FAN302UL Fairchild Semiconductor, FAN302UL Datasheet - Page 12

no-image

FAN302UL

Manufacturer Part Number
FAN302UL
Description
This highly integrated PWM controller provides several features to enhance the performance of flyback converters
Manufacturer
Fairchild Semiconductor
Datasheet
© 2011 Fairchild Semiconductor Corporation
FAN302UL • Rev. 1.0.2
CCM Prevention Function
Even if the power supply is designed to operate in DCM,
it can go into Continuous Conduction Mode (CCM)
when there is not enough design margin to cover all the
circuit parameter variations and operating conditions.
FAN302UL has a CCM-prevention function that delays
the next cycle turn-on of MOSFET until ZCD on the VS
pin is obtained, as shown in Figure 31. To guarantee
stable DCM operation, FAN302UL prohibits the turn-on
of the next switching cycle for 10% of its switching
period after ZCD is obtained. In Figure 31, the first
switching cycle has ZCD before 90% of its original
switching period and, therefore, the turn-on instant of
the next cycle is determined from its original switching
period without being affected by the ZCD instant. The
second switching cycle does not have ZCD by the end
of its original switching period. The turn-on of the third
switching cycle occurs after ZCD is obtained, with a
delay of 10% of its original switching period. The
minimum switching frequency the CCM-prevention
function allows is 22kHz (f
given until the end of maximum switching period of
45.5µs (1/22kHz), the converter can go into CCM
operation losing output regulation.
Power-Limit Mode
When the sampled voltage of V
CM-MIN
Mode, where the primary-side current limit voltage (V
changes from V
miss-operation of V
Figure 32. Once the V
V
prevents the power supply from going into CCM and
losing output regulation when the output voltage is too
low. This effectively protects the power supply when
there is a fault condition in the load, such as output
short or overload. This operation mode also implements
soft-start by limiting the transformer current until the V
sampling voltage reaches V
S-CM-MAX
(0.55V), FAN302UL enters Constant Power Limit
Figure 31. CCM Prevention Function
(0.75V), the V
STH
S
(0.7V) to V
sampling and ZCD, as shown in
S
sampling voltage is higher than
CS
OSC-CM-MIN
S-CM-MAX
returns to V
S
STH-VA
(V
(0.75V).
SH
). If the ZCD is not
) drops below V
(0.3V) to avoid
STH
. This mode
CS
S-
S
)
12
High-Voltage (HV) Startup
Figure 33 shows the high-voltage startup circuit for
FAN302UL applications. Internally a JFET is used to
implement the high-voltage current source, whose
characteristics are shown in Figure 34. Technically, the
HV pin can be directly connected to the DC link (V
However, to improve reliability and surge immunity, it is
typical to use about 100kΩ resistor between the HV pin
and DC link. The actual HV current with given DC link
voltage and startup resistor is determined by the
intersection of V-I characteristics line and load line, as
shown in Figure 34.
During startup, the internal startup circuit is enabled and
the DC link supplies the current, I
up capacitor, C
voltage reaches V
disabled and the IC starts PWM switching. Once the HV
startup circuit is disabled, the energy stored in C
should supply the IC operating current until the
transformer auxiliary winding voltage reaches the
nominal value. Therefore, C
prevent V
winding builds up enough voltage to supply V
Figure 32. Power-Limit Mode Operation
DD
from dropping to V
Figure 33. HV Startup Circuit
VDD
DD-ON
, through R
, the internal HV startup circuit is
VDD
DD-OFF
should be designed to
START
HV
, to charge the hold-
before the auxiliary
. When the V
www.fairchildsemi.com
DD
.
DL
VDD
DD
).

Related parts for FAN302UL