2AD160B-B05OB1-BS01-B2N1

MPN: R911242902

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The 2AD160B-B05OB1-BS01-B2N1 from Bosch Rexroth Indramat is part of the 2AD 3-Phase Induction Motors series and features flange mounting. This synchronous servo motor has a frame size of 160, a blower cooling system, and motor feedback via a resolver. It boasts a continuous torque of 48 Nm and a protection rating of IP65.

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Product Description:

The 2AD160B-B05OB1-BS01-B2N1 Servo Motor delivers a 30 kilo watts of nominal power output with precision and reliability and it is designed with an axial blower cooling system that directs airflow from side B to A which helps ensures efficient thermal management. Because of a lower moment of inertia equivalent to 0.174 kg·m², this Bosch manufactured motor offers rapid dynamic response under continuous operation.

The 2AD160B-B05OB1-BS01-B2N1 induction motor features a robust flange mounting style which ensures secure and stable installation in various industrial setups and its design omits a shaft end on side B which helps streamlines integration where a secondary shaft is not a necessary requirement. In this module electrical power is effectively transmitted via the terminal enclosure located on side B which is strategically aligned with the power inlet positioned at the top of the unit which streamlines the cabling process and facilitates easier installation. It runs at a standard rotational speed of 1500 rpm which ensures reliable and uniform output that makes it ideally suited for applications that demand continuous and uninterrupted operation. The motor is configured with a holding brake which makes it useful for setups where dynamic deceleration is achieved through the broader system architecture. It provides reliable electrical efficiency with a nominal voltage rating of 305 Aeff and a nominal current of 72 Aeff and its shaft comes with a key which promotes smooth torque transmission and minimizes structural intricacy.

The 2AD160B-B05OB1-BS01-B2N1 Servo Motor allows for easy access and streamlined cable routing in tight installation spaces and it delivers a nominal torque of 191 nm which ensures strong and consistent rotational force. It supports a peak speed of up to 6000 min⁻¹ which offers flexibility to handle dynamic operational demands with ease and precision.

Continuous Torque
48 Nm
Cooling Type
Blower
Frame Size
160
Length
B
Motor Feedback
Resolver
Motor Type
Synchronous Servo Motor
Mounting Type
Flange
Protection Rating
IP65
Rated Voltage
400V
Windings
B05
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Frequently Asked Questions about 2AD160B-B05OB1-BS01-B2N1:

Q: Why is a rotor moment of inertia of 0.174 kg·m² advantageous in this motor?

A: A lower moment of inertia allows for faster acceleration and deceleration. This enhances dynamic responsiveness, critical in high-performance automation environments.

Q: What benefits does the flange mounting style offer in the 2AD160B-B05OB1-BS01-B2N1 motor?

A: Flange mounting provides rigid and secure attachment, reducing alignment issues. It simplifies integration into standard industrial frames and assemblies.

Q: Why is the top power connection useful in the 2AD160B-B05OB1-BS01-B2N1 unit?

A: Top-mounted connections simplify cable management in constrained installations. It also facilitates maintenance by improving accessibility.

Q: What does "balanced with entire key" mean in the driven shaft design?

A: It ensures uniform torque distribution and minimizes shaft vibration. This improves performance stability and reduces wear on mechanical components.

Q: Why is the absence of a shaft on side B important for some applications?

A: It allows compact installations where space is limited or a second output shaft is unnecessary. This enhances flexibility in machine design.


Internal Product Review

  • ‘‘The 2AD160B-B05OB1-BS01-B2N1 servo motor is a high-performance unit from Bosch with precise 1500 rpm nominal speed and a 191 Nm torque rating. Its axial blower cooling, 305 Aeff voltage capacity, and 0.174 kg·m² rotor inertia ensure reliable operation. It is designed with a key-balanced shaft and side B terminal box, it supports stable integration.’’

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