HDS05.2-W300N-HS33-01-FW Bosch Rexroth Indramat
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The Bosch Rexroth Indramat HDS05.2-W300N-HS33-01-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. This controller features a built-in internal air blower for cooling and has a rated current of 300 Amps.
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Product Description:
The HDS05.2-W300N-HS33-01-FW is a drive controller produced by Bosch Rexroth Indramat in the HDS Drive Controllers series. It serves as the power and control stage for servo axes in automated machinery, helping machine tools, handling robots, and packaging equipment maintain accurate speed and torque under changing loads. The unit converts drive commands into regulated motor current and supports closed-loop motion behavior across multiple connected axes. In a coordinated machine, it supports speed, torque, and position regulation so each motion channel can follow commanded profiles with minimal deviation.
Its command backbone is the SERCOS fiber-optic bus, which supports deterministic communication for coordinated position and speed control on a shared ring. A continuous output capability of 300 A lets the controller supply large motor modules without current derating during demanding acceleration phases. Thermal energy is removed by a built-in air blower, which directs airflow across the heat sink to help control internal temperature inside the cabinet. As part of the DIAX04 platform, the unit uses the same back-plane layout as related modules. The product is part of Line 05 in the series, which places it within the corresponding design line for this controller type.
The unit is Version 2, indicating the assigned product revision for this controller type. Its command interface handles control data exchanged with the higher-level motion system and supports stable axis coordination during operation. This controller is intended for multi-axis installations that use shared power architecture and centralized motion control. The layout suits drive systems where separate supply modules feed several axes from a common power structure, and where communication timing must remain consistent across the machine.