SE10000-000000 Kollmorgen
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The SE10000-000000 servo drive from Kollmorgen is part of the S300 Servo Drives series and weighs 4.5 kilograms. It operates with a device input voltage range of 208 to 480 volts and has a rated current of 10A rms with a peak current of 20 ARMS. The drive includes an overtemperature trip set at 90 degrees Celsius and a thermal dissipation value of 120 watts.
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Product Description:
The SE10000-000000 is a Kollmorgen servo drive that belongs to the S300 Servo Drives series and is intended for precision motion control in automated machinery. By modulating three-phase mains power and regulating motor feedback, the unit supplies the commanded torque, speed, or position required by servo-actuated axes. Applications include indexing tables, pick-and-place heads, and other automated equipment on a factory floor.
The drive operates from a three-phase input of 208 to 480 V and delivers a continuous phase output of 10 A rms with a momentary capability of 20 A rms to cover acceleration bursts. Internal power sections switch at a pulse-width modulation rate of 8 kHz, while the current ripple frequency reaches 16 kHz, limiting harmonic distortion to an output form factor no greater than 1.01. Two auxiliary supplies are provided: the 15 V rail can source 0.5 A for external sensors, and the 8 V rail supplies 1.1 A for incremental encoders or Hall devices. Rated thermal dissipation is 120 W, so cabinet airflow must extract that heat to keep the chassis below its protection threshold. Under full load, the assembly weighs 4.5 kg, allowing mounting on standard DIN rails or backplates.
Velocity stability is maintained within 0.01% over time, supported by a control loop that refreshes every 62.5 µs. Commutation tables update at up to 400 Hz, and encoder inputs accept frequencies up to 3 MHz while sourcing up to 250 mA from the built-in encoder supply. An overtemperature trip is set at 90 °C, and an overvoltage cutoff engages at 430 VDC to protect the power stage. The inverter’s pulse-width modulation section is clocked by an internal oscillator, and its maximum commutation frequency works with the encoder bandwidth to maintain accurate field orientation. When these limits are exceeded, fault logic disables the gate drives to prevent damage until operating conditions return to a safe range.