PRD-PE205S0F-10 Kollmorgen
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The PRD-PE205S0F-10 is a servo drive by Kollmorgen, part of the PD Servostar Servo Drives series, with a bus voltage of 24 VDC and a continuous output power of 0.13 kVA. It features an encoder feedback type and a continuous output current of 5 Arms. The unit weighs 0.55 kg and has a package size of 140 x 108 x 51 mm.
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Product Description:
The PRD-PE205S0F-10 is a compact servo drive manufactured by Kollmorgen for the PD Servostar Servo Drives series. It converts a low-voltage DC supply into precisely modulated phase currents that follow commands from motion controllers, supporting closed-loop positioning, velocity, and torque tasks in industrial automation. By pairing its power stage with encoder feedback, the unit keeps motor shafts on target while fitting easily into distributed control boxes on conveyors, pick-and-place heads, or light mobile platforms.
The power electronics use a bus voltage of 24 VDC, enabling operation from safety extra-low voltage sources. Continuous motor demand can be met with 5 A RMS, while short bursts rise to 10 A RMS for 500 ms to cover acceleration peaks. A carrier frequency of 16 kHz minimizes audible switching noise and improves current-loop bandwidth. Thermal monitoring cuts output at 80 °C to protect internal transistors. Steady output power is 0.13 kVA, supplied through a 15 A line fuse, while the drive draws 0.144 kVA of input apparent power when fully loaded. The encoder interface supplies high-resolution feedback for precise regulation. The housing measures 140 × 108 × 51 mm and weighs 0.55 kg, allowing DIN-rail or panel mounting in crowded enclosures.
A main supply draw of 6 A keeps the device within the capacity of standard 24 V power supplies, while the design tolerates a surge of 30 A during regeneration or inrush without tripping the external fuse. Bus supervision halts switching if the voltage exceeds 56 VDC, preventing capacitor overstress, and initiates an orderly shutdown below 16 VDC to avoid erratic behavior during brownouts. The DC-link capacitors reach operating voltage in 0.25 seconds, reducing system startup time. Current limiting manages acceleration demand, while voltage supervision protects the power stage when supply conditions move outside the permitted operating range.