mheslep said:
Break out points are unavoidable, in the same way that large skyscrapers require intermediate elevator stops between the ground and top floor: the entire core of the bldg would consumed by elevator shafts. Building cabling also traditionally has the requirement of allowing cheap floor-by-floor modification and additions (e.g. a new office) without requiring entirely new cable pulls over the length of the entire building.
All corporate spaces are not equally qualified for reengineering. Lease terms, network diameter (number of segments and vertical extensions), the time lapsed since the last cabling refresh, all play a part. Smaller installations may actually be best served by WLAN segments. Assuming that fiber to the workplace is indicated, however, consider the following.
At a minimum there would be between two to four "break out" points within a structure for a variety of reasons: diversity; load sharing; fail over, etc. Ver tall structures would have more. These breakouts would be equi-distanced from the extreme floors served. E.g., an enclosure on the 8th floor would serve floors 1 through 16; an enclosure on Floor 24 would accommodate Floors 17 through 32, say. And so on.
As well, a breakout (optical patch panels) or a splice point (or even a blown fiber distribution panel) could be situated on each floor in lieu of a fully-loaded Tier II equivalent data center enclosure.
Perhaps your elevator metaphor is misplaced. The way I see it, it is precisely because of the 100 meter constraint of copper that you today have such a model in place consisting of a cascading series of bottlenecks three or four levels deep (access-distribution-aggregation- core). Fiber's passivity and insensitivity to distance allows one to forego multiple stages, in other words, and does so with only a minimal footprint.
Rather than get caught up in the same old 1980s fiber vs copper to the desk argument, I think it's important to acknowledge that all three: fiber, copper and wireless will make up the majority of next generation LANs. Wireless WLANs have already entirely supplanted unshielded twsited pair LANs in over 22% of SMBs (according to a recent Network World survey), and even WLANs require wire LAN for backhaul. That backhaul could be over copper to the nearest closet, or it could take a fiber path to a larger enclosure a half-building away. Those who wish to continue burning up power and occupying real estate gratuitously will choose the former.
Copper NICs aren't going anywhere anytime soon, so the last ten to thirty meters closest to the desk will continue to use copper Cate 5e/6A, depending on which topology standard is used: straightaway to the desk or one of several, more-flexible "zone" topologies. Tradeoffs? Sure, there are always tradeoffs, but in this case the main concessions may very well be taking place in wetware (mindset) rather than in hardware or software.