1000 kVA pad mounted transformer

1000 kVA pad mounted transformer

1000 kVA pad mounted transformer

TYPE: Loop feed/Radial feed
BIL: 30-200 kV
Standards: ANSI/IEEE, CSA/CAN, DOE

A 1000 kVA Pad-Mounted Transformer is a high-capacity electrical transformer designed for ground-level installation, capable of handling a load of 1000 kilovolt-amperes (kVA). It is housed in a durable, weather-resistant steel cabinet mounted on a concrete pad, making it ideal for outdoor use in public or commercial areas. These transformers are typically connected to underground power distribution systems and are used to step down high primary voltages (such as 13.8 kV, 34.5 kV, or higher) to lower secondary voltages (such as 480V/277V or 208V/120V), which are then used for industrial, commercial, or large-scale residential applications.

Key features of a 1000 kVA pad-mounted transformer include:

  1. High capacity: With its 1000 kVA rating, this transformer can support the substantial power requirements of large industrial facilities, commercial buildings, or even multiple residential units within a large housing complex.

  2. Robust enclosure: All energized components are safely enclosed in a grounded, tamper-resistant steel housing, allowing for secure installation in areas without additional fencing.

  3. Versatile voltage step-down: It efficiently steps down high-voltage electricity from primary distribution lines to the lower, usable secondary voltage levels required by end users.

  4. Outdoor durability: Designed to withstand various environmental conditions, the transformer can operate reliably for many years with minimal maintenance, ensuring a stable power supply.

  5. Space-saving design: Its pad-mounted configuration is ideal for areas where space is limited, as it eliminates the need for large, fenced-off substations.

The 1000 kVA pad-mounted transformer is a critical component in delivering reliable, high-volume power distribution for industrial complexes, business parks, and large residential communities, offering safety, efficiency, and durability in modern power grids.

Frequently Asked Questions

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