Home Tomzn TOPV-32 Fuse Set – DC 1000V Overload & Short Circuit Protection

Tomzn TOPV-32 Fuse Set – DC 1000V Overload & Short Circuit Protection

14
People are viewing this right now
Regular price Rs.1,099.00 Sale price Rs.934.15
Fuse: 20A
Hot Selling

2 people have this in their carts.

Estimate delivery times: 3-4 days

Guarantee Safe Checkout

Visa
Mastercard
Union Pay
Tomzn TOPV-32 Fuse Set – DC 1000V Overload & Short Circuit Protection

Tomzn TOPV-32 Fuse Set – DC 1000V Overload & Short Circuit Protection

Description

Tomzn TOPV-32 Fuse – Compatible with DC 1000V Systems

Key Features:

  • Brand: Tomzn
  • Model Number: TOPV-30 1P
  • Maximum Voltage: 1000V DC
  • Current Range: 1-30A 
  • Short Circuit and Overload Protection: Ensures the safety of electrical systems by preventing damage due to overload or short circuits.
  • Fuse Type: 10 x 38 gPV fuse-links (for photovoltaic systems)
  • Max Dissipation: 4W
  • Wire Range: 1-10mm² (use 75° CU wire only)
  • Torque: 1.8-2.3Nm (for installation)
  • Usage: Photovoltaic (PV) fuses for solar energy systems.
  • Safety Features:
    • Do not connect or disconnect under load.
    • Use in systems with a DC voltage of up to 1000V.
    • Impulse voltage withstand (Uimp) rating: 6kV.
  • Complies with:
    • IEC/EN60947-1
    • IEC/EN60947-3

Applications:

  • Photovoltaic (PV) Systems: Ideal for use in solar energy systems, ensuring safe operation and protecting circuits from overloads or short circuits.
  • DC Electrical Systems: Provides reliable protection in various DC circuits, preventing damage from electrical faults.

Installation Notes:

  • Important Safety Notice: Do not open the fuse under load to avoid electrical hazards.
  • Wiring: Only use copper wire with a 75°C insulation rating for proper functioning and safety.

The Tomzn TOPV-32 DC 1000V Voltage Fuse is a reliable and high-quality solution for protecting DC circuits, especially in photovoltaic (solar power) systems. It ensures system safety and is designed for easy installation and replacement in critical applications.