-3 Splices installed in splice tray - (typical) 2C1-52D1-1 Opening alignment sleeve 2D1-22
24、D1-2 Inserting ferrule into alignment sleeve . 2D1-32D1-3 Inserting second ferrule into alignment sleeve 2D1-32D1-4 Aligning tabs . 2D1-42D1-5 Active splice alignment cable hookup 2D1-42E1-1 Aligning the loose tube furcation cables 2E1-32E1-2 Folding back the kevlar . 2E1-32E1-3 Furcation cables joi
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