High-Q Ceramic Core Inductor Series

Knowles ceramic core inductors ensure reliability and performance in demanding environments

Image of Knowles Voltronics High-Q Ceramic Core Inductor SeriesKnowles introduces its high-Q ceramic core inductor series, designed for RF applications that demand high efficiency and minimal energy loss. These inductors offer superior Q performance, low ESR, and low DC resistance making them ideal for high-frequency applications such as MRI, radar, and avionics systems.

Features
  • High-Q for improved RF efficiency
  • Low ESR for minimal power loss
  • Excellent thermal stability
  • High-frequency handling: 1 MHz to 1 GHz
  • RoHS compliant, lead-free
  • Available in multiple package sizes
Applications
  • MRI systems
  • Radar and aerospace communications
  • RF filters and coupling circuits
  • Power amplifiers
  • Avionics systems

High-Q Ceramic Core Inductor Series

ImageManufacturer Part NumberDescriptionAvailable QuantityPriceView Details
FIXED INDUCTOR 120NH 300MA SMDCL1008-2124JQL1T-1FIXED INDUCTOR 120NH 300MA SMD3920 - Immediate$5.52View Details
FIXED INDUCTOR 470NH 240MA SMDCL1008-J474JQL1T-1FIXED INDUCTOR 470NH 240MA SMD1950 - Immediate$5.52View Details
FIXED INDUCTOR 120NH 1000MA SMDCL1008-2123JQL1T-1FIXED INDUCTOR 120NH 1000MA SMD3950 - Immediate$5.52View Details
FIXED INDUCTOR 820NH 370MA SMDCL1008-2823JQL1T-1FIXED INDUCTOR 820NH 370MA SMD3950 - Immediate$5.52View Details
FIXED INDUCTOR 470NH 240MA SMDCL1008-2474JQL1T-1FIXED INDUCTOR 470NH 240MA SMD3948 - Immediate$5.52View Details
FIXED INDUCTOR 120NH 1000MA SMDCL1008-J123JQL1T-1FIXED INDUCTOR 120NH 1000MA SMD1950 - Immediate$5.52View Details
FIXED INDUCTOR 100NH 70MA SMDCL1008-2106JQL1T-1FIXED INDUCTOR 100NH 70MA SMD1920 - Immediate$5.52View Details
FIXED INDUCTOR 100NH 70MA SMDCL1008-J106JQL1T-1FIXED INDUCTOR 100NH 70MA SMD1950 - Immediate$5.93View Details

Kit

ImageManufacturer Part NumberDescriptionAvailable QuantityPriceView Details
CL High Q Inductor KitCL1008-1-KITCL High Q Inductor Kit9 - Immediate$129.00View Details
Published: 2025-07-08
Updated: 2025-08-25