Knowles Expands High Q Ceramic Core Inductors

Knowles Precision Devices has expanded its ceramic core inductor portfolio to address a broader range of RF and microwave designs where stable inductance, predictable Q, and consistent manufacturability are critical.

The Knowles Precision Devices ceramic core RF inductor updated range targets standard commercial, industrial, telecom, and medical applications that need reliable RF signal conditioning without the cost and lead time penalties of highly specialized components.

By combining high‑Q factor ceramic cores with standard terminations and optional non‑magnetic variants, these inductors give RF designers and purchasing teams a practical balance of RF performance, availability, and cost for mainstream designs.

Key features and benefits

Typical applications

Knowles ceramic core inductors target RF and microwave circuits where stability, availability and consistent RF characteristics are more important than pushing absolute performance limits.

RF and microwave signal conditioning

Medical and magnetically sensitive systems

Industrial, telecom and navigation equipment

Technical highlights

Public details in the press information focus on the electrical behavior and termination options rather than specific catalogue values. For exact inductance ranges, tolerances, case sizes, and current ratings, designers should always refer to the manufacturer datasheet for the specific A‑Series ceramic core inductors.

Electrical characteristics

Mechanical and termination options

Typical selection parameters

The following table summarizes the main selection parameters engineers will focus on when choosing from the portfolio (concrete values are according to the manufacturer datasheet):

ParameterWhat to check in datasheetPractical implication in design
Inductance valueNominal inductance and toleranceSets resonance/matching; tighter tolerance eases tuning
Q factor vs frequencyQ curves across operating bandHigher Q reduces filter loss and improves selectivity
Self‑resonant frequency (SRF)SRF at specified test conditionsOperating frequency should remain well below SRF
Rated current / powerMaximum current and associated temperature riseDetermines suitability for power handling in RF path
DC resistance (DCR)Typical and max DCRImpacts insertion loss and efficiency
Case size / footprintDimensions and pad layoutAffects PCB density and layout constraints

All of these parameters should be verified in the latest datasheet and simulation models before freezing the design.

Design‑in notes for engineers

Practical selection guidelines

Application‑specific considerations

Reliability and qualification

Source

This article is based on a manufacturer news post announcing the expansion of the Knowles ceramic core inductor portfolio for RF and microwave applications, complemented by information from the associated product literature and datasheet overview provided by Knowles.

References

  1. Knowles blog – Knowles Expands Ceramic Core Inductor Portfolio for Reliable RF Performance in Diverse Applications
  2. Knowles A‑Series High‑Q Ceramic Core Inductors brochure/datasheet overview
  3. Knowles inductors product family overview
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