ACS580-01-246A-4
- ACS580: ABB new generation general wall-mounted VFD Serie
- 01: Standard integrated wall-mounted unit (non-cabinet modular type 04)
- 246A: Nennausgangsstrom 246 A
- 4: 3-phase input voltage class 380~480 V AC
Optional protection suffixes:
No suffix = IP21 standard version; +B056 = IP55 high-protection dustproof and waterproof version
Rahmengröße: R8
Order material numbers: 3AUA0000080507 (IP21), 3AUA0000083582 (IP55)
- Nennleistung / Aktuelle Bewertungen (400 V Grid)
| Lasttyp | Ausgangsstrom | Passende Motorleistung | Overload Specification |
| Standard / Light Load (Fans & Pumps) ILd | 234 A | 132 kW | 110% für 1 min every 10 min |
| Rated Nominal Current In | 246 A | 132 kW | Continuous rated operation |
| Schwere Ladung (Förderer / Extruder) IHd | 206 A | 110 kW | 150% für 1 min every 10 min |
Apparent output capacity: 170 kVA; Overall efficiency ≥ 98%
III. Elektrische Kernparameter
- Eingangsstromversorgung
Phases: 3-Phase (3Ph)
Stromspannung: AC 380~480 V ±10%
Mains frequency: 47.5~63 Hz
Power factor correction: Built-in DC choke (Standard für R8-Rahmen)
- Output Drive
Ausgangsspannung: 0~Uin (0~480 V)
Ausgangsfrequenz: 0~500 Hz
Control algorithms: Scalar V/F + Sensorlose Flussvektorsteuerung
Torque performance: 100% rated torque available at 0.5 Hz; Torque response <10 ms
- Standard Built-in I/O Terminals (Onboard Control Board)
| Typ | Menge | Specification Description |
| Analog Input AI | 2 Kanäle | Switchable 0~10 V / 4~20 mA |
| Analoger Ausgang AO | 2 Kanäle | 0~10 V / 4~20 mA |
| DI-Digitaleingang | 6 Kanäle | 24 VDC NPN/PNP compatible |
| Digitaler Ausgang DO | 3 Kanäle | Relay dry contacts (250 VAC / 2 A) |
| Kommunikationsport | 1 × RS485 | Modbus RTU standard; expandable to Profinet/Profibus/EtherNet/IP |
| USB-Anschluss | 1 Kanal | PC commissioning, parameter upload & download |
- Full Standard Protection Functions
Überstrom, Überspannung, Unterspannung, Überlast, IGBT overtemperature, motor stall, Erdschluss, Phasenverlust, Stallschutz, cooling fan fault, Kurzschlussschutz, parameter loss alarm.
- Mechanische Abmessungen & Gewicht
IP21 Standard Wall-mounted (ACS580-01-246A-4)
Gesamtgröße: H 615 × W 270 × D 250 mm
Nettogewicht: 21 kg
IP55 High-protection Model (ACS580-01-246A-4+B056)
Gesamtgröße: H 965 × W 300 × D 452 mm
Nettogewicht: 77 kg
Montage: Vertikale Wandmontage; leave ≥200 mm ventilation space top and bottom for heat dissipation
- Environmental Operation Specifications
- Betriebstemperatur: -15℃ ~ +50℃ (derate output by 5% at 50℃)
- Lagerung / Transporttemperatur: -40℃ ~ +70℃
- Schutzklasse: Base IP21; upgrade to IP55 with +B056 option
- Höhe: Full power up to 1000 M; herabsetzen 1% per additional 100 m oben 1000 M
- Luftfeuchtigkeit: 5~95% RH, keine kondensation, kein korrosives Gas
- Standardmäßig integriert & Optionales Zubehör
Factory Standard Built-in Components
Detachable Chinese assistant control panel
Integrated DC choke
Basic I/O control board, Modbus RTU
Bottom cooling fan
Optional Expansion Parts
- Bremswiderstand / Bremseinheit: Mandatory for high-inertia start-stop and overhauling loads
- Communication adapters: Profibus DP, Profinet IO, EtherNet/IP
- EMC filters: Klasse A / Klasse B, compliant with industrial EMC standards
- Extern 24 V power supply module, remote panel extension cable
- Complete IP55 cabinet kit (model suffix +B056)
VII. Typische Anwendungsszenarien
- HVAC & Wasseraufbereitung (Light Load 132 kW)
Cooling fans, tunnel exhaust fans, constant-pressure water supply main pumps, sewage agitators, Kühltürme; variable-torque energy-saving operation.
- Materialhandhabung & Baustoffe (Schwere Ladung 110 kW Class)
Bandförderer, Becherwerke, cement mixers, Extruder, Zentrifugen; frequent start-stop and shock loads.
