Flowmeters Selection Guide

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CA2-5100 Calibration Facility for water The flow calibration rig in Kyoto has the only two-stage elevated water tank system in Japan. At a height of 35m, the tanks are also the highest in Japan. It can run eight systems simultaneously, and its weighing system with maximum flow of 5,000m 3 /h makes this calibration rig the largest of its kind in Japan. s Selection Guide Maximum 50D upstream straight pipe for accurate calibration Elevated water tank for calibration Calibration facility for JCSS MRA Please read Terms and Conditions from the following URL before ordering and use. http://www.azbil.com/products/factory/order.html HART is a registered trademark of HART Communication Foundation. Other product names, model numbers and company names may be trademarks of the respective company. [Notice] Specifications are subject to change without notice. No part of this publication may be reproduced or duplicated without the prior written permission of Azbil Corporation. Yamatake Corporation changed its name to Azbil Corporation on April 1, 2012. 1-12-2 Kawana, Fujisawa Kanagawa 251-8522 Japan URL: http://www.azbil.com Jul. 2017 (rev.10)-ed CA2-5100

We offer a wide variety of flowmeters to meet your specific needs. INDEX 測定流体の種類 ( 例 ) Water Chemicals Slurry Electromagnetic MGG/MGS NNK MTG MCB 3 3 5 5 The flow rate is the most basic measurement in a process. A variety of methods of measuring the flow rate have been developed to cover a broad spectrum of fluid characteristics and measuring environments. We have released the following five types of flowmeters to provide longer operating life, good maintainability, and saving energy as customers require: electromagnetic, differential pressure, coriolis mass, vortex, and thermal. From these, you can select the best for your specific needs. Gas Steam Water Oil Chemicals Differential Pressure GTX 7 HP LP (kpa) 0.2 Gas Steam D.P. for Steam and Gas MVC(AIRcube) 7 MVC(STEAMcube) 9 Pressur loss 0.15 0.1 Coriolis Mass Differential Pressure β=throttle ratio (d/d) Rangeability by types and measurement range for 50mm pipe 100 200 300 400 Flow rate 20 30 40 50 Air Vortex Gas Differential Pressure Coriolis Mass 500 1000 (1:16) (m 3 /hr) (1:10~1:34) (1:83) Initial cost Coriolis Mass D.P. for Steam and Gas Thermal HP Gas Water Oil Chemicals LP Coriolis Mass RC111 9 0.05 0 0 5 Flow speed Vortex Electromagnetic 10( m s ) Water Thermal Range ability Electromagnetic Differential Pressure Coriolis Mass Flow rate 0 0 10 (1:160) 20 30 40 50 60 70 80 (1:100) (1:10) (1:83) 500 750 1000 (m 3 /hr) 10 Electromagnetic Vortex Gas 100 Differential Pressure 1000 (mm) Gas Steam Water Oil Chemicals Gas Vortex Gas MVF AX2000 MVF(Gas) Thermal 10 11 11 Pressure loss Range ability Cost performance CML MCF CMS CMG CMP MQV F4H MPC 13 13 15 15 17 19 19 21 1 s Selection Guide s Selection Guide 2

