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ACT8600 Datasheet(PDF) 44 Page - Active-Semi, Inc |
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ACT8600 Datasheet(HTML) 44 Page - Active-Semi, Inc |
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44 / 50 page ![]() ACT8600 Rev 3, 15-Nov-12 Copyright © 2012 Active-Semi, Inc. Innovative Power TM ActivePMU TM and ActivePathTM are trademarks of Active-Semi. I 2CTM is a trademark of NXP. - 44 - www.active-semi.com General Description The charger features an advanced battery charger that incorporates the patent-pending ActivePathTM architecture for system power selection. This combination of circuits provides a complete, advanced battery-management system that automatically selects the best available input supply, manages charge current to ensure system power availability, and provides a complete, high- accuracy (±0.5%), thermally regulated, full-featured single-cell linear Li+ Charger that can withstand input voltages of up to 12V at CHGIN. ActivePath TM Architecture The ActivePathTM architecture performs three important functions: 1) System Configuration Optimization 2) Input Protection 3) Battery-Management System Configuration Optimization The ActivePath circuitry monitors the state of the input supply, the battery, and the system, and automatically reconfigures itself to optimize the power system. If a valid input supply at either CHGIN or VBUS is present, ActivePath powers the system from the input while charging the battery in parallel. Of the two possible charging sources, CHGIN is the preferred one over VBUS to allow the battery to charge as quickly as possible, while supplying the system. If a valid input supply is not present, ActivePath powers the system from the battery. If the input is present and the system current requirement exceeds the capability of the input supply, ActivePath allows system power to be drawn from both the battery and the input supply. Note that the battery will not be charged from VBUS pin when VBUS is supplied by the 5VIN pin (through Q1). Input Protection for CHGIN Input Over-Voltage Protection The ActivePathTM circuitry features input over- voltage protection circuitry for CHGIN. This circuitry disables charging when the input voltage exceeds the voltage set by OVPSET[ ], but stands off the input voltage in order to protect the system. Note that the adjustable OVP threshold is intended to provide the charge cycle with adjustable immunity against upward voltage transients on the input, and is not intended to allow continuous charging with input voltages above the charger's normal operating voltage range. Independent of the OVPSET[ ] setting, the charge cycle is not allowed to continue until the input voltage falls back into the charger's normal operating voltage range (i.e. below 6.0V). In an input over-voltage condition this circuit limits VVSYS to 4.6V, protecting any circuitry connected to VVSYS from the over-voltage condition, which may exceed this circuitry's voltage capability. This circuit is capable of withstanding input voltages of up to 12V. Table 7: Input Over-Voltage Protection Setting Input Supply Overload Protection The ActivePathTM circuitry monitors and limits the total current drawn from the input supply to a value set by the CHGIN/VBUS configuration and CHGLEV inputs, as well as the resistor connected to ISET. When charging from VBUS pin, the input current is limited to either 75mA, when CHGLEV is driven to a logic-low, or 450mA, when CHGLEV is driven to a logic-high. When charging from CHGIN, the input current is limited to 2.25A, typically. Input Under Voltage Lockout If the input voltage applied to CHGIN falls below 3.5V (typ), an input under-voltage condition is detected and the charger is disabled. Once an input under-voltage condition is detected, a new charge cycle will initiate when the input exceeds the under- voltage threshold by at least 500mV. Battery Management The ACT8600 features a full-featured, intelligent charger for Lithium-based cells, and was designed specifically to provide a complete charging solution with minimum system design effort. The core of the charger is a CC/CV (Constant- Current/Constant-Voltage), linear-mode charge controller. This controller incorporates current and voltage sense circuitry, an internal 70mΩ power MOSFET, thermal-regulation circuitry, a full- featured state-machine that implements charge control and safety features, and circuitry that eliminates the reverse blocking diode required by conventional charger designs. Single-Cell Li+ ActivePath TM Charger OVPSET[0] OVP THRESHOLD 0 6.6V 1 7.0V |
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