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SC2441AEVB датащи(PDF) 20 Page - Semtech Corporation |
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SC2441AEVB датащи(HTML) 20 Page - Semtech Corporation |
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20 / 37 page ![]() 20 2006 Semtech Corp. www.semtech.com POWER MANAGEMENT SC2441A Operating Frequency (f s) The switching frequency in the SC2441A is user- programmable. The advantages of constant frequency operation are simple passive component selection and fast transient response with simple frequency compensation. Before setting the operating frequency, the following trade-offs should be considered. 1) passive component sizes 2) converter efficiency 3) EMI 4) Minimum switch on time and 5) Maximum duty ratio For a given output power, the sizes of the passive components are inversely proportional to the switching frequency, whereas MOSFET’s/Diodes switching losses are proportional to the operating frequency. Other issues such as heat dissipation, packaging and the cost issues should be considered. The frequency bands for signal transmission should be avoided because of EM interference. The switching frequency of both step-down controllers is set with an external resistor from Pin 10 to the signal ground. The set frequency is inversely proportional to the resistor value (Figure 7) and can be approximated as: 1.22 SW OSC F 101618 R - × = R OSC is in KΩ and FSW is in KHz. The internal oscillator starts to operate once V IN exceeds its UVLO threshold. The oscillator output, CLK, (see Figure 2) clocks the step-up converter. The frequency divider generates two out-of-phase clocks, CLK1 and CLK2, at a half of CLK frequency. CLK1 and CLK2 clock the step- down channels. The switching frequency of the step-up converter is twice those of the step-down controllers. If both step-down channels are running at 250KHz, then the boost section will be running at 500KHz. Applications Information Rosc vs Single Channel Switching Frequency 10 30 50 70 90 110 130 150 100 300 500 700 900 1100 Switching Frequency (KHz) Figure 7. R OSC vs. Step-down Channel Free-running Frequency Minimum Switch On Time Limitation In both step-down controllers, the falling edge of the clock turns on the top MOSFET. The inductor current ramps up so does the sensed voltage. After the sensed voltage crosses a threshold determined by the error amplifier output, the top MOSFET is turned off. The propagation delay time from the turn-on of the controlling FET to its turn-off is the minimum switch on time. The SC2441A has a minimum on time of about 180ns at room temperature. This is the shortest on interval of the controlling FET. The controller either does not turn on the top MOSFET at all or turns it on for at least 180ns. For a synchronous step-down converter, the operating duty cycle is V O /VIN. So the required on time for the top MOSFET is V O/(VINfS). If the frequency is set such that the required pulse width is less than 180ns, then the converter will start skipping cycles. Due to minimum on time limitation, simultaneously operating at very high R OSC vs. Step-down Channel Switching Frequency |
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