Teledyne 9060Z manual Heater Interlock Relays, Connecting AN Oxygen Probe Cable

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Model 9060Z Manual

The mains power must be either 100/110VAC or 220/240VAC with a mains frequency of 50 or 60Hz

The supply circuit must be fused to at least 10Amps and have a dual pole isolation switch within easy access of the oxygen transmitter. The isolation switch must be marked as the isolation switch for this equipment. It is recommended that a separate isolation switch be used for each transmitter so that a transmitter can be serviced individually.

The power supply cables must be supplied and installed according to local regulations

The earth connection must comply with the local regulations must have a current carrying capability

equal or greater than the supply fuse current rating

The earth connection must be connected to the primary earth stud inside the transmitter on the right hand side

All other bonded earth connections from the external wiring must be connected to the primary earth stud.

All operations relating the electrical wiring and installation must be carried out by qualified persons in accordance with the safety regulations and the wiring rules.

NOTE: The power switch in the transmitter can be used to turn off the transmitter. There must be an approved isolation device installed to provide complete isolation of the mains power to the transmitter. The mains wiring terminal must not be used as an disconnect device.

4.6 HEATER INTERLOCK RELAYS

CAUTION

Explosion protection for heated probes is achieved by switching the power to the probe heater off whenever the main fuel valve is closed.

The principle of safety is that if the main fuel valve is open then main flame has been established. With this primary source of ignition on, the probe heater can be safely switched on. The most dangerous situation is if fuel leaks into the combustion appliance when the fuel valve is closed. When power is removed from the main fuel valve the heater should also be switched off.

To achieve this protection, connect a main fuel valve voltage free contact to the ‘BURNER INPUT’ terminals 10 & 11. When the main fuel valve is open, the voltage free contact should be closed. For installations where there is no risk of explosion, connect a link between terminals number 10 & 11.

Heater Supply Interlock Connection for Heated Probes

If a safety interlock is not required, a wire must be connected between terminals 10 &11 to enable –

The heaters on heated probes

Process alarms

Auto‐purge and auto‐cal checking

Run time timer

4.7CONNECTING AN OXYGEN PROBE CABLE

Connect the probe lead as shown in the following drawings. Unheated probe leads have integral reference air tube. An adaptor has been supplied to connect this tube to quarter inch flexible PVC tubing, from the air pump or reference air supply.

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Contents Teledyne Analytical Instruments Model 9060Z Manual Keypad Forcing a Cold Start Resetting the Calibration Factors PurgeEmail asktai@teledyne.com Important Notice Regarding 9060 Probe Option ‐ FIL‐3 Important Notices Series 9060H Oxygen Probes & Sensors Introduction9060Z Transmitter Model 9060Z Manual Temperature accuracy Output load Alarm relaysAlarm relay contacts PowerTemperature Range Head TemperatureConnection Weight 9060H 9060UL/UH ApplicationHeated probes‐temperature range 0‐900C 1650F Model 9060Z Manual Function Minimum Maximum Range of outputsMounting the Transmitter Installation and CommissioningInstalling a 9060H Oxygen Probe Oxygen Probe Mounting Installing the Auxiliary Thermocouple 4A Shield Connections4B Earth Connection PE Electrical ConnectionsModel 9060Z Manual Model 9060Z Manual Heater Supply Interlock Connection for Heated Probes Connecting AN Oxygen Probe CableHeater Interlock Relays Model 9060Z Manual Connecting the Auxiliary Thermocouple Optional Connecting the Output ChannelsConnecting the Alarms Connecting the Automatic Purge and Calibration Check SystemConnecting Reference AIR Connecting the Transmitter to a Modbus NetworkOnnecting Power Commissioning ‐ RUN ModeProbe or Sensor Calibration For more details see AppendixDust in the Flue GAS Filter PurgingCalibration GAS Check Connecting a Pressure Transducer StratificationDisplay and Keypad Graphical DisplayKeypad in RUN mode Key text RUN mode White text Setup mode Black textOxygen Display Units KeypadKeypad in Setup / Commissioning / Calibration modes Function up and Function down keys Option up and Option down keysEnter key Probe impedance keySetup Mode Function Summary TableChanging Options Function name RangeLower Line Items Setup Mode FunctionsProbe 1 Offset Damping Factor Process AlarmsOxygen Display Units Commissioning Mode Model 9060Z Manual Commissioning Mode Functions Model 9060Z Manual Temperature Units Flue Pressure Units and ValueCalibration Freezes Outputs Solenoid 1 & 2 OperationOxygen Content Calibration Gas 1 Maximum Calibration Gas 1 & 2 Positive / Negative ErrorAlarm Relay 1, 2 and 3 Function Common Alarm Relay FunctionOperation of the Alarm Relays when an Alarm is Accepted Selecting the Correct FuelReference Air Pump Options Function OptionsAlarm Log Clearing Communications Port OptionsCalibration Mode Menu Function name RangeCalibration Mode Functions Reference VoltagesHeater SSR Fault Correction Alarms Common AlarmsModel 9060Z Manual Selectable Process Alarms Alarm Relay Options Instrument Calibration Calibration SummaryProbe Calibration Cold StartFunction # Function Description Options GAS Calibration Check and PurgeCalibration GAS Software Upgrades First Approach TroubleshootingDetailed Fault Analysis Maintenance Transmitter MaintenanceCleaning Replacement PartsIndex Auxiliary ThermocoupleTroubleshooting Is the H/C atom ratio in the fuel Is the O/C atom ratio in the fuelIs the N/C atom ratio in the fuel Is the S/C atom ratio in the fuelAppendix 2, Probe EMF Tables Zirconia Oxygen Sensor Output mV Probe Type 9060H, SensorProbe EMF Probe EMF @ 720C 1320FZirconia Oxygen Probe Output mV Probe Type 9060UL/UH 13.1 20.726.2 33.8Serial Configuration Modbus ProtocolModel 9060Z Manual Model 9060Z Manual Model 9060Z Manual Model 9060Z Manual Model 9060Z Manual 0x41 Special Instruction Function 0x020x03 0x04