參數(shù)資料
型號: MAX879
廠商: Maxim Integrated Products, Inc.
元件分類: DC/DC變換器
英文描述: Adjustable-Output, DC-DC Converters(3.3V/3V輸出,1.8V~6V輸入,步升/步降DC-DC變換器)
中文描述: 可調(diào)輸出,DC - DC轉(zhuǎn)換(3.3V/3V輸出,電壓為1.8V?6V的輸入,步升/步降型DC - DC變換器)
文件頁數(shù): 9/12頁
文件大?。?/td> 152K
代理商: MAX879
__________Applic ations Information
Figure 4 shows a MAX877 step-up application circuit.
This circuit starts up and operates with inputs ranging
from 1.0V to 6.2V. Start-up time is a function of the load,
typically less than 5ms. Output current capability is a
function of the input voltage (see Typical Operating
Characteristics).
The converters will regulate down to the output voltage
and seamlessly switch into boost mode as the input
drops below the output voltage. This is especially use-
ful in battery-powered applications, where the battery
voltage may initially exceed the output voltage. To gen-
erate 5V from four alkaline cells in series, the input
ranges from 6.2V to 3.6V. When the battery pack is
fresh, the MAX877 will step down with the active rectifi-
er acting as the switch. As the batteries approach 5V,
or the desired output voltage, the converter’s control
circuitry will ensure a smooth transition into step-up
mode. The converter operates until the batteries are
less than 3V; efficiency is typically 80% with fresh bat-
teries, and is close to 85% at V
IN
= 4V.
Induc tor S elec tion
The 22μH inductor shown in the Typical Operating
Circuit is sufficient for most MAX877/MAX878/MAX879
designs. Other inductor values ranging from 10μH to
47μH are also suitable. The inductor should have a satu-
ration rating equal to or greater than the peak switch-
current limit, which is 1A without an external current limit
(ILIM connected to IN). It is acceptable to operate the
inductor at 120% of its saturation rating; however, this
may slightly reduce efficiency. For highest efficiency,
use an inductor with a low
DC resistance
, preferably
under 0.2
. Table 1 lists suggested inductor suppliers.
Capac itor S elec tion
The 100μF, 10V surface-mount tantalum (SMT) output
capacitor shown in the Typical Operating Circuit will
provide a 25mV output ripple or less, stepping up from
3V to 5V at 200mA. Smaller capacitors, down to 10μF,
are acceptable for light loads or in applications that
can tolerate higher output ripple. The input capacitor
may be omitted if the supply has low output impedance
and the input lead length is less than 2 inches (5cm) or
the loads are small.
The primary factor in selecting both the output and input
filter capacitor is low ESR. The ESR of both bypass and
filter capacitors affects efficiency. Optimize performance
by increasing filter capacitors or using specialized low-
ESR capacitors. The smallest low-ESR SMT tantalum
capacitors currently available are Sprague 595D or 695D
series. Sanyo OS-CON organic-semiconductor through-
hole capacitors also exhibit very low ESR, are rated for
the wide temperature range, and are especially suitable
for operation at cold temperatures (below 0°C).
Table 1 lists suggested capacitor suppliers.
M
5V /3.3V /3V /Adjustable-Output,
S tep-Up/S tep-Down DC-DC Converters
_______________________________________________________________________________________
9
INPUT
1.0V TO 6.2V
IN
ILIM
SHDN
100μF
OUTPUT
5V
AGND
3
MAX877
LX
OUT
PGND
4
22μH
ON/OFF
22
μ
F
1
2
7
6
5
SHDN
PGND
4
MAX879
OUT
AGND
3
7
1
8
6
L1
22
μ
H
5
LX
FB
2IN
ILIM
V
IN
C1
22μF
R1
C3
C2
100μF
V
OUT
R2
Figure 3. MAX879 Adjustable Voltage
Figure 4. MAX877 Standard Application Circuit
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