S62001-SE Kollmorgen
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The Kollmorgen S62001-SE is an S600 Servo Drive with an aux supply voltage of 24 VDC and supports main voltages from 230 to 480 V. This drive features an IP20 enclosure, peak output current of 40 Arms, and a current rating of 20A rms. It supports a SERCOS expansion module and weighs 7.5 kg with dimensions of 120 mm width, 275 mm height, and 265 mm depth.
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Product Description:
The S62001-SE is a Kollmorgen servo drive positioned in the S600 Servo Drives series. As a standalone S600 Servo Drive, it forms the link between a motion controller and a synchronous or induction motor, supplying regulated current and monitoring feedback so that industrial axes follow programmed speed, torque, or position commands.
This drive operates from a three-phase input range of 230...480V and draws a continuous output of 20A rms, while short bursts can reach 40 Arms to accelerate large inertial loads. A rated installed load of 14 kVA identifies the upstream protective gear and cabling size. The housing carries an IP20 protection rating, suitable for mounting inside a closed control cabinet where finger-safe access is still required. Auxiliary electronics are powered from 24 VDC, and the AS electrical option provides additional monitoring functions. Motion commands and status data move over a plug-in SERCOS expansion module that fits the backplane. Thermal behavior is defined by 200 W of dissipation at rated current and an internal brake power of 200 W that routes deceleration energy into the built-in 33 Ω resistor. A quiescent dissipation of 15 W applies when the output stage is disabled, and the residual voltage drop of 5 V helps estimate cable losses.
The mechanical envelope is compact: width 120 mm, height 275 mm, and a depth of 265 mm. Total mass is 7.5 kg, which eases panel installation without extra supports. The integral brake resistor mentioned above is rated at 33 Ω and removes moderate regenerative energy without an external load bank. Motor matching is flexible because the permissible load inductance spans 2 mH to a ceiling of 12 mH. These values, together with a minimum line impedance implied by the ratings, ensure stable current loops and prevent over-voltage events during rapid speed changes.