ABB AFC80-22-00-84 Contactor - 4P IEC/UL 125A

Part Number: 1SBL391501R8400
Manufacturer
ABB
Part number
1SBL391501R8400

Quick Summary

The ABB AFC80-22-00-84 Contactor is a robust 4-pole power switch designed for AC control in motor starters and power circuits. It addresses common pain points such as coil voltage variance, space constraints, and the need for reliable operation in industrial environments. This device complies with key safety and performance standards, delivering dependable switching at high voltages and currents. Built around ABB’s AF platform principles, it offers optimized operating times, extensible architecture with add-on auxiliary blocks, and a compact form factor that fits snugly into control cabinets while maintaining easy wiring. For engineers and procurement teams, this means fewer spare parts, faster installation, and scalable control solutions across manufacturing lines.

Product Information

Extended Description

1SBL391501R8400 ABB: The AFC80-22-00-84 is a 4-pole (2 N.O + 2 N.C) - 1000 V IEC or 600 V UL contactor with Screw terminals, mainly controlling power circuits up to 125 A (IEC AC-1) or 105 A UL general use. Within the AF platform, AFC contactors offer an optimized operating time for AC controlled applications with electromagnetic coil (control voltage : 110 V AC 50 Hz / 110 ... 120 V AC 60 Hz). AFC contactors have a block type design and can be easily extended with add-on auxiliary contact blocks and a wide range of additionnal accessories.
Minimum Order Quantity
1 piece
Customs Tariff Number
85364900
Data Sheet, Technical Information
1SBC100219C0201 AFC contactors for AC control applications_Catalog PDF
Instructions and Manuals
Installation instructions AF(C)40(B)...80(B)-40/22 Contactors, CA4, CAL4, CAT4, CC4, LDC4 Accessories
Instructions and Manuals (Part 2)
Contactors and Overload relays guide
Product Net Width
90 mm
Product Net Depth / Length
119.5 mm
Product Net Height
116 mm
Product Net Weight
1.45 kg
Number of Main Contacts NO
2
Number of Main Contacts NC
2
Number of Auxiliary Contacts NO
0
Number of Auxiliary Contacts NC
0
Number of Poles
4P
Standards
IEC/EN 60947-1, IEC/EN 60947-4-1, UL 60947-1, UL 60947-4-1, CSA C22.2 No. 60947-1, CSA C22.2 No. 60947-4-1
Rated Operational Voltage
Main Circuit 1000 V
Conventional Free-air Thermal Current (Ith)
acc. to IEC 60947-4-1, Open Contactors Θ = 40 °C 125 A
Rated Operational Current AC-1 (Ie)
(690 V) 40 °C 125 A | (690 V) 60 °C 105 A | (690 V) 70 °C 90 A
Rated Operational Current AC-3 (Ie)
(415 V) 60 °C 80 A | (440 V) 60 °C 80 A | (500 V) 60 °C 65 A | (690 V) 60 °C 49 A | (1000 V) 60 °C 25 A | (380 / 400 V) 60 °C 80 A | (220 / 230 / 240 V) 60 °C 80 A
Rated Operational Power AC-3 (Pe)
(415 V) 45 kW | (440 V) 45 kW | (500 V) 45 kW | (690 V) 45 kW | (1000 V) 35 kW | (380 / 400 V) 37 kW | (220 / 230 / 240 V) 22 kW
Rated Short-time Withstand Current Low Voltage (Icw)
at 40 °C Ambient Temp, in Free Air, from a Cold State 15 min 140 A | at 40 °C Ambient Temp, in Free Air, from a Cold State 1 min 300 A | at 40 °C Ambient Temp, in Free Air, from a Cold State 1 s 1200 A | at 40 °C Ambient Temp, in Free Air, from a Cold State 30 s 450 A
Maximum Breaking Capacity
cos phi=0.45 (cos phi=0.35 for Ie > 100 A) at 440 V 1150 A | cos phi=0.45 (cos phi=0.35 for Ie > 100 A) at 690 V 750 A
Rated Insulation Voltage (Ui)
acc. to IEC 60947-4-1 and VDE 0110 (Gr. C) 1000 V | acc. to UL/CSA 600 V
Rated Impulse Withstand Voltage (Uimp)
