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LTC4100 数据表(PDF) 27 Page - Linear Technology |
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LTC4100 数据表(HTML) 27 Page - Linear Technology |
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27 / 48 page ![]() LTC1760 27 1760fa 6. The SMBus Host asserts BatterySystemStateCont(CHARGING_INHIBIT) high. 7. Hardware controlled charging inhibit is asserted (MODE low with VDDS high). Refer to “Section 6.2”. 8. The thermistor of the battery being charged indicates COLD-RANGE and the battery has been charged for longer than tTIMEOUT. 9. The thermistor of the battery being charged indicates UNDER-RANGE and the battery has been charged for longer than tTIMEOUT. 10. The thermistor of the battery being charged indicates HOT-RANGE. 11. Any SMBus communication line is held low for longer than tQUERY. 12.BatterySystemStateCont(POWER_NOT_GOOD)ishigh. 13. The emergency turn-off feature has been asserted using the DCDIV input pin. 3.3 Wake-Up Charging Current and Voltage Limits The wake-up charging current is fixed at IWAKE_UP for all values of ILIMIT. Wake-up charging uses the low current mode described in “Section 10”. The wake-up charging voltage is not limited by the VLIMIT function. 3.4 Controlled Charging Initiation All of the following conditions must be met in order to allow controlled charging of a given battery. One or both batteries may be controlled charged at a time. 1. The battery thermistor must be COLD-RANGE, IDEAL- RANGE, or UNDER-RANGE. 2. AC must be present. 3. BatterySystemStateCont(CHARGING_INHIBIT) must be de-asserted (or low). 4. Hardware controlled charging inhibit must be de-asserted (MODE not low with VDDS high). Refer to “Section 6.2”. 5. The battery responds to an LTC1760 Master read of Alarm() with all charge alarms deasserted. 6. The battery responds to an LTC1760 Master read of ChargingVoltage() with a non zero voltage request value. 7. The battery responds to an LTC1760 Master read of Voltage(). 8. The battery responds to an LTC1760 Master read of ChargingCurrent() with a non zero current request value. 9. The battery responds to an LTC1760 Master read of Current(). The following charging related functions are polled each tQUERY: Alarm(), ChargingVoltage(), Voltage(), Charging- Current(), and Current(). 3.5 Controlled Charging Termination The LTC1760 will terminate controlled charging when any of the following conditions are met: 1. Battery removal, or thermistor indicating OVER-RANGE. 2. AC removal. 3. The SMBus Host issues a calibration request by setting BatterySystemStateCont(CALIBRATE) high. 4. An LTC1760 Master read of ChargingCurrent() returning a zero current request. 5. An LTC1760 Master read of ChargingVoltage() returning a zero voltage request. 6. Any of the following AlarmWarning() bits asserted high: OVER_CHARGED_ALARM TERMINATE_CHARGE_ALARM TERMINATE_CHARGE_RESERVED OVER_TEMP_ALARM Note that the LTC1760 ignores all writes from the battery. Each battery’s charge alarm is cached inside the LTC1760. This internally cached bit will be set when any of the upper four bits of the battery’s AlarmWarning() response are set. OPERATION |
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