參數(shù)資料
型號: LX8554-00CDD
廠商: MICROSEMI CORP-ANALOG MIXED SIGNAL GROUP
元件分類: 基準電壓源/電流源
英文描述: 5A EXTREMELY LOW DROPOUT POSITIVE REGULATORS
中文描述: 2.5 V-3.6 V ADJUSTABLE POSITIVE LDO REGULATOR, 1 V DROPOUT, PSSO3
封裝: PLASTIC, TO-263, 3 PIN
文件頁數(shù): 5/7頁
文件大?。?/td> 198K
代理商: LX8554-00CDD
5A E
XTREMELY
L
OW
D
ROPOUT
P
OSITIVE
R
EGULATORS
LX8554-xx
P R O D U C T D A T A B O O K 1 9 9 6 / 1 9 9 7
5
Copyright 1997
Rev. 1.1 1/97
P
R O D U C T I O N
D
A T A
S
H E E T
A P P L I C AT I O N N O T E S
FIGURE 2
— BASIC ADJUSTABLE REGULATOR
R2+R1
R1
LX8554
OUT
IN
ADJ
V
OUT
V
IN
R1
R2
V
REF
I
ADJ
50μA
V
OUT
= V
REF
1 + R2
ADJ
R2
R1
OVERLOAD RECOVERY
(continued)
If this limited current is not sufficient to develop the designed
voltage across the output resistor, the voltage will stabilize at some
lower value, and will
never
reach the designed value. Under these
circumstances, it may be necessary to cycle the input voltage down
to zero in order to make the regulator output voltage return to
regulation.
RIPPLE REJECTION
Ripple rejection can be improved by connecting a capacitor
between the ADJ pin and ground. The value of the capacitor should
be chosen so that the impedance of the capacitor is equal in
magnitude to the resistance of R1
at the ripple frequency
. The
capacitor value can be determined by using this equation:
C = 1 / (6.28 * F
R
* R1)
where: C
the value of the capacitor in Farads;
select an equal or larger standard value.
the ripple frequency in Hz
the value of resistor R1 in ohms
F
R
R1
At a ripple frequency of 120Hz, with R1 = 100
:
C = 1 / (6.28 * 120Hz * 100
) = 13.3μF
The closest equal or larger standard value should be used, in this
case, 15μF.
When an ADJ pin bypass capacitor is used, output ripple
amplitude will be essentially independent of the output voltage. If
an ADJ pin bypass capacitor is not used, output ripple will be
proportional to the ratio of the output voltage to the reference
voltage:
M = V
OUT
/V
REF
where: M
a multiplier for the ripple seen when the
ADJ pin is optimally bypassed.
V
REF
= 1.25V.
For example, if V
OUT
= 2.5V the output ripple will be:
M = 2.5V/1.25V= 2
Output ripple will be twice as bad as it would be if the ADJ pin
were to be bypassed to ground with a properly selected capacitor.
OUTPUT VOLTAGE
The
LX8554
develops a 1.25V reference voltage between the output
and the adjust terminal (See Figure 2). By placing a resistor, R1,
between these two terminals, a constant current is caused to flow
through R1 and down through R2 to set the overall output voltage.
Normally this current is the specified minimum load current of 10mA.
Because I
is very small and constant when compared with the current
through R1, it represents a small error and can usually be ignored.
LOAD REGULATION
Because the
LX8554
is a three-terminal device, it is not possible to
provide true remote load sensing. Load regulation will be limited
by the resistance of the wire connecting the regulator to the load.
The data sheet specification for load regulation is measured at the
bottom of the package. Negative side sensing is a true Kelvin
connection, with the bottom of the output divider returned to the
negative side of the load. Although it may not be immediately
obvious, best load regulation is obtained when the top of the resistor
divider, (R1), is connected
directly
to the case of the regulator,
not
to the load
. This is illustrated in Figure 3. If R1 were connected to
the load, the effective resistance between the regulator and the load
would be:
R
Peff
= R
P
*
where: R
P
Actual parasitic line resistance.
When the circuit is connected as shown in Figure 3, the parasitic
resistance appears as its actual value, rather than the higher R
Peff
.
LX8554
OUT
IN
ADJ
V
IN
R1
R2
R
L
R
Parasitic
Line Resistance
Connect
R1 to Case
of Regulator
Connect
R2
to Load
FIGURE 3
— CONNECTIONS FOR BEST LOAD REGULATION
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