qrcode dll c# Comparison of Fiber Compositions in Objective-C

Generate QR-Code in Objective-C Comparison of Fiber Compositions

TABLE 31 Comparison of Fiber Compositions
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Fiber material Glass core Plastic core Attenuation Lowest Highest Cost Highest Lowest Medium Utilization
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High bandwidth, long distance Low bandwidth, short distance Medium bandwidth, short to medium distance
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Glass core with Medium plastic cladding (plastic-clad silica)
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A glass-based fiber-optic cable has a glass core and glass cladding, with impurities added to obtain the desired indices of refraction necessary to guide light rays through the fiber This type of cable has the lowest value of attenuation; however it is also the most expensive of the three , types of materials used to create an optical fiber Concerning utilization, a glass-based fiber-optic cable is by far the most commonly used type of optical cable Thus, it also represents the type of cable that installers are most familiar working with, which means that functions such as cable splicing and pulling techniques are well known Because of its low attenuation, a glass fiber is always used for singlemode optical cable Because single-mode fiber requires a very thin case, its composition eliminates the potential use of plastic, which requires a thicker core Another characteristic of glass fiber is its capability to support a relatively high signaling rate Some types of single-mode step-index optical fiber can support a gigahertz signaling rate
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Plastic Fiber
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Plastic-based fiber-optic cable is more durable than glass-based optical fiber In addition, this type of optical cable is relatively inexpensive However it is difficult to fabricate with a thin core; as a result, the plastic core , and the plastic cladding are relatively thick Typical plastic-based fiberoptic cable is manufactured as 480/550-, 735/700-, and 9800/1000-nm cable Because a large core is prone to ray dispersion, plastic fiber-optic cable has the highest attenuation of the three types of material used for the construction of fiber-optic cable Currently this type of optical fiber is used mainly , for transmission over relatively short distances, such as within a factory
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Understanding Optical Fiber
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Another problem with the use of plastic-based fiber-optic cable is that it is flammable, meaning that when used within a building, applicable codes may hamper its use and require its installation within a conduit
Plastic-Clad Silica
As the term implies, plastic-clad silica (PCS) represents an optical cable manufactured using a glass core and a plastic cladding The glass core consists of vitreous silica, while the plastic cladding is fabricated with a lower refractive index than in the core The composition of a PCS-based optical cable is such that the attenuation and cost of PCS cable reside between those of a glass- and a plasticbased fiber-optic cable A standardized PCS-based optical cable is 200/380 nm in size, with a 600-nm jacket Although less expensive than glass, a PCS fiber-optic cable has considerable plasticity resulting in difficulty , when attempting to connect or splice cable Because glass core fiber provides the lowest level of attenuation and high bandwidth, it is the preferred medium for both LANs and W ANs However at data transmission rates as high as 100 Mbits/s, both plastic , core and PCS are used with LEDs in a LAN environment We can note the general operational characteristics of multimode and single-mode fiber by examining their general level of attenuation, operating rate, and bandwidth, as well as the general environment in which they are used Thus, let s do so Today multimode fiber is used primarily in a LAN environment This is because such fiber has an attenuation level between 3 and 1 dB/km, which is relatively high in comparison to that of single-mode fiber The bandwidth capability of multimode fiber is between 160 and 500 MHz/km, which permits a data transmission rate of approximately 25 to 50 percent that of Gigabit Ethernet to be supported at a distance of one kilometer This explains why when multimode fiber is used in that , LAN environment, the transmission distance is significantly less than 1 km Although both lasers and LEDs can be used with multimode fiber in a LAN environment, less costly LEDs are used When LEDs are used, a light source of 850 nm is employed, while the use of lasers results in a light source with a wavelength of 1300 nm In comparison to multimode fiber, single mode has an attenuation rate a fraction of multimode The attenuation rate of single-mode fiber
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