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MIC24066 Datasheet(PDF) 21 Page - Microchip Technology |
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MIC24066 Datasheet(HTML) 21 Page - Microchip Technology |
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21 / 38 page ![]() 2022 Microchip Technology Inc. and its subsidiaries DS20006730A-page 21 MIC24066/7 FIGURE 4-6: Output Capacitive and ESR Ripple Vector Relation. External injected ripple is not required when ESR ripple is high as compared to capacitive ripple. The modern loads require output voltage steady state ripple to be less than 1% of regulation voltage. For output voltages in the range of 1V, output steady state ripple voltage requirement is in the order of 10 mV for modern high current ASIC loads. Customers generally use ceramic capacitors or low ESR tantalum capacitors to meet steady state requirements for their loads. In those cases, MIC24066/7 control loop requires external ripple injection to the FB node. Note that as RBIAS is always present, it draws an additional current form the injection driver when INJ pin is 4.5V for 100 ns. This adds to the device's IQ. However, its contribution to the device's IQ will be low, because this current will be present for 100 ns only. Another thing to note is that the INJ driver must be capable of supplying this additional current. 4.3 Ripple Injection for Low ESR Capacitors When customers use low ESR electrolytic capacitors or tantalum capacitors, external ripple can be injected by connecting feed forward capacitor (CFF) from output to the FB node as shown in Figure 4-7. FIGURE 4-7: Feed Forward Capacitor. EQUATION 4-3: As shown in Figure 4-8, feed forward capacitor bypasses high frequency ripple to the FB pin and provides phase boost at mid frequency. FIGURE 4-8: Feed Forward Capacitor Gain and Phase Plots. 4.4 Ripple Injection for Ceramic Capacitors Customers use ceramic capacitors as output filter for much high performance ASIC. Ceramic capacitors have very low ESR and ESL. The MIC24066/7 need extra ripple injected from switch node. In those applications, external ripple can be injected by connecting series RC network from switch node to FB node as shown in Figure 4-9. FIGURE 4-9: MIC24066/7 External Ripple Injection Circuit. The purpose of CB is to block the DC component and forward high frequency from the switch node. It is required to select CB value very much higher than CFF value. The following equation denotes the amount of ripple injected at FB node. No External Ripple injection is needed for this kind of application VL VESR IL VFB VCO VCO VFB VOUT -------------(s) R2 R1 R2 + --------------------- 1s CFF R1 + 1s CFF R1 R2 R1 R2 + --------------------- + -------------------------------------------------------------- = R2 RINJ VO CO R1 Comp Comp L CB 0.6V LX TON FB CFF R2 RINJ VO CO R1 Comp L CB 0.6V LX TON FB CFF |
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