About 63 A MCB
The 63A MCB Transparent is a high-quality miniature circuit breaker designed for electric scooters, EVs, and other electric vehicles. It provides reliable overcurrent protection, safeguarding your scooters electrical system from short circuits and overloads. The transparent casing allows easy visual inspection of the breaker status.
Made from durable, heat-resistant, and fire-retardant materials, this MCB ensures long-lasting performance, safety, and reliability for your EV.
Key Features:
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Type: 63A MCB Transparent
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Provides overcurrent and short-circuit protection
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Transparent casing for easy inspection
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Durable, heat-resistant, and fire-retardant construction
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Compact design suitable for EV electrical panels
Compatibility:
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Suitable for most EV scooters, electric two-wheelers, and small EVs
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Works with standard DC or AC electrical circuits
Applications:
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Protects EV scooter electrical systems from overloads and short circuits
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Ideal for workshops, service centers, and home maintenance
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Ensures rider and vehicle safety
Why Choose Verde Craft?
Verde Craft supplies premium-quality EV electrical components and safety devices trusted for durability, reliability, and performance. Each 63A MCB Transparent is quality-tested to ensure long-term protection and consistent operation.
Reliable Electrical Protection for Diverse ApplicationsEngineered for adaptability, the 63A MCB provides comprehensive protection across a range of environments. Its rugged thermoplastic body, precision copper/brass contacts, and advanced mechanical design guarantee safe operation. The device is suitable for typical voltage ratings of 240V/415V AC, making it a reliable choice for modern electrical systems in homes, businesses, or industrial setups.
Built for Endurance and SafetyWith a minimum mechanical life of over 20,000 cycles and electrical endurance up to 4,000 cycles, the 63A MCB is designed for longevity. The IP20 or higher rating, coupled with insulation voltage up to 690V AC, ensures protection even in demanding conditions. It complies with IS/IEC 60898-1 standards and is CE certified for added user confidence.
Flexible Installation and Broad CompatibilityThe screw/clamp type terminals support wire sizes up to 35mm2, and DIN rail mounting allows easy integration into any panel system. Available in glossy or matte finishes and multiple pole variants, it meets the needs of different circuit protection schemes. Shock and vibration resistance add another layer of reliability.
FAQ's of 63 A MCB:
Q: How does the 63A MCB ensure safety in electrical systems?
A: The 63A MCB is designed to interrupt electrical flow during overloads or short circuits, preventing damage to equipment and reducing the risk of fire. It features a breaking capacity of 6 kA or 10 kA and complies with IS/IEC 60898-1 and CE safety standards.
Q: What applications are suitable for this 63A MCB?
A: This MCB is ideal for residential, commercial, and industrial installations where reliable AC electrical protection is required for circuits up to 63 amperes. Its multiple pole variants and tripping characteristics allow for versatile usage.
Q: When should I choose between B, C, and D tripping curves?
A: Select the B curve for residential and light load circuits, the C curve for commercial or moderate inrush current, and the D curve for industrial setups with high inductive loads. This flexibility helps tailor protection to specific circuit needs.
Q: Where can the 63A MCB be installed?
A: The device is designed for indoor use and is typically mounted on standard DIN rails within distribution boards or electrical panels. Its IP20 or higher rating makes it suitable for most protected indoor environments.
Q: What is the installation process for this MCB?
A: Installation involves securing the MCB onto a DIN rail, connecting wires up to 35 mm2 to screw/clamp terminals, and ensuring all safety procedures are followed. It supports both single and multipole installation as per site requirements.
Q: How does the 63A MCB benefit long-term operations?
A: The MCB's high mechanical (over 20,000 cycles) and electrical endurance (minimum 4,000 cycles) reduces the need for frequent replacements, providing reliable, low-maintenance protection for critical electrical infrastructure.