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PDF CS5204-1 Data sheet ( Hoja de datos )

Número de pieza CS5204-1
Descripción (CS5204-1/-3/-5) Linear Regulators
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CS5204−1, CS5204−3,
CS5204−5
4.0 A Adjustable, and
3.3 V and 5.0 V Fixed
Linear Regulators
The CS5204x series of linear regulators provides 4.0 A at
adjustable and fixed voltages with an accuracy of ±1.0% and ±2.0%
respectively. The adjustable version uses two external resistors to set
the output voltage within a 1.25 V to 13 V range.
The regulators are intended for use as post regulators and
microprocessor supplies. The fast loop response and low dropout
voltage make these regulators ideal for applications where low voltage
operation and good transient response are important.
The circuit is designed to operate with dropout voltages as low as
1.0 V depending on the output current level. The maximum quiescent
current is only 10 mA at full load.
The regulators are fully protected against overload conditions with
protection circuitry for Safe Operating Area (SOA), overcurrent and
thermal shutdown.
The regulators are available in TO2203 and surface mount
D2PAK3 packages.
Features
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Output Current to 4.0 A
Output Trimmed to ±1.0%
Dropout Voltage 1.10 V @ 4.0 A
Fast Transient Response
Fault Protection Circuitry
Thermal Shutdown
Overcurrent Protection
Safe Area Protection
VOUT
VIN
Thermal
Shutdown
Bandgap
Output
Current
Limit
+ Error
Amplifier
Adj
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TO2203
T SUFFIX
CASE 221A
Adjustable
Output
Tab = VOUT
Pin 1. Adj
2. VOUT
3. VIN
12 3
123
D2PAK3
DP SUFFIX
CASE 418AB
Fixed
Output
Tab = VOUT
Pin 1. GND
2. VOUT
3. VIN
MARKING DIAGRAMS
TO2203
D2PAK3
CS5204X
AWLYWW
CS5204X
AWLYWW
1
1
A = Assembly Location
WL, L = Wafer Lot
YY, Y = Year
WW, W = Work Week
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 7 of this data sheet.
Figure 1. Block Diagram CS52041
© Semiconductor Components Industries, LLC, 2006
September, 2006 Rev. 9
1
Publication Order Number:
CS52041/D

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CS5204-1 pdf
CS52041, CS52043, CS52045
100
90
80
70
60
50
40
30
20
10
0101
TCASE = 25°C
IOUT = 4.0 A
(VIN VOUT) = 3.0 V
VRIPPLE = 1.6 VPP
CAdj = 25 mF
102 103
Frequency (Hz)
104
105
Figure 9. Ripple Rejection vs. Frequency
(Adjustable Versions)
APPLICATIONS INFORMATION
The CS5204x family of linear regulators provides fixed
or adjustable voltages at currents up to 4.0 A. The regulators
are protected against short circuit, and include thermal
shutdown and safe area protection (SOA) circuitry. The
SOA protection circuitry decreases the maximum available
output current as the inputoutput differential voltage
increases.
The CS5204x has a composite PNPNPN output
transistor and requires an output capacitor for stability. A
detailed procedure for selecting this capacitor is included in
the Stability Considerations section.
VIN
C1
VIN VOUT
CS52041
Adj
VREF
R1
VOUT
C2
IAdj
CAdj
R2
Adjustable Operation
The adjustable regulator (CS52041) has an output
voltage range of 1.25 V to 13 V. An external resistor divider
sets the output voltage as shown in Figure 10. The regulator
maintains a fixed 1.25 V (typical) reference between the
output pin and the adjust pin.
A resistor divider network R1 and R2 causes a fixed
current to flow to ground. This current creates a voltage
across R2 that adds to the 1.25 V across R1 and sets the
overall output voltage. The adjust pin current (typically
50 mA) also flows through R2 and adds a small error that
should be taken into account if precise adjustment of VOUT
is necessary.
The output voltage is set according to the formula:
ǒ ǓVOUT + VREF
R1 ) R2
R1
) IAdj
R2
The term IAdj × R2 represents the error added by the adjust
pin current.
R1 is chosen so that the minimum load current is at least
10 mA. R1 and R2 should be the same type, e.g. metal film
for best tracking over temperature. The adjust pin is
bypassed to improve the transient response and ripple
rejection of the regulator.
Figure 10. Resistor Divider Scheme for the
Adjustable Version
Stability Considerations
The output or compensation capacitor helps determine
three main characteristics of a linear regulator: startup
delay, load transient response and loop stability.
The capacitor value and type is based on cost, availability,
size and temperature constraints. A tantalum or aluminum
electrolytic capacitor is best, since a film or ceramic
capacitor with almost zero ESR, can cause instability. The
aluminum electrolytic capacitor is the least expensive
solution. However, when the circuit operates at low
temperatures, both the value and ESR of the capacitor will
vary considerably. The capacitor manufacturers data sheet
provides this information.
A 22 mF tantalum capacitor will work for most
applications, but with high current regulators such as the
CS5204x the transient response and stability improve with
higher values of capacitor. The majority of applications for
this regulator involve large changes in load current so the
output capacitor must supply the instantaneous load current.
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