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2AD132D-B35OB1-AS03-A2N1

  • Rated 4.2 (6 total ratings)
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  • MPN: R911242112
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The 2AD132D-B35OB1-AS03-A2N1 is an AC servo motor manufactured by Bosch Rexroth Indramat. Part of the 2AD 3-Phase Induction Motors series, it features a blower-cooled design and a rated power of 6.0 kW. The motor is flange-mounted and operates at a rated voltage of 400 V.

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Product Description

The 2AD132D-B35OB1-AS03-A2N1 Servo Motor product of Bosch Rexroth ensures reliability in high load conditions. The motor is engineered for efficiency and delivers exceptional torque and speed control.

The 2AD132D-B35OB1-AS03-A2N1 servo motor frame size is based on IEC standards which indicates height from the motor base to the center of the shaft (132 mm). The direction from which the power cable exits the motor is on Side B typically the non drive end. To secure couplings its shaft includes a key slot along with a half key which is a common standard for motors. It has a 140 nm of brake holding torque which is significant and suited for applications that require firm shaft holding under load. It is equipped with a digital encoder system which enables precise position, speed and direction monitoring that is often used in controlled or automated applications. The maximum rotational speed at which the brake can effectively work without damage is equivalent to 7500 revolutions per minute. Its non drive end has an additional shaft stub that allows mounting of an encoder either incremental or absolute. It provides smoother operation but requires more torque to change speed due to its higher rotor inertia of 0.092 kgm².

The 2AD 3-Phase Induction Motors series module has a brake which takes 110 milliseconds for the brake to fully release and allow the shaft to rotate. It has a B35 mounting type which combines both foot and flange options which allows it to be installed either way. For safely connecting the motor to power the minimum wire cross sectional area required is 16 mm². Its brake assembly alone has a mass of 4 kilograms which aids to the total mass and affects inertia and handling during installation. This module is engineered to safely reach its mechanical speed to 7500 min⁻¹.

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2AD132D-B35OB1-AS03-A2N1 Technical Specifications

Motor Type: AC Servo Motor
Rated Speed: 3000 rpm
Max Speed: 6000 rpm
Thermal Protection: PTC thermistor in the winding
Feedback Device: Incremental Encoder
Frame Size: 132 mm
Mounting Type: Flange-mounted
Enclosure: Totally Enclosed (IP65)
Cooling Method: Blower Cooled
Shaft Height: 132 mm
Rated Power: 6.0 kW
Rated Voltage: 400 V
Rated Current: 15.0 A

Frequently Asked Questions about 2AD132D-B35OB1-AS03-A2N1


Q: How does the digital servo feedback enhance performance in this motor?

A: Digital servo feedback ensures precise control over speed and position. It improves accuracy in automation and reduces error margins in dynamic applications.

Q: Why is rotor inertia of 0.092 kgm² significant for the 2AD132D-B35OB1-AS03-A2N1 motor?

A: Higher rotor inertia helps maintain smoother operation during load variations. It also stabilizes acceleration and deceleration phases in demanding cycles.

Q: What benefits does the 140 Nm brake holding torque offer in vertical load applications?

A: It prevents shaft movement under gravity or external force when powered off. This is especially critical for lifts and vertical drives.

Q: Why is the B35 mounting configuration used in 2AD132D-B35OB1-AS03-A2N1 motor?

A: B35 combines flange and foot mounting, offering versatility. It enables installation in both horizontal and vertical machine setups with ease.

Q: How does a 70 ms clamp delay affect motor braking performance?

A: Faster clamp delay ensures the brake engages quickly when power is cut. It provides safe and responsive emergency stopping.

Internal Product Review

  • ‘‘The 2AD132D-B35OB1-AS03-A2N1 Servo Motor from Bosch Rexroth ensures high performance under demanding conditions. It integrates a digital servo feedback system, 22 kW nominal power, and operates up to 7500 min⁻¹. Its vibration grade R and 135 kg mass support stability and durability in precision-driven applications.’’

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