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Circuit Design and Protection Flashcards

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

Read the first 6 Circuit Design and Protection flashcards as text
  1. When designing a ring final circuit for a domestic kitchen, what is the minimum cable size for 2.5mm² twin and earth cable with standard installation method?

    Answer: 2.5mm²

    The standard cable size for a domestic ring final circuit is 2.5mm² twin and earth (flat profile 6242Y) protected by a 32A MCB. This cable has sufficient current-carrying capacity when installed as a ring (each conductor carries approximately half the load), and the protective conductor size of 1.5mm² meets the CPC requirements.

  2. What is the purpose of applying correction factors when calculating the current-carrying capacity of a cable?

    Answer: To account for conditions that reduce the cable's ability to dissipate heat, such as thermal insulation, ambient temperature, and grouping

    Correction factors (Ca for ambient temperature, Cg for grouping, Ci for thermal insulation, Cc for semi-enclosed fuses) reduce the tabulated current-carrying capacity of a cable to account for real installation conditions. These factors reflect conditions that impair the cable's ability to dissipate the heat generated by current flow, preventing overheating and potential fire.

  3. A radial circuit for a domestic cooker uses 6mm² cable protected by a 32A MCB. What is the maximum demand that should be calculated for a 13kW cooker using diversity?

    Answer: 10A plus 30% of the remainder plus 5A for a socket outlet

    The diversity calculation for a cooker circuit (as per IET On-Site Guide Table 1B) is: first 10A of the rated current at full load, plus 30% of the remaining rated current, plus 5A if a cooker control unit with a socket outlet is used. For a 13kW cooker (56.5A at 230V): 10A + (30% × 46.5A) + 5A = 10 + 14 + 5 = 29A, which is within the 32A MCB rating.

  4. What is the maximum permitted voltage drop for a lighting circuit in a domestic installation according to BS 7671?

    Answer: 3% of the nominal voltage (6.9V)

    BS 7671 Regulation 525.1 limits the voltage drop in a consumer's installation to 3% of the nominal voltage for lighting circuits (6.9V at 230V) and 5% for other circuits (11.5V at 230V). Excessive voltage drop causes lighting to dim noticeably and equipment to underperform. This must be verified by calculation during the design stage.

  5. In a domestic installation, what is the typical prospective fault current (PFC) range at the origin of supply?

    Answer: 3kA–16kA

    The prospective fault current at the origin of a typical UK domestic supply ranges from approximately 3kA to 16kA, depending on the supply transformer size and the impedance of the supply cables. This value must be measured and recorded during initial verification, as it determines the required breaking capacity of the protective devices (MCBs typically rated at 6kA or 10kA).

  6. Which type of MCB (circuit breaker) is most commonly used in domestic installations?

    Answer: Type B — trips at 3–5 times rated current

    Type B MCBs are standard in domestic installations as they provide adequate protection for resistive and lightly inductive loads (lighting, heating, socket outlets). Their magnetic trip range of 3–5 times rated current ensures fast disconnection under fault conditions without nuisance tripping from normal load switching surges. Type C is used for motor circuits with higher inrush currents.