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Specifying the bend radius is important when pulling by machine or hand through conduit, or in any long pulls. Table 5-1 Typical Maximum Recommended Installation Loads Application Pounds Force 1 fiber in raceway or tray 1 fiber in duct or conduit 2 fiber in duct or conduit Multifiber (6–12) cables Direct burial cables Lashed aerial cables Self-support aerial cables 67 125 250–500 600–800 >300 >600 CHAPTER 5 — SPECIFYING FIBER OPTIC CABLE 63 In order to determine this value, you need to examine the locations in which you are to install your cable in order to determine the bend radius to which you will bend the cable during installation.

For low bit-rate applications over short distances, copper wire is undoubtedly more economical, but as distances go over the 100 meters called for CHAPTER 3 — FIBER OPTIC NETWORKS 35 in industry standards and speeds get above 100 Mb/s, fiber begins to look more attractive since copper requires more local network electronics and there are many problems installing and testing copper wire to high speed standards. Ability to upgrade usually tilts the decision to fiber since copper must be handled very carefully to operate at speeds where fiber is just cruising along.

Long pulls should be done with a mechanical puller that carefully controls pulling tension (Figure 4-8). The cable lubricant must be matched to the jacket material of the cable. Most commercial lubricants will be compatible with popular types of cable jackets, but not in every case. Lubrication is considerably more important for optical fiber cables than for copper cables, since the fibers can be easily damaged. Installation In difficult installations, the cable-pulling force should be monitored with a tension meter.

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Airbus A320 SOP 02Before and After Engine Start


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