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PMEG3010BEP

NXP

1A Low Vf MEGA Schottky Barrier Rectifier - NXP


PMEG3010BEP
PMEG3010BEP

PDF File PMEG3010BEP PDF File



Description
PMEG3010BEP 1 A low VF MEGA Schottky barrier rectifier Rev.
01 — 20 April 2009 www.
datasheet4u.
com Product data sheet 1.
Product profile 1.
1 General description Planar Maximum Efficiency General Application (MEGA) Schottky barrier rectifier with an integrated guard ring for stress protection, encapsulated in a SOD128 small and flat lead Surface-Mounted Device (SMD) plastic package.
1.
2 Features I I I I I I Average forward current: IF(AV) ≤ 1 A Reverse voltage: VR ≤ 30 V Low forward voltage High power capability due to clip-bond technology AEC-Q101 qualified Small and flat lead SMD plastic package 1.
3 Applications I I I I I Low voltage rectification High efficiency DC-to-DC conversion Switch Mode Power Supply (SMPS) Reverse polarity protection Low power consumption applications 1.
4 Quick reference data Table 1.
Quick reference data Tj = 25 °C unless otherwise specified.
Symbol IF(AV) Parameter average forward current Conditions square wave; δ = 0.
5; f = 20 kHz Tamb ≤ 120 °C Tsp ≤ 140 °C VR VF IR [1] [1] Min Typ Max Unit - 405 15 1 1 30 450 50 A A V mV µA reverse voltage forward voltage reverse current IF = 1 A VR = 30 V Device mounted on a ceramic Printed-Circuit Board (PCB), Al2O3, standard footprint.
NXP Semiconductors PMEG3010BEP 1 A low VF MEGA Schottky barrier rectifier 2.
Pinning information www.
datasheet4u.
com Table 2.
Pin 1 2 Pinning Description cathode anode [1] Simplified outline Graphic symbol 1 2 sym001 1 2 [1] The marking bar indicates the cathode.
3.
Ordering information Table 3.
Ordering information Package Name PMEG3010BEP Description plastic surface-mounted package; 2 leads Version SOD128 Type number 4.
Marking Table 4.
Marking codes Marking code A2 Type number PMEG3010BEP 5.
Limiting values Table 5.
Limiting values In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol VR IF(AV) Parameter reverse voltage average forward current Conditions Tj = 25 °C square wave; δ = 0.
5; f = 20 kHz Tamb ≤ 120 °C Tsp ≤ 140 °C IFSM ...



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