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What is FDC6324?

This electronic component, produced by the manufacturer "Fairchild Semiconductor", performs the same function as "Integrated Load Switch".


FDC6324 Datasheet PDF - Fairchild Semiconductor

Part Number FDC6324
Description Integrated Load Switch
Manufacturers Fairchild Semiconductor 
Logo Fairchild Semiconductor Logo 


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March 1999
FDC6324L
Integrated Load Switch
General Description
These Integrated Load Switches are produced using
Fairchild's proprietary, high cell density, DMOS
technology. This very high density process is
especially tailored to minimize on-state resistance and
provide superior switching performance. These devices
are particularly suited for low voltage high side load
switch application where low conduction loss and ease
of driving are needed.
Features
VDROP=0.2V @ VIN=12V, IL=1A, VON/OFF=1.5 to 8V
VDROP=0.3V @ VIN=5V, IL=1A, VON/OFF=1.5 to 8V.
High density cell design for extremely low on-resistance.
VON/OFF Zener protection for ESD ruggedness.
>6KV Human Body Model.
SuperSOTTM-6 package design using copper lead frame for
superior thermal and electrical capabilities.
SOT-23
SuperSOTTM-6
SuperSOTTM-8
SO-8
SOT-223
SOIC-16
pin 1
SuperSOT TM-6
Vin,R1 4
O N / O FF 5
R1,C1 6
Q2
Q1
3 Vout,C1
2 Vout,C1
IN
EQUIVALENT CIRCUIT
+VDROP -
1 R2
O N / O FF
OUT
See Application Circuit
Absolute Operating Range TA = 25°C unless otherwise noted
Symbol Parameter
VIN
VON/OFF
IL
Input Voltage Range
ON/OFF Voltage Range
Load Current @ VDROP=0.5V - Continuous
- Pulsed
(Note 1)
(Note 1 & 3)
PD
TJ,TSTG
ESD
Maximum Power Dissipation
(Note 2a)
Operating and Storage Temperature Range
Electrostatic Discharge Rating MIL-STD-883D Human Body
Model (100pf/1500Ohm)
THERMAL CHARACTERISTICS
RθJA Thermal Resistance, Junction-to-Ambient (Note 2a)
RθJC Thermal Resistance, Junction-to-Case (Note 2)
FDC6324L
3 - 20
1.5 - 8
1.5
2.5
0.7
-55 to 150
6
180
60
Units
V
V
A
W
°C
kV
°C/W
°C/W
© 1999 Fairchild Semiconductor Corporation
FDC6324L Rev. D

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FDC6324 equivalent
Typical Electrical Characteristics (TA = 25 OC unless otherwise noted )
10
3
1
R(ON) LIMIT
0.3
0.1
0.03
0.01
0.1
VIN = 12V
SINGLE PULSE
RθJA = See Note 2a
TA = 25°C
0.2
0.5 1
2
VDROP (V)
100us
10m1ms s
100ms
1s
DC
5 10 20 30
Figure 12. Safe Operating Area.
1
0.5 D = 0.5
0.2
0.1
0.05
0.02
0.01
0.005
0.00001
0.2
0.1
0.05
0.02
0.01
Single Pulse
0.0001
0.001
0.01
0.1
t 1, TIME (sec)
RθJA (t) = r(t) * R θJA
R θJA = See Note 2a
P(pk)
t1
t2
TJ - TA = P * R θJA(t)
Duty Cycle, D = t 1/ t 2
1 10 100 300
Figure 13. Transient Thermal Response Curve.
Note: Thermal characterization performed on the conditions described in Note
2a. Transient thermal response will change depends on the circuit board design.
FDC6324L Rev. D


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