MDD065D-N-040-N5L-095GB0

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The MDD065D-N-040-N5L-095GB0 digital AC servo motor offers a nominal speed of 4000 min⁻¹, a continuous torque at standstill of 2.7 Nm, a peak current of 46.2 A, and a mass of 5.3 kg. Part of the MDD Synchronous Motors series by Bosch Rexroth Indramat, it features IP65 protection and an insulation classification of F.

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Product Description:

The MDD065D-N-040-N5L-095GB0 is a digital AC servo motor manufactured by Bosch Rexroth Indramat. As part of the MDD line, the motor is widely used in industrial automation tasks. The motor has a standard speed of 4000 min⁻1 and can be recognized by its small 065 size and D-length housing.

The MDD065D-N-040-N5L-095GB0 AC servo motor has a constant torque of 2.7 Nm, which rises to 3.5 Nm when the surface cools. The constant current is 6.3 A, and it goes up to 8.1 A when the temperature stays the same. The motor can handle a maximum of 28.5 A of power and 7.8 Nm of torque. It has a torque constant of 0.43 Nm/A at 20°C, which makes it good at making torque. The moment of inertia of the rotor is 3.8 × 10⁻ kg·m². The resistance of the winding is 2.0 Ω, and the capacitance of the winding is 2.6 mH. When the surface cools, the temperature time constant drops from 30 minutes to 15 minutes. The motor feedback type uses a digital encoder that functions with drive controls. This makes sure that the position is found correctly. The centering diameter is Ø95 mm, and the motor weighs 6.3 kg.

The output shaft of the MDD065D-N-040-N5L-095GB0 AC servo motor is equipped with a keyway that satisfies DIN 6885 standards. The power connection is on side B, which makes it easier to fit into current designs. The small size and light weight make them suitable for assemblies with limited room. The thermal shape makes it possible for heat to be effectively lost through natural or surface cooling.

Continuous Current At Standstill
10.3 A
Continuous Torque At Standstill
2.7 Nm
Insulation Classification
F
Mass
5.3 kg
Motor Type
Digital AC Servo Motor
Nominal Speed
4000 min⁻¹
Peak Current
46.2 A
Permissible Ambient Temperature
0 ... +45°C
Protection Category
IP 65
Rotor Moment Of Inertia
3.8 × 10⁻⁴ kg·m²
Theoretical Maximum Torque
7.8 Nm
Thermal Time Constant
30 minutes
Torque Constant At 20°c
0.26 Nm/A
Windings Inductance
0.9 mH
Windings Resistance At 20°c
0.74 Ω

Frequently Asked Questions about MDD065D-N-040-N5L-095GB0:

Q: Does MDD065D-N-040-N5L-095GB0 support high torque demands?

A: Yes, it offers up to 7.8 Nm maximum torque. This supports sudden load changes without affecting motor stability.

Q: Do MDD065D-N-040-N5L-095GB0 windings reduce energy loss?

A: The 2.0 Ω winding resistance reduces power loss during operation. This improves thermal efficiency and reduces excess heating.

Q: How does MDD065D-N-040-N5L-095GB0 handle rapid accelerations?

A: It has a rotor inertia of 3.8 × 10⁻⁴ kg·m². This allows quick changes in speed with stable control.

Q: Why is MDD065D-N-040-N5L-095GB0 peak current important?

A: The 28.5 A peak current handles short bursts of high load. It prevents motor trips during quick load increases.

Q: How does MDD065D-N-040-N5L-095GB0 improve thermal control?

A: It features a 30-minute thermal time constant that drops to 15 minutes with cooling. This enhances motor temperature response.


Internal Product Review

  • ‘‘The MDD065D-N-040-N5L-095GB0 ensures reliable torque output with a 7.8 Nm maximum torque rating. It offers 6.3 A continuous current, 2.6 mH inductance, and a rotor inertia of 3.8 × 10⁻⁴ kg·m². With digital feedback and a side B power connector, it supports precise integration with minimal complexity.’’

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