Siemens FR325DTK Double Throw Switch

Technical Specification

Features:
  • Make: Siemens
  • Model code: FR325DTK
  • Type: Fusible
  • Rated current: 400 A
  • Rated Voltage: 240 V AC or 250 V DC
Additional info:

Intended to transfer loads from one power source to another Suitable for use as service equipment Rated for use on systems with an available fault current of up to 10,000 AIC when protected with Class H fuses or either 100,000 or 200,000 AIC when protected with Class R, J or Class T fuses Dual cover interlock Padlockable cover latch and multiple OFF padlock provisions on handle Load break rated UL Listed Outdoor

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Make Siemens
Manufacturer Siemens
Category Motors and Electrical Equipment>Safety Switches and Disconnects
Model code FR325DTK
Type Fusible
Rated current 400 A
Rated Voltage 240 V AC or 250 V DC
Nema type 3R
No. of Poles 3

Product description

Siemens FR325DTK Safety Switch

The Siemens FR325DTK is a robust and reliable safety switch designed for commercial and industrial use. With a focus on seamless power transfer, this double-throw safety switch guarantees efficient load management by redirecting electricity from one power source to another safely. It is particularly suited for applications where continuity of service is crucial.

Key Features:

  • Heavy-duty construction for extended durability.
  • UL Listed, ensuring adherence to industry standards.
  • Designed for systems up to 600V, accommodating both AC and DC.
  • Capable of withstanding high fault currents, ensuring safety under demanding conditions.
  • Type 3R enclosure for outdoor use.
  • Padlockable handle ensures security and prevents unauthorized access.
  • Visible blade design, allowing users to verify switch position at a glance.

Technical Details:

  • Current Rating: Suitable for 400 A applications.
  • Interlocked covers for enhanced safety during operation.
  • Compliance with NEMA standards, ensuring quality and performance.

Ideal Use Cases:

Perfect for use in manufacturing plants, large commercial buildings, and institutions, where high fault currents may occur. It is also suitable for environments requiring reliable performance and ease of maintenance, thanks to its rugged construction.

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