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
brand-logo

Documente tehnice

Specificatii

Marca

ABB

FLC Motor Rating

0.2 → 32 A

Contact Current Rating

32 A

Raza actiune

DM Range

Serie

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

Incercati din nou mai tarziu

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

Serie

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