Electromagnetic flow meter MIM
volumefor liquidsstainless steel

Electromagnetic flow meter - MIM - KOBOLD INSTRUMENTATION - volume / for liquids / stainless steel
Electromagnetic flow meter - MIM - KOBOLD INSTRUMENTATION - volume / for liquids / stainless steel
Electromagnetic flow meter - MIM - KOBOLD INSTRUMENTATION - volume / for liquids / stainless steel - image - 2
Electromagnetic flow meter - MIM - KOBOLD INSTRUMENTATION - volume / for liquids / stainless steel - image - 3
Electromagnetic flow meter - MIM - KOBOLD INSTRUMENTATION - volume / for liquids / stainless steel - image - 4
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Characteristics

Technology
electromagnetic
Type
volume
Fluid
for liquids
Material
stainless steel
Communication
4-20 mA, analog output, digital output, with pulse output
Protection level
IP67
Applications
industrial
Other characteristics
digital, ultra-compact, with temperature sensor, with display, programmable, precision, with counting function, with indicator, electronic, bi-directional, economical
Volumetric flow rate

Max.: 350 l/min
(92.4602 us gal/min)

Min.: 0 l/min
(0 us gal/min)

Process temperature

Max.: 140 °C
(284 °F)

Min.: -40 °C
(-40 °F)

Process pressure

Max.: 16 bar
(232.06 psi)

Min.: 0 bar
(0 psi)

Description

Magnetic Inductive Flowmeter (Flow Meter) - All Metal - Stainless Steel - MIM Measuring range: 0.03 - 3 l/min ... 1.5 - 350 l/min liquids Accuracy: ±(0.8% of reading + 0.5% of FS) pmax: 16 bar tmax: +140°C Connection: G ½, G ¾, G 1, G 2, 2" NPT Material: stainless steel, PEEK Output: 2x analogue, pulse, frequency, alarm or IO-Link Input: 1x control input Options/Features: integrated PT1000, dosing function, rotatable TFT display, bidirectional measurement, part- and grand totalizer, stainless steel design, usable even with hand gloves The new flowmeter MIM was developed for measuring and monitoring smaller- and medium-sized flow of conductive liquids in pipes. The device operates according to the electromagnetic measurement principle. According to Faraday’s Law of magnetic induction a voltage is induced in a conductor moving through a magnetic field. The electrically conductive measuring agent acts as the moved conductor. The voltage induced in the measuring agent is proportional to the flow velocity and is therefore a value for the volumetric flow. The flowing media must have a minimum conductivity. The induced voltage is picked up by two sensing electrodes which are in contact with the measuring agent and sent to the measuring amplifier. The flow rate will be calculated based on the cross-sectional area of the pipe. The measurement is not depending on the process liquid and its material properties such as density, viscosity and temperature. Two given outputs can be set to be switch, analogue or frequency. Also a dosing function can be selected, where output 1 is set as switch NPN / PNP / PP and output 2 is set as control input.

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