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SDWL1608C47NGSTF

Part No SDWL1608C47NGSTF
Manufacturer Sunlord
Catalog Fixed Inductors
Sample
Rohs State rohs
ECAD Module
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Manufacturer Sunlord
Category Inductors,Coils,Chokes
Family Fixed Inductors
Win Source Part Number 189101-SDWL1608C47NGSTF
Is this a common-used part? Yes
Popularity High
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian SDWL1608C47NGSTF CAD Model

Description

The SDWL1608C47NGSTF is a wire-wound chip inductor produced by Sunlord. It's designed for use in applications that require a specific inductance for filtering, impedance matching, and tuning in radio frequency circuits.

Applications

  • Mobile Phones: Used in RF front-end circuits.
  • Wireless Communication Equipment: Employed in various wireless modules.
  • Bluetooth Devices: Used in Bluetooth modules for impedance matching.
  • RF Transceivers: Utilized within RF transceiver circuits.
  • GPS Modules: Used in GPS devices.

Features

  • Small Size: Compact 1608 package size (1.6mm x 0.8mm).
  • High Q Value: Provides efficient performance in high-frequency applications.
  • Tight Tolerance: Accurate and stable inductance value.
  • Wire-Wound Construction: Superior electrical characteristics compared to multilayer inductors.
  • SMT Compatible: Designed for Surface Mount Technology assembly.

Benefits

  • Miniaturization: Allows for compact and dense circuit designs.
  • Improved Efficiency: High Q value ensures minimal energy loss.
  • Stable Performance: Tight tolerance ensures consistent operation.
  • Easy Assembly: Compatible with standard SMT assembly processes.
  • Reliable Performance: Designed for demanding applications.

Specifications

The SDWL1608C47NGSTF features an inductance of 47nH. Other critical specifications include Self-Resonant Frequency (SRF), DC Resistance (DCR), and Rated Current. Designers should consult the official Sunlord datasheet for precise values for these parameters, as they are essential for accurate circuit design and effective application. Standard SMT assembly methods should be followed during production.

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