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ICS1702 Arkusz danych(PDF) 14 Page - List of Unclassifed Manufacturers |
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ICS1702 Arkusz danych(HTML) 14 Page - List of Unclassifed Manufacturers |
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14 / 28 page ![]() 14 ICS1702 To set the voltage at the THERM pin for 1.67V at 25 °C, the equivalent divider looks like Figure 11. Table 6: Thermistor Voltage Thresholds Figure 11: Equivalent voltage divider The parallel resistance R || is calculated: R || = 5V - 1.67V =20k Ω. 1.67V/10k Ω The internal pull-up resistance R pu and the parallel resistance R|| are known so the external fixed resistor can be calculated from: Rpu R|| Rfix = __________ . Rpu - R|| Substituting in known values: R fix = 27.27k Ω. A 27kΩ standard value is used for R fix. Since the thermistor resistance R th is specified by manufacturers at a particular temperature, the voltage across the thermistor V th at that temperature can be calculated from: Rth (5V) Vth = __________ (5V), Rpu + R|| with the drop across the resistor divider equal to 5V. For this example, the calculated voltage with R th =18k Ω at 10°C is 2.37V and with R th =4.7k Ω at 45°C the voltage is 0.95V. Table 6 lists the internal thresholds for hot and cold battery detection. If the voltage across the thermistor (at the THERM pin) drops below 0.93V, the ICS1702 will shut down due to a hot battery fault condition and will not restart unless reset. If the voltage dropped across the thermistor is above 2.4V before fast charge is initiated, the ICS1702 will begin a reduced current charge. See the Cold Battery Charging section for more information. • Using an NTC thermistor for temperature slope termination: As a battery approaches full charge, its accelerated rate of heating can be used to terminate fast charge by detecting the large change in the temperature slope. The large change in temperature slope is proportional to the thermistor voltage change per unit of time. If the DTSEL pin is programmed for temperature slope termination, the controller will calculate the thermistor voltage slope and terminate based on internally set thresholds as listed in Table 1. The threshold is 40mV per minute for selected charge rates greater than C/2, 28mV per minute for charge rates selected at or between C/2 and C/3, and 18mV per minute for selected charge rates less than C/3. The voltage across the thermistor must change at these rates or greater to terminate the selected charge rate. These thresholds correspond to a set change in thermistor resistance when an external pull-up to 5V is used as shown in Figure 11. Using the values calculated from the hot and cold battery detection example, the percent change in the thermistor resistance per minute for selected charge rates are provided. For selected charge rates greater than C/2, the thermistor resistance must decrease 4%/min. to terminate charge. For selected charge rates at or between C/2 and C/3, the thermistor resistance must decrease 3%/min. to terminate charge. For selected charge rates less than C/3, the thermistor must decrease 2%/min. to terminate charge. Parameter Voltage Battery Temperature Cold Battery Thermistor Voltage >2.4 <10 °C Hot Battery Thermistor Voltage <0.93 >45 °C |
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