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MCP16501 датащи(PDF) 33 Page - Microchip Technology |
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MCP16501 датащи(HTML) 33 Page - Microchip Technology |
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33 / 42 page ![]() 2020-2022 Microchip Technology Inc. and its subsidiaries DS20006388E-page 33 MCP16501 5.7 nSTRT Capacitor for Automatic Turn-On on VIN Ramping As shown in Figure 4-1, it is possible to configure the MCP16501 for automatic start-up upon input voltage (VIN) ramping/power cycling by connecting a capacitor on nSTRT pin. The purpose of the capacitor (C in Figure 4-1) is to delay the rise of the nSTRT pin when VIN ramps up, such that after the VIN pin voltage (connected to VIN) has stabilized, the logic level of the nSTRT pin will still be low for a long time which is enough to be interpreted as a valid start-up event (i.e., longer than t1; see Section 4.4.1 “Typical Power-up Sequence and Timing”). Under the assumption that the VIN ramping is much shorter than the rise time of the nSTRT pin voltage, the recommended amount of capacitance needed for generation of a valid start-up event is given by the formula in Equation 5-3. After the selection of capacitor C, the resulting C RPU_nSTRT time constant must be compared to the actual VIN ramping time to verify that indeed the nSTRT rise time is much slower. It is recommended that the time constant C RPU_nSTRT be at least one order of magnitude larger than the slowest VIN ramping time expected in the application. If this is not true, the capacitor value C must be increased further. Using a 1 µF capacitor for C, the C RPU_nSTRT time constant will be 40 ms, which is adequate for VIN ramping times in the ms range. In atypical application in which the input voltage is unreliable or the ramp-up time is unknown or too long, an alternative to the startup using the nSTRT capacitor is to use a voltage supervisor circuit whose output will drive the PWRHLD directly. EQUATION 5-3: C t1 t + RPU_nSTRT e VIN VIN VIL_nSRT – ------------------------------------ log -------------------------------------------------------------------------------------- t1 t + RPU_nSTRT e 1 10.36 – ------------------- log -------------------------------------------------------------------- 2.24 t1 t + RPU_nSTRT --------------------------- == Where: RPU_nSTRT = nSTRT Pin Pull-up Resistance (40 kΩ typical value) VIL_nSTRT = nSTRT Logic Low Input Voltage (0.36 VIN, maximum value) VIN = Input Voltage (VIN pin is connected to the voltage VIN) t1 = Delay from nSTRT Falling to First Output VOUT1 Starting (≈ 0.5 ms); see Section 4.4.1 “Typical Power-up Sequence and Timing” Δt = Additional Delay from VIN Voltage established to the Detection of a Logic Low Level on nSTRT (due to internal logic wake-up time): ≈ 100 µs |
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