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MCR03EZPFX1002 Datenblatt(PDF) 15 Page - International Rectifier |
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MCR03EZPFX1002 Datenblatt(HTML) 15 Page - International Rectifier |
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15 / 36 page ![]() 15 IR3837MPbF Rev 1.31 Soft-Start The IR3837 has a digital internal soft-start to control the output voltage rise and to limit the current surge at the start-up. To ensure correct start-up, the soft-start sequence initiates when the Enable and Vcc rise above their UVLO thresholds and generate the Power On Ready (POR) signal. The internal SS signal linearly rises with the rate of 0.2mV / µs from 0V to 2V. Figure 6 shows the waveforms during soft start (also refer to figure 11). The normal start up time is fixed, and is equal to: During the soft start the OCP is enabled to protect the device for any short circuit and over current condition. Fig. 6. Theoretical operation waveforms during soft-start (non tracking / non sequencing) (1) - - - - - - - - - - - - - - 3ms s 0.2mV/ 0.7V - 1.3V T start Operating Frequency The switching frequency can be programmed between 250kHz – 1500kHz by connecting an external resistor from R t pin to Gnd. Table 1 tabulates the oscillator frequency versus R t. Shutdown The IR3837 can be shutdown by pulling the Enable pin below its 0.85 V threshold. This will tri-state both, the high side driver as well as the low side driver. Table 1. Switching Frequency and I OCSet vs. External Resistor (R t) Over-Current Protection The over current protection is performed by sensing current through the R DS(on) of the sync FET. This method enhances the converter’s efficiency and reduces cost by eliminating a current sense resistor. As shown in figure 7, an external resistor (R OCSet) is connected between OCSet pin and the switch node (SW) which sets the current limit set point. An internal current source sources current (IOCSet ) out of the OCSet pin. This current is a function of Rt and hence, of the free-running switching frequency. Table 1. shows IOCSet at different switching frequencies. The internal current source develops a voltage across R OCSet. When the sync FET is turned on, the inductor current flows through Q2 and results in a voltage at OCSet which is given by: An over current is detected if the OCSet pin goes below ground. However, to avoid false tripping , due to the noise generated when the sync FET is turned on, the OCP comparator is enabled about 200ns after sync-FET is turned on. I ) R R I V L (on DS OCSet OCSet OCSet .(3) .......... ) ( ) ( .....(2) .......... .......... .......... ) (k A) ( t OCSet R μ I 700 71.7 1400 9.76 75.15 1500 9.31 55.1 1100 12.7 60.85 1200 11.5 65.4 1300 10.7 48.95 1000 14.3 44.3 900 15.8 39.3 800 17.8 34.1 700 20.5 29.54 600 23.7 24.35 500 28.7 19.6 400 35.7 300 47.5 Iocset (μA) Fs (kHz) Rt (kΩ) 1400 9.76 1500 9.31 1100 12.7 1200 11.5 1300 10.7 1000 14.3 900 15.8 800 17.8 700 20.5 600 23.7 500 28.7 400 35.7 14.7 300 47.5 Iocset (μA) Fs (kHz) Rt (kΩ) |
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