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MAX1651EPA Datasheet(PDF) 8 Page - Maxim Integrated Products

Part # MAX1651EPA
Description  5V/3.3V or Adjustable, High-Efficiency, Low-Dropout, Step-Down DC-DC Controllers
Download  12 Pages
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Manufacturer  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAX1651EPA Datasheet(HTML) 8 Page - Maxim Integrated Products

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5V/3.3V or Adjustable, High-Efficiency,
Low-Dropout, Step-Down DC-DC Controllers
8
_______________________________________________________________________________________
Modes of Operation
When delivering high output currents, the MAX1649/
MAX1651 operate in continuous-conduction mode. In
this mode, current always flows in the inductor, and
the control circuit adjusts the switch duty cycle to main-
tain regulation without exceeding the switch current
capability (Figure 3). This provides excellent load-tran-
sient response and high efficiency.
In discontinuous-conduction mode, current through the
inductor starts at zero, rises to a peak value, then
ramps down to zero. Although efficiency is still excel-
lent, the output ripple increases slightly, and the switch
waveform exhibits ringing (at the inductor's self-reso-
nant frequency). This ringing is to be expected and
poses no operational problems.
Dropout
The MAX1649/MAX1651 are in dropout when the input
voltage (V+) is low enough that the output drops below
the minimum output voltage specification (see
Electrical Characteristics). The dropout voltage is the
difference between the input and output voltage when
dropout
occurs.
See
the
Typical
Operating
Characteristics for the Dropout Voltage vs. Load
Current and Dropout Voltage vs. Temperature graphs.
__________________Design Procedure
Setting the Output Voltage
The MAX1649/MAX1651 are preset for 5V and 3.3V out-
put voltages, respectively; tie FB to GND for fixed-output
operation. They may also be adjusted from 1.5V (the
reference voltage) to the input voltage, using external
resistors R2 and R3 configured as shown in Figure 4. For
adjustable-output operation, 150k
Ω is recommended for
resistor R3—high enough to avoid wasting energy, yet
low enough to avoid RC delays caused by parasitic
capacitance at FB. R2 is given by:
VOUT
R2 = R3 x
(——— -1)
VREF
where VREF = 1.5V.
When using external resistors, it does no harm to con-
nect OUT and the output together, or to leave OUT
unconnected.
Current-Sense Resistor Selection
The current-sense resistor limits the peak switch cur-
rent to 110mV/RSENSE, where RSENSE is the value of
the current-sense resistor, and 110mV is the current-
limit trip level (see
Electrical Characteristics).
V+ = 10V, ILOAD = 1.3A
CIRCUIT OF FIGURE 1, R1 = 75m
1.5A
0A
1A
2
µs/div
Figure 3. MAX1649 Continuous-Conduction Mode, Heavy
Load-Current Waveform (500mA/div)
(
)
MAX1649
MAX1651
V+
CS
GND
5
6
2
8
3
VIN
C2
330
µF
7
1
EXT
OUT
SHDN
4
C3
0.1
µF
C4
0.1
µF
C1
100
µF
R1
0.05
D1
1N5820
L1
47
µH
P1
Si9430
OUTPUT
@ 1.5A
REF
FB
R2
R3
150k
R2 = R3
VOUT
VREF
– 1
VREF = 1.5V
Figure 4. Adjustable-Output Operation


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