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SPA15N60C3 -SPP15N60C3 Fast Delivery,Good Price
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SPA15N60C3 |SPA15N60C3Infineon N/a500avaifor lowest Conduction Losses & fastest Switching
SPP15N60C3 |SPP15N60C3Infineon N/a6000avaifor lowest Conduction Losses & fastest Switching


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ST1534A , 500mA SMART LDO
ST1534A , 500mA SMART LDO
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ST16C1450CJ28 , 2.97V TO 5.5V UART
ST16C1450CJ28 , 2.97V TO 5.5V UART
ST16C1450CJ28 , 2.97V TO 5.5V UART


SPA15N60C3 -SPP15N60C3
for lowest Conduction Losses & fastest Switching
SPP15N60C3, SPI15N60C3
SPA15N60C3
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-TO-220-3-31: Fully isolated package (2500 VAC; 1 minute)
P-TO220-3-31P-TO262-3-1P-TO220-3-1
Maximum Ratings
SPP15N60C3, SPI15N60C3
SPA15N60C3
Maximum Ratings
Thermal Characteristics
SPP15N60C3, SPI15N60C3
SPA15N60C3
Electrical Characteristics
Gate Charge Characteristics
Limited only by maximum temperature Repetitve avalanche causes additional power losses that can be calculated as PAV=EAR*f.Soldering temperature for TO-263: 220°C, reflowCo(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.
SPP15N60C3, SPI15N60C3
SPA15N60C3
Electrical Characteristics
Typical Transient Thermal Characteristics
SPP15N60C3, SPI15N60C3
SPA15N60C3
1 Power dissipation
tot = f (TC)
20
40
60
80
100
120
140
170 SPP15N60C3
tot
2 Power dissipation FullPAK
tot = f (TC)
10
15
20
25
35
tot
3 Safe operating area
D = f ( VDS )
parameter : D = 0 , TC=25°C
-2 10
-1 10 10 10 10
4 Safe operating area FullPAK
D = f (VDS)
parameter: D = 0, TC = 25°C
-2 10
-1 10 10 10 10
SPP15N60C3, SPI15N60C3
SPA15N60C3
5 Transient thermal impedance
thJC = f (tp)
parameter: D = tp/T
10 -1
-4 10
-3 10
-2 10
-1 10 10 10
thJ
6 Transient thermal impedance FullPAK
thJC = f (tp)
parameter: D = tp/t
10 1
-4 10
-3 10
-2 10
-1 10 10 10
thJ
7 Typ. output characteristic
D = f (VDS); Tj=25°C
parameter: tp = 10 µs, VGS
10
20
30
40
60
8 Typ. output characteristic
D = f (VDS); Tj=150°C
parameter: tp = 10 µs, VGS
10
15
20
30
SPP15N60C3, SPI15N60C3
SPA15N60C3
9 Typ. drain-source on resistance
DS(on)=f(ID)
parameter: Tj=150°C, VGS
0.4
0.6
0.8
1.2
1.4
1.8
(on)
10 Drain-source on-state resistance
DS(on) = f (Tj)
parameter : ID = 9.4 A, VGS = 10 V
0.2
0.4
0.6
0.8
1.2
1.6 SPP15N60C3
DS(on)
11 Typ. transfer characteristics
D= f ( VGS ); VDS≥ 2 x ID x RDS(on)max
parameter: tp = 10 µs
10
20
30
40
60
12 Typ. gate charge
GS = f (QGate)
parameter: ID = 15 A pulsed
10
12
16 SPP15N60C3
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