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PCF2127AT/1 Datasheet(PDF) 20 Page - NXP Semiconductors |
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PCF2127AT/1 Datasheet(HTML) 20 Page - NXP Semiconductors |
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20 / 80 page ![]() PCF2127A_2 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2010. All rights reserved. Product data sheet Rev. 02 — 7 May 2010 20 of 80 NXP Semiconductors PCF2127A Integrated RTC, TCXO and quartz crystal The direct switching mode is useful in systems where VDD is higher than VBAT at all times. The direct switching mode is not recommended if the VDD and VBAT values are similar (e.g. VDD = 3.3 V, VBAT ≥ 3.0 V). In direct switching mode the power consumption is reduced compared to the standard mode because the monitoring of VDD and Vth(sw)bat is not performed. 8.6.1.3 Battery switch-over disabled: only one power supply (VDD) When the battery switch-over function is disabled: • The power supply is applied on the VDD pin • The VBAT pin must be connected to ground • The internal power supply, available at the output pin BBS, is equal to VDD • The battery flag (BF) is always logic 0 8.6.1.4 Battery switch-over architecture The architecture of the battery switch-over circuit is shown in Figure 6. The internal power supply (available on pin BBS) is equal to VDD or VBAT. It has to be assured that there are decoupling capacitors on the pins VDD, VBAT, and BBS. 8.6.2 Battery backup supply The VBBS voltage on the output pin BBS is equal to the internal power supply, depending on the selected battery switch-over function mode: The output pin BBS can be used as a supply for external devices with battery backup needs, such as SRAM (see Ref. 3 “AN10857”). For this case, Figure 7 shows the typical driving capability when VBBS is driven from VDD. Fig 6. Battery switch-over circuit, simplified block diagram 001aag061 VCC Vth(sw)bat VDD VBBS (internal power supply) VDD VDD(int) VDD(int) VDD(int) VBAT LOGIC comparators logic switches VCC Vth(sw)bat VBAT Table 18. Output pin BBS Battery switch-over function mode Conditions VBBS equals standard VDD > VBAT or VDD > Vth(sw)bat VDD VDD < VBAT and VDD < Vth(sw)bat VBAT direct switching VDD > VBAT VDD VDD < VBAT VBAT disabled only VDD available, VBAT must be put to ground VDD |
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