2AD160C-B35LA1-BS01-B2N1

MPN: R911242121

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The 2AD160C-B35LA1-BS01-B2N1 synchronous servo motor features a 160 mm frame size, a rated power of 23 kW, a rated torque of 150 Nm, and a maximum speed of 4500 rpm. Part of the 2AD 3-Phase Induction Motors by Bosch Rexroth Indramat, it is equipped with IP65 enclosure protection and an IndraDyn absolute encoder for high precision.

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Product Description:

The Bosch’s 2AD160C-B35LA1-BS01-B2N1 induction motor is built for industrial drive systems that provides a continuous torque output of 236.0 Nm. It functions on a 299 Veff electrical supply and consumes 37.0 kW of power in normal underload conditions. This motor operates at a base speed of 1500 rounds/minute and it supports a maximum speed of 6000 rounds/minute.

The 2AD160C-B35LA1-BS01-B2N1 servo motor possess a specified rotor inertia of 2.29 × 10⁶ g·cm² to support stable acceleration and deceleration profiles. Its output shaft is configured with a full key and balanced design, while the shaft has a diameter of 5.5 cm and 11 cm length. This motor features a flange and foot mounting system according to B35 design. Its power connector interface is located on the left side, with output directed toward side A. The 2AD servo motor is provided with an integrated axial blower that is configured for B-to-A airflow and it operates on a 3 x 400 V at 50/60 Hz or 3 x 460 V at 60 Hz. In normal load scenario the motor utilizes 90 Aeff of current and its thermal time is specified as 1 hour that enables consistent thermal regulation under extended operation. It supports an optional brake and feedback system for controlled and precise rotor operations. The unit lacks any shaft extension at the B-side and it includes standard greased bearings.

The 2AD160C-B35LA1-BS01-B2N1 servo motor’s noise emission is measured as 75 decibels at a 3.28 feet distance and its electrical insulation of category F ensures thermal endurance under standard duty cycles. The unit’s housing meets IP65 protection standard and the integrated blower is IP54 rated, while due to the absence of a shaft seal its protection on the output side is reduced.

Connection
Rotatable connectors
Cooling Method
Axial blower
Enclosure
IP65
Encoder Type
IndraDyn absolute encoder
Flange Design
B35 flange with feet
Frame Size
160 mm
Max Speed
4500 rpm
Motor Type
Synchronous servo motor
Noise Level
75 dB(A) at 1 m (3.28 ft) distance
Rated Power
23 kW
Rated Speed
3000 rpm
Rated Torque
150 Nm
Rotor Inertia
2.29 × 10⁶ g·cm² (0.229 kg·m²)
Shaft Length
110 mm
Weight
Approx. 150 kg
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Frequently Asked Questions about 2AD160C-B35LA1-BS01-B2N1:

Q: How does the full-key balanced shaft design of the 2AD160C-B35LA1-BS01-B2N1 improve performance?

A: A full-key balanced shaft reduces vibration and ensures smoother torque transfer. This helps extend bearing life and supports stable motor operations under high-speed loads.

Q: Why is the axial blower airflow set from B-to-A direction?

A: The B-to-A airflow ensures efficient cooling of internal windings. This configuration maintains thermal stability during extended duty cycles.

Q: Why is the thermal time constant of 1 hour important for this motor?

A: It allows the motor to reach stable thermal conditions gradually. This prevents overheating and supports consistent performance in continuous operations.

Q: How does side-mounted power connector orientation help in installations?

A: The left-side power connector with side A output allows flexible cable routing. This simplifies integration into compact drive cabinets.

Q: How does insulation class F contribute to motor reliability?

A: The class F insulation permits higher thermal endurance. This ensures that the motor windings remain protected even in elevated operating temperatures.


Internal Product Review

  • ‘‘The 2AD160C-B35LA1-BS01-B2N1 is an industrial induction motor designed for reliable drive operations. It features a balanced full-key shaft, integrated axial blower, and flange-foot mounting system for versatile installations. This motor is widely applied in CNC machining centers, packaging machinery and advanced industrial robotics requiring precision torque delivery.’’

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