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SC2620 датащи(PDF) 20 Page - Semtech Corporation |
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SC2620 датащи(HTML) 20 Page - Semtech Corporation |
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20 / 26 page ![]() 20 2006 Semtech Corp. www.semtech.com SC2620 POWER MANAGEMENT Applications Information gain at high frequency. Placing p 3 at about 2 S ω gives: 5 6 fR 1 C π ≈ (13) Computed R 5, C5 and C6 can indeed result in near optimal load transient responses in over half of the applications. However in other cases empirically determined compensation networks based on optimized load transient responses may differ from those calculated by a factor of 3. Therefore checking the transient response of the converter is imperative. Starting with calculated R 5, C5 and C 6 (using n=1 in Equations (11)-(13)), apply the largest expected load step to the converter at the maximum operating V IN. Observe the load transient response of the converter while adjusting R 5, C5 and C6. Choose the largest R 5, the smallest C5 and C6 so that the inductor current waveform does not show excessive ringing or overshoot (see Figures 13(a), 13(b), 16(b) and 16(c)). Feedforward capacitor C 11 boosts phase margin over a limited frequency range and is sometimes used to improve loop response. C 11 will be more effective if 2 1 1 R R R >> . Upper Trace : OUT1 Voltage, AC Coupled, 0.5V/div Lower Trace : L 1 Inductor Current, 0.5A/div Upper Trace : OUT2 Voltage, AC Coupled, 0.5V/div Lower Trace : L 2 Inductor Current, 0.5A/div 40 µs/div 40 µs/div (a) (b) V OUT=3.3V V IN=16V V OUT=1.2V V IN=16V Example: Determine the compensation components for the 550kHz 9V-16V to 3.3V and 1.2V converter in Figure 1(a). For both channels, 1 S Mrads 5 . 3 − = ω , A 2 I ) MAX ( OUT = and F 22 C 1 µ = . n is assumed to be 1 in (11) and (12). For the 3.3V output: Ω = × ⋅ ⋅ ⋅ × ⋅ × + = − − k 3 . 11 ) 10 8 . 2 ( ) 8 ( ) 1 ( 10 10 22 10 5 . 3 k 13 k 1 . 30 1 R 4 6 6 5 nF 5 . 1 10 5 . 5 2 k 3 . 11 60 C 5 5 = × ⋅ π ⋅ ≈ pF 47 ) 10 3 . 11 ( ) 10 550 ( 1 C 3 3 6 ≈ × ⋅ × ⋅ π ≈ Figure 13. Load Transient Response of the Dual DC-DC Converter in Figure 1(a). I OUT1 and IOUT2 are switched between 0.3A and 2A. |
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