GE JP939, JP969 owner manual Cleaning the glass cooktop, Tips Consumer Support

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Cleaning the glass cooktop.

www.GEAppliances.com

Control Lock Pad

CONTROL

LOCKBegin by locking the cooktop; see the Locking the Cooktop section. Use the same cleaning methods as those described for the glass-ceramic top.

Normal Daily Use Cleaning

Safety Instructions

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

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.

Operating Instructions Care

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.

and Cleaning Troubleshooting

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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Tips Consumer Support

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Contents Write the model and serial numbers here Model # Serial #Consumer Safety PrecautionsSafety Instructions Radiant Surface Units Feature Index Features and appearances may vary Features of your cooktopExplained on Safety Instructions Using the surface unitsRadiant Surface Units Single Surface UnitCare and Cleaning SafetyCooking Guide for Using Heat Settings Fault CodeInstructions Food Type Control SettingWarmer Surface Unit Using the Pan Detection Feature How to Lock the CooktopUsing Pan Sizing SafetySelecting types of cookware Tips Care and CleaningObserve the Following Points in Canning Using a pressure canner,How to Remove Packaging Tape Care and cleaning of the cooktopTips Consumer Support Cleaning the glass cooktopMetal Marks and Scratches Instructions SafetyDamage from Sugary Spills and Melted Plastic To Order PartsProblem Possible Causes What To Do Before You Call For Service… We’ll Cover Any Appliance. Anywhere. Anytime Consumer Product Ownership Registration Troubleshooting Tips Consumer Support GE Electric Cooktop WarrantyGE Will Replace What GE Will Not CoverParts and Accessories Consumer Support GE Appliances Website Schedule ServiceReal Life Design Studio Extended WarrantiesEscriba el modelo y número de serie aquí Modelo # Serie # Cubierta para cocinar¡ADVERTENCIA Instrucciones seguridad Conserve Estas Instrucciones Una para cada unidad de la superficie Funciones de su cubiertaDeparaaveríasla Cuidado y limpieza Cómo usar las unidades de la superficieSoporte al Sobre las unidades radiantes de la superficieSoporte al consumidor Código de errorUnidad sencilla de la superficie Consejos para la solución de averíasUnidad entibiador de la superficie Instrucciones seguridadTipo de alimento El reloj de la cocina Cómo bloquear la cubiertaPara desactivar el bloqueo Tipos de batería de cocinaCuidado y limpieza Cómo seleccionar la batería de cocina¡Correcto ¡Incorrecto Observe los siguientes puntos al preparar conservasCómo retirar la cinta de empaque Cuidado y limpieza de la cubiertaLa Soporte al consumidor Cómo limpiar la cubierta de vidrioMarcas metálicas y rayas Superficie de vidrio-posibilidad de daño permanenteDaños de derramamientos de dulce y plástico derretido Para solicitar repuestosAntes de llamar a solicitar servicio Problema Posible Causa Qué HacerCaliente La cubierta se sienteLa función de Detección/tamañoInstrucciones de Operación NotasConsejos para la Cuidado y limpieza Instrucciones de Operación GE repondrá Garantía de la cubierta para cocinar eléctrica de GEQué no cubrirá GE Garante General Electric Company. Louisville, KYSolicite una reparación Soporte al Consumidor Página Web de GE AppliancesGarantías ampliadas Piezas y accesorios

JP939, JP969 specifications

The GE JP969 and JP939 are advanced jet engine variants designed to power the next generation of regional and narrow-body aircraft. With a commitment to enhanced efficiency, reliability, and performance, these engines incorporate cutting-edge technologies that significantly improve the overall flying experience while meeting stringent environmental regulations.

One of the defining features of the JP969 and JP939 is their high bypass ratio, which not only optimizes fuel efficiency but also minimizes noise pollution. By maximizing the amount of air that flows around the engine core, these engines achieve a perfect balance between thrust and environmental sustainability. This characteristic is essential for modern aviation as airlines seek to reduce their carbon footprints while maintaining operational efficiency.

Incorporating advanced materials technology, both the JP969 and JP939 benefit from lightweight composite fan blades and advanced alloys that can withstand extreme temperatures. This not only enhances the engines' durability but also contributes to their ability to maintain performance at high altitudes and during diverse operating conditions.

The engine control systems of the JP969 and JP939 are equipped with sophisticated digital engine control technology, enabling real-time monitoring and adjustments to optimize performance. This system enhances the operational flexibility of the engines, allowing them to adapt to varying flight profiles without compromising on efficiency or reliability.

Another key characteristic of these engines is their maintenance-friendly design. With an emphasis on reducing downtime, the JP969 and JP939 allow for easier access to critical components, thereby streamlining maintenance procedures. This feature is crucial for airlines aiming to maximize fleet availability and reduce operational costs.

Moreover, both engines incorporate state-of-the-art aerodynamics, with intricately designed fan blades and internal airflow paths that reduce drag and enhance overall performance. The thoughtful engineering behind these designs not only improves thrust but also contributes to reduced fuel consumption, making the JP969 and JP939 highly appealing for modern operators.

In conclusion, the GE JP969 and JP939 embody an impressive blend of efficiency, reliability, and advanced technology. Their high bypass ratio, innovative materials, sophisticated control systems, maintenance-friendly design, and aerodynamically optimized structures make them ideal choices for airlines looking to enhance their fleet's performance while adhering to environmental and operational standards. As aviation continues to evolve, these engines represent a significant leap forward in the pursuit of sustainable and efficient air travel.