Controlador de motor paso a paso Sanyo Denki DB22M162S-01, 2 A Bipolar, 24V dc, 88 x 60 x 60mm

Código de producto RS: 167-162Marca: Sanyo DenkiNúmero de parte de fabricante: DB22M162S-01
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Documentos Técnicos

Especificaciones

Valor Nominal de Corriente

2 A

Longitud Global

88mm

Anchura Total

60mm

Profundidad total

60mm

País de Origen

Japan

Datos del producto

0.9° and 1.8° Hybrid Stepper Motors

1.8° Step Angle,The motors are directly compatible with the stepper motor drive boards and also drive either motor (if required) in the half step mode i.e. 0.9° per step resulting in higher resolution, greater performance stability and faster stepping rates. Direction, velocity, acceleration/deceleration can be controlled by a stepper motor controller.,Applying the correct electrical pulse sequence to the windings of the stepper motor results in a 1.8° step angle rotation of the spindle (i.e. 200 steps per revolution). When correctly loaded and driven these motors will produce discrete output steps. The number of steps and speed of rotation are determined by the number of pulses and frequency of the input signal. This provides an ideal method for speed and position control. The motors are directly compatible with stepper motor drive boards.,Applications include:

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P.O.A.

Controlador de motor paso a paso Sanyo Denki DB22M162S-01, 2 A Bipolar, 24V dc, 88 x 60 x 60mm

P.O.A.

Controlador de motor paso a paso Sanyo Denki DB22M162S-01, 2 A Bipolar, 24V dc, 88 x 60 x 60mm
Información de stock no disponible temporalmente.

Documentos Técnicos

Especificaciones

Valor Nominal de Corriente

2 A

Longitud Global

88mm

Anchura Total

60mm

Profundidad total

60mm

País de Origen

Japan

Datos del producto

0.9° and 1.8° Hybrid Stepper Motors

1.8° Step Angle,The motors are directly compatible with the stepper motor drive boards and also drive either motor (if required) in the half step mode i.e. 0.9° per step resulting in higher resolution, greater performance stability and faster stepping rates. Direction, velocity, acceleration/deceleration can be controlled by a stepper motor controller.,Applying the correct electrical pulse sequence to the windings of the stepper motor results in a 1.8° step angle rotation of the spindle (i.e. 200 steps per revolution). When correctly loaded and driven these motors will produce discrete output steps. The number of steps and speed of rotation are determined by the number of pulses and frequency of the input signal. This provides an ideal method for speed and position control. The motors are directly compatible with stepper motor drive boards.,Applications include: