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| - | ====== | + | ====== |
| - | When bridging a network between two or more buildings, the choice of solution will depend on the geography of the site, the availability of sufficiently clean RF spectrum, and the current and future applications that will be run on the network. | + | ===== Introduction |
| + | When bridging a network between two or more buildings, the choice of solution will depend on the geography of the site, the availability of sufficiently clean RF spectrum | ||
| ===== Site Considerations ===== | ===== Site Considerations ===== | ||
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| Available only in North and South America, the band from 902-928 MHz is usually congested by smart meters in urban environments and wireless ISPs in rural environments. This low frequency band has a large Fresnel zone, but achieves better penetration through foliage. Product availability is limited, with only NanoStation LOCO M900 and Rocket M900 radios available from Ubiquiti. Competing options are either even slower and more outdated, or faster but very expensive. | Available only in North and South America, the band from 902-928 MHz is usually congested by smart meters in urban environments and wireless ISPs in rural environments. This low frequency band has a large Fresnel zone, but achieves better penetration through foliage. Product availability is limited, with only NanoStation LOCO M900 and Rocket M900 radios available from Ubiquiti. Competing options are either even slower and more outdated, or faster but very expensive. | ||
| ==== 2.4 GHz ==== | ==== 2.4 GHz ==== | ||
| - | In urban and suburban environments, | + | In urban and suburban environments, |
| ==== 5 GHz ==== | ==== 5 GHz ==== | ||
| - | The 5 GHz band requires nearly perfect line of sight, but offers more spectrum than 2.4 GHz, so other than in dense urban environments, | + | The 5 GHz band requires nearly perfect line of sight, but offers more spectrum than 2.4 GHz, so other than in dense urban environments, |
| + | ==== 24 GHz ==== | ||
| + | The 24 GHz band offers 200 MHz (in FCC jurisdiction) of usable spectrum, although it is restricted exclusively for point-to-point links, and requires the line of sight to be perfectly clear. Distance is limited on the high end due to water absorption, with the maximum distance depending on expected rainfall. With lowered transmit power and current firmware, the minimum distance for a link is reported to be 25 meters for the [[products: | ||
| + | ==== 60 GHz ==== | ||
| + | The 60 GHz band (from 57 GHz to 71 GHz in FCC jurisdiction) offers an even larger amount of usable spectrum. Due to the millimeter-scale wavelength, antennas tend to have highly directional beamwidths, so interference is generally not an issue, but the line of sight must be perfectly clear. Because oxygen absorption is pronounced at this frequency, the longest range products top out under 2 kilometers. Ubiquiti does not currently offer any products in this band, although there are several competitors making affordable products in this band if needed for deployments where its unique characteristics would be advantageous. | ||
| + | ===== Cable Path Considerations ===== | ||
| + | A wired connection may be needed either because line of sight is not available, or there is not sufficient spectrum to achieve the bandwidth required, or wireless radios add too much latency for the network applications in use. If a conduit or overhead cable path is available between the structures, a copper or fiber connection can be used. | ||
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| + | Copper is simper and less expensive than fiber, and may be used for cable paths up to 100 meters, as long as grounding issues are addressed. In environments with lightning or other sources of electrical surges, if the two structures do not have their electrical grounds bonded to each other, the copper communication lines will become a more desirable path for electrical surges, and surge-related equipment damage will be likely. If the connection is being made between a main building and an outbuilding that receives power from a panel in the main building, contact a qualified, licensed electrician to verify that the grounds of the main building and outbuilding are properly bonded. If the two structures - or two parts of a larger structure - receive power from separate service entrances or otherwise do not have their grounding points bonded together, do not use copper connections between network equipment in the respective structures. | ||
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| + | Fiber connections are recommended, | ||
| + | ===== Network Applications ===== | ||
| + | ...discussion of bandwidth and latency as pertaining to airMAX and airFiber products, or when that might not be enough and physical cable is required... | ||
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| + | FIXME | ||