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PDF IRFF120 Data sheet ( Hoja de datos )

Número de pieza IRFF120
Descripción 6.0A/ 100V/ 0.300 Ohm/ N-Channel Power MOSFET
Fabricantes Intersil Corporation 
Logotipo Intersil Corporation Logotipo



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Data Sheet
IRFF120
March 1999 File Number 1563.3
6.0A, 100V, 0.300 Ohm, N-Channel
Power MOSFET
This N-Channel enhancement mode silicon gate power field
effect transistor is an advanced power MOSFET designed,
tested, and guaranteed to withstand a specified level of
energy in the breakdown avalanche mode of operation. All of
these power MOSFETs are designed for applications such
as switching regulators, switching convertors, motor drivers,
relay drivers, and drivers for high power bipolar switching
transistors requiring high speed and low gate drive power.
These types can be operated directly from integrated
circuits.
Formerly developmental type TA09594.
Ordering Information
PART NUMBER
PACKAGE
BRAND
IRFF120
TO-205AF
IRFF120
NOTE: When ordering, use the entire part number.
Features
• 6.0A, 100V
• rDS(ON) = 0.300
• Single Pulse Avalanche Energy Rated
• SOA is Power Dissipation Limited
• Nanosecond Switching Speeds
• Linear Transfer Characteristics
• High Input Impedance
• Related Literature
- TB334, “Guidelines for Soldering Surface Mount
Components to PC Boards”
Symbol
D
G
S
Packaging
JEDEC TO-205AF
DRAIN
(CASE)
GATE
SOURCE
1 CAUTION: These devices are sensitive to electrostatic discharge; follow proper ESD Handling Procedures.
http://www.intersil.com or 407-727-9207 | Copyright © Intersil Corporation 1999

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IRFF120 pdf
IRFF120
Typical Performance Curves Unless Otherwise Specified (Continued)
1.25
ID = 250µA
1.15
1000
800
1.05
600
VGS = 0V, f = 1MHz
CISS = CGS + CGD
CRSS = CGD
COSS CDS + CGD
0.95
0.85
0.75
-40 0 40 80 120
TJ, JUNCTION TEMPERATURE (oC)
FIGURE 10. NORMALIZED DRAIN TO SOURCE BREAKDOWN
VOLTAGE vs JUNCTION TEMPERATURE
400
200
0
0
CISS
COSS
CRSS
10 20 30 40
VDS, DRAIN TO SOURCE VOLTAGE (V)
50
FIGURE 11. CAPACITANCE vs DRAIN TO SOURCE VOLTAGE
5
80µs PULSE TEST
4 -55oC
3
2
25oC
125oC
1
0
0 4 8 12 16 20
ID, DRAIN CURRENT (A)
FIGURE 12. TRANSCONDUCTANCE vs DRAIN CURRENT
100
5
2
10
5 150oC
25oC
2
1.0
0 12
VSD, SOURCE TO DRAIN VOLTAGE (V)
FIGURE 13. SOURCE TO DRAIN DIODE VOLTAGE
3
20
ID = 6A
15
10
VDS = 50V
VDS = 20V
VDS = 80V
5
0
0 4 8 12 16 20
Qg(TOT), TOTAL GATE CHARGE (nC)
FIGURE 14. GATE TO SOURCE VOLTAGE vs GATE CHARGE
5

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