This Fiber Optic Attenuator, Fixed - SC/UPC 10dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. SC male-female, 10db
This Fiber Optic Attenuator, Fixed - SC/UPC 15dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. SC male-female, 15db
This Fiber Optic Attenuator, Fixed - SC/UPC 20dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. SC male-female, 20db
This Fiber Optic Attenuator, Fixed - SC/UPC 5dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. SC male-female, 5db
This Fiber Optic Attenuator, Fixed - ST/UPC 10dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. ST male-female, 10db
This Fiber Optic Attenuator, Fixed - ST/UPC 15dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. ST male-female, 15db
This Fiber Optic Attenuator, Fixed - ST/UPC 20dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. ST male-female, 20db
This Fiber Optic Attenuator, Fixed - ST/UPC 5dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. ST male-female, 5db
This Fiber Optic Attenuator, Fixed - LC/UPC 10dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. LC male-female, 10db
This Fiber Optic Attenuator, Fixed - LC/UPC 15dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. LC male-female, 15db
This Fiber Optic Attenuator, Fixed - LC/UPC 20dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. LC male-female, 20db
This Fiber Optic Attenuator, Fixed - LC/UPC 5dB is necessary to prevent over saturating an optical receiver when the optical power is too high. Using attenuators will ensure low bit error rates and prevent damage to receiving components. LC male-female, 5db
This Singlemode Simplex Fiber Optic Patch Cable (9/125) - LC to LC is built with genuine Corning Glass, has ceramic ferrules and a 9/125 micron core, this cable is suitable for high speed, high bandwidth, far-reaching telecommunications such that you would find in long-distance telephony and cable tele
Networx™ Fiber Optic Loopback Cables provide a return signal for fiber optic equipment which can be using for tesing purposes and isolating any network issues.
Networx™ Fiber Optic Loopback Cables provide a return signal for fiber optic equipment which can be using for tesing purposes and isolating any network issues.
Networx™ Fiber Optic Loopback Cables provide a return signal for fiber optic equipment which can be using for tesing purposes and isolating any network issues.
This Singlemode Simplex Fiber Optic Patch Cable (9/125) - SC to ST is built with genuine Corning Glass, has ceramic ferrules and a 9/125 micron core, this cable is suitable for high speed, high bandwidth, far-reaching telecommunications such that you would find in long-distance telephony and cable tele