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Nanjing City, Jiangsu Province
Nanjing Nuotai Automation Equipment Co., Ltd
Nanjing City, Jiangsu Province
Domestic Emerson Quality Flow Meter Agent
High precisionFSeries flow and density meters
High precision performance in real-world environments
Adopting a compact design, it has good performance in measuring liquid mass flow rate, volume flow rate, and density
Robust sensor design can reduce downtime and process interruption costs
Durable and sturdy design aimed at reducing process, installation, and environmental impact
applicability
■ Cleanable, self draining design for critical process control applications
Compact design enables installation flexibility and reduces maintenance costs
■ Provide a wide range of servicesI/OInterface, includingHARTTheProfibus-DPTheFOUNDATIONFieldbus4-20mAAnd wireless functionality
Reliability and safety
There are no worn-out or replaceable moving parts, reducing maintenance requirements and ensuring long-term reliability
■316LStainless steel structure is suitable for most media
Robust sensor design can reduce parking time and process interruption costs
Domestic Emerson Quality Flow Meter Agent
High precision®FSeries flow and density meters
High precisionFThe flow and density performance, as well as excellent reliability, of the series instruments can provide measurements in critical process control environment applications.
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If you need assistance in determining a high-precision product suitable for your application, please refer toHigh precision(Micro Motion®)Technical Overview and Specification Summary
Other resources.
Flow and density measurement suitable for critical process applications
Adopting a compact and self emptying design, it provides high-performance and reliable measurement, which can extend normal operation time
Low frequency, high sensitivity "once and for all" instrument that can provide reliable measurements even under harsh process conditions
■ With multiple calibers, it provides an ideal platform for batching, packaging, distribution, and in plant measurement applications
Intelligent instrument self calibration: capable of advanced diagnosis of the entire system
Comprehensive testing can be conducted on-site or in the control room to demonstrate the functionality and performance of the instruments
Check if your instrument performance is as good as it was on the day of installation, in just a short period of time90 Judgment can be made within seconds
Reduce labor costs and outsourcing calibration service costs, thereby saving a significant amount of expenses while eliminating process interruptions
Unleash your craft potential with the industry
■ Provides a wide range of transmitters and installation options, compatible with your system
■ CompliantISO-IEC 17025The calibration device has reached an uncertainty of±0.014%, can achieve measurement accuracy
Adopting communication protocol products in the industry, including intelligent wireless
True multivariate technology can simultaneously measure necessary flow and density process variables
Wide range of installation and adaptability to process conditions
Featuring low voltage drop and lightweight design, it can reduce installation and commissioning costs
■ ofMVDTransmitter Technology and Digital Signal Processing(DSP), can provide fast response rate, thereby achieving precise batch and process measurement
High adaptability in design, capable of withstanding high temperatures(350°C)And high voltage(345 bars)Run under specific conditions to solve your severe measurement challenges
Measuring principle
As a practical application of the Coriolis effect, the working principle of the Coriolis mass flowmeter is to cause vibration in the flow tube through which the medium flows. Although the vibration is not a complete circle,
Still formed a rotating coordinate system, thereby triggering the Coriolis effect. Sensors detect and analyze changes in flow tube frequency, phase difference, and amplitude. The specific detection method will vary depending on the flow
The design of the measuring instrument varies. These observed changes represent the mass flow rate and density of the fluid.
Quality flow measurement
The measuring tube swings under the action of force, resulting in a sine wave. When the flow rate is zero, two pipelines vibrate in phase. When there is flow, Coriolis force causes the pipeline to undergo
Bending can cause phase shift. Measure the time difference between sine waves, which is proportional to the mass flow rate.
