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LT1571 Datasheet(PDF) 13 Page - Linear Technology |
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LT1571 Datasheet(HTML) 13 Page - Linear Technology |
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13 / 16 page ![]() 13 LT1571 Series Figure 13. Critical Electrical and Thermal Path Layer for LT1571-5 Lower Dropout Voltage For even lower dropout and/or reducing heat on the board, the input diode D3 can be replaced with a FET (see Figure 11). Connect a P-channel FET in place of the input diode with its gate connected to the battery (SENSE pin) causing the FET to turn off when the input voltage goes low. The problem is that the gate must be pumped low so that the FET is fully turned on even when the input is only a volt or two above the battery voltage. Also there is a turn- off speed issue. The FET should turn off instantly when the input is dead shorted to avoid large current surges from the battery back through the charger into the FET. Gate capacitance slows turn off, so a small P-FET (Q2) dis- charges the gate capacitance quickly in the event of an input short. The body diode of Q2 creates the necessary pumping action to keep the gate of Q1 low during normal operation. Figure 12. High Speed Switching Path Layout Considerations Switch rise and fall times are under 10ns for maximum efficiency. To minimize radiation, the catch diode, SW pin and input bypass capacitor leads should be kept as short as possible. A ground plane should be used under the switching circuitry to prevent interplane coupling and to act as a thermal spreading path. All ground pins should be connected to expand traces for low thermal resistance. The fast-switching high current ground path including the switch, catch diode and input capacitor should be kept very short. Catch diode and input capacitor should be close to the chip and terminated to the same point. This path contains nanosecond rise and fall times with several amps of current. The other paths contain only DC and /or 200kHz or 500kHz triwave and are less critical. Figure 12 indicates the high speed, high current switching path. Figure 13 shows critical path layout. Figure 11. Replacing the Input Diode VX 3V TO 6V HIGH DUTY CYCLE CONNECTION VIN 1571 F11 C3 L1 D2 D1 Q2 Q1 RX 50k Q1: Si4435DY Q2: TP0610L CX 10 µF VBAT BOOST SW SENSE VCC LT1571 BAT + + APPLICATIO S I FOR ATIO 1571 F12 VBAT L1 VIN HIGH FREQUENCY CIRCULATING PATH BAT SWITCH NODE CIN COUT D1 L1 CIN GND 1571 F13 LT1571-5 GND VCC2 VCC1 CAP PROG VC BAT GND GND SW BOOST BAT2 FLAG SELECT SENSE GND |
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