FSDH321LX Fairchild Semiconductor, FSDH321LX Datasheet - Page 11

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FSDH321LX

Manufacturer Part Number
FSDH321LX
Description
Manufacturer
Fairchild Semiconductor
Datasheet

Specifications of FSDH321LX

Power Switch Family
FSDH321
Power Switch On Resistance
14Ohm
Output Current
2A
Number Of Outputs
Single
Mounting
Surface Mount
Supply Current
3mA
Package Type
LSOP
Operating Temperature (min)
-25C
Operating Temperature (max)
85C
Operating Temperature Classification
Commercial
Pin Count
8
Power Dissipation
1.4W
Lead Free Status / RoHS Status
Supplier Unconfirmed

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
FSDH321LX
Manufacturer:
Fairchi/ON
Quantity:
3 000
5. Soft Start : The FPS has an internal soft start circuit that
slowly increases the feedback voltage together with the
Sense FET current after it starts up. The typical soft start
time is 15msec, as shown in Figure 8, where progressive
increments of the Sense FET current are allowed during the
start-up phase. The pulse width to the power switching
device is progressively increased to establish the correct
working conditions for transformers, inductors, and capaci-
tors. The voltage on the output capacitors is progressively
increased with the intention of smoothly establishing the
required output voltage. It also helps to prevent transformer
saturation and reduce the stress on the secondary diode.
6. Burst Operation : In order to minimize power dissipation
in standby mode, the FPS enters burst mode operation. As
the load decreases, the feedback voltage decreases. As
shown in Figure 9, the device automatically enters burst
mode
V
limit is set to a fixed limit internally to minimize flux density
in the transformer. The fixed current limit is larger than that
defined by V
down further. Switching continues until the feedback voltage
drops below V
and the output voltages start to drop at a rate dependent on
the standby current load. This causes the feedback voltage to
rise. Once it passes V
The feedback voltage then falls and the process repeats.
Burst mode operation alternately enables and disables
switching of the power Sense FET thereby reducing switch-
ing loss in Standby mode.
BURH
0.7A
0.4A
Drain current
(500mV). Switching still continues but the current
when
1ms
Figure 8. Soft Start Function
FB
BURL
the
= V
(350mV). At this point switching stops
15steps
BURH
feedback
BURH
Current limit
and therefore, V
(500mV), switching resumes.
voltage
drops
FB
is driven
below
t
7. Frequency Modulation : Modulating the switching fre-
quency of a switched power supply can reduce EMI. Fre-
quency modulation can reduce EMI by spreading the energy
over a wider frequency range than the bandwidth measured
by the EMI test equipment. The amount of EMI reduction is
directly related to the depth of the reference frequency. As
can be seen in Figure 10, the frequency changes from 97KHz
to 103KHz in 4ms for the FSDH321 (48.5KHz to 51.5KHz
for FSDL321). Frequency modulation allows the use of a
cost effective inductor instead of an AC input mode choke to
satisfy the requirements of world wide EMI limits.
103kHz
100kHz
Vfb
97kHz
Waveform
V
V
Current
3
BURH
BURL
Figure 10. Frequency Modulation Waveform
f
s
=1/t
V
V
I
FB
BURL
DELAY
s
Figure 9. Burst Operation Function
V
Vcc
BURH
/V
BURH
Operation
t
Burst
Vcc
s
+
-
I
FB
Current
Switching
Drain
OFF
2.5R
4ms
R
Normal
Operation
Burst
Burst
Switching
OFF
Vcc
FSDH321, FSDL321
I
BUR(pk)
Operation
Normal
MOSFET
Current
PWM
t
11

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