EVL6566B-65W STMicroelectronics, EVL6566B-65W Datasheet - Page 31

BOARD EVAL FOR L6566B

EVL6566B-65W

Manufacturer Part Number
EVL6566B-65W
Description
BOARD EVAL FOR L6566B
Manufacturer
STMicroelectronics
Datasheets

Specifications of EVL6566B-65W

Main Purpose
AC/DC, Primary Side
Outputs And Type
1, Isolated
Power - Output
65W
Voltage - Output
12V
Current - Output
5.4A
Voltage - Input
90 ~ 265VAC
Regulator Topology
Flyback
Frequency - Switching
80kHz
Board Type
Fully Populated
Utilized Ic / Part
L6566B
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6452

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Part Number:
EVL6566B-65W
Manufacturer:
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0
L6566B
5.8
between the detected event and the oscillator, occasionally the device could stop after the
third detection.
This condition is latched as long as the device is supplied. While it is disabled, however, no
energy is coming from the self-supply circuit; hence the voltage on the Vcc capacitor will
decay and cross the UVLO threshold after some time, which clears the latch. The internal
start-up generator is still off, then the Vcc voltage still needs to go below its restart voltage
before the Vcc capacitor is charged again and the device restarted. Ultimately, this will result
in a low-frequency intermittent operation (Hiccup-mode operation), with very low stress on
the power circuit. This special condition is illustrated in the timing diagram of
page 30
Frequency modulation
To alleviate converter’s EMI emissions and reduce cost and size of the line filter, it is
advantageous to modulate its switching frequency, so that the resulting spread-spectrum
action distributes the energy of each harmonic of the switching frequency over a number of
side-band harmonics. Their overall energy will be unchanged but the individual amplitudes
will be smaller. This is what naturally occurs with QR operation, due to the twice-mains-
frequency ripple appearing on the input bulk capacitor, which translates into different DCM-
CCM boundary frequencies.
The L6566B is provided with a dedicated pin, FMOD (6), to perform this function if FF mode
is selected.
Figure 19. Frequency modulation circuit
With reference to
alternately charged and discharged between 0.5 and 1.5 V by internal current generators
sourcing and sinking the same current (three times the current defined by the resistor R
pin OSC). Hence, the voltage across C
is determined by C
sourced by pin OSC will be modulated according a triangular profile at a frequency f
R
triangle will be little affected.
With this arrangement it is possible to set, nearly independently, the frequency deviation
Δf
MOD
sw
and the modulating frequency f
0 V
1 V
is considerably higher than R
.
Figure 19
MOD
. By connecting a resistor R
, the capacitor C
OSC
T
m
R
, as normally is, both f
T
, which define the modulation index:
MOD
13
L6566B
R
will be a symmetric triangle, whose frequency f
MOD
MOD
is connected from FMOD to ground and is
6
MOD
FMOD
C
MOD
from FMOD to OSC, the current
m
and the symmetry of the
Application information
Figure 18 on
1.5 V
0.5 V
m
. If
31/51
T
on
m

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