Emerson Process Management 3051N manual Overpressure Effect Static Pressure Effect

Page 54

Rosemount 3051N

Reference Manual

00809-0100-4808, Rev CA June 2008

Overpressure Effect

Static Pressure Effect

Maximum zero shift after overpressure equal to Maximum Working Pressure

Rosemount 3051ND

Range Code

Overpressure Effect

 

 

 

 

 

0

– 3

± 0.5% URL

 

 

 

 

 

4

– 5

± 3.0% URL

 

 

 

 

Rosemount 3051NG

 

 

 

 

Range Code

Overpressure Effect

 

 

 

 

 

2

– 4

± 0.25% URL

 

 

 

 

 

 

5

± 0.30% URL

 

 

 

 

Rosemount 3051NA

 

 

 

 

Range Code

Overpressure Effect

 

 

 

 

 

0

– 4

± 0.05% URL

 

 

 

 

 

Rosemount 3051ND

Zero Error (can be calibrated out at line pressure) Per 1000 psi (6,9 MPa) line pressure

Range Code

Static Pressure Zero Effect(1)

0(2)

± 0.125% URL for Ps 750 psi (5,2 MPa)

1

± 0.25% URL for Ps 2000 psi (13,8 MPa)

 

 

2, 3

± 0.05% URL for Ps 2000 psi (13,8 MPa)

 

± [0.1 + 0.1 (Ps-2000) / 1000]% URL for

 

Ps > 2000 psi 3626 psi

 

 

4, 5

± 0.1% URL for Ps 2000 psi (13,8 MPa)

±[0.2 + 0.2 (Ps-2000) / 1000]% URL for Ps > 2000 psi 3626 psi

(1)Ps equals static line pressure applied

(2)Specification for Rosemount 3051N Range 0 is expressed in [% per 100 psi (689 KPa)]

Rosemount 3051ND

Span Error

Per 1000 psi (6,9 MPa) line pressure

Range Code

Static Pressure Span Effect

 

 

0(1)

± 0.15% input reading

1

± 0.40% input reading

 

 

2, 3

± 0.10% input reading

 

 

4, 5

± 0.20% input reading (uncertainty after calibration correction for

 

systematic effects)

 

 

(1)Specification for Rosemount 3051N Range 0 is expressed in [% per 100 psi (689 KPa)] up to 750 psi (5 171 KPa)

Power Supply Effect

Load Effect

Mounting Position Effect

Less than ±0.005% of calibrated span per volt for RDF ≤ 10

No load effect other than change in voltage supplied to the transmitter

Rosemount 3051ND/NG

Zero shifts up to ± 1.25 in H20 (0,31 KPa), which can be calibrated out; no span effect

Rosemount 3051NA

Zero shifts up to 2.5 in H20 (63,5 mm), which can be calibrated out; no span effect

