Professional RF Inductor & Multilayer Ferrite Chip Bead Solutions

ABC ATEC delivers precision-engineered multilayer ferrite chip beads with 150Ω impedance and 2000mA current rating for reliable EMI suppression in household appliances and consumer electronics.

150Ω Impedance, 2000mA, 1608 RF Inductor, Multilayer Ferrite Chip Bead - High Current Multilayer Chip Bead
  • 150Ω Impedance, 2000mA, 1608 RF Inductor, Multilayer Ferrite Chip Bead - High Current Multilayer Chip Bead

150Ω Impedance, 2000mA, 1608 RF Inductor, Multilayer Ferrite Chip Bead

MB1608151YS

Multilayer Ferrite Chip Bead, General Grade

150Ω Impedance, 2000mA, 1608 Multilayer Ferrite Chip Bead MB series have sizes include 1005, 1608, 2029. With an increased DC current rating range, it ensures optimal performance and effective noise suppression in household appliances. Compliant with RoHS requirements and halogen-free.

Product Features
  • Noise reduction for data line
  • High current
  • Operating temp.: -55°C ~ +125°C (including self-temperature rise)
Product Applications
  • Noise reduction for general circuits
Product CategoryRF Inductor - Multilayer Ferrite Chip BeadImpedance (Ω)150
Part NumberMB1608151YSRDC (Ω)0.05
GradeGeneralIDC (A)2
Length (mm)1.6Operating temp.°C (LOW)-55
Width (mm)0.8Operating temp.°C (HIGH)125
Height (mm)0.8
Download
Multilayer Ferrite Chip Bead MB1608 Series Datasheet
Multilayer Ferrite Chip Bead MB1608 Series Datasheet

Include dimensions, electrical characteristics and curve diagrams for your reference

Download
Related Products
150Ω Impedance, 300mA, 2029 RF Inductor, Multilayer Ferrite Chip Bead - High Current Multilayer Chip Bead
150Ω Impedance, 300mA, 2029 RF Inductor, Multilayer Ferrite Chip Bead
MU2029151YS

150Ω Impedance, 300mA, 2029 Multilayer Ferrite Chip Bead MU series have sizes include 0603,...

Details Add to List
150Ω Impedance, 400mA, 1608 RF Inductor, Multilayer Ferrite Chip Bead - High Current Multilayer Chip Bead
150Ω Impedance, 400mA, 1608 RF Inductor, Multilayer Ferrite Chip Bead
MU1608151YS

150Ω Impedance, 400mA, 1608 Multilayer Ferrite Chip Bead MU series have sizes include 0603,...

Details Add to List
150Ω Impedance, 200mA, 1005 RF Inductor, Multilayer Ferrite Chip Bead - High Current Multilayer Chip Bead
150Ω Impedance, 200mA, 1005 RF Inductor, Multilayer Ferrite Chip Bead
MU1005151YS

150Ω Impedance, 200mA, 1005 Multilayer Ferrite Chip Bead MU series have sizes include 0603,...

Details Add to List
150Ω Impedance, 200mA, 0603 RF Inductor, Multilayer Ferrite Chip Bead - High Current Multilayer Chip Bead
150Ω Impedance, 200mA, 0603 RF Inductor, Multilayer Ferrite Chip Bead
MU0603151YS

150Ω Impedance, 200mA, 0603 Multilayer Ferrite Chip Bead MU series have sizes include 0603,...

Details Add to List

How can you ensure reliable EMI suppression in consumer electronics while meeting RoHS environmental standards?

ABC ATEC's MB1608151YS multilayer ferrite chip bead provides 2000mA high-current capacity with proven noise reduction for data lines in household appliances. Our RoHS-compliant, halogen-free design ensures your products meet global environmental regulations while delivering exceptional EMI suppression performance across -55°C to +125°C operating temperatures. With 45 years of specialized inductor expertise and IATF16949 certification, we guarantee the quality and reliability your manufacturing requires.

Designed specifically for noise reduction in general circuits, the MB1608151YS multilayer ferrite chip bead series—available in 1005, 1608, and 2029 sizes—addresses the critical challenge of maintaining signal integrity in high-frequency applications. Its increased DC current rating range makes it ideal for power-sensitive designs where traditional inductors may fall short. Whether you're developing household appliances, consumer electronics, or telecommunications equipment, ABC ATEC's multilayer ferrite chip beads provide the precision engineering and quality assurance your applications demand. Contact our technical team today to discuss customized EMI suppression solutions tailored to your specific circuit requirements and performance specifications.