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ACT2802C bảng dữ liệu(PDF) 15 Page - Active-Semi, Inc |
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ACT2802C bảng dữ liệu(HTML) 15 Page - Active-Semi, Inc |
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15 / 25 page ![]() Rev 7, 15-Jul-16 Innovative PowerTM - 15 - www.active-semi.com Copyright © 2016 Active-Semi, Inc. ACT2802/ACT2802B/ACT2802C Battery Impedance Compensation An external resistor is used to set the impedance from 40mΩ to 500mΩ as shown in Figure 15. RIMC is corresponding to battery impedance. Higher RIMC gives higher compensation voltage which is positively proportional to battery charge/discharge current. Select RIMC based on battery impedance: The battery impedance as shown in the table 4 according to the RIMC and Rcs: Table 4: Battery Impedance Input Over Voltage Surge In the case of pure ceramic input capacitor is chosen, if the input cable is long, stray inductance may cause over voltage spikes as twice as the steady-state voltage when input source is plugged in. Below input circuit is recommended to avoid input voltage surge. R1 resistor is added in series with capacitor C1 to damp the potential LC resonance as shown in Figure 16. Boost Output Plug-in Auto Detection Figure 17 provides a solution for auto plug-in detection. External Input Over Voltage Protection Considering the maximum voltage rating at VIN pin, the external OVP circuit as shown in Figure 18 is recommended if input voltage may go higher than 7V. With the enhanced OVP circuit, the design can pass UN38.3. Inductor and Capacitor Selection ACT2802/ACT2802B/ACT2802C supports SMD components. 2.2uH inductor is recommended. Input side, 4.7uF ceramic capacitor in series with 2.7Ω resistor are recommended, on battery side, 22uF ceramic capacitor is recommended while on output side, 3*22uF ceramic capacitors are recommended. Battery Temperature Monitoring ACT2802 continuously monitors the temperature of the battery pack by sensing the resistance of its thermistor, and suspends charging if the temperature of the battery pack exceeds the safety limits. In a typical application, the TH pin is connected to the battery pack's thermistor input as shown in Figure 19. The ACT2802 injects a 60µA current out of the TH pin into the thermistor, so that the thermistor resistance is monitored by comparing the voltage at TH to the internal VTHL and VTHH thresholds of 0.3V and 1.5V, respectively. When VTH > VTHH or VTH < VTHL charging and the charge timers are suspended. When VTH returns to the normal range, charging and the charge timers resume. The threshold is given by: ) (m cs R ) (m R 25 ) (k RIMC (7) (6) 3 - BAT BAT 10 ) m ( R ) A ( I ) V ( BAT ) V ( V Figure 15. Battery impedance compensation setting circuit RIMC(KΩ) 50 100 200 Battery Impedance R(mΩ) Rcs=25mΩ 50 100 200 Rcs=50mΩ 100 200 400 Figure 16. Input over voltage surge protection circuit Figure 17. Boost output auto detection circuit Figure 18. Input over voltage protection |
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