Relative pressure transducer MPT263
strain gauge4-20 mAstainless steel

Relative pressure transducer - MPT263  - BCM SENSOR TECHNOLOGIES bv - strain gauge / 4-20 mA / stainless steel
Relative pressure transducer - MPT263  - BCM SENSOR TECHNOLOGIES bv - strain gauge / 4-20 mA / stainless steel
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Characteristics

Pressure type
relative
Technology
strain gauge
Output
4-20 mA
Material
stainless steel
Applications
melt, for extruders, for injection molding machines
Other characteristics
high-temperature
Pressure range

Min.: 0 bar
(0 psi)

Max.: 2,000 bar
(29,007.55 psi)

Precision

0.25 %, 0.5 %

Long-term stability

0.15 %

Process temperature

Min.: -40 °C
(-40 °F)

Max.: 400 °C
(752 °F)

Description

Model MPT263 melt pressure transducer or transmitter (MPT) is a combination of model MPT261 and MPT262 to measure both pressure and temperature of melt medium of high temperatures (up to 400 °C). Employing metal foil strain gauge (MfSG) from BCM SENSOR as its sensing element, the MPT263 sensor has its wetted parts and housing made from stainless steel (SS) in order to comply with the requirements of pressure medium of high temperatures and harsh working environment. As a result, the MPT-series sensors find their applications on injection moulding machines and extruders to monitor or measure both the pressures and temperatures of working medium in melt state. The MPT263 sensor measures both pressure and temperature simultaneously, and also have its rigid stem extended with an SS flexible extension so that the electronics housing can be kept away from high-temperature medium. An SS isolation diaphragm is located at the front end of its rigid stem and will be directly approached by melt pressure medium in applications. To avoid mechanical scratches, a specially designed alloy-coating is applied on the isolation diaphragm. Inside the rigid stem and the flexible extension, there is a capillary filled with nontoxic liquid-metal alloy which is not mercury and is able to genuinely transfers the medium pressure from the isolation diaphragm to an SS pressure diaphragm. The SS pressure diaphragm is located at the rear end of its rigid stem. On the backside of this pressure diaphragm there is a full bridge MfSG to convert deformation of the pressure diaphragm, which is induced by the measured pressure, into an electrical signal in millivolt.

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Pressure Measurement

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