GE JP350 owner manual Cleaning the glass cooktop, Normal Daily Use Cleaning, Burned-On Residue

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Cleaning the glass cooktop.

Clean your cooktop after each spill. Use CERAMA BRYTE® Ceramic Cooktop Cleaner.

Normal Daily Use Cleaning

ONLY use CERAMA BRYTE® Ceramic Cooktop Cleaner on the glass cooktop. Other creams may not be as effective.

To maintain and protect the surface of your glass cooktop, follow these steps:

Before using the cooktop for the first time, clean it with CERAMA BRYTE® Ceramic Cooktop Cleaner. This helps protect the top and makes cleanup easier.

Daily use of CERAMA BRYTE® Ceramic Cooktop Cleaner will help keep the cooktop looking new.

Shake the cleaning cream well. Apply a few drops of CERAMA BRYTE® Ceramic Cooktop Cleaner directly to the cooktop.

Use a paper towel or CERAMA BRYTE® Cleaning Pad for Ceramic Cooktops to clean the entire cooktop surface.

Use a dry cloth or paper towel to remove all cleaning residue. No need to rinse.

NOTE: It is very important that you DO NOT heat the cooktop until it has been cleaned thoroughly.

Care and Cleaning Operating Instructions Safety Instructions

Use a CERAMA BRYTE® Cleaning Pad for Ceramic Cooktops or a Scotch-Brite®Multi-Purpose No Scratch blue scrub pad.

Burned-On Residue

WARNING: DAMAGE to your glass surface may occur if you use scrub pads other than the pad included with your cooktop.

Allow the cooktop to cool.

Spread a few drops of CERAMA BRYTE® Ceramic Cooktop Cleaner on the entire burned residue area.

Using the included CERAMA BRYTE® Cleaning Pad for Ceramic Cooktops, rub the residue area, applying pressure as needed.

If any residue remains, repeat the steps listed above as needed.

For additional protection, after all residue has been removed, polish the entire surface with CERAMA BRYTE® Ceramic Cooktop Cleaner and a paper towel.

Consumer Support Troubleshooting Tips

The CERAMA BRYTE® Ceramic Cooktop Scraper and all recommended supplies are available through our Parts Center. See instructions under “To Order Parts” section on next page.

NOTE: Do not use a dull or nicked blade.

Heavy, Burned-On Residue

Allow the cooktop to cool.

Use a single-edge razor blade scraper at approximately a 45° angle against the glass surface and scrape the soil. It will be necessary to apply pressure to the razor scraper in order to remove the residue.

After scraping with the razor scraper, spread a few drops of CERAMA BRYTE® Ceramic Cooktop Cleaner on the entire burned residue area. Use the CERAMA BRYTE® Cleaning Pad to remove any remaining residue.

For additional protection, after all residue has been removed, polish the entire surface with CERAMA BRYTE® Ceramic Cooktop Cleaner and a paper towel.

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Contents CooktopRadiant Safety Precautions Cook Meat and Poultry THOROUGHLY… Instructions Radiant Surface Units Cooktop Using the surface unitsHow to Set Glass isSelecting types of cookware Using a pressure canner, Temperature LimiterObserve the Following Points in Canning Control knobs may be removed for easier cleaning Care and cleaning of the cooktopHow to Remove Packaging Tape Control KnobsBurned-On Residue Cleaning the glass cooktopNormal Daily Use Cleaning Heavy, Burned-On ResidueDamage from Sugary Spills and Melted Plastic Metal Marks and ScratchesTo Order Parts Before You Call For Service… Troubleshooting TipsWe’ll Cover Any Appliance. Anywhere. Anytime Consumer Product Ownership Registration What GE Will Not Cover GE Electric Cooktop WarrantyGE Will Replace From the dateConsumer Support GE Appliances Website Schedule ServiceParts and Accessories Real Life Design Studio

JP350 specifications

The GE JP350 is a cutting-edge gas turbine designed for power generation applications, specifically tailored to meet the demands of the modern energy landscape. It boasts impressive features, advanced technologies, and robust characteristics that make it a popular choice for utilities and independent power producers worldwide.

One of the standout features of the GE JP350 is its exceptional efficiency. With a thermal efficiency rating exceeding 60%, this gas turbine is engineered to maximize fuel utilization, thereby reducing operational costs and environmental impact. This efficiency is particularly critical in today's energy market, where reducing carbon emissions is a priority for many operators.

In terms of size and capacity, the GE JP350 is designed to deliver a robust output of approximately 350 megawatts. Its compact design allows for easier integration with existing power plants, enabling facilities to expand their capacity without the need for extensive modifications.

The JP350 incorporates advanced aerodynamics and combustion technologies, which contribute to its high performance and low emissions. The turbine features sophisticated airfoils and optimally designed combustion chambers that ensure a stable and efficient combustion process. This design helps achieve ultra-low nitrogen oxide (NOx) emissions, aligning with stringent environmental regulations and fostering sustainable energy generation.

Another notable aspect of the GE JP350 is its modular architecture. This design principle allows for simplified maintenance and reduced downtime. Components can be easily accessed and replaced, minimizing the impact on overall plant operations. This reliability makes the JP350 an attractive option for facilities that require consistent, uninterrupted power supply.

Smart technologies are also integrated into the JP350, enhancing its operational efficiency and reliability. The turbine is equipped with advanced sensors and digital monitoring systems that provide real-time data on performance and diagnostics. This feature enables operators to optimize load management effectively and perform predictive maintenance, thus extending the lifespan of the turbine.

In summary, the GE JP350 gas turbine stands out with its high efficiency, large power output, low emissions performance, modular design, and smart technologies. These characteristics make it a versatile and reliable solution for modern power generation needs, supporting energy transition efforts and contributing to a sustainable energy future.