Fiber working band

Sep 04, 2023

Optical fiber communication uses light as an information carrier to transmit in the fiber core for communication.

However, not all light is suitable for fiber optic communications. Different wavelengths of light have different transmission losses in optical fibers. In order to reduce losses as much as possible and ensure transmission effects, scientific researchers have been working hard to find the most suitable light.

 

850nm band

In the early 1970s, optical fiber communications began the process of practical implementation. At that time, the main research and development object was multimode optical fiber. Multimode fiber has a larger core diameter, allowing different modes of light to be transmitted on a single fiber. The earliest light used was light with a wavelength of 850nm. This band (band) is also directly called the 850nm band.

 

O-band

Later, in the late 1970s and early 1980s, single-mode fiber began to be used on a large scale. After testing, the engineers found that the light in the wavelength range of 1260nm~1360nm has the least signal distortion and the lowest loss caused by dispersion.

Therefore, they adopted this wavelength range as the early optical communication band and named it O-band (O-band). O, is "Original (original)" means. In the following 30 to 40 years, after long exploration and practice, experts gradually concluded a "low loss wavelength region" , that is, the 1260nm~1625nm region. Light in this wavelength range is most suitable for transmission in optical fibers. This area is further divided into five bands, namely O-band, E-band, S-band, C-band and L-band.

 

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C-band

The most commonly used band is called C-band (1530nm~1565nm). C, means "conventional". C-band exhibits the lowest loss and is widely used in metropolitan area networks, long-distance, ultra-long-distance and submarine optical cable systems. In WDM wavelength division multiplexing systems, C-band is also often used.


L-band

The L-band (1565nm~1625nm) next to the C-band is the second lowest loss band and one of the mainstream choices in the industry. When the C-band is not enough to meet the bandwidth requirements, the L-band will also be used as a supplement. L, means "long-wavelength (long wavelength)".


S band

The S-band (1460nm~1530nm), that is, the "short-wavelength (short wavelength)" band, has higher fiber loss than the O-band. It is often used as a downstream wavelength in PON (Passive Optical Network) systems.

 

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Band

Finally, let's take a look at the E-band. This band is a bit special, it is the least common of the five bands. E means "extended". When you observe the relationship between wavelength and loss just now, you will find that there is an obvious irregular bulge in the E-band. That's because hydroxide ions (OH-) absorb in the 1370-1410nm band, so the loss increases dramatically. This is also known as the water peak .

In the early days, due to process limitations, water (OH group) impurities often remained in the optical fiber glass fiber, resulting in the highest attenuation of the E-band, which could not be used normally.

Later, the dehydration technology in the glass making process was invented, and the attenuation of the most commonly used optical fiber (ITU-T G.652.D) in the E-band became lower than that in the O-band. (This type of fiber is also known as low water peak fiber or no water peak fiber.)

However, since many existing fiber optic cables installed before 2000 show high attenuation in the E-band, the E-band is widely used in optical communications. There are still some restrictions on use.


U-band

In addition to the above bands, there is actually another band that will be used, and that is the U-band (ultra-long-wavelength band, ultra-long-wavelength band: 1625-1675 nm). U-band is mainly used for network monitoring.

 

Summary

Band Name

Wavelength Range

Frequency Range

850-nm band

850nm(770~910nm)

389.6~329.7 THz

original band

1260~1360nm

237.9~220.4 THz

extended-wavelength band

1360~1460nm

220.4~205.3 THz

short-wavelength band

1460~1530nm

205.3~195.9 THz

conventional band

1530~1565nm

195.9~191.6 THz

long-wavelength band

1565~1625nm

191.6~184.5 THz

ultra-long-wavelength band

1625~1675nm

184.5~179.0 THz