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MCR03EZPFX1002 Datasheet(PDF) 15 Page - International Rectifier |
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MCR03EZPFX1002 Datasheet(HTML) 15 Page - International Rectifier |
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15 / 33 page ![]() Rev 16.0 15 PD-97509 IR3843AMPbF Thermal Shutdown Temperature sensing is provided inside IR3843A. The trip threshold is typically set to 140oC. When trip threshold is exceeded, thermal shutdown turns off both MOSFETs and discharges the soft start capacitor. Automatic restart is initiated when the sensed temperature drops within the operating range. There is a 20oC hysteresis in the thermal shutdown threshold. Fig. 8b. Application Circuit for Simultaneous Sequencing Simultaneous Powerup Vo1 Vo2 Output Voltage Sequencing The IR3843A can accommodate user programmable sequencing using Seq, Enable and Power Good pins. Boot Vcc Fb Comp Gnd PGnd SW OCSet SS/ SD 4.5V <Vcc<5.5V Vo(master) PGood PGood Enable Rt 1.5V <Vin<16V Vin Seq RA RB Boot Vcc Fb Comp Gnd PGnd SW OCSet SS/ SD 4.5V <Vcc<5.5V Vo(slave) PGood PGood Enable Rt 1.5V <Vin<16V Vin Seq Vo(master) RC RD RE RF Fig. 8a. Simultaneous Power-up of the slave with respect to the master. Power Good Output The IC continually monitors the output voltage via Feedback (Fb pin). The feedback voltage forms an input to a window comparator whose upper and lower thresholds are 0.805V and 0.595V respectively. Hence, the Power Good signal is flagged when the Fb pin voltage is within the PGood window, i. e., between 0.595V to 0.805V, as shown in Fig .9 The PGood pin is open drain and it needs to be externally pulled high. High state indicates that output is in regulation. Fig. 9a shows the PGood timing diagram for non- tracking operation. In this case, during startup, PGood goes high after the SS voltage reaches 2.1V if the Fb voltage is within the PGood comparator window. Fig. 9a. and Fig 9.b. also show a 256 cycle delay between the Fb voltage entering within the thresholds defined by the PGood window and PGood going high. Through these pins, voltage sequencing such as simultaneous and sequential can be implemented. Figure 8. shows simultaneous sequencing configurations. In simultaneous power-up, the voltage at the Seq pin of the slave reaches 0.7V before the Fb pin of the master. For R E/RF =RC/RD, therefore, the output voltage of the slave follows that of the master until the voltage at the Seq pin of the slave reaches 0.7 V. After the voltage at the Seq pin of the slave exceeds 0.85V, the internal 0.7V reference of the slave dictates its output voltage. It is recommended that irrespective of the sequencing configuration used, the input voltage should be allowed to come up to its nominal value first, followed by V cc and Enable, before the sequencing signal is applied. For non-sequenced operation, the Seq pin should be tied to a voltage greater than 0.85V, such as 3.3V or V cc. Again, the input voltage should be allowed to come up before V cc and Enable. |
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