2AD160C-B05OB1-BS03-B2N1

MPN: R911244440

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The 2AD160C-B05OB1-BS03-B2N1 AC servo motor offers a power rating of approximately 22 kW, a rated torque of 140 Nm, a voltage range of 380-480 V 3-phase, and features blower cooling with an external fan. From Bosch Rexroth Indramat's 2AD 3-Phase Induction Motors series, it includes IP65 protection and flange mounting.

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Product Description:

The 2AD160C-B05OB1-BS03-B2N1 Induction Motor is made by Bosch for industrial automation systems. The motor provides dependable performance under heavy duty applications. The configuration provides efficient energy use with stable electrical operation.

The 2AD160C-B05OB1-BS03-B2N1 3-Phase motor operates with a nominal current of 90 A. The current specification defines the electrical load required for rated torque generation under continuous duty. The nominal voltage is 299 V. The voltage requirement establishes safe connection with compatible power supply networks. The thermal time constant equals 65 minutes. The thermal characteristic defines the rate of heat dissipation and affects overload handling. The minimum connection cross section according to EN 60204, is 35 mm². The conductor specification provides safe current transmission and prevents thermal overloading of supply lines in challenging industrial setups. The power connection is positioned above. The connection location facilitates access and simplifies cable routing in challenging installation layouts. The construction characteristics align electrical, thermal and mechanical parameters for dependable integration in automation systems. This induction motor is perfect for motion applications in industrial system that requires continuous operations without delay or downtime.

The 2AD160C-B05OB1-BS03-B2N1 motor directs air current from B to A. The airflow orientation defines the cooling path and regulates internal component temperatures effectively and efficiently. The average air volume is 1120 m³/h. The airflow rate maintains adequate thermal exchange for continuous motor loading. The motor blower consumes 220 VA of power. The consumption value defines auxiliary energy requirements for forced ventilation. The output shaft is supplied with a whole key, balanced and without shaft sealing ring. The shaft specification provides proper torque transfer to couplings while reducing frictional elements that could affect efficiency.

Air current
B → A (Blowing)
Average air volume
1120 m3/h
Minimum conn. cross section EN 60204, sec. 1/02.86
35 mm2
Nominal current
90 Aeff
Nominal voltage
299 Veff
Output shaft
with whole key balanced without shaft sealing ring
Position of the power connection
above
Power consumption of motor blower
220 VA
Rotor moment of inertia
0,229 kgm2
Thermal time constant
65 min
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Frequently Asked Questions about 2AD160C-B05OB1-BS03-B2N1:

Q: Why is the 2AD160C-B05OB1-BS03-B2N1 designed with a 0.229 kgm² rotor inertia?

A: The inertia value optimizes acceleration response, allowing precise performance in systems with frequent load transitions.

Q: How does the motor’s 299 Veff nominal voltage aid system compatibility?

A: The rated voltage ensures safe integration with industrial power supply networks, supporting consistent electrical performance in automation systems.

Q: In what way does the 2AD160C-B05OB1-BS03-B2N1 manage airflow for cooling?

A: Airflow directed from B to A circulates at 1120 m³/h, ensuring efficient internal temperature regulation for sustained motor performance.

Q: What advantage does the 65-minute thermal time constant provide for this motor?

A: It allows gradual heat dissipation, improving overload handling and extending operational stability under continuous duty conditions.

Q: Which advantage is gained from the motor blower’s 220 VA consumption?

A: The auxiliary blower maintains forced ventilation with defined energy use, ensuring cooling efficiency without adding excessive power demand.


Internal Product Review

  • ‘‘The 2AD160C-B05OB1-BS03-B2N1 motor delivers 299 Veff nominal voltage with a current load of 90 Aeff for dependable duty cycles. Its 0.229 kgm² rotor inertia supports controlled acceleration during dynamic loads. The blower consumes 220 VA to maintain ventilation. It achieves thermal stability with a 65-minute time constant.’’

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