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quality power inductor Samsung Electro-Mechanics CIGW201610GHR47MLE for mobile devices and power converter modules factory
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quality power inductor Samsung Electro-Mechanics CIGW201610GHR47MLE for mobile devices and power converter modules factory
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Specifications
Current Rating:
3.6A
Inductance:
470nH
Tolerance:
±20%
Frequency - Self Resonant:
-
Current - Saturation (Isat):
-
DC Resistance(DCR):
26mΩ
Ratings:
-
Q @ Frequency:
-
Mfr. Part #:
CIGW201610GHR47MLE
Package:
0806
Key Attributes
Model Number: CIGW201610GHR47MLE
Product Description

Product Overview

The CIGW201610GHR47MLE is a small power inductor designed for mobile devices, tablet PCs, wearable devices, and power converter modules. It features a monolithic structure for high reliability and a low DCR structure for high efficiency in power circuits. This inductor is free of RoHS-regulated substances and is halogen-free.

Product Attributes

  • Brand: CIG (implied by product identification)
  • Type: Metal Composite Wire Wound Type
  • Structure: Monolithic
  • Certifications: RoHS-compliant, Halogen-free

Technical Specifications

Model Size (inch/mm) Dimension L (mm) Dimension W (mm) Dimension T (mm) Inductance (uH) Inductance Tolerance (%) DC Resistance (m) (Typ.) Rated DC Current (Isat) [A] (Typ.) Rated DC Current (Irms) [A] (Typ.) Absolute Maximum Voltage (V) Operating Temperature Range (C)
CIGW201610GHR47MLE 0806/2016 2.0 0.2 1.6 0.2 1.0 max 0.47 20 32 (Max) 5.1 (Typ.) 3.6 (Typ.) 20 -40 to +125 (Including self-temperature rise)

Packaging

Embossed Taping Packaging Style, 3000 pcs/reel.

Recommended Land Pattern

A (mm) B (mm) C (mm)
0.8 0.8 1.8

Recommended Soldering Conditions

Reflow Soldering: Preheating Temperature 150min, Temperature Differential T130, Peak 260max.

Flow Soldering: 280max, 3sec max.

Iron Soldering: 50W max, 3sec max.

Reliability Test Summary

The product has undergone various reliability tests including Drop Test, Terminal Adhesion Test, Vibration Test, Bending Test, High Temperature Loading Test, Reflow Test, High Temperature Test, High Temp. Humidity Resistance Loading Test, Thermal Shock Test, High Temp. Humidity Resistance Test, Low Temperature Test, and High Temp. Humidity Resistance Test. Inductance change is to be within 20% of the initial value for most tests, with no mechanical damage.


1912111437_Samsung-Electro-Mechanics-CIGW201610GHR47MLE_C307637.pdf

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