SlideShare uma empresa Scribd logo
1 de 30
Losses in Fiber
optics
Losses in Fiber Optics
 Attenuation, dispersion-intermodel,
Intramodel, bend loss-micro macro
scattering losses-Linear, Non linear,
Absorption
 Link Budget, Power Budget
 Block diagram and working of OTDR
Attenuation
 Attenuation means loss of light energy as the light
pulse travels from one end of the cable to the other.
 It is also called as signal loss or fiber loss.
 It also decides the the number of repeaters required
between transmitter and receiver.
 Attenuation is directly proportional to the length of the
cable.
Attenuation
 Attenuation is defined as the ratio of optical output
power to the input power in the fiber of length L.
 α= 10log10 Pi/Po [in db/km]
where, Pi= Input Power
Po= Output Power, α is attenuation constant
The various losses in the cable are due to
 Absorption
 Scattering
 Dispersion
 Bending
Bending losses
 The loss which exists when an optical fiber undergoes
bending is called bending losses.
 There are two types of bending
i) Macroscopic bending
Bending in which complete fiber undergoes bends
which causes certain modes not to be reflected and
therefore causes loss to the cladding.
ii) Microscopic Bending
Either the core or cladding undergoes slight bends at
its surface. It causes light to be reflected at angles
when there is no further reflection.
ISO 9001 : 2008 certified
Macroscopic Bending
Microscopic
Bending
Absorption Loss
Absorption of light energy due to heating of ion
impurities results in dimming of light at the end of the
fiber.
Two types:
1. Intrinsic Absorption
2. Extrinsic Absorption
Intrinsic Absorption:
 Caused by the interaction with one or more
components of the glass
 Occurs when photon interacts with an electron in the
valence band & excites it to a higher energy level near
the UV region.
Extrinsic Absorption:
 Also called impurity absorption.
 Results from the presence of transition metal ions like
iron, chromium, cobalt, copper & from OH ions i.e. from
water.
Dispersion Loss
 As an optical signal travels along the fiber, it becomes
increasingly distorted.
 This distortion is a sequence of intermodal and
intramodal dispersion.
 Two types:
1. Intermodal Dispersion
2. Intramodal Dispersion
Intermodal Dispersion:
 Pulse broadening due to intermodal dispersion results
from the propagation delay differences between modes
within a multimode fiber.
Intramodal Dispersion:
 It is the pulse spreading that occurs within a single
mode.
 Material Dispersion
 Waveguide Dispersion
1) Material Dispersion:
 Also known as spectral dispersion or chromatic
dispersion.
 Results because of variation due to Refractive Index
of core as a function of wavelength, because of which
pulse spreading occurs even when different
wavelengths follow the same path.
2) Waveguide Dispersion:
 Whenever any optical signal is passed through the
optical fiber, practically 80% of optical power is
confined to core & rest 20% optical power into
cladding.
Scattering Losses
 It occurs due to microscopic variations in the material
density, compositional fluctuations, structural in
homogeneities and manufacturing defects.
 Linear Scattering
 Rayleigh Scattering losses
 Mie Scattering Losses
 Waveguide Scattering Losses
 Non-linear Scattering
 Stimulated Brillouin Scattering(SBS)
 Stimulated Raman Scattering(SRS)
i) Linear Scattering
a) Rayleigh Scattering Losses:
 These losses are due to microscopic variation in the
material of the fiber.
 Unequal distribution of molecular densities or atomic
densities leads to Rayleigh Scattering losses
 Glass is made up of several acids like SiO2, P2O5,etc.
compositions, fluctuations can occur because of these
several oxides which rise to Rayleigh scattering losses
b) Mie Scattering Losses:
 These losses results from the compositional
fluctuations & structural inhomogenerics & defects
created during fiber fabrications, causes the light to
scatter outside the fiber.
