CHECKING THE WATER DISPENSER LINE

1)In order to operate the ice maker properly, water pressure of 1.4 ~ 8.5kgf/cm2 (0.14~0.83Mpa, 19.9~120.9psi, 1.37~8.3bar) is required.

In this range a 100 cc paper cup can be filled in 10 seconds.

2)The water filter removes particles. It does not sterilize or destroy any micro-organisms.

3)If the refrigerator is installed in an area with low water pressure (1.4kgf/cm2, 0.14Mpa, 19.9psi, 1.37bar), you should install a booster pump to compensate for the low pressure.

4)Ensure the water storage tank inside the refrigerator is preperly filled initially. Push the water dis penser lever until the water runs from the outlet.

A universal water supply kit is available at extra cost from your dealer. The refrigerator NOTE manufacturer recommends using a water supply kit containing copper tubing.

Checking the Parts

INSTALLATION OF THE WATER DISPENSER LINE

INSTALLATION INSTRUCTIONS

 

(Case 1)

 

Connecting to water supply line

- Shut off the main water supply line and turn the Ice

1. Cold Water line

2. Pipe Clamp.

maker to the off position.

3.Copper (or Plastic) line

 

4.Compression Nut

- Locate the nearest cold drinking water line.

5.Compression Sleeve

 

6.Shut Off Valve

- Follow the instructions in the ice maker installation kit.

7.Packing Nut.

 

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GE RM25 Checking the Water Dispenser Line, Shut off the main water supply line and turn the Ice, Maker to the off position

RM25 specifications

The GE RM25 is a powerful and versatile gas turbine engine specifically designed for a variety of applications, including aviation and industrial settings. With its innovative technologies and impressive performance characteristics, the RM25 has established itself as a reliable choice for clients looking for efficiency and durability.

One of the standout features of the GE RM25 is its high thrust-to-weight ratio, which allows the engine to produce significant power while maintaining a relatively low mass. This attribute is particularly beneficial for aircraft, where weight reduction is crucial for enhancing flight performance and fuel efficiency. The engine’s design incorporates advanced materials that contribute to its light weight without compromising strength or reliability.

The RM25 employs a sophisticated modular design, making it easier to maintain and service compared to conventional gas turbines. This modularity ensures that individual components can be easily replaced or repaired, reducing downtime and optimizing operational efficiency. The engine’s service intervals have been extended, allowing for longer operational periods between maintenance checks.

GE's commitment to innovation is evident in the use of cutting-edge technologies within the RM25. The engine features a state-of-the-art digital control system that enhances its performance, providing real-time monitoring and adjustments to optimize fuel consumption and emissions. This technology helps in achieving better environmental compliance, a crucial aspect in today’s aviation and industrial landscapes.

Another key characteristic of the RM25 is its adaptability. The engine can be configured for various operating conditions, making it suitable for a wide range of missions and usages. This versatility is complemented by the engine’s ability to operate efficiently across different altitudes and temperatures, making it a reliable choice for clients in diverse environments.

Finally, the GE RM25 is recognized for its robust safety features, designed to ensure the utmost reliability in high-stakes operations. The engine undergoes rigorous testing and quality assurance processes to maintain the highest standards of performance and safety.

In conclusion, the GE RM25 gas turbine engine represents a remarkable fusion of power, efficiency, and innovation. Its combination of advanced technologies, modular components, and adaptability make it an attractive option for various applications, solidifying its reputation in the industry as a leading choice for reliable performance.