FSeries Coriolis Mass Flow Meter and Density Meter
Entrance detection displacement
B.No traffic
C.Export detection displacement
D.time
E.Entrance detection displacement
F.There is traffic
G.Export detection displacement
H.jet lag
I.time
Density measurement
The measuring tube vibrates at its natural frequency. The change in the quality of the medium inside the pipeline will cause a corresponding change in the natural frequency of the pipeline. Calculate density based on the frequency variation of the pipeline.
temperature measurement
Temperature, as a measurement variable, can be used as an output quantity. In addition, temperature can also be used to compensate for the effect of temperature changes on the Young's modulus of elasticity inside the sensor.
Instrument characteristics
The measurement accuracy of medium mass flow rate is independent of operating temperature, pressure, or composition. However, the pressure drop of the sensor depends on the operating temperature, pressure, and composition of the medium.
The specifications and functions vary by model, and some models may have fewer available options. Please refer to the Emerson website for more informationOnline Store Sizing and Selection Tool(Online)
Shop Selection ToolLearn more about performance and functionality.
Basic model code (e.gF100S)The letter at the end indicates the material and/Or application name:S =stainless steelH =Nickel alloyC22TheP =High voltageA =high temperature
316Lstainless steelB =High-temperature nickel alloyC22The detailed information about the complete product model code will be explained later in this document.
Performance Specifications
Reference operating conditions
To determine the performance of our instruments, we need to use/Follow the following conditions:
The water temperature is68 - 77 °FThe water pressure is14.5 - 29 psig(20 - 25 °CAnd1 - 2 bars)
Accuracy is based on experienceISO/IEC17025Calibration standards for certification
All models have a density measurement range of up to3 g/cm3(3000 kg/m3)
FSeries Coriolis Mass Flow Meter and Density Meter
Accuracy and repeatability
Accuracy and repeatability of liquid and slurry measurement
Performance specification calibration codeZCalibration codeA(1)Calibration code1 (1)Calibration codeK(2)Calibration codeC(3)
Quality flow accuracy(4)±0.20%Traffic volume±0.15%Traffic volume±0.10%Traffic volume±0.10%Traffic volume±0.10%traffic
Volume flow accuracy(4)(5)±0.20%Traffic volume±0.15%Traffic volume±0.15%Traffic volume±0.10%Traffic volume±0.15%traffic
Quality flow repeatability0.10%Traffic volume0.075%Traffic volume0.05%Traffic volume0.05%Traffic volume0.05%traffic
Volume flow repeatability0.10%Traffic volume0.075%Traffic volume0.075%Traffic volume0.05%Traffic volume0.075%traffic
Density accuracy±0.002 g/cm3
(±2.0 kg/m3)
±0.002 g/cm3
(±2.0 kg/m3)
±0.001 g/cm3
(±1.0 kg/m3)
±0.0005 g/cm3
(±0.5 kg/m3)
±0.002 g/cm3
(±2.0. kg/m3 )
Density repeatability0.001 g/cm3
(1.0 kg/m3 )
0.001 g/cm3
(1.0 kg/m3 )
0.0005 g/cm3
(0.5 kg/m3 )
0.0002 g/cm3
(0.2 kg/m3 )
0.001 g/cm3
(1.0 kg/m3 )
Temperature accuracy±1 °C ±0.5%The measured value(°C)
Temperature repeatability0.2 °C
(1)Not applicable toF100PType Instrument;Not applicable to electronic component interface codesJOrU.
(2)Only applicable to electronic component codes0、1、2、3、4、5、6、7、8 And9;Not applicable toF025Type of instrument or any high-temperature or high-pressure model (basic materials)/Application codeATheBor
P).
(3)Only used forF100PType of instrument.
(4)The accuracy of labeled traffic includes the combined effects of repeatability, linearity, and hysteresis.
(5)When using calibration media under calibration conditions.
Accuracy and repeatability of gas measurement
Performance specifications for all models
Quality flow accuracy(1)±0.5%traffic
Quality flow repeatability(1)0.25%traffic
Temperature accuracy±1 °C,0.5%of
reading
Temperature repeatability0.2 °C
(1)The accuracy of labeled traffic includes the combined effects of repeatability, linearity, and hysteresis.
liquid flow rate
rated flow
The term "rated flow" used by high-precision refers to the instrument pressure drop caused by water flow under reference conditions, which is approximately14.5 psig (1 barg)Corresponding traffic at that time.
