ABB S403M MCB, 3P, 63A Curve C, 440V AC, 12V DC, 15 kA Breaking Capacity
- RS Stock No.:
- 140-514
- Mfr. Part No.:
- 2CCS573001R0634
- Brand:
- ABB
Subtotal (1 unit)*
£218.87
(exc. VAT)
£262.64
(inc. VAT)
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- Shipping from 24 November 2025
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Units | Per unit |
---|---|
1 + | £218.87 |
*price indicative
- RS Stock No.:
- 140-514
- Mfr. Part No.:
- 2CCS573001R0634
- Brand:
- ABB
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | ABB | |
Number of Poles | 3 | |
Current Rating | 63A | |
Tripping Characteristics | Type C | |
Rated AC Voltage | 440V | |
Rated DC Voltage | 12V | |
Breaking Capacity at Maximum Voltage Rating | 15 kA | |
Series | S403M | |
Circuit Breaker Type | MCB | |
Width | 54mm | |
Length | 82mm | |
Mounting Style | DIN Rail | |
Depth | 82mm | |
Model Number | S403M-C63 | |
Terminal Contact Type | Screw | |
Application | Commercial, Industrial | |
Select all | ||
---|---|---|
Brand ABB | ||
Number of Poles 3 | ||
Current Rating 63A | ||
Tripping Characteristics Type C | ||
Rated AC Voltage 440V | ||
Rated DC Voltage 12V | ||
Breaking Capacity at Maximum Voltage Rating 15 kA | ||
Series S403M | ||
Circuit Breaker Type MCB | ||
Width 54mm | ||
Length 82mm | ||
Mounting Style DIN Rail | ||
Depth 82mm | ||
Model Number S403M-C63 | ||
Terminal Contact Type Screw | ||
Application Commercial, Industrial | ||
- COO (Country of Origin):
- CH
ABB S403M Series MCB, 3 Poles, 63A Current - 2CCS573001R0634
This MCB is a 3 pole device specifically designed for commercial and industrial applications. With a current rating of 63A and a breaking capacity of 15 kA, it provides reliable protection in various electrical installations. The device features thermal electromechanical tripping mechanisms, ensuring safe operation under overload and short circuit conditions. Its compact design allows for easy installation on a DIN rail, with dimensions of 54mm in width, 82mm in length, and 82mm in depth.
Features & Benefits
• Offers effective overload protection through thermal tripping
• Includes an electromechanical mechanism for short circuit safety
• Designed for use in both commercial and industrial settings
• Supports a wide operational voltage range up to 440V AC
• Easy installation with a standard DIN rail mounting option
• Robust construction ensures long-lasting performance under normal conditions
• Includes an electromechanical mechanism for short circuit safety
• Designed for use in both commercial and industrial settings
• Supports a wide operational voltage range up to 440V AC
• Easy installation with a standard DIN rail mounting option
• Robust construction ensures long-lasting performance under normal conditions
Applications
• Utilised in commercial electrical systems for load management
• Protects industrial machinery from electrical faults
• Suitable for critical power requiring high reliability
• Effective in multi-phase systems with three-pole connections
• Protects industrial machinery from electrical faults
• Suitable for critical power requiring high reliability
• Effective in multi-phase systems with three-pole connections
What should I consider when selecting an MCB for specific applications?
When choosing, consider the current rating, breaking capacity, and the specific tripping characteristics needed for your application. It's crucial to ensure that the MCB meets the electrical load requirements and complies with relevant standards.
How do the tripping mechanisms work in this device?
The device incorporates a delayed thermal mechanism for overload protection, which allows temporary current surges while swiftly disconnecting during persistent overloads. The electromechanical mechanism activates instantly in the event of a short circuit, providing comprehensive protection.
What is the significance of the breaking capacity in this MCB?
The breaking capacity indicates the maximum fault current the device can safely interrupt without damage. A breaking capacity of 15 kA ensures effective protection in scenarios where high fault currents could occur, essential for safeguarding equipment and infrastructure.