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AM3053-0K01

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The AM3053-0K01 is a synchronous servomotor featuring a standstill torque of 11.60 Nm. Manufactured by Beckhoff, this motor is part of the AM Servo Motor Series and boasts a nominal voltage of 480 V AC. It delivers a peak torque of 42.6 Nm and has a rated speed of 4000 min-1 and a rotor moment of inertia of 9.120 kgcm².

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Product Description:

The Beckhoff AM3053-0K01 synchronous servomotor is a perfect example of precision coupled with the reliability required for the tough industrial usage. As a member of the AM Servo Motor Series, this motor is specially designed to run smoothly at a standard voltage of 480 V AC, thus, suitable for use in industrial power supplies. The AM3053-0K01 offers a high standstill torque of 11.60 Nm necessary in position sensitive load applications. This motor features an impressive maximum torque of 42.6 Nm, which is an ideal force to meet dynamic operational and inconsistent load demand. The rated speed of 4000 min⁻¹ also demonstrates its suitability for high-speed processes that require quick cycling, such as acceleration and deceleration in automated procedures.

Besides, AM3053-0K01 has a rotor moment of inertia of 9.120 kgcm², making the motor highly sensitive to control signals controlling detailed applications such as robotics and computer numerical control (CNC) machines. The motor is provided with a convection cooling system in order to minimize operating temperatures and improve the reliability and performance of the motor when it is in constant use. The feedback is served through refined networks such as resolver, BiSS B, EnDat 2.1 since precision in position and speed is critical in many applications.

The AM3053-0K01 has a standstill current of 9.40 A and, at the peak current of 47.0 A, is designed to meet different requirements for operations. The torque constant of 1.24 Nm/A means that it has very high torque relative to the current input, therefore it is suitable for energy efficient applications. The motor uses the M23 connection method, which makes its connection with different controllers easily possible, thus making it compatible with different types of automation systems.

Ambient Temperature (operation)
+5…+40 °C
Connection Method
M23
Cooling
convection
Motor Feedback
resolver, BiSS B, EnDat 2.1
Motor Type
synchronous servomotors
Nominal Voltage
480 V AC
Peak Current
47.0 A
Peak Torque
42.6 Nm
Rated Power
3.20 kW
Rated Speed
4000 min-1
Rated Torque
7.65 Nm
Rotor Moment Of Inertia
9.120 kgcm²
Standstill Current
9.40 A
Standstill Torque
11.60 Nm
Torque Constant
1.24 Nm/A

Frequently Asked Questions about AM3053-0K01:

Q: What voltage does the Beckhoff AM3053-0K01 motor operate on?

A: The motor operates on a standard voltage of 480 V AC.

Q: What is the maximum torque output of this motor?

A: The AM3053-0K01 can produce a maximum torque of 42.6 Nm, making it suitable for heavy load applications.

Q: What is the rated speed of the AM3053-0K01?

A: The motor has a rated speed of 4000 min⁻¹, ideal for high-speed automated processes.

Q: Which feedback systems are compatible with this motor?

A: The motor supports resolver, BiSS B, and EnDat 2.1 feedback systems for precision control.

Q: How does the motor manage heat during long operational hours?

A: The AM3053-0K01 utilizes a convection cooling system to maintain optimal operating temperatures during continuous use.


Internal Product Review

  • ‘‘The AM3053-0K01 from Beckhoff offers powerful, reliable performance for demanding industrial applications. With a rated speed of 4000 min⁻¹ and a maximum torque of 42.6 Nm, this motor is built for dynamic tasks requiring precise control over speed and force. It excels in high-speed processes like automation and robotics, where quick cycling and sensitive control are essential. The motor's convection cooling system ensures it remains operational during extended use, while feedback systems like resolver, BiSS B, and EnDat 2.1 provide accurate real-time data. Its energy efficiency and flexible M23 connection make it an excellent choice for a range of automated systems.’’

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