- Allgemeine Maschinen
Große Kompressoren, wire drawing machines, mixing mills, Papierproduktionslinien; precise speed regulation + multi-speed logic.
- Bergbau & Häfen
Belt transfer equipment, dust removal fans; ideal IP55 model for wide voltage tolerance and strong dust resistance.
VIII. Adjacent Power Model Comparison within the Same Series
| Modell | Nennstrom | Standard Power | Heavy Load Power |
| ACS580-01-206A-4 | 206 A | 110 kW | 90 kW |
| ACS580-01-246A-4 | 246 A | 132 kW | 110 kW |
| ACS580-01-293A-4 | 293 A | 160 kW | 132 kW |
- Kernproduktvorteile
- Fully integrated functions: Built-in choke, Modbus, multi-channel I/O; ready for complete set without extra options
- Chinese assistant panel: Guided commissioning wizard, one-click motor identification
- Wide grid compatibility: Universal 380~480 V, compatible with domestic 380 V and overseas 400/440 V-Gitter
- Dual control modes: Simple V/F control + sensorloser Vektor, suitable for both fan and heavy-duty equipment
- Optional IP55 high protection; direct wall mounting outdoors or in humid workshops without separate control cabinet
- Comprehensive energy-saving algorithms: Sleep mode, flow optimization, soft start-stop, cutting fan and pump energy consumption by over 30%
- Compatible with mainstream industrial buses, seamlessly connected to PLC systems such as Siemens, Mitsubishi, Innovation
- Key Installation & Verkabelungsspezifikationen
- Verkabelung des Hauptstromkreises
Eingang: L1/L2/L3 connected to 3-phase 380 V; Output U/V/W connected to 3-phase asynchronous motor; PE earth terminal reliably connected to cabinet ground.
- Control Cable Requirements
Route shielded analog signal cables separately with a minimum spacing of 30 cm from power cables; single-end shielding grounding for digital twisted-pair cables.
- Mandatory Heat Dissipation Rules
Vertical mounting for R8 frame; top ventilation gap ≥200 mm, side gaps ≥50 mm; blow filter screens monthly in dusty environments.
- Braking Selection Reminder
Braking resistors must be fitted for high inertia shutdown and overhauling loads, otherwise frequent DC overvoltage faults will occur.
- Quick Troubleshooting Checklist
- Overcurrent OL: Motor stall, output short circuit, cable earth breakdown, insufficient derating for heavy loads
- Overvoltage OV: No braking resistor fitted for inertial loads, transient grid high voltage
- Overtemperature OT: Blocked air ducts, ambient temperature over 50℃, defekter Kühlventilator
- Verlust der Ausgangsphase: Loose motor wiring, broken wire on U/V/W one phase
- Communication Loss: Schlechte Schirmerdung, missing bus terminating resistor
All Control Modes of ABB ACS580-01-246A-4
All ACS580 drives share one unified control core with no functional cuts for the 246 A (R8-Rahmen) Modell. Three major control categories are supported: Scalar V/F, Sensorloser Vektor, Vector with Encoder, subdivided into 5 operation modes to cover fans/pumps, general heavy loads and high-precision positioning applications.
- Scalar V/F Control (Parameter 99.04 = SCALAR)
- Linear V/F (Default for Light Load Fans & Pumps)
Voltage rises linearly with frequency with uniform voltage boost from 0~50 Hz. Geeignet für Fans, Gebläse, pumps and general centrifugal loads.
Merkmale: Einfache Struktur, multi-motor parallel drive (one VFD driving multiple asynchronous motors); weak low-speed torque, zero torque at 0 Hz.
Anwendungen: HVAC-Systeme, Wasserversorgung mit konstantem Druck, multi-pump parallel systems.
- Quadratic V/F (Square Curve, Dedicated for Fans & Pumps)
Voltage increases proportional to the square of frequency, matching the torque characteristic of fans and pumps for optimal energy efficiency.
Merkmale: Greatly reduces motor excitation loss and reactive power under light load; even weaker low-speed torque.
Typical scenarios: Kühlturmventilatoren, Umwälzpumpen, dust extraction blowers.
- Boostable Torque V/F (Voltage Boost V/F)
Raises output voltage at low frequencies to compensate insufficient low-speed torque.
Anwendungen: Bandförderer, Mischgeräte, light starting resistance loads.
- Sensorlose Flussvektorsteuerung (Parameter 99.04 = SENSORLESS)
The primary general heavy-load control of ACS580; no encoder required, standard for this 246 A model with no extra options needed.
Kernleistung
- 100% rated torque output at 0.5 Hz; high starting torque to overcome static friction
- Torque response <10 ms, far superior dynamic speed regulation over V/F control
- Supports precise current limiting, anti-stall protection and continuous heavy-load operation
- Static & rotating motor identification supported, compatible with new and old motors
Anwendbare Lasten
Förderer, Mischer, Extruder, Kompressoren, Holzbearbeitungsmaschinen, single heavy-duty motor drives.
