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NE57607 Folha de dados(PDF) 7 Page - NXP Semiconductors |
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NE57607 Folha de dados(HTML) 7 Page - NXP Semiconductors |
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7 / 10 page ![]() Philips Semiconductors Product data NE57607 Two-cell Lithium-ion battery protection with overcurrent, over- and under-voltage protection 2001 Oct 03 7 APPLICATION INFORMATION SL01567 87 NE57607 5 4 3 21 + 6 – CHARGER OR LOAD Li-ION CELL Li-ION CELL 1 M Ω 10 k Ω 10 k Ω 47 k Ω 0.1 µF 0.1 µF 0.1 µF 1 k Ω 330 Ω 330 Ω Figure 6. Typical application circuit The NE57607 drives the series N-Channel MOSFETs to states determined by each of the cell’s voltage and the battery pack load current. During normal periods of operation, both the discharge and charge MOSFETs are in the ON state, thus allowing bidirectional current flow. If the battery pack is being charged, and either of the cell’s voltage exceeds the overvoltage threshold, then the charge MOSFET is turned OFF (FET towards the pack’s external terminal). The cell’s voltage must fall lower than the overvoltage hysteresis voltage (VOV(Hyst)) before the charge MOSFET is again turned ON. If the battery pack is being discharged and the undervoltage threshold (VUV(Th)) is exceeded, then the discharge MOSFET is turned OFF. It will not run back ON until a charger is applied to the pack’s external terminals AND the cell’s voltage rises above the undervoltage hysteresis voltage (VUV(Hyst)). When the battery pack is being discharged, the load current causes the voltage across the discharge MOSFET to increase past the overcurrent threshold voltage (VOC(Th)), then the discharge MOSFET is turned OFF after a fixed 7–18 ms delay. If short-circuit is placed across the pack’s terminals, then the discharge MOSFET is turned OFF after a 100–300 µs time delay to avoid damaging the MOSFETs. FET STATUS FOR NORMAL AND ABNORMAL CONDITIONS Operating Mode and Charging Condition Charge FET (CF) Discharge FET (DF) Normal (charging or discharging) ON ON Overcharge (charging) OFF ON Overcharge (discharging) ON ON Overdischarge (discharging) OFF OFF Overdischarge (charging) ON ON Overcurrent (charging or discharging) OFF OFF Normal mode: Overdischarge detection voltage < battery voltage <overcharge detection voltage Discharge current < overcurrent detection level Overcharge mode: Battery voltage > overcharge detection voltage Overdischarge mode: Overdischarge detection voltage > battery voltage Overcurrent mode: Discharge current > overcurrent detection level voltage between VM and GND = discharge current × FET ON resistance (discharge or charge FET) |
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