Unshielded SMD Power Inductors - DS1608
DS1608
DS1608 delivers ultraâcompact, lowâRDC power inductance with high energy storage, ideal for wearables, smart sensors, and spaceâcritical DC/DC converters.
Inductance / Impedance
1-1000 (µH)
Rated Current
0.1-5 (A)
Features
- Designed for the smallest possible size and high performance
- They are with high energy storage and very low resistance making them the ideal inductors for DC-DC conversion in the following applications
- DS 1608 used ceramic base with gold-plating
- Others used LCP plastic base
Applications
- Wearables.
- Smart sensors.
- AI systems.
- Industrial systems.
A 6.60 (MAX) m/m
B 4.45 (MAX) m/m
C 3.94 (MAX) m/m
D 2.92 (MAX) m/m
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Shielded SMD Power Inductors - SDS1608
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Details
How can you reduce PCB footprint while maintaining power conversion efficiency in space-constrained devices?
The DS1608 Unshielded SMD Power Inductor delivers industry-leading compactness with minimal DC resistance, enabling efficient DC/DC conversion in wearables and smart devices. Core Master's ceramic base with gold-plating technology ensures stable performance across demanding thermal and electrical conditions. Our engineering team specializes in optimizing inductor specifications for your exact space and performance requirementsâconnect with us to discuss your next-generation product development.
Core Master's DS1608 inductors are the ideal solution for manufacturers seeking to optimize PCB real estate without compromising on power delivery and signal integrity. Whether designing next-generation wearables, intelligent sensor networks, AI-enabled systems, or industrial equipment, the DS1608 provides the dependable inductance your DC/DC converters and power management circuits demand. With over 40 years of specialized manufacturing expertise and SGS-certified quality assurance, Core Master ensures every component meets the highest standards for performance and reliability. Contact our engineering team today to explore customization options tailored to your specific application requirements.



