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ADP1762ACPZ1.25-R7 数据表(PDF) 13 Page - Analog Devices

部件名 ADP1762ACPZ1.25-R7
功能描述  2 A, Low VIN, Low Noise, CMOS Linear Regulator
PDF  19 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP1762ACPZ1.25-R7 数据表(HTML) 13 Page - Analog Devices

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Data Sheet
ADP1762
Rev. D | Page 13 of 19
APPLICATIONS INFORMATION
CAPACITOR SELECTION
Output Capacitor
The ADP1762 is designed for operation with small, space-saving
ceramic capacitors, but it can function with most commonly
used capacitors as long as care is taken with the effective series
resistance (ESR) value. The ESR of the output capacitor affects
the stability of the LDO control loop. A minimum of 10 μF
capacitance with an ESR of 500 mΩ or less is recommended to
ensure the stability of the ADP1762. Transient response to changes
in load current is also affected by output capacitance. Using a
larger value of output capacitance improves the transient response
of the ADP1762 to large changes in load current. Figure 31 and
Figure 32 show the transient responses for output capacitance
values of 10 μF and 47 μF, respectively.
B
W
CH1 50.0mV
CH2 1.00A
M1.00µs
A CH2
640mA
1
2
T 18.70%
ILOAD
VOUT
Figure 31. Output Transient Response, COUT = 10 μF
CH1 50.0mV
CH2 1.00A
M1.00µs
A CH2
640mA
1
2
T 19.00%
ILOAD
VIN
Figure 32. Output Transient Response, COUT = 47 μF
Input Bypass Capacitor
Connecting a 10 μF capacitor from the VIN pin to the GND pin to
ground reduces the circuit sensitivity to the PCB layout, especially
when long input traces or high source impedance are encountered.
If output capacitance greater than 10 μF is required, it is
recommended that the input capacitor be increased to match it.
Input and Output Capacitor Properties
Use any good quality ceramic capacitors with the ADP1762, as
long as they meet the minimum capacitance and maximum
ESR requirements. Ceramic capacitors are manufactured with a
variety of dielectrics, each with different behavior over temperature
and applied voltage. Capacitors must have a dielectric adequate to
ensure the minimum capacitance over the necessary temperature
range and dc bias conditions. X5R or X7R dielectrics with a
voltage rating of 6.3 V or 10 V are recommended. Y5V and
Z5U dielectrics are not recommended, due to poor temperature
and dc bias characteristics.
Figure 33 shows the capacitance vs. bias voltage characteristics
of an 0805 case, 10 μF, 10 V, X5R capacitor. The voltage stability of
a capacitor is strongly influenced by the capacitor size and voltage
rating. In general, a capacitor in a larger package or with a higher
voltage rating exhibits better stability. The temperature variation
of the X5R dielectric is about ±15% over the −40°C to +85°C
temperature range and is not a function of package size or
voltage rating.
0
2
4
6
8
10
12
01
234
56
DC BIAS VOLTAGE (V)
Figure 33. Capacitance vs. DC Bias Voltage
Use Equation 4 to determine the worst case capacitance,
accounting for capacitor variation over temperature, component
tolerance, and voltage.
CEFF = COUT × (1 − Tempco) × (1 − TOL)
(4)
where:
CEFF is the effective capacitance at the operating voltage.
COUT is the output capacitor.
Tempco is the worst case capacitor temperature coefficient.
TOL is the worst case component tolerance.
In this example, the worst case temperature coefficient (tempco)
over −40°C to +85°C is assumed to be 15% for an X5R dielectric.
The tolerance of the capacitor (TOL) is assumed to be 10%, and
COUT = 10 μF at 1.0 V, as shown in Figure 33.



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