參數(shù)資料
型號: MAX667
廠商: Maxim Integrated Products, Inc.
英文描述: +5V/Programmable Low-Dropout Voltage Regulator(5V/可調(diào),低輸出步降線性穩(wěn)壓器)
中文描述: +5V可調(diào)、低壓差穩(wěn)壓器
文件頁數(shù): 5/8頁
文件大?。?/td> 96K
代理商: MAX667
Output-V oltage S elec tion
If SET is connected to a resistive voltage divider (Figure
3), the output voltage is set by the equation:
V
OUT
= V
SET
x (R1 + R2) / R1,
where V
SET
= 1.22V
To simplify resistor selection:
R2 = R1 x (V
OUT
/ V
SET
- 1)
Since the input bias current at SET has a maximum
value of 10nA, relatively large values can be used for
R1 and R2 with no loss of accuracy. 1M
is a typical
value for R1. The V
SET
tolerance is less than ±25mV.
This allows the output to be preset without trim pots,
using only fixed resistors in most cases. However,
when resistor values greater than 1M
are used, pay
special attention to printed circuit board leakage that
can introduce error at the SET input.
S hutdown (S tandby) Mode
SHDN puts the device into standby mode to conserve
power. When this pin is held low, the IC operates nor-
mally. If it is driven above 1.5V, the chip shuts down.
Quiescent current of the MAX667 is then reduced to
less than 1μA, and OUT turns off.
Note that the voltage for SHDN must never be more
than 0.3V higher than V
IN
.
Low-Battery Func tion
The MAX667 contains circuitry for low-battery detec-
tion. If the voltage at LBI falls below the regulator’s
internal reference (1.22V), LBO, an open-drain output,
sinks current to GND. The threshold can be set to any
level above the reference voltage by connecting a
resistive divider to LBI based on the equation:
R3 = R4 x (V
BATT
/ V
LBI
- 1)
where V
BATT
is the desired threshold of the low-battery
detector, and R3 and R4 are the LBI input divider
resistors.
Since LBI input current is no more than 10nA, high val-
ues for R3 and R4 minimize loading. If V
OUT
is 5V, a
5.5V low-battery threshold can be set using 8.2M
for
R3 and 2.4M
for R4. When resistor values greater
than 1M
are used, pay special attention to PC board
leakage that can introduce error at the LBI input.
When the voltage at LBI is below the internal threshold,
LBO sinks current to GND. A pull-up resistor of 10k
or
more connected to OUT can be used with this pin when
driving CMOS circuits. Any pull-up resistor connected
to LBO should
not
be returned to a voltage source
greater than V
OUT
. When LBI is above the threshold or
the MAX667 is in SHDN mode, the LBO output is off.
Dropout Detec tor
The minimum input-output differential, or dropout volt-
age, determines the regulator’s lowest usable input
voltage. In battery-operated systems, this determines
the useful end-of-life battery voltage. The MAX667 fea-
tures very low dropout voltage (see Electrical
Characteristics). In addition, the MAX667 has a dropout
detector output, DD, that changes as the dropout volt-
age approaches its limit. DD is an open collector of a
PNP transistor. The dropout voltage and the dropout
detector both depend on the output current and tem-
perature. When the input voltage is more than 300mV
above the output voltage, the dropout detector will not
conduct. As the differential decreases below 300mV,
the DD source current increases abruptly. This current
signals a warning that regulation is about to be lost.
Connecting a resistor (typically 100k
) from DD to
ground develops a voltage that can be monitored by
analog circuits or changed to digital levels by a com-
parator. LBI may be used for this purpose.
__________Applic ations Information
Output Capac itor
As with all PNP output regulators, an output capacitor
(C1, Figure 2) is required to maintain stability. 10
μ
F is
recommended. To ensure stability, the output-capacitor
ESR must be sufficiently high. Figure 4 shows the mini-
mum required output-capacitor ESR for a given temper-
ature. Alternatively, a resistor may be added in series
with the output capacitor (Figure 5); the sum of the out-
+5V /Programmable Low-Dropout
Voltage Regulator
_______________________________________________________________________________________
5
M
0
-60 -40 -20
0
20
40
60
80 100 120
1
M
TEMPERATURE (
C
)
M
)
2
3
4
5
Figure 4. Minimum Required Output-Capacitor ESR vs.
Temperature
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