ABB 2TFH100102R1001 Tmax XT MCCB - 4P 40A IEC60947-2
Part Number: 2TFH100102R1001
Quick Summary
ABB 2TFH100102R1001 Tmax XT MCCB is a protective device for reliable protection and isolation in low-voltage panels. Engineers often wrestle with nuisance trips, limited diagnostics, and costly downtime when protection gear underperforms. It meets IEC 60947-2 and GB/T 14028.2, with CE conformity for global deployment. With a 40 A rating and 690 V operating voltage, this MCCB delivers reliable protection in SACE Tmax XT installations, reducing downtime and maintenance costs.
Product Information
Extended Description
2TFH100102R1001 ABB: XT1N160 TMD40/450 FFC 4P
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
F
Current Type
AC/DC
Electrical Durability
8000 cycle | 120 cycles per hour
Mechanical Durability
25000 cycle | 240 cycles per hour
Number of Poles
4P
Power Loss
at Rated Operating Conditions per Pole 2.6 W
Rated Current (In)
40 A
Rated Impulse Withstand Voltage (Uimp)
8 kV
Rated Insulation Voltage (Ui)
800 V
Rated Operational Voltage
690 V AC | 500 V DC
Rated Service Short-Circuit Breaking Capacity (Ics)
(220 V AC) 50 kA | (230 V AC) 50 kA | (240 V AC) 50 kA | (380 V AC) 36 kA | (415 V AC) 36 kA | (440 V AC) 18 kA | (500 V AC) 15 kA | (525 V AC) 11 kA | (690 V AC) 5 kA | (250 V DC) 2 Poles in Series 36 kA | (500 V DC) 3 Poles in Series 36 kA
Rated Ultimate Short-Circuit Breaking Capacity (Icu)
(220 V AC) 65 kA | (230 V AC) 65 kA | (240 V AC) 65 kA | (380 V AC) 36 kA | (415 V AC) 36 kA | (440 V AC) 36 kA | (500 V AC) 30 kA | (525 V AC) 22 kA | (690 V AC) 6 kA | (250 V DC) 2 Poles in Series 36 kA | (500 V DC) 3 Poles in Series 36 kA
Rated Uninterrupted Current (Iu)
160 A
Release
TMD
Release Type
TM
Short-Circuit Performance Level
N
Standards
IEC60947-2 | GB/T 14028.2
Sub-type
XT1
Terminal Connection Type
Front for Copper Cables
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 XT1
Instructions and Manuals
Installation instructions XT1
WEEE Category
5. Small Equipment (No External Dimension More Than 50 cm)
Feature: 4P configuration with a 40 A rated current and 690 V operating voltage. Business Impact: Enables safe, coordinated protection across multiple circuit legs, reducing the risk of cascading faults and enabling easier panel design and commissioning. Application: Control panels and motor control centers where four-pole protection is required. Feature: High short-circuit ratings (Icu up to 65 kA; Ics up to 50 kA depending on voltage). Business Impact: Improved fault withstand capability and better selective coordination, leading to lower total downtime and reduced downstream damage. Application: Main and cross-circuit protection for high-demand industrial loads. Feature: Front terminal connection for copper cables. Business Impact: Faster, cleaner wiring and reduced installation time while maintaining robust mechanical reliability. Application: New installations and retrofit projects in tight electrical rooms. Feature: Release mechanism TM with TMD specification within the Tmax XT family. Business Impact: Flexible protection options and easier integration with upstream protection devices, promoting safer trip schemes and simplified maintenance. Application: Applications requiring precise coordination with upstream breakers. Feature: Low power loss (2.6 W per pole) under rated operating conditions. Business Impact: Lower heat generation, improved ambient temperature performance, and energy-efficiency in panel cooling. Application: Enclosures with limited ventilation or tight thermal budgets. Feature: Long electrical and mechanical durability (8000 electrical cycles; 25000 mechanical cycles). Business Impact: Extended service life reduces maintenance frequency and total cost of ownership. Application: High-cycle duty environments such as packaging, conveyors, and process lines. Feature: RoHS, REACH, CMRT and WEEE compliance. Business Impact: Regulatory compliance minimizes risk in audits and supports sustainable procurement. Application: Global manufacturing sites with strict supply chain requirements.
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FAQs
Follow standard MCCB installation practices: ensure front copper cable terminals are clean and torqued to manufacturer specs, mount on a sturdy DIN rail or panel frame, and connect per the control schematic. Verify the release mechanism is correctly aligned and perform a no-load mechanical check before energizing. This reduces commissioning time and prevents post-install faults.
Key specs include 40 A rated current, 690 V AC and 500 V DC rated operational voltage, Icu up to 65 kA, Ics up to 50 kA depending on voltage, and a 4P arrangement with front copper cable terminals. These values support reliable protection and fast fault clearance in typical industrial power distribution.
Yes. With four poles, high short-circuit ratings, and a Tmax XT release family, it provides selective protection for motors and associated drive circuits. The 2.6 W per pole power loss and long durability also help maintain motor protection without excessive heating or maintenance.
The device complies with IEC 60947-2 and GB/T 14028.2, and carries CE conformity. It also references RoHS and REACH declarations, CMRT, and WEEE categorization, supporting global deployment and regulatory audits in manufacturing and distribution environments.
Electrical durability is rated at 8000 cycles and mechanical durability at 25000 cycles, reducing maintenance downtime. The robust protection, easy installation, and regulatory compliance translate to lower total cost of ownership, fewer unexpected outages, and improved uptime across automated production lines.