MAD130C-0200-SA-S0-AG0-05-N3

MPN: R911310601

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The MAD130C-0200-SA-S0-AG0-05-N3 is a servo motor with a 130 mm frame size and a rated voltage of 400 V. Manufactured by Bosch Rexroth Indramat, this motor belongs to the MAD IndraDyn A Motors series and delivers a rated power of 2.0 kW. It offers IP65 protection, a peak torque of 19.1 Nm, and utilizes natural cooling.

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Product Description:

The MAD130C-0200-SA-S0-AG0-05-N3 belongs to the MAD series of synchronous motors built by Indramat Rexroth. It is rated IP65 for keeping dust and water out of the case and its thermal insulation is given the class F for electrical safety. This motor uses a power of 23 kW and gives a measured speed of 2000 r/minute in normal conditions.

The MAD130C-0200-SA-S0-AG0-05-N3 motor is presented as a flanged mounted device and it achieves cooling by using an axial fan whose air moves from B to A side through the motor. The fan uses up to 208 VA energy and 0.25 A current to push out 1000 m³ of air per hour. The rotor has an inertia of 0.108 kg·m² for reliable smooth performance and draws an operating current of 57 A at standard load. The MAD motor weighs 122 kg and needs 16 mm² wire cross-section for termination of power to the electrical box on side A of the enclosure. The rotation speed with standard bearings has a limit of 7500 r/minute. The motor depends on three pole pairs to create torque and to keep track of heat buildup, thermal constant is set to 0.9 h. The MAD motor can operate between 0 and +40 °C effectively and the components possess a capacitance of 19.3 nF.

The MAD130C-0200-SA-S0-AG0-05-N3 motor’ torque constant at a temperature of 68°F is 2.64 Nm for every 1 A. This motor has a single revolution absolute encoder with 512 discrete levels. It uses 1 VSS signal format and the encoder blocks are designed to communicate over I²C using 8 V power source. The MAD motor when positioned at 3.28 ft away, the measured sound pressure level is only 70 dB(A) with 3% tolerance.

Brake Option
No Brake
Cooling Type
Natural Cooling
Encoder Type
Single-turn Absolute Encoder
Feedback
SICK Stegmann Encoder
Frame Size
130 mm
Maximum Speed
7500 r/min
Mounting
Standard Flange
Peak Torque
19.1 Nm
Protection Class
IP65
Rated Power
2.0 kW
Rated Speed
3000 rpm
Rated Torque
6.37 Nm
Rated Voltage
400 V
Temperature Range
0°C to +40°C
Type
Servo Motor
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Frequently Asked Questions about MAD130C-0200-SA-S0-AG0-05-N3:

Q: What is the significance of the MAD130C-0200-SA-S0-AG0-05-N3 motor's IP65 rating?

A: The IP65 rating ensures the motor is protected against dust and water ingress, increasing its reliability and longevity in harsh environments like factories or outdoor settings.

Q: Why does the MAD130C-0200-SA-S0-AG0-05-N3 motor have a thermal time constant of 50 minutes?

A: The thermal time constant helps maintain consistent temperature control during operation. It ensures that heat buildup is tracked, preventing overheating during extended use in industrial applications.

Q: How does the axial fan in the MAD130C-0200-SA-S0-AG0-05-N3 motor enhance performance?

A: The axial fan improves cooling by circulating air from the B side to the A side, maintaining optimal temperature for high efficiency, even during extended runs.

Q: What benefits does the MAD130C-0200-SA-S0-AG0-05-N3's 512 discrete levels encoder offer?

A: The encoder provides precise position feedback, ensuring accurate motion control, which is critical for high-precision operations and preventing motor misalignment.

Q: How does the torque constant of 2.64 Nm per amp benefit the MAD130C-0200-SA-S0-AG0-05-N3 motor?

A: This high torque constant allows for efficient power usage, meaning the motor can deliver more torque with less energy input, ideal for power-sensitive applications.


Internal Product Review

  • ‘‘The MAD130C-0200-SA-S0-AG0-05-N3 motor is a robust solution for industrial tasks, featuring a torque constant of 2.64 Nm per amp and an efficient axial fan. Its thermal time constant of 50 minutes guarantees consistent performance even in challenging environments to make it an ideal choice for precision-driven operations.’’

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