MGG/MGS E=BDV V E=BDV V D D E E E : Electromotive force B : Magnetic induction density D : V : Average flow velocity B E : Electromotive force B : Magnetic induction density D : V : Average flow velocity B MagneW3000 PLUS + Series Smart Electromagnetic Model MGG/MGS The MagneW3000 PLUS + electromagnetic flowmeter offers high performance, and high reliability based on the azbil Group's field-proven technologies. The model MGG14C converter provides expanded flow rate and process measurement capabilities when used with the new selection of MagneW3000 PLUS + detectors. FM/ CSA nonincendive model is suitable for use in Class I / II / III, Division 2, Groups A, B, C, D, F, and G or non-hazardous locations only. General model is suitable for use in non - hazardous locations. MagneW3000 PLUS + Series Smart Electromagnetic for Open Channel Detector Model NNK The MagneW3000 PLUS + Open Channel is designed for both open channel and closed channel flow measurement. In open channel measurements, the MagneW provides accurate flow measurement even at minimal flow rates and is not affected by tidal levels or hydrostatic pressure changes. The detector is obstruction-less and has no moving parts, resulting in trouble-free operation and reduced maintenance costs. Unlike other open channel flowmeter designs, the MagneW provides an output that is linear with the flow rate. Lining material Electrical conductivity of fluid EMC conformity Lining material Electrical conductivity of fluid EMC conformity 2.5, 5, 10, 15, 25, 40, 50, 65, 80, 100, 125, 150, 200, 250, 300, 350, 400, 450, 500, 600, 700, 800, 900, 1000, 1100 mm 0 to 0.1 m/s (minimum), 0 to 10 m/s (maximum) 90 to 130 Vac,190 to 250 Vac, 47 to 63 Hz, 110 Adc ±10%, 24 Vdc ±10% Detector: watertight (IEC IP67), submersible (IEC IP68) Converter: waterproof (NEMA 4X, IEC IP66) Integral/ remote TIIS/ FM/ CSA explosion-proof, FM/ CSA nonincendive Detector: SUS304, aluminum alloy, carbon steel Converter: aluminum alloy PFA, polyurethane rubber, chloroprene rubber, ceramic, ETFE -40 to +160 C (lined with PFA) -40 to +120 C (lined with ETFE) -40 to +180 C (lined with ceramic) -25 to +60 C Pulse output : open collector, contact output : open collector 300 μs/m (3 μs/cm) or more Water, sewage, chemicals, slurry, food, highly viscosity liquid ±0.5 % of reading (flow rate of more than 20 % of setting range), ±0.35 % of reading (flow rate of more than 20 % of setting range) EN61326 50, 100, 200, 400, 600 mm 0 to 0.3 m/s (minimum), 0 to 10 m/s (maximum) 90 to 130 Vac, 47 to 63 Hz, 110 Adc ±10%, 24 Vdc ±10% Detector: submersible (IEC IP68) Converter: waterproof (NEMA 4X, IEC IP66) Remote () Detector: PVC Converter: aluminum alloy PVC 0 to +40 C 0 to +40 C Pulse and contact outputs: open collector 300 μs/m (3 μs/cm) or more Water, sewage ±1 % (Detector only), ±2 % (Combined with dummy) Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal NNK 3 s Selection Guide s Selection Guide 4

MagneW Two-wire PLUS + Series MTG E=BDV V E=BDV V D D E E E : Electromotive force B : Magnetic induction density D : V : Average flow velocity B E : Electromotive force B : Magnetic induction density D : V : Average flow velocity B Smart Two-wire Electromagnetic Model MTG In the past, users had to make big sacrifices in functionality and performance to take advantage of two-wire simplicity, but this is no longer the case. The innovative design of the MTG18A delivers performance equal to current four-wire magnetic flowmeters. Azbil group released the world's first twowire loop powered magnetic flowmeter in 1992. Now we've taken the experience gained with the SMT3000 and developed the most innovative two-wire magnetic flowmeter on the market. Introducing the MagneW Two-wire PLUS +, delivering fourwire functionality with two-wire simplicity. The major advantage of two-wire magnetic flowmeter technology is that it provides the end-user with a lower cost of ownership due to lower cost of flowmeter installation. Not only is the electrical installation more economical, but it can be simpler and easier to back up in the event of a power outage. In addition, replacement of existing twowire and four-wire flowmeters can be implemented with little electrical work. Magcube Series Electromagnetic for Water Applications Model MCB The Magcube is an electromagnetic flowmeter designed specifically for water applications. Based on field-proven technologies, the Magcube provides cost-effective flow measurement with the features required for water applications. 2.5, 5, 10, 15, 25, 40, 50, 65, 80, 100, 150, 200 mm 0 to 0.3 m/s (minimum), 0 to 10 m/s (maximum) 24 Vdc ±10% Detector: watertight (IEC IP67) Converter: watertight (NEMA 4X, IEC IP67) Integral/ remote Lining material Electrical conductivity of fluid EMC conformity Lining material Electrical conductivity of fluid EMC conformity TIIS/ FM/ CSA explosion-proof, FM/ CSA/ NEPSI/ ATEX nonincendive Detector: SUS304, aluminum alloy Converter: aluminum alloy PFA -20 to +130 C (lined with PFA) -20 to +60 C Pulse and contact outputs: open collector 1000 μs/m (10 μs/cm) or more Water, chemicals, high viscosity liquids ±0.5 % of reading (flow rate of more than 30 % or 40 % of setting range) EN61326 15, 25, 40, 50, 65, 80, 100 mm 0 to 0.5 m/s (minimum), 0 to 5 m/s (maximum) 24 Vdc ±10%, 90 to 110 Vac Detector: waterproof(iec IP65) Converter: waterproof (IEC IP65) Integral Detector: SUS304 Converter: polycarbonate PFA (15mm), polypropylene (25 to 100 mm) -20 to +90 C 0 to +50 C Pulse and contact outputs: open collector 5000 μs/m (50 μs/cm) to 5 000 000 μs/m (50 000 μs/cm) Water, sewage ±1 % of reading (velocity of 0.5 to 5 m/s) Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal MCB 5 s Selection Guide s Selection Guide 6

