103H8582-80E6

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The Sanyo Denki 103H8582-80E6 motor is part of the StepSyn Stepping Motors series, offering a basic step angle of 0.72°. It features a motor size of 86mm with a length of 85.8mm and a rated current per phase of 1 A. The motor's maximum holding torque is 2.1 N·m, and it has a mass of 1.34 kg.

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Product Description:

The 103H8582-80E6 Stepping Motor comes under the Sanyo Denki advanced motion control StepSyn Stepping Motors series and it delivers precision, reliability and efficiency. It is ideal for industrial automation applications as the series is known for consistent quality and seamless integration into modern systems.

The 103H8582-80E6 stepping motor includes an optical encoder, which uses light sensors to detect the position of the motor shaft which is often used for its high accuracy and reliability in position sensing. The optical shaft encoder used with the motor provides 500 pulses per revolution and is responsible for tracking the motor's position and providing feedback. The encoder runs on a 5-volt power supply to function properly and it helps to convert the mechanical movement into electrical signals for accurate control. It comes with a shaft that extends outward, which is used for coupling with mechanical systems. Five different colors of wires connected to the motor, each likely corresponding to a specific phase or control input/output. It consumes 1.5 amps of current per phase. The angle on which the motor's shaft rotates with each step is 0.72 degree that provides relatively high precision for controlling rotation, which is a key feature in applications where accurate incremental movement is required.

The 103H8582-80E6 stepping motor outer casing is black, which is primarily an aesthetic and protective detail. Its flange, which helps secure the motor to a mounting surface, is made of metal likely aluminum or steel which provides durability and strength for the motor’s assembly. It is equipped with a multi-pin connector, which makes it easier to interface with external control systems and handles power, phase and encoder signals all in one convenient connection.

Allowable Radial Load
220 N (49.5 lbs)
Allowable Thrust Load
60 N (13.5 lbs)
Basic Step Angle
0.72°
Connection Method
Pentagon
Holding Torque Range
2.06 to 6.17 N・m
Maximum Holding Torque
2.1 N·m
Motor Length
85.8 mm
Motor Mass
1.34 kg
Motor Size
86mm (3.39 inches)
Rated Current Per Phase
1 A
Rotor Inertia (dual Shaft)
0.84 x 10^-4 kg·m^2
Shaft Diameter
6.35 mm
Winding Inductance Per Phase
21.7 mH
Wiring Resistance Per Phase
10 Ω

Frequently Asked Questions about 103H8582-80E6:

Q: How does the optical encoder in the 103H8582-80E6 improve performance?

A: The optical encoder provides 500 pulses per revolution, allowing for precise position feedback. This ensures accurate motion control for complex systems.

Q: Why is the 103H8582-80E6 stepping motor’s 0.72-degree step angle important?

A: The 0.72-degree step angle provides high precision, essential for applications that require fine, incremental movements. It improves accuracy in position control.

Q: What is the purpose of the multi-pin connector in the 103H8582-80E6 motor?

A: The multi-pin connector simplifies integration by handling power, phase, and encoder signals. This reduces wiring complexity and improves ease of installation.

Q: How does the 1.5A current per phase in the 103H8582-80E6 affect its operation?

A: The 1.5A current per phase ensures sufficient power for stable operation. It balances efficiency and performance in demanding automation tasks.

Q: What role does the metal flange play in the 103H8582-80E6 motor?

A: The metal flange secures the motor to its mounting surface, providing stability. It ensures durability even in high-stress environments typical in industrial settings.


Internal Product Review

  • ‘‘The 103H8582-80E6 stepping motor from Sanyo Denki offers high precision with a 0.72-degree step angle. Its optical encoder delivers 500 pulses per revolution, ensuring reliable position feedback. With a durable metal flange and 1.5A current per phase, it provides stability and consistent performance.’’

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