Eclipse Combustion 5600 instruction manual Power on, Veri-Flame Operating Sequence

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Table 9.1 Veri-Flame Operating Sequence

POWER ON

NORMAL MESSAGE

REMOTE DISPLAY REVISION X.X

Was internal safe start check successful?

 

YES

 

NO

 

 

Various lockout messages

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

EXTERNAL INTERLOCK CHECKS

Is flame signal present?

ERROR MESSAGE #1

UNSAFE FLAME ON

Fan is energized. If signal is elimi- nated within 30 seconds, se- quence continues. If not, then . .

ERROR MESSAGE #2 – 30 SECONDS AFTER #1

UNSAFE FLAME ON XX:XX:XX LOCKOUT

Alarm energized.

YES

FOR PURGE & MODULATING

ERROR MESSAGE #1

UNSAFE AIR SHORT

If switch is opened within 30 seconds, sequence continues. If not, then . . .

ERROR MESSAGE #2 – 30 SECONDS AFTER #1

UNSAFE AIR SHORT

XX:XX:XX LOCKOUT

Alarm energized.

NORMAL MESSAGE

SAFE START OK

Check_Sum = XX

NORMAL MESSAGE

FAN ENERGIZED

Fan output is energized; modu- lator is sent to low fire.

 

NO

 

 

 

 

Is main valve closed switch made?*

 

 

 

 

 

 

 

 

 

 

 

Is voltage present at air flow switch?

 

 

 

YES

 

NO

 

 

 

YES

NO

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

ERROR MESSAGE

 

 

 

 

 

 

 

 

 

MAINVALVE FAIL

XX:XX:XX LOCKOUT

Is voltage present at interlock switch?

 

YES

 

NO

 

 

 

 

ERROR MESSAGE

LIMITS OPEN

TIME = XXXX:XX:XX

Holds until answer is yes.

BURNER START-UP

(see next page)

* Applies to purge and no purge models only.

Eclipse Veri-Flame Instruction Manual 818 -2/02

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Contents VeriFlame Single Burner Monitoring System Copyright Disclaimer Notice Liability Warranty About this manual Audience Scope Document ConventionsHOW to GET Help Table of Contents Page LED Status & Conditions for No Purge Models Table Introduction Product DescriptionSpecifications SpecificationsIntroduction Veri-Flame Unit/All Models DimensionsVeri-Flame Bases/Purge & No Purge Models Remote Display Model Number 5602-DB Veri-Flame/Modulating Model with Base Model NumberRemote Display Model Number 5602-DBP DIP Switch Selection Modulation & Purge DIP Switch SettingsDIP Switch Location Main Fuel Valve Closed Switch Terminal Interlocks and Limit Switch Input Terminal Combustion AirIntroduction Standard Features Function SummaryTest Mode Run Mode Seconds Optional Features Status Lights PUSH-BUTTONSystem Installation Ignition Wiring Low Fire Input High Purge Input Remote Reset Remote Display & Power SupplyNo Purge and Purge Wiring Diagrams No Purge Models Typical Connections For All Models Purge and No Purge Bases Modulating BaseSequence Diagrams InputsSensor Installation Sensor Wiring Flame RodsScanners Scanner Sighting Considerations Flame Rod PositionTest Procedures Flame Signal Strength Minimum Pilot TestPilot Flame Failure Test Main Flame FailureTest Spark Sighting Test Limits & Interlock TestsMonthly Checklist Yearly Checklist Maintenance &TroubleshootingIntroduction Maintenance Troubleshooting Problem Possible Cause SolutionLED Status LED Status & Conditions forVeri-Flame Purge Models AIR FailureLED Status & Conditions forVeri-Flame Modulation Models Auto Interlocks ClosedRemote Display Messages Power on Veri-Flame Operating SequenceYES no YES Burner Shutdown AIR Failure Remote Display Diagnostic Messages Xxxxxx Lockout Pilot onInternal Fault Metric to English AppendixConversion Factors Metric to MetricIllustrated Parts List Pos Model Part Category Description Number

5600, VeriFlame Single Burner Monitoring System specifications

The Eclipse Combustion VeriFlame Single Burner Monitoring System, model 5600, represents a significant advancement in the field of combustion management technology. Designed to provide enhanced monitoring and control of burner operations, the VeriFlame system is equipped with state-of-the-art features that ensure optimal efficiency, safety, and performance in a variety of industrial applications.

One of the main features of the VeriFlame 5600 is its advanced flame detection technology, which employs efficient optical sensors to monitor flame presence and stability continuously. This feature enables the system to provide real-time feedback, ensuring that burners operate within specified parameters and respond swiftly to any fluctuations. The system’s intelligent analytics can easily discern between normal operational conditions and potential hazards, enhancing safety and reducing the risk of unsafe operation.

The VeriFlame system is also known for its versatile communication capabilities, featuring multiple connectivity options. The unit can integrate seamlessly with existing plant control systems using industry-standard protocols such as Modbus or Profibus. This interoperability allows for comprehensive data sharing and centralized control of multiple burner systems from a single interface, streamlining operations and improving operator efficiency.

Another notable characteristic of the Eclipse Combustion VeriFlame is its user-friendly interface. The system comes with an intuitive graphical display that provides operators with critical operational data, including flame quality, burner status, and diagnostic information. This straightforward interface facilitates quick decision-making and troubleshooting, minimizing downtime and enhancing the overall operational efficiency of the burner system.

The 5600 model also offers robust diagnostic capabilities, allowing for proactive maintenance and reduced unexpected failures. It features built-in self-check routines and historical data logging, which provide valuable insights into system performance over time. These diagnostic tools empower operators to identify and address potential issues before they escalate, thereby reducing maintenance costs and enhancing the longevity of the burner components.

Moreover, the VeriFlame system is designed with flexibility in mind, accommodating various burner types and fuel sources. This adaptability makes it suitable for use in a wide range of industries, including oil and gas, power generation, and manufacturing.

In conclusion, the Eclipse Combustion VeriFlame Single Burner Monitoring System 5600 stands out due to its advanced flame detection, versatile communication options, user-friendly interface, robust diagnostics, and flexibility. Together, these features make it an essential tool for optimizing combustion processes, enhancing safety, and improving overall operational efficiency in industrial environments.