Home / Shop by Category / Siemens HFD63F090 Circuit Breaker 90A Thermal Magnetic Adjustable
Siemens

Siemens HFD63F090 Circuit Breaker 90A Thermal Magnetic Adjustable

SKU: RAMA426347
Product type: Electrical > Circuit Protection > Circuit Breakers
Limited Stock Remaining
Only 1 left in inventory — order soon or ask us about restock timing.

Need More Details?

If you'd like to check stock availability, request the latest price, or view more product images, simply click the "Request for Price" button and our team will assist you promptly.

WhatsApp
OEM-Verified Parts
15+ Years Experience
Worldwide Shipping
Marine & Offshore Ready

Protect your industrial automation systems with the robust Siemens HFD63F090 Circuit Breaker. This 90A thermal magnetic breaker offers reliable overcurrent protection, ensuring the safety and longevity of your critical equipment. Designed for demanding environments, the Siemens HFD63F090 is an essential component for any sophisticated control setup. Its adjustable settings provide flexibility for various applications.

Engineered for precision and durability, the Siemens HFD63F090 operates seamlessly within industrial electrical systems. It features adjustable magnetic trip settings ranging from 600A to 900A, allowing for fine-tuning to specific load requirements. This breaker is ideal for integration into complex control panels and power distribution units, safeguarding against faults and ensuring continuous operation. The Siemens HFD63F090 is built to meet stringent industry standards for performance and safety.

  • Reliable Protection: Offers dependable thermal and magnetic trip mechanisms for comprehensive overcurrent safety.
  • Adjustable Settings: Features adjustable magnetic trip points from 600A to 900A for tailored protection.
  • Industrial Grade: Built for durability and consistent performance in harsh industrial automation environments.
  • High Capacity: Rated for 90A applications, suitable for significant power loads.
  • Seamless Integration: Designed for easy installation within existing control and power distribution systems.