ABB DMPO Electronic Overload Relay, 0.2 → 32 A F.L.C, 32 A Contact Rating, 240 V, DM Range

Nr. stoc RS: 198-4993Producator: ABBCod de producator: DMPO230L000
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Specificatii

Marca

ABB

FLC Motor Rating

0.2 → 32 A

Contact Current Rating

32 A

Raza actiune

DM Range

Dimensiune celula

DMPO

Montare

DIN Rail Mount, Surface Mount

Reset Method

Automatic, Manual, Remote

Tip terminal

Screw

Latime

66mm

Adancime

116mm

Lungime

84mm

Temperatura maxima de lucru

+60°C

Temperatura minima de lucru

-10°C

Temperatura de lucru

-10 → +60 °C

Tensiunea de alimentare

220 V ac

Control Voltage

240 V

Detalii produs

Electronic Overload Relay with Integral CTs

Protection of 3-phase loads e.g. cage induction motors.They monitor current flowing in 2 of the 3 lines and in the event of an overload condition the output relay will de-energise after a time delay inversely proportional to the overcurrent. The units will tolerate a wide (> 2:1) variation in supply voltage without loss of performance

Informatii indisponibile despre stoc

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Informatii indisponibile despre stoc

P.O.A.

ABB DMPO Electronic Overload Relay, 0.2 → 32 A F.L.C, 32 A Contact Rating, 240 V, DM Range

P.O.A.

ABB DMPO Electronic Overload Relay, 0.2 → 32 A F.L.C, 32 A Contact Rating, 240 V, DM Range
Informatii indisponibile despre stoc

Documente tehnice

Specificatii

Marca

ABB

FLC Motor Rating

0.2 → 32 A

Contact Current Rating

32 A

Raza actiune

DM Range

Dimensiune celula

DMPO

Montare

DIN Rail Mount, Surface Mount

Reset Method

Automatic, Manual, Remote

Tip terminal

Screw

Latime

66mm

Adancime

116mm

Lungime

84mm

Temperatura maxima de lucru

+60°C

Temperatura minima de lucru

-10°C

Temperatura de lucru

-10 → +60 °C

Tensiunea de alimentare

220 V ac

Control Voltage

240 V

Detalii produs

Electronic Overload Relay with Integral CTs

Protection of 3-phase loads e.g. cage induction motors.They monitor current flowing in 2 of the 3 lines and in the event of an overload condition the output relay will de-energise after a time delay inversely proportional to the overcurrent. The units will tolerate a wide (> 2:1) variation in supply voltage without loss of performance