103H7521-7082

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The 103H7521-7082 StepSyn stepping motor features a 60 mm square frame, a step angle of 1.8°, a holding torque of 1.27 Nm, and a rated current per phase of 4 A. Designed by Sanyo Denki as part of their StepSyn Stepping Motors series, it offers lead wire connections and operates between -10°C to +50°C.

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Product Description:

The 103H7521-7082 is a robust step motor developed by Sanyo Denki for high-precision motion systems. It offers reliable, incremental movement through controlled electromagnetic pulses, allowing for meticulous positioning without the need for external feedback systems. The motor’s rotor moves in precise 1.8-degree increments with each input pulse. This fine resolution translates to 200 steps per full revolution, allowing for accurate and repeatable positioning. The small step angle is beneficial in applications that operate optimally on detailed motion control.

The 103H7521-7082 can maintain its position even when not rotating thanks to a robust 1.27 Nm holding torque. This torque level ensures that the motor can resist external forces without losing position, maintaining accuracy during pauses in motion. For strong speed and force delivery, the motor can withstand currents of up to 4A. This current level supports high-efficiency motion while maintaining thermal stability, making the motor reliable for continuous or high-duty-cycle applications. This unit features a 60 mm square frame, which provides a standardized and compact footprint suitable for integration into a wide range of equipment. The square shape ensures mechanical stability and even distribution of mounting stress, which contributes to smoother operation and reduced vibration during high-precision tasks.

This motor offers lead wire connections, which simplify the integration of the motor into a variety of control systems. Lead wires provide flexibility in wiring configuration, allowing for easy and direct electrical connections even in custom or retrofitted applications. The mass of the motor is a manageable 1.32 kg, offering a solid yet manageable build for integration into motion systems. This moderate weight provides a balance between structural robustness and ease of installation, simplifying the setup process.

Axial Play
0.075 mm max under 9N load
Bipolar Winding Type
Yes
Connection Type
Lead wire
Customization Options
Hollow Shaft modification, Encoder
Holding Torque At 2-phase Energization
1.27 Nm
Motor Size
60 mm sq. (2.36 inch square)
Operating Temperature
-10°C to +50°C
Radial Play
0.025 mm max under 4.4N load
Rated Current Per Phase
4 A
Rotor Inertia
7.5 x 10^-4 kg·m²
Step Angle
1.8°
Weight
1.32 kg
Winding Inductance Per Phase
1.2 mH
Winding Resistance Per Phase
0.45 Ω

Frequently Asked Questions about 103H7521-7082:

Q: What is the frame size of the 103H7521-7082 step motor?

A: The 103H7521-7082 step motor comes with a 60 mm square frame, offering a compact footprint that fits easily into various industrial equipment while providing structural rigidity.

Q: What is the step angle of the 103H7521-7082 step motor?

A: The 103H7521-7082 step motor features a 1.8° step angle, enabling fine-resolution positioning.

Q: What is the holding torque of the 103H7521-7082 step motor?

A: The 103H7521-7082 step motor delivers a holding torque of 1.27 Nm, ensuring stable shaft positioning when the motor is not moving, which helps maintain system accuracy.

Q: What is the current rating of the 103H7521-7082 step motor?

A: The 103H7521-7082 step motor is rated at 4 A, providing the necessary current capacity to deliver consistent torque output and support higher performance without overheating.

Q: What type of electrical connection does the 103H7521-7082 step motor use?

A: The 103H7521-7082 step motor uses lead wire connections, offering flexibility in wiring configurations and simplifying replacements or repairs in existing setups.


Internal Product Review

  • ‘‘The 103H7521-7082 step motor delivers smooth and consistent motion, making it ideal for applications that demand accuracy and repeatability. However, the lack of an integrated connector may require extra wiring effort during setup.’’

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