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ACT8810 数据表(PDF) 48 Page - Active-Semi, Inc |
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ACT8810 数据表(HTML) 48 Page - Active-Semi, Inc |
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48 / 54 page ![]() ActivePath TM CHARGER ACT8810 Rev 9, 15-Nov-12 Innovative Power TM - 48 - www.active-semi.com Copyright © 2012 Active-Semi, Inc. ActivePMU TM and ActivePathTM are trademarks of Active-Semi. I 2CTM is a trademark of NXP. STATE nSTAT0 nSTAT1 PRECONDITION ON ON FAST-CHARGE, TOP-OFF ON OFF END-OF-CHARGE OFF ON FAULT, SUSPEND OFF OFF FUNCTIONAL DESCRIPTION CONT’D about 14°C. Adding the parallel resistance has allowed us to achieve our desired lower threshold of 0°C with an operating temperature range of 0°C to 45°C, vs. our design target of 0°C to 40°C. Thermal Regulation The ACT8810's ActivePath charger features an internal thermal regulation loop that reduces the charging current as necessary to ensure that the die temperature does not rise beyond the thermal regulation threshold of 110°C. This feature protects the against excessive junction temperature and makes the device more accommodating to aggressive thermal designs. Note, however, that attention to good thermal designs is required to achieve the fastest possible charge time by maximizing charge current. In order to account for the reduced charge current resulting from operation in thermal regulation mode, the charge timeout periods are extended proportionally to the reduction in charge current. Charging Safety Timers The ACT8810 features a safety timer that is programmable via an external resistor (RBTR) connected from BTR to GA. The timeout period is calculated as show in Figure 14. If the ACT8810 detects that the charger remains in precondition for longer than the precondition time out period (which determined as tCHG/3), the ACT8810 turns off the charger and generate a FAULT to ensure prevent charging a bad cell. Charging Status Indication The ACT8810 provides two charge-status outputs, nSTAT0 and nSTAT1, which indicate charge status as defined in Table 20. nSTAT0 and nSTAT1 are open-drain outputs with internal 5mA current limits, which sink current when asserted and are high-Z otherwise, and are capable of directly driving LEDs without the need of current-limiting resistors or other external circuitry. To drive an LED, simply connect the LED between each pin and an appropriate supply (typically VSYS). For a logic level indication, simply connect a resistor from each output to a appropriate voltage supply. Table 20: Charging Status Indication Table Input Supply Detection The ACT8810's ActivePath charger is capable of withstanding voltages of up to 12V, protecting the system from fault conditions such as input voltage transients or application of an incorrect input supply. Although the ACT8810 can withstand a wide range of input voltages, valid input voltages for charging must be greater than the under-voltage lockout voltage (UVLO) and the over-voltage protection (OVP) thresholds, as described below. Under Voltage Lock Output (UVLO) Whenever the input voltage applied to CHG_IN falls below 3.0V (typ), an input under-voltage condition is detected and the charger is disabled. Once an input under-voltage condition is detected, the input must exceed the under-voltage threshold by at least 800mV for charging to resume. Over Voltage Protection (OVP) If the charger detects that the voltage applied to CHG_IN exceeds 6.5V (typ), an over-voltage condition is detected and the charger is disabled. Once an input over-voltage condition is detected, the input must fall below the OVP threshold by at least 350mV for charging to resume. Reverse Leakage Current The ACT8810's ActivePath charger includes internal circuitry that eliminates the need for blocking diodes, reducing solution size and cost as well as dropout voltage relative to conventional battery chargers. When the voltage at CHG_IN falls below VBAT, the charger automatically reconfigures its power switch to minimize current drain from the battery. |
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