2 Pieces | 10 OHM 2 Amp | NTC Current Limiter THERMISTOR 5MM

Availability:

1 in stock


1 in stock

US $3.66

Quantity:
1 Available

NTC Current Limiter Thermistor

Optimize circuit protection with our NTC Current Limiter Thermistor, crafted for precision and reliability. Ideal for controlling inrush current, it enhances device longevity.

  • Resistance: 10 OHM
  • Maximum Current: 2 Amp
  • Package Type: 5MM
  • Voltage Compatibility: Up to 250V
  • Application: Inrush Current Protection

Enhance your electrical designs with our robust current limiter thermistor, suitable for a wide range of engineering applications.

Shipping, returns, and payments

Shipping:
Located in: Chester, New Hampshire, United States (US) · ZIP 03036
Delivery:
Estimated between Fri, Sep 18 and Tue, Sep 22
Ships on Thu, Sep 10 · 6-8 business days
Returns:
30-day returns. Buyer pays for return shipping.
Payments:
stripeVISAMastercardAMEXDISCOVERPayPalVenmo
Secure card payment processed by Stripe. PayPal and Venmo are available at checkout when eligible.

2 Pieces | 10 OHM 2 Amp | NTC Current Limiter THERMISTOR 5MM | US SHIP

Product Details:

Optimize your electronic projects with these premium NTC (Negative Temperature Coefficient) Thermistors, perfect for inrush current limiting. These components ensure reliable protection for power supplies and transformers by incrementally increasing resistance as they warm, effectively reducing inrush currents and preserving the lifespan of sensitive equipment.

Specifications:

  • ✅ Quantity: 2 Pieces
  • ✅ Resistance: 10 Ω (Ohms)
  • ✅ Current: 2 Amp
  • ✅ Diameter: 5mm
  • ✅ Type: NTC Current Limiter Thermistor
  • ✅ Application: Inrush current protection for power supplies, transformers, and more

Features & Benefits:

  • ✔️ Limits inrush current to safeguard circuits
  • ✔️ Convenient 5mm size for seamless integration
  • ✔️ Durable and reliable with a stable resistance profile
  • ✔️ High compatibility with diverse industrial applications
  • ✔️ Made for long-lasting performance in high-demand environments