Tehnilised dokumendid
Spetsifikatsioonid:
Minimum Pressure Reading
0bar
Maximum Pressure Reading
10bar
Accuracy
±0.1 %
Output Type
Analogue
Media Measured
Air, Corrosive Fluid, Fresh Water, Hydraulic Oil, Sea Water
Process Connection
G1/4
Analogue Output
4 → 20 mA
Electrical Connection
M12 3-Pin Connector
Response Time
<2 ms
Maximum Current
<20 mA
Supply Voltage
12 V dc, 24 V dc
Housing Material
Aluminium Oxide Ceramic, Stainless Steel
Minimum Operating Temperature
-15°C
Mounting Type
Thread Mount
IP Rating
IP66, IP67
Maximum Operating Temperature
+85°C
Päritoluriik
Switzerland
Toote üksikasjad
OsiSense XMLG Electronic Pressure Sensors
Schneider Electric XMLG pressure transmitters and pressure switches feature a ceramic pressure measuring cell. The deformation caused by the pressure is transmitted to the resistors of a Wheatstone bridge silk-screened on the ceramic. The change in resistance is then processed by the integrated electronics, providing either a digital or analog output signal.
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Palun kontrollige hiljem uuesti.
€ 245,92
tk (ilma käibemaksuta)
€ 300,02
tk (koos käibemaksuga)
1
€ 245,92
tk (ilma käibemaksuta)
€ 300,02
tk (koos käibemaksuga)
1
Tehnilised dokumendid
Spetsifikatsioonid:
Minimum Pressure Reading
0bar
Maximum Pressure Reading
10bar
Accuracy
±0.1 %
Output Type
Analogue
Media Measured
Air, Corrosive Fluid, Fresh Water, Hydraulic Oil, Sea Water
Process Connection
G1/4
Analogue Output
4 → 20 mA
Electrical Connection
M12 3-Pin Connector
Response Time
<2 ms
Maximum Current
<20 mA
Supply Voltage
12 V dc, 24 V dc
Housing Material
Aluminium Oxide Ceramic, Stainless Steel
Minimum Operating Temperature
-15°C
Mounting Type
Thread Mount
IP Rating
IP66, IP67
Maximum Operating Temperature
+85°C
Päritoluriik
Switzerland
Toote üksikasjad
OsiSense XMLG Electronic Pressure Sensors
Schneider Electric XMLG pressure transmitters and pressure switches feature a ceramic pressure measuring cell. The deformation caused by the pressure is transmitted to the resistors of a Wheatstone bridge silk-screened on the ceramic. The change in resistance is then processed by the integrated electronics, providing either a digital or analog output signal.