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RHF484 数据表(PDF) 13 Page - STMicroelectronics |
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RHF484 数据表(HTML) 13 Page - STMicroelectronics |
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13 / 18 page ![]() RHF484 Achieving good stability at low gain Doc ID 17351 Rev 1 13/18 3 Achieving good stability at low gain At low frequencies, the RHF484 can be used in a low gain configuration as shown in Figure 24. At lower frequencies, the stability is not affected by the value of the gain, which can be set close to 1 V/V (0 dB), and is reduced to its simplest expression G1=1+Rfb/Rg. Therefore, an R-C cell is added in the gain network so that the gain is increased (up to 5) at higher frequencies (where the stability of the amplifier could be affected). At higher frequencies, the gain becomes G2=1+Rfb/(Rg//R). Rg becomes a complex impedance. The closed-loop gain features a variation in frequency and can be expressed as: where a pole appears at 1/2 πRC and a zero at G1/2π(G1R+Rfb)C. The frequency can be plotted as shown in Figure 25. Figure 24. Low gain configuration Figure 25. Closed-loop gain Table 6. External components versus low-frequency gain G1 (V/V) R ( Ω)C (nF) Rg ( Ω)Rfb (Ω) 1.1 510 1 20k 2k 2510 1 2k 2k 3510 1 1k 2k 4 510 1 750 2.4k 5 Not connected Not connected 820 3.3k Gain G1 1jC ω G1R Rfb + G1 ----------------------------- ⎝⎠ ⎛⎞ × + 1 jCR ω + ------------------------------------------------------------- = |
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