Online Exhibition

FIREYE, LLC

Booth Number: Hall 2 - 2J42

 

FIREYE, LLC

Booth Number: Hall 2 - 2J42

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Fireye is art of state combustion control manufacture, the product is used in Power and Utility, Petrochemical & Refinery, Process Heating and HVAC. Over 90 Years History, the member of the North America Combustion STANDARDS COMMITTEE, the Inventor of the Optical Flame Scanner. A Spectrum Safety Solution Company
Exhibit Details
PARALLEL POSITIONING CONTROL-NXF4000

PARALLEL POSITIONING CONTROL-NXF4000

The NXF4000 controls are advanced parallel positioning control systems for all types of combustion systems. Integrated the Flame Safeguard, Valve Proving, VFD, PID control. Best-in-class support for four fuel profiles allows these controls to accommodate a large variety of applications. Up to ten servos can be connected in total, with three sizes available: 4Nm (3 ft.-lb.), 20Nm (15 ft.-lb.) and 50Nm (37 ft.lb.).

BURNERPRO

BURNERPRO

The Fireye BurnerPRO is a compact, microprocessor based, primary flame safeguard control system designed to provide the proper burner sequencing, ignition and flame monitoring for on-off, multistage, or modulating burners used in commercial heating and process equipment firing oil and gas fuels. The valve proving feature checks for leakage through the safety shutoff valves prior to burner startup or immediately after a burner shutdown. The Modbus interface provides the ability to write custom timing parameters, as well as reading status information during burner operation.

TURBINE SENSOR

TURBINE SENSOR

The Fireye VFS-2000 Turbine Flame Sensor responds to Ultraviolet optical energy from the flame (200-400 nanometers) and has a loop powered 4-20mA output representing flame brightness from a very low level. It is not sensitive to visible and IR emissions from hot walls. The Fireye design basis is a total separation of the optical sensing device from the turbine without the need for expensive water or pressurized air cooling systems. The Fireye Turbine Sensor is designed to sense flame in extreme high pressure and hot environments such as those found on turbine generators in power generation facilities. Similar challenging environments can be found near steam boilers, waste incinerators, down-fired reformer furnaces, ground flares, rotary kiln systems, ovens and dryers in power generation facilities, oil refineries, petrochemical, ammonia plants, paper and pulp industries.

PARALLEL POSITIONING CONTROL-NXF4000

The NXF4000 controls are advanced parallel positioning control systems for all types of combustion systems. Integrated the Flame Safeguard, Valve Proving, VFD, PID control. Best-in-class support for four fuel profiles allows these controls to accommodate a large variety of applications. Up to ten servos can be connected in total, with three sizes available: 4Nm (3 ft.-lb.), 20Nm (15 ft.-lb.) and 50Nm (37 ft.lb.).

PARALLEL POSITIONING CONTROL-NXF4000

BURNERPRO

The Fireye BurnerPRO is a compact, microprocessor based, primary flame safeguard control system designed to provide the proper burner sequencing, ignition and flame monitoring for on-off, multistage, or modulating burners used in commercial heating and process equipment firing oil and gas fuels. The valve proving feature checks for leakage through the safety shutoff valves prior to burner startup or immediately after a burner shutdown. The Modbus interface provides the ability to write custom timing parameters, as well as reading status information during burner operation.

BURNERPRO

TURBINE SENSOR

The Fireye VFS-2000 Turbine Flame Sensor responds to Ultraviolet optical energy from the flame (200-400 nanometers) and has a loop powered 4-20mA output representing flame brightness from a very low level. It is not sensitive to visible and IR emissions from hot walls. The Fireye design basis is a total separation of the optical sensing device from the turbine without the need for expensive water or pressurized air cooling systems. The Fireye Turbine Sensor is designed to sense flame in extreme high pressure and hot environments such as those found on turbine generators in power generation facilities. Similar challenging environments can be found near steam boilers, waste incinerators, down-fired reformer furnaces, ground flares, rotary kiln systems, ovens and dryers in power generation facilities, oil refineries, petrochemical, ammonia plants, paper and pulp industries.

TURBINE SENSOR
595_217
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