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2SK3559

Panasonic
Part Number 2SK3559
Manufacturer Panasonic
Description N-channel MOSFET
Published May 13, 2015
Detailed Description Silicon MOSFET 2SK3559 N-channel enhancement mode MOSFET High speed switching Absolute Maximum Ratings Parameter Drai...
Datasheet PDF File 2SK3559 PDF File

2SK3559
2SK3559


Overview
Silicon MOSFET 2SK3559 N-channel enhancement mode MOSFET High speed switching Absolute Maximum Ratings Parameter Drain-Source breakdown voltage Gate-Source voltage Drain current DC Pulse Allowable power Tc = 25 °C *1 dissipation Ta = 25 °C *2 Junction temperature Storage temperature Symbol VDSS VGSS ID IDP PD PD Tj Tstg Rating 230 30 30 120 100 3 150 -55 to +150 *1 : Tc = 25 °C *2 : Ta = 25 °C (Without heat sink ) Unit V V A A W W °C °C 16.
2±0.
5 (3.
2) (2.
3) Solder Dip 21.
0±0.
5 15.
0±0.
2 (0.
7) 15.
0±0.
3 11.
0±0.
2 Unit : mm 5.
0±0.
2 (3.
2) φ 3.
2±0.
1 2.
0±0.
2 1.
1±0.
1 2.
0±0.
1 0.
6±0.
2 5.
45±0.
3 10.
9±0.
5 123 TOP-3F-B1 Electrical Characteristics (Tc = 25 ± 3 °C) Parameter Symbol Condition Min Typ Max Unit Drain Cutoff Current IDSS VDS = 184V, VGS = 0 − − 100 µ A Gate-source Leakage Current IGSS VGS = ± 30 V, VDS = 0 − − ±1 µA Drain-source Breakdown Voltage VDSS ID = 1 mA, VGS = 0 230 − − V Gate Threshold Voltage Vth VDS = 25 V, ID = 1 mA 2 − 4V Drain-source on Resistance RDS (on) VGS = 10 V, ID = 15 A − 55 74 m Ω Forward Transfer Admittance Yfs VDS = 25 V, ID = 15 A 8 16 − S Diode Forward Voltage VDSF IDR = 30 A, VGS = 0 − − -1.
5 V Input Capacitance Output Capacitance Reverse Transfer Capacitance Ciss Coss VDS = 25 V, VGS = 0, Crss f = 1MHz − 3170 − − 440 − − 35 − pF pF pF Turn-on delay time Rise time td (on) − 36 − n s tr VDD = 100V, ID = 15 A − 25 − ns Turn-off delay time td (off) RL = 6.
7 Ω, VGS = 10 V − 217 − ns Fall time tf − 35 − n s ID (A) PD (W) 1000 IDP 100 ID 10 1 0.
1 1 Non repetitive pulse Tc=25˚C t=100µs t=1ms t=10ms t=1s 10 100 VDS (V) 1000 2SK3559 140 120 (1) 100 (1) Tc=Ta (2) With a 100 × 100 × 2mm Al heat sink (3) Without heat sink 80 60 40 20 (2) (3) 0 0 20 40 60 80 100 120 140 160 Ta (˚C) ...



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