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DT3316P-474

Part No DT3316P-474
Manufacturer Coilcraft
Catalog OEM Parts (C - E)
Description OBSOLETE See web site for new part number. Part was always RoHS compliant; terminals never contained lead.
Sample
Rohs State rohs
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RoHS Non-Compliant
Win Source Part Number 1056420-DT3316P-474
Categories OEM Parts(C-E)
Manufacturer Coilcraft
Popularity Low
Supply and Demand Status Shortage
Ultra Librarian 3D Model Ultra Librarian DT3316P-474 CAD Model

Description

The DT3316P-474 is a high-performance, shielded power inductor manufactured by Coilcraft. It's designed for use in a wide range of power supply and filtering applications. This inductor is characterized by its low DC resistance, high saturation current, and excellent current handling capabilities, making it suitable for demanding power electronics designs.

Applications

  • DC-DC Converters
  • Power Amplifiers
  • Switching Regulators
  • Filtering Circuits
  • Buck, Boost, and Buck-Boost Converters
  • Voltage Regulators

Features

  • Shielded Construction
  • Low DC Resistance (DCR)
  • High Saturation Current
  • Excellent Current Handling
  • Surface Mount Package
  • RoHS Compliant

Benefits

  • Reduced electromagnetic interference (EMI) due to the shielded construction.
  • Increased efficiency in power conversion due to the low DC resistance.
  • Ability to handle high current loads without saturating.
  • Compact design due to the surface-mount package.
  • Compliant with environmental regulations.

Additional Details

The DT3316P-474 has an inductance value of 470μH. The specific saturation current and DC resistance will depend on the exact part number configuration. This inductor is suitable for applications requiring efficient power conversion, noise suppression, and compact size. Its electrical and mechanical characteristics make it a reliable component in modern power electronics design. Refer to the Coilcraft datasheet for specific electrical characteristics, temperature ratings, and mechanical dimensions. This inductor is commonly found in applications where high efficiency and low EMI are paramount.

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