c) Waveguide Scattering Losses:
 It is a result of variation in the core diameter,
imperfections of the core cladding interface, change in
RI of either core or cladding.
ii) Non-linear Scattering
a) SBS Scattering:
 Stimulated Brillouin Scattering(SBS) may be regarded
as the modulation of light through thermal molecular
vibrations within the fiber.
 Pb =4.4x10-3
d2
λ2
α dB v watts
where, λ= operating wavelength μm
d= fiber core diameter μm
v = source bandwidth in GHz
b) SRS Scattering:
 Stimulated Raman Scattering is similar to SBS except
that high frequency optical phonon rather than
acoustic phonon is generated in scattering processes.
 Pb =5.9x10-2
d2
λα dB watts
Phonon:
Collective excitation in a periodic arrangement of atoms
or molecules in solid.
Optical Time Domain
Reflectometer
What is OTDR?
 It is a trouble shooting device to find faults, splices
and bends in fiber optic cable.
 It is used to measure time and intensity of light
reflected on an optical fiber.
 It can detect light loss and pinpoint trouble areas
making repair easy.
 OTDR test can be anywhere along the length of
fiber from ten seconds to three minutes
Principle of Operation
 OTDR emits a high-power pulse that hits the fiber
and bounces back.
 What comes back is measured, factoring in time
and distance, and results in “trouble spots” which
can be targeted for repair.
 The more quickly trouble areas are identified and
addressed the less fiber optic network will suffer
from data transfer problems.
Block Diagram
Pulsed
Laser
Photo
Detector
APD
Integrator Log
Amplifier
Chart
Recorder
Coupler Fiber
Working
 A light pulsed is launched into the fiber in
forward direction from an injection laser using
a coupler or beam splitter.
 Beam splitter or coupler makes possible to
couple the optical excitation power impulse
into the tested fiber and to deviate the
backscattered power to the optical receiver.
 The backscattered light is detected using an
Avalanche Photodiode receiver.
 Output of photodiode receiver drives an
integrator.
 Integrator improves SNR by giving an arithmetic
average over a number of measurements taken at
one point.
 This signal is fed to Logarithmic amplifier and
average measurements for successive points within
the fiber are plotted as a Chart Recorder.
 Overall link length can be determined from the
time difference between reflection from the fiber
input and output end faces.
 The below fig shows the possible backscatter
plot for the fiber under test.
ISO 9001 : 2008 certified
`
ACS Important Questions
6. Losses in fiber optics (M=8)
1. With a neat diagram explain working of OTDR. (Twice)
2. Explain in brief the two fiber band losses.
3. Define:
a) Reflection b) Diffraction c) Absorption
4. Explain Dispersion with help of light theory.
5. Explain the losses due to scattering in FOC & state applications.
6- What is dispersion? Explain inter model dispersion.
7. ) An optical fiber communication is to be designed to operate over an 8
KM length without using repeaters. The use times of the chosen
component are source (LED) 8ns. Fiber inter model 5ns KM –1(Pulse
broadening) intramodel 1ns KM –1.Detector (p-I-n photodiode) 6 ns
b) The following parameters are established for a long haul single – mode
optical fiber operating at a wavelength of 1.3 um.
Mean power launched from the laser Transmitter –3 dbm
Cable fiber loss 0.4 db KM –1
Splices loss 0.1 db KM –1
Connector losses at the Transmitter & Receiver
When operating at 35 Mbits-1 (BER 10-9) –55 dbm
When operating at 400 Mbits-1 (BER 10-9) –44 dbm
Required safety margin 7db
Estimate
i) The maximum possible link length without repeaters when operating at
35 Mbits-1 (BER 10-9). It may be assumed that there is no dispersion
equalization penalty at this bit rate.
ii) The maximum possible link length without repeaters when operating at
400 Mbits-1 (BER 10-9). & assuming no dispersion equalization penalty.
8. Describe attenuation in optical fiber