Mass flow rate for all models:316LStainless steel(S/A)Nickel alloyC22 (H/B)Compared to high-voltage type(P)
model
Standard caliber rated flow rate large flow rate
Inch millimeter pound/Kilogram per minute/Hour pound/Kilogram per minute/hour
F025 1/4”DN6 50 1,366 100 2,720
F050P 1/2”DN15 84 2,287 168 4,570
F050S/H/A/B 1/2”DN15 155 4,226 300 8,160
F100P 1”DN25 400 11,000 800 22,000
FSeries Coriolis Mass Flow Meter and Density Meter
model
Standard caliber rated flow rate large flow rate
Inch millimeter pound/Kilogram per minute/Hour pound/Kilogram per minute/hour
F100S/H/A/B 1”DN25 600 16,440 1,200 32,650
F200 2”DN50 1,917 52,160 3,200 87,100
F300 3”DN80 5,298 144,200 9,995 272,000
Volume flow rate for all models:316LStainless steel(S/A)Nickel alloyC22 (H/B)Compared to high-voltage type(P)
model
Rated flow rate, large flow rate
gallon/Minute bucket/Hour increase/Hourly gallon/Minute bucket/Hour increase/hour
F025 6 9 1,366 12 18 2,720
F050S/H/A/B 19 27 4,226 38 52 8,160
F050P 10 15 2,287 20 29 4,574
F100P 48 69 11,000 96 138 22,000
F100S/H/A/B 72 103 16,440 144 206 32,650
F200 230 328 52,160 384 550 87,100
F300 635 907 144,200 1,200 1,720 272,000
gas flow rate
gas flow rate
When selecting sensors for gas measurement, the pressure drop of the sensor depends on the operating temperature, pressure, and composition of the medium. Therefore, when selecting sensors for any specific gas application
It is strongly recommended to use high-precision websites The online store selection tool
Perform selection calculations for each sensor.
The following table shows the molecular weight of17 The natural gas is60 °F (16 °C)And500 psig (34 barg)Approximately generated below25 psig (1.7 barg)Flow rate during pressure drop.
Gas flow rates for all models:316LStainless steel(S/A)Nickel alloyC22 (H/B)Compared to high-voltage type(P)
model
Mass and volume
pound/Kilogram per minute/Hour by hourSCFM Nm3 /h
F025 17 468 388 659
F050 52 1,429 1,183 2,010
F100P 125 3,400 2,888 4,909
F100S/H/A/B 200 5,452 4,514 7,670
F200 666 18,137 15,018 25,515
F300 1,745 47,505 39,334 66,829
note
Standard(SCFM)The reference condition is that the molecular weight is17 Natural gas with a pressure of14.7 psig (1 barg)The temperature is60°F (15°C).
2017 Year by year12 MonthFSeries Coriolis Mass Flow Meter and Density Meter
Zero stability
When the flow value approaches the small limit range of the flow range, the accuracy of the flowmeter begins to deviate from the declared accuracy. At this time, zero stability must be considered, as described in the range ratio section.
When the accuracy of operating flow begins to deviate from the declared accuracy, the accuracy of the flow meter will depend on the formula: accuracy=Zero stability/Traffic valuex 100%The repeatability is the same
It will be affected by small traffic measurements.
Range ratio performance
The following chart shows an example of measuring characteristics under various flow conditions. If the flow requires a larger range ratio (greater than)20:1)The zero stability value may be affected by
Fluid conditions and instruments used can affect performance.
