ABB 2TFH100670R1001 Moulded Case Circuit Breaker - IEC60947-2
Part Number: 2TFH100670R1001
Quick Summary
ABB 2TFH100670R1001 is a three-pole molded case circuit breaker used to protect low‑voltage distribution panels and switchgear. For engineers facing fault-related downtime and equipment damage, this device delivers reliable interruption and safe disconnection. The XT2 family aligns with critical standards such as IEC 60947-2, CE conformity, and RoHS/REACH declarations, ensuring regulatory compliance. With a 100 A rating, high Ics/Icu capabilities, and compact plug‑in design, it supports streamlined installations. Choosing this MCCB reduces panel heat, extends component life, and lowers maintenance and replacement costs across manufacturing lines and data centers, while preserving short‑circuit protection and easier field service.
Product Information
Extended Description
2TFH100670R1001 ABB: XT2H160 MA100/600-1400 PMP 3P
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
Environmental Information
Breakers - Packaging disposal information
Customs Tariff Number
85362000
Product Main Type
SACE Tmax XT
Product Name
Moulded Case Circuit Breaker
Product Type
Automatic Circuit Breaker
Version
P
Current Type
AC/DC
Electrical Durability
8000 cycle | 120 cycles per hour
Mechanical Durability
25000 cycle | 240 cycles per hour
Number of Poles
3P
Power Loss
at Rated Operating Conditions per Pole 9.5 W
Rated Current (In)
100 A
Rated Impulse Withstand Voltage (Uimp)
8 kV
Rated Insulation Voltage (Ui)
1000 V
Rated Operational Voltage
690 V AC | 500 V DC
Rated Service Short-Circuit Breaking Capacity (Ics)
(220 V AC) 100 kA | (230 V AC) 100 kA | (240 V AC) 100 kA | (380 V AC) 70 kA | (415 V AC) 70 kA | (440 V AC) 65 kA | (500 V AC) 50 kA | (525 V AC) 30 kA | (690 V AC) 15 kA | (250 V DC) 2 Poles in Series 70 kA | (500 V DC) 3 Poles in Series 70 kA
Rated Ultimate Short-Circuit Breaking Capacity (Icu)
(220 V AC) 100 kA | (230 V AC) 100 kA | (240 V AC) 100 kA | (380 V AC) 70 kA | (415 V AC) 70 kA | (440 V AC) 65 kA | (500 V AC) 50 kA | (525 V AC) 30 kA | (690 V AC) 15 kA | (250 V DC) 2 Poles in Series 70 kA | (500 V DC) 3 Poles in Series 70 kA
Rated Uninterrupted Current (Iu)
160 A
Release
MA
Release Type
M
Remarks
ATLAS
Short-Circuit Performance Level
H
Standards
IEC60947-2 | GB/T 14028.2
Sub-type
XT2
Terminal Connection Type
Plug-In Circuit-Breakers
Data Sheet, Technical Information
SACE Tmax XT IEC Low voltage molded case circuit-breakers Catalog | SACE Tmax XT IEC TECHNICAL CHARACTERISTICS Low voltage molded case circuit-breakers
Declaration of Conformity - CE
EC Declaration of Conformity Tmax XT2
Instructions and Manuals
Installation Instructions XT2
WEEE Category
5. Small Equipment (No External Dimension More Than 50 cm)
Feature: 100 A rated current with 3P configuration. Business Impact: Enables reliable protection for mid‑size distribution panels while maintaining a compact footprint. Application: motor control centers and switchgear in manufacturing lines. Feature: Ics up to 100 kA and Icu up to 100 kA (depending on voltage). Business Impact: Strong short‑circuit protection reduces risk of equipment damage and unplanned downtime. Application: high‑fault‑level industrial installations. Feature: Rated operational voltage of 690 V AC and 500 V DC; Ui 1000 V. Business Impact: Broad voltage compatibility lowers part variety and stock costs. Application: mixed electrical environments in process and automation. Feature: Power loss of 9.5 W per pole. Business Impact: Lower heat generation improves panel density and cooling efficiency. Application: compact switchgear where energy efficiency matters. Feature: RoHS and REACH compliance with CE Declaration of Conformity. Business Impact: Simplified regulatory clearance and sustainable procurement. Application: regulated industries and global deployments. Feature: Plug‑in circuit‑breaker design and 3P configuration. Business Impact: Faster installation, easier maintenance, and reduced downtime. Application: field service and modular panels. Feature: Electrical durability of 8000 cycles and mechanical durability of 25000 cycles. Business Impact: Long lifecycle support in high‑cycle applications. Application: production lines with frequent protection cycling.
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FAQs
Installation follows the XT2 family guidelines for plug‑in circuit breakers. Ensure proper panel mounting, verify correct 3P orientation, tighten terminal connections to manufacturer torque specs, and observe ambient clearance. The device supports straightforward field replacement, reducing downtime during commissioning and routine maintenance while delivering IEC 60947‑2 compliant fault protection.
Key ratings include a rated current of 100 A, rated insulation voltage Ui of 1000 V, rated operational voltage of 690 V AC / 500 V DC, and an impulse withstand of 8 kV. Short‑circuit capabilities are up to 100 kA (Ics/Icu depending on voltage). The product has 3 poles and a power loss of about 9.5 W per pole, supporting reliable distribution protection.
Yes. With 3P configuration, 690 V AC operation, high Ics/Icu ratings, and a robust XT2 design, it is well suited for motor protection in manufacturing lines and other high‑fault environments. The plug‑in design simplifies replacement and maintenance, while the device’s compliance with IEC 60947‑2 ensures alignment with industrial protection standards.
The product includes CE Declaration of Conformity, RoHS Information and REACH Declaration, CMRT for conflict minerals reporting, and WEEE categorization. It is part of the SACE Tmax XT family, with official installation instructions and data sheets supporting compliant procurement and environmental responsibility in global supply chains.
The MCCB delivers a long electrical life of up to 8000 cycles and mechanical life up to 25000 cycles, reducing replacement frequency. Its low power loss and plug‑in design minimize thermal load and maintenance time, contributing to lower operating costs and improved lifecycle ROI in mass‑production and critical process environments.