GTX Qv=CK V P Qv=CK ρ ΔP ρ ΔP H L ΔP Qv : Volume Flow C : Coefficient of effusion P : Differencial pressure ρ : Density Qv : Volume Flow C : Coefficient of effusion P : Differencial pressure ρ : Density AT9000 Series Differential Pressure Transmitters Model GTX The AT9000 Advanced Transmitter is a microprocessor-based smart transmitter that features high performance and excellent stability. Capable of measuring gas, liquid, vapor, and liquid levels, it transmits 4 to 20 ma DC analog and digital signals. AIRcube Series Multivariable Air Model MVC AIRcube conducts air, CO2, or N2 gas compensation without any external instruments. This all-inone transmitter achieves reduced engineering cost while guaranteeing complete accuracy as a flow measurement system. 15 to 3000 mm Primary elements Orifice plate, venturi, flow nozzle 0.1 kpa to 14 MPa for differential pressure flowmeter 16 to 42 Vdc Watertight (IEC IP67) Impulse line connection or direct mount TIIS/ FM/ ATEX/ IEC Ex/ INMETRO/ NEPSI/ KOSHA intrinsic safety and explosion-proof, nonincendive Meter body: SUS316, SUS316L Case: aluminum alloy -40 to +650 C -25 to +60 C Contact output: open collector Gas, steam, liquid ±2 % of rate with orifice plate EMC comformity EN 61326 EMC conformity 50, 65, 80, 100, 150 mm 90 to 250 Vac Detector: IEC IP54 Converter: IEC IP54 Integral Detector: SCS13, SUS316 Converter: aluminum alloy, polycarbonate -15 to +70 C -15 to +50 C Pulse output : open collector Compressed air, N2 gas, CO2 gas ±3 % of reading Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal ρ MVC 7 s Selection Guide s Selection Guide 8

MVC Qm=CK ρ F=2mωV ΔP ρ 123456 0.7MPa 170 azbil H L ΔP Qm : Mass flow C : Coefficient of effusion P : Differencial pressure ρ : Density F : Coriolis Force m: Mass of moving element in pipe ω: Rotation speed langular velocity V : Velocity of mass moving STEAMcube Multivariable Steam Model MVC STEAMcube conducts saturated steam density compensation without any external instruments. This all-in-one transmitter achieves reduced engineering cost while guaranteeing complete accuracy as a flow measurement system. Admass Coriolis Mass Model RC111 This is a Coriolis mass flowmeter for measurement of liquid and gas. The Admass Coriolis Mass measures fluid mass directly by detecting the phase difference of fluid that passes through a detector tube that is vibrated indirectly by a unique torsion bar vibration system. Accordingly, this flowmeter, unlike volumetric flowmeters, does not require temperature and pressure compensation, and is able to obtain the mass flow rate directly. EMC conformity 25, 40, 50, 80, 100, 150 mm 16.7 to 45 Vdc IEC IP67 Integral/ remote TIIS explosion-proof +100 to +215 C -15 to +65 C Pulse output : open collector Saturated steam ±3 % of reading 10, 15, 25, 32, 40, 50, 80, 100, 150, 200, 250, 300 mm 24 Vdc ±10% Detector: waterproof (IEC IP65) Converter: waterproof (IEC IP66) Remote Detector: SUS904L, aluminum alloy Converter: aluminum alloy -20 to +120 C -20 to +55 C Pulse output : open collector Water, sewage, chemicals, food, high viscosity liquid, gas ±0.2 % of reading Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal RC111 9 s Selection Guide s Selection Guide 10

