ABB 1SDA064780R1 Moulded Case Circuit Breaker - UL 489
Part Number: 1SDA064780R1
Quick Summary
ABB 1SDA064780R1 is a Moulded Case Circuit Breaker used in distribution panels to protect transformers, gensets, and motor racks. Engineers often face costly nuisance tripping and fragmented compliance reporting; this device delivers reliable UL/CSA protection with front terminals and a stored-energy mechanism. UL-listed with CE conformity and RoHS compliance, supported by a UL489 interrupting rating. Designed for rugged industrial environments, it integrates with the SACE Tmax T family for scalable protection and easy installation in front-terminal configurations. This combination provides robust protection, streamlined procurement, and long-term operational confidence for critical power distributions.
Product Information
Extended Description
1SDA064780R1 ABB: C.BREAKER TMAX T7S 1000 UL/CSA FIXED THREE-POLE WITH FRONT TERMINALS AND STORED ENERGY OPERATING MECHANISM AND SOLID-STATE RELEASE IN AC PR332/P-LSI R 1000
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
T7MSBP3DR000000XX
EAN
8015644676759
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 EAN
8015644676759
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
Mechanical Durability
10000 cycle | 60 cycles per hour
Number of Poles
3P
Power Loss
at Rated Operating Conditions per Pole 30 W
Rated Current (In)
1000 A
Rated Impulse Withstand Voltage (Uimp)
8 kV
Rated Insulation Voltage (Ui)
1000 V
Rated Operational Voltage
600 V AC
Rated Uninterrupted Current (Iu)
1000 A
Release
PR332/P LSI
Release Type
EL
Short-Circuit Performance Level
S
Standards
UL
Sub-type
T7
Terminal Connection Type
Fixed Circuit-Breakers | Front
Test Voltage Max (Utest)
3500 V
Interrupting Rating acc. to UL489
(240 V AC) 65 kA | (480 V AC) 50 kA | (600 V AC) 25 kA
Data Sheet, Technical Information
9AKK105713A5947
Declaration of Conformity - CE
EC Declaration of Conformity Tmax T7
GL Certificate
1SDL000163R0055
Instructions and Manuals
Tmax. T Generation - Low voltage molded case circuit breakers up to 1200 A - UL 489 and CSA C22.2 Standard
ETIM 8
EC000228 - Power circuit-breaker for trafo/generator/installation protection
ETIM 9
EC000228 - Power circuit-breaker for trafo/generator/installation protection
WEEE Category
5. Small Equipment (No External Dimension More Than 50 cm)
eClass
V11.1 : 27370409
Feature: 3-pole design with fixed front terminals and a stored-energy operating mechanism (PR332/P LSI). Impact: enhances maintenance safety, reduces commissioning time, and ensures reliable tripping. Application: front-access panels in industrial facilities where quick, safe servicing is essential. Feature: 1000 A rated current and 600 V AC rated operating voltage, plus 1000 V rated insulation and 8 kV impulse withstand. Impact: supports high-power feeders with a compact device footprint and proven UL489 performance. Application: transformer and genset protection in medium-to-large distribution schemes. Feature: Mechanical durability rated at 10000 cycles. Impact: lowers replacement costs and downtime by enduring frequent switching. Application: motor starting scenarios and continuous protection duties in manufacturing lines. Feature: Compliance suite including UL/CSA, RoHS, TSCA, CMRT. Impact: simplifies regulatory adherence and sustainability reporting for procurement. Application: enterprise-wide or project-level compliance programs. Feature: Front-terminal fixed configuration and Tmax T compatibility. Impact: facilitates fast installation, clean wiring, and scalable protection architecture. Application: retrofits or new builds aligning with SACE Tmax T families across panels and switchgear.
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FAQs
What wiring and front-terminal requirements apply when adding the 1SDA064780R1 to an existing control panel? The device uses fixed front terminals and is designed for 3P assemblies. Confirm panel width clearance, torque specs for terminal screws, and ensure compatible busbar spacing. Cross-check with SACE Tmax T family guidelines to avoid derating, and verify UL489 compliance for proper interrupting performance in the intended voltage class.
Key specs include 1000 A rated current, 600 V AC rated operating voltage, 1000 V rated insulation voltage, 8 kV rated impulse withstand voltage, and a UL489 interrupting rating. The device is 3-pole with front terminals and uses PR332/P LSI for reliable release. These figures support protection of high-power feeders in industrial distributions and ensure safe operation under fault conditions.
Yes. With 3P configuration, 1000 A current rating, and 600 V AC operating voltage, the breaker is well-suited for transformer and genset feeder protection. Its Tmax T family compatibility and front-terminal design simplify integration in distribution panels, while the UL489 performance verifies dependable fault interruption for critical load circuits in power plants and manufacturing facilities.
The 1SDA064780R1 carries UL/CSA recognition, CE conformity, RoHS compliance, CMRT, and TSCA declarations. It is designed to meet regulatory requirements for industrial electrical protection devices, supporting procurement and sustainability initiatives. Expect documentation including CE Declaration, GL certificate, and RoHS/CMRT statements to accompany purchase orders.
The unit offers 10000 mechanical durability cycles, reducing replacement and downtime in frequent switching scenarios. Front-terminal design simplifies field wiring during maintenance, while high-current and fault-interruption ratings minimize nuisance trips. Overall, this translates to lower maintenance costs, improved panel reliability, and faster project payback in challenging industrial environments.