2AD225C-B35OA1-AS06-A2N1

MPN: R911292196

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The 2AD225C-B35OA1-AS06-A2N1 is a motor manufactured by Bosch Rexroth Indramat. Part of the 2AD 3-Phase Induction Motors series, it features an axial blower cooling mode and a high-resolution multiturn absolute encoder. The motor delivers a rated torque of 592 Nm and has a protection class of IP65.

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Product Description:

The 2AD225C-B35OA1-AS06-A2N1 is a three-phase induction motor in the 2AD Bosch Rexroth series. It offers advanced speed and torque control capabilities thanks to its precise rotor construction and enhanced digital servo feedback. This intelligent design enables fine-control of motor speed and positioning, providing regulated and repeatable movement suited for precision tasks. The motor features a 225 frame with a length of C, indicating robust construction with substantial mass. This unit can withstand variable load conditions, ensuring consistent power output of 93 kW to handle elevated loads with ease.

The 2AD225C-B35OA1-AS06-A2N1 comes fitted with standard bearings that are engineered to provide reliable support for the motor shaft during continuous-duty operation. These bearings ensure low-friction rotation, enabling smooth performance and relatively low-noise operation. This unit operates with a sound level of 78±3 dB(A), indicating user-friendly operation without disruptive noise levels. The motor’s shaft has a smooth design with no keyways that makes mechanical integration seamless. This shaft design also enables smooth power delivery with minimal vibrations, enhancing the motor’s suitability for heavy duty machine tasks. The motor operates with reduced vibration per DIN EN 60034-14 standards Class R standards. This results in precision balanced operation for stable alignment and reduced wear on connected equipment.

The 2AD225C-B35OA1-AS06-A2N1 offers a continuous rotational force of 592 Nm, effectively maintaining the torque capacity required for high-load applications. The motor can deliver this torque level at its 1500 rpm rated speed, ensuring consistent torque generation even at slow speeds. In applications that require faster cycles, the motor can achieve speeds of 5000 rpm, enabling high-speed operation to suit demanding tasks. For efficient operation, this motor requires an input of 330 V, which aligns with standard industrial power setups for simplified integration.

Cooling Mode
Blower, axial
Electrical Connection
Rotatable connector (Power and Encoder)
Flange Design
B
Frame Size
225 mm
Length
C
Motor Feedback
High-resolution multiturn absolute encoder
Protection Class
IP65
Rated Power
93 kW
Rated Speed
1500 rpm
Rated Torque
592 Nm
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Frequently Asked Questions about 2AD225C-B35OA1-AS06-A2N1:

Q: What type of shaft does the 2AD225C-B35OA1-AS06-A2N1 come with?

A: The 2AD225C-B35OA1-AS06-A2N1 features a smooth output shaft, allowing for flexible coupling options.

Q: Does the 2AD225C-B35OA1-AS06-A2N1 have digital servo feedback?

A: Yes, the 2AD225C-B35OA1-AS06-A2N1 includes digital servo feedback. This enables precise control of speed and position, improving motion accuracy and response time.

Q: What type of bearings are used in the 2AD225C-B35OA1-AS06-A2N1?

A: The 2AD225C-B35OA1-AS06-A2N1 is equipped with standard bearings suitable for continuous-duty operation.

Q: What is the vibration severity level of the 2AD225C-B35OA1-AS06-A2N1?

A: The 2AD225C-B35OA1-AS06-A2N1 is rated at vibration severity level R. This ensures reduced vibration, promoting smoother performance and longer service life of connected systems.

Q: What cooling method does the 2AD225C-B35OA1-AS06-A2N1 use?

A: The 2AD225C-B35OA1-AS06-A2N1 uses an axial blower for active cooling. This maintains thermal stability during high-load operation and helps prevent overheating.


Internal Product Review

  • ‘‘The 2AD225C-B35OA1-AS06-A2N1 provides precise speed regulation and smooth performance even under high torque demand. Its feedback system integrates seamlessly with control units for reliable motion coordination. One consideration is the need for proper thermal management in warmer environments.’’

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