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AGP4233-334ME Dataheets PDF



Part Number AGP4233-334ME
Manufacturers Coilcraft
Logo Coilcraft
Description Power Inductors
Datasheet AGP4233-334ME DatasheetAGP4233-334ME Datasheet (PDF)

Document 917-1 Power Inductors–AGP4233 • AEC-Q200 Grade 1 qualified • High current, high inductance power inductors • Designed for high current power supply applications • Flat wire windings provide extremely low DC and AC resistance. • Shield has solderable tabs for additional mounting stability. Core material Ferrite Environmental  RoHS compliant, halogen free Terminations  RoHS compliant tin-silver over copper Shield tabs  RoHS compliant bright tin over nickel over stainless steel Weigh.

  AGP4233-334ME   AGP4233-334ME



Document
Document 917-1 Power Inductors–AGP4233 • AEC-Q200 Grade 1 qualified • High current, high inductance power inductors • Designed for high current power supply applications • Flat wire windings provide extremely low DC and AC resistance. • Shield has solderable tabs for additional mounting stability. Core material Ferrite Environmental  RoHS compliant, halogen free Terminations  RoHS compliant tin-silver over copper Shield tabs  RoHS compliant bright tin over nickel over stainless steel Weight  135 g Ambient temperature  –40°C to +125°C with Irms current, +125°C to +165°C with derated current Storage temperature  Component: –40°C to +85°C. Tray packaging: –40°C to +80°C Moisture Sensitivity Level (MSL)  1 (unlimited floor life at <30°C / 85% relative humidity) Failures in Time (FIT) / Mean Time Between Failures (MTBF) 38 per billion hours / 26,315,789 hours, calculated per Telcordia SR-332 Packaging  9 parts per tray PCB washing  Tested with pure water or alcohol only. For other solvents, see Doc787_PCB_Washing.pdf   Inductance1 Part number ±20% (µH) AGP4233-682ME AGP4233-103ME AGP4233-153ME AGP4233-223ME AGP4233-333ME 6.8 10 15 22 33 AGP4233-473ME 47 AGP4233-683ME 68 AGP4233-104ME 100 AGP4233-154ME 150 AGP4233-224ME 220 AGP4233-334ME 330 AGP4233-474ME 470   DCR (mOhms)2   SRF typ   Isat (A)3 nom    max (MHz) 10% drop 20% drop 30% drop 2.80 2.95 2.80 2.95 2.80 2.95 2.80 2.95 2.80 2.95 21.7 18.8 15.2 12.0 10.0 92.0 56.0 45.0 32.8 22.5 97.8 101.8 60.0 63.0 47.0 49.0 35.4 36.6 24.7 25.8 2.80 2.95 2.80 2.95 2.80 2.95 2.80 2.95 10.5 11.5 8.5 6.4 5.2 4.2 5.0 16.0 10.6 6.88 4.18 6.40 17.6 18.6 12.2 13.0 7.80 8.36 4.96 5.40 7.20 7.60 10.5 11.5 10.5 11.5 4.1 3.6 4.20 4.70 5.00 2.60 3.20 3.40   Irms (A)4 20°C rise   40°C rise 24 24 24 24 24 34 34 34 34 34 24 34 24 34 24 34 24 34 12.4 17.5 12.4 17.5 12.4 17.5 1. Inductance tested at 100 kHz, 0.1 Vrms on Agilent/HP 4192A. 2. DCR measured on a Keithley 580 micro-ohmmeter or equivalent. 3. DC current at which the inductance drops the specified amount from its value without current. 4. Current that causes the specified temperature rise of the winding from 25°C ambient. Temperature rise of the core is usually less than that of the winding. When Irms is greater than Isat, Isat is the more critical specification and Irms is shown in gray type. 5. Electrical specifications at 25°C. Refer to Doc 362 “Soldering Surface Mount Components” before soldering. Document 917-1  Revised 12/12/14 Document 917-2 Power Inductors – AGP4233 Series Typical L vs Current Typical L vs Frequency Irms Derating 120 110 100 90 80 70 60 50 40 30 20 10 0 -40 -20 0 20 40 60 80 100 120 140 160 180 Ambient temperature (°C) Percent of rated Irms 25°C Document 917-2  Revised 12/12/14 Document 917-3 Power Inductors – AGP4233 Series 6.8 – 150 µH 220 – 470 µH AGP4233-XXXME XXXX X 1.41 ± 0.


AGP4233-224ME AGP4233-334ME AGP4233-474ME


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