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Rosemount - Model 3051S -MultiVariable Transmitter
The Rosemount 3051S MultiVariable Transmitter is a best-in-class solution customized to obtain measurement combinations of differential pressure, static pressure and process temperature. This multivariable transmitter is a cost-effective device that reduces pipe penetrations, impulse piping and connection systems. This device is also engineered with built-in flow calculations for fully compensated mass flow measurements.
Measurement Type
- Differential Pressure, Static Pressure, Process Temperature
- Differential Pressure and Static Pressure
- Differential Pressure and Process Temperature
- Differential Pressure
- Static Pressure and Temperature
Accuracy
Up to ±0.04% of span or ±0.04% of reading
Stability
Up to ±0.20% of Upper Range Limit (URL) for 15 years
Warranty
Up to 15-year limited warranty
Rangedown
Up to 200:1
Communication Protocol
4-20 mA HART®, WirelessHART®, FOUNDATION™ Fieldbus
Measurement Range
Up to 2000 psi (137,89 bar) differential, Up to 3626 psi (250,00 bar) static
Process Wetted Material
316L SST, Alloy C-276, Tantalum, Gold-plated 316L SST
Diagnostics
Basic Diagnostics
Certifications/Approvals
NSF, NACE®, hazardous location, see full specs for complete list of certifications
- Measures multiple variables and standardizes on a single model number for streamline process and cost-efficiency
- Reduces costs by eliminating the need for stacked transmitters and additional wiring
- Primary elements available as assemble-to options for simple installation and commissioning
- Multivariable design reduces pipe penetrations, impulse piping and connection systems for cost-savings
- Callendar-Van Dusen sensor matching improves temperature accuracy enabling best-in-class flow calculations
- All-welded, SuperModule™ design offers industry-leading accuracy in harsh environments and applications
- Engineering Assistant Software allows for configuration in two easy steps
- Ultra for Flow provides optimized flow readings with a ±0.04% of reading accuracy
- Designed with built-in flow calculations for direct reporting of fully-compensated mass, energy or volumentric flow