AX2000 Q=K f Vortex shedding flow velocity sensor Vortex generator Flow Q : Volume Flow f : Vortex freguency Vortex AX2000 Series Multivariable Vortex s Model AX2 Measurement of the volumetric flow rate and mass flow rate of liquids, gases, and steam with a single unit. Three output signals for improved measurement efficiency and lower costs. Highly accurate mass flow rate measurement by compensating for temperature and pressure. Insertion models for large-diameter (125 mm or larger) pipes. Micro Flow Vortex Gas Model MVF Model Process fluid temperature Process fluids Display Data setting method Communication Integrated, separated converter 15, 25, 40, 50, 80, 100, 150, 200 mm (inline model), 125 to 1800 mm (insertion model) Standard model: -50 to +260 C High-temperature model: -50 to +400 C Cryogenic-temperature model: -200 to +50 C Standard operating temperature: -40 to +60 C, Transportation and storage temperature: -40 to +85 C Various gases, liquids, and steam that do not corrode SUS316L 12 to 36 Vdc (2-wire system), 12 to 36 Vdc, 300 ma max. (multiple outputs), 85 to 240 Vac, 50/60 Hz, 2 W (multiple outputs) Analog (4 to 20 ma DC), pulse (semi-conductor relay, pulse width: 50 ms), alarm (semi-conductor relay), frequency LCD, 16 characters 2 lines With 6 keys on the device, or by an included magnet, or by communication HART communication TIIS/ KOSHA/ FM/ ATEX/ IEC Ex Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Q=K f Q : Volume Flow f : Vortex freguency By using the high-sensitivity and high-speed response the azbil Group µf (Micro Flow) sensor for the detection of vortex frequency, the MVF is able to offer a wide rangeability of 100:1*. Temperature and pressure compensation functions are built in, so there is no need for costly external devices. * at 0.5 MPa 50, 80, 100, 150 mm 24 Vdc ± 10 % IEC IP67 Integral Detector: SUS304 Converter: aluminum alloy (ADC 12) -15 to +60 C -15 to +60 C Pulse output : open collector Air, N2, Ar, O2, CO2, natural gas, methane, propane, butane, other inert gases Actual: 2 % of reading. Normal: 3.3 % of reading Thermal Vortex Gas Thermal MVF 11 s Selection Guide s Selection Guide 12

CML Converter Detector Flow Filter Mesh Qm : Mass flow Sensor Filter High-Flow Mass Model CML The CML is a high-flow gas mass flowmeter that uses the azbil Group μf (Micro Flow) sensor as its sensing element. The combination of an ultraminiature highprecision sensor and advanced circuit design technology has enabled high accuracy and impressive 160:1 rangeability. Air Model MCF 50, 80, 100, 150 mm 0 to 160 m 3 /h (minimum) 1600 m 3 /h (maximum) 85 to 264 Vac IEC IP65 Integral Detector: SUS304/SCS13A Converter: aluminum alloy (ADC12) -25 to +60 C -25 to +60 C Pulse output : open collector Air, N2, Ar, O2, CO2, natural gas, methane, propane, butane 2 % of reading Excluding some models Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Qm : Mass flow The MCF is a mass flowmeter specifically designed for use with compressed air or nitrogen use. It incorporates azbil group Micro Flow thermal mass-flow rate sensor. The MCF can measure mass flow with an accuracy of ±3 % FS over a 50:1 measurement range. Forward and reverse flow integration functions are provided. Measurement is possible at up to 2 times the standard range with an accuracy of ±10 % of reading. 8, 15, 25, 40, 50 mm 0 to 200 L/min (minimum), 0 to 12000 L/min (maximum) 22.8 to 25.2 Vdc IEC IP65 Integral Detector: aluminum alloy Converter: PBT -10 to +60 C -10 to +60 C Pulse output(open collector) air,n2 3 % FS Thermal Vortex Gas Thermal MCF 13 s Selection Guide s Selection Guide 14

