MAD130B-0200-SA-M2-AG0-05-V1

MPN: R911315765

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The Bosch Rexroth Indramat MAD130B-0200-SA-M2-AG0-05-V1 motor, from the MAD IndraDyn A Motors series, features a frame size of 130 mm and utilizes natural cooling. It offers a rated power of 2.0 kW and a rated torque of 6.37 Nm. The motor is equipped with an IP65 protection class and a single-turn absolute encoder for precision.

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Product Description:

The MAD IndraDyn A Motor with product code MAD130B-0200-SA-M2-AG0-05-V1 is manufactured by Bosch Rexroth Indramat for high-performance automation tasks. This motor is suitable for various operations, and it is designed with a reinforced bearing to provide increased support against higher axial and radial mechanical stress.

This motor uses flange mounting to ensure stiff coupling with machinery to minimize misalignment and vibration under high-speed rotation. The MAD130B-0200-SA-M2-AG0-05-V1 motor runs at a rated speed of 2000 min⁻¹, which is ideal for quick motion control in precision applications. This motor has a rated power output of 16.8 kW, able to handle applications with high dynamic demands. At high operating conditions, this motor can support a maximum torque of 187.2 Nm to handle load-heavy processes. At the stationary state, this motor uses a constant current of 44.5 A, while its peak current capacity is at 80.8 A, which allows short bursts of high-load activity without any electrical or thermal compromise. The thermal time constant of 20 minutes provides this motor an effective heat dissipation through long-term operation cycles.

The MAD130B-0200-SA-M2-AG0-05-V1 motor accommodates a cycle interval (S6 - 44%) of 10 minutes, which indicates that it can provide peak performance in intermittent intervals without overheating. With a rotor moment of inertia of 0.084 kg·m², this motor’s responsive motion and mechanical stability help it to achieve precise speed and position control in servo applications. The vibration limits in this motor are specified by DIN EN 60034-14 to ensure less vibration transfer as well as enhanced longevity of attached components. This motor also has insulation class 155, according to DIN EN 60034-1, which ensures excellent thermal endurance and electrical insulation, especially during continuous operation at high temperatures.

Bearing type
Reinforced bearing
Continuous current at standstill
44.5 A
Cycle duration (S6 - 44%)
10 min
Insulation class according to DIN EN 60034-1
155
Maximum current
80.8 A
Maximum torque
187.2 Nm
Motor protection rating
IP 65
Mounting style
Flange mounting
Rated power
16.8 kW
Rated speed
2000 min-1
Rotor moment of inertia
0.084 kgm2
Thermal time constant
20 min
Vibration severity
According to DIN EN 60034-14
  • MAD130B0200SAM2AG005V1
  • mad130b-0200-sa-m2-ag0-05-v1
  • MAD130B 0200 SA M2 AG0 05 V1

Frequently Asked Questions about MAD130B-0200-SA-M2-AG0-05-V1:

Q: Why is a reinforced bearing used in the MAD130B-0200-SA-M2-AG0-05-V1 motor?

A: The reinforced bearing provides better load-handling under axial and radial forces. It extends durability during high-stress, continuous operation.

Q: How does flange mounting improve performance in this motor?

A: Flange mounting ensures stable positioning and minimizes vibration. This leads to more accurate motion and longer component life.

Q: What is the advantage of a 0.084 kg·m² rotor moment of inertia?

A: It enables fast acceleration and deceleration with precise control. This is especially useful in automation systems requiring quick positional changes.

Q: How does the insulation class 155 enhance safety?

A: It provides thermal resistance at higher operating temperatures. This reduces insulation breakdown and improves motor longevity.

Q: Why is a thermal time constant of 20 minutes important in MAD130B-0200-SA-M2-AG0-05-V1?

A: It indicates the motor’s ability to resist rapid temperature changes. This helps prevent thermal stress in high-frequency operations.


Internal Product Review

  • ‘‘The MAD130B-0200-SA-M2-AG0-05-V1 motor delivers 16.8 kW rated power with 187.2 Nm peak torque. This motor is ideal for dynamic systems requiring precise acceleration and controlled load handling. Its 0.084 kg·m² rotor inertia ensures responsive motion, and its thermal time constant of 20 minutes supports stable performance. ’’

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