5-4

Image 54
Contents Reference Manual Page Rosemount 3051N Return of Material Changes from June 2006 to June OldChanges Rosemount 3051N Table of Contents Installation TroubleshootingSpecifications Reference Data Options Appendix aHart Communicator Glossary Index Using this Manual Section IntroductionRosemount 3051N Overview Safety Messages Transmitter FunctionsAlarm Level Verification TransmitterSecurity Configuring Transmitter Alarm and Security Jumper Procedure Physical Removal Local Zero and Span Local KeysElectronics Board Setting the Loop to Manual Wiring Diagrams Bench Hook-up Wiring Diagrams Field Hook-up Review Configuration Data Check OutputProcess Variables Set Process Variable Units Sensor TemperatureBasic Setup Set OutputRerange Rerange with a Communicator OnlyRerange with a Pressure Input Source and a Communicator Span and Zero Adjustment Buttons Detailed Setup Diagnostics ServiceTransmitter Test Loop TestCalibration Transmitter Bench Calibration Tasks Field Calibration Tasks Configure the Analog Output Parameters Calibration OverviewSensor Trim URVZero Trim Typical Zero vs Non-zero-Based Application IllustrationsFull Trim Digital Trim Connection Drawing 4-20 mA TransmittersRecall Factory Trim- Analog Output Digital-to-Analog Trim Using Other ScaleRecall Factory Trim Recall Factory Trim- Sensor Trim Analog Output TrimZero Effect HTc = URV + S URV Ps Rosemount 3051N Section Installation Rosemount 3051N Typical Installation Flowchart General Considerations Special Draft Range ConsiderationsMechanical Considerations 156 181 16 x 11/4 Bolts for Mounting to 54.1 Transmitter 120 127 66.8 Traditional Flange Option Code H2 Dimensional Drawing Mounting Rosemount 3051N GAS or Liquid Service GAS Service Steam Service Process Connections Housing Rotation Power SupplyElectrical Considerations Wiring Power Supply Load LimitationsAccess Requirements Cover Installation Grounding the Transmitter CaseEnvironmental Considerations Troubleshooting Symptom Corrective Actions Returning Rosemount Products and MaterialsNuclear Specifications SeismicModel Range Code Hydrostatic Test Pressure Reference Accuracy Performance SpecificationsAmbient Temperature Effect12 DriftRange Code Overpressure Effect Power Supply Effect Load Effect Mounting Position EffectOverpressure Effect Static Pressure Effect Range Code Static Pressure Zero Effect1Temperature Limits Functional SpecificationsService OutputSpan and Zero, Zero Elevation, Suppression Range Minimum Span Upper URL Lower LRLRange Code Minimum Time Constant Tc Including Dead Time Td Static Pressure Limits Maximum WorkingPressure12 Overpressure Limits Burst PressurePhysical Specifications Materials of Construction Option Code Description Add Ordering Information Mounting Bracket Options Configuration InformationHousing Material Conduit Entry Size Meters optionalDate  On Rosemount 3051N Exploded View with Coplanar Process Flange Rosemount 3051N Rosemount 3051N Overview Safety Messages LCD Meter Section OptionsCustom Meter Configuration Installing the Meter Exploded View of the Rosemount 3051N with Optional LCD MeterRosemount 3051N Diagnostic Messages ErrorPress Limit Operation Mounting BracketsTraditional Flange H2 Transient Protection Terminal Block T1Transient Protection Terminal Block T1 Rosemount 3051N Introduction Safety Messages Appendix a Hart CommunicatorRosemount 3051N Online Menu Function Hart Fast Key Sequence Figure A-3. Rosemount Hart terminal access door Connections and HardwareFigure A-4. Bench Hook-up MA Transmitters Rosemount Communicator KeysAction Keys Function Keys Alphanumeric and Shift KeysData Entry Menus Functions Fast Key SequencesFast Key Sequence Conventions Fast Key Sequence Example Main MenuOnline Menu Touch Touch Screen Alphanumeric KeysMultifunction LED Multifunction LED Processing IndicationRosemount 3051N Diagnostic Messages Fast Key Sequences Hot Key optionsMessage Description Rosemount 3051N Uploadvariable Rosemount 3051N Rosemount 3051N Glossary Smart Family Index 00809-0100-4808, Rev CA June Security Page ¢00809-0100-4801V¤

3051N specifications

The Emerson Process Management 3051N is a state-of-the-art pressure transmitter that exemplifies precision and reliability in process automation. Designed for a wide range of industrial applications, the 3051N is celebrated for its advanced features, innovative technologies, and robust construction, catering to the evolving needs of process industries.

One of the standout features of the 3051N is its exceptional accuracy. With a standard accuracy rating of ±0.075% of span, it ensures precise pressure measurements, critical for maintaining optimal process conditions. This high level of accuracy makes it suitable for applications in industries such as oil and gas, chemicals, and water treatment, where even minor deviations can lead to significant operational issues.

The 3051N employs Smart Pressure Technology, integrating digital communication capabilities with traditional analog systems. This technology allows for seamless interoperability with existing process control systems, providing users with vital data for diagnostics, calibration, and configuration via HART, FOUNDATION fieldbus, or Profibus protocols. These capabilities lead to enhanced process efficiency and reduced downtime due to effective predictive maintenance.

Another notable characteristic of this transmitter is its robust design. The 3051N is built to endure harsh industrial environments, with a rugged housing that is resistant to corrosive and hazardous conditions. Its wide operating temperature range, typically from -40°C to 85°C, coupled with various diaphragm materials, ensures that it can function effectively across diverse applications.

Moreover, the Emerson 3051N incorporates advanced predictive diagnostics, enabling users to monitor the health of the transmitter continuously. This feature alerts operators to potential issues before they escalate, facilitating proactive maintenance strategies that can significantly lower operational costs.

The flexible configuration options offered by the 3051N also enhance its usability. Users can select from a variety of pressure ranges, process connection types, and electrical connections, making it easy to customize the transmitter to fit specific application needs.

In conclusion, the Emerson Process Management 3051N pressure transmitter is a versatile and highly efficient device that integrates advanced technology with robust design and exceptional accuracy. Its ability to adapt to various industrial demands while providing predictive diagnostics makes it a preferred choice for professionals seeking reliability and precision in process management.