And the Rest
If all of the systems described above were not enough, there are a variety of other systems, both private and carrier-oriented, that are offering or about to offer broadband service. We quickly survey these, first private systems and then carrier solutions.
Laser
Laser technology can be used for reliable point-to-point communications. Like all the other systems discussed in this chapter, they require line of sight. For just a little more than $10,000 you can purchase a link offering 10 Mbps and a range of 1 km. Much higher data rates, e.g. 45 Mbps, are also available. Lasers offer the advantage of not requiring licensing anywhere in the world. They also can be extremely secure because any interception of the beam will block the transmission, which can instantly be detected. No wonder lasers are sometimes used by financial institutions. However, because of the small lens size and tightly focused beam, lasers are sensitive to moisture on the lens, though this can be solved by heaters. They also are subject to vibration, and the signal can easily be momentarily blocked by birds. Finally, direct sunlight also can affect signal reception and must be factored into the deployment.
UNII (Unlicensed National Information Infrastructure) Band
The FCC recently allocated 300 MHz of spectrum for unlicensed use from 5.15 GHz to 5.35 GHz and from 5.725 GHz to 5.825 GHz, a swath of spectrum far larger than all the other unlicensed bands combined. Though no products are yet available, intended uses include wireless LANs as well as communitywide networks thanks to the higher power of 4 watts EIRP (effective isotropic radiated power) allowed in the 5.725 to 5.825 portion of the band. Expect both private-link UNII products as well as carrier-based UNII services in the future.
MMDS (Multichannel Multipoint Distribution System)
This is a carrier service, initially intended for broadcast of television, and is commonly referred to as wireless cable. In the United States, this service is available at 2.5 GHz. MMDS service is usually analog and one way (transmit only), with a range of about 30 miles (50 km), and has been deployed in the United States, the Middle East, Latin America, Eastern Europe and Asia Pacific.
Carriers have not been widely successful with television programming and some have obtained waivers from the FCC to be able to offer two-way service for Internet. Others offer Internet service by using a hybrid approach with a PSTN (public switched telephone network) connection for the return path. Meanwhile the FCC is in the process of relaxing rules to allow two-way use of the band, which will facilitate data services. Two-way service reduces the effective range of MMDS to about 6 miles (10 km).
High-Altitude Long Endurance Systems
So far we have seen radio transmitters and receivers on buildings, towers and on satellites. Why not put them on specially designed aircraft that can fly in a circle above a coverage area for a long period of time? That is exactly what some companies are planning, including Angel Technologies Corp. (http://www.angelcorp.com). Such systems will offer broadband services with comparable protocols and interfaces as 38 GHz and LMDS carriers.

Figure: High altitude long endurance system with airplane as base station.