Professional SMD Multilayer Ferrite Chip Beads for EMI Suppression

CB2012 ferrite beads ensure stable signal integrity across computer motherboards and consumer electronics with superior noise filtering performance

SMD Multilayer Ferrite Chip beads - CB2012 - SMD Multilayer Ferrite Chip beads
  • SMD Multilayer Ferrite Chip beads - CB2012 - SMD Multilayer Ferrite Chip beads

SMD Multilayer Ferrite Chip beads - CB2012

CB2012 (0805)

CB2012 ensures reliable EMI suppression for power and signal lines, enhancing stability in computer motherboards and peripheral devices.

Inductance / Impedance

11-1000 (Ω)

Rated Current

200-600 (mA)

Features
  • Suitable for flow and reflow soldering.
  • Impedance over a broad frequency range.
  • Standard type used to suppress lower-frequency, lower current signals.
Applications
  • I/O interfaces.
  • Computer motherboards.
  • Various categories of consumer electronics.
Dimensions (UNIT: mm)

A 2.0 ± 0.2 m/m
B 1.2 ± 0.2 m/m
C 0.9 ± 0.2 m/m
D 0.5 ± 0.3 m/m

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Customized inductor, choke, coil, and ferrite core.

How can you ensure reliable EMI suppression across multiple signal lines without compromising motherboard layout efficiency?

The CB2012 multilayer ferrite chip beads provide superior noise filtering with impedance across broad frequency ranges, fitting compact PCB designs while maintaining signal integrity. Core Master's 40+ years of expertise ensures your motherboards meet stringent stability requirements. Contact our engineering team to discuss optimal component specifications for your next generation design.

Core Master's CB2012 ferrite chip beads are RoHS certified and backed by SGS quality assurance, reflecting over 40 years of expertise in passive component manufacturing. Whether protecting I/O interfaces, enhancing motherboard stability, or filtering noise in diverse consumer electronics, these beads deliver the performance and reliability your applications demand. Our professional engineering team stands ready to provide technical support and explore customization options tailored to your specific impedance, current, and frequency requirements, ensuring optimal EMI suppression for your unique circuit design challenges.