ISL6559EVAL2 Intersil, ISL6559EVAL2 Datasheet - Page 18

no-image

ISL6559EVAL2

Manufacturer Part Number
ISL6559EVAL2
Description
EVALUATION BOARD 2 ISL6559
Manufacturer
Intersil
Datasheets

Specifications of ISL6559EVAL2

Main Purpose
Special Purpose DC/DC, VRM Supply
Outputs And Type
1, Non-Isolated
Power - Output
67.6W
Voltage - Output
1.3V
Current - Output
52A
Voltage - Input
5V, 12V
Regulator Topology
Buck
Frequency - Switching
250kHz
Board Type
Fully Populated
Utilized Ic / Part
HIP6601, ISL6559
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Application on page 3). Figure 15 and Equation 29 are
provided to assist in the selecting the correct value for R
Input Capacitor Selection
The input capacitors are responsible for sourcing the ac
component of the input current flowing into the upper
MOSFETs. Their RMS current capacity must be sufficient to
handle the ac component of the current drawn by the upper
MOSFETs which is related to duty cycle and the number of
active phases.
For a two phase design, use Figure 15 to determine the
input-capacitor RMS current requirement given the duty
cycle, maximum sustained output current (I
of the combined peak-to-peak inductor current (I
R
FIGURE 15. NORMALIZED INPUT-CAPACITOR RMS CURRENT
T
1000
100
0.3
0.2
0.1
=
10
0
0
10
10
FIGURE 14. R
[
I
I
I
C,PP
C,PP
C,PP
11.09 1.13
VS DUTY CYCLE FOR 2-PHASE CONVERTER
= 0
= 0.5 I
= 0.75 I
0.2
SWITCHING FREQUENCY (kHz)
log
O
O
( )
T
f
100
DUTY CYCLE (V
S
vs SWITCHING FREQUENCY
]
0.4
18
0.6
IN
/ V
1000
O
)
O
), and the ratio
0.8
C,PP
(EQ. 29)
) to I
10000
T
1.0
.
O
.
ISL6559
Select a bulk capacitor with a ripple current rating which will
minimize the total number of input capacitors required to
support the RMS current calculated. The voltage rating of
the capacitors should also be at least 1.25 times greater
than the maximum input voltage.
Figures 16 and 17 provide the same input RMS current
information for three and four phase designs respectively.
Use the same approach to selecting the bulk capacitor type
and number as described above.
Low capacitance, high-frequency ceramic capacitors are
needed in addition to the bulk capacitors to suppress leading
and falling edge voltage spikes.The result from the high
current slew rates produced by the upper MOSFETs turn on
and off. Select low ESL ceramic capacitors and place one as
close as possible to each upper MOSFET drain to minimize
board parasitics and maximize suppression.
FIGURE 16. NORMALIZED INPUT-CAPACITOR RMS CURRENT
FIGURE 17. NORMALIZED INPUT-CAPACITOR RMS CURRENT
0.3
0.2
0.1
0.3
0.2
0.1
0
0
0
0
I
I
I
I
C,PP
C,PP
C,PP
C,PP
= 0
= 0.25 I
= 0
= 0.25 I
VS DUTY CYCLE FOR 3-PHASE CONVERTER
VS DUTY CYCLE FOR 4-PHASE CONVERTER
0.2
0.2
O
O
DUTY CYCLE (V
DUTY CYCLE (V
0.4
0.4
I
I
I
I
C,PP
C,PP
C,PP
C,PP
= 0.5 I
= 0.75 I
= 0.5 I
= 0.75 I
0.6
0.6
IN
IN
/ V
/ V
O
O
O
O
)
)
O
O
0.8
0.8
December 29, 2004
FN9084.8
1.0
1.0

Related parts for ISL6559EVAL2