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ACT8796 датащи(PDF) 11 Page - Active-Semi, Inc |
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ACT8796 датащи(HTML) 11 Page - Active-Semi, Inc |
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11 / 34 page ![]() SYSTEM MANAGEMENT ACT8796 Rev 2, 16-Nov-09 Innovative PowerTM - 11 - www.active-semi.com Copyright © 2009 Active-Semi, Inc. ActivePMUTM is a trademark of Active-Semi. I2CTM is a trademark of Philips Electronics. Active-Semi nMSTR Enable Input In most applications, connect nMSTR to an active low, momentary push-button switch to utilize the ACT8796's closed-loop enable/disable functionality. If a momentary-on switch is not used, drive nMSTR to GA or to a logic low to initiate a startup sequence. Enable/Disable Inputs The ACT8796 provides two manual enable/disable inputs, PWRHLD and ON3. PWRHLD is the master enable input. When driven high, PWRHLD enables REG1, REG2, and REG4, and also activates the enable/disable control logic for the other regulators. ON3 is the enable input for REG3, and is active when either of the following conditions exists: 1) nMSTR is asserted low, or 2) PWRHLD is asserted high. Power-On Reset Output The ACT8796 integrates a 260ms power-on reset generator, reducing system size and cost. nRSTO is an open-drain output. Connect a 10kΩ or greater pull-up resistor from nRSTO to an appropriate voltage supply. nRSTO asserts low upon startup and remains low until the reset-timeout period expires, at which point nRSTO goes high-Z. nIRQ Output Figure 2 shows two simple circuits that can be used to generate nIRQ, a processor interrupt signal, which can be used as part of the ACT8796’s push- button control logic. This signal is typically used to drive the interrupt input of the system processor, and is useful in a variety of software-controlled enable/disable control routines. Figure 2A provides an active-low, open-collector push-button status output that sinks current when nMSTR is driven to a logic-low. Figure 2B provides an active-high, open- collector push-button status output that sources current when nMSTR is driven to a logic-low. Thermal Shutdown The ACT8796 integrates thermal shutdown protection circuitry to prevent damage resulting from excessive thermal stress, as may be encountered under fault conditions. This circuitry disables all regulators if the ACT8796 die temperature exceeds 160°C, and prevents the regulators from being enabled until the IC temperature drops by 20°C (typ). FUNCTIONAL DESCRIPTION (CONT’D) ACT8796 PB PB nMSTR ACT8796 100k 100k nIRQ OUT2 VCC CPU 500k OUT2 VCC nIRQ 100k 100k INL (A) (B) Figure 2: Simple Circuits |
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