Mais conteúdo relacionado

Mais procurados

Non linear effects in optical fibers
Non linear effects in optical fibersNon linear effects in optical fibers
Non linear effects in optical fibersCKSunith1
 
02 optical fiber-waveguides
02 optical fiber-waveguides02 optical fiber-waveguides
02 optical fiber-waveguidesMuhammad Saad
 
Link power and rise time budget analysis
Link power and rise time budget analysisLink power and rise time budget analysis
Link power and rise time budget analysisCKSunith1
 
Fabrication of fibers
Fabrication of fibers Fabrication of fibers
Fabrication of fibers ARNAB GHOSH
 
What is Mode Field Diameter?
What is Mode Field Diameter?What is Mode Field Diameter?
What is Mode Field Diameter?Caroline Connolly
 
Ch 1 optical fiber introduction
Ch 1 optical fiber introductionCh 1 optical fiber introduction
Ch 1 optical fiber introductionkpphelu
 
transmission-line-and-waveguide-ppt
transmission-line-and-waveguide-ppttransmission-line-and-waveguide-ppt
transmission-line-and-waveguide-pptATTO RATHORE
 
optical transmitter
optical transmitteroptical transmitter
optical transmitter@zenafaris91
 
Antenna presentation PPT
Antenna presentation PPTAntenna presentation PPT
Antenna presentation PPTSachin Kadam
 
Drive circuitry for LEDs and LASER
Drive circuitry for LEDs and LASERDrive circuitry for LEDs and LASER
Drive circuitry for LEDs and LASERDiwaker Pant
 
Polarization mode dispersion(pmd)
Polarization mode dispersion(pmd)Polarization mode dispersion(pmd)
Polarization mode dispersion(pmd)Md. Abdur Rahman
 

Mais procurados (20)

Non linear effects in optical fibers
Non linear effects in optical fibersNon linear effects in optical fibers
Non linear effects in optical fibers
 
Ppt on optical fiber
Ppt on optical fiberPpt on optical fiber
Ppt on optical fiber
 
Optical switching
Optical switchingOptical switching
Optical switching
 
02 optical fiber-waveguides
02 optical fiber-waveguides02 optical fiber-waveguides
02 optical fiber-waveguides
 
Optical Fiber
Optical FiberOptical Fiber
Optical Fiber
 
Link power and rise time budget analysis
Link power and rise time budget analysisLink power and rise time budget analysis
Link power and rise time budget analysis
 
Modulation of LED
Modulation of LEDModulation of LED
Modulation of LED
 
Microwave measurements in detail
Microwave measurements in detailMicrowave measurements in detail
Microwave measurements in detail
 
Fabrication of fibers
Fabrication of fibers Fabrication of fibers
Fabrication of fibers
 
What is Mode Field Diameter?
What is Mode Field Diameter?What is Mode Field Diameter?
What is Mode Field Diameter?
 
Ch 1 optical fiber introduction
Ch 1 optical fiber introductionCh 1 optical fiber introduction
Ch 1 optical fiber introduction
 
transmission-line-and-waveguide-ppt
transmission-line-and-waveguide-ppttransmission-line-and-waveguide-ppt
transmission-line-and-waveguide-ppt
 
optical transmitter
optical transmitteroptical transmitter
optical transmitter
 
waveguides-ppt
waveguides-pptwaveguides-ppt
waveguides-ppt
 
Microwave Attenuator
Microwave AttenuatorMicrowave Attenuator
Microwave Attenuator
 
Antenna presentation PPT
Antenna presentation PPTAntenna presentation PPT
Antenna presentation PPT
 
Drive circuitry for LEDs and LASER
Drive circuitry for LEDs and LASERDrive circuitry for LEDs and LASER
Drive circuitry for LEDs and LASER
 
microwave-tubes
 microwave-tubes microwave-tubes
microwave-tubes
 
COMMUNICATION LED
COMMUNICATION LEDCOMMUNICATION LED
COMMUNICATION LED
 
Polarization mode dispersion(pmd)
Polarization mode dispersion(pmd)Polarization mode dispersion(pmd)
Polarization mode dispersion(pmd)
 

Destaque

Connector losses Optical Fiber Cable
Connector losses Optical Fiber CableConnector losses Optical Fiber Cable
Connector losses Optical Fiber CableKalyan Acharjya
 
Fiber signal degradation final
Fiber  signal degradation finalFiber  signal degradation final
Fiber signal degradation finalbheemsain
 
Fiber cable vs copper cable
Fiber cable vs copper cableFiber cable vs copper cable
Fiber cable vs copper cablespringning
 
Fiber End Preparations & Splicing
Fiber End Preparations & SplicingFiber End Preparations & Splicing
Fiber End Preparations & SplicingKalyan Acharjya
 

Destaque (6)

Connector losses Optical Fiber Cable
Connector losses Optical Fiber CableConnector losses Optical Fiber Cable
Connector losses Optical Fiber Cable
 
Losses in fiber
Losses in fiberLosses in fiber
Losses in fiber
 
Fiber signal degradation final
Fiber  signal degradation finalFiber  signal degradation final
Fiber signal degradation final
 
