Teledyne NALL instruction manual Maintenance, Transducers Cleaning, Damage to the Transducer

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10.0Maintenance

10.1Transducers:

10.1.1 Cleaning

With proper care in installing and use, the transducer will require little or no maintenance. Should the small passages in the transducer become partially clogged, they can be cleaned with any suitable solvent such as acetone, vythene, etc. and/or blown out with clean air under moderate pressure (up to 50 psig).

NOTE: If solvents are used for cleaning the transducer, sporadic indications may occur when it is returned to service due to residual moisture in the passages of the transducer. Time should be allowed for the liquid solvent to evaporate.

10.1.2 Damage to the Transducer

The transducer can be checked for internal electrical damage by disconnecting the cable and using an ohm- meter to measure resistances at the 6-pin connector. Internal repairs to the transducer are not recommended and should only be done at the factory. Attempting to remove the transducer cover or the nut on the connector may result in irreparable damage to the transducer. The table below is for determining whether or not some damage has occurred and IS NOT to be used as a guide for repairs.

10.2Power Supply:

NALL and NALL-P power supplies are very stable and should require little or no maintenance. An occasional check of the electrical zero is recommended but drift will be small under normal operating conditions.

10.2.1 Power Supply Troubleshooting

If a problem does occur, the transducer heating voltage and the transducer output can be checked (refer to Figure 9.1). To check the heating voltage, the flowmeter must be connected to the transducer and a true R.M.S. voltmeter must be used. With the TRMS voltmeter connected between test points D and A (TRMS AC test), the voltage should be 16.00 TRMS VAC +/- 0.1 VAC (and can be adjusted by the BIAS pot, R6). The transducer output is measured between test points BC and E (millivolt test) using a DC millivolt meter. This output will vary as flow through the transducer varies. At full scale flow for the transducer, the millivolt meter should read between 0.75 and 7 millivolts DC, depending on the individual transducer. This signal is amplified to produce the flowmeter output.

If it is necessary to return the flowmeter for repair, please return the transducer, power supply, and cable to Teledyne Hastings-Raydist with a detailed explanation of the problem. Use the Service Repair form on page 35. This will help to ensure prompt, reliable service.

Manual 111-082010_Nall Mass Flowmeters

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Contents Teledyne Hastings Manual Print History Table of Contents 12.0 Features General InformationOperating Principle Operating PrincipleReceiving and Inspection Installation Instructions TransducerCables Power SupplyFilters Electrical Zero Check Using the Flowmeter Gas Mixtures Output SignalFlowmeter Factory Calibrated for a Special Gas Over-range AccuracyRepeatability Pressure Effects Standard TransducersLow Pressure Drop Transducers High Pressure Transducers OptionalTemperature Effects Ambient Temperatures TransducerPower Supply Gas TemperatureDifferential Pressure Typical Pressure DropsChanges in DP with Changes in Line Pressure Increase in Line PressureDecrease in Line Pressure DP Increase Due to Fouling of the TransducerCalibration Procedures CalibrationTransducer Maintenance Transducers CleaningPower Supply Troubleshooting Damage to the TransducerAccessories Options and AccessoriesDouble Point Relay Flowmeter/Alarm DNALL-P Totalizers TNALL-P DescriptionsCurrent Converter NAll-P/CC MaintenanceChassis Model NALL-C Non-Warranty Repair Policy Warranty and RepairWarranty Repair Policy