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LP5952TLX-0.7/NOPB bảng dữ liệu(PDF) 16 Page - Texas Instruments |
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LP5952TLX-0.7/NOPB bảng dữ liệu(HTML) 16 Page - Texas Instruments |
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16 / 29 page ![]() VIN 48V VOUT GND OFF OUT IN GATE LM5050-1 OFF/ON GND GND Q1 SUM40N10-30 + R1 100: CIN 1 PF 75V D1 SS16T3 COUT 22 PF 63V D2 SMBJ60A VS C1 0.1 PF 100V S D G IN GATE OUT CLOAD LM5050-1 GND COUT Parasitic Inductance Parasitic Inductance Shorted Input Reverse Recovery Current VS LM5050-1, LM5050-1-Q1 SNVS629E – MAY 2011 – REVISED DECEMBER 2015 www.ti.com Application Information (continued) 8.1.2 Short Circuit Failure of an Input Supply An abrupt 0- Ω short circuit across the input supply will cause the highest possible reverse current to flow while the internal LM5050-1 control circuitry discharges the gate of the MOSFET. During this time, the reverse current is limited only by the RDS(ON) of the MOSFET, along with parasitic wiring resistances and inductances. Worst case instantaneous reverse current would be limited to: ID(REV) = (VOUT - VIN) / RDS(ON) (1) The internal Reverse Comparator will react, and will start the process of discharging the Gate, when the reverse current reaches: ID(REV) = VSD(REV) / RDS(ON) (2) When the MOSFET is finally switched off, the energy stored in the parasitic wiring inductances will be transferred to the rest of the circuit. As a result, the LM5050-1 IN pin will see a negative voltage spike while the OUT pin will see a positive voltage spike. The IN pin can be protected by diode clamping the pin to GND in the negative direction. The OUT pin can be protected with a TVS protection diode, a local bypass capacitor, or both. In low voltage applications, the MOSFET drainto- source breakdown voltage rating may be adequate to protect the OUT pin (that is, VIN + V(BR)DSS(MAX) < 75 V ), but most MOSFET data sheets do not ensure the maximum breakdown rating, so this method should be used with caution. Figure 23. Reverse Recovery Current Generates Inductive Spikes at VIN and VOUT pins. 8.2 Typical Applications 8.2.1 Typical Application With Input and Output Transient Protection Figure 24. Typical Application With Input and Output Transient Protection Schematic 16 Submit Documentation Feedback Copyright © 2011–2015, Texas Instruments Incorporated Product Folder Links: LM5050-1 LM5050-1-Q1 |
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