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1、 SHOUDING Function Description Operation SD6271 The SD6271 is a current mode boost converter. The constant switching frequency is 1MHz and operates with pulse width modulation (PWM. Build-in 26V / 2A MOSFET provides a high output voltage. The control loop architecture is peak current mode control; t
2、herefore slope compensation circuit is added to the current signal to allow stable operation for duty cycles larger than 50%. Soft Start Function Soft start circuitry is integrated into SD6271 to avoid inrush current during power on. After the IC is enabled, the output of error amplifier is clamped
3、by the internal soft-start function, which causes PWM pulse width increasing slowly and thus reducing input surge current. Current Limit Program A resistor between OC and GND pin programs peak switch current. The resistor value should be between 10k and 100k. The current limit will be set from 2.5A
4、to 0.5A. Keep traces at this pin as short as possible. Do not put capacitance at this pin. To set the over current triProtection (OVP In some condition, the resistive divider may be unconnected, which will cause PWM signal to operate with maximum duty cycle and power switch voltage is boosted higher
5、 and higher. The power MOSFET will be turned off immediately, when the power switch voltage exceeds the OVP threshold level. The SD6271s OVP threshold is 27V. Over Temperature Protection (OTP SD6271 will turn off the power MOSFET automatically when the internal junction temperature is over 150C. The
6、 power MOSFET wake up when the junction temperature drops 30C under the OTP threshold temperature. Output Disconnect When power on and the EN pin will be pulled high. The SD6271 start up and operates. The external PMOS is turned on and current through it for output loading. While output loading is i
7、ncrease, output voltage is drop. When the FB pin voltage is under 0.3V, the EN pin sinks 20A current, the external PMOS will be turn off. The output short condition will be disconnected. 6/9 SHOUDING Application Information Inductor Selection SD6271 Inductance value is decided based on different con
8、dition. 4.7 to 22H inductor value is recommended for general application circuit. There are three important inductor specifications, DC resistance, saturation current and core loss. Low DC resistance has better power efficiency. Also, it avoid inductor saturation which will cause circuit system unst
9、able and lower core loss at 1 MHz. Capacitor Selection The output capacitor is required to maintain the DC voltage. Low ESR capacitors are preferred to reduce the output voltage ripple. Ceramic capacitor of X5R and X7R are recommended, which have low equivalent series resistance (ESR and wider opera
10、tion temperature range. Diode Selection Schottky diodes with fast recovery times and low forward voltages are recommended. Ensure the diode average and peak current rating exceed the average output current and peak inductor current. In addition, the diodes reverse breakdown voltage must exceed the o
11、utput voltage. Output Voltage Programming The output voltage is set by a resistive of the GND trace, the LX trace and the VCC trace should be kept short, direct and wide. 2. LX、L and D switching node, wide and short trace to reduce EMI. 3. Place CIN near VCC pin as closely as possible to maintain in
12、put voltage steady and filter out the pulsing input current. 4. The resistive divider R1and R2 must be connected to FB pin directly as closely as possible. 5. FB is a sensitive node. Please keep it away from switching node, LX. 6. The GND of the IC, CIN and COUT should be connected close together di
13、rectly to a ground plane. 7/9 SHOUDING Typical Application SD6271 SD6271 General Boost Converter SD6271 SCP Detect and Load Disconnect 8/9 SHOUDING Package Outline SOT23-6L SD6271 Unit: mm Symbols A A1 A2 b c D E E1 e e1 L L1 L2 1 2 0 3 6 0.300 0.600 REF 0.250 BSC 8 7 15 Min. (mm 1.050 0.050 0.900 0.300 0.080 2.900 BSC 2.800 BSC 1.600 BSC 0.950 BSC 1.900 BSC Max. (mm 1.450 0.150 1.300 0.500 0.220 0.600 Note: 1. Pack
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