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MMPF0200 Datasheet(PDF) 27 Page - NXP Semiconductors |
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MMPF0200 Datasheet(HTML) 27 Page - NXP Semiconductors |
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27 / 114 page ![]() NXP Semiconductors 27 PF0200 FUNCTIONAL BLOCK REQUIREMENTS AND BEHAVIORS A product may be designed to go into a Low-power mode after periods of inactivity. The STANDBY pin is provided for board level control of going in and out of such deep sleep modes (DSM). When a product is in DSM, it may be able to reduce the overall platform current by lowering the regulator output voltage, changing the operating mode of the regulators or disabling some regulators. The configuration of the regulators in Standby is pre-programmed through the I2C interface. Note that the STANDBY pin is programmable for Active High or Active Low polarity, and that decoding of a Standby event will take into account the programmed input polarity as shown in Table 21. When the PF0200 is powered up first, regulator settings for the Standby mode are mirrored from the regulator settings for the ON mode. To change the STANDBY pin polarity to Active Low, set the STANDBYINV bit via software first, and then change the regulator settings for Standby mode as required. For simplicity, STANDBY will generally be referred to as active high throughout this document. Since STANDBY pin activity is driven asynchronously to the system, a finite time is required for the internal logic to qualify and respond to the pin level changes. A programmable delay is provided to hold off the system response to a Standby event. This allows the processor and peripherals some time after a standby instruction has been received to terminate processes to facilitate seamless entering into Standby mode. When enabled (STBYDLY = 01, 10, or 11) per Table 22, STBYDLY will delay the Standby initiated response for the entire IC, until the STBYDLY counter expires. An allowance should be made for three additional 32 k cycles required to synchronize the Standby event. 6.4.1.4 Sleep mode • Depending on PWRON pin configuration, Sleep mode is entered when PWRON is de-asserted and SWxOMODE bit is set. • To exit Sleep mode, assert the PWRON pin. In the Sleep mode, the regulator will use the set point as programmed by SW1ABOFF[5:0] for SW1A/B and by SWxOFF[6:0] for SW2 and SW3A/B. The activated regulators will maintain settings for this mode and voltage until the next turn-on event. Table 23 shows the control bits in Sleep mode. During Sleep mode, interrupts are active and the INTB pin will report any unmasked fault event. Table 21. Standby Pin and polarity control STANDBY (Pin)(33) STANDBYINV (I2C bit)(34) STANDBY Control (32) 00 0 01 1 10 1 11 0 Notes 32. STANDBY = 0: System is not in Standby, STANDBY = 1: System is in Standby 33. The state of the STANDBY pin only has influence in On mode. 34. Bit 6 in Power Control Register (ADDR - 0x1B) Table 22. STANDBY delay - initiated response STBYDLY[1:0](35) Function 00 No Delay 01 One 32 k period (default) 10 Two 32 k periods 11 Three 32 k periods Notes 35. Bits [5:4] in Power Control Register (ADDR - 0x1B) |
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