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TLV7021 Datasheet(PDF) 13 Page - Texas Instruments |
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TLV7021 Datasheet(HTML) 13 Page - Texas Instruments |
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13 / 22 page ![]() + TLV7081 Lithium Ion Battery PE ASIC GPIO ( ) 1.8V Regulator Output Logic Levels 0V & 1.8V GPIO (input) R1 R2 RPU IN OUT REF VPULL-UP (V-) 13 TLV7081 www.ti.com SNOSD69A – MAY 2018 – REVISED JUNE 2018 Product Folder Links: TLV7081 Submit Documentation Feedback Copyright © 2018, Texas Instruments Incorporated Typical Applications (continued) 8.2.1.2 Detailed Design Procedure Instead of being powered directly from the battery, the TLV7081 is powered directly from a voltage reference that exists in the system. The input to the comparator (IN) is allowed to operate above and below the reference voltage due to the unique analog front end of the TLV7081. When the battery voltage is above the reference threshold, the output of the comparator is high and when the battery drops below the threshold of the reference, the output of the comparator goes low (see Figure 22 for details). For simplicity, the integrated hysteresis of the comparator is not shown in the timing diagram. Integrated hysteresis is helpful in avoiding glitches at the comparator output when operating in noisy environments or when the input voltage changes thresholds very slowly. An open-drain output configuration allows the output logic level of the comparator to be level-shifted to match the logic level of the receiving device. 8.2.1.3 Application Curve When the voltage applied to the input pin (IN) falls below the reference threshold (REF), the output pin (OUT) is pulled low to ground (V-). Moreover, when the input voltage rises above REF, the output of the comparator goes into a high impedance state and the OUT pin is pulled high by the pull-up resistor and VPULL-UP supply voltage. Figure 22. Under-Voltage Timing Results 8.2.2 Battery Monitoring in Portable Electronics A recommended circuit diagram for monitoring a battery voltage in a personal electronic device is shown in Figure 23. In this diagram, the GPIO pin of an application specific integrated circuit (ASIC) serves as the supply voltage and the voltage reference for the TLV7081. Using a GPIO pin to power the TLV7081 is possible because of the low quiescent current of the TLV7081. In systems where power consumption needs to be further reduced, the GPIO pin can be used to power-cycle the TLV7081. Figure 23. Battery Monitor |
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