Remove the Freezer Door on Dispenser Models

3 Lift the hinge straight up to free the hinge pin from the socket in the top of the door.

4 Remove the tape and tilt the door away from the cabinet. Lift it off the bottom socket.

Pull out the water line until the line comes all the way out. This may require 2 people, one to hold the door and another to pull out the water line.

5 Set the door on a non-scratching surface with the outside up.

Remove the Fresh Food Door

 

 

Tape the door shut with masking tape.

1

 

 

Remove the hinge pin with a 3/8″ socket.

2

 

 

Remove the tape and tilt the door away from the cabinet. Remove and save

3

 

 

the washer on the hinge pin.

 

 

Lift the door straight off the bottom hinge bracket.

4

 

 

Set the door on a non-scratching surface with the outside up.

5

Reversing the hardware.

 

 

Transfer Bottom Hinge Bracket to the Left

 

 

 

 

Remove the base grille by pulling it straight out.

 

 

1

 

 

 

 

Using a Torx Driver, move the bottom hinge bracket and plastic washer

 

 

2

 

 

 

 

from the right side to the left side.

Plastic Washer

Hinge Bracket

Safety Information Operating Instructions Installation Instructions Troubleshooting Tips Customer Service

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GE 1825 owner manual Reversing the hardware, Remove the Freezer Door on Dispenser Models, Remove the Fresh Food Door

1825 specifications

The GE 1825 is a remarkable evolution in the world of gas turbine technology, produced by General Electric, a company renowned for its innovative engineering and commitment to power generation solutions. Launched as part of GE's 7FA series, the 1825 model has established itself as a pivotal asset for both industrial and utility applications.

One of the standout features of the GE 1825 is its design efficiency. Engineered to deliver a high output while ensuring low emissions, this gas turbine operates effectively in combined cycle settings, making it an ideal choice for power plants aiming to optimize their production capabilities. With a robust output capability of around 1825 megawatts, the turbine is well-suited for large-scale operations requiring reliable energy generation.

The GE 1825 employs advanced technologies to enhance its performance. The turbine incorporates sophisticated air-cooled components, which help maintain operational integrity at elevated temperatures. This design focuses on durability and longevity, minimizing the need for frequent maintenance. Moreover, the GE 1825 turbine utilizes a state-of-the-art combustion system that not only boosts its thermal efficiency but also reduces nitrogen oxide emissions, aligning with global environmental standards.

Another notable characteristic of the GE 1825 is its operational flexibility. This turbine can seamlessly adapt to various fuel sources, including natural gas, distillate oil, and other alternative fuels. Such versatility enables power plants to optimize their fuel consumption based on market conditions and availability, thus achieving better economic performance.

In terms of control technologies, the GE 1825 is equipped with advanced digital systems that facilitate real-time performance monitoring and predictive maintenance. This capability allows operators to maintain optimal performance levels while ensuring that potential issues are identified and addressed before they escalate into critical problems.

Ultimately, the GE 1825 gas turbine stands as a testament to General Electric's commitment to energy innovation, providing cutting-edge technologies, exceptional efficiency, and operational flexibility. With its high power output, reduced emissions, and advanced control systems, it plays a crucial role in the evolving landscape of power generation, meeting both economic and environmental challenges in today’s energy market.