IT Certification
Nokia 4A0-205 Real Exam Questions
Last Update: 24 Sep 2023$39.00
Guarantee your 4A0-205 exam success with examkiller's study guide. The 4A0-205 practice test questions are developed by experiences Nokia Certification Professionals who working in todays prospering companies and...Description
Guarantee your 4A0-205 exam success with examkiller's study guide. The 4A0-205 practice test questions are developed by experiences Nokia Certification Professionals who working in todays prospering companies and Nokia exam data center.
Exam Number: 4A0-205
Exam Title: Nokia Optical Networking Fundamentals
Format: Single and Multiple Choice
Duration: 90 Minutes
Number of Questions: 40
Origin Provider: ExamKiller
Total Questions: 40 QAs
Type: Real Exam Questions
Guarantee: 100% Pass Guarantee
Demo: Click Here for Check Demo
Nokia 4A0-205 Exam Objectives
- Describe optical signal propagation in optical networks
- Identify the typical building blocks of a WDM network
- Describe the functionalities of the WDM building blocks
- Identify the main engineering parameters that characterize the network equipment
- Compute the power budget for an optical link
- Describe the concept of trail and service
- Identify the typical architectures for a WDM node
- Classify the network levels and topologies
- Get connected to 1830 PSS SWDM nodes using CLI, WebUI, and NFM-T
- Recognize the main alarms, conditions, logs, and performance metrics
- Perform channel power monitoring using Wavelength Tracker functionalities
- Verify the main elements of a previously designed network through EPT
- Design a simple network using 1830 EPT
- Describe the NFM-T infrastructure and list its components
- Get connected to NFM-T and explore the main menus
- Introduce the concepts of protection and restoration
- Introduce the main features of Generalized Multiprotocol Label Switching (GMPLS) protocol
- Verify the restoration and protection implementation in NFM-T
- Explain survivability and availability principles
- Perform the commissioning of a single network (bus or ring) through NFM-T by using the created EPT design