NEMA17 2.6 kg Stepper Motor price
The NEMA17 2.6 kg cm 1.8 Degree Stepper Motor delivers a torque of 2.6 kg-cm with a current draw of 0.4A per phase. These motors are known for their precise, consistent step movements, making them the preferred choice for machines that require accurate position control.
With the assistance of Stepper Motor Drivers, the motor can either move or remain stationary at a designated position. The NEMA17 2.6 kg cm 1.8 Degree Stepper Motor demonstrates exceptional reaction to the starting, stopping and reversing signals sent by the driver.
This type of equipment is highly valuable in a range of uses, particularly those that require precise movements at a low speed. These applications include 3D printing, CNC routing and milling, camera stabilization systems, and XYZ plotting devices.
This brushless DC motor’s longevity is reliant on the durability of its bearings. Its position is controlled through a straightforward Open Loop mechanism, eliminating the need for intricate electronic circuits.
The motor’s shaft has been specially machined to ensure a solid grip with various components, such as pulleys and drive gears. This design feature prevents potential stalling or slipping issues. Please note that the NEMA17 Stepper Motor 72CM Detachable Cable is not included in this pack and must be purchased separately.
The NEMA17 2.6 kg cm 1.8 Degree Stepper Motor boasts a variety of impressive features, including:
- The input pulse determines the motor’s rotation angle.
- An impressive level of precision, typically within the range of 3 to 5% per step.
- It offers smooth initiation, cessation, and reversal.
- The motor’s control is more affordable due to the absence of intricate control circuits.
- The rate is directly linked to the frequency of the input pulses.
- Take note that the following paragraph has been rephrased to eliminate repetition while maintaining the same tone of voice.
- The dimensions and weight of the NEMA17 2.6 kg-cm Stepper Motor may deviate by up to ±2%.
- Improper installment can lead to resonances.
- Difficult to maneuver at exceedingly fast rates.
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