EVAL6599-200W STMicroelectronics, EVAL6599-200W Datasheet - Page 30

EVAL BOARD FOR L6599

EVAL6599-200W

Manufacturer Part Number
EVAL6599-200W
Description
EVAL BOARD FOR L6599
Manufacturer
STMicroelectronics
Type
Power Factor Correctionr
Datasheets

Specifications of EVAL6599-200W

Main Purpose
AC/DC, Primary Side and PFC
Outputs And Type
4, Isolated
Power - Output
200W
Voltage - Output
24V, 12V, 5V, 3.3V
Current - Output
6A, 5A, 1A, 700mA
Voltage - Input
90 ~ 264VAC
Regulator Topology
Resonant
Frequency - Switching
95kHz
Board Type
Fully Populated
Utilized Ic / Part
L6563, L6599
Input Voltage
90 V to 264 V
Output Voltage
3.3 V to 24 V
Dimensions
132 mm x 265 mm
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
L6599
Other names
497-5496
Application information
30/36
This concern applies to converters designed with a high resonance frequency (indicatively,
> 150 kHz), so that they run at high frequency also at full load. Otherwise, the converter will
run at high frequency only at light load, where the current flowing in the MOSFETs of the
half-bridge leg is lower, so that, generally, an R
to check this point anyway and the following equation is useful to compute the drop on the
bootstrap driver:
where Q
bootstrap DMOS (150, typ.) and T
about half the switching period minus the dead time T
a total gate charge of 30 nC, the drop on the bootstrap driver is about 3 V at a switching
frequency of 200 kHz:
If a significant drop on the bootstrap driver is an issue, an external ultra-fast diode can be
used, thus saving the drop on the R
g
is the gate charge of the external power MOS, R
V
Drop
V
Drop
=
I
=
Ch
------------------------------------------------------ - 150
2.5 10
arg
charge
e
DS(on)
r
(
DS
30 10
)ON
is the ON-time of the bootstrap driver, which equals
6
of the internal DMOS.
0.3 10
+
9
V
DS(on)
F
=
------------------- - R
T
6
Ch
Q
rise is not an issue. However, it is wise
D
arg
g
. For example, using a MOSFET with
+
e
0.6
DS(on)
(
DS
=
)ON
2.7V
+
is the on-resistance of the
V
F
L6599

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