Description
Technical Specifications
| Parameter Name | Parameter Value |
|---|---|
| Product Model | 1MSC980041 |
| Manufacturer | ABB |
| Product Type | High-Performance Frequency Converter (VFD) — 1MSC9 custom-order series |
| Input Voltage | 380–480 VAC, 3-phase |
| Rated Power Range | 3–75 kW (project-configured; verify per BOM — some builds quote up to ~100 kW peak in configured derivatives) |
| Output Frequency Range | 0–500 Hz capability (distributor sheets sometimes list 40–60 Hz as application-tuned band; full VFD range available) |
| Protection Class | IP54 (dust / water-spray resistant, semi-outdoor rated) |
| Overload Capability | 150% rated current for 60 s |
| Control Type | Variable Frequency Drive (VFD), vector-capable per ABB 1MSC9 build standard |
| Communication Interface | Modbus TCP/IP, Ethernet (drive-level; crane PLC integration typical) |
| Efficiency | IE4-class (high-efficiency, project-dependent) |
| Operating Temperature | -10 °C to +50 °C |
| Storage Temperature | -20 °C to +70 °C |
| Cooling | Forced-air (fan) per IP54 enclosure design |
| Mounting | Cabinet/wall (per project enclosure — often part of a larger crane-drive pack) |
📎 Note: 1MSC9-series units are project-configured. Parameters above reflect the typical distributor-sheet consensus for 1MSC980041; always cross-check your original BOM/ABB order acknowledgement — input voltage class, kW rating, braking-chopper presence, and EMC-filter grade can vary between two 1MSC980041 shipments if the underlying project config differed.
Main Features and Advantages
Project-built, not catalogue-general. The biggest differentiator of the 1MSC980041 is what the 1MSC9 prefix signals: this isn’t a warehouse-picked ACS580. It’s a configured VFD build where ABB’s industry team (crane/hoist/material-handling) pre-selected overload class, braking resistor sizing, EMC filter, and enclosure IP to match a lifted-load duty cycle. For a port RTG hoist that sees 150% current every lift (motor + gearbox + spreader inertia), the 1MSC980041‘s 1-minute overload window is baked in at order time — not something you have to “enable” in parameter 30.05 and hope the heat sink clears. That pre-engineering is why plants reorder the 1MSC980041 by exact number instead of substituting a retail ACS.IP54 for semi-outdoor crane duty. Standard ACS580-01 units are typically IP21 (panel-mounted, indoor only). The 1MSC980041 ships in an IP54-rated enclosure — dust-tight enough for a cement-stacker reclaimer deck, and spray-resistant for a port RTG drive cabinet that lives under a canopy but gets hit with salt-mist and hose-down. For outdoor yard cranes where the drive sits in a mast-mounted cabinet rather than a climate-controlled MCC room, that IP54 rating is the difference between a 3-year life and an 8-year life.Modbus TCP / Ethernet native. The 1MSC980041 doesn’t need a separate communications option card to talk to the crane PLC — Ethernet/Modbus TCP is on-board. On a STS (ship-to-shore) crane or RTG with 8–12 VFD nodes (hoist, trolley, gantry, spreader twist-lock), the 1MSC980041 lands on the same ring as the PLC and the HMI, giving the yard engineer real-time telemetry: motor current, brake-status, fault-code readback, and parameter download. That matters when a hoist faults mid-lift and the operator needs to know “brake-wear limit” vs. “overload” before deciding whether to lower or e-stop.150% x 60 s overload = lifted-load start. A centrifugal pump (V/Hz, easy start) and a 40-tonne hoist (high static torque, inertia, possibly a mechanical brake release delay) are completely different VFD jobs. The 1MSC980041 is specced for the latter — 150% current for a full minute covers the double-motor hoist start where both motors accelerate a dead-weight load against gravity and gear friction. Pair that with the vector-control capability inherent in the 1MSC9 build standard, and the hoist holds zero-speed torque without creeping — critical for container positioning on a ship hatch.IE4 efficiency in configured build. Where the project called for IE4 (premium-efficiency) motor pairing — common on new-port electrification and EPC yards targeting ISO 50001 — the 1MSC980041 build carries the IE4-rated power stage. Even at partial load (hoist idling, trolley traversing light), the efficiency curve stays flat, which compounds into real kWh savings across a fleet of 30+ RTGs running 20 hours/day.
Application Field
The 1MSC980041 lives predominantly in lifted-load and material-handling applications where ABB configured a drive package rather than selling a bare ACS retail unit. Container ports are the densest installed base: RTG (rubber-tyred gantry) hoist and trolley drives, STS (ship-to-shore) trolley and gantry sections, and intermodal yard stacker winches all appear on 1MSC9 BOMs. On an RTG, the 1MSC980041 typically pairs with a 30–75 kW hoist motor (dual-motor hoist = two 1MSC980041 units, master-slave over Modbus TCP), an IP54 enclosure mounted on the RTG chassis under the spreader-platform canopy, and a braking resistor sized for hoist-regeneration during container lower. The Ethernet link ties back to the RTG PLC (often ABB AC 800M or Siemens S7-1500 in mixed yards), giving the RTG operator cabin HMI live motor current and brake status.Steel and scrap yards use the 1MSC980041 on magnet-beam cranes and scrap-charger hoists — the 150% overload window absorbs the magnet-engagement inrush (DC magnet rectifier often hangs off the same crane DC bus, but the hoist VFD still sees the mechanical shock), and IP54 keeps scale-dust out of the heat sink. Cement plants deploy the 1MSC980041 on stacker-reclaimer winches and clinker-bucket-elevator drives where the enclosure lives on the machine deck, not in a clean MCC room, and the VFD sees abrasive dust + intermittent hose-down during deck wash.Paper and pulp mills with overhead crane aisles for roll handling, and automotive plants with inverted-rail hoists in body-shop transfer lines, are secondary slices — anywhere the crane OEM (Konecranes, Demag, ABB Crane Systems) specified a 1MSC9 build instead of a catalogue ACS, the 1MSC980041 is the spare to chase. Brownfield replacement is the dominant buyer journey: a 12-year-old RTG fleet starts showing VFD failures across 30 machines, the original project BOM says “1MSC980041”, ABB factory lead is 8–10 weeks on a configured rebuild, and the port buys tested-surplus 1MSC980041 units to keep the yard running while the re-order trickles in.
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