PBYR6040WT
PBYR6040WT is Rectifier diodes Schottky barrier manufactured by NXP Semiconductors.
Philips Semiconductors
Product specification
Rectifier diodes Schottky barrier
Features
- Low forward volt drop
- Fast switching
- Reverse surge capability
- High thermal cycling performance
- Low thermal resistance
PBYR6045WT series
SYMBOL
QUICK REFERENCE DATA VR = 40 V/ 45 V IF(AV) = 60 A VF ≤ 0.58 V SOT429 (TO247)
DESCRIPTION a1 1 k 2 a2 3
GENERAL DESCRIPTION
Dual, mon cathode schottky rectifier diodes in a plastic envelope. Intended for use as output rectifiers in low voltage, high frequency switched mode power supplies. The PBYR6045WT series is supplied in the conventional leaded SOT429 (TO247) package.
PINNING
PIN 1 2 3 tab anode 1 (a) cathode (k) anode 2 (a) cathode
LIMITING VALUES
Limiting values in accordance with the Absolute Maximum System (IEC 134) SYMBOL PARAMETER VRRM VRWM VR IO(AV) IFRM IFSM Peak repetitive reverse voltage Working peak reverse voltage Continuous reverse voltage Average rectified output current (both diodes conducting) Repetitive peak forward currentper diode Non-repetitive peak forward current per diode Peak repetitive reverse surge current per diode Operating junction temperature Storage temperature CONDITIONS PBYR60 Tmb ≤ 109 ˚C square wave; δ = 0.5; Tmb ≤ 105 ˚C square wave; δ = 0.5; Tmb ≤ 105 ˚C t = 10 ms t = 8.3 ms sinusoidal; Tj = 125 ˚C prior to surge; with reapplied VRRM(max) pulse width and repetition rate limited by Tj max
- 65 MIN. MAX. 40WT 40 40 40 60 60 400 435 2 150 150 45WT 45 45 45 UNIT V V V A A A A A ˚C ˚C
IRRM Tj Tstg
THERMAL RESISTANCES
SYMBOL PARAMETER Rth j-mb Rth j-a Thermal resistance junction to mounting base Thermal resistance junction to ambient CONDITIONS per diode both diodes in free air MIN. TYP. MAX. UNIT 45 1 0.75 K/W K/W K/W
December 1998
Rev 1.000
Philips Semiconductors
Product specification
Rectifier diodes Schottky barrier
ELECTRICAL CHARACTERISTICS
Tj = 25 ˚C unless otherwise specified SYMBOL PARAMETER VF Forward voltage per diode CONDITIONS IF = 30 A; Tj = 125˚C...