0
0.2
0.4
0.6
0.8
1.0
0 100908070605040302010
40:1
20:1
1:1
2:1
A
B
A.Accuracy,%
B.Flow rate, rated flow rate%
Range ratio of rated flow rate40:1 20:1 2:1 1:1
Accuracy±% 0.26 0.20 0.20 0.20
Pressure droppsig (barg) ~0 (0) 0.04 (0.003) 4.2 (0.29) 14.5 (1.0)
Standard temperature/Zero stability of pressure model:316LStainless steel(S)Nickel alloyC22 (H)
model
Zero stability
pound/Kilogram per minute/hour
F025S/H 0.002 0.054
F050S/H 0.012 0.327
F100S/H 0.05 1.36
F200S/H 0.16 4.35
F300S/H 0.5 13.6
High temperature(A/B)With high voltage(P)Zero stability of type
model
Zero stability
pound/Kilogram per minute/hour
F025A/B/P 0.0065 0.177
F050A/B/P 0.02 0.544
F100A/B/P 0.08 2.18
FSeries Coriolis Mass Flow Meter and Density Meter2017 Year by year12 moon
Process pressure level
The working pressure of the sensor indicates that the sensor can reach the process pressure level. The type of process connection, as well as the ambient temperature and process medium temperature, may reduce this
Grade. For general sensor and process connector combinations, refer to the technical data sheet.
All sensors comply with the EU Pressure Equipment Directive2014/68/EUThe requirements.
note
Equipped withJISProcess ConnectionFSeries sensors do not complyASME B31.1Power pipeline specifications.
The high working pressure of all models of sensors:316LStainless steel(S/A)Nickel alloyC22 (H/B)Compared to high-voltage type(P)
model(1)psig bars
025/ATheF050S/ATheF100S/ATheFS F200STheF300S 1,450 100
025/BTheF050H/BTheF100H/BTheFH F200HTheF300H 2,160 149
F025P 2,320 160
F050P 5,800 400
F100P 6,250 431
(1)Can provide higher process pressure levels. For more details, please contact the manufacturer.
Shell pressure
Shell pressure for all models:316LStainless steel(S/A)Nickel alloyC22 (H/B)Compared to high-voltage type(P)
model
Large shell pressure(1)NAMUR NE132Typical blasting pressure
Psychiatric acid
F025 166 11 1,256 87 1,884 130
F050 135 9 1,020 70 1,530 105
F100 109 7 854 59 1,281 88
F200 64 4 507 35 760 52
F300 256 17 1,754 120 2,630 180
(1)Long10 One time containment pressure of one hour.
FSeries Coriolis Mass Flow Meter and Density Meter
Working conditions: Environmental conditions
Vibration limitation
Compliant withIEC 68.2.6Stability scan,5 - 2000 Hz,1.0 gWhen50 One scanning cycle.
temperature limit
The sensor can be used within the process and ambient temperature range shown in the temperature limit diagram. If electronic component options are to be selected, temperature limit diagrams should only be used as general guidance. If the process
The conditions are close to the gray area, please consult with a high-precision representative.
note
In all cases, electronic components must not be exposed to ambient temperatures below -40°F (–40°C)Or higher than+140°F (+60°C)Used in the application. If the sensor needs to operate at ambient temperature
For use in applications beyond the allowable range of the electronic component, the electronic component must be installed separately in a location where the ambient temperature is within the allowable range, such as the shadow in the temperature limit chart
As shown in the area.
■ Hazardous area certification may further limit temperature limits. Please refer to the hazardous area certification document attached to the sensor,
The extended installation type electronic component option isolates the sensor housing without covering the transmitter, core processor, or junction box, but does not affect the temperature rating. AboveCheng temperature(140 °FWhen insulating the sensor housing, please ensure that the electronic components are not sealed inside the insulation material, otherwise it may cause electronic component failure.
For allF300The temperature difference between the sensor, process medium temperature, and the average temperature of the casing must be less than120°F (66°C).
Environmental and process temperature limits for standard temperature models:316LStainless steel(S)Nickel alloyC22 (H)Compared to high-voltage type(P).