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MIC2133 数据表(PDF) 21 Page - Microchip Technology |
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MIC2133 数据表(HTML) 21 Page - Microchip Technology |
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21 / 50 page ![]() 2022 Microchip Technology Inc. and its subsidiaries DS20006653B-page 21 MIC2133 4.4 Ripple Injection Circuit Components Selection Follow the steps below for selecting the ripple injection circuit components if low-ESR output capacitors are used. The below procedures provide a good starting point for selecting the ripple injection components. It is recommended that the final values be confirmed by laboratory measurements. 1. Calculate the product of RINJ and CFF for a given injected Feedback Ripple Voltage, ΔVFB, using the equation below. Choose ΔVFB in the range from 40 mV to 500 mV. A good starting point for ΔVFB is 50 mV. EQUATION 4-4: 2. Choose CFF in the range from 0.47 nF to 10 nF. 3. Calculate RINJ using the equation above. 4. Calculate the Top Feedback Resistor, RFB(TOP), value using the equation below: EQUATION 4-5: 5. Calculate the Bottom Feedback Resistor, RFB(BOT), value using the equation below: EQUATION 4-6: 6. Estimate the crossover frequency using the fol- lowing equation. If fCO(EST) is above fSW/5, lower the CFF value and repeat procedure 6. EQUATION 4-7: 7a) Select CINJ using the below equation if fCO(EST) calculated above meets Equation 5-11. EQUATION 4-8: Add a resistor in parallel with the soft start capacitor, connected to the SS pin, if CINJ > CFF × (RFB(TOP)/RFB(BOT)). This ensures that there is no overshoot at the end of the soft start. Use the equation below to select the parallel resistor value. EQUATION 4-9: 7b) Select CINJ using the below guidelines if fCO(EST) is low (typically below fSW/15) when fCO is limited by the minimum ΔVFB required in lower VOUT applications. Assume fCO = fSW/10. Calculate the maximum Equivalent Series Resistance (ESR) of the output capacitor using the following equation. EQUATION 4-10: Calculate the output capacitance using the fol- lowing equation. EQUATION 4-11: RINJ CFF 5V 100ns V FB ---------------------------- = Where: ΔVFB = Injected Feedback Ripple Voltage RFB TOP 1 2 CFF 0.8 fLC --------------------------------------------------------- Where: fLC = LC Resonant Frequency = 1/(2 xx sqrt (L x COUT)) RFB BOT RFB TOP VOUT VREF ------------- 1 – ---------------------------- = Where: VOUT = Target Output Voltage VREF = Reference Voltage = 0.6V for MIC2133 fCO EST RINJ CFF L COUT --------------------------------- VOUT 10 6 fSW ---------------------------- = Where: L = Inductance COUT = Output Capacitance VOUT = Output Voltage fSW = Switching Frequency CINJ 1 0.8 RINJ fCO EST ---------------------------------------------------- RSS 0.8V ISS ----------- Where: ISS = Soft Start Current Source = 1.2 µA ESRCOUT V OUT_TRANS I LOAD_STEP ---------------------------------- Where: ∆ILOAD_STEP = Magnitude of the Load Transient ∆VOUT_TRANS = Acceptable Output Voltage Deviation during Load Transient COUT 1 f CO ESRCOUT ------------------------------------------------- |
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