MAD130D-0250-SA-S0-BP0-35-N1

MPN: R911316044

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The MAD130D-0250-SA-S0-BP0-35-N1 from Bosch Rexroth Indramat's MAD IndraDyn A Motors series is a servo motor with a frame size of 130 mm. This motor delivers 2.5 kW of rated power and operates at a rated speed of 3000 rpm. It features natural cooling, flange mount design, and an IP65 protection class.

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Product Description:

The MAD130D-0250-SA-S0-BP0-35-N1 belongs to the MAD servo motor series produced by Bosch Rexroth. Bosch Rexroth designs these motors to deliver consistent performance, making them suitable for use in applications that demand accuracy, reliability and structured mechanical integration.

The MAD130D-0250-SA-S0-BP0-35-N1 Servo Motor cycle duration is defined under S6 - 44% with a 10-minute operational window that allows intermittent duty operation. It is designed with both flange and foot mounting options due to which it provides enhanced flexibility for integration into a wide range of mechanical configurations. Because of its rated current of 72 amperes, it maintains energy efficiency under continuous use. It adheres to DIN EN 60034-14 with a Class A vibration classification, which validates its capability to maintain smooth and stable mechanical behavior during operation. It can efficiently work in medium to high load applications as it has a rated power of 31.40 kW. It is featured with axial fan blowing cooling mode that helps maintain operating temperature during extended periods of use. The holding brake is not included in this model that makes it suitable for systems where braking is handled externally or where the system remains balanced by gravity. Its shaft incorporates a sealing ring and is dynamically balanced with the entire key which enhances mechanical stability and ensures smooth torque delivery during operation.

The MAD130D-0250-SA-S0-BP0-35-N1 servo motor maximum speed is 10,000 revolutions per minute with bearing type H that enables fast rotational operation without compromising bearing integrity. It is equipped with standard bearing, due to which it can handle the mechanical stresses commonly encountered during standard duty cycles. Its length is defined as D that matches the size and winding configuration and its frame size is 130 that aligns with mid-range power class requirements.

Cooling Method
Natural Cooling
Encoder Type
Single Turn, Absolute
Frame Size
130 mm
Max Speed
4500 rpm
Motor Type
Servo Motor
Mounting Type
Flange Mount
Protection Class
IP65
Rated Power
2.5 kW
Rated Speed
3000 rpm
Rated Torque
12 Nm
Voltage
400V AC
  • MAD130D0250SAS0BP035N1
  • mad130d-0250-sa-s0-bp0-35-n1
  • MAD130D 0250 SA S0 BP0 35 N1

Frequently Asked Questions about MAD130D-0250-SA-S0-BP0-35-N1:

Q: Why is the shaft dynamically balanced with the entire key in MAD130D-0250-SA-S0-BP0-35-N1?

A: This configuration reduces vibration and enables stable torque transmission. It supports smooth operation at high rotational speeds.

Q: How does axial fan blowing improve the performance of the servo motor?

A: Axial fan blowing ensures continuous cooling. It allows the motor to operate at full power for extended durations without overheating.

Q: What benefit does the 10,000 rpm maximum speed provide in MAD130D-0250-SA-S0-BP0-35-N1?

A: It enables high-speed operation in dynamic applications. The bearing H type maintains durability at this speed.

Q: Why is the holding brake excluded in this MAD130D-0250-SA-S0-BP0-35-N1 configuration?

A: It is intended for systems with external braking or naturally balanced loads. This reduces overall system weight and complexity.

Q: How does Class A vibration severity help in the performance of the motor?

A: Class A ensures controlled vibration within industry limits. It prevents mechanical wear and contributes to longer service life.


Internal Product Review

  • ‘‘The MAD130D-0250-SA-S0-BP0-35-N1 servo motor delivers stable torque with a rated power of 31.40 kW. Its axial fan cooling, 10,000 rpm speed, and Class A vibration rating ensure reliable performance. The motor's standard bearing and gravity-suitable design make it well-suited for demanding automation processes requiring long-term operational stability.’’

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