Einschränkungen
Cannot maintain full torque at zero speed (0 Hz); precise closed-loop speed control unavailable without encoder feedback.
III. Vector Control with Encoder (Parameter 99.04 = ENCODER)
Requires optional FEN-01 / FEN-11 encoder interface module installed in the VFD expansion slot.
- Supports pulse encoders: HTL / TTL incremental encoders
- Closed-loop speed control with 100% continuous rated torque at 0 Hz
- Speed control accuracy ±0.01% of rated speed
- Enables simple positioning, jog operation and tension control
Anwendungen
Wire drawing machines, winding/unwinding equipment, high-precision transmission, machinery requiring zero-speed load holding.
- Two Operation Reference Modes (Speed Command Source, Independent of Above Motor Control Algorithms)
- Local Control (Panel Reference)
Frequency set via control panel knob / Tasten; local start-stop and speed adjustment for single-unit commissioning.
- Fernbedienung (External Reference, Mainstream for Engineering)
Speed commands and start-stop signals come from external channels with flexible combinations:
- Analoge Referenz: AI1/AI2 (0–10 V / 4–20 mA)
- Multi-speed DI digital terminal reference: Bis zu 7 fixed preset speeds
- Pulse frequency reference (optional IO module required)
- Fieldbus reference: Modbus RTU (Standard), Profibus DP, Profinet, EtherNet/IP, usw.
- PID closed-loop reference: Built-in process PID for closed-loop constant control of pressure/flow/temperature (core function for constant-pressure pump & fan water supply)
- Special Process Control Modes (Built-in Functions Based on Vector / V/F Core)
- PID Process Control
Independent onboard PID regulator; no external PLC required for automatic constant pressure and flow control of pressure, liquid level and temperature.
- Multi-pump Cycling Soft Start (HVAC Special Function)
One-drive-multiple circulating water supply, automatic alternation of main and auxiliary pumps, energy saving via sleep & wake-up logic.
- JOG Jogging Control
Low-speed jog triggered via DI terminals for equipment maintenance and commissioning.
- DC Pre-excitation
DC pre-magnetization before startup to boost instantaneous starting torque in vector mode.
- Stall / Anti-overcurrent Torque Limiting
Automatic torque limitation to avoid overcurrent faults under heavy load.
- Quick Selection & Distinction Table
| Kontrolltyp | Encoder Required | Low-speed Torque | Typische Verwendung |
| Quadratic V/F | NEIN | Niedrig | Energy-saving control for fans & Pumps |
| Linear V/F | NEIN | Moderate | Multi-motor parallel driving |
| Sensorloser Vektor | NEIN | Hoch (Full torque at 0.5 Hz) | Förderer, Mischer, general heavy loads |
| Vector with Encoder | FEN Module Required | Ultrahoch (Zero-speed torque holding) | Wickelausrüstung, high-precision transmission & Positionierung |
Applicable Scenarios of Closed-Loop Vector Control with Encoder for ABB ACS580-01-246A-4
Preface
This control mode uses parameter code 99.04=ENCODER. Optional FEN-01 (HTL) / FEN-11 (TTL) incremental encoder modules are mandatory. Real-time speed feedback from the motor shaft encoder delivers three core advantages:
- Kontinuierlich 100% rated torque holding at 0 Hz (sensorless vector cannot hold load at zero speed)
- Speed control accuracy ±0.01% rated speed with no low-speed jitter or step loss
- Supports precise tension closed-loop control, Mehrachssynchronisation, simple positioning and constant-torque processes
Closed-loop vector control is only selected for working conditions requiring zero-speed load holding, high low-speed precision, stabile Spannung, multi-axis synchronization and slip-free heavy start-stop. Standardventilatoren, pumps and single ordinary conveyors can operate reliably with sensorless vector or V/F control only.
- Wicklung & Unwinding Industry (Most Typical High-power Application, Passend 132 kW Class 246 Ein Modell)
Anwendbare Ausrüstung
Paper rewinders, plastic film extrusion winders, rubber calender winding/unwinding machines, non-woven slitting machines, metal foil wire drawing & Wickelmaschinen, cable stranding machines
Mandatory Process Requirements for Closed-Loop Vector
- Smooth low-speed startup and constant tension maintenance during shutdown; no loose rolls, stretching or material breakage at zero speed
- Automatic constant tension as roll diameter dynamically changes between large and small reels, speed follows upstream master machine
- No tension fluctuation during high-low speed switching to prevent wrinkling or stretching deformation of web materials
- Multi-section linkage: Synchronized operation of unwinding-traction-winding three axes
Open-loop Disadvantages: Insufficient low-speed torque without encoder leads to web slipping and out-of-control tension.
