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CS3011-IS датащи(PDF) 13 Page - Cirrus Logic |
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CS3011-IS датащи(HTML) 13 Page - Cirrus Logic |
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13 / 18 page ![]() CS3011 CS3012 DS597F5 13 3.2.2 Gain Calculations Summary and Recommendations Condition #1: |Av| ≤ 50 and R1 ≤ 100 Ω The Opamp is inherently stable for |Av| ≤ 50 and R1 ≤ 100 Ω . No C2 compensation capacitor across R2 is required. • |Av| = 1 configuration has 70° phase margin and 20 dB gain margin. • |Av| = 50 configuration has phase margin be- tween 40° for CLOAD ≤ 100 pF and 60° for CLOAD = 0pF. Condition #2: |Av| ≤ 50 and R1 > 100 Ω Compensation capacitor C2 across R2 is required. Calculate C2 using the following formula: •C2 ≥ (R1 • Cin) / R2, where Cin = 50 pF Condition #3: |Av| > 50 Compensation capacitor C2 across R2 is required. Calculate and verify a value for C2 using the fol- lowing steps. Calculate the Compensation Capacitor Value: 1) Calculate a value for C2 using the following for- mula: C2 = 1 / [2 π (R1||R2) • P1], where P1 = 1 MHz To simplify the calculation, set the pole of the filter to P1 = 1 MHz. P1 must be set higher than the opamp’s internal 50 kHz crossover frequency. 2) Calculate a second value for C2 using the fol- lowing formula: C2 ≥ (R1 • Cin) / R2, where Cin = 50 pF 3) Use the larger of the two values calculated in steps 1 & 2. Verify the Opamp Compensation: Verify the opamp compensation using the open- loop gain and phase response Bode plot in Figure 14. Plot the calculated closed loop gain transfer function and verify the following design cri- teria are met: • Pole P1 > opamp internal 50 kHz crossover fre- quency -P1 = 1/ [2π (R1||R2) • C2], where P1 = 1 MHz - To simplify the calculation, set the pole to P1 = 1 MHz. • Z1 < opamp internal 50 kHz crossover frequency - Z1=1/(2 π R2 • C2) • Gain margin above the open-loop gain transfer function is required. A gain margin of +20 dB above the open loop gain transfer function is optimal. 3.3 Powerdown (PDWN) The CS3011 single amplifier provides a power- down function on pin 1. If this pin is left open the amplifier will operate normally. If the powerdown is asserted low, the amplifier enters a powered down state. There is a pull-up resistor (approximately 800 k ohm) inside the amplifier from pin 1 to the V+ supply. The current through this pull-up resistor is the main source of current drain in the powerdown state. |
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