Fiber cable vs copper cable
Fiber cable vs copper cableFiber cable vs copper cable
Fiber cable vs copper cable
 
Fiber fabrication
Fiber fabricationFiber fabrication
Fiber fabrication
 
Fiber End Preparations & Splicing
Fiber End Preparations & SplicingFiber End Preparations & Splicing
Fiber End Preparations & Splicing
 

Semelhante a Losses in optical fiber

Transmission characteristics of optical fibers
Transmission characteristics of optical fibersTransmission characteristics of optical fibers
Transmission characteristics of optical fibersaibad ahmed
 
Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER
Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER 	Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER
Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER tamil arasan
 
OPTICAL_FIBRE_COMMUNICATION.pptx
OPTICAL_FIBRE_COMMUNICATION.pptxOPTICAL_FIBRE_COMMUNICATION.pptx
OPTICAL_FIBRE_COMMUNICATION.pptxDavidBrown748658
 
B.Tech ECE IV Year I Sem, MWOC UNIT 5 Optical CommunicationsUNIT 5 MWOC.pptx
B.Tech ECE IV Year I Sem, MWOC UNIT 5  Optical CommunicationsUNIT 5 MWOC.pptxB.Tech ECE IV Year I Sem, MWOC UNIT 5  Optical CommunicationsUNIT 5 MWOC.pptx
B.Tech ECE IV Year I Sem, MWOC UNIT 5 Optical CommunicationsUNIT 5 MWOC.pptxjanakiravi
 
Characteristics of optical fiber cable
Characteristics of optical fiber cableCharacteristics of optical fiber cable
Characteristics of optical fiber cableBala V
 
UNIT-III-OPTICAL COMMUNICATION
UNIT-III-OPTICAL COMMUNICATIONUNIT-III-OPTICAL COMMUNICATION
UNIT-III-OPTICAL COMMUNICATIONexcelmeape
 
Optical fibres by Dr Praful D Shirbhate
Optical fibres by Dr Praful D ShirbhateOptical fibres by Dr Praful D Shirbhate
Optical fibres by Dr Praful D ShirbhateDr Praful D Shirbhate
 
Twenty Essential Knowledge of Optical Cable.pdf
Twenty Essential Knowledge of Optical Cable.pdfTwenty Essential Knowledge of Optical Cable.pdf
Twenty Essential Knowledge of Optical Cable.pdfHYC Co., Ltd
 
Optical fiber communication scientific presentation renjith mathew roy
Optical fiber communication  scientific presentation renjith mathew royOptical fiber communication  scientific presentation renjith mathew roy
Optical fiber communication scientific presentation renjith mathew royRenjithMathewRoy
 
Em and optics project 3 (1st) converted
Em and optics project 3 (1st) convertedEm and optics project 3 (1st) converted
Em and optics project 3 (1st) convertedDurgeshJoshi6
 
Optical Communications - Presentation.pdf
Optical Communications - Presentation.pdfOptical Communications - Presentation.pdf
Optical Communications - Presentation.pdfEshwar Prasad
 
Opto electronics by er. sanyam s. saini me (reg) 2012-14
Opto electronics  by  er. sanyam s. saini  me  (reg) 2012-14Opto electronics  by  er. sanyam s. saini  me  (reg) 2012-14
Opto electronics by er. sanyam s. saini me (reg) 2012-14Sanyam Singh
 
Gandhinagar institute of technology optical fiber
Gandhinagar institute of technology optical fiberGandhinagar institute of technology optical fiber
Gandhinagar institute of technology optical fibernilnildarji
 
Signal degradation
Signal degradationSignal degradation
Signal degradationanitasjadhav
 

Semelhante a Losses in optical fiber (20)

Signal degradation in optical fibers
Signal degradation in optical fibersSignal degradation in optical fibers
Signal degradation in optical fibers
 
Transmission characteristics of optical fibers
Transmission characteristics of optical fibersTransmission characteristics of optical fibers
Transmission characteristics of optical fibers
 
opsahu advanced communication lab 6 sem.file r.k.r govt poly janjgir
opsahu advanced communication lab 6 sem.file r.k.r govt poly janjgiropsahu advanced communication lab 6 sem.file r.k.r govt poly janjgir
opsahu advanced communication lab 6 sem.file r.k.r govt poly janjgir
 
Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER
Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER 	Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER
Unit II- TRANSMISSION CHARACTERISTIC OF OPTICAL FIBER
 
OPTICAL_FIBRE_COMMUNICATION.pptx
OPTICAL_FIBRE_COMMUNICATION.pptxOPTICAL_FIBRE_COMMUNICATION.pptx
OPTICAL_FIBRE_COMMUNICATION.pptx
 
B.Tech ECE IV Year I Sem, MWOC UNIT 5 Optical CommunicationsUNIT 5 MWOC.pptx
B.Tech ECE IV Year I Sem, MWOC UNIT 5  Optical CommunicationsUNIT 5 MWOC.pptxB.Tech ECE IV Year I Sem, MWOC UNIT 5  Optical CommunicationsUNIT 5 MWOC.pptx
B.Tech ECE IV Year I Sem, MWOC UNIT 5 Optical CommunicationsUNIT 5 MWOC.pptx
 
Characteristics of optical fiber cable
Characteristics of optical fiber cableCharacteristics of optical fiber cable
Characteristics of optical fiber cable
 
UNIT-III-OPTICAL COMMUNICATION
UNIT-III-OPTICAL COMMUNICATIONUNIT-III-OPTICAL COMMUNICATION
UNIT-III-OPTICAL COMMUNICATION
 
Optical fibres by Dr Praful D Shirbhate
Optical fibres by Dr Praful D ShirbhateOptical fibres by Dr Praful D Shirbhate
Optical fibres by Dr Praful D Shirbhate
 
Twenty Essential Knowledge of Optical Cable.pdf
Twenty Essential Knowledge of Optical Cable.pdfTwenty Essential Knowledge of Optical Cable.pdf
Twenty Essential Knowledge of Optical Cable.pdf
 
OFC UNIT-II.pptx
OFC UNIT-II.pptxOFC UNIT-II.pptx
OFC UNIT-II.pptx
 
Optical fiber communication scientific presentation renjith mathew roy
Optical fiber communication  scientific presentation renjith mathew royOptical fiber communication  scientific presentation renjith mathew roy
Optical fiber communication scientific presentation renjith mathew roy
 
Em and optics project 3 (1st) converted
Em and optics project 3 (1st) convertedEm and optics project 3 (1st) converted
Em and optics project 3 (1st) converted
 
Optical Communications - Presentation.pdf
Optical Communications - Presentation.pdfOptical Communications - Presentation.pdf
Optical Communications - Presentation.pdf
 
Optical fibers
Optical fibersOptical fibers
Optical fibers
 
Chapter 2c
Chapter 2cChapter 2c
Chapter 2c
 
Opto electronics by er. sanyam s. saini me (reg) 2012-14
Opto electronics  by  er. sanyam s. saini  me  (reg) 2012-14Opto electronics  by  er. sanyam s. saini  me  (reg) 2012-14
Opto electronics by er. sanyam s. saini me (reg) 2012-14
 
Fiber optics
Fiber optics Fiber optics
Fiber optics
 
Gandhinagar institute of technology optical fiber
Gandhinagar institute of technology optical fiberGandhinagar institute of technology optical fiber
Gandhinagar institute of technology optical fiber
 
Signal degradation
Signal degradationSignal degradation
Signal degradation
 

Último

FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756dollysharma2066
 
Business Model Canvas (BMC)- A new venture concept
Business Model Canvas (BMC)-  A new venture conceptBusiness Model Canvas (BMC)-  A new venture concept
Business Model Canvas (BMC)- A new venture conceptP&CO
 
Cracking the Cultural Competence Code.pptx
Cracking the Cultural Competence Code.pptxCracking the Cultural Competence Code.pptx
Cracking the Cultural Competence Code.pptxWorkforce Group
 
Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...
Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...
Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...Anamikakaur10
 
Falcon Invoice Discounting: Empowering Your Business Growth
Falcon Invoice Discounting: Empowering Your Business GrowthFalcon Invoice Discounting: Empowering Your Business Growth
Falcon Invoice Discounting: Empowering Your Business GrowthFalcon investment
 
