New Mexico Right of Way by Tenant (For Fiber Optic Communications System)

State:
Multi-State
Control #:
US-OG-1125
Format:
Word; 
Rich Text
Instant download

Description

This form is a right of way by tenant for a fiber optic communications system.

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FAQ

optic cable contains anywhere from a few to hundreds of optical fibers within a plastic casing. Also known as optic cables or optical fiber cables, they transfer data signals in the form of light and travel hundreds of miles significantly faster than those used in traditional electrical cables.

On the other hand, optical fibers use light, lying at an even higher frequency range in the electromagnetic spectrum (roughly between 430 THz - 790 THz), to carry information. An optical fiber is a flexible, transparent fiber made by drawing glass or plastic to a diameter slightly thicker than that of a human hair.

Fiber optics transmit signals using the principle of total internal reflection . Signals are encoded as pulses of light or laser and when these pulses are oriented such that they enter the fiber optic at specific angles, almost all of the beam intensity is reflected inside the cable.

The operational wavelengths in fiber optics are commonly given in nanometers (nm). A nanometer is 1 x 10-9 meters, or 0.000000001 meters. A popular wavelength for fiber optic operation is 1310nm.

Optical fibres works on the principle of total internal reflection. When light ray strikes at the internal surface of optical fibre cable called such that incidence angle is greater than critical angle, then incident light ray reflects in the same medium and this phenomenon repeats.

Fiber Optic Transmission Technology The optical transmitter converts the electrical signal to the optical signal; the fiber optic cable carries the optical signal from the optical transmitter to the optical receiver, and the optical receiver reconverts the optical signal to electrical signal.

Fiber optic transmission wavelengths are determined by two factors: longer wavelengths in the infrared for lower loss in the glass fiber and at wavelengths which are between the absorption bands. Thus the normal wavelengths are 850, 1300 and 1550 nm.

Although the maximum distance of fiber optic cable is affected by both attenuation and dispersion, for most applications, the maximum distance of any type of fiber optic cable is around 62.14 miles (100 kilometers). However, some applications require longer distances.

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New Mexico Right of Way by Tenant (For Fiber Optic Communications System)