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Nokia Optical Networking Fundamentals Sample Questions (Q23-Q28):
NEW QUESTION # 23
What is a trail?
- A. A transparent transport of a client signal
- B. A physical link between two optical amplifiers
- C. An entity to encapsulate a low order signal into a high order container
- D. A link between end points to increase the power budget of the optical link
Answer: A
Explanation:
A trail is a transparent transport of a client signal. A trail is a physical link between two points in an optical network, allowing for the transport of a client signal from one point to the other. It is a low-order signal, such as a 10G Ethernet or a Fibre Channel signal, encapsulated into a high-order container, such as a 40G or 100G signal. This allows for the transport of the client signal over longer distances, increasing the power budget of the optical link.
NEW QUESTION # 24
What is the OAMP LAN interface?
- A. It is an RJ-45 interface (a common Ethernet port) used to export active alarms to an external device, typically equipped with several LEDs
- B. It is an RJ-45 interface (a common Ethernet port) that has to be configured with an IP address for node reachability and management
- C. It is an RJ-45 interface (a common Ethernet port) used for cascading 1830 PSS nodes (e.g., external shelves)
- D. It is an RJ-45 interface (common Ethernet port) used to connect one or more client ports (e.g., 1Gb/s or legacy 100Mbit/s client flows)
Answer: B
Explanation:
It is an RJ-45 interface (a common Ethernet port) that has to be configured with an IP address for node reachability and management. This interface is used to connect the OAMP node to the LAN, allowing it to be managed and monitored remotely.
NEW QUESTION # 25
Which of the following statements about Optical Add/Drop Multiplexers (OADMs) is FALSE?
- A. There are two main general classes of OADMs: FOADMs and ROADMs.
- B. OADMs allow the user to pass-through specific services at the wavelength optical level (express channels).
- C. OADMs allow the user to terminate specific services through transponders.
- D. OADMs always require O-E-O conversion when passing-through optical channels.
Answer: D
Explanation:
Comprehensive and Detailed Explanation From Nokia Optical Networking Fundamentals:
In the context of the Nokia 1830 PSS (Photonic Service Switch) and general WDM principles, the statement that OADMs always require O-E-O (Optical-Electrical-Optical) conversion for pass-through channels is fundamentally incorrect. The primary purpose of an OADM is to provide the ability to "add" or "drop" specific wavelengths while allowing other wavelengths (known as express or pass-through channels) to continue through the node entirely in the photonic domain.
By remaining in the optical layer, these express channels avoid the latency and cost associated with O-E-O conversion. FOADMs (Fixed OADMs) use static filters to achieve this, while ROADMs (Reconfigurable OADMs) use Wavelength Selective Switches (WSS) to dynamically route traffic. O-E-O conversion only occurs at the transponder or muxponder level when a service is terminated (dropped) or initiated (added) to convert the client signal into a compliant DWDM wavelength. Therefore, the efficiency of an optical network relies on the fact that pass-through traffic stays as light, bypassing the need for electrical processing at every node.
NEW QUESTION # 26
A user needs to check for interface details against the commands is the correct one?
- A. config card 11star1a interface 1/17 detail
- B. show interface 11starla 1/17/L1 detail
- C. 11starla 1/17 port-detail
- D. config interface detail 1/17/L1
Answer: B
Explanation:
show interface 11starla 1/17/L1 detail is the correct command to check for interface details. This command will display detailed information about the specified interface, including its status, configuration, and statistics.
NEW QUESTION # 27
Which of the following statements about the contentionless feature on a CDC-F node is TRUE?
- A. It represents the ability to support the Fixed Grid standard.
- B. It represents the ability to reroute lambdas to any direction.
- C. It represents the ability to drop the same wavelength from different degrees.
- D. It represents the ability to drop any lambda from any Add/Drop block port.
Answer: C
Explanation:
Comprehensive and Detailed Explanation From Nokia Optical Networking Fundamentals:
The term CDC-F stands for Colorless, Directionless, Contentionless, and Flex-grid. While "Colorless" allows any wavelength on any port and "Directionless" allows any port to be routed to any output fiber (degree), Contentionless solves a specific physical limitation of traditional multiplexers. In a standard ROADM, you cannot drop the same wavelength (e.g., Channel 21) from two different directions (e.g., North and West) into the same add/drop structure because they would "contend" or collide on the same internal fiber.
A Contentionless architecture (typically utilizing a Multicast Switch or MCS) allows the node to drop the same wavelength from different degrees simultaneously without interference. This is critical for high-availability mesh networks where a single transponder might need to receive a specific wavelength from a primary path and a backup path. Without contentionless capabilities, operators would have to carefully manage wavelength assignments across the entire network to ensure no two identical frequencies ever meet at the same drop structure, which significantly complicates planning and restoration.
NEW QUESTION # 28
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