Datasheet Content
[{"filename":"ZB110-SPEC-BurnerLogiX_Z_Specifications_English_2007-08-01.pdf","text":"FLAME SAFEGUARD ZB110-SPEC\n August 1, 2007\n\nPRODUCT GUIDE\nSPECIFICATION\n\n\n\n FIREYE BurnerLogix\n FLAME SAFEGUARD\n BURNER MANAGEMENT\n with INTEGRATED\n BOILER CONTROL\n1. GENERAL 1.3 FLAME SAFEGUARD CONTROL\n1.1 OVERVIEW The burner management control system shall include\n Each burner shall be equipped with a micro- flame safeguard functions to provide: (1) automatic\n processor based burner management flame safeguard sequencing of the boiler system through pre-purge,\n control with integrated boiler control functions. pilot trial for ignition (PTFI), main trial for ignition\n (MTFI), run (AUTO), and post purge. (2) flame\n1.1.1 The control system shall be provided by Fireye, Inc. or proving and lockout on flame failure during PTFI,\n written approved equal. MTFI, and run.\n\n1.2 BOILER CONTROL 1.4 CODES AND STANDARDS\n The control shall utilize signal inputs from solid state The control shall be listed by Underwriters\n sensors as inputs for boiler steam pressure or boiler Laboratories in accordance with US and Canadian\n water temperature for on/off control, modulation with standards and Factory Mutual for its intended\n PID control, and high and low alarm limits of the purposes.\n appropriate pressure and temperature sensors.\n2. SYSTEM HARDWARE\n2.1 FLAME SAFEGUARD WITH INTEGRATED where the characteristics of the pilot and main flames\n BOILER CONTROL are separately learned in order to set the on/off\n Major functions of the boiler management system shall thresholds and optimizing safety.\n have the following capabilities to provide:\n 2.1.4 Flame proving and lockout on flame failure during\n2.1.1 User selectable burner operating parameters such as PTFI, MTFI and run.\n purge time, PTFI & MTFI time, post purge time, and\n specific operation of the various interlocks. 2.1.5 The control shall provide a check-run switch to allow a\n qualified service technician to halt the burner sequence\n2.1.1.1 All burner operating parameters become permanent in any of five different positions:\n after 8 hours of burner on time. High fire purge\n Low fire purge\n2.1.2 User configurable boiler parameters such as setpoint, Pilot trial for ignition\n thermal shock, standby water, LAG1 and LAG2. Main trial for ignition\n Low fire (burner on)\n2.1.2.1 Boiler operating parameters are password protected.\n 2.1.6 Full modulating control of fuel and combustion air that\n2.1.3 An adaptive Infrared flame scanning detection system are mechanically linked.\n\n\n 1\n\f Power Consumption: 20 VA maximum\n2.1.7 Modulation of the firing rate motor to meet system 2000 VA maximum connected load\n demand using Proportional, Integral and Derivative 0.5G continuous vibration\n control.\n 2.1.19 The control shall have the following storage\n2.1.8 Two (2) inputs to provide the following user selectable temperature limits:\n functions: Temperature: -40qF to 158qF (-40qC to 70qC)\n Select Lead/Lag1 operation. Humidity: 0% to 85% Non-condensing\n Select Lead/Lag2 operation.\n Revert to pilot operation. 2.2 WIRING BASE\n Halt the sequence in pilot only mode.\n A pre-wired or terminal block wiring base shall be\n Low fire only operation.\n provided which will allow for all system terminations\n Forced on operation.\n to be completely wired prior to the installation of the\n These inputs shall be line voltage powered.\n control. The control shall be removable or replaceable\n without removing any wiring terminations.\n2.1.9 Line voltage terminal inputs for lockout, pre-ignition,\n recycle limits and interlocks.\n 2.3 KEYPAD/DISPLAY MODULE\n2.1.10 Three (3) analog inputs user configurable to monitor: A plug-in module shall be provided to program and/or\n Steam Pressure review all system setpoints as well as all system\n Boiler water Temperature operating parameters (eg: values of the analog and\n Stack Temperature digital inputs and outputs).\n Outdoor Temperature\n 2.3.1 The module shall consist of a two (2) line with sixteen\n The input control signal shall be 4-20 mA.\n (16) characters per line liquid crystal (LCD) or vacuum\n fluorescent (VFD) display and multi-functional 4-key,\n2.1.11 One (1) proportional analog output for modulation\n positive action keypad.\n control of firing rate damper motor.\n The proportional output shall be 4-20 ma. 2.3.2 Descriptive mnemonic codes shall be provided for all\n system setpoints and operating parameters.\n2.1.12 Alpha-numeric multi-line LCD or VFD display to\n 2.3.3 The LCD keypad/display module shall operate within\n continually indicate operating parameters as well as\n the following temperature limits: -4qF to 140qF (-20qC\n first out annunciation.\n to 60qC).\n2.1.13 Status light emitting diodes (LED’s) to provide 2.3.4 The VFD keypad/display module shall operate within\n operating status as well as lockout code the following temperature limits: -40qF to 140qF (-40C\n identification. to 60qC).\n 2.3.5 The keypad/display module shall have the capability to\n2.1.14 Thermal stress delayed release to modulation.\n be remotely mounted to a distance of 8 feet (2.43\n meters).\n2.1.15 Damper motor high and low fire damper motor\n position proving. 2.3.6 When remotely mounted, both the LCD and VFD\n display modules shall provide NEMA 4 protection.\n2.1.16 Non-volatile lockout and history files with the last 10\n lockouts readable through the optional display. 2.4 PRESSURE SENSORS\n All pressure sensors shall be factory calibrated to\n2.1.17 Field replaceable 10 amp fuse in the valve and provide accurate pressure control over the entire\n ignition circuit for short circuit protection. pressure range of the sensor. No field calibration or\n adjustment is required.\n2.1.18 The control system shall operate within the following\n limits:\n 2.4.1 All pressure sensors shall provide a 4-20 mA output\n Temperature: -40qF to 140qF (-40qC to 60qC)\n signal over the full range.\n Humidity: 0% to 85% Non-condensing\n Voltage: 120 VAC (+10%, -15%) 50/60 Hz\n 2.4.2 The following pressure ranges shall be available:\n\n\n\n 2\n\f 0 to 15 PSI exit point is user defined.\n 0 to 30 PSI\n 0 to 200 PSI 3.2.1.3 Segment method shall go from low fire to high fire in\n 0 to 300 PSI 16 separate segments, increasing to the next segment\n based on increasing steam pressure (or water\n2.5 TEMPERATURE SENSORS temperature) values, or a user defined timed override\n All temperature sensors shall be factory calibrated to (1-60 minutes).\n provide accurate temperature control over the entire\n temperature range of the sensor. No field calibration or 3.2.1.4 Segment method shall provide user defined start point\n adjustment is required. and exit point.\n\n2.5.1 All temperature sensors shall provide a 4-20 mA 3.2.2 The user shall be able to define the maximum firing\n output signal over the…