MDD065A-N-040-N5L-095PB0
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The MDD065A-N-040-N5L-095PB0 synchronous motor delivers a continuous torque at standstill of 14.5 Nm, a nominal speed of 4000 min-1, a peak current of 164.8 A, and has a rotor moment of inertia of 29 x 10-4 kgm2. Part of the MDD Synchronous Motors by Bosch Rexroth Indramat, it features IP65 protection and weighs 16.5 kg.
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Product Description:
The MDD065A-N-040-N5L-095PB0 AC Servo Motor offers reliable torque output and stable operation in demanding applications. The motor is compact in size and delivers precise control and consistent performance under varied loads and speeds.
The MDD065A-N-040-N5L-095PB0 AC servo motor features a winding inductance of 20.3 mH. This inductance provides efficient magnetic energy storage and optimal response characteristics. It is equipped with an output shaft that includes keyways for secure mechanical coupling with driven equipment. The servo motor has a rotor moment of inertia rated at 1.4 × 10⁻⁴ kg·m² for fast dynamic response and efficient speed control. The servo motor operates with natural convection and surface cooling. Its centering diameter is 95 mm which supports accurate mechanical alignment during installation. The motor weighs 3.2 kg and offers a protection rating of IP65. These specifications make it suitable for use in systems requiring precision, speed and mechanical reliability. The servo motor installation on the machine is straightforward due to its robust mechanical design. The motor’s shaft is engineered to withstand high radial loads. This allows for the direct mounting of pinions, timing belt pulleys or other transmission elements without requiring additional support bearings. This simplifies mechanical integration and reduces the overall system footprint and assembly time.
The MDD065A-N-040-N5L-095PB0 AC servo motor comes without a holding brake. The maximum speed of the motor is primarily determined by the DC bus voltage supplied by the drive's power source as this voltage sets the upper limit for the motor's output frequency and back EMF. The DC bus voltage typically derived from rectifying the input AC supply directly influences the maximum voltage and frequency that can be applied to the motor.
Frequently Asked Questions about MDD065A-N-040-N5L-095PB0:
Q: Can the MDD065A-N-040-N5L-095PB0 servo motor handle variable speed and load fluctuations effectively?
A: Yes, the MDD065A-N-040-N5L-095PB0 offers stable operation under varying speeds and loads. Its compact build delivers precise control with consistent torque in dynamic applications.
Q: How does the MDD065A-N-040-N5L-095PB0 AC servo motor maintain response efficiency in fast-cycle operations?
A: It features a winding inductance of 20.3 mH which stores magnetic energy efficiently. This ensures optimized motor response even during high-speed transitions or load changes.
Q: Does the shaft design of the MDD065A-N-040-N5L-095PB0 reduce mechanical complexity during installation?
A: Yes, the shaft includes integrated keyways for secure coupling with external components. It supports direct mounting of transmission elements without support bearings to reduce system footprint.
Q: How does the MDD065A-N-040-N5L-095PB0 achieve high dynamic response and speed control?
A: It has a rotor moment of inertia rated at 1.4 × 10⁻⁴ kg·m² which supports quick acceleration. This enables the motor to deliver fast and accurate control feedback.
Q: What determines the top-end speed of the MDD065A-N-040-N5L-095PB0 servo motor?
A: Its maximum speed depends on the DC bus voltage provided by the drive unit. This voltage defines the limit for both output frequency and the motor’s back EMF.