CMS Qm : Mass flow Qm : Mass flow Gas Mass Model CMS The CMS is a highly reliable gas mass flowmeter that uses the azbil Group μf (Micro Flow) sensor as its sensing element. The μf sensor is a MEMS thermal mass-flow sensor capable of measuring ultralow flow rates. The integration of the μf sensor and advanced channel design technology has achieved high accuracy and high rangeability at a low cost. Gas Flow Monitor Model CMG The CMG is a flowmeter designed to measure the fuel flow to a gas burner. Its sensing element is the Micro Flow sensor chip, a MEMS thermal mass flow sensor. The monitor displays instantaneous or totalized flow. Available outputs include alarm, instantaneous flow (analog output), totalizer pulse (NPN open collector) and event, for management of combustion air/ fuel ratio. ¼", ½" 0 to 0.5 L/min, 0 to 2000 L/min 11.4 to 25.2 Vdc Integral Detector: SUS303 / SUS316 Converter: polycarbonate -10 to +60 C -10 to +60 C, 0 to 5 Vdc, 1 to 5 Vdc Pulse output (open collector) Air, N2, Ar, O2, CO2, natural gas, methane, propane, butane, H2, He 3 % of reading, 5 % of reading Excluding some models 15, 25, 40, 50 mm 0 to 2 m 3 /h (minimum), 0 to 150 m 3 /h (maximum) 100/200 Vac (85 to 110 %), 24 Vdc ± 10 % JIS IP54 Integral Detector: aluminum alloy or SCS13 Converter: PBT + GF 30 % -10 to +60 C -10 to +60 C, 1 to 5 Vdc Pulse output (open collector), alarm (electromagnetic relay) Air, N2 4 % of reading, 6 % of reading, EN 61010 Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal CMG 15 s Selection Guide s Selection Guide 16

CMP Filter Flow Mesh Flow Sensor Pressure Sensor Qm : Mass flow Thermistor Mesh Filter High-Flow Mass Model CMP The CMP is a high-flow natural gas mass flowmeter that uses the azbil Group μf (Micro Flow) sensor as its sensing element. The combination of an ultraminiature precision sensor and advanced circuit design technology has enabled high accuracy and impressive 160:1 rangeability. 50, 80, 100, 150 mm 0 to 160 m 3 /h (minimum) 1600 m 3 /h (maximum) Lithium battery IEC IP65 Integral Detector: SUS304, SCS13A Converter: aluminum alloy (ADC 12) -25 to +60 C -25 to +60 C Pulse output : open collector Natural gas 1 % of reading Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal 17 s Selection Guide s Selection Guide 18

MQV Q : Mass flow Q : Mass flow Digital Mass Flow Controller Model MQV The MQV is a digital mass flow controller that combines the azbil Group Micro Flow rate sensor and a proportioning solenoid valve with advanced actuator technology. The result is a high-performance. Developed for general industrial use, the MQV was designed with high-speed, wide-rangeability flow control needs in mind. Compact Digital Mass Flow Controller Model F4H The F4H is a next-generation standard massflow controller. The F4H is a digital mass flow controller equipped with the Micro Flow sensor, the sensor that achieves 0.3 s high-speed controllabillity. Those are 50% smaller than our conventional models, and all models have communications functions for IoT compatibility. ¼", ½" 0 to 5 ml/min (minimum), 0 to 1000 L/min (maximum) 21.6 to 26.4 Vdc Integral Detector: SUS316-10 to +60 C -10 to +60 C 0 to 20 madc,, 0 to 5 Vdc, 1 to 5 Vdc Pulse output (open collector) Air, N2, Ar, O2, CO2, natural gas, methane, propane, butane, H2, He 1 % FS, 2 % FS ¼" 0 to 50 ml/min (minimum), 0 to 20 L/min (maximum) 21.6 to 26.4 Vdc (F4H0020 23.5 to 26.4 Vdc) Detector: SUS316-10 to +50 C (F4H0020-10 to 40 ) -10 to +50 C (F4H0020-10 to 40 ) 0 to 5 Vdc, 1 to 5 Vdc, 4 to 20 ma Air, N2, Ar, O2, CO2, H2, He 1 % FS Excluding some models Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas IN OUT Thermal Rectification Micro Flow sensor F4H 19 s Selection Guide s Selection Guide 20

MPC Channel OUT IN Rectification unit Q : Mass flow Micro Flow sensor Proportioning solenoid valve Panel Mount Mass Flow Controller Model MPC The MPC is a highly reliable gas mass flow controller that uses the azbil Group Micro Flow sensor as its sensing element. The integration of the μf sensor and advanced channel design technology has achieved high accuracy and high rangeability at a low cost. 1/8" 0 to 0.5 L/min (minimum), 0 to 20 L/min (maximum) 22.8 to 25.2 Vdc Detector: brass (nickel-plated) -10 to +50 C -10 to +50 C 0 to 5 Vdc, 1 to 5 Vdc Pulse output (open collector) Air, N2, Ar, CO2 2 % FS Electromagnetic Differential Pressure D.P. for Steam and Gas Coriolis Mass Thermal Vortex Gas Thermal 21 s Selection Guide s Selection Guide 22