ABB 1SDA062981R1 Moulded Case Circuit Breaker - PR332/P LI
Part Number: 1SDA062981R1
Quick Summary
ABB 1SDA062981R1 is a high-capacity moulded case circuit breaker for mains protection in industrial power distribution. Engineers face challenges delivering reliable interruption at large currents while maintaining safe, accessible front-terminal installations in harsh environments. As part of the SACE Tmax T7 family, it complies with IEC standards and CE conformity, plus GL certification for reliability. For panel builders and OEMs, it enables predictable trip performance, compact footprint, and lifecycle savings through durable design and easy integration with Tmax T components.
Product Information
Extended Description
1SDA062981R1 ABB: C.BREAKER TMAX T7V 1250 FIXED THREE-POLE WITH FRONT TERMINALS AND STORED ENERGY OPERATING MECHANISM AND SOLID-STATE RELEASE IN AC PR332/P-LI R 1250
Environmental Product Declaration - EPD
NoDecNee
REACH Declaration
REACh Declaration ABB Sace circuit breakers
RoHS Information
RoHS Declaration ABB Sace circuit breakers
RoHS Status
Following EU Directive 2011/65/EU and Amendment 2015/863 July 22, 2019
Conflict Minerals Reporting Template (CMRT)
CMRT - Conflict Minerals Reporting Template
Toxic Substances Control Act - TSCA
Toxic Substances Control Act (TSCA) declaration
Environmental Information
Product Environmental Information Tmax T7 | Breakers - Packaging disposal information
Order Code US and Canada
T7MVFB3AP000000XX
EAN
8015644655303
Minimum Order Quantity
1 piece
Customs Tariff Number
85362090
Product Net Width
210 mm
Product Net Height
268 mm
Product Net Depth / Length
178 mm
Product Net Weight
11 kg
Package Level 1 Units
1 piece
Package Level 1 Width
280 mm
Package Level 1 Height
350 mm
Package Level 1 Depth / Length
360 mm
Package Level 1 Gross Weight
12.5 kg
Package Level 1 EAN
8015644655303
Product Main Type
SACE Tmax T
Product Name
Moulded Case Circuit Breaker
Product Type
Automatic Circuit Breaker
Suitable For
T7M
Suitable for Product Class
Moulded Case Circuit Breakers
Version
F
Electrical Durability
3000 cycle | 60 cycles per hour
Mechanical Durability
10000 cycle | 60 cycles per hour
Number of Poles
3P
Power Loss
at Rated Operating Conditions per Pole 78.3 W
Rated Current (In)
1250 A
Rated Impulse Withstand Voltage (Uimp)
8 kV
Rated Insulation Voltage (Ui)
1000 V
Rated Operational Voltage
690 V AC
Rated Service Short-Circuit Breaking Capacity (Ics)
(220 V AC) 200 kA | (230 V AC) 200 kA | (380 V AC) 150 kA | (400 V AC) 150 kA | (415 V AC) 150 kA | (440 V AC) 130 kA | (500 V AC) 100 kA | (690 V AC) 45 kA
Rated Short-time Withstand Current Low Voltage (Icw)
for 1 s 15 kA
Rated Ultimate Short-Circuit Breaking Capacity (Icu)
(220 V AC) 200 kA | (230 V AC) 200 kA | (380 V AC) 150 kA | (400 V AC) 150 kA | (415 V AC) 150 kA | (440 V AC) 130 kA | (500 V AC) 100 kA | (690 V AC) 60 kA
Rated Uninterrupted Current (Iu)
1250 A
Release
PR332/P LI
Release Type
EL
Short-Circuit Performance Level
V
Standards
IEC
Sub-type
T7
Terminal Connection Type
Fixed Circuit-Breakers | Front
Data Sheet, Technical Information
1SDC210015D0201
Declaration of Conformity - CE
EC Declaration of Conformity Tmax T7
GL Certificate
1SDL000163R0056
Wiring Diagram
Wiring diagram T7-T7M
Instructions and Manuals
1SDC210015D0201
ETIM 8
EC000228 - Power circuit-breaker for trafo/generator/installation protection
ETIM 9
EC000228 - Power circuit-breaker for trafo/generator/installation protection
Object Classification Code
Q
UNSPSC
39120000
WEEE Category
5. Small Equipment (No External Dimension More Than 50 cm)
eClass
V11.1 : 27370409
This device provides a 3P, 1250 A rated current with fixed front-terminal connections, enabling robust protection for large feeders and simplifying wiring during panel assembly. The stored-energy operating mechanism with PR332/P LI release delivers fast, reliable tripping and easier maintenance, improving on-site safety and reducing downtime in critical protection zones. With a 690 V AC operating voltage and 1000 V insulation plus an 8 kV impulse withstand, the breaker offers a wide safety margin suitable for modern switchgear and machine rooms. Rated service short-circuit capacity reaches up to 200 kA at 220/230 V and maintains strong performance at higher voltages, while Icw of 15 kA for 1 s supports short-time fault tolerance and selective coordination in demanding plants. Compliance is comprehensive, including RoHS, REACH, CMRT, TSCA, and CE declarations, ensuring regulatory alignment across global supply chains. Electrical and mechanical durability—3000 electrical cycles and 10000 mechanical cycles—translate into lower maintenance costs and longer intervals between replacements. The compact footprint (210 mm wide, 268 mm high, 178 mm deep) and 11 kg weight simplify panel design and installation, with front-terminal accessibility that speeds wiring and inspections.
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FAQs
Install with the front-terminal configuration specified for fixed circuit-breakers in Tmax T7 assemblies. Follow the wiring diagram for T7-T7M and ensure proper terminal torque, grounding, and clearance. The device uses a stored-energy PR332/P LI release, so verify actuator alignment and accessory fitment during commissioning to ensure reliable operation.
Key specs include 1250 A rated current, 690 V AC rated operational voltage, Uimp of 8 kV, Ui of 1000 V, Ics up to 200 kA at 220/230 V, Icw of 15 kA for 1 s, and Icu up to 60–200 kA depending on voltage. It features 3 poles, a PR332/P LI release, and a fixed front-terminal connection.
Yes. With a 1250 A rating, 3P design, and high short-circuit withstand (Ics up to 200 kA and Icw 15 kA), it is well-suited for large motor feeders and transformer protection tasks within Tmax T switchgear, offering reliable interruption and selective coordination.
The unit is CE certified and GL-certified, with RoHS and REACH declarations, CMRT for conflict minerals, and TSCA compliance. It adheres to IEC standards, ensuring broad regulatory compatibility for global deployments.
Durability values include 3000 electrical cycles and 10000 mechanical cycles, reducing maintenance frequency. Stored-energy operation and robust build minimize downtime, contributing to a lower total cost of ownership in high-demand power distributions.