
ROXBURGH EMC SMV choke, 0.5mH inductance, 2A current, 0.37Ω DCR. No SVHC, ideal for EMI filtering in power supplies.
The ROXBURGH EMC SMV Series Choke is a high-quality differential mode inductor designed for effective electromagnetic interference (EMI) filtering in electronic circuits. With a nominal inductance of 500µH (0.5mH) and a DC current rating of 2A, this choke is suitable for a wide range of power supply and signal line applications.
Key features include a low DC resistance of 0.37ohm (maximum), ensuring minimal power loss and efficient operation. The component is compliant with the latest environmental standards, confirmed as containing No SVHC substances as of June 2022, making it a safe choice for modern electronics manufacturing.
Construction and Dimensions
This through-hole component is compact and lightweight, weighing just 35 grams, with dimensions of 43mm (height) x 33mm (width) x 15mm (depth), allowing for easy integration into space-constrained PCB layouts.
Typical Applications
The choke is primarily used for differential mode noise suppression in switch-mode power supplies, DC-DC converters, and other electronic equipment requiring clean power delivery.
Its robust design and reliable performance make it an essential component for engineers seeking to meet electromagnetic compatibility (EMC) standards.
Specifications Summary
This differential mode choke is a dependable solution for reducing conducted EMI and ensuring stable operation of sensitive electronics.
Need larger quantities? Need additional quantities? Get in touch and we'll arrange it for you.
Always follow local regulations and product guidance.
Free standard delivery on UK mainland orders. Express delivery options and international shipping available at checkout.
We offer a 30-day money-back guarantee on most products. For faulty items, contact us within 14 days for a replacement or refund.
View Full Delivery & Returns PolicyWe take the utmost care with your payment and personal details. Our website employs advanced encryption technology, including Secure Sockets Layer (SSL), to protect your information during transmission. You can verify a secure connection by looking for 'https' and a locked padlock in your browser.
Cookies enhance your shopping experience by keeping track of your basket and remembering you when you return. We also use banner advertising based on your browsing history to present products of potential interest.
Beware of phishing scams! We will never ask for personal details via email. If such information is required, we'll request you to contact us by phone. If you receive an email requesting sensitive information, do not respond and let us know immediately.