2AD134D-B35OC1-DS07-H2N1
MPN: R911295516
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The 2AD134D-B35OC1-DS07-H2N1 is a powerful motor with a nominal output power of 6.4 kW and a rated speed of 1500 rpm. Manufactured by Bosch Rexroth Indramat, it belongs to the 2AD 3-Phase Induction Motors series and weighs approximately 66 kg. This motor features IP65 protection and blow-through forced air cooling.
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Product Description:
The Indramat’s 2AD134D-B35OC1-DS07-H2N1 servo motor is a part of the 2AD line of motors, designed for industrial automation. It weighs 135 kg and comes with an axial fan blower that cools the enclosure by pushing air from B to side A, while the fan runs on a 3 x 400 V ± 15 % or 3 x 460 V ± 10 % source and consumes 136 W of energy.
The 2AD134D-B35OC1-DS07-H2N1 servo motor has an angular inertia value of 0.076 kg·m² and uses 18 kW of nominal power. The output shaft of the motor is 110 mm long with a half key design and an imposed sealing ring to make the device an IP65 protected as a whole. The 2AD134 servo motor includes a digital feedback multiturn absolute encoder to keep track of the motor’s position for precise motion control. The motor functions at a normal rotational speed of 1500 rounds/min while possess the speeding capacity up to 7500 rounds/min. It provides both options of flanges and feet styles of installation. The thermal management depends on the air volume of m³ per hour that is generated by the integrated axial ventilator blower. The 2AD134 servo motor develops a nominal 115 Nm of torque at rated speed and favors an ambient temperature range of 32°F to 113°F.
The 2AD134D-B35OC1-DS07-H2N1 servo motor lacks a holding brake in the initial assembly but extends its supports for an optional 24 V braking system if needed. The 2AD134 servo motor uses a rated current of 54.4 A under normal load conditions from a required source of 248 V. The power connector is located upwards while the terminal box of the blower is situated at the right of the motor, which needs a separate 3 x 400/460 VAC supply.
Frequently Asked Questions about 2AD134D-B35OC1-DS07-H2N1:
Q: How does the multiturn absolute encoder enhance motion control?
A: The multiturn encoder stores position data even during power loss, ensuring consistent tracking. It improves system precision during repeated or complex operations.
Q: Why is a half-key shaft design used in the 2AD134D-B35OC1-DS07-H2N1 motor?
A: The half-key design reduces shaft stress and ensures better torque transmission. It also simplifies coupling alignment during mechanical installation.
Q: What role does the axial fan's airflow direction (B to A) play?
A: This configuration cools the internal components by channeling air across heat-generating zones. It helps maintain optimal operating temperatures under load.
Q: Why does the 2AD134D-B35OC1-DS07-H2N1 support both flange and foot mounting?
A: Dual mounting options offer mechanical flexibility, allowing integration into diverse machine configurations. It’s ideal for retrofitting or complex installations.
Q: How does the 0.076 kg·m² angular inertia benefit servo operation?
A: This inertia value balances torque response and system stability. It minimizes overshooting during rapid acceleration or deceleration phases.