MAD160B-0100-SA-S2-AP0-35-N1

MPN: R911315072

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The MAD160B-0100-SA-S2-AP0-35-N1 motor boasts a 10 kW power rating, a rated speed of 3500 RPM, surface-cooled forced air cooling, and a protection class of IP65. Manufactured by Bosch Rexroth Indramat as part of the MAD IndraDyn A Motors series, it features a 160 frame size for versatile applications.

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Product Description:

The MAD160B-0100-SA-S2-AP0-35-N1 is a high-performance MAD IndraDyn A Motor series unit by Bosch Rexroth recognized for producing dependable and precisely engineered automation components. This model features a winding code 0100 and is equipped with an axial fan blowing for effective motor cooling during operations. The motor includes a single-turn absolute encoder with 2048 increments which allows accurate position detection for motion applications.

The MAD160B-0100-SA-S2-AP0-35-N1 IndraDyn A Motor has a nominal torque of 200.0 Nm. Its nominal power output is 20.94 kW for continuous-duty operations. The rated current for this unit is 50.8 A under nominal load. The standard operating speed is 1000 1/min which supports low-speed torque-intensive applications. It meets high torque and speed requirements while maintaining thermal stability and encoder accuracy. For dynamic processes the maximum speed with bearing N reaches up to 6000 1/min. The motor can deliver a peak torque of 520.0 Nm under short-duration loads. This motor has a maximum power output reaches 58 kW during intensive cycles. The maximum current supported by this model is 110.0 A suitable for demanding load cycles. It is built with a shaft balanced with the entire key and sealing ring for smooth mechanical power transfer. It operates efficiently within a 10-minute cycle duration.

The MAD160B-0100-SA-S2-AP0-35-N1 IndraDyn A Motor has two poles to deliver a consistent magnetic field rotation. It supports a power wire cross-section of 10.0 mm² for proper current flow. The rotor moment of inertia is 0.2500 kgm² which supports smooth acceleration and deceleration in motion systems. The design allows installation up to 1000 m above sea level without performance loss. Its build and specifications confirm compatibility with various industrial motion control setups.

Cooling
Axial fan Blowing
Current rating
50.8 A
Cycle duration
10 min
Encoder
Single turn absolute encoder 2048 increments
Maximum speed with bearing N
6000 1/min
Nominal power
20.94 kW
Nominal torque
200.0 Nm
Number of poles
2
Shaft
Balanced with entire key and with sealing ring
Speed
1000 1/min
Winding
0100
  • MAD160B0100SAS2AP035N1
  • mad160b-0100-sa-s2-ap0-35-n1
  • MAD160B 0100 SA S2 AP0 35 N1

Frequently Asked Questions about MAD160B-0100-SA-S2-AP0-35-N1:

Q: Why is a single-turn absolute encoder used in the MAD160B-0100-SA-S2-AP0-35-N1 motor?

A: The encoder allows precise position tracking after power cycles without needing a reference point. This improves repeatability and positioning accuracy in automation systems.

Q: How does the axial fan enhance the performance of this motor?

A: The fan ensures active cooling during continuous operation, reducing thermal buildup and maintaining efficiency during high-load processes.

Q: Why does the MAD160B-0100-SA-S2-AP0-35-N1 have a shaft balanced with key and sealing ring?

A: The balanced shaft minimizes vibration and ensures stable torque transfer. The sealing ring also helps maintain environmental protection.

Q: Why is 1000 m elevation compatibility significant for the MAD160B-0100-SA-S2-AP0-35-N1?

A: The motor can be installed in elevated industrial settings without performance degradation, which is crucial for mountain-area facilities.

Q: What is the significance of 110.0 A maximum current support in MAD160B-0100-SA-S2-AP0-35-N1?

A: The high current capacity allows handling of intense short-term load peaks, beneficial in dynamic automation environments.


Internal Product Review

  • ‘‘The MAD160B-0100-SA-S2-AP0-35-N1 motor is a reliable choice for torque-intensive operations requiring peak torque up to 520.0 Nm. Its two-pole structure supports magnetic field uniformity under load. The balanced shaft and sealing ring reduce vibration issues. A rotor inertia of 0.2500 kgm² enables smooth transitions.’’

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