2AD134C-B05OB1-HS06-A2N1

MPN: R911299925

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The Bosch Rexroth Indramat 2AD134C-B05OB1-HS06-A2N1 motor is part of the 2AD 3-Phase Induction Motors series, featuring standard flange mounting. It utilizes an axial blower for cooling and offers IP65 enclosure protection for durability. The motor's encoder type is HS06, and its terminal box is positioned on the A-side.

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Product Description:

The 2AD134C-B05OB1-HS06-A2N1 is a 3-phase induction motor equipped with a flange mounting construction to ensure rigid mechanical support and accurate mounting alignment. This induction motor is manufactured by Bosch Rexroth Indramat for a variety of automation systems requiring performance stability, and it provides a nominal torque output of 115 Nm.

This induction motor has a nominal power output of 18 kW to make it suitable for heavy to medium-duty use. The base speed of the 2AD134C-B05OB1-HS06-A2N1 motor is 1500 min⁻¹ to provide a consistent rotational output suitable for synchronous-driven applications. Situated on top of the casing, the power connection design of this motor enables convenient cable management and greater accessibility of wiring and maintenance. This induction motor has an axial blower type of cooling, which effectively controls internal temperature to guarantee uninterrupted operation with no loss of performance from overheating. This induction motor operates at a nominal voltage of 248 Veff to meet industrial standards for stable electrical operation. This motor’s internal digital servo feedback enhances the control accuracy and enables precise speed and position monitoring. The 2AD134C-B05OB1-HS06-A2N1 induction motor uses a plain output shaft that is compatible with a wide variety of couplings and driven equipment for easy integration.

With a weight of 115 kg, this motor's strong construction plays a crucial role in structural stability and vibration resistance. This 2AD134C-B05OB1-HS06-A2N1 motor meets the vibration severity of level R, which indicates its capability to tolerate operating vibration without threatening components. With standard bearings and rotor inertia of 0.076 kgm², this induction motor offers smooth, low-friction output throughout its lifespan. This induction motor is compliant with insulation class F following DIN VDE 0530 Teil 1, with uniform thermal robustness during extended operation.

Base motor speed
1500 min-1
Bearings type
Standard
Construction type
Flange mounting
Cooling type
Axial blower
Insulation classification DIN VDE 0530 Teil 1
F
Mass
115 kg
Motor feedback
Digital servo feedback
Nominal power
18 kW
Nominal torque
115 Nm
Nominal voltage
248 Veff
Output shaft type
Plain shaft
Position of the power connection
Above
Rotor inertia
0.076 kgm2
Vibration severity level
R
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Frequently Asked Questions about 2AD134C-B05OB1-HS06-A2N1:

Q: How does digital servo feedback enhance motor performance?

A: It allows real-time position and speed monitoring, improving control precision. This is essential in synchronized or automated drive systems.

Q: Why is the axial blower cooling method used in this motor?

A: It ensures continuous airflow across the motor, preventing overheating. This allows the motor to maintain rated output during long-duty cycles.

Q: What advantage does the 0.076 kgm² rotor inertia provide in 2AD134C-B05OB1-HS06-A2N1?

A: It enables smooth acceleration and deceleration transitions. This minimizes mechanical stress and enhances motion stability.

Q: How does the above-positioned power connection benefit system integration?

A: It allows easier cable access and routing during installation. This positioning reduces interference with other mechanical or control elements.

Q: Why is insulation class F used in this motor?

A: It tolerates higher operating temperatures, extending insulation life. This is important for continuous or high-load applications.


Internal Product Review

  • ‘‘The 2AD134C-B05OB1-HS06-A2N1 delivers reliable performance in industrial environments with a nominal power of 18 kW and torque of 115 Nm. This motor’s axial blower cooling and digital servo feedback enhance thermal control and motion precision. Its insulation class is F, which ensures thermal durability in continuous-duty applications.’’

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