2AD200C-B35OB1-AS06-D2N1

MPN: R911280344

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The Bosch Rexroth Indramat 2AD200C-B35OB1-AS06-D2N1 belongs to the 2AD 3-Phase Induction Motors series and features a blower cooling mode. This synchronous servo motor produces a rated torque of 38 Nm and operates at a rated speed of 3000 RPM. It includes a keyed shaft with a sealing ring and meets the IP65 protection standard.

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Product Description:

The 2AD200C-B35OB1-AS06-D2V1 Servo Motor from Bosch delivers reliable drive power with a nominal torque of 503 Nm which makes it suitable for machine tools, conveyor systems and other industrial automation applications.

The 2AD200C-B35OB1-AS06-D2V1 motor operates with a medium airflow of 2500 m³/h. It uses flange and foot mounting types to support various industrial machine layouts. It has a full shaft key with a shaft sealing ring to reduce calorifier shaft vibration and enhance protection. The 2AD motor requires 186 A of current for continuous operation. It is rated at 325 V nominal to correspond to nominal industrial supply conditions. The class F insulation allows a higher temperature of operation with greater exposure usage time. The 2AD200C-B35OB1-AS06-D2V1 motor has axial cooling of the blower which eliminates the heat production in high-load periods. It has heavy duty bearings with radial and axial loads capabilities. The net weight of the servo motor is 450 kg. It has a sound level of 77 dB(A) at a distance of one meter maintaining noise in the tolerable working conditions. Its heat dissipation constant is 75 minutes. The maximum speed of the motor is 5000 rpm to allow fast performance when needed. It includes an incremental encoder with 2500 counts per revolution to ensure accurate feedback. It comes with 0.66 kg·m² rotor inertia to maintain smooth speed transitions.

The 2AD200C-B35OB1-AS06-D2V1 motor includes a vibration severity grade R to ensure vibration tolerance. It is equipped with a fully-keyed output shaft and a sealing ring for shafts. The output direction of the power connection is from the junction box fitted on side B. It requires a cable connection with a minimum cross-section of 50 mm² to ensure safe operation.

Bearings
Heavy duty
Cooling Air Flow
External, via attached blower
Cooling Mode
Blower (B)
Electrical Connection
Power and feedback connectors
Encoder Type
IndraDyn absolute singleturn Hiperface
Frame Size
200
Mass
450 kg
Motor Type
Synchronous Servo Motor
Peak Torque
95 Nm
Power terminal Position
Top
Protection Class
IP65
Rated Power
Varies by configuration (typically ~7.7 kW)
Rated Speed
3000 RPM
Rated Torque
38 Nm
Shaft Option
Keyed with shaft sealing ring
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Frequently Asked Questions about 2AD200C-B35OB1-AS06-D2N1:

Q: Why is the power cable cross-section specified at 50 mm²?

A: The 50 mm² minimum cable cross-section ensures safe current transmission, reducing heating risks in the 2AD200C-B35OB1-AS06-D2V1 during heavy-duty usage.

Q: How does the vibration grade R improve motor performance?

A: The vibration severity grade R in the 2AD200C-B35OB1-AS06-D2V1 enhances shaft durability under unbalanced loads, minimizing fatigue in high-speed cycles.

Q: How do heavy-duty bearings support this motor's operation?

A: The 2AD200C-B35OB1-AS06-D2V1 uses high-load bearings to withstand both axial and radial forces, providing smoother drive output and durability.

Q: How does rotor inertia affect speed transitions?

A: The 2AD200C-B35OB1-AS06-D2V1 rotor’s 0.66 kg·m² inertia smooths acceleration curves, supporting consistent torque across variable speed changes.

Q: Why is class F insulation critical for continuous-duty motors?

A: The class F insulation allows the 2AD200C-B35OB1-AS06-D2V1 to handle higher internal temperatures without degrading, extending lifespan during constant use.


Internal Product Review

  • ‘‘The 2AD200C-B35OB1-AS06-D2V1 servo motor features a vibration grade R shaft, axial cooling, and heavy-duty bearings for radial and axial loads. With 77 dB(A) sound output and class F insulation, it’s reliable for precision systems needing steady torque delivery under variable mechanical demands.’’

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