Safety Information

Operating Instructions

Troubleshooting Tips

Customer Service

Using the dishwasher.

Check the Water Temperature

The entering water must be at least 120°F. and not more than 150°F., for effective cleaning and to prevent dish damage. Check the water temperature with a candy or meat thermometer. Turn on the hot water faucet nearest the dishwasher, place the thermometer in a glass and let the water run continuously into the glass until the temperature stops rising. Adjust your water heater, if needed.

Using a Rinse Agent

A rinse agent,such as JET-DRY, makes water flow off the dishes quickly thereby reducing water spotting.

Fill the rinse agent dispenser until it reaches the bottom of lip inside the opening. Replace cap.

To check if rinse agent is needed, remove the cap and look into the dispenser. On some models, the dispenser can be checked by pressing the clear center of the fill cap 2 or 3 times. If rinse agent fills the center of the fill cap, you have enough.

A full dispenser should last about 3 months.

If rinse agent spills, wipe it up immediately. It can keep your detergent from working.

12

Page 12
Image 12
GE GSD880, GSD900, GSD950, GSD800, GSD980, GSD850 Using the dishwasher, Check the Water Temperature, Using a Rinse Agent

GSD830, GSD930, GSD850, GSD880, GSD980 specifications

General Electric (GE) has consistently led the way in the innovation of gas turbine technology, and among its notable offerings are the GSD900, GSD950, GSD800, GSD980, and GSD880 models. These turbines are engineered to meet a range of energy production needs and are characterized by their high efficiency, reliability, and adaptability in various operating environments.

The GSD900 model is designed for high-performance applications, featuring advanced aerodynamics and combustion systems that optimize fuel efficiency while minimizing emissions. This model leverages GE's latest developments in material science, allowing for improved thermal performance and durability. With a focus on modular design, the GSD900 offers simplicity in maintenance and enhanced uptime.

The GSD950 takes efficiency further with an enhanced turbine architecture that supports combined cycle applications. This model is renowned for its capacity to operate effectively with both natural gas and alternative fuels. Utilizing advanced digitally controlled combustion technology, it delivers exceptional operational flexibility. This translates into reduced operational costs for users, making it an attractive option for modern power generation facilities.

The GSD800 is built with versatility in mind, suitable for both distributed and centralized power generation systems. Its robust design ensures reliability even under challenging environmental conditions. The GSD800 integrates GE's proprietary digital solutions, which optimize performance and provide real-time monitoring capabilities. This feature allows operators to make data-driven decisions, enhancing operational efficiency.

GE's GSD980 is at the forefront of turbine innovation, incorporating cutting-edge technologies such as additive manufacturing. This allows for lighter components and reduced material waste while achieving higher performance levels. The GSD980 is engineered for maximum efficiency, notably within renewable and hybrid energy systems, greatly supporting the transition to cleaner power generation.

Finally, the GSD880 model merges the benefits of both the GSD800 and GSD950, focusing on high availability and low total lifecycle costs. It incorporates advanced control systems that optimize the balance between performance and emissions, appealing to both utility and industrial operators. Its compatibility with digital monitoring and predictive maintenance tools ensures that it remains a reliable choice for longstanding power generation needs.

In conclusion, the GE GSD900, GSD950, GSD800, GSD980, and GSD880 gas turbines reflect the company's commitment to advancing energy technology. Each model is built with specific applications in mind, providing users with options tailored to their unique operational requirements. With their innovative features and technologies, these turbines signify the future of efficient and sustainable energy production.