index

Tojoin 20Pcs Ferrite Bead Clip On Ferrite Core Rfi Emi Noise Suppressor Ferrite Rings Cable Clip For Phone, Tv, Speaker, Usb Rad

  • Regular price $19.74

Vendor: Uu Tojoin

Type: Car Amplifiers

Sku: WBEEAB0C4TB56CW

Availability: In Stock


Join Waitlist
Wishlist
Guarantee safe checkout

Sold by Electroeshop, an authorized reseller.

Returns accepted within 30 days | support@electroeshop.com

Verified
Shipping Information
  • Free Standard Shipping — United States only
  • Processing Time: 1–3 business days
  • Estimated Delivery: 3–5 business days after dispatch
  • Double-boxed, fully insured & discreetly packaged
  • Tracking number sent via email once dispatched
  • Orders over $250 require signature upon delivery. Taxes calculated at checkout.
Returns & Refund

Returns accepted within 30 days of delivery.

Damaged or Defective Item

Free return shipping + replacement or full refund

Wrong Item Received

Free return shipping + replacement or full refund

Change of Mind

Return shipping at customer's expense · 25% restocking fee applies

All returns require a Return Authorization (RA) number before sending.

To initiate a return, contact us:

support@electroeshop.com +1 (281) 738-1060
View Full Return & Refund Policy

Tojoin 20Pcs Ferrite Bead Clip On Ferrite Core Rfi Emi Noise Suppressor Ferrite Rings Cable Clip For Phone, Tv, Speaker, Usb Rad

$19.74

Frequently Asked Questions

  • Q: What is the inner diameter of the ferrite rings? A: The inner diameter of the ferrite rings is three millimeters. This size ensures a secure fit on various cables.
  • Q: How many ferrite beads are included in the package? A: The package includes twenty ferrite beads. This quantity is sufficient for daily needs and replacements.
  • Q: What materials are the ferrite beads made of? A: The ferrite beads are made from a combination of plastic and ferrite materials. They are designed for long service life and effective noise suppression.
  • Q: How do I install the ferrite rings? A: To install, open the snap joint, insert the wire into the core neck, and then clip it on. This process is quick and effortless.
  • Q: Can these ferrite beads be used on any type of cable? A: Yes, these ferrite beads can be used on various cables, including AC power lines and USB cables. They help reduce electromagnetic interference.
  • Q: Is there a specific way to attach the ferrite rings? A: Yes, it is recommended to attach the ferrite rings on the device side of the cable. This ensures optimal filtering of high-frequency noise.
  • Q: How should I clean the ferrite beads? A: To clean the ferrite beads, wipe them gently with a dry cloth. Avoid using harsh chemicals to maintain their integrity.
  • Q: Are these ferrite rings safe for all electronic devices? A: Yes, the ferrite rings are safe to use with all compatible electronic devices. They help improve signal quality without causing damage.
  • Q: What is the lifespan of these ferrite beads? A: The ferrite beads are designed for long service life. With proper care, they can last for many years.
  • Q: Do these ferrite rings come with a warranty? A: Yes, the product typically comes with a manufacturer warranty. Check the packaging for specific warranty details.
  • Q: What should I do if the ferrite beads arrive damaged? A: If the ferrite beads arrive damaged, contact the seller for a return or replacement. Most sellers have a customer support policy for such issues.
  • Q: Can I use these ferrite rings on audio equipment? A: Yes, these ferrite rings are ideal for audio equipment. They help to reduce RFI and EMI noise, enhancing sound quality.
  • Q: Will these ferrite beads fit on thicker cables? A: No, these ferrite beads are specifically designed for cables with an inner diameter of three millimeters. Thicker cables may not fit.
  • Q: Are there any specific applications for the ferrite rings? A: Yes, the ferrite rings can be used on various applications such as mouse cables, keyboard cables, and audio cables.
  • Q: How do these ferrite beads improve signal quality? A: These ferrite beads improve signal quality by effectively screening electromagnetic interference and filtering out high-frequency noise pulses.

Recently viewed