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quality Low DCR power inductor Samsung Electro-Mechanics CIGT201610LM2R2MNE for power management in mobile electronics factory
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quality Low DCR power inductor Samsung Electro-Mechanics CIGT201610LM2R2MNE for power management in mobile electronics factory
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Specifications
Current - Saturation (Isat):
1.7A
Mfr. Part #:
CIGT201610LM2R2MNE
Package:
0806
Key Attributes
Model Number: CIGT201610LM2R2MNE
Product Description

Product Overview

The CIGT201610LM2R2MNE is a compact, monolithic metal composite power inductor designed for mobile devices and power converter modules. It features a low DCR structure for high efficiency and is manufactured with a thin-film, monolithic structure for enhanced reliability. This inductor is free of RoHS-regulated substances and is halogen-free, making it suitable for a wide range of electronic applications including smartphones, tablets, and wearable devices.

Product Attributes

  • Certifications: RoHS-regulated substance-free, Halogen-free

Technical Specifications

Model Type Dimensions (L x W x T) [mm] Inductance [uH] Inductance Tolerance (%) DC Resistance (Typ.) [m] Rated DC Current (Isat) [A] Rated DC Current (Irms) [A] Absolute Maximum Voltage [V] Operating Temperature Range [C]
CIGT201610LM2R2MNE 2016 / 0806 (Metal Composite Thin Film) 2.0 x 1.6 x 1.0 2.2 20 154 (Max) / 128 (Typ.) 1.0 (Typ.) 1.6 (Typ.) 20 -40 to +125

Recommended Land Pattern (Unit: mm)

A B C
0.8 0.8 1.8

Packaging Information

Type Quantity (pcs/reel) Dimensions (L x W x T) [mm]
Embossed Taping 3000 2.0 0.2 x 1.6 0.2 x 1.0 max

Reliability Test Results

Reliability Test Item Specified Value Test Condition
Solderability More than 90% of terminal electrode should be soldered newly. Dipped in flux for 41 sec, preheated at 150180 for 23 min, immersed in solder at 2455 for 41 sec.
Resistance to Soldering No mechanical damage. Remaining terminal Electrode: 75% min. Inductance change to be within 20% to the initial. Dipped in flux for 41 sec, preheated at 150180 for 23 min, immersed in solder at 2605 for 10 0.5 sec.
Thermal Shock (Temperature Cycle test) No mechanical damage. Inductance change to be within 20% to the initial. Repeat 100 cycles: -403 for 30 min 853 for 30 min.
High Temp. Humidity Resistance Test No mechanical damage. Inductance change to be within 20% to the initial. 852, 85%RH, for 50012 hours. Measure after 24 hours at normal temp/humidity.
Low Temperature Test No mechanical damage. Inductance change to be within 20% to the initial. Solder on PCB. Exposure at -552 for 50012 hours. Measure after 24 hours at normal temp/humidity.
High Temperature Test No mechanical damage. Inductance change to be within 20% to the initial. Solder on PCB. Exposure at 1252 for 50012 hours. Measure after 24 hours at normal temp/humidity.
High Temp. Humidity Resistance Loading Test No mechanical damage. Inductance change to be within 20% to the initial. 852, 85%RH, Rated Current for 50012 hours. Measure after 24 hours at normal temp/humidity.
High Temperature Loading Test No mechanical damage. Inductance change to be within 20% to the initial. 852, Rated Current for 50012 hours. Measure after 24 hours at normal temp/humidity.
Reflow Test No mechanical damage. Inductance change to be within 20% to the initial. Peak 2605, 3 times.
Vibration Test No mechanical damage. Inductance change to be within 20% to the initial. Solder on PCB. Vibrate 10~55Hz, 1.5mm amplitude for 2 hours each in X, Y, Z axes (total 6 hours).
Bending Test No mechanical damage. Bending Limit: 2mm. Test Speed: 1.0mm/sec. Keep at limit point for 5 sec. PCB thickness: 1.6mm.
Drop Test No mechanical damage. Inductance change to be within 20% to the initial. Random Free Fall test on concrete plate. 1 meter, 10 drops.
Terminal Adhesion Test No indication of peeling shall occur on the terminal electrode. 0.5 kgf for 101 sec.

2411220136_Samsung-Electro-Mechanics-CIGT201610LM2R2MNE_C379999.pdf

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