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AP64100Q 데이터시트(PDF) 12 Page - Diodes Incorporated |
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AP64100Q 데이터시트(HTML) 12 Page - Diodes Incorporated |
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12 / 26 page ![]() AP64100Q Document number: DS43575 Rev. 1 - 2 12 of 26 www.diodes.com July 2021 © Diodes Incorporated AP64100Q Application Information (continued) 4 Electromagnetic Interference (EMI) Reduction with Ringing-Free Switching Node and Frequency Spread Spectrum (FSS) In some applications, the system must meet EMI standards. In relation to high frequency radiation EMI noise , the switching node’s (SW’s) ringing amplitude is especially critical. To dampen high frequency radiated EMI noise, the AP64100Q device implements a proprietary, multi-level gate driver scheme that achieves a ringing-free switching node without sacrificing the switching nod e’s rise and fall slew rates as well as the converter’s power efficiency. To further improve EMI reduction, the AP64100Q device also implements FSS with a switching frequency jitter of ±6%. FSS reduces conducted and radiated interference at a particular frequency by spreading the switching noise over a wider frequency band and by not allowing emitted energy to stay in any one frequency for a significant period of time. 5 Adjusting Undervoltage Lockout (UVLO) Undervoltage lockout is implemented to prevent the IC from insufficient input voltages. The AP64100Q device has a UVLO comparator that monitors the input voltage and the internal bandgap reference. The AP64100Q disables if the input voltage falls below 3.1V. In this UVLO event, both the high-side and low-side power MOSFETs turn off. Some applications may desire higher VIN UVLO threshold voltages than is provided by the default setup. A 4µA hysteresis pull-up current source on the EN pin along with an external resistive divider (R3 and R4) configures the VIN UVLO threshold voltages as shown in Figure 25. VIN R3 R4 ON EN 1.18V I1 1.5μA I2 4μA 20kΩ + – Figure 25. Adjusting UVLO The resistive divider resistor values are calculated by: ������������ = ������. ������������������ ∙ ������������������ − ������������������������ ������. ������������������������������ Eq. 2 ������������ = ������. ������������ ∙ ������������ ������������������������ − ������. ������������������ + ������. ������������������ ∙ ������������ Eq. 3 Where: VON is the rising edge VIN voltage to enable the regulator and is greater than 3.7V VOFF is the falling edge VIN voltage to disable the regulator and is greater than 3.3V 6 Output Overvoltage Protection (OVP) The AP64100Q implements output OVP circuitry to minimize output voltage overshoots during decreasing load transients. The high-side power MOSFET turns off, and the low-side power MOSFET turns on, when the feedback voltage exceeds 110% of the 0.8V internal reference voltage in order to prevent the output voltage from continuing to increase. |
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