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LP3918TL/NOPB Datasheet(PDF) 27 Page - Texas Instruments |
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LP3918TL/NOPB Datasheet(HTML) 27 Page - Texas Instruments |
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27 / 38 page ![]() 0 1.0 2.0 3.0 4.0 5.0 DC BIAS (V) 100% 80% 60% 40% 20% 0402, 6.3V, X5R 0603, 10V, X5R LP3918 www.ti.com SNVS476D – AUGUST 2007 – REVISED MAY 2013 Output Capacitor Correct selection of the output capacitor is critical to ensure stable operation in the intended application.The output capacitor must meet all the requirements specified in the recommended capacitor table over all conditions in the application. These conditions include DC-bias, frequency and temperature. Unstable operation will result if the capacitance drops below the minimum specified value. The LP3918 is designed specifically to work with very small ceramic output capacitors. The LDO's on the LP3918 are specifically designed to be used with X7R and X5R type capacitors. With these capacitors selection of the capacitor for the application is dependant on the range of operating conditions and temperature range for that application. (See section on Capacitor Characteristics). It is also recommended that the output capacitor be placed within 1cm from the output pin and returned to a clean ground line. Capacitor Characteristics The LDO's on the LP3918 are designed to work with ceramic capacitors on the input and output to take advantage of the benifits they offer. For capacitance values around 1µF, ceramic capacitors give the circuit designer the best design options in terms of low cost and minimal area. For both input and output capacitors careful interpretation of the capacitor specification is required to ensure correct device operation. The capacitor value can change greatly dependant on the conditions of operation and capacitor type. In particular to ensure stability, the output capacitor selection should take account of all the capacitor parameters to ensure that the specification is met within the application. Capacitance value can vary with DC bias conditions as well as temperature and frequency of operation. Capacitor values will also show some decrease over time due to aging. The capacitor parameters are also dependant on the particular case size with smaller sizes giving poorer performance figures in general. Figure 13. Graph Showing A Typical Variation in Capacitance vs DC Bias As an example Figure 13 shows a typical graph showing a comparison of capacitor case sizes in a Capacitance vs DC Bias plot. As shown in the graph, as a result of DC Bias condition the capacitance value may drop below minimum capacitance value given in the recommended capacitor table (0.7µF in this case). Note that the graph shows the capacitance out of spec for 0402 case size capacitor at higher bias voltages. It is therefore recommended that the capacitor manufacturers specifications for the nominal value capacitor are consulted for all conditions as some capacitor sizes (e.g 0402) may not be suitable in the actual application. Ceramic capacitors have the lowest ESR values, thus making them best for eliminating high frequency noise. The ESR of a typical 1µF ceramic capacitor is in the range of 20m Ω to 40mΩ, and also meets the ESR requirements for stability. The temperature performance of ceramic capacitors varies by type. Capacitor type X7R is specified with a tolerance of ±15% over temperature range -55ºC to +125ºC. The X5R has similar tolerance over the reduced temperature range -55ºC to +85ºC. Most large value ceramic capacitors (<2.2µF) are manufactured with Z5U or Y5V temperature characteristics, which results in the capacitance dropping by more than 50% as the temperature goes from 25ºC to 85ºC. Therefore X7R is recommended over these other capacitor types in applications where the temperature will change significally above or below 25ºC. Copyright © 2007–2013, Texas Instruments Incorporated Submit Documentation Feedback 27 Product Folder Links: LP3918 |
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