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OPAX170 데이터시트(PDF) 24 Page - Texas Instruments |
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OPAX170 데이터시트(HTML) 24 Page - Texas Instruments |
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24 / 64 page ![]() 0 AOL 1/ 20 40 60 80 10 100 1k 10k 100k 1M 100 120 10M 100M Frequency (Hz) 20 dB ROC dec 40 dB 1 dec z ISO LOAD 1 f 2 R C Œ u u u p ISO o LOAD 1 f 2 R R C Œ u u u LOAD ISO o ISO LOAD 1 + C × R × s T(s) = 1 + R + R × C × s 24 OPA170, OPA2170, OPA4170 SBOS557E – AUGUST 2011 – REVISED APRIL 2018 www.ti.com Product Folder Links: OPA170 OPA2170 OPA4170 Submit Documentation Feedback Copyright © 2011–2018, Texas Instruments Incorporated Typical Application (continued) • Run thermal simulations to understand board thermal performance • Export customized schematic and layout into popular CAD formats • Print PDF reports for the design, and share the design with colleagues Get more information about WEBENCH tools at www.ti.com/WEBENCH. 9.2.2.2 Unity-Gain Buffer Figure 41 shows a unity-gain buffer driving a capacitive load. Equation 1 shows the transfer function for the circuit in Figure 41. Not shown in Figure 41 is the open-loop output resistance of the operational amplifier, Ro. (1) The transfer function in Equation 1 has a pole and a zero. The frequency of the pole (fp) is determined by (Ro + RISO) and CLOAD. Components RISO and CLOAD determine the frequency of the zero (fz). A stable system is obtained by selecting RISO such that the rate of closure (ROC) between the open-loop gain (AOL) and 1/β is 20 dB/decade. Figure 42 depicts the concept. The 1/β curve for a unity-gain buffer is 0 dB. Figure 42. Unity-Gain Amplifier With RISO Compensation ROC stability analysis is typically simulated. The validity of the analysis depends on multiple factors, especially the accurate modeling of Ro. In addition to simulating the ROC, a robust stability analysis includes a measurement of overshoot percentage and ac gain peaking of the circuit using a function generator, oscilloscope, and gain and phase analyzer. Phase margin is then calculated from these measurements. Table 3 shows the overshoot percentage and ac gain peaking that correspond to phase margins of 45° and 60°. For more details on this design and other alternative devices that can be used in place of the OPA170, see the Precision Design, Capacitive Load Drive Solution Using an Isolation Resistor. Table 3. Phase Margin versus Overshoot and AC Gain Peaking PHASE MARGIN OVERSHOOT AC GAIN PEAKING 45° 23.3% 2.35 dB 60° 8.8% 0.28 dB |
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