FSL106HR Fairchild Semiconductor, FSL106HR Datasheet - Page 11

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FSL106HR

Manufacturer Part Number
FSL106HR
Description
IC PWM/SEMSEFET SMPS 0.5A 8-DIP
Manufacturer
Fairchild Semiconductor
Series
FPS™r
Datasheet

Specifications of FSL106HR

Output Isolation
Isolated
Frequency Range
90kHz ~ 110kHz
Voltage - Input
9 V ~ 26 V
Voltage - Output
650V
Power (watts)
13W
Operating Temperature
-40°C ~ 105°C
Package / Case
8-DIP (0.300", 7.62mm)
On Resistance (max)
18 Ohms
Supply Voltage (max)
26 V
Supply Current
2.5 mA
Maximum Operating Temperature
+ 105 C
Minimum Operating Temperature
- 40 C
Maximum Power Dissipation
1.5 W
Mounting Style
Through Hole
Operating Temperature Range
- 40 C to + 105 C
Power Dissipation
1.5 W
Switch Current (typ)
2.5 mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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© 2010 Fairchild Semiconductor Corporation
FSL106HR • Rev. 1.0.0
Output-Short Protection (OSP)
If the output is shorted, steep current with extremely
high di/dt can flow through the SenseFET during the
LEB time. Such a steep current brings high-voltage
stress on the drain of SenseFET when turned off. To
protect the device from such an abnormal condition,
OSP detects V
V
is lower than 1.0µs, the FPS recognizes this condition
as an abnormal error and shuts down PWM switching
until V
output is shown in Figure 20.
Soft-Start
The FPS has an internal soft-start circuit that slowly
increases the feedback voltage, together with the
SenseFET current, after it starts. The typical soft-start
time is 20ms, as shown in Figure 21, where progressive
increments of the SenseFET current are allowed during
the startup phase. The pulse width to the power
switching device is progressively increased to establish
the
inductors, and capacitors. The voltage on the output
capacitors is progressively increased with the intention
of smoothly establishing the required output voltage.
Soft-start helps to prevent transformer saturation and
reduce the stress on the secondary diode.
Burst Operation
To minimize power dissipation in standby mode, the
FPS enters burst mode. As the load decreases, the
feedback voltage decreases. As shown in Figure 22,
the device automatically enters burst mode when the
FB
is higher than 1.6V and the SenseFET turn-on time
Figure 20. Output Short Waveforms (OSP)
correct
CC
reaches V
Figure 21. Internal Soft-Start
FB
working
and SenseFET turn-on time. When the
START
conditions
again. An abnormal condition
for
transformers,
11
feedback
continues until the feedback voltage drops below V
At this point, switching stops 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
voltage then falls and the process repeats. Burst mode
alternately enables and disables switching of the
SenseFET and reduces switching loss in standby mode.
Adjusting Peak Current Limit
As shown in Figure 23, a combined 6kΩ internal
resistance is connected to the non-inverting lead on the
PWM comparator. An external resistance of Rx on the
current limit pin forms a parallel resistance with the 6kΩ
when the internal diodes are biased by the main current
source of 400µA. For example, FSL106HR has a typical
SenseFET peak current limit (I
adjusted to 0.5A by inserting Rx between the I
the ground. The value of the Rx can be estimated by
the following equations:
0.7A
X =
where X is the resistance of the parallel network.
Rx
Figure 23. Peak Current Limit Adjustment
:
0.5A
||
6kΩ
Figure 22. Burst-Mode Operation
BURH
=
voltage
6kΩ
, switching resumes. The feedback
:
XkΩ
drops
below
LIM
) of 0.7A. I
V
BURH
.
www.fairchildsemi.com
LIM
PK
Switching
pin and
can be
BURL
(1)
(2)
.

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