错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Different conventional commercial glass optical fibers composites physical parameters performance signature in short range optical transceiver systems

  • Vanitha Lingaraj,
  • Nalini Neelamegam,
  • Madhubalan Selvaraju,
  • Geetha Prahalathan,
  • Devarajan Badri Narayanan,
  • Jayanthi Anvar,
  • Govindaraj Ramkumar,
  • Ahmed Nabih Zaki Rashed,
  • A. H. M. Iftekharul Ferdous

摘要

This paper has demonstrated the different conventional commercial glass fibers composites physical parameters performance signature in short range optical transceiver systems. The proposed commercial fibers are namely AR (Alkali Resistant) glass, E-glass (calcium alumino-borosilicate glass), D- Glass (Boron trioxide), and ECR-glass (electronic glass fiber). The total fiber dispersion coefficient is clarified for various suggested glass fibers versus fiber link reach at various ambient temperature variations, wavelength (1550 nm) with the fiber core radius is 5 μm. The total fiber pulse broadening is demonstrated under fiber dispersion effects for various suggested glass fibers versus thermal effects and wavelength of 1550 nm at various fiber link reach of variations from 100 to 500 m. Total fiber channel bandwidth is demonstrated for various suggested glass fibers versus fiber link reach at various ambient temperature from 10 to 100 ºC, wavelength (1550 nm) with the fiber core radius is 5 μm. Optimum total pulse broadening, total pulse broadening, fiber channel bit rate and fiber channel bandwidth are studied for various suggested glass fibers versus refractive index difference at optimum fiber reach of 100 m, room temperature (25 ºC), 1550 nm wavelength with the fiber core radius is 5 μm. As well as the optimum signal per noise ratio and the bit error rate and output received power are demonstrated at receiver side for various suggested glass fibers versus refractive index difference at the optimum fiber reach of 100 m, room temperature (25 ºC), 1550 nm wavelength with the fiber core radius is 5 μm.