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Online Training – Fiber Optic System

June 24, 2022
Online Training – Fiber Optic System

Jadwal Pelatihan Online Training – Fiber Optic System

TanggalTempatKota
07 - 08 Juli 2022--

OVERVIEW

Fiber optik secara garis besar, yaitu media komunikasi data yang terbuat dari kaca. Jika berhubungan dengan alat-alat optik, maka alat-alat tersebut akan erat sekali hubungannya dengan cahaya dan sistem pencahayaan. Jika serat optik yang digunakan sebagai media, maka yang akan lalu-lalang di dalamnya tidak lain dan tidak bukan adalah cahaya. Seberkas cahaya akan digunakan sebagai pembawa informasi yang ingin Anda kirimkan. Cahaya informasi tersebut kemudian ditembakkan ke dalam media fiber optik dari tempat asalnya. Kemudian cahaya akan merambat sepanjang media kaca tersebut hingga akhirnya cahaya tadi tiba di lokasi tujuannya. Ketika cahaya tiba di lokasi tujuan, maka pengiriman informasi dan data secara teori telah berhasil dikirimkan dengan baik. Dengan demikian, maka terjadilah proses komunikasi di mana kedua ujung media dapat mengirim dan menerima informasi yang ingin disampaikan.

 

TUJUAN

  • Measuring fiber characteristics
  • Verifying and troubleshooting with lost test set and OTDR
  • Building, testing and repairing connectors and splices
  • Selecting the appropriate fibers and cables to meet your needs
  • Identifying and working around fiber-optic installation problems
  • Predicting design performance and verifying after the actual installation
  • Making sense of OTDR traces

 

MATERI Training Online – Fiber Optic System

1. Fiber Types and Materials

  • How fibers guide light
  • Differentiating between core and cladding
  • Index of refraction
  • Light rays and light waves
  • Singlemode fiber (SMF) and multimode fiber (MMF)
  • How SMF and MMF are different
  • Choosing fiber based upon your communication needs
  • Trading ease of use for highest performance
  • Planning for the future

2. Specifying Fibers

  • Loss and attenuation of fibers
  • Understanding how loss is measured
  • Inherent loss factors: scattering and absorption
  • The effect of light color on loss
  • Using a loss test set
  • Budgeting the loss
  • Bandwidth: the capacity for information
  • Causes of distortion
  • Dispersion
  • Modes
  • When bandwidth is an issue
  • Physical sizes of fiber
  • Why fibers have different sizes
  • The impact of numerical aperture
  • Dealing with manufacturing tolerances

3. Using Fiber Optic Transmitters and receivers

  • Light sources
  • 1st, 2nd and 3rd “windows”
  • LEDs vs. lasers
  • Wavelength division multiplexing
  • Detecting light with photodiodes
  • Wavelength agility
  • How to factor in speed
  • What to look for in test instrumentation
  • Responsivity : the calibration factor

4. Designing Cable Plants

  • Indoor cable
  • Structural issues: connection, identification and installation
  • Abiding by the fire code
  • Why tight buffer is common
  • Outdoor cable
  • Underground vs. aerial cable
  • Loose tube
  • Ribbon
  • Slotted core
  • Avoiding moisture contamination
  • Benefiting from structured cabling options
  • Surveying structured cabling standards
  • Vendor interpretations

5. Verifying Cable Installations: Testing Tips and Techniques

  • Acceptance testing
  • Testing continuity: the first step
  • Examining cable plant loss
  • Locating mismatch problems
  • Troubleshooting fiber systems
  • Knowing when to troubleshoot
  • Common steps to identify the problem
  • Sources of difficulty you should know

6. OTDR : Optical Time Domain Reflectometer

  • Testing fiber paths with OTDR
  • Using the OTDR before, during and after cable
  • Installation
  • Safety concerns
  • Interpreting OTDR traces
  • Capabilities and limitations of OTDR
  • Relying on your own interpretation

7. Selection Connectors and Splices

  • Quality factorsThroughput and return loss
  • Cost differentials
  • Durability
  • Fresnell reflection and index matching
  • Mechanical and fusion splices
  • When to consider fusion splicing
  • Pros and cons of mechanical splicing
  • Identifying different types of connectors (ST, SC, FC, SMA, Biconic, D4, Non-ontact and physical contact/PC)

8. Building Connectors and Splices

  • Practical fiber termination
  • Installing ST connectors
  • oining fibers with mechanical splices
  • Tuning splices
  • Repairing connectors

9. Cutting Edge Technologies

  • Advanced fiber-optic components
  • Fiber couplers
  • Optical amplifiers
  • Wavelength Division Multiplexers (WDM)
  • Advantages of specialty fibers

 

PESERTA

Technicians, installers, supervisors, engineers, designers and contractors

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