Emerson 3051S manual Pressure Channel Temperature Channel Flow Channel

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Rosemount 3051S

Reference Manual

00809-0200-4801, Rev BA April 2007

XD_SCALE and OUT_SCALE

The XD_SCALE and OUT_SCALE each include three parameters: 0%, 100%, and, engineering units. Set these based on the L_TYPE:

L_TYPE is Direct

When the desired output is the measured variable, set the XD_SCALE to the “Primary_Value_Range”. This is found in the Sensor Transducer Block. Set OUT_SCALE to match XD_SCALE.

L_TYPE is Indirect

When an inferred measurement is made based on the sensor measurement, set the XD_SCALE to represent the operating range that the sensor will see in the process. Determine the inferred measurement values that correspond to the XD_SCALE 0 and 100% points and set these for the OUT_SCALE.

L_TYPE is Indirect Square Root

When an inferred measurement is made based on the sensor measurement AND the relationship between the inferred measurement and sensor measurement is square root, set the XD_SCALE to represent the operating range that the sensor will see in the process. Determine the inferred measurement values that correspond to the XD_SCALE 0 and

100% points and set these for the OUT_SCALE.:

Pressure (Channel 1)

Temperature (Channel 2)

Flow (Channel 7)

 

 

 

Pa

°C

lbm/sec

 

 

 

kPa

°F

lbm/min

bar

°K

lbm/hour

 

 

 

mPa

 

lbm/day

mbar

 

kg/sec

 

 

 

torr

 

kg/min

atm

 

kg/hour

 

 

 

psi

 

grams/sec

g/cm2

 

grams/min

 

 

 

kg/cm2

 

grams/hour

inH2O at 68 °F

 

StdCuFt/sec

mmH2O at 68 °F

 

StdCuFt/min

in.H2O at 4 °F

 

StdCuFt/min

mmH2O at 4 °F

 

StdCuFt/hour

ftH2O at 68 °F

 

StdCuFt/day

inHg at 0 °C

 

StdCuM/hour

mmHg at 0 °C

 

StdCuM/day

 

 

 

 

 

NmlCuM/hour

 

 

NmlCuM/day

NOTE

When the engineering units of the XD_SCALE are selected, this causes the engineering units of the PRIMARY_VALUE_RANGE in the Transducer Block to change to the same units. THIS IS THE ONLY WAY TO CHANGE THE ENGINEERING UNITS IN THE SENSOR TRANSDUCER BLOCK, PRIMARY_VALUE_RANGE parameter.

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Contents Overview Safety Messages Reference ManualDevice Capabilities Link Active Scheduler Network Parameter ValueAuto General Block InformationModes MANBlock Instantiation Simulation FeaturesFeaturessel Resource BlockHwsel bit Swsel bit Write accessMaxnotify Read/WritePlantWeb Alarms Adviseenabled Maintalarms Maintenabled MaintmaskConfigure the AI block Analog Input AI Function BlockLtype ChannelChannel Number Channel Description Pressure Channel Temperature Channel Flow Channel Configuration Examples Parameter Configured ValuesSituation #3 Diagram XDSCALE100 OUT= Filtering Low CutoffStatus Options Process AlarmsAlarm Priority Hipri Hihipri Lopri LolopriMultiple Analog Input MAI Function Block Advanced FeaturesAlarmtype OutdBlock Error Conditions Number Name and DescriptionCustom Meter Configuration LCD Transducer BlockPARAMINDEX#1 DisplayparamselBLKTYPE#1 CUSTOMTAG#1CUSTOMUNITS#1 Display bar graphCustom Advanced Diagnostics Transducer Block ADB ADB Parameters Plugged Impulse Line Detection PILConfiguration Plugged Impulse Line Detection PlineonPlugged Impulse Line Advanced Settings Rosemount 3051S Statistical Process Monitoring SPM SPM Configuration Mass Flow Installation and Setup Engineering Assistant SoftwareDevice View Open EA Wizard EA Wizard View 10. Download Mass Flow Configuration File
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3051S specifications

The Emerson 3051S is a state-of-the-art pressure transmitter that excels in various industrial applications. Its design is rooted in cutting-edge technology, ensuring accurate and reliable pressure measurements. With a focus on performance and durability, the 3051S stands as a trusted choice for engineers and process professionals worldwide.

One of the standout features of the Emerson 3051S is its advanced sensor technology. The device utilizes a high-performance sensor that offers exceptional accuracy, with a measured performance of up to ±0.075% of the span. This precision is essential for processes where minute changes in pressure can significantly impact operations. Coupled with the sensor's stability and repeatability, the 3051S provides consistent readings even in fluctuating conditions.

The device also incorporates Emerson's proprietary Smart Pressure technology, which enables predictive diagnostics. This feature allows users to anticipate potential issues before they escalate, reducing downtime and maintenance costs. The 3051S is equipped with advanced communication capabilities, supporting protocols such as HART, FOUNDATION Fieldbus, and Profibus PA. This versatility ensures seamless integration into existing plant automation systems, facilitating real-time data monitoring and management.

In terms of construction, the Emerson 3051S is built to withstand harsh industrial environments. It features a robust stainless-steel housing that protects the internal components from corrosive substances, high temperatures, and extreme pressures. The device is also available with various membrane materials, making it suitable for a wide range of media, including corrosive and viscous fluids.

Moreover, the 3051S is designed with user-friendliness in mind. It includes an intuitive interface and is fully configurable, allowing for easy calibration and setup. The ability to use Emerson's AMS Device Manager software further enhances the user experience, enabling detailed analysis, configuration, and diagnostics from a centralized platform.

Overall, the Emerson 3051S combines superior technology with practical design, making it an ideal solution for industries such as oil and gas, chemical processing, and water treatment. Its precise measurements, advanced diagnostics, and durable construction position it as a benchmark in the field of pressure transmitters, delivering reliability and efficiency for critical applications.