Medium Range 225 – 938 kVA Fg Wilson Industrial-Grade Generator Set P625-3
Product Introduction
Introducing the FG Wilson Diesel Generator, a powerful generator designed to meet your energy needs with exceptional efficiency and reliability. Available in a minimum rating of 569 kVA and a maximum rating of 625 kVA, this generator is designed to deliver powerful performance across a wide range of applications, ensuring you have the power you need when you need it most.
Engine Specification
At the heart of the FG Wilson diesel generator is the Perkins® 2506A-E15TAG4 engine, renowned for its durability and performance. With a displacement of 15.2 litres and a compression ratio of 16.0:1, the engine can handle demanding workloads. The electronic governor type ensures precise control of engine speed, optimising fuel consumption and increasing overall efficiency. The impressive bore and stroke of 137 mm and 171 mm respectively contribute to the engine’s powerful output, making it a reliable choice for industrial and commercial applications.
Alternator Options
To further enhance the performance and reliability of FG Wilson diesel generators, customers can choose from the FG Wilson brand and Leroy Somer alternators. These alternators are designed to provide excellent performance, ensuring your generator runs smoothly and efficiently. FG Wilson's focus on quality and reliability guarantees that you will receive a product that meets the highest standards in the industry, making it a reliable choice for your power generation needs.
Control Panel Specification
The compact module supports multiple installation options and includes a single digital output for auxiliary power control. Users can customize the module to display text rather than standard icon-based indications, enhancing clarity and communication. It supports a wide range of sensors and temperature inputs and features improved coolant temperature handling with early-warning alerts. The DSE4520MKII also includes alternator imbalance protection to prevent potential damage caused by uneven load distribution.
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