MS2N04-C0BNN-AMDL1-NNNNN-NN

MPN: R911399144

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The Bosch Rexroth Indramat MS2N04-C0BNN-AMDL1-NNNNN-NN is a high-performance servomotor with a maximum speed of 6000 rpm and a maximum torque of 12.6 Nm. It features a low inertia rotor for dynamic applications and an absolute multiturn encoder for precise positioning. The motor is self-cooling and has a keyed shaft.

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Product Description:

Bosch Rexroth Indramat manufactured the MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor. One of the standout features of this servomotor is its impressive rotational speed, which can reach a maximum of 6000 revolutions per minute (rpm). This high-speed capability allows for rapid and precise movements, making it suitable for applications requiring dynamic motion control. The motor achieves this speed while delivering a continuous torque of 2.70 Nm at 60K and 3.35 Nm at 100K, indicating its ability to maintain consistent power output across a range of operating conditions. However, this high performance comes with a demand for electrical current. The motor draws 1.85 A at 60K and 2.30 A at 100K, reaching a maximum current of 9.7 A. The motor's low inertia rotor, quantified by a moment of inertia of 0.00016 kgm2, is central to its performance. A low moment of inertia means the rotor requires less torque to accelerate or decelerate, contributing to its dynamic response and efficiency.

The integrated absolute multiturn encoder further enhances its precision. This encoder provides high-accuracy feedback on the rotor's position, allowing for precise movement control. The "M" designation in the specifications indicates that this encoder is a multiturn, absolute type with a resolution of 4,096 revolutions. This means it can track the rotor's position over multiple rotations, not just within a single revolution. The servomotor utilizes a keyed shaft, denoted by the "L" in the specifications, which ensures secure and reliable mounting in various industrial applications. This type of shaft prevents slippage or misalignment during operation, maintaining the integrity of the mechanical connection and ensuring consistent power transmission.

For electrical connection, the motor employs an M17 double plug, which is turnable, offering flexibility in installation and wiring. This "D" type connection allows for easy integration into different system configurations. The MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor is designed for self-cooling, eliminating the need for external cooling systems in many applications. This "N" type cooling simplifies installation and reduces maintenance requirements. The motor's winding, designated as "A," is optimized for a nominal speed of 1,000 min^-1. This indicates that the motor is designed to operate most efficiently around this speed, although it can achieve much higher speeds as needed.

Continuous torque (100K)
3.35 Nm
Continuous torque (60K)
2.70 Nm
Cooling type
N (Self-cooling)
Current (100K)
2.30 A
Current (60K)
1.85 A
Electrical connection
D (M17 double plug, turnable)
Encoder design
M (Multiturn, absolute 4,096 revolutions)
Encoder performance
A (BASIC: 16 signal periods, analog, Hiperface)
Maximum current
9.7 A
Maximum torque
12.6 Nm
Moment of inertia
0.00016 kgm^2
Rotational speed (max)
6000 min^-1
Rotor inertia
Low inertia
Shaft
L (Keyway, no shaft seal)
Winding
A (for 1,000 min^-1)
  • MS2N04C0BNNAMDL1NNNNNNN
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Frequently Asked Questions about MS2N04-C0BNN-AMDL1-NNNNN-NN:

Q: What is the significance of the keyed shaft in the MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor?

A: The keyed shaft ensures secure and reliable mounting in various industrial applications, preventing slippage or misalignment.

Q: What type of encoder is used in the MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor?

A: The servomotor features an absolute multiturn encoder with 4,096 revolutions, ensuring precise positioning.

Q: What is the maximum torque of the MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor?

A: The maximum torque of this servomotor is 12.6 Nm, providing high performance in dynamic applications.

Q: How does the MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor handle cooling?

A: The motor is self-cooling, eliminating the need for additional cooling systems in many applications.

Q: What is the rotor inertia of the MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor?

A: The rotor inertia of this servomotor is low, which improves dynamic response and makes it ideal for applications requiring fast acceleration and deceleration.


Internal Product Review

  • ‘‘The MS2N04-C0BNN-AMDL1-NNNNN-NN servomotor provides high performance in a compact package. The combination of a low inertia rotor and high-resolution encoder ensures excellent dynamic response and accuracy. Versatile connectivity options enhance its suitability for various applications. However, users should consider the motor's relatively high maximum current when selecting drive components.’’

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