HN DIN HRC fuse 315A 415V AC Size I | L&T – SF94234OOOO
₹1,600.00 Excl. GST
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The SF94234OOOO SF94234OOOO is a fuse, engineered for reliable circuit protection and isolation in demanding Indian and international installations. Key ratings include 315 A, 415V AC. Buy the HN DIN HRC fuse 315A 415V AC Size I | 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 | SF94234OOOO |
| Part Number / SKU | SF94234OOOO |
| Category | Fuse |
| Current Rating | 315 A |
| Voltage Rating | 415V AC |
| Rated Frequency | 50/60 Hz |
| Standards | IS and IEC applicable standards |
| Certifications | BIS certified where applicable |
⚡ Key Features
- 315 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 SF94234OOOO 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 315 A rating on the SF94234OOOO?
A: The 315 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.












