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Safety

Plastic Hinge Cover

To Remove the Freezer Door (on Non-Electronic Control Upright models)

Hinge

Screws

Top Hinge

(on some models)

1

2

3

4

Remove the plastic hinge cover by either lifting it off or folding it back (depending on model).

Remove the screws holding the hinge to the top of the cabinet using a screwdriver, 5/16socket driver or wrench (depending on model).

Remove the top hinge from the cabinet and lift the door up and off the lower hinge pin. Set the door aside.

Remove the two screws from the bottom hinge.

To replace the doors, reverse the order of the above instructions.

CAUTION: It is very important that all hinge screws are securely tightened to ensure a secure assembly and prevent hinge slippage.

To Remove the Freezer Door (on Electronic Control Upright models)

The hinge screws are tamperproof. Please have an authorized service technician remove the door.

Lid Removal (on Chest models)

See lid removal instructions on either the back of the cabinet or the hinge label.

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Instructions Operating Instructions

Instructions

Installation

Troubleshooting Tips Consumer Support

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GE FUM13 owner manual Ge.com, Lid Removal on Chest models

FUM13 specifications

The GE FUM13 is a highly advanced and versatile gas turbine that harnesses the latest technologies to deliver exceptional performance and efficiency. Designed for both flexibility and reliability, the FUM13 is a part of GE’s renowned portfolio, catering to a variety of industries including power generation, oil and gas, and industrial processes.

One of the standout features of the GE FUM13 is its ability to operate effectively across different fuel types. The turbine is designed for multi-fuel operation, enabling users to switch between natural gas, oil, and other alternative fuels with ease. This adaptability not only helps in reducing operational costs but also enhances sustainability by allowing facilities to utilize the most economical or available fuel sources.

The FUM13 integrates state-of-the-art aerodynamics and thermodynamics principles, which contribute to its high efficiency ratings. Advanced cooling techniques are employed in the turbine’s design, ensuring that it can withstand high temperatures while maintaining performance. This capability aids in achieving significant efficiency gains, allowing for lower emissions and reduced fuel consumption, which are critical in today’s environmentally conscious landscape.

Furthermore, the GE FUM13 is equipped with digital technologies that leverage data analytics and predictive maintenance. The turbine harnesses real-time operational data, enabling operators to optimize performance and proactively address maintenance needs. This feature not only minimizes downtime but also extends the operational life of the turbine, ultimately resulting in cost savings over time.

A distinguishing characteristic of the FUM13 is its compact and modular design. This configuration facilitates easier installation and maintenance, allowing users to integrate the turbine into their existing infrastructure with minimal disruption. The modular approach also means that the system can be scaled to meet specific power output requirements, making it a suitable choice for both small and large-scale applications.

In summary, the GE FUM13 gas turbine stands out with its multi-fuel capability, advanced thermal efficiency, digital integration, and modular design. These features, combined with GE's commitment to innovation and sustainability, make the FUM13 an ideal solution for businesses looking to enhance their energy production systems while also addressing the challenges of fuel flexibility and emissions reduction. As industries continue to evolve, the GE FUM13 is poised to play a pivotal role in shaping the future of energy generation.