103-715-0213 Sanyo Denki
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The 103-715-0213 from Sanyo Denki's StepSyn Stepping Motors series features a step angle of 1.8° per step and weighs 1.34 kg. This motor has a holding torque of 2.1 Nm at 2-phase energization and a winding inductance per phase of 5.6 mH. Its rotor inertia measures 0.84 x 10^-4 kg·m^2 and it supports a unipolar winding type.
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Product Description:
The 103-715-0213 stepper motor functions in platforms where rotational steps need to be repeated accurately. It is built by Sanyo Denki which commits itself to creating industrial automation systems and modern technologies that provide drives and motors of the highest quality.
The 103-715-0213 stepper motor is a hybrid motor built to deliver consistent rotational steps of 1.8 degrees per pulse. It needs to start its function at a rated voltage of 1.7 V DC and draws a small value of current that is rated at 4.7 A per phase which aids in making it suitable for low-voltage and high-current drive systems. The motor features a standard frame size that aligns with NEMA 23 specifications and is found to be 56 mm square at the mounting flange. It internally uses electromagnetic coils to energize a toothed rotor which allows for accurate positional control without feedback devices. The housing includes a black metal rear cover with multiple ventilation holes to assist in dissipating heat generated during operation. Electrical connections are made through a black 6-pin power connector and an additional 4-pin white connector which is possibly used for sensor input or thermal monitoring.
The 103-715-0213 stepper motor needs a matched driver capable of handling the rated current and voltage to ensure smooth stepping. It is constructed with a specific insulation class by providing reliable thermal resistance under continuous working. Metal mounting brackets are secured around the body for installation with larger mechanical units. This stepper motor offers a dependable method for incremental rotation through direct electrical pulsing without the need for encoders. Its simple construction allows it to fit into a variety of motion-based applications.