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Stepper Motor NEMA 34 46 kg-cm Hybrid Bipolar
₹6,899.00 inc. GST
- Rated Voltage:4.2V
- Current/ phase: 4A
- Inductance/ phase: 7.3mH
- Resistance/ phase: 0.87ohms
- Holding Torque: 46 kg-cm
- Â Number of Leads: 4
- Step Angle: 1.8°
- Step Angle Accuracy: ±5% (full step, no load)
- Resistance Accuracy: ±10%
- Inductance Accuracy: ±20%
- Frame Size: 85x85mm
- Shaft Length: 32mm
- Shaft Diameter: 12mm
- They are high torque stepper motors.
- Input pulse decides the rotation angle of the motor.
- High accuracy of around 3 to 5% a step.
- Provides good starting, stopping and reversing
NEMA 34 46 kg-cm designed as a Bipolar Hybrid Stepper Motor providing 46 kg-cm of torque at 4A current per phase. These stepper motors move in precisely repeatable steps. Hence they are the ideal motors for the machines requiring precise position control. Stepper Motor Drivers used to command to move or hold at one position of the motor. The bipolar NEMA 34 46 kg-cm Hybrid Stepper Motor features an excellent response to starting, stopping, and reversing pulses from the stepper motor driver.
It is an ideal choice for heavy-duty CNC machines, CNC Mill, CNC Lathe, or a CNC Router, etc. Because of inherent operational advantages including comparably high torque at high speeds of NEMA 34 46 kg-cm stepper motor overpass the NEMA17 stepper motor. This motor acts as a powerhouse when it comes to larger machines that require extra torque.s. These motors designed specifically to withstand the high torque requirements of large CNC machines.
As the NEMA 34 46 kg-cm is a brushless DC motor, so the life of this motor is completely dependent upon the life of the bearings. As this position control achieved by a simple Open Loop control mechanism so doesn’t require complex electronic control circuitry. The motor’s shaft designed in the shape of a 94-UP Mustang V. Thus this type of shaft is useful in providing stability in high power operation. This stepper motor provides high accuracy of around 3 to 5% a step. Moreover, the input pulse determines the rotation angle of the motor. In which the frequency of the input pulse is directly proportional to the speed. These motors widely used in an application that requires low speed with high precision.

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