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LP3988 Datasheet(PDF) 13 Page - Texas Instruments

No. de pieza LP3988
Descripción Electrónicos  LP3988-Q1 Micropower, 150-mA Ultra-Low-Dropout CMOS LDO With Power Good
PDF  25 Pages
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Fabricante Electrónico  TI2 [Texas Instruments]
Página de inicio  https://www.ti.com
Logo TI2 - Texas Instruments

LP3988 Datasheet(HTML) 13 Page - Texas Instruments

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LP3988-Q1
www.ti.com
SLAS928B – MARCH 2013 – REVISED NOVEMBER 2016
Product Folder Links: LP3988-Q1
Submit Documentation Feedback
Copyright © 2013–2016, Texas Instruments Incorporated
9.2.2.2 Input Capacitor
An input capacitance of at least 1 μF is required between the LP3988-Q1 IN pin and ground (the amount of the
capacitance may be increased without limit). This capacitor must be located a distance of not more than 1cm
from the input pin and returned to a clean analog ground. Any good quality ceramic, tantalum, or film capacitor
may be used at the input
NOTE
Tantalum capacitors can suffer catastrophic failures due to surge current when connected
to a low-impedance source of power (like a battery or a very large capacitor). If a tantalum
capacitor is used at the input, it must be ensured by the manufacturer to have a surge
current rating sufficient for the application.
There are no requirements for the equivalent series resistance (ESR) on the input capacitor, but tolerance and
temperature coefficient must be considered when selecting the capacitor to ensure the capacitance is at least 1
μF over the entire operating temperature range.
9.2.2.3 Output Capacitors
The LP3988-Q1 is designed specifically to work with very small ceramic output capacitors. A ceramic capacitor
(dielectric types Z5U, Y5V or X7R) in the 1-µF to 22-µF range with a 5-mΩ to 500-mΩ ESR range is suitable in
the LP3988-Q1 application circuit.
It may also be possible to use tantalum or film capacitors at the output, but these are not as attractive for
reasons of size and cost (see Capacitor Characteristics).
The output capacitor must meet the requirement for minimum amount of capacitance and also have an ESR
value which is within a stable range (5 mΩ to 500 mΩ).
9.2.2.4 No-Load Stability
The LP3988-Q1 remains stable and in regulation with no external load. This is specially important in CMOS RAM
keep-alive applications.
9.2.2.5 Capacitor Characteristics
The LP3988-Q1 is designed to work with ceramic capacitors on the output to take advantage of the benefits they
offer: for capacitance values in the range of 1 µF to 4.7 µF, ceramic capacitors are the smallest, least expensive
and have the lowest ESR values (which makes them best for eliminating high-frequency noise). The ESR of a
typical 1-µF ceramic capacitor is in the range of 20 mΩ to 40 mΩ, which easily meets the ESR requirement for
stability by the LP3988-Q1.
The ceramic capacitor's capacitance can vary with temperature. Most large-value ceramic capacitors (
≊ 2.2 µF)
are manufactured with Z5U or Y5V temperature characteristics, which results in the capacitance dropping by
more than 50% as the temperature goes from 25°C to 85°C.
A better choice for temperature coefficient in a ceramic capacitor is X7R, which holds the capacitance within
±15%.
Tantalum capacitors are less desirable than ceramic for use as output capacitors because they are more
expensive when comparing equivalent capacitance and voltage ratings in the 1-µF to 4.7-µF range.
Another important consideration is that tantalum capacitors have higher ESR values than equivalent-size
ceramics. This means that while it may be possible to find a tantalum capacitor with an ESR value within the
stable range, it would have to be larger in capacitance (which means bigger and more costly ) than a ceramic
capacitor with the same ESR value. It should also be noted that the ESR of a typical tantalum will increase about
2:1 as the temperature goes from 25°C down to
−40°C, so some guard band must be allowed.



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