Seal the Openings

Seal any openings in the wall behind the range and in the floor under the range when hookups are completed.

Assemble Surface Burners

Assemble burner as shown.

Place burner heads over the electrodes on the

 

cooktop, in the correct locations according to

 

their size.

 

 

Medium head

Small head

Grate

Front of range

Burner cap

Large head

Extra large head

Safety Instructions Operating Instructions

Burner head

Electrode

Cooktop

CAUTION: Do not operate the cooktop without all burner parts and grates in place.

Make sure the slot in the burner head is positioned over the electrode.

Place the matching size caps onto the heads.

Medium cap

 

 

 

 

 

 

 

 

 

 

 

Small cap

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Installation Instructions Troubleshooting

Front of range

Large cap

Extra large cap

Make sure that the heads and caps are placed in the correct locations.

Tips

Check Ignition of Surface Burners

Operation of all cooktop burners should be checked after the range and gas supply lines have been carefully checked for leaks.

Electric Ignition

Select a top burner knob and simultaneously push in and turn to LITE position. You will hear a clicking sound indicating proper operation of the spark module. Once the air has been purged from the supply lines, burners should light within 4 seconds. After burner lights, rotate knob out of the LITE position. Try each burner in succession

until all burners have been checked.

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Customer Service

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Image 49
GE J2B915 Seal the Openings, Assemble Surface Burners, Check Ignition of Surface Burners, Electric Ignition

J2B915 specifications

The GE J2B915 is an advanced gas turbine engine that represents a significant milestone in aerospace technology, primarily designed for use in regional and business aircraft. Engineered by General Electric, the J2B915 combines innovative design features with state-of-the-art technologies to provide high performance, reliability, and efficiency.

At the heart of the J2B915 is its powerful core, which is designed to operate at high temperatures and pressures. This capability allows the engine to deliver substantial thrust while maintaining a relatively low fuel consumption rate. The engine achieves this efficiency through its advanced compressor and turbine design. The axial-flow compressor, known for its ability to compress air efficiently, contributes to the overall performance of the engine, while the high-pressure turbine extracts energy effectively to drive the compressor.

One of the standout features of the J2B915 is its noise reduction technology. In an era where environmental regulations are becoming increasingly stringent, the engine's design incorporates features aimed at minimizing noise footprint during operation. This is achieved through the use of advanced acoustic materials and innovative turbine blade designs, which work together to reduce noise levels while ensuring optimal performance.

Another key characteristic of the J2B915 is its modular design, which enhances maintainability and serviceability. This modularity allows for easier access to engine components, simplifying routine inspections and repairs. The design philosophy also translates to a reduction in downtime, which is critical for commercial operators seeking to maximize aircraft availability.

The GE J2B915 also boasts impressive durability and reliability. Engineered with advanced materials and coatings, it is capable of withstanding the rigors of continuous operation in various environments. The engine’s reliability is bolstered by GE’s rigorous testing protocols and quality assurance processes, ensuring that it meets the high standards expected by operators worldwide.

In terms of controls and monitoring, the J2B915 utilizes an advanced digital engine control system. This system monitors various performance parameters in real-time, allowing for precise management of engine functions and enhancing operational efficiency. The digital technology also supports predictive maintenance, alerting operators to potential issues before they escalate into more significant problems.

In conclusion, the GE J2B915 gas turbine engine embodies a blend of cutting-edge technologies, robust design, and a commitment to performance. Its high efficiency, low noise output, and reliable operation make it a preferred choice for regional and business aviation markets, cementing its reputation in the competitive landscape of aerospace propulsion systems.