Auxiliary Circuit 8 kV
Maximum Electrical Switching Frequency
(AC-1) 600 cycles per hour | (AC-2 / AC-4) 0 cycles per hour
Maximum Mechanical Switching Frequency
3600 cycles per hour
Rated Control Circuit Voltage (Uc)
50 Hz 110 V | 60 Hz 110 ... 120 V
Coil Consumption
Average Holding Value 50 / 60 Hz 20 V·A | Average Pull-in Value 50 Hz 236 V·A | Average Pull-in Value 60 Hz 260 V·A
Power Loss
at Rated Operating Conditions AC-1 per Pole 8 W | at Rated Operating Conditions AC-3 per Pole 3.2 W
Operate Time
Between Coil De-energization and NC Contact Closing 10 ... 19 ms | Between Coil De-energization and NO Contact Opening 5 ... 16 ms | Between Coil Energization and NC Contact Opening 6 ... 15 ms | Between Coil Energization and NO Contact Closing 7 ... 22 ms
Mounting on DIN Rail
TH35-15 (35 x 15 mm Mounting Rail) acc. to IEC 60715
Mounting by Screws (not supplied)
2 x M4 or 2 x M6 screws placed diagonally
Connecting Capacity Main Circuit
Flexible with Ferrule 1/2x 6 ... 50 mm² | Flexible with Insulated Ferrule 1/2x 6 ... 50 mm² | Rigid 1x 6 ... 70 mm² | Rigid 2x 6 ... 50 mm² | Rigid 1x 6 ... 70 mm² | Rigid 2x 6 ... 50 mm²
Connecting Capacity Control Circuit
Flexible with Ferrule 1/2x 0.75 ... 2.5 mm² | Flexible with Insulated Ferrule 1x 0.75 ... 2.5 mm² | Flexible with Insulated Ferrule 2x 0.75 ... 1.5 mm² | Rigid 1/2x 1 ... 2.5 mm²
Wire Stripping Length
Control Circuit 10 mm | Main Circuit 17 mm
Degree of Protection
acc. to IEC 60529, IEC 60947-1, EN 60529 Auxiliary Terminals IP20 | acc. to IEC 60529, IEC 60947-1, EN 60529 Coil Terminals IP20 | acc. to IEC 60529, IEC 60947-1, EN 60529 Main Terminals IP10
Recommended Screw Driver
Main Circuit 4 | Main Circuit Hexagon | Control Circuit 5.5 | Control Circuit Slot
Tightening Torque
Control Circuit 1.2 N·m | Main Circuit 6 N·m
Terminal Type
Screw Terminals
Product Name
Block Contactor
Maximum Operating Voltage UL/CSA
Main Circuit 600 V
General Use Rating UL/CSA
(600 V AC) 105 A
Tightening Torque UL/CSA
Control Circuit 11 in·lb | Main Circuit 53 in·lb
Full Load Amps Motor Use
(120 V AC) Single Phase 7-1/2 A | (200 ... 208 V AC) Three Phase 25 A | (220 ... 240 V AC) Three Phase 30 A | (240 V AC) Single Phase 15 A | (440 ... 480 V AC) Three Phase 60 A | (550 ... 600 V AC) Three Phase 75 A
Ambient Air Temperature
Close to Contactor without Thermal O/L Relay -40 ... 70 °C | Close to Contactor for Storage -60 ... +80 °C | Near Contactor for Operation in Free Air -40 ... 70 °C
Climatic Withstand
Category B according to IEC 60947-1 Annex Q
Maximum Operating Altitude Permissible
Without Derating 3000 m
Pollution Degree
3
REACH Declaration
REACH - Letter of Confirmation for block contactors, contactor relays, installation contactors, mini contactors, mini contactor relays, thermal overload relays, electronic overload relays and related accessories
RoHS Information
RoHS II declaration for block contactors, installation contactors, mini contactors, mini contactor relays, thermal overload relays, electronic overload relays and related accessories
RoHS Status
Following EU Directive 2011/65/EU and Amendment 2015/863 July 22, 2019
Toxic Substances Control Act - TSCA
Toxic Substances Control Act (TSCA) declaration for Contactors
WEEE B2C / B2B
Business To Business
WEEE Category
5. Small Equipment (No External Dimension More Than 50 cm)
BV Certificate
BV_2634H36994B1
CB Certificate
CB Certificate AFC80 and AFC96 3-and 4-pole contactors
