Engineers working on critical applications require components that offer reliability, maximum efficiency, and the low signal loss. In this webinar, Knowles will showcase its high-Q ceramic core inductors and how they are engineered to meet these stringent requirements. Attendees will also learn how Knowles leverages its expertise in high-performance RF solutions to address challenges beyond standard applications.
Overview
In the RF world, engineers working with mission-critical applications face constant pressure to base their design on improved performance, efficiency, and reliability. Commodity inductors may not meet these needs, leading to higher signal loss, instability at frequency, and risk in long-term operation. This webinar addresses these challenges by introducing Knowles’ high-Q ceramic core inductors, made specifically for applications where reliability cannot be compromised.
Attendees will gain insight into the benefits offered by Knowles inductors, such as stable inductance, low loss, and high SRF performance, while also understanding how these features support real-world applications in aerospace, defense, and medical applications. By pairing inductors with Knowles’ long heritage of high-Q capacitors, engineers can be offered the L+C for these RF designs.
This session will also showcase how leveraging Knowles’ expertise and solution-based approach helps engineers to overcome complex RF design challenges. Whether the goal is improving system efficiency or reducing design risk, attendees will be more knowledgeable of Knowles' inductors and our overall strengths in this industry.
Key Takeaways
- Discover the advantages of ceramic core inductor vs other inductors.
- Understand the role of High-Q and why it is critical metric for RF designs (signal clarify, efficiency, reliability).
- Learn how these components benefit aerospace, defense, and MRI applications.
- Explore how Knowles leverages expertise in serving critical applications and striving for performance.
Speaker
Lu has over 10 years of experience in applications engineering, research, and developing new products. He thrives on working closely with customers to find a solution that fits their reliability and loss needs and constraints. Lu graduated with a degree in Mechanical Engineering from the University of California, Riverside.