- Hochpräzise Positionierung / Intermittent Reciprocating Heavy-duty Equipment
Anwendbare Ausrüstung
Large gantry feeders, heavy plate translation positioning tables, stone cutting feeders, cement block stacking conveyors, large packaging reciprocating cross-cutting machines
Prozessanforderungen
- Precise stop at target positions with minimal repetitive positioning error; frequent jog & inching maintenance operations
- No position shifting or slipping when stationary under full load
- No speed overshoot during acceleration & Verzögerung; no jitter or impact on heavy start-stop
III. High-inertia Overhauling / Vertical Lifting Constant-torque Loads (High-power 110/132 kW Heavy-duty Conditions)
Anwendbare Ausrüstung
Downward mine belt conveyors, large bucket elevators, heavy vertical mixers, lifting silo discharge drives
Process Pain Points Unsolvable by Open-loop Control
Reverse load generated by material self-weight requires full torque braking maintained at zero shutdown speed; overhaul runaway and overvoltage alarms easily occur at low descending speeds. Encoder closed-loop corrects speed in real time to suppress regenerative impact and stabilize DC bus voltage with braking units.
- Multi-motor Synchronized Production Lines (Long-distance High-power Synchronous Transmission)
Anwendbare Ausrüstung
Cement kiln chain conveyors, long-distance multi-drive mine belts, multi-layer drying synchronized roller tables, continuous metal pickling lines
Prozessanforderungen
Rigid synchronization of multiple motors with minimal speed deviation across sections to avoid plate stretching, belt deviation and tearing. Closed-loop vector with encoder feedback achieves far superior multi-motor synchronization accuracy compared to open-loop sensorless vector.
- Heavy-duty Equipment for Extrusion, Kneading & High-viscosity Mixing
Anwendbare Ausrüstung
Plastic single/twin-screw extruders, rubber internal mixers, chemical high-viscosity reactor agitators, main asphalt mixing machines
Prozessanforderungen
- Extremely high starting resistance for low-temperature high-viscosity materials; full torque output at 0 Hz to avoid startup stalling
- Constant extrusion torque throughout operation for uniform output thickness
- No torque ripple under steady low-speed operation for consistent product thickness
- Zentrifugen & High-speed Precision Rotating Equipment
Anwendbare Ausrüstung
Large chemical separation centrifuges, high-speed paper dehydration centrifuges, large horizontal food centrifuges
Prozessanforderungen
High-precision stable speed across wide speed ranges with minimal speed fluctuation during acceleration/deceleration. Real-time speed correction via encoder feedback at high operating speeds eliminates resonance and uneven material stratification.
VII. High-power Stenter, Einstellung & Padder Equipment for Textile Printing & Färberei
Anwendbare Ausrüstung
High-power stenters, water squeezing & calendering machines, continuous dyeing long lines
Prozessanforderungen
Synchronized drafting of multiple rollers without fabric stretching or shrinkage; zero-speed load holding during low-speed fabric threading to avoid fabric accumulation and slipping; stable tension throughout operation.
VIII. Scenarios Unsuitable for Closed-Loop Vector Control (Select V/F or Sensorless Vector Directly)
- Fans, Kühltürme, Umwälzpumpen, dust extraction blowers (variable-torque loads with no zero-speed load holding demand)
- Single light-duty belt conveyors, small mixers, Kompressoren (no high-precision synchronization or tension control requirements)
- One-drive-multiple parallel multi-motor systems (only scalar V/F control applicable; encoder closed-loop cannot support multi-motor parallel driving)
Quick Application Selection Reference Table
| Core Working Condition Requirement | Recommended Control Mode | Encoder (FEN Module) Erforderlich |
| Fans, Pumps, multi-motor parallel driving | Scalar V/F | NEIN |
| Ordinary conveyors, Mischer, Kompressoren | Sensorloser Vektor | NEIN |
| Winding/unwinding, Spannungskontrolle, zero-speed load holding | Closed-loop Vector with Encoder | FEN-01/FEN-11 Required |
| Mehrachssynchronisation, Präzisionspositionierung, high-inertia overhauling loads | Closed-loop Vector with Encoder | FEN Module Required |
| High-viscosity extrusion, kneading, high-power centrifuges | Closed-loop Vector with Encoder | FEN Module Required |
Supplementary Supporting Hardware (ACS580-01-246A-4 R8 Frame)
- HTL incremental encoder: Select FEN-01
- TTL differential encoder: Select FEN-11
- Braking resistors / braking units must be fitted for high-inertia overhauling scenarios to eliminate regenerative overvoltage faults
Schütz,Leistungsschalter,Solarwechselrichter,Stromzähler,Sensor,Encoder,SPS




















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