Installation Instructions

3ELECTRICAL CONNECTIONS (CONT.)

B.Usage Situations where Appliance Power Cord will be Disconnected Frequently.

Do not use an adapter plug in these situations because disconnecting of the power cord places undue strain on the adapter and leads to eventual failure of the adapter ground terminal. The customer should have the 2-prong wall receptacle replaced with a three-prong (grounding) receptacle by a qualified electrician before using the appliance.

The installation of appliances designed for mobile home installation must conform with the Manufactured Home Construction and Safety Standard, Title 24 CFR, Part 3280 (formerly the Federal Standard for Mobile Home Construction and Safety, Title 24, HUD, Part 280) or, when such standard is not applicable, the Standard for Manufactured Home Installations, latest edition (Manufactured Home Sites, Communities and Set-Ups), ANSI A225.1, latest edition, or with local codes. In Canada, mobile home installation must be in accordance with the current CAN/CSA Z240/MH Mobile Home Installation Code.

Electric Disconnect

Locate disconnect plug on the range back.

Pinch sides of connector and pull out of range back.

5CHECK IGNITION OF SURFACE BURNERS

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

Electric Ignition Models

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.

Quality of Flames

The combustion quality of burner flames needs to be determined visually.

(A) Yellow flames—

Call for service

(B) Yellow tips on outer cones— Normal for LP gas

(C) Soft blue flames—Normal for natural gas

If burner flames look like (A), call for service. Normal burner flames should look like (B) or (C), depending on the type of gas you use.

With LP gas, some yellow tipping on outer cones is normal.

4SEAL THE OPENINGS

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

6CHECK IGNITION OF OVEN BURNER

The oven is designed to operate quietly and automatically. To operate the oven, press the BAKE pad and then press the number pads until 350° appears in the display. Touch the START/ON pad. After 30–90 seconds, the oven burner will ignite and burn until the set temperature is reached. The oven burner will continue to cycle on and off as necessary to maintain the oven at the temperature indicated by the display.

To check ignition of the broil burner, touch the BROIL HI/LO pad and then the START/ON pad. After 30–90 seconds, the broil burner will ignite.

Electric ignition models require electrical power to operate. In case of a power outage, the oven burners on these models cannot be lit manually with a match. Gas will not flow unless the glow bar is hot.

If the oven is in use when a power outage occurs, the burner will shut off and cannot be re-lit until power is restored.

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GE EGR3000 installation instructions Check Ignition of Surface Burners, Seal the Openings, Check Ignition of Oven Burner

EGR3000 specifications

The GE EGR3000 is a cutting-edge gas turbine engine designed to meet the demands of modern power generation and transportation applications. This innovative engine showcases a range of advanced features and technologies that enhance its performance, efficiency, and reliability.

One of the key characteristics of the EGR3000 is its exceptional efficiency. The engine employs an advanced thermodynamic cycle, which incorporates a high compression ratio and an innovative cooling design. This efficiency is particularly important in reducing fuel consumption and emissions, making it an environmentally friendly option compared to traditional gas turbines. The EGR3000 boasts a thermal efficiency rating that places it among the highest in its class.

The EGR3000 utilizes a dual-fuel capability, allowing it to operate on a variety of fuels. This flexibility is crucial for operators looking to optimize their fuel use based on availability and cost, adding to the engine's versatility. Additionally, the engine is designed to accommodate both natural gas and liquid fuels, thereby enhancing its operational range.

Another notable feature is the engine's advanced modular design. This allows for easier maintenance and quicker turnaround times, minimizing downtime and operational costs for power plants and industrial facilities. The modular components can be replaced or serviced individually, which simplifies maintenance procedures and enhances overall reliability.

In terms of technology, the EGR3000 incorporates sophisticated materials and coatings that improve thermal resistance and durability. High-performance blades and combustion chambers are designed to withstand extreme temperatures, resulting in longer service life and reduced maintenance frequency. The engine also employs digital control systems that optimize performance parameters in real-time, ensuring peak efficiency under varying load conditions.

Emissions control is a critical aspect of the EGR3000's design. It features advanced combustion technology that minimizes NOx and CO2 emissions, aligning with stringent environmental regulations. The engine's design enables it to operate with lean-burn technology, further supporting reduced environmental impact.

Overall, the GE EGR3000 stands out as a powerful and efficient gas turbine solution. Its combination of high efficiency, fuel flexibility, modular design, and advanced emission control technologies makes it an ideal choice for various applications, including power generation and industrial processes. As energy demands continue to evolve, the EGR3000 positions itself as a reliable and forward-thinking solution for today’s energy landscape.