ABB 16 → 20 A Motor Protection Circuit Breaker, 250 V dc, 690 V ac

Nr. stoc RS: 711-6486Producator: ABBCod de producator: 1SAM350000R1013 MS132-20
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Documente tehnice

Specificatii

Marca

ABB

Curent nominal

16 → 20 A

Motor Protection Component

Circuit Breaker

Tensiunea de alimentare

250 V dc, 690 V ac

Dimensiune celula

MS132

Lungime totala

97.8mm

Latime totala

45mm

Adancime totala

81.05mm

Temperatura minima de lucru

-25°C

Tensiune

250 V dc, 690 V ac

Temperatura maxima de lucru

+70°C

Breaking Capacity

100 kA

Numar poli

3

Tip terminal

Screw

Detalii produs

Manual Motor Starters

The ABB MS132 series of manual motor starters are compact highly reliable devices used to manually switch on and off motors. The MS132 series protects the motors reliably, without the need for a fuse, from short-circuits, overload and phase failures.

Informatii indisponibile despre stoc

Incercati din nou mai tarziu

Informatii indisponibile despre stoc

€ 130,32

Buc. (fara TVA)

€ 155,08

Buc. (cu TVA)

ABB 16 → 20 A Motor Protection Circuit Breaker, 250 V dc, 690 V ac

€ 130,32

Buc. (fara TVA)

€ 155,08

Buc. (cu TVA)

ABB 16 → 20 A Motor Protection Circuit Breaker, 250 V dc, 690 V ac
Informatii indisponibile despre stoc

Cumpara in pachete mari

CantitatePret unitar
1 - 4€ 130,32
5 - 9€ 119,69
10 - 24€ 112,64
25 - 49€ 105,69
50+€ 98,88

Documente tehnice

Specificatii

Marca

ABB

Curent nominal

16 → 20 A

Motor Protection Component

Circuit Breaker

Tensiunea de alimentare

250 V dc, 690 V ac

Dimensiune celula

MS132

Lungime totala

97.8mm

Latime totala

45mm

Adancime totala

81.05mm

Temperatura minima de lucru

-25°C

Tensiune

250 V dc, 690 V ac

Temperatura maxima de lucru

+70°C

Breaking Capacity

100 kA

Numar poli

3

Tip terminal

Screw

Detalii produs

Manual Motor Starters

The ABB MS132 series of manual motor starters are compact highly reliable devices used to manually switch on and off motors. The MS132 series protects the motors reliably, without the need for a fuse, from short-circuits, overload and phase failures.