Lundin Gold - Q1 2024 Conference Call Presentation (Revised)
Lundin Gold - Q1 2024 Conference Call Presentation (Revised)Lundin Gold - Q1 2024 Conference Call Presentation (Revised)
Lundin Gold - Q1 2024 Conference Call Presentation (Revised)Adnet Communications
 
Marel Q1 2024 Investor Presentation from May 8, 2024
Marel Q1 2024 Investor Presentation from May 8, 2024Marel Q1 2024 Investor Presentation from May 8, 2024
Marel Q1 2024 Investor Presentation from May 8, 2024Marel
 
Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...amitlee9823
 
Malegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort Service
Malegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort ServiceMalegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort Service
Malegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort ServiceDamini Dixit
 
Call Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂Escort
Call Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂EscortCall Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂Escort
Call Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂Escortdlhescort
 
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...amitlee9823
 
Call Girls In Noida 959961⊹3876 Independent Escort Service Noida
Call Girls In Noida 959961⊹3876 Independent Escort Service NoidaCall Girls In Noida 959961⊹3876 Independent Escort Service Noida
Call Girls In Noida 959961⊹3876 Independent Escort Service Noidadlhescort
 
Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...
Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...
Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...lizamodels9
 
PHX May 2024 Corporate Presentation Final
PHX May 2024 Corporate Presentation FinalPHX May 2024 Corporate Presentation Final
PHX May 2024 Corporate Presentation FinalPanhandleOilandGas
 
👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...
👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...
👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...rajveerescorts2022
 
BAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRL
BAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRLBAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRL
BAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRLkapoorjyoti4444
 
Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...
Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...
Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...lizamodels9
 
Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...
Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...
Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...Falcon Invoice Discounting
 
Call Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service Available
Call Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service AvailableCall Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service Available
Call Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service AvailableSeo
 

Último (20)

FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Majnu Ka Tilla, Delhi Contact Us 8377877756
 
Business Model Canvas (BMC)- A new venture concept
Business Model Canvas (BMC)-  A new venture conceptBusiness Model Canvas (BMC)-  A new venture concept
Business Model Canvas (BMC)- A new venture concept
 
Cracking the Cultural Competence Code.pptx
Cracking the Cultural Competence Code.pptxCracking the Cultural Competence Code.pptx
Cracking the Cultural Competence Code.pptx
 
Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...
Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...
Call Now ☎️🔝 9332606886🔝 Call Girls ❤ Service In Bhilwara Female Escorts Serv...
 
Falcon Invoice Discounting: Empowering Your Business Growth
Falcon Invoice Discounting: Empowering Your Business GrowthFalcon Invoice Discounting: Empowering Your Business Growth
Falcon Invoice Discounting: Empowering Your Business Growth
 
Lundin Gold - Q1 2024 Conference Call Presentation (Revised)
Lundin Gold - Q1 2024 Conference Call Presentation (Revised)Lundin Gold - Q1 2024 Conference Call Presentation (Revised)
Lundin Gold - Q1 2024 Conference Call Presentation (Revised)
 
Marel Q1 2024 Investor Presentation from May 8, 2024
Marel Q1 2024 Investor Presentation from May 8, 2024Marel Q1 2024 Investor Presentation from May 8, 2024
Marel Q1 2024 Investor Presentation from May 8, 2024
 
Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
Nelamangala Call Girls: 🍓 7737669865 🍓 High Profile Model Escorts | Bangalore...
 
Malegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort Service
Malegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort ServiceMalegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort Service
Malegaon Call Girls Service ☎ ️82500–77686 ☎️ Enjoy 24/7 Escort Service
 
Call Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂Escort
Call Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂EscortCall Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂Escort
Call Girls In Nangloi Rly Metro ꧂…….95996 … 13876 Enjoy ꧂Escort
 
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
 
Call Girls In Noida 959961⊹3876 Independent Escort Service Noida
Call Girls In Noida 959961⊹3876 Independent Escort Service NoidaCall Girls In Noida 959961⊹3876 Independent Escort Service Noida
Call Girls In Noida 959961⊹3876 Independent Escort Service Noida
 
Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...
Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...
Call Girls From Raj Nagar Extension Ghaziabad❤️8448577510 ⊹Best Escorts Servi...
 
unwanted pregnancy Kit [+918133066128] Abortion Pills IN Dubai UAE Abudhabi
unwanted pregnancy Kit [+918133066128] Abortion Pills IN Dubai UAE Abudhabiunwanted pregnancy Kit [+918133066128] Abortion Pills IN Dubai UAE Abudhabi
unwanted pregnancy Kit [+918133066128] Abortion Pills IN Dubai UAE Abudhabi
 
PHX May 2024 Corporate Presentation Final
PHX May 2024 Corporate Presentation FinalPHX May 2024 Corporate Presentation Final
PHX May 2024 Corporate Presentation Final
 
👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...
👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...
👉Chandigarh Call Girls 👉9878799926👉Just Call👉Chandigarh Call Girl In Chandiga...
 
BAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRL
BAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRLBAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRL
BAGALUR CALL GIRL IN 98274*61493 ❤CALL GIRLS IN ESCORT SERVICE❤CALL GIRL
 
Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...
Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...
Call Girls From Pari Chowk Greater Noida ❤️8448577510 ⊹Best Escorts Service I...
 
Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...
Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...
Unveiling Falcon Invoice Discounting: Leading the Way as India's Premier Bill...
 
Call Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service Available
Call Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service AvailableCall Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service Available
Call Girls Ludhiana Just Call 98765-12871 Top Class Call Girl Service Available
 

Losses in optical fiber

  • 2. Losses in Fiber Optics  Attenuation, dispersion-intermodel, Intramodel, bend loss-micro macro scattering losses-Linear, Non linear, Absorption  Link Budget, Power Budget  Block diagram and working of OTDR
  • 3. Attenuation  Attenuation means loss of light energy as the light pulse travels from one end of the cable to the other.  It is also called as signal loss or fiber loss.  It also decides the the number of repeaters required between transmitter and receiver.  Attenuation is directly proportional to the length of the cable.
  • 4. Attenuation  Attenuation is defined as the ratio of optical output power to the input power in the fiber of length L.  α= 10log10 Pi/Po [in db/km] where, Pi= Input Power Po= Output Power, α is attenuation constant The various losses in the cable are due to  Absorption  Scattering  Dispersion  Bending
  • 5. Bending losses  The loss which exists when an optical fiber undergoes bending is called bending losses.  There are two types of bending i) Macroscopic bending Bending in which complete fiber undergoes bends which causes certain modes not to be reflected and therefore causes loss to the cladding. ii) Microscopic Bending Either the core or cladding undergoes slight bends at its surface. It causes light to be reflected at angles when there is no further reflection.
  • 6. ISO 9001 : 2008 certified Macroscopic Bending Microscopic Bending
  • 7. Absorption Loss Absorption of light energy due to heating of ion impurities results in dimming of light at the end of the fiber. Two types: 1. Intrinsic Absorption 2. Extrinsic Absorption
  • 8. Intrinsic Absorption:  Caused by the interaction with one or more components of the glass  Occurs when photon interacts with an electron in the valence band & excites it to a higher energy level near the UV region. Extrinsic Absorption:  Also called impurity absorption.  Results from the presence of transition metal ions like iron, chromium, cobalt, copper & from OH ions i.e. from water.
  • 9. Dispersion Loss  As an optical signal travels along the fiber, it becomes increasingly distorted.  This distortion is a sequence of intermodal and intramodal dispersion.  Two types: 1. Intermodal Dispersion 2. Intramodal Dispersion
  • 10. Intermodal Dispersion:  Pulse broadening due to intermodal dispersion results from the propagation delay differences between modes within a multimode fiber. Intramodal Dispersion:  It is the pulse spreading that occurs within a single mode.  Material Dispersion  Waveguide Dispersion
  • 11. 1) Material Dispersion:  Also known as spectral dispersion or chromatic dispersion.  Results because of variation due to Refractive Index of core as a function of wavelength, because of which pulse spreading occurs even when different wavelengths follow the same path. 2) Waveguide Dispersion:  Whenever any optical signal is passed through the optical fiber, practically 80% of optical power is confined to core & rest 20% optical power into cladding.
  • 12. Scattering Losses  It occurs due to microscopic variations in the material density, compositional fluctuations, structural in homogeneities and manufacturing defects.  Linear Scattering  Rayleigh Scattering losses  Mie Scattering Losses  Waveguide Scattering Losses  Non-linear Scattering  Stimulated Brillouin Scattering(SBS)  Stimulated Raman Scattering(SRS)
