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PDF IRLML6402 Data sheet ( Hoja de datos )

Número de pieza IRLML6402
Descripción HEXFET Power MOSFET
Fabricantes International Rectifier 
Logotipo International Rectifier Logotipo



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No Preview Available ! IRLML6402 Hoja de datos, Descripción, Manual

l Ultra Low On-Resistance
l P-Channel MOSFET
l SOT-23 Footprint
l Low Profile (<1.1mm)
l Available in Tape and Reel
l Fast Switching
G1
S2
Description
These P-Channel MOSFETs from International Rectifier utilize
advanced processing techniques to achieve extremely low on-
resistance per silicon area. This benefit, combined with the fast
switching speed and ruggedized device design that HEXFET®
power MOSFETs are well known for, provides the designer with
an extremely efficient and reliable device for use in battery and
load management.
A thermally enhanced large pad leadframe has been incorporated
into the standard SOT-23 package to produce a HEXFET Power
MOSFET with the industry's smallest footprint. This package,
dubbed the Micro3, is ideal for applications where printed
circuit board space is at a premium. The low profile (<1.1mm)
of the Micro3 allows it to fit easily into extremely thin application
environments such as portable electronics and PCMCIA cards.
The thermal resistance and power dissipation are the best
available.
Absolute Maximum Ratings
Parameter
VDS
ID @ TA = 25°C
ID @ TA= 70°C
IDM
PD @TA = 25°C
PD @TA = 70°C
Drain- Source Voltage
Continuous Drain Current, VGS @ -4.5V
Continuous Drain Current, VGS @ -4.5V
Pulsed Drain Current 
Power Dissipation
Power Dissipation
Linear Derating Factor
EAS
VGS
TJ, TSTG
Single Pulse Avalanche Energy„
Gate-to-Source Voltage
Junction and Storage Temperature Range
PD - 93755D
IRLML6402
HEXFET® Power MOSFET
VDSS = -20V
3D
RDS(on) = 0.065Ω
Micro3
Max.
-20
-3.7
-2.2
-22
1.3
0.8
0.01
11
± 12
-55 to + 150
Units
V
A
W
W/°C
mJ
V
°C
Thermal Resistance
Parameter
RθJA
Maximum Junction-to-Ambientƒ
www.irf.com
Typ.
75
Max.
100
Units
°C/W
1
12/14/11

1 page




IRLML6402 pdf
4.0
3.0
2.0
1.0
0.0
25
50 75 100 125
TC , Case Temperature ( °C)
150
Fig 9. Maximum Drain Current Vs.
Case Temperature
IRLML6402
25 ID
TOP
-1.7A
-3.0A
20 BOTTOM -3.7A
15
10
5
0
25 50 75 100 125 150
Starting TJ , Junction Temperature ( °C)
Fig 10. Maximum Avalanche Energy
Vs. Drain Current
1000
100
D = 0.50
0.20
10 0.10
0.05
0.02
0.01
1
0.1
0.00001
PDM
SINGLE PULSE
(THERMAL RESPONSE)
t1
t2
Notes:
1. Duty factor D = t1 / t 2
2. Peak TJ = P DM x Z thJA + TA
0.0001
0.001
0.01
0.1
t1, Rectangular Pulse Duration (sec)
1
Fig 11. Maximum Effective Transient Thermal Impedance, Junction-to-Ambient
www.irf.com
10
5

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