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  2. Submersible pump - Wikipedia

    en.wikipedia.org/wiki/Submersible_pump

    Submersible pump cables are electrical conductors designed for use in wet ground or under water, with types specialized for pump environmental conditions. [5] [6] [7] A submersible pump cable is a specialized product to be used for a submersible pump in a deep well, or in similarly harsh conditions.

  3. Kerite Company - Wikipedia

    en.wikipedia.org/wiki/Kerite_Company

    It is also used in other harsh environments such as flooded vaults, water-soaked conduits, and high-ground water applications. Kerite manufactures Electrical Submersible Pump (ESP), which is designed for use in high temperature environments, wells and down-hole applications, and the mining and drilling industries.

  4. Submarine power cable - Wikipedia

    en.wikipedia.org/wiki/Submarine_power_cable

    A submarine power cable is a transmission cable for carrying electric power below the surface of the water. [1] These are called "submarine" because they usually carry electric power beneath salt water (arms of the ocean , seas , straits , etc.) but it is also possible to use submarine power cables beneath fresh water (large lakes and rivers ).

  5. Submersible pump cable - Wikipedia

    en.wikipedia.org/?title=Submersible_pump_cable&...

    This page was last edited on 29 December 2012, at 22:26 (UTC).; Text is available under the Creative Commons Attribution-ShareAlike 4.0 License; additional terms may apply.

  6. NEMA enclosure types - Wikipedia

    en.wikipedia.org/wiki/NEMA_enclosure_types

    3: Weather-resistant. Protects against falling dirt and windblown dust, against weather hazards such as rain, sleet and snow, and is undamaged by the formation of ice. Used outdoors on ship docks, in construction work, and in tunnels and subways. 3R: As 3, but omits protection against windblown dust. 3S: As 3, but also operable when laden with ice.

  7. Three-phase electric power - Wikipedia

    en.wikipedia.org/wiki/Three-phase_electric_power

    The phase angle difference between voltage and current of each phase is not necessarily 0 and depends on the type of load impedance, Z y. Inductive and capacitive loads will cause current to either lag or lead the voltage. However, the relative phase angle between each pair of lines (1 to 2, 2 to 3, and 3 to 1) will still be −120°.