HN DIN HRC fuse 250A 415V AC Size II | L&T – SF94333OOOO
€21.19 Excl. GST
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The SF94333OOOO SF94333OOOO is a fuse, engineered for reliable circuit protection and isolation in demanding Indian and international installations. Key ratings include 250 A, 415V AC. Buy the HN DIN HRC fuse 250A 415V AC Size II | L&T online at myelectric.in with GST invoice, genuine-product assurance, and fast delivery across India — bulk and worldwide export enquiries welcome.
📋 Technical Specifications
| Parameter | Value |
|---|---|
| Brand | SF94333OOOO |
| Part Number / SKU | SF94333OOOO |
| Category | Fuse |
| Current Rating | 250 A |
| Voltage Rating | 415V AC |
| Rated Frequency | 50/60 Hz |
| Standards | IS and IEC applicable standards |
| Certifications | BIS certified where applicable |
⚡ Key Features
- 250 A current rating — confirmed from product specifications; size wiring and terminals to match or exceed this value.
- 415V AC operating voltage — compatible with standard LV distribution voltages used in Indian industrial installations.
- Manufactured to IS and IEC applicable standards — complies with Indian BIS and IEC international safety standards.
- BIS certified where applicable — meets Indian regulatory requirements for use in government, commercial, and industrial electrical installations.
- Genuine authorised SF94333OOOO product — sourced directly from the official distribution network with full manufacturer traceability and warranty.
- GST invoice provided for India orders — valid for corporate procurement, government project orders, and public tender supply via myelectric.in.
- Worldwide export available — UAE, Singapore, UK, USA, Sri Lanka & more. Contact +91 94814 00316 for bulk pricing and international shipping.
❓ Frequently Asked Questions
Q: What is the significance of the 250 A rating on the SF94333OOOO?
A: The 250 A rating is the device’s maximum continuous current carrying capacity under specified conditions (typically 40°C ambient). For circuit design, use 80% of this value as the design current to allow for derating due to grouping, temperature, and future load growth.












