103H7123-3742

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The 103H7123-3742 stepping motor by Sanyo Denki features a 56 mm flange and delivers 1 Nm holding torque. Its bipolar wiring ensures precise 1.8° step angle control.

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Product Description:

The Sanyo Denki 103H7123-3742 Stepping Motor features a compact 56 mm motor flange and a single D shaped output shaft. This motor delivers reliable performance for precise positioning applications in various industrial systems.

The 103H7123-3742 stepping motor offers a holding torque of 1 Nm that ensures stable operation under load. It operates with a rated current of 2 A per phase that is suitable for moderate power demands. The motor length is 53.8 mm that supports installations with space limitations. Its rotor inertia is rated at 0.21 ×10⁻⁴ kg·m². The motor provides a basic step angle of 1.8° to enable precise control of rotational positioning. It enhances torque efficiency and reduces vibration with a bipolar wiring configuration. The connection type of this motor is a lead wire design with a durable six pin connector for secure electrical contact. It uses high quality insulated wiring to ensure safe and efficient current flow. The motor's output shaft is D shaped that offers a reliable connection for couplings and mechanical assemblies. Its operating humidity range is 20 % to 90 % RH non condensing. The StepSyn series stepping motor housing is constructed from robust materials that provides mechanical durability and effective heat dissipation.

The 103H7123-3742 stepping motor is engineered for consistent performance over extended operating cycles. Its compact design facilitates integration into systems requiring minimal space while maintaining high precision. Its bipolar configuration optimizes step accuracy and minimizes heat generation. Its sturdy build reduces the risk of mechanical failure under continuous use. Its efficient current rating minimizes energy consumption while maintaining output torque. This stepping motor is highly compatible with modern motor drivers and control systems. Its connector ensures secure and reliable electrical connections even in vibration-prone environments.

Basic Step Angle
1.8°
Current
10A
Efficiency
85%
Frequency
50Hz
Holding Torque
1 Nm
Motor Flange Size
56 mm
Motor Length
53.8 mm
Output Shaft Type
Single D Shaped Shaft
Power
2.3kW
Rated Current per Phase
2 A per phase
Rotor Inertia
0.21 × 10⁻⁴ kg·m²
Voltage
230V
Wiring Configuration
Bipolar

Frequently Asked Questions about 103H7123-3742:

Q: Does the Sanyo Denki 103H7123-3742 motor handle high precision in tight spaces?

A: Yes, the 103H7123-3742 stepping motor features a compact 53.8 mm length for space-constrained setups. It also provides a 1.8° step angle for precise motion control.

Q: Can the 103H7123-3742 stepping motor maintain torque stability under continuous load?

A: Yes, it delivers a constant 1 Nm holding torque for stable performance under load. This ensures mechanical assemblies remain aligned during extended operation.

Q: How does the Sanyo Denki 103H7123-3742 reduce heat and vibration during operation?

A: It uses a bipolar wiring configuration that enhances torque efficiency and minimizes vibration. This design also helps reduce heat generation during long operating cycles.

Q: Will the 103H7123-3742 stepping motor ensure secure electrical connections under vibrations?

A: Yes, it features a durable six pin lead wire connector that maintains stable electrical contact. This prevents disconnection even in vibration-intensive industrial environments.

Q: Does the Sanyo Denki 103H7123-3742 motor support efficient power usage?

A: Yes, it operates at a rated current of 2 A per phase suitable for moderate power demands. This ensures efficient current flow without excessive energy consumption.


Internal Product Review

  • ‘‘The Sanyo Denki 103H7123-3742 stepping motor excels with its 1 Nm holding torque and precise 1.8° step angle. The motor minimizes vibration and heat generation. Its durable six-pin connector ensures stable electrical connections. The compact 53.8 mm motor length optimizes space usage effectively.’’

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