MAX15038EVKIT+ Maxim Integrated Products, MAX15038EVKIT+ Datasheet - Page 17

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MAX15038EVKIT+

Manufacturer Part Number
MAX15038EVKIT+
Description
EVALUATION KIT FOR MAX15038
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX15038EVKIT+

Main Purpose
DC/DC, Step Down
Outputs And Type
1, Non-Isolated
Voltage - Output
1.8V
Current - Output
4A
Voltage - Input
2.9 ~ 5.5V
Regulator Topology
Buck
Frequency - Switching
1MHz
Board Type
Fully Populated
Utilized Ic / Part
MAX15038
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
after the voltage at FB increases above 92.5% of
V
tion from monotonic startup to forced-PWM mode dur-
ing soft-start when a prolonged time constant external
REFIN voltage is applied.
The maximum allowed soft-start time is 2ms when an
external reference is applied at REFIN in the case of
starting up into prebiased output.
Connect MODE to V
mode, the MAX15038 switches only as necessary to
maintain the output at light loads (not capable of sinking
current from the output), but still operates with fixed-fre-
quency (set by the resistor at FREQ terminal) PWM at
medium and heavy loads. This maximizes light-load effi-
ciency and reduces the input quiescent current.
In case of prolonged high-side idle activity (beyond
eight clock cycles), the low-side switch is turned on
briefly to rebuild the charge lost in the bootstrap capac-
itor before the next on-cycle of the high-side switch.
In skip mode, the low-side switch is turned off when the
inductor current decreases to 0.2A (typ) to ensure no
reverse current flowing from the output capacitor and
the best conversion efficiency/minimum supply current.
The high-side switch minimum on-time is controlled to
guarantee that 0.58A current is reached to avoid high
frequency bursts at no load conditions and that might
cause a rapid increase of the supply current caused by
additional switching losses.
Even if skip mode is selected at the device turn-on, the
monotonic startup mode is internally selected during
soft-start. The transition to skip mode is automatically
achieved 4096 clock cycles after the voltage at FB
increases above 92.5% of V
REFIN
. The additional delay prevents an early transi-
______________________________________________________________________________________
DD
to select skip mode. In skip
REFIN
.
4A, 2MHz Step-Down Regulator
Skip Mode
with Integrated Switches
Changing from skip mode to forced-PWM mode and
vice-versa can be done at any time. The output capaci-
tor should be large enough to limit the output-voltage
overshoot/undershoot due to the settling times to reach
different duty-cycle set points corresponding to forced-
PWM mode and skip mode at light loads.
Careful PCB layout is critical to achieve clean and sta-
ble operation. It is highly recommended to duplicate the
MAX15038 EV kit layout for optimum performance. If devi-
ation is necessary, follow these guidelines for good PCB
layout:
1) Connect input and output capacitors to the power
2) Place capacitors on V
3) Keep the high-current paths as short and wide as
4) Connect IN, LX, and PGND separately to a large
5) Ensure all feedback connections are short and
6) Route high-speed switching nodes, such as LX,
ground plane; connect all other capacitors to the sig-
nal ground plane.
sible to the IC and its corresponding pin using direct
traces. Keep power ground plane (connected to
PGND) and signal ground plane (connected to GND)
separate.
possible. Keep the path of switching current short
and minimize the loop area formed by LX, the out-
put capacitors, and the input capacitors.
copper area to help cool the IC to further improve
efficiency and long-term reliability.
direct. Place the feedback resistors and compensa-
tion components as close as possible to the IC.
away from sensitive analog areas (FB, COMP).
PCB Layout Considerations and
DD
Thermal Performance
, IN, and SS as close as pos-
17

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