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SP690TCP Datasheet(PDF) 15 Page - Sipex Corporation |
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SP690TCP Datasheet(HTML) 15 Page - Sipex Corporation |
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15 / 20 page ![]() 15 SP690T/S/R JAN 30-06 SP690T/S/R, 802/T/S/R, 804T/S/R, 805T/S/R Low Power Microprocessor Supervisory © 2006 Sipex Corporation Connecting an ordinary signal diode in series with R3, as in Figure 22B, causes the lower trip point (V L) to coincide with the trip point without hysteresis (V TRIP), so the entire hysteresis window occurs above V TRIP. This method pro- vides additional noise margin without compro- mising the accuracy of the power-fail threshold when the monitored voltage is falling. It is useful for accurately detecting when a voltage falls past a threshold. Figure 22A. Adding Additional Hysteresis to the Power-Fail Comparator. Figure 22B. Shifting the Additional Hysteresis above V PFT The current through R1 and R2 should be at least 1 µA to ensure that the 25nA (max over extended temperature range) PFI input current does not shift the trip point. R3 should be larger than 10k Ω so it does not load down the PFO pin. Capacitor C1 adds additional noise rejection. Figure 23. Using the Power-Fail Comparator to Monitor an Additional Power Supply V IN R1 R2 + R3 TO µP PFI PFO GND V CC SP690T/S/R SP802T/S/R SP804T/S/R SP805T/S/R PFO 0V 0V V L V TRIP V H V IN V IN R1 R2 + R3 TO µP PFI PFO GND V CC SP690T/S/R SP802T/S/R SP804T/S/R SP805T/S/R PFO 0V 0V V TRIP V H V IN *OPTIONAL V TRIP = VPFT V H = V L = R1 WHERE V PFT = 1.25V V PFH = 10mV R1 + R2 R2 ( ) V PFT + VPFH ( ) R1 ( ) 1 + 1 + 1 R1 R2 R3 ( ) V PFT [ (1 + 1 + 1 R1 R2 R3 )- VCC R3 ] V TRIP = VPFT V L = R1 WHERE V PFT = 1.25V V PFH = 10mV V D = DIOD FORWARD VOLTAGE DROP R1 + R2 R2 ( ) V PFT + VPFH [ (1 + 1 + 1 R1 R2 R3 )- (VCC -VD) R3 ] ( ) *C1 *C1 R1 R2 V- PFI PFO GND V CC SP690T/S/R SP802T/S/R SP804T/S/R SP805T/S/R PFO V L V TRIP V- V IN R1 R2 PFI PFO GND V CC SP690T/S/R SP802T/S/R SP804T/S/R SP805T/S/R PFO V TRIP V H V IN V CC 0V 3.0V OR 3.3V V CC V TRIP = R2 V L = R2 WHERE V PFT = 1.25V V PFH = 10mV NOTE: V TRIP IS NEGATIVE V PFT + VPFH ( ) 1 + 1 R1 R2 ( ) V PFT [ (1 + 1 R1 R2 )- VCC R3 ] [ - V CC R1 ] V TRIP = VPFT V H = R1 + R2 R2 ( ) V PFT + VPFH (R1+R2 R2 ) ( ) A.) B.) |
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