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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 / 29 page ![]() 3.22 3.24 3.26 3.28 3.3 3.32 3.34 3.36 3.38 3.4 −250 −200 −150 −100 −50 0 50 100 150 200 VO = 3.3 V Cbyp = 10 nF DIL = 150 mA IL VO 20 ms/div→ 3.22 3.24 3.26 3.28 3.3 3.32 3.34 3.36 3.38 3.4 −250 −200 −150 −100 −50 0 50 100 150 200 20 ms/div→ VO = 3.3 V Cbyp = 10 nF DIL = 100 mA IL VO LP2985 SLVS522O – JULY 2004 – REVISED JANUARY 2015 www.ti.com Application Information (continued) 8.1.4 Detailed Design Procedure 8.1.4.1 Capacitor Characteristics 8.1.4.1.1 Ceramics Ceramic capacitors are ideal choices for use on the output of the LP2985 for several reasons. For capacitances in the range of 2.2 μF to 4.7 μF, ceramic capacitors have the lowest cost and the lowest ESR, making them choice candidates for filtering high-frequency noise. For instance, a typical 2.2- μF ceramic capacitor has an ESR in the range of 10 m Ω to 20 mΩ and, thus, satisfies minimum ESR requirements of the regulator. Ceramic capacitors have one major disadvantage that must be taken into account – a poor temperature coefficient, where the capacitance can vary significantly with temperature. For instance, a large-value ceramic capacitor ( ≥ 2.2 μF) can lose more than half of its capacitance as the temperature rises from 25°C to 85°C. Thus, a 2.2- μF capacitor at 25°C drops well below the minimum COUT required for stability, as ambient temperature rises. For this reason, select an output capacitor that maintains the minimum 2.2 μF required for stability over the entire operating temperature range. Note that there are some ceramic capacitors that can maintain a ±15% capacitance tolerance over temperature. 8.1.4.1.2 Tantalum Tantalum capacitors can be used at the output of the LP2985, but there are significant disadvantages that could prohibit their use: • In the 1- μF to 4.7-μF range, tantalum capacitors are more expensive than ceramics of the equivalent capacitance and voltage ratings. • Tantalum capacitors have higher ESRs than their equivalent-sized ceramic counterparts. Thus, to meet the ESR requirements, a higher-capacitance tantalum may be required, at the expense of larger size and higher cost. • The ESR of a tantalum capacitor increases as temperature drops, as much as double from 25°C to –40°C. Thus, ESR margins must be maintained over the temperature range to prevent regulator instability. 8.1.4.2 ON/OFF Operation The LP2985 allows for a shutdown mode via the ON/OFF pin. Driving the pin LOW ( ≤ 0.3 V) turns the device OFF; conversely, a HIGH ( ≥ 1.6 V) turns the device ON. If the shutdown feature is not used, ON/OFF should be connected to the input to ensure that the regulator is on at all times. For proper operation, do not leave ON/OFF unconnected, and apply a signal with a slew rate of ≥ 40 mV/μs. 8.1.5 Application Curves Figure 21. Load Transient Response Figure 22. Load Transient Response 14 Submit Documentation Feedback Copyright © 2004–2015, Texas Instruments Incorporated |
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