MAX863EEE Maxim Integrated Products, MAX863EEE Datasheet - Page 7

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MAX863EEE

Manufacturer Part Number
MAX863EEE
Description
DC/DC Switching Controllers Dual PFM Step-Up DC/DC Controller
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX863EEE

Number Of Outputs
2
Output Voltage
3.15 V to 3.45 V
Input Voltage
1.5 V to 11 V
Mounting Style
SMD/SMT
Package / Case
QSOP-16
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C

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Each converter in the MAX863 determines from moment
to moment whether to switch or not, waiting until the out-
put voltage drops before initiating another cycle. Under
light loads, the inductor current ramps to zero before the
next cycle; this is discontinuous-conduction mode.
Continuous-conduction mode occurs when the next
switching cycle begins while current is still flowing
through the inductor. The transition point between dis-
continuous- and continuous-conduction mode is deter-
mined by input and output voltages, and by the size of
the inductor relative to the peak switching current. In
general, reducing inductance toward the minimum rec-
ommended value pushes the transition point closer to
the maximum load current. If the inductor value is low
enough or the output/input voltage ratio high enough,
the DC-DC converter may remain in discontinuous-con-
duction mode throughout its entire load range.
Figure 2. Bootstrapped Typical Operating Circuit
Continuous/Discontinuous-Conduction
V
IN
= 1.5V TO THE LOWER OF V
≤0.1Ω
220µF
V
10V
C1
_______________________________________________________________________________________
OUT1
= 5V
R5
R6
Dual, High-Efficiency, PFM, Step-Up
C2
0.1µF
OUT1
100k
R7
LOW-BATTERY
DETECTOR OUTPUT
OR V
MBRS340T3
OUT2
D1
Modes
L1
10µH
2A
R1
50mΩ
N1A
SENSE1
CS1
LBI
EXT1
LBO
FB1
≤0.1Ω
100µF
10V
C3
MAX863
The MAX863 transitions into continuous-conduction
mode in two ways, depending on whether preset or
adjustable mode is used and how the external feed-
back network is compensated. Under light loads, the IC
switches in single pulses (Figure 3a). The threshold of
transition into continuous-conduction mode is reached
when the inductor current waveforms are adjacent to
one another, as shown in Figure 3b. As the load
increases, the transition into continuous-conduction
mode progresses by raising the minimum inductor cur-
rent (Figures 3c, 3d). Depending on feedback compen-
sation, transition into continuous-conduction mode may
also progress with grouped pulses (Figures 3e, 3f).
Pulse groups should be separated by less than two or
three switching cycles. Output ripple should not be
significantly more than the single-cycle no-load case.
PGND
V
DD
≤0.1Ω
100µF
SHDN2
SHDN1
BOOT
EXT2
GND
10V
CS2
REF
C4
FB2
50mΩ
DC-DC Controller
R2
ON/OFF
N1B
IRF7301
L2
10µH
2A
C7
0.1µF
MBRS340T3
D2
165k
1%
R3
R4
100k
1%
V
C6
10pF
OUT2
= 3.3V
C5
330µF
10V
≤0.1Ω
7

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