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AUIPS7141R Datasheet(PDF) 6 Page - International Rectifier |
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AUIPS7141R Datasheet(HTML) 6 Page - International Rectifier |
6 / 13 page AUIPS7141R Truth Table Op. Conditions Input Output Ifb pin voltage Normal mode H L 0V Normal mode L H I load x Rfb / Ratio Open load H L 0V Open load L H 0V Short circuit to GND H L 0V Short circuit to GND L L V fault (latched) Over temperature H L 0V Over temperature L L V fault (latched) Operating voltage Maximum Vcc voltage : this is the maximum voltage before the breakdown of the IC process. Operating voltage : This is the Vcc range in which the functionality of the part is guaranteed. The AEC-Q100 qualification is run at the maximum operating voltage specified in the datasheet. Reverse battery During the reverse battery the Mosfet is kept off and the load current is flowing into the body diode of the power Mosfet. Power dissipation in the IPS : P = I load * Vf If the power dissipation is too high in Rifb, a diode in serial can be added to block the current. The transistor used to pull-down the input should be a bipolar in order to block the reverse current. The 100ohm input resistor can not sustain continuously 16V (see Vcc-Vin max. in the Absolute Maximum Ratings section) Active clamp The purpose of the active clamp is to limit the voltage across the MOSFET to a value below the body diode break down voltage to reduce the amount of stress on the device during switching. The temperature increase during active clamp can be estimated as follows: ) t ( Z P CLAMP TH CL Tj ⋅ = ∆ Where: ) t ( Z CLAMP TH is the thermal impedance at tCLAMP and can be read from the thermal impedance curves given in the data sheets. CLavg CL CL I V P ⋅ = : Power dissipation during active clamp 65V V CL = : Typical VCLAMP value. 2 I I CL CLavg = : Average current during active clamp dt di I t CL CL = : Active clamp duration L V V dt di CL Battery − = : Demagnetization current Figure 9 gives the maximum inductance versus the load current in the worst case : the part switches off after an over temperature detection. If the load inductance exceeds the curve, a free wheeling diode is required. Over-current protection The threshold of the over-current protection is set in order to guarantee that the device is able to turn on a load with an inrush current lower than the minimum of Isd. Nevertheless for high current and high temperature the device may switch off for a lower current due to the over-temperature protection. This behavior is shown in Figure 11. www.irf.com 6 |
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