Servomotors

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New runner design, more power

Heidrive presents the Heimotion Dynamic Next Generation series of servomotors. It is a further development of the HMD series and utilizes the advantages of permanent magnet technology in conjunction with synchronous three-phase operation.

Heidrive presents the servomotors of the Heimotion Dynamic Next Generation series © Heidrive

The HMD Next Generation motors are available in six different flange sizes: 60, 80, 100, 130, 150 and 190 mm. This makes them the ideal solution for small installation spaces. The dynamics are achieved thanks to an improved material on the rotor, a reduction in the overall length and a new winding technology. The motors are particularly robust thanks to full encapsulation under vacuum. The coil can be connected to the laminated core and the motor housing with a precise thermal fit. Mechanical influences from outside, such as shocks and vibrations, have no effect on the stability of the windings.

Space-saving and powerful

The servomotors are a good 30 % shorter, up to 60 % more powerful and overall more powerful than their predecessors. These improvements result, among other things, from the optimization of the winding and magnet technology. This results in a significant volume-related increase in performance and maximized efficiency. In addition, equipping various encoders and connectors with short end caps as standard has helped to shorten the overall length. This makes these servomotors ideal for small installation spaces, as is the case with automated guided vehicles (AGVs), for example.

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Special technical features

The HMD Next Generation servomotors are characterized by a number of special technical features that set them apart from their predecessor series: The motors meet the guidelines of DIN EN 60034-1. They are also equipped with a PT1000 temperature sensor as standard. Export to the US and Canadian markets is possible thanks to UL and CSA approval. Different power grids are also no problem: thanks to their 480 VAC capability, they can be operated on all standard power grids. The series is particularly suitable for challenging conditions: The new winding technology enables targeted optimization of efficiency, which leads to a reduction in overall length. This compactness - combined with a rotor design optimized for low moments of inertia - enables higher acceleration values for dynamic applications. Another advantage of the rotor design is the optimized cogging torque, which makes the motors ideal for use in applications with high torque quality requirements.

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