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BYC30W-600P

NXP
Part Number BYC30W-600P
Manufacturer NXP
Description Hyperfast power diode
Published Feb 2, 2016
Detailed Description TO-247 BYC30W-600P Hyperfast power diode 10 February 2014 Product data sheet 1. General description Hyperfast power d...
Datasheet PDF File BYC30W-600P PDF File

BYC30W-600P
BYC30W-600P


Overview
TO-247 BYC30W-600P Hyperfast power diode 10 February 2014 Product data sheet 1.
General description Hyperfast power diode in a SOD142 (2-lead TO247) plastic package.
2.
Features and benefits • Low leakage current • Low thermal resistance • Low reverse recovery current • Reduces switching losses in associated MOSFET or IGBT 3.
Applications • Active PFC in air conditioner • Continuous Current Mode (CCM) Power Factor Correction (PFC) • Half-bridge/full-bridge switched-mode power supplies 4.
Quick reference data Table 1.
Quick reference data Symbol Parameter Conditions VRRM repetitive peak reverse voltage IF(AV) average forward current δ = 0.
5; Tmb ≤ 115 °C; square-wave pulse; Fig.
1; Fig.
2; Fig.
3 Static characteristics VF forward voltage IF = 30 A; Tj = 150 °C; Fig.
6 Dynamic characteristics trr reverse recovery time IF = 1 A; VR = 30 V; dIF/dt = 200 A/µs; Tj = 25 °C; Fig.
7 Min Typ Max Unit - - 600 V - - 30 A - 1.
38 1.
8 V - 18 22 ns Scan or click this QR code to view the latest information for this product NXP Semiconductors 5.
Pinning information Table 2.
Pinning information Pin Symbol Description Simplified outline 1 K cathode 2 A anode mb mb mounting base; connected to cathode BYC30W-600P Hyperfast power diode Graphic symbol KA 001aaa020 12 TO-247 (SOD142) 6.
Ordering information Table 3.
Ordering information Type number Package Name BYC30W-600P TO-247 Description Plastic Single-ended through-hole package; Heatsink mounted; 1 mounting hole; 2-lead TO-247 Version SOD142 7.
Marking Table 4.
Marking codes Type number BYC30W-600P Marking code BYC30W-600P 8.
Limiting values Table 5.
Limiting values In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol Parameter Conditions VRRM repetitive peak reverse voltage VRWM crest working reverse voltage VR reverse voltage DC IF(AV) average forward current δ = 0.
5; Tmb ≤ 115 °C; square-wave pulse; Fig.
1; Fig.
2; Fig.
3 IFRM repetitive peak forward curr...



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