Two important considerations when installing an aerial fiber optic cable?

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Multiple Choice

Two important considerations when installing an aerial fiber optic cable?

Explanation:
When installing an aerial fiber run, the critical factors are how far apart you place the supporting points (span length) and how much the cable will droop between those supports (sag). Span length determines how much cable sits between attachments and directly affects the tension the hardware must withstand. Sag tells you how low the cable will dip between poles, which must stay above ground, roads, and other obstacles and below any maximum bend and tension limits. Together, span length and sag govern whether the installation will meet clearance, mechanical, and safety requirements, and they guide choices about hardware, routing, and tensioning. Weather, wind, and ice influence sag and tension, but their effects are what you account for when calculating sag and designing the span. The underground vs aerial decision is about routing strategy rather than the immediate mechanical fit between supports, and splice methods concern joining fibers rather than the basic placement and clearance between supports.

When installing an aerial fiber run, the critical factors are how far apart you place the supporting points (span length) and how much the cable will droop between those supports (sag). Span length determines how much cable sits between attachments and directly affects the tension the hardware must withstand. Sag tells you how low the cable will dip between poles, which must stay above ground, roads, and other obstacles and below any maximum bend and tension limits. Together, span length and sag govern whether the installation will meet clearance, mechanical, and safety requirements, and they guide choices about hardware, routing, and tensioning.

Weather, wind, and ice influence sag and tension, but their effects are what you account for when calculating sag and designing the span. The underground vs aerial decision is about routing strategy rather than the immediate mechanical fit between supports, and splice methods concern joining fibers rather than the basic placement and clearance between supports.

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