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LP2985 Datasheet(PDF) 14 Page - Texas Instruments |
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LP2985 Datasheet(HTML) 14 Page - Texas Instruments |
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14 / 24 page ![]() www.ti.com APPLICATION INFORMATION Capacitors Input Capacitor (CIN) Output Capacitor (COUT) Load Current − mA Noise Bypass Capacitor (CBYPASS) LP2985 150-mA LOW-NOISE LOW-DROPOUT REGULATOR WITH SHUTDOWN SLVS522F – JULY 2004 – REVISED AUGUST 2005 A minimum value of 1 µF (over the entire operating temperature range) is required at the input of the LP2985. In addition, this input capacitor should be located within 1 cm of the input pin and connected to a clean analog ground. There are no equivalent series resistance (ESR) requirements for this capacitor, and the capacitance can be increased without limit. As an advantage over other regulators, the LP2985 permits the use of low-ESR capacitors at the output, including ceramic capacitors that can have an ESR as low as 5 m Ω. Tantalum and film capacitors also can be used if size and cost are not issues. The output capacitor also should be located within 1 cm of the output pin and be returned to a clean analog ground. As with other PNP LDOs, stability conditions require the output capacitor to have a minimum capacitance and an ESR that falls within a certain range. • Minimum COUT: 2.2 µF (can be increased without limit to improve transient response stability margin) • ESR range: see Figure 28 Figure 28. 2.2-V/3.3- µF ESR Curves It is critical that both the minimum capacitance and ESR requirement be met over the entire operating temperature range. Depending on the type of capacitors used, both these parameters can vary significantly with temperature (see capacitor characteristics). The LP2985 allows for low-noise performance with the use of a bypass capacitor that is connected to the internal bandgap reference via the BYPASS pin. This high-impedance bandgap circuitry is biased in the microampere range and, thus, cannot be loaded significantly, otherwise, its output – and, correspondingly, the output of the regulator – changes. Thus, for best output accuracy, dc leakage current through CBYPASS should be minimized as much as possible and never should exceed 100 nA. A 10-nF capacitor is recommended for CBYPASS. Ceramic and film capacitors are well suited for this purpose. 14 |
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