2AD134B-B35OB1-FS36-A2N1

MPN: R911296008

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The Bosch Rexroth Indramat 2AD134B-B35OB1-FS36-A2N1 motor, part of the 2AD 3-Phase Induction Motors series, features a flange-mounted IM B5 configuration. It offers blower cooling, an absolute encoder FS36 feedback system, and rotatable connectors. With a frame size of 134mm, it operates at a voltage class of 400V.

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Product Description:

The 2AD134B-B35OB1-FS36-A2N1 is an induction motor with three phases that is designed to provide exact torque output and digital servo feedback for precision control and placement. For safe operation even when the power goes off, it has a powerful electrically released holding brake. Regardless of the mechanical application, the 2AD134B will reliably perform.

The 2AD134B-B35OB1-FS36-A2N1 induction motor can run at a nominal speed of 1500 min⁻¹ and produces 115 Nm of root mean square torque. The design allows for versatile installation due to the inclusion of a flange and foot mounting. Digital servo feedback allows for more precise position control, which in turn boosts productivity. Above, facing side B, is power connector is located. Within a temperature range of 0 to 45 °C, the motor operates with a thermal time constant of 50 minutes. Class B is the motor's length, and Class F is its thermal insulation. For secure and efficient electrical connection, standard bearings are used, and a minimum cable cross-sectional size of 10 mm² is necessary. The motor is categorized within its specific mechanical footprint by its set size of 134.

The stable acceleration and deceleration under load is supported by the 2AD134B-B35OB1-FS36-A2N1 induction motor, which has a rotor moment of inertia rated at 0.076 kg·m². Both the operating voltage and the stall current are 224 V. The motor's output shaft is plain and does not have a sealing ring; the end of the shaft is on side B. To keep things at a constant temperature, the axial blower cooling system shifts airflow from side A to side B. In order to guarantee responsive motion control, the motor feedback is built on top of digital servo technology.

Connector Type
Rotatable connectors
Cooling Method
Blower
Cooling type
Axial blower (side A to B)
Feedback System
Absolute Encoder FS36
Frame Size
134 mm
Holding brake
Electrically released, heavy-duty
Max Continuous Torque
Up to 34 Nm (Check datasheet for exact value by configuration)
Max Speed
Up to 3000 rpm (Check datasheet for configuration-limited values)
Motor size
134
Mounting
IM B5 (Flange Mounted)
Product Code
2AD134B-B35OB1-FS36-A2N1
Root mean square torque
115 Nm
Thermal Protection
Integrated temperature sensor
Type
Synchronous AC Motor / Servo Motor
Voltage Class
400 V
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Frequently Asked Questions about 2AD134B-B35OB1-FS36-A2N1:

Q: Why does 2AD134B-B35OB1-FS36-A2N1 use FS windings?

A: FS windings support digital servo feedback compatibility. They enhance electrical performance and coordinate with the motor’s rotor and insulation characteristics.

Q: How does 2AD134B-B35OB1-FS36-A2N1 achieve 115 Nm torque?

A: It uses a rotor with 0.076 kg·m² inertia and optimized windings. These elements allow consistent torque under varying load conditions.

Q: Does 2AD134B-B35OB1-FS36-A2N1 need 10 mm² cable?

A: Yes, a 10 mm² cable cross-section is required. This supports safe current handling and reduces voltage drop across the power connection.

Q: Why is the shaft sealing ring omitted in 2AD134B-B35OB1-FS36-A2N1?

A: A plain shaft without a sealing ring simplifies installation. It is suited for environments that don’t require high ingress protection on the shaft.

Q: Do bearings in 2AD134B-B35OB1-FS36-A2N1 need replacement often?

A: No, the standard bearings used are designed for durability. They ensure long service life with reduced maintenance frequency in compatible conditions.


Internal Product Review

  • ‘‘The 2AD134B-B35OB1-FS36-A2N1 three-phase induction motor from Rexroth offers controlled operation with a thermal constant of 50 minutes. Its stall current of 40.9 A supports demanding load conditions. The digital servo feedback, axial blower cooling, and plain output shaft improve precision, reliability, and maintenance compatibility.’’

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