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SC2200 датащи(PDF) 117 Page - National Semiconductor (TI) |
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SC2200 датащи(HTML) 117 Page - National Semiconductor (TI) |
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117 / 433 page ![]() Revision 3.0 117 www.national.com SuperI/O Module (Continued) 4.5.2.6 Power Supply The device is supplied from two supply voltages, as shown in Figure 4-8: • System standby power supply voltage, VSB • Backup voltage, from low capacity Lithium battery A standby voltage, VSB, from the external AC/DC power supply powers the RTC under normal conditions. Figure 4-9 represents a typical battery configuration. No external diode is required to meet the UL standard, due to the internal switch and internal serial resistor RUL. Figure 4-8. Power Supply Connections Figure 4-9. Typical Battery Configuration The RTC is supplied from one of two power supplies, VSB or VBAT, according to their levels. An internal voltage com- parator delivers the control signals to a pair of switches. Battery backup voltage VBAT maintains the correct time and saves the CMOS memory when the VSB voltage is absent, due to power failure or disconnection of the external AC/DC input power supply or VSB main battery. To assure that the module uses power from VSB and not from VBAT,the VSB voltage should be maintained above its minimum, as detailed in Section 8.0 "Electrical Specifica- tions" on page 357. The actual voltage point where the module switches from VBAT to VSB is lower than the minimum workable battery voltage, but high enough to guarantee the correct function- ality of the oscillator and the CMOS RAM. Figure 4-10 shows typical battery current consumption dur- ing battery-backed operation, and Figure 4-11 during nor- mal operation. Figure 4-10. Typical Battery Current: Battery Backed Power Mode @ TC =25°C Figure 4-11. Typical Battery Current: Normal Operation Mode RTC Power Backup VDIGITAL VSB VDIGITAL VSB VBAT Battery External AC Power Supply VDIGITAL Sense VSB VBAT VSB PC0 VBAT ONCTL# ONCTL# ACPI Controller VBAT 0.1 µF VSB VSB CF CF BT1 0.1 µF VPP RUL VREF RTC Note: Placea0.1 µF capacitor on each V SB,VSBL power supply pin as close as possible to the pin, and also on VBAT. VSBL CF 0.1 µF VSBL IBAT (µA) 10.0 7.5 5.0 2.5 2.4 3.0 3.6 VBAT (V) IBAT (µA) 0.75 0.50 0.25 3.0 3.3 3.6 VSB Note: Battery voltage in this test is 3.0V. (V) |
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