FSFR1800L Fairchild Semiconductor, FSFR1800L Datasheet - Page 13

no-image

FSFR1800L

Manufacturer Part Number
FSFR1800L
Description
IC FPS POWER SWITCH 9-SIP
Manufacturer
Fairchild Semiconductor
Series
FPS™r
Datasheet

Specifications of FSFR1800L

Output Isolation
Isolated
Frequency Range
94kHz ~ 106kHz
Voltage - Input
9.6 V ~ 25 V
Voltage - Output
500V
Power (watts)
260W
Operating Temperature
-40°C ~ 130°C
Package / Case
9-SIP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
FSFR1800L
Manufacturer:
FAIRCHILD
Quantity:
8 000
© 2007 Fairchild Semiconductor Corporation
FSFR series Rev.1.0.9
Latch-Mode
triggered, switching is terminated and the MOSFETs
remain off. The latch is reset only when LV
discharged below 5V.
5.1 Over-Current Protection (OCP): When the sensing
pin voltage drops below -0.58V, OCP is triggered and the
MOSFETs remain off. This protection has a shutdown
time delay of 1.5µs to prevent premature shutdown
during startup.
5.2 Abnormal Over-Current Protection (AOCP): If the
secondary rectifier diodes are shorted, large current with
extremely high di/dt can flow through the MOSFET
before OCP or OLP is triggered. AOCP is triggered
without shutdown delay when the sensing pin voltage
drops below -0.9V. This protection is latch mode and
reset when LV
5.3 Overload Protection (OLP): Overload is defined as
the load current exceeding its normal level due to an
unexpected abnormal event. In this situation, the
protection circuit should trigger to protect the power
supply. However, even when the power supply is in the
normal condition, the overload situation can occur during
the load transition. To avoid premature triggering of
protection, the overload protection circuit should be
designed to trigger only after a specified time to
determine whether it is a transient situation or a true
overload situation. Figure 26 shows a typical overload
protection circuit. By sensing the resonant capacitor
voltage on the control pin, the overload protection can be
implemented. Using RC time constant, shutdown delay
can be also introduced. The voltage obtained on the
control pin is given as:
V
where V
voltage.
CON
OCP
OVP
OLP
=
CON
11 / 14 V
LV
2(
Cr
C
CC
p-p
20k
B
good
LV
C
+
7
Figure 27. Protection Blocks
is the amplitude of the resonant capacitor
B
CC
C
CC
Protection:
sense
-
+
is pulled down below 5V.
)
LV
V
Cr
CC
Auto-restart
protection
p p
good
R
S
F/F
-Q
Q
V
REF
Once
protection
Latch
Q
-Q
F/F
Internal
this
Bias
R
S
protection
Shutdown
LV
CC
AOCP
TSD
< 5V
CC
(7)
is
is
13
5.4 Over-Voltage Protection (OVP): When the LV
reaches 23V, OVP is triggered. This protection is used
when auxiliary winding of the transformer to supply V
to FPS™ is utilized.
5.5 Thermal Shutdown (TSD): The MOSFETs and the
control IC in one package makes it easy for the control IC
to
MOSFETs. If the temperature exceeds approximately
130 ° C, the thermal shutdown triggers.
6. PCB Layout Guideline: Duty unbalance problems
may occur due to the radiated noise from main
transformer, the inequality of the secondary side leakage
inductances of main transformer, and so on. Among
them, it is one of the dominant reasons that the control
components in the vicinity of R
primary current flow pattern on PCB layout. The direction
of the magnetic field on the components caused by the
primary current flow is changed when the high and low
side MOSFET turns on by turns. The magnetic fields with
opposite direction from each other induce a current
through, into, or out of the R
on duration of each MOSFET different. It is highly
recommended to separate the control components in the
vicinity of R
PCB layout. Figure 28 shows an example for the duty
balanced case.
detect
Figure 28. Example for Duty Balancing
T
the
pin from the primary current flow pattern on
abnormal
T
over-temperature
pin, which makes the turn-
T
pin are enclosed by the
www.fairchildsemi.com
of
the
CC
CC

Related parts for FSFR1800L