"differential pressure transmitter 4 20ma"
BP93420DII Differentiële drukzender voor de aardolie- en chemische industrie Mini-differentiële druksensor
BP93420DII Differential Pressure Transmitter for Petroleum and Chemical Industries BP93420DII Differential Pressure Transmitter Introduction of differential pressure transmitter: BP93420DII differential pressure transmitter uses diffused silicon piezoresistive sensor.When the pressure difference of the measured medium is located on the corrugated diaphragm on both sides of the sensor, the signal output by the Wheatstone bridge of the sensor chip has a good linear relationship
BP93420D-II Olie-water differentiële druktransmittersensor met DIN-niveausensor
BP93420D-II oil water differential pressure transmitter sensor with DIN BP93420DII Differential Pressure Transmitter Introduction: BP93420DII differential pressure transmitter using diffusion silicon pressure resistance sensor.When pressure difference of the measured medium corrugated diaphragm on opposite sides of the sensor, the sensor chip wheatstone bridge output signal had good linear relationship with the pressure difference, can accurately measure the pressure
304 Roestvrijstalen Drukverschilzender met 0,25% Nauwkeurigheid en IP65 Bescherming voor Water- en Oliedruksensor
Uiterst nauwkeurige 304 roestvrijstalen drukverschiltransmitter voor water, olie, gas en vloeistoffen. Beschikt over een nauwkeurigheid van 0,25%, IP65-classificatie, 4-20 mA-uitvoer en aangepaste opties. Ideaal voor de aardolie-, chemische en energie-industrie.
Bp93420d-I Differentiële druktransmitter 500pa Luchtdruktransmitter
500PA PLASTIC HOUSING AIR PRESSURE DIFFERENTIAL PRESSURE TRANSMITTER BP93420D-I Differential pressure transmitter Product Features: BP93420DI is a differential pressure transmitter that utilizes the piezoresistive effect of semiconductor silicon material to convert differential pressure into an electrical signal. It is mainly used for measuring small differential pressures of non-corrosive dry gases, suitable for applications in industries such as boiler air supply,
Hoogprecisie-oliegevulde differentialdrukomvormer Differentialdrukzender
BP93420DII Differential Pressure Transmitter Introduction of differential pressure transmitter : BP93420DII High precision oil filled differential pressure transmitter uses a piezoresistive diffused silicon sensor. It uses multi-point calibration of the sensor's temperature, linearity, hysteresis and repeatability through digital compensation technology. Digital compensation enhances the performance and reliability of pressure transmitters by leveraging advanced algorithms
OEM-differentialdruktransmitter Hoogprecisie-oliegevulde differentialdrukomvormer
BP93420DII Differential Pressure Transmitter Introduction of differential pressure transmitter : BP93420DII High precision oil filled differential pressure transmitter uses a piezoresistive diffused silicon sensor. It uses multi-point calibration of the sensor's temperature, linearity, hysteresis and repeatability through digital compensation technology. Digital compensation enhances the performance and reliability of pressure transmitters by leveraging advanced algorithms
Digitale LCD-differentiële drukzender met Wheatstone-brug voor industriële toepassingen
3051 Aluminum Alloy Digital LCD Ex-proof Differential Pressure Sensor Transmitter Product Description Liquid Pressure Difference pressure sensor TransmitterBP93420DII Differential Pressure Transmitter Introduction The BP93420DII differential pressure transmitter utilizes a piezoresistive diffused silicon sensor. When differential pressure from the measured medium acts on the sensor's corrugated diaphragms, the Wheatstone bridge output signal maintains excellent linearity with
Aluminium Kast Drukverschil Zender met 0,5% Nauwkeurigheid IP65 Bescherming en Aanpasbare Opties Drukverschil Lucht Sensor
De BP93420D-I drukverschiltransmitter biedt een nauwkeurigheid van 0,25%, IP65-bescherming en een robuuste 316L-constructie. Aanpasbare bereiken (500Pa-200kPa) en uitgangen voor industriële gas-/vloeistoftoepassingen. Intrinsiek veilige, betrouwbare prestaties met OEM/ODM-ondersteuning.
BP93420DI Drukverschilzender IP65 Bescherming En Roestvrijstalen Structuur Voor Lucht- En Gas Drukverschilsensor
De drukverschiltransmitter BP93420DI biedt een nauwkeurigheid van 0,25%, IP65-bescherming en een roestvrijstalen constructie. Aanpasbare bereiken (500Pa-200kPa), intrinsiek veilig, ideaal voor monitoring van industriële gas-/vloeistofpijpleidingen in de aardolie-, chemische en energiesector.
High Accuracy ±0.1% Differential Pressure Transmitter with Wide Temperature Range -40-85℃ and 300% Overload Pressure
Baoji Hengtong Diffused Silicon Differential Water Pressure Transmitter BP93420DII Differential Pressure Transmitter The BP93420DII differential pressure transmitter utilizes a piezoresistive diffused silicon sensor. When differential pressure acts on the sensor's diaphragms, the Wheatstone bridge output provides accurate linear measurement. Ideal for gas and liquid differential pressure measurement in petroleum, chemical, power, and hydrology industries. Product Features
Capaciteit Type Differentialdruktransmitter Hoogprecisie Differentialdruk Dp
HT3351 HIGH PRECISION CAPACITIVE DIFFERENTIAL  differential PRESSURE TRANSMITTER S Introduction of Differential pressure transmitter: ST3351 Series Digital•Intelligent Pressure/Differential Pressure Transmitter is a multipurpose digitalized intelligent instrument devel oped by us, including capacitance pressure /differential pressure transmitter and direct-coupled pressure/fluid level transmitter. It is made on the basis of the mature and dependable sensing technology,
Capacitieve drukdifferentiële zender met insteekbare of rechtstreeks verbonden drukdifferentiële sensor
Capacitive Differential Pressure Transmitter with Plug-in or Direct Connection HT3351 Differential Pressure Transmitter Introduction of capacitive differential pressure transmitter : The HT3351 capacitive differential pressure sensor transmitter operates by detecting changes in capacitance value resulting from pressure differences, and then converting the analog signal into a digital signal through AD conversion. The microprocessor processes the digital signal and sends it to