The moment your business occupies more than one building, your network has a new problem: how to get from here to there. A warehouse across the yard, a second office on the same parcel, a guard shack at the gate, a maintenance shop behind the plant. Each one needs to be on the same network as everything else, and running a patch cable across the parking lot is not the answer.
The real answer is almost always outdoor fiber. The question is how it gets there: strung overhead on poles, or buried underground. Both are legitimate. They just fail differently, cost differently, and take different amounts of time to permit and install. Here is how we think through it on a campus job.
Why fiber, and not copper, between buildings
Before the aerial-versus-underground debate, it’s worth being clear about why copper is off the table for building-to-building runs. Three reasons:
- Distance. Ethernet over copper tops out around 100 meters, roughly 328 feet, including patch cords on both ends. Most campus runs blow past that on the first leg.
- Lightning and ground potential. Copper between two buildings is a conductive path between two separate electrical grounds. That’s a real hazard for equipment and for people. Fiber is glass; it carries no current and creates no bond between building grounds.
- Capacity. A building-to-building link is a backbone. Everything in that building rides on it. Fiber gives you room to grow into 10G, 40G and beyond on the same strands you install today.
If a run has to leave one building and enter another, plan on fiber. The only common exception is a very short, fully protected run inside a shared structure like an attached canopy, and even then we’d usually still pull fiber for the headroom.
Aerial fiber: overhead on poles or between structures
Aerial fiber is strung above ground, typically lashed to a messenger wire between poles or attached building-to-building where the span is short. It’s the faster of the two options in most cases.
Where aerial makes sense
- You already own poles on the property, or there’s an existing pole line you can attach to with permission.
- The ground between the buildings is a mess to dig — paved lot, existing utilities, contaminated soil, or a property line you can’t disturb.
- The project timeline is short and you can’t wait out a permitting and boring schedule.
- The span is genuinely short, like a covered walkway between two structures.
What to plan for with aerial
Aerial cable has to be built for the outdoors and for tension. That means an all-dielectric self-supporting cable, usually called ADSS, or a figure-8 cable with an integrated messenger, or standard outside-plant cable lashed to a separate steel messenger. Whichever you choose, the cable and the hardware have to be rated for the span and the expected ice and wind loading. In the Midwest that’s not a formality. Ice accretion adds real weight, and a cable sized for a mild climate will sag or fail here.
You also need clearance. Height above roadways, driveways and pedestrian areas is governed by code and by the pole owner’s standards, and there are strict separations from power conductors. If the poles belong to a utility or a municipality, expect an attachment agreement and a make-ready process before anyone strings anything. That paperwork is often the longest part of an aerial job.
The tradeoff is exposure. Aerial fiber lives where storms, tree limbs, lift trucks and delivery trailers can reach it. It’s easier and cheaper to repair than a buried cut, but it gets hit more often.
Underground fiber: direct-buried or in conduit
Underground fiber is the more durable option and, on most owned campuses, the one we recommend when the budget and schedule allow. Out of sight means out of the weather, out of the wind, and out of reach of anything driving through the yard.
Direct burial vs. conduit
You have two basic approaches underground, and the difference matters more than people expect:
- Direct burial. An armored outside-plant cable goes straight into the trench. Lower cost up front. The downside is that the cable is the pathway — if it fails or you outgrow it, you’re digging again.
- Conduit. You place duct, often with an innerduct or multiple ducts, then pull fiber through it. Costs more the first time. But you can add strands later, replace a damaged cable without excavating, and leave spare ducts for the next project. On a campus you expect to keep, conduit almost always wins over the life of the system.
Our default advice: if you’re already paying to open the ground, put in more conduit than you need today. The trench is the expensive part, not the duct.
Trenching vs. directional boring
Open trenching is straightforward and cheaper per foot on clear ground. It also tears up whatever is on top — grass, gravel, asphalt — and restoration costs get added back in fast when you’re crossing a parking lot or a finished lawn.
Horizontal directional boring pushes the duct underneath obstacles without opening a continuous trench. It costs more per foot but is often the cheaper total when you have to cross a drive aisle, a rail spur, a landscaped area or a road. It also avoids shutting down traffic across your own site for days.
Either way, the job starts with locates. Call JULIE (811) before anyone touches the ground in Illinois, and know that public locates only mark utility-owned lines to the meter. Private lines on your own property — the feed to a detached shop, irrigation, site lighting, a fuel line — are the owner’s responsibility to identify, and they’re what people actually hit. A private utility locate before boring is cheap compared to hitting a primary electrical feed.
The details that decide whether it lasts
Whichever route you take, a few things separate an outdoor fiber run that quietly works for twenty years from one you keep servicing:
- Use outside-plant rated cable. Indoor fiber in an outdoor environment will take on water and degrade. Gel-filled or dry water-blocked OSP cable is built for it.
- Handle the entry transition. OSP cable generally can’t run more than a limited distance inside a building before code requires a transition to a listed indoor-rated cable. That means either a short OSP entrance to a splice point or an indoor/outdoor rated cable that satisfies both. Plan the entrance enclosure location up front.
- Seal and slope the penetration. Every place the cable enters a building is a place water wants to follow it. Proper sealing and a drip loop are not optional in a climate that freezes and thaws all winter.
- Ground the hardware, not the fiber. Pure dielectric cable needs no bonding. But any armored cable with a metallic member has to be properly bonded at entry, and the enclosure hardware needs to be grounded per code.
- Add strands, not regret. The labor to place a 24-strand cable is essentially the same as a 12. Fiber count is the cheapest part of the job and the most expensive thing to add later.
- Test and document everything. Every strand should be certified with an OTDR trace and insertion-loss measurements, and the route should be documented on an as-built showing depth, path and splice locations. Six years from now, when someone plans a new building pad, that drawing is what keeps a backhoe off your backbone.
So which one should you pick?
There’s no universal answer, but the pattern is consistent. If you own the property, plan to stay, and the ground can be worked, put conduit underground. It costs more once and then stops costing you. If you’re leasing, working around a paved or congested site, dealing with existing poles, or racing a deadline, aerial is a legitimate and often smart choice — just build it for real ice loading and accept that it will need attention after bad storms.
Plenty of campuses end up with both: a buried primary path and an aerial or alternate-route secondary for redundancy. If a building is critical enough that losing it stops the business, two diverse paths are worth pricing out. A single fiber run, however well built, is still a single point of failure.
RG Fiber handles outdoor and campus fiber optic installation along with the structured cabling inside each building, so the backbone and the horizontal cabling are designed, tested and documented as one system rather than two separate projects that meet at a wall.
Connecting buildings on your campus?
RG Fiber designs and installs outdoor fiber backbones — aerial or underground — across Chicagoland and the Midwest, fully tested, labeled and documented.
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