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SPW20N60S5 |SPW20N60S5Infineon N/a330avaifor lowest Conduction Losses


SPW20N60S5 ,for lowest Conduction LossesFeatureR 0.19 ΩDS(on)• New revolutionary high voltage technologyI 20 AD• Ultra low gate chargeP-TO2 ..
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SPW24N60C3 ,for lowest Conduction Losses & fastest SwitchingFeaturesV @ T 650 VDS j,max• New revolutionary high voltage technologyR 0.16ΩDS(on),max• Ultra low ..
SPW24N60CFD , CoolMOS Power Transistor
SPW32N50C3 ,for lowest Conduction Losses & fastest SwitchingFeatureR 0.11 ΩDS(on)• New revolutionary high voltage technologyI 32 AD• Ultra low gate chargeP-TO2 ..
SPW35N60C3 ,for lowest Conduction Losses & fastest SwitchingFeaturesV @ T 650 VDS j,max• New revolutionary high voltage technologyR 0.1ΩDS(on),max• Ultra low g ..
ST1S06PMR , Synchronous rectification with inhibit, 1.5A, 1.5 MHz fixed or adjustable, step-down switching regulator in DFN6 3x3
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SPW20N60S5
for lowest Conduction Losses
SPW20N60S5
Cool MOS™ Power Transistor
Feature

• New revolutionary high voltage technology
• Ultra low gate charge
• Periodic avalanche rated
• Extreme dv/dt rated
• Ultra low effective capacitances
• Improved transconductance
P-TO247
Maximum Ratings
SPW20N60S5
Maximum Ratings
Thermal Characteristics
Electrical Characteristics, at Tj=25°C unless otherwise specified
SPW20N60S5
Gate Charge Characteristics
Repetitve avalanche causes additional power losses that can be calculated as PAV=EAR*f.Co(er) is a fixed capacitance that gives the same stored energy as Coss while VDS is rising from 0 to 80% VDSS.Co(tr) is a fixed capacitance that gives the same charging time as Coss while VDS is rising from 0 to 80% VDSS.
SPW20N60S5
Electrical Characteristics, at T
j = 25 °C, unless otherwise specified
Typical Transient Thermal Characteristics
SPW20N60S5
1 Power dissipation
tot = f (TC)
20
40
60
80
100
120
140
160
180
200
240 SPW20N60S5
tot
2 Safe operating area
D = f ( VDS )
parameter : D = 0 , TC=25°C
10 3
-2 10
-1 10 10 10 10
3 Transient thermal impedance
thJC = f (tp)
parameter: D = tp/T
-4 10
-3 10
-2 10
-1 10 10
thJC
4 Typ. output characteristic
D = f (VDS); Tj=25°C
parameter: tp = 10 µs, VGS
10
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SPW20N60S5
5 Typ. output characteristic
D = f (VDS); Tj=150°C
parameter: tp = 10 µs, VGS
10
15
20
25
35
6 Typ. drain-source on resistance
DS(on)=f(ID)
parameter: Tj=150°C, VGS
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.1
1.2
1.3
DS(on)
7 Drain-source on-state resistance
DS(on) = f (Tj)
parameter : ID = 13 A, VGS = 10 V
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.1
SPW20N60S5
DS(on)
8 Typ. transfer characteristics
D= f ( VGS ); VDS≥ 2 x ID x RDS(on)max
parameter: tp = 10 µs
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