Orion 2xx manual Intrinsic Safety

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An important requirement of Fieldbus devices is the inter- operability concept mentioned earlier. Device Description

(DD)technology is used to achieve this interoperability. The DD provides extended descriptions for each object and provides pertinent information needed by the host system.

DDs are similar to the drivers that your personal computer (PC) uses to operate peripheral devices connected to it. Any Fieldbus host system can operate with a device if it has the proper DD and Common File Format (CFF) for that device.

The most recent DD and CFF files can be found on the FOUNDATION fieldbusweb site at fieldbus.org.

1.4Intrinsic Safety

The H1 physical layer supports Intrinsic Safety (IS) applica- tions with bus-powered devices. To accomplish this, an IS barrier or galvanic isolator is placed between the power supply in the safe area and the device in the hazardous area.

H1 also supports the Fieldbus Intrinsically Safe Concept (FISCO) model which allows more field devices in a network. The FISCO model considers the capacitance and inductance of the wiring to be distributed along its entire length. Therefore, the stored energy during a fault will be less and more devices are permitted on a pair of wires. Instead of the conservative entity model, which only allows about 90 mA of current, the FISCO model allows a maxi- mum of 110 mA for Class II C installations and 240 mA for Class II B installations.

FISCO certifying agencies have limited the maximum segment length to 1000 meters because the FISCO model does not rely on standardized ignition curves.

The Enhanced Jupiter Magnetostrictive transmitter is avail- able with entity IS, FISCO IS, FNICO non-incendive, or explosion proof approvals.

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46-649 Jupiter Magnetostrictive Transmitter - FOUNDATION fieldbus™

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Contents Magnetostrictive Level Transmitter Read this Manual Before Installing Table of Contents Foundation Fieldbus Overview DescriptionDevice Configuration Device Descriptions BenefitsIntrinsic Safety Installation Electrostatic Discharge ESD Handling ProcedureUnpacking Before You Begin Site PreparationEquipment and Tools Operational Considerations Configuration InformationMounting ExternalPosition the Jupiter transmitter on the side of the MLI Internal, Direct InsertionWiring Function Blocks OverviewUniversal Fieldbus Block Parameters Resource Block Jupiter Magnetostrictive Transmitter Foundation fieldbus Jupiter Magnetostrictive Transmitter Foundation fieldbus Password Parameters Transducer BlockTransducer Block Parameters Jupiter Configuration Parameters User Calibration ParametersFactory Parameters Firmware Version Analog Input BlockChannels AI Block ParametersJupiter Magnetostrictive Transmitter Foundation fieldbus Diagnostic Parameters Simulation Feature Troubleshooting TroubleshootingReference Information Status Messages Display Message Action CommentFF Segment Checklist Size Length TypeAgency specifications Atex Intrinsically safe Agency ApprovalsAgency Drawing Agency Drawing Specifications FunctionalPerformance Physical Inches mmReplacement Parts PartsModel Numbers Enhanced Jupiter Magnetostrictive TransmitterNone, defines external mount Direct Insertion Total Level Float Selection Appendix Transducer Block Parameters ReferencesJupiter Magnetostrictive Transmitter Service Policy