Process Control Instruments, Field Devices and Industrial Automation
ENDRESS+HAUSER 9B2B80-AAAACA1W0W1 (1)
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EH Proline Prosonic Flow B200 Ultrasonic Flowmeter for biogas measurement with loop-powered technology. 1 to 30 m/s measuring range. DN 80 Nominal Diameter. IP66/IP67. Aluminum (AlSi10Mg) housing. Includes 4-20ma and switch outputs. Optional 4-line backlit display. ATEX, IECEx, cCSAus, NEPSI and INMETRO approvals.

Part# with Options:        9B2B80-AAAACA1W0W1
Price with Options:        Please Email us your request for quote   

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Approval
(1) Approval for EH Prosonic Flow B200
Output/Input
(2) Output/Input for EH Prosonic Flow B200
Display & Operation
(3) Display & Operation for EH Prosonic Flow B200
Housing
(4) Housing for EH Prosonic Flow B200
Electrical Connection
(5) Electrical Connection for EH Prosonic Flow B200
Sensor Version
(6) Sensor Version for EH Prosonic Flow B200
Process Connection
(7) Process Connection for EH Prosonic Flow B200
Calibration Flow
(8) Calibration Flow for EH Prosonic Flow B200

  Availability 3 Weeks  ]

Application
  • The measuring principle is unaffected by gas composition
  • Inline flowmeter for wet biogas, digester and landfill gas under fluctuating process conditions
Device properties
  • Multivariable device: flow, temperature and methane
  • Medium temperature: 0 to 80 C (32 to 176 F)
  • Process pressure: 0.7 to 11 bar a (10.2 to 159 psi a)
  • Loop-powered technology
  • Robust two-chamber housing
  • Plant safety: worldwide approvals
Your benefits
  • Integrated real-time methane fraction measurement
  • Optimized for low pressure gas specialized sensor design
  • No additional pressure loss full bore design
  • Process transparency diagnostic capability
  • Convenient device wiring separate connection compartment
  • Safe operation no need to open the device due to display with touch control, background lighting
  • Integrated verification Heartbeat TechnologyTM
Measuring principle

A Proline Prosonic Flow ultrasonic flowmeter measures the flow rate of the passing fluid by using sensor pairs located on opposite sides of the meter body and at an angle so that one of the sensors in the pair is slightly mounted downstream. The design is non-invasive and does not have any moving parts.

The flow signal is established by alternating an acoustic signal between the sensor pairs and measuring the transit time of each transmission. Then utilizing the fact that sound travels faster with the flow versus against the flow, this differential time (D T) can be used to determine the fluids velocity between the sensors.

The volume flow rate is established by combining all the flow velocities determined by the sensor pairs with the cross sectional area of the meter body and extensive knowledge about fluid flow dynamics. The design of the sensors and their position ensures that only a short straight run of pipe upstream of the meter is required after typical flow obstructions such as bends in one or two planes.

Advance digital signal processing facilitates constant validation of the flow measurement reducing susceptibility to multiphase flow conditions and increases the reliability of the measurement.

Measuring Principle Ultrasonic flow
Product headline The device for accurate, reliable biogas measurement with loop‐powered technology. Integrated real‐time methane fraction measurement. Inline flowmeter designed for wet biogas and digester gas under fluctuating process conditions.
Sensor features Optimized for low pressure gas specialized sensor design. No additional pressure loss full bore design. Process transparency diagnostic capability. Multivariable device: flow, temperature and methane. Medium temperature: 0 to 80 C (32 to 176 F).
Transmitter features Convenient device wiring separate connection compartment. Safe operation no need to open the device due to display with touch control, background lighting. Integrated verification Heartbeat Technology. Loop‐powered technology. Robust dual-compartment housing.
Nominal diameter range Single‐path version: DN 50 (2"), DN 80 (3")
Two‐path version: DN 100 to 200 (4 to 8")
Wetted materials Sensor: 1.4404/1.4435 (316L)
Transducer: HNBR
Temperature sensor (option): AFM 34
Measured variables Volume flow, corrected volume flow, corrected methane volume flow, energy flow, methane fraction, calorific value, temperature
Max. measured error Volume flow (standard):
‐ 1.5 % o.r. for 3 to 30 m/s (9.84 to 98.4 ft/s)
‐ 3 % o.r. for 1 to 3 m/s (3.28 to 9.84 ft/s)
Volume flow (option):
‐ 0.1 % o.f.s. for 0.3 to 1 m/s (0.98 to 3.28 ft/s)
‐ 1.5 % o.r. for 1 to 30 m/s (3.28 to 98.4 ft/s)
Measuring range Standard: 1 to 30 m/s (3.28 to 98.4 ft/s)
Option: 0.3 to 30 m/s (0.98 to 98.4 ft/s)
Max. process pressure 11 bar a (159 psi a)
Medium temperature range 0 to +80 C (+32 to +176 F)
Ambient temperature range Flange material carbon steel: 10 to +60 C (+14 to +140 F)
Flange material stainless steel: 40 to +60 C (40 to +140 F)
Transmitter housing material AlSi10Mg, coated; 1.4404 (316L)
Degree of protection IP66/67, type 4X enclosure
Display/Operation 4‐line backlit display with touch control
(operation from outside)
Configuration via local display and operating tools possible
Outputs 4‐20 mA HART (passive)
4‐20 mA (passive)
Pulse/frequency/switch output (passive)
Inputs Current input 4‐20 mA (passive)
Digital communication HART
Power supply DC 12 to 35 V (4‐20 mA HART with/without pulse/frequency/switch output)
DC 12 to 30 V (4‐20 mA HART, 4‐20 mA)
DC 12 to 35 V (4‐20 mA HART, pulse/frequency/switch output, 4‐20 mA input)
DC 9 to 32 V (PROFIBUS PA, pulse/frequency/switch Output)
Hazardous area approvals ATEX, IECEx, cCSAus, NEPSI, INMETRO
Metrological approvals and certificates Calibration performed on accredited calibration facilities (acc. to ISO/IEC 17025)
Pressure approvals and certificates PED
Material certificates 3.1 material (wetted parts)

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