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CTCDRH3D16F-470N Datasheet(PDF) 1 Page - Central Technologies |
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CTCDRH3D16F-470N Datasheet(HTML) 1 Page - Central Technologies |
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1 / 1 page Power Inductors - Shielded ctparts.com Manufacturer of Inductors, Chokes, Coils, Beads, Transformers & Toroids 800-684-5322 Inside US 949-453-1811 Outside US Copyright © 2005 by CT Magnetics, DBA Central Technologies. All rights reserved. CT Magnetics reserves the right to make improvements or change specifications without notice CENTRAL 11.03.05 SPECIFICATIONS Parts are available in ±30% tolerance only. CTCDRH3D16F Please specify “F” for RoHS Compliant Inductance L Test DCR *Rated DC Part @ 0.25Vrms,0Adc Freq. Max. Current Number (µH ±30%) (kHz) ( Ω Ω) (A) CTCDRH3D16_-1R5N 1.5 100 .052 1.55 CTCDRH3D16_-2R2N 2.2 100 .072 1.20 CTCDRH3D16_-3R3N 3.3 100 .085 1.10 CTCDRH3D16_-4R7N 4.7 100 .105 0.90 CTCDRH3D16_-6R8N 6.8 100 .170 0.73 CTCDRH3D16_-100N 10 100 .210 0.55 CTCDRH3D16_-150N 15 100 .295 0.45 CTCDRH3D16_-220N 22 100 .430 0.40 CTCDRH3D16_-330N 33 100 .675 0.32 CTCDRH3D16_-470N 47 100 .940 0.22 CTCDRH3D16_-680N 68 100 1.28 0.20 CTCDRH3D16_-820N 82 100 1.55 0.17 CTCDRH3D16_-101N 100 100 1.75 0.15 CTCDRH3D16 Series From 1.5 µH to 100 µH Not shown at actual size. CHARACTERISTICS Description: SMD (shielded) power inductor Applications: Power supplies for VTR, OA equipment, LCD televisions, PC notebooks, portable communication equipment, DC/DC converters, etc. Operating Temperature: -30°C to +100°C Inductance Tolerance: ±30% Testing: Tested on a HP4285A at 100kHz Packaging: Tape & Reel Marking: Parts are marked with inductance code Miscellaneous: RoHS Compliant available Additional Information: Additional electrical & physical information available upon request Samples available. See website for ordering information. PAD LAYOUT Unit: mm 2.4 1.4 1.4 A XXX B Marking: Inductance Code C D E F Size A B C D E F Max. Max. Max. mm 4.1 4.1 1.8 1.15 5.2 2.95 inches 0.16 0.16 0.07 0.05 0.20 0.12 PHYSICAL DIMENSIONS RoHS Compliant Available *The rated current indicates the current when the inductance decreases to 65% over its nominal value or D.C. current when the temperature rising ∆T=40°C lower, whichever is lower. |
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