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PDF IRL3502S Data sheet ( Hoja de datos )

Número de pieza IRL3502S
Descripción HEXFET Power MOSFET
Fabricantes International Rectifier 
Logotipo International Rectifier Logotipo



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No Preview Available ! IRL3502S Hoja de datos, Descripción, Manual

PRELIMINARY
l Advanced Process Technology
l Surface Mount
l Optimized for 4.5V-7.0V Gate Drive
l Ideal for CPU Core DC-DC Converters
l Fast Switching
G
Description
These HEXFET Power MOSFETs were designed
specifically to meet the demands of CPU core DC-DC
converters in the PC environment. Advanced
processing techniques combined with an optimized
gate oxide design results in a die sized specifically to
offer maximum efficiency at minimum cost.
The D2Pak is a surface mount power package capable
of accommodating die sizes up to HEX-4. It provides the
highest power capability and the lowest possible on-
resistance in any existing surface mount package. The
D2Pak is suitable for high current applications because
of its low internal connection resistance and can
dissipate up to 2.0W in a typical surface mount
application.
Absolute Maximum Ratings
ID @ TC = 25°C
ID @ TC = 100°C
IDM
PD @TC = 25°C
VGS
VGSM
EAS
IAR
EAR
dv/dt
TJ
TSTG
Parameter
Continuous Drain Current, VGS @ 4.5V…
Continuous Drain Current, VGS @ 4.5V…
Pulsed Drain Current …
Power Dissipation
Linear Derating Factor
Gate-to-Source Voltage
Gate-to-Source Voltage
(Start Up Transient, tp = 100µs)
Single Pulse Avalanche Energy‚…
Avalanche Current
Repetitive Avalanche Energy
Peak Diode Recovery dv/dt ƒ…
Operating Junction and
Storage Temperature Range
Soldering Temperature, for 10 seconds
Thermal Resistance
RqJC
RqJA
Parameter
Junction-to-Case
Junction-to-Ambient ( PCB Mounted,steady-state)**
PD -9.1676A
IRL3502S
HEXFET® Power MOSFET
D
VDSS = 20V
RDS(on) = 0.007W
ID = 110A†
S
D 2Pak
Max.
110†
67
420
140
1.1
± 10
14
390
64
14
5.0
-55 to + 150
300 (1.6mm from case )
Typ.
–––
–––
Max.
0.89
40
Units
A
W
W/°C
V
V
mJ
A
mJ
V/ns
°C
Units
°C/W
11/18/97

1 page




IRL3502S pdf
IRL3502S
120
100
80
60
40
20
0
25
LIMITED BY PACKAGE
50 75 100 125
TC , Case Temperature ( °C)
150
Fig 9. Maximum Drain Current Vs.
Case Temperature
800
ID
TOP
29A
40A
BOTTOM 64A
600
400
200
0
25 50 75 100 125 150
Starting TJ , Junction Temperature( °C)
Fig 10. Maximum Avalanche Energy
Vs. Drain Current
1
D = 0.50
0.20
0.10
0.1
0.05
0.02
0.01
0.01
0.00001
PDM
SINGLE PULSE
(THERMAL RESPONSE)
t1
t2
Notes:
1. Duty factor D = t1 / t 2
2. Peak TJ = P DM x ZthJC + TC
0.0001
0.001
0.01
t1 , Rectangular Pulse Duration (sec)
0.1
Fig 11. Maximum Effective Transient Thermal Impedance, Junction-to-Case
1

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