  • 13. i) Linear Scattering a) Rayleigh Scattering Losses:  These losses are due to microscopic variation in the material of the fiber.  Unequal distribution of molecular densities or atomic densities leads to Rayleigh Scattering losses  Glass is made up of several acids like SiO2, P2O5,etc. compositions, fluctuations can occur because of these several oxides which rise to Rayleigh scattering losses
  • 14. b) Mie Scattering Losses:  These losses results from the compositional fluctuations & structural inhomogenerics & defects created during fiber fabrications, causes the light to scatter outside the fiber. c) Waveguide Scattering Losses:  It is a result of variation in the core diameter, imperfections of the core cladding interface, change in RI of either core or cladding.
  • 15. ii) Non-linear Scattering a) SBS Scattering:  Stimulated Brillouin Scattering(SBS) may be regarded as the modulation of light through thermal molecular vibrations within the fiber.  Pb =4.4x10-3 d2 λ2 α dB v watts where, λ= operating wavelength μm d= fiber core diameter μm v = source bandwidth in GHz
  • 16. b) SRS Scattering:  Stimulated Raman Scattering is similar to SBS except that high frequency optical phonon rather than acoustic phonon is generated in scattering processes.  Pb =5.9x10-2 d2 λα dB watts Phonon: Collective excitation in a periodic arrangement of atoms or molecules in solid.
  • 17.
  • 18.
  • 19.
  • 20.
  • 21.
  • 22.
  • 24. What is OTDR?  It is a trouble shooting device to find faults, splices and bends in fiber optic cable.  It is used to measure time and intensity of light reflected on an optical fiber.  It can detect light loss and pinpoint trouble areas making repair easy.  OTDR test can be anywhere along the length of fiber from ten seconds to three minutes
  • 25. Principle of Operation  OTDR emits a high-power pulse that hits the fiber and bounces back.  What comes back is measured, factoring in time and distance, and results in “trouble spots” which can be targeted for repair.  The more quickly trouble areas are identified and addressed the less fiber optic network will suffer from data transfer problems.
  • 27. Working  A light pulsed is launched into the fiber in forward direction from an injection laser using a coupler or beam splitter.  Beam splitter or coupler makes possible to couple the optical excitation power impulse into the tested fiber and to deviate the backscattered power to the optical receiver.  The backscattered light is detected using an Avalanche Photodiode receiver.
  • 28.  Output of photodiode receiver drives an integrator.  Integrator improves SNR by giving an arithmetic average over a number of measurements taken at one point.  This signal is fed to Logarithmic amplifier and average measurements for successive points within the fiber are plotted as a Chart Recorder.  Overall link length can be determined from the time difference between reflection from the fiber input and output end faces.
  • 29.  The below fig shows the possible backscatter plot for the fiber under test.
  • 30. ISO 9001 : 2008 certified ` ACS Important Questions 6. Losses in fiber optics (M=8) 1. With a neat diagram explain working of OTDR. (Twice) 2. Explain in brief the two fiber band losses. 3. Define: a) Reflection b) Diffraction c) Absorption 4. Explain Dispersion with help of light theory. 5. Explain the losses due to scattering in FOC & state applications. 6- What is dispersion? Explain inter model dispersion. 7. ) An optical fiber communication is to be designed to operate over an 8 KM length without using repeaters. The use times of the chosen component are source (LED) 8ns. Fiber inter model 5ns KM –1(Pulse broadening) intramodel 1ns KM –1.Detector (p-I-n photodiode) 6 ns b) The following parameters are established for a long haul single – mode optical fiber operating at a wavelength of 1.3 um. Mean power launched from the laser Transmitter –3 dbm Cable fiber loss 0.4 db KM –1 Splices loss 0.1 db KM –1 Connector losses at the Transmitter & Receiver When operating at 35 Mbits-1 (BER 10-9) –55 dbm When operating at 400 Mbits-1 (BER 10-9) –44 dbm Required safety margin 7db Estimate i) The maximum possible link length without repeaters when operating at 35 Mbits-1 (BER 10-9). It may be assumed that there is no dispersion equalization penalty at this bit rate. ii) The maximum possible link length without repeaters when operating at 400 Mbits-1 (BER 10-9). & assuming no dispersion equalization penalty. 8. Describe attenuation in optical fiber