Active servo motor for high-torque axis work
The Schneider Electric SH32051P12F2000 sits in the SH3 series as a three-phase servo with an 80 N.m holding torque and a 205 mm international-standard flange — sized for the kind of axis where a conveyor, indexing table, or filling head needs serious continuous torque without the bulk of a gearbox. Lifecycle reads current on the record, so this is a production-line part, not a leftover stock SKU — for the storeroom it behaves like a fast mover that justifies a min/max slot rather than a one-off purchase.
5500 W continuous at 400 V three-phase
Continuous power lands at 5500 W at 400 V three-phase, scaling to 5200 W at 480 V three-phase, 4240 W at 230 V single-phase, and 2510 W at 115 V single-phase — so the drive sizing depends entirely on which mains rail the cabinet is fed from, not on the motor itself.
80 N.m holding, 110 N.m peak, 31.9 N.m nominal
Holding torque is 80 N.m with a peak stall of 110 N.m available from 115 V to 480 V — the peak figure is what lets the drive survive the inertial shock of a sudden direction reversal without stalling into the current limit. Continuous stall torque is 36.9 N.m across the voltage range; nominal torque drops with bus voltage (31.9 N.m at 115 V single-phase, 27 N.m at 230 V single-phase, 17.5 N.m at 400 V three-phase, 13.8 N.m at 480 V three-phase) because the higher-speed field weakens the torque-per-amp envelope, so sizing the gearbox ratio around nominal is safer than around holding torque.
IP65 on the body, IP54 at the shaft bushing
IP65 on the motor housing and shaft bushing per IEC 60034-5 covers washdown duty — the shaft itself drops to IP54 when no shaft seal ring is fitted, so a food-and-beverage line that splashes the motor needs the seal option called out on the PO. The 38 mm shaft with a parallel key and 10 mm key width is a standard fit for couplings and pinions, and the 205 mm flange with 14 mm mounting holes bolts to any common international-standard gearbox adapter — drop-in for the storeroom spares kit rather than a special.
Shaft loads and thermal envelope
Maximum radial force on the shaft drops with speed — 3730 N at 1000 rpm, 2960 N at 2000 rpm, 2580 N at 3000 rpm — so a belt or pinion mounted off the shaft needs the radial load checked against the operating speed, not just the static rating. Maximum axial force Fa is 740 N, natural convection is the cooling path, and the copper-hot ceiling is 130 °C — meaning the motor relies on its own surface area rather than a fan, and any cabinet that blocks airflow around the body pushes the winding temperature up faster than a force-cooled equivalent.
