This Snap On Ferrite Choke is a cylindrical shaped product designed for electronic devices. It comes in a carton package and can be easily mounted with its snap on feature. Its snap-on type makes it convenient to install and remove, making it a versatile and efficient solution for noise suppression and interference reduction in electronic devices.
The Snap On Ferrite Choke is made of a ferrite ring magnet and a flat ferrite core. When placed around a cable or wire, it creates a ferrite core coil which helps to suppress noise and reduce interference. This is achieved by absorbing and dissipating high frequency signals, preventing them from traveling along the cable and causing disruptions in electronic devices.
The Snap On Ferrite Choke is suitable for a wide range of electronic devices, including:
The Snap On Ferrite Choke is a reliable and effective solution for noise suppression and interference reduction in electronic devices. Its snap-on feature and cylindrical shape make it easy to use and compatible with various devices. Whether for personal or professional use, this product is a must-have for anyone looking to improve the performance of their electronic devices.
The Snap On Ferrite Choke, also known as Clip On Ferrite Core, is a type of electronic component designed to suppress noise and interference in electrical circuits. It is manufactured by weiaipu, a leading company in the field of electromagnetic interference solutions.
This product is commonly used in electronic devices that require noise suppression, such as computers, televisions, radios, and other consumer electronics. It is also widely used in industrial and automotive applications.
The Snap On Ferrite Choke consists of a ferrite core coil, also known as a choke coil inductor, which is wrapped around a cylindrical core made of ferrite material. This creates a conductive path that helps to absorb and eliminate unwanted electromagnetic interference.
The Snap On Ferrite Choke by weiaipu is a highly effective and versatile product for noise suppression and EMI filtering. Its compact design, wide temperature range, and high frequency range make it suitable for various applications. Invest in this product to ensure smooth and uninterrupted operation of your electronic devices.
Brand Name: weiaipu
Model Number: V18014FS
Place of Origin: Shenzhen
Usage: Noise Suppression
Mounting Type: Snap On
Model: V18018
Operating Temperature: -40°C To +85°C
Samples: Sent Out Immediately
We offer customized services for our Snap On Ferrite Choke, model number V18014FS. Our brand, weiaipu, is well-known for high-quality and reliable electronic components. Our product is designed and manufactured in Shenzhen, a city known for its advanced technology and manufacturing capabilities.
Our Snap On Ferrite Choke is specifically designed for noise suppression, making it an essential component for any electronic device. It is a type of choke coil inductor, which helps to reduce or eliminate electromagnetic interference (EMI) and radio frequency interference (RFI) in electronic circuits.
With a mounting type of Snap On, our Ferrite Bead can easily be attached to any electronic circuit board, providing a convenient and secure installation. The model V18018 is designed for compatibility with a wide range of electronic devices, making it a versatile and adaptable choice for noise suppression.
Our Snap On Ferrite Choke can operate in a temperature range of -40°C to +85°C, ensuring its durability and stability even in extreme environments. We also offer samples that can be sent out immediately, allowing our customers to test and evaluate our product before making a purchase.
Choose weiaipu for your Snap On Ferrite Choke needs and experience the quality, reliability, and convenience of our customized services. Contact us now to learn more and place your order.
Thank you for choosing our Snap On Ferrite Choke product. We are committed to providing you with the best technical support and services to ensure the optimal performance and satisfaction with our product. Please find below the various support and services options available for your convenience.
If you have any technical questions or issues with our Snap On Ferrite Choke, our experienced team of engineers and technical experts are available to assist you. You can reach us through the following channels:
We stand behind the quality and performance of our Snap On Ferrite Choke and offer a one-year limited warranty against any defects in materials or workmanship. If you encounter any issues with your product within the warranty period, please contact our customer service team for assistance.
If for any reason you are not satisfied with your purchase, we offer a hassle-free returns and replacements policy. You can return the product within 30 days of purchase for a full refund or request a replacement for a defective product within the warranty period. Please contact our customer service team for further instructions.
We understand that every application is unique and may require a customized solution. Our team of engineers and technical experts are available to work with you to develop a custom Snap On Ferrite Choke that meets your specific requirements. Please contact us for more information and to discuss your needs.
Thank you once again for choosing our Snap On Ferrite Choke. We value your business and are committed to providing you with the best technical support and services. If you have any further questions or concerns, please do not hesitate to reach out to us.
Each Snap On Ferrite Choke is carefully packaged to ensure safe delivery to our customers. The packaging includes a sturdy cardboard box with protective padding to prevent any damage during shipping.
For international orders, the Snap On Ferrite Choke is packaged according to all necessary customs and shipping regulations. This may include additional protective materials and documentation.
Once your order is placed, it will be processed and shipped within 1-2 business days. We offer various shipping options, including standard and express delivery, to accommodate your needs.
For bulk orders, special arrangements can be made for packaging and shipping. Please contact our customer service team for more information.
Upon shipment, you will receive a confirmation email with tracking information so you can easily track your package's delivery status. We strive to ensure that your Snap On Ferrite Choke arrives in perfect condition and in a timely manner.
Thank you for choosing our Snap On Ferrite Choke. We are committed to providing quality products and excellent service, and we appreciate your business.
What does an EMC core do?
An EMC (Electromagnetic Compatibility) core, also known as a ferrite core or EMI suppression core, is used to mitigate electromagnetic interference (EMI) in electronic circuits and components. These cores are typically made of a ferrite material and are designed to suppress unwanted electromagnetic emissions and reduce susceptibility to external electromagnetic interference.
The primary functions of an EMC core include:
EMI Suppression: EMC cores are used to suppress electromagnetic interference generated by electronic devices and components. When placed on cables, circuit traces, or within electronic devices, they help reduce the propagation of electromagnetic noise and emissions.
Noise Filtering: EMC cores can attenuate high-frequency noise and interference, improving the signal integrity and performance of electronic circuits. They are often used to filter out unwanted electromagnetic signals that could disrupt the operation of sensitive electronic equipment.
Impedance Matching: In some cases, EMC cores are used to match the impedance of transmission lines, reducing reflections and improving signal quality in high-speed data transmission applications.
Compliance with Regulatory Standards: Using EMC cores can help electronic devices and equipment meet electromagnetic compatibility standards and regulations, ensuring that they do not interfere with other devices and are not unduly affected by external electromagnetic sources.
Overall, EMC cores play a crucial role in ensuring that electronic devices and systems operate reliably in the presence of electromagnetic interference, while also minimizing their impact on other nearby devices.