2AD160B-B35OB1-BS23-B2N1
MPN: R911238741
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The 2AD160B-B35OB1-BS23-B2N1 is a 3-phase induction motor with a 160 frame size and B35 flange design. Manufactured by Bosch Rexroth Indramat as part of the 2AD 3-Phase Induction Motors series, it features IM B35 mounting, combining flange and foot mounting options, and offers IP65 protection.
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Product Description:
Bosch Rexroth Indramat manufactured the 2AD160B-B35OB1-BS23-B2N1 for various motion control applications. The 2AD160B-B35OB1-BS23-B2N1> has a standard speed of 1500 rpm and it supplies a nominal torque of 191 Nm. Its peak operating speed reaches up to 6000 min⁻¹. It operates at 305 V nominal voltage and produces a nominal power output of 30 kW.
The nominal current of the <<2AD160B-B35OB1-BS23-B2N1 induction motor is 72 A. The thermal time constant is set at 60 minutes. The insulation is classified as Class F according to DIN VDE 0530. The induction motor supports continuous operation under stable thermal conditions. It is equipped with a rotor with aninertia of 0.174 kg·m². The motor with the blower weighs 205 kg without the holding brake. The minimum connection cross-section required by the 2AD160B-B35OB1-BS23-B2N1 induction motor for safe electrical connection is 25 mm². It is designed to comply with vibration severity classes: R, S, and S1. The motor can operate reliably within an ambient temperature range of 0 to 45 °C. These classifications ensure smooth mechanical stability under rated conditions.
The 2AD160B-B35OB1-BS23-B2N1 induction motor is engineered for consistent industrial usage. The average noise level is rated at 75 ± 3 dB(A) measured at 1 meter distance. This rating is based on a pulse width modulation frequency of 4 kHz. The compact build supports system integration where space and connection sizing are important. It includes a holding brake that adds 5 kg. The brake is electrically engaged for safety and controlled operation. The brake terminal voltage is 24 V with a tolerance of ±10%. The electrical and mechanical features work together to support steady motor performance.
Frequently Asked Questions about 2AD160B-B35OB1-BS23-B2N1:
Q: How does the 2AD160B-B35OB1-BS23-B2N1 induction motor handle variable load transients in automation systems?
A: The 2AD160B-B35OB1-BS23-B2N1 induction motor maintains torque stability during sudden load changes through rotor inertia dynamics, enabling consistent drive control in precision industrial automation processes.
Q: What integration considerations exist for 2AD160B-B35OB1-BS23-B2N1 induction motor with advanced servo drives?
A: When pairing the 2AD160B-B35OB1-BS23-B2N1 induction motor with servo drives, ensure compatible encoder feedback protocols and harmonized switching frequencies to minimize harmonic distortion and maintain torque accuracy.
Q: How does the 2AD160B-B35OB1-BS23-B2N1 induction motor perform in high-duty-cycle continuous operation?
A: The 2AD160B-B35OB1-BS23-B2N1 induction motor sustains output under extended duty cycles by utilizing optimized thermal dissipation pathways, preserving winding integrity and stable torque output in demanding industrial workloads.
Q: Which auxiliary cooling options improve 2AD160B-B35OB1-BS23-B2N1 induction motor efficiency under high ambient heat?
A: The supplementary forced-air or liquid cooling systems can enhance the 2AD160B-B35OB1-BS23-B2N1 induction motor’s efficiency during elevated ambient temperatures, reducing thermal stress and preventing torque derating in hot environments.
Q: How does vibration compliance affect 2AD160B-B35OB1-BS23-B2N1 induction motor mounting design?
A: The 2AD160B-B35OB1-BS23-B2N1 induction motor’s R, S, and S1 vibration compliance enables rigid or flexible mounting strategies while ensuring alignment stability and reduced resonance in precision applications.