← All CFOT Flashcard Decks

Network Design and Documentation Flashcards

6 cards from real CFOT practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 6 Network Design and Documentation flashcards as text
  1. A network designer is calculating the link loss budget for a 15 km single-mode link operating at 1310 nm. The design includes 2 fusion splices and 4 connector pairs. Given the following typical loss values, what is the total estimated link loss? - Fiber Attenuation: 0.35 dB/km - Fusion Splice Loss: 0.1 dB/splice - Connector Pair Loss: 0.75 dB/pair

    Answer: 8.45 dB

    The link loss budget is calculated by summing the loss from all components: (15 km * 0.35 dB/km) for fiber loss, (2 splices * 0.1 dB/splice) for splice loss, and (4 pairs * 0.75 dB/pair) for connector loss. This results in 5.25 dB + 0.2 dB + 3.0 dB = 8.45 dB.

  2. Which of the following is the primary purpose of a Bill of Materials (BOM) in the network design and planning phase?

    Answer: To list all necessary components, quantities, and part numbers for procurement and construction.

    A Bill of Materials (BOM) is a comprehensive list of all the raw materials, components, and assemblies required to build or install a system. Its main purpose in the design phase is to ensure all necessary parts are identified and quantified for accurate cost estimation, purchasing, and inventory planning.

  3. A network is being designed to provide Fiber-to-the-Home (FTTH) service to a new residential subdivision. The design requires a cost-effective architecture that can serve multiple subscribers from a single feeder fiber from the central office. Which network topology is best suited for this application?

    Answer: Passive Optical Network (PON)

    A Passive Optical Network (PON) is the standard architecture for FTTH deployments. It uses passive (unpowered) optical splitters to divide the signal from a single fiber at the central office to serve multiple end-users, which is highly cost-effective and scalable for residential services.

  4. During the route planning phase for a new outside plant (OSP) installation, which of the following is a critical design principle for ensuring future network serviceability and maintenance?

    Answer: Placing splice closures and access points in logical, easily serviceable locations.

    Effective OSP design prioritizes long-term maintainability. Placing splice closures, handholes, and other access points in locations that are logical and safely accessible for technicians is crucial for future repairs, upgrades, and troubleshooting.

  5. A technician is dispatched to troubleshoot a fiber outage. According to the network documentation, which document should provide the most precise geographical location and connection details for a specific splice point within an outside plant cable?

    Answer: The splice diagram or schematic.

    Splice diagrams or schematics are essential pieces of documentation that detail the exact physical locations of splice closures and specify which fibers are connected to each other within the closure. This is the primary document used to locate and work on specific splice points.

  6. According to the TIA-606 administration standard, what is the primary goal of implementing a structured and consistent labeling system for all network components, such as cables, patch panels, and outlets?

    Answer: To reduce the labor costs associated with maintenance and troubleshooting.

    The TIA-606 standard for administration and labeling is designed to create a clear, logical, and uniform system for identifying all parts of the telecommunications infrastructure. This significantly reduces the time and labor required for moves, adds, changes, and troubleshooting, thereby lowering the overall operational cost of the network.