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NCP5331 Datasheet(PDF) 21 Page - ON Semiconductor |
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NCP5331 Datasheet(HTML) 21 Page - ON Semiconductor |
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21 / 38 page ![]() NCP5331 http://onsemi.com 21 0.25 V and “timing out” at 3 V. The current delivered to the CPGD capacitor (IPGD) is a function of the ROSC resistor according to the following equation. IPGD + 0.52 V ROSC The programmed delay time can be calculated from tPGD + CPGD @ (PGDTHRESH * PGDMIN) IPGD + CPGD @ (3.0 V * 0.25 V) IPGD The programmable timer may be disabled (set to 0) by connecting the CPGD pin to 5 VREF. This will set the PGD delay time to the internal delay of 200 µs. Figure 26 demonstrates the use of the programmable PGD timer (set to 6.0 ms) to allow PGD to transition high when VCORE is safely within the regulation limits for the processor (DAC ±50 mV). Implementing an Enable Function An Enable function may be implemented on the NCP5331 in one of two ways. The first method (Method A in Figure 27) is to pull low on the Ilim pin. This method is the preferred method, as both the GHx and the GLx pins will be kept low at turn-off, preventing VCORE from being pulled below ground. However, if using the “Timed Hiccup Mode Current Limit” feature with Method A, the Covc pin will time out when the Ilim pin is pulled low, and the NCP5331 will not turn back on (after time out) unless the power is recycled. This can be avoided by adding another transistor to the Covc pin, thereby keeping it low while the part is disabled. The second method (Method B in Figure 28) is to pull low on the NCP5331’s comp pin. With this method, GHx will be low and GLx will be high while the part is disabled. However, under Method B, if the part is disabled at turn-on, and if using the “Timed Hiccup Mode Current Limit” feature, the Covc pin will again time out and the NCP5331 will not be able to be turned on after the time out has occurred. This too can be avoided by the use of a transistor at the Covc pin keeping it low while the part is disabled. If using Method B but not with a transistor at the Covc pin, a 1.0 K resistor must be added between the drain of the transistor and the Comp pin to prevent the current limit from being tripped when the Comp pin is quickly pulled low. ILIM Figure 27. Enable Method A *Needed if using ‘Timed Hiccup Mode Current Limit’ QILIM BSS123 1 2 3 COVC *QCOVC BSS123 2 3 1 Hi to Disable Lo to Enable COMP Figure 28. Enable Method B QCOMP BSS123 1 2 3 COVC **QCOVC BSS123 2 3 1 Hi to Disable Lo to Enable *R 1.0 k *Needed if not using QCovc **Allows Disabling at Turn-On (when using ‘Timed Hiccup Mode Current Limit’) |
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