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AN2653 データシート(PDF) 13 Page - STMicroelectronics |
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AN2653 データシート(HTML) 13 Page - STMicroelectronics |
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13 / 22 page ![]() AN2653 In-the-loop compensation method 13/22 The second one occurs at higher frequencies where its impact on stability is limited. The goal of the first pole is to decrease the loop gain to get closer to 0 dB, just before the zero, occurring at whose goal is to minimize the phase shift caused by the pole. The stability is increased as the loop gain crosses the 0 dB axis with a limited phase shift. It minimizes the effect of the second pole caused by the feedback, which is also pushed toward higher frequencies. Although this compensation method may seem difficult to set up, it brings very good results, as shown in Table 3 and Table 4, for the TS507 operational amplifier. In a gain configuration, when considering the loop gain, the output is loaded by a resistive load of RL // (Rf + Rg), where Rf and Rg are the resistors used for the gain. If Rf + Rg << RL, the loop gain and therefore the stability parameters are the same whatever the value of RL. This is visible in Table 4 where Rf + Rg = 1.1 kΩ with RL = 10 kΩ and RL = 100 kΩ.. 1 2 π R ILCIL ⋅ -------------------------------- Table 3. Results of in-the-loop compensation for different load conditions in the case of a voltage follower configuration for TS507 CL RL =1kΩ RL =10kΩ RL =100 kΩ RIL (1) ( Ω) CIL (nF) Mg(2) (dB) M ϕ(2) (degree) RIL (1) (k Ω) CIL (nF) Mg(2) (dB) M ϕ(2) (degree) RIL (1) (k Ω) CIL (nF) Mg(2) (dB) M ϕ(2) (degree) 1nF -4.1 -28.5 ° -5 -34.1 ° -5.1 -34.4 ° 100 1 4.7 24.5 ° 1 0.4 15.2 53.9 ° 10 0.2 24.3 71.9 ° 10 nF -22.2 -78.4 ° -22.9 -79.5 ° -23 -79.6 ° 100 2 6 21.9 ° 1 1.26 13.6 61.2 ° 5 1.26 13.3 79.2 ° 100 nF -34.1 -84.4 ° -34.4 -84.6 ° -34.5 -84.6 ° 79.4 7.9 6.5 34.3 ° 0.5 6.3 6.5 66.9 ° 0.63 6.3 6.2 70.6 ° 1. RIL cells are shaded when its value is clamped to RL/10. 2. Negative values indicate instability. Table 4. Results of in-of-the-loop compensation for different load conditions in the case of a gain configuration of either -10 or +11 (Rg = 100 Ω and Rf = 1 kΩ) for TS507 CL RL =1kΩ RL =10kΩ RL =100 kΩ RIL (1) ( Ω) CIL (pF) Mg(2) (dB) M ϕ(2) (degree) RIL (1) ( Ω) CIL (pF) Mg(2) (dB) M ϕ(2) (degree) RIL (1) ( Ω) CIL (pF) Mg(2) (dB) M ϕ(2) (degree) 1nF 17.6 84.7 ° 16.8 85.1 ° 16.7 85.2 ° 100 126 39 89 ° 100 126 39 88.1 ° 100 126 39 88 ° 10 nF -0.6 -16.1 ° -1.3 -25.7 ° -1.4 -25.9 ° 39.8 251 40.2 78.6 ° 31.6 316 40.3 84.9 ° 31.6 316 40.3 84.8 ° 100 nF -13 -69.2 ° -13.3 -69.8 ° -13.3 -69.9 ° 10 631 44.5 66.2 ° 10 631 44.5 65.6 ° 10 631 44.5 65.6 ° 1. RIL cells are shaded when its value is clamped to (RL// Rf)/10. 2. Negative values indicate instability. |
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