HDS03.2-W075N-HS63-01-FW Bosch Rexroth Indramat
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The Bosch Rexroth Indramat HDS03.2-W075N-HS63-01-FW is a drive controller from the HDS Drive Controllers series. It belongs to the DIAX04 controller family and uses a SERCOS command communication interface. The controller has a rated current of 75 Amps and features a built-in internal air blower for cooling.
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Product Description:
The HDS03.2-W075N-HS63-01-FW is a modular axis drive controller manufactured by Bosch Rexroth Indramat for the HDS Drive Controllers series. Installed in DIAX04 multi-axis drive racks, it interfaces with a central motion coordinator and connects the rack supply to servo or spindle motors. In this role, the controller converts DC bus energy into three-phase output so connected axes can respond to command changes with controlled torque, stable speed, and accurate positioning. The device is intended for industrial automation tasks such as packaging, printing, or metal-cutting lines where synchronized motion is required across multiple machine sections.
Communication with the higher-level CNC or PLC is carried out through the SERCOS fiber-optic interface, so real-time setpoint and feedback data share the same deterministic bus. The unit is assigned to Line 03, which places it in the third design line of the series and keeps its module arrangement consistent with related rack components. The drive can deliver a continuous output of 75 A, allowing it to energize medium-power synchronous or induction motors without current derating. Thermal management is handled by a built-in air blower, and the integrated fan directs airflow across the heat sink channels to maintain permissible component temperatures during peak cyclic loads.
This specific unit is identified as Version 2. It manages acceleration, deceleration, and shutdown behavior within a multi-axis drive system, and it works with the central motion platform to support coordinated machine movement. The module is arranged for rack installation, so power conversion and control remain concentrated in one housing rather than separate external stages. Its internal cooling arrangement removes heat without requiring external cabinet ducting, which helps keep panel layout straightforward in dense automation enclosures. That layout supports compact cabinet assemblies where several axes operate side by side under shared system control.