Panasonic GV Reversible Brushless AC Motor, 50 W, 1, 3 Phase, 8 Pole, 100 V, 200 V

Nr. stoc RS: 127-0238Producator: PanasonicCod de producator: MBMU5AZAX
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Specificatii

Putere

50 W

AC Motor Type

Brushless

Tensiunea de alimentare

100 V, 200 V

Phase

1, 3

Output Speed

3000 rpm

Numar poli

8

Diametru ax

8mm

Lungime ax

30mm

Latime

59.5mm

Curent nominal

530 mA

Rotatie

Reversible

Lungime

80mm

Cuplu iesire maxim

0.16 Nm

Adancime

80mm

Dimensiuni

80 x 59.5 x 80 mm

Standarde

UL

Dimensiune celula

GV

Tara de origine

China

Detalii produs

MINAS-BL GV Series Motors and Amplifiers

The GV brushless motor series from Panasonic are compact and highly efficient motors and amplifiers with advanced controlling technology features. The split core structure reduces their size and weight but increases their output power compared with induction motors.
A permanent magnet on a rotor reduces secondary loss and increases efficiency helping to reduce power consumption. They can also reduce maintenance costs due to their commutatorless and brushless design.

Informatii indisponibile despre stoc

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Informatii indisponibile despre stoc

P.O.A.

Panasonic GV Reversible Brushless AC Motor, 50 W, 1, 3 Phase, 8 Pole, 100 V, 200 V

P.O.A.

Panasonic GV Reversible Brushless AC Motor, 50 W, 1, 3 Phase, 8 Pole, 100 V, 200 V
Informatii indisponibile despre stoc

Documente tehnice

Specificatii

Putere

50 W

AC Motor Type

Brushless

Tensiunea de alimentare

100 V, 200 V

Phase

1, 3

Output Speed

3000 rpm

Numar poli

8

Diametru ax

8mm

Lungime ax

30mm

Latime

59.5mm

Curent nominal

530 mA

Rotatie

Reversible

Lungime

80mm

Cuplu iesire maxim

0.16 Nm

Adancime

80mm

Dimensiuni

80 x 59.5 x 80 mm

Standarde

UL

Dimensiune celula

GV

Tara de origine

China

Detalii produs

MINAS-BL GV Series Motors and Amplifiers

The GV brushless motor series from Panasonic are compact and highly efficient motors and amplifiers with advanced controlling technology features. The split core structure reduces their size and weight but increases their output power compared with induction motors.
A permanent magnet on a rotor reduces secondary loss and increases efficiency helping to reduce power consumption. They can also reduce maintenance costs due to their commutatorless and brushless design.