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PIC16C58B-20I/SS 数据表(PDF) 34 Page - Microchip Technology |
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PIC16C58B-20I/SS 数据表(HTML) 34 Page - Microchip Technology |
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34 / 84 page ![]() PIC16CR54C DS40191A-page 34 Preliminary © 1998 Microchip Technology Inc. 7.7 Time-Out Sequence and Power Down Status Bits (TO/PD) The TO and PD bits in the STATUS register can be tested to determine if a RESET condition has been caused by a power-up condition, a MCLR or Watchdog Timer (WDT) reset, or a MCLR or WDT wake-up reset. These STATUS bits are only affected by events listed in Table 7-7. Table 7-3 lists the reset conditions for the special function registers, while Table 7-4 lists the reset conditions for all the registers. TABLE 7-6: TO/PD STATUS AFTER RESET TO PD RESET was caused by 1 1 Power-up (POR) u u MCLR reset (normal operation)(1) 1 0 MCLR wake-up reset (from SLEEP) 0 1 WDT reset (normal operation) 0 0 WDT wake-up reset (from SLEEP) Legend: u = unchanged Note 1: The TO and PD bits maintain their status (u) until a reset occurs. A low-pulse on the MCLR input does not change the TO and PD status bits. TABLE 7-7: EVENTS AFFECTING TO/PD STATUS BITS Event TO PD Remarks Power-up 1 1 WDT Time-out 0 u No effect on PD SLEEP instruction 1 0 CLRWDT instruction 1 1 Legend: u = unchanged A WDT time-out will occur regardless of the status of the TO bit. A SLEEP instruction will be executed, regardless of the status of the PD bit. Table 7-6 reflects the status of TO and PD after the corresponding event. 7.8 Reset on Brown-Out A brown-out is a condition where device power (VDD) dips below its minimum value, but not to zero, and then recovers. The device should be reset in the event of a brown-out. To reset PIC16CR54C devices when a brown-out occurs, external brown-out protection circuits may be built, as shown in Figure 7-13 and Figure 7-14. FIGURE 7-13: BROWN-OUT PROTECTION CIRCUIT 1 FIGURE 7-14: BROWN-OUT PROTECTION CIRCUIT 2 This circuit will activate reset when VDD goes below Vz + 0.7V (where Vz = Zener voltage). 33k 10k 40k VDD MCLR PIC16CR54C VDD Q1 This brown-out circuit is less expensive, although less accurate. Transistor Q1 turns off when VDD is below a certain level such that: VDD • R1 R1 + R2 = 0.7V R2 40k VDD MCLR PIC16CR54C R1 Q1 VDD |
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