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TDA3682 Datasheet(PDF) 13 Page - NXP Semiconductors |
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TDA3682 Datasheet(HTML) 13 Page - NXP Semiconductors |
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13 / 20 page ![]() 2002 Mar 11 13 Philips Semiconductors Product specification Multiple voltage regulator with power switches TDA3682 Application information NOISE The outputs of regulators 1 to 5 are designed in such a way that the noise is very low and the stability is very good. The noise output voltage depends on output capacitor Co. Table 4 shows the influence of the output capacitor on the noise figure. Table 4 Noise figures Note 1. Measured at a bandwidth from 20 Hz to 20 kHz. STABILITY The regulators are made stable with the externally connected output capacitors. The stability can be guaranteed with almost any output capacitor. When only an electrolytic capacitor is used, the temperature behaviour of this output capacitor can cause oscillations at extreme low temperature. The following two examples show how an output capacitor value is selected. Oscillation problems can be avoided by adding a 47 nF capacitor in parallel with the electrolytic capacitor. Example 1 (regulator 2) Regulator 2 (BU5V) is stabilized with an electrolytic output capacitor of 10 µF (ESR = 4 Ω). At Tamb = −30 °C the capacitor value is decreased to 3 µF and the ESR is increased to 28 Ω. As can be seen from Fig.8 the regulator will be instable at Tamb = −30 °C. Solution: To avoid problems with stability at low temperatures, the use of tantalum capacitors is recommended. Use a tantalum capacitor with a value of 10 µF or an electrolytic capacitor with a higher value. Example 2 (regulator 1) Regulator 1 (illumination) is stabilized with an electrolytic capacitor of 2.2 µF (ESR = 8 Ω). At Tamb = − 30 °C the capacitor value is decreased to 0.8 µF and the ESR is increased to 56 Ω. As can be seen from Fig.9 the regulator will be stable at Tamb = −30 °C. Even when only a small MKT capacitor of 47 nF is used as the output capacitor, regulator 1 will remain stable over the temperature range. REGULATOR NOISE FIGURE ( µV)(1) Co =10 µFCo =47 µFCo = 100 µF 1 170 130 120 2 110 100 95 3 140 110 100 4 140 110 100 5 140 110 100 handbook, halfpage MGT176 Co (µF) ESR ( Ω) maximum minimum stable region 100 10 0 4 8 12 1 0.1 Fig.8 Curve for selecting the value of the output capacitor for regulator 2. handbook, halfpage MGT177 Co (µF) ESR ( Ω) maximum stable region 10 1 0 100 0.1 0.047 100 Fig.9 Curve for selecting the value of the output capacitor for regulators 1, 3, 4 and 5. |
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