Declaration of Conformity - CE
EU Declaration of Conformity AFC09 ... AFC80 4-pole Contactors
Declaration of Conformity - UKCA
UK Declaration of Conformity AFC09 ... AFC80 4-pole Contactors
DNV Certificate
DNV Certificate AFC09...96 3-pole & AFC09...80 4-pole contactors with screw, push-in terminals
RINA Certificate
Rina Certificate for AFC09...AFC96 3 pole and 4 pole contactors, NFC relays ,screw and spring terminals
UL Certificate
UL-US Certificate of Compliance AFC40 ... AFC80 4-pole contactors | UL-CA Certificate of Compliance AFC40 ... AFC80 4-pole contactors
Package Level 1 Units
box 1 piece
Package Level 1 Width
146.5 mm
Package Level 1 Depth / Length
97.5 mm
Package Level 1 Height
146.5 mm
Package Level 1 Gross Weight
1.77 kg
Package Level 1 EAN
3471523019522
Package Level 3 Units
192 piece
Object Classification Code
Q
ETIM 7
EC000066 - Power contactor, AC switching
ETIM 8
EC000066 - Power contactor, AC switching
ETIM 9
EC000066 - Power contactor, AC switching
eClass
V11.0 : 27371003
UNSPSC
39121529
IDEA Granular Category Code (IGCC)
4755 >> Contactors
Feature → Business Impact → Application: The AFC80-22-00-84 uses a 4-pole block contactor design with 2 normally open and 2 normally closed contacts, enabling precise control of multi-line power circuits and reducing wiring complexity in motor starter assemblies. This translates to faster commissioning and predictable switching behavior in conveyors and pumps, improving line uptime. Feature → Business Impact → Application: Coil voltage is 110 V AC at 50 Hz or 110–120 V AC at 60 Hz, delivering compatibility with common European and North American controls without adapters, cutting installation time and error rates in panel wiring. Feature → Business Impact → Application: Main circuit ratings up to 125 A (IEC AC-1) and 80 A (AC-3 at various voltages) provide reliable motor starting and load switching for a wide range of motors, reducing false trips and protecting equipment. Feature → Business Impact → Application: The AF platform’s block design supports add-on auxiliary contact blocks and accessories, enabling scalable control schemes as lines expand or change, while preserving cabinet space. Feature → Business Impact → Application: The device offers low power loss (8 W per pole under AC-1), contributing to reduced heat generation and improved panel efficiency, especially in densely packed control enclosures. Feature → Business Impact → Application: DIN rail mounting (TH35-15) and screw terminal options simplify installation and maintenance, allowing quick swaps and straightforward field wiring in existing panels. Feature → Business Impact → Application: Wide insulation (rated 1000 V) and robust mechanical endurance (3600 cycles per hour) deliver long-term reliability in demanding environments, lowering maintenance costs and downtime. Feature → Business Impact → Application: Compliance with IEC/EN 60947-1, IEC/EN 60947-4-1, UL/CSA standards, and multiple certifications (CE, UKCA, UL, CSA, BV, CB, DNV, RINA) reduces validation time for global projects and supports cross-border procurement. Feature → Business Impact → Application: Durable construction with IP20 coil terminals and IP10 main terminals supports secure field wiring and stable operation in typical factory environments, while design choices for temperature, altitude, and pollution resistance improve overall equipment availability.

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