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LT3752 Datasheet(PDF) 21 Page - Analog Devices |
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LT3752 Datasheet(HTML) 21 Page - Analog Devices |
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21 / 52 page ![]() LT3752/LT3752-1 21 Rev. C For more information www.analog.com 1.250V 3752 F05 R1 R2 TO OVLO PIN R3 SYSTEM INPUT (VS) UVLO_VSEC LT3752/LT3752-1 5µA Figure 5. Programming Undervoltage Lockout (UVLO) APPLICATIONS INFORMATION Programming System Input Undervoltage Lockout (UVLO) Threshold and Hysteresis The LT3752/LT3752-1 have an accurate 1.25V shutdown threshold at the UVLO_VSEC pin. This threshold can be used in conjunction with an external resistor divider to definethefallingundervoltagelockoutthreshold(UVLO(–)) for the converter’s system input voltage (VS) (Figure 5). A pin hysteresis current of 5µA allows programming of the UVLO(+) threshold. VS (UVLO(–)) [begin SOFT-STOP then shut down] = 1.25 1+ R1 R2 + R3 ⎛ ⎝⎜ ⎞ ⎠⎟ ⎡ ⎣ ⎢ ⎤ ⎦ ⎥ VS (UVLO(+)) [begin SOFT-START] = VS (UVLO(–)) + (5µA • R1) It is important to note that the part enters soft-stop when the UVLO_VSEC pin falls back below 1.25V. During soft- stop the converter continues to switch as it folds back switching frequency, volt-second clamp and COMP pin voltage. See Soft-Stop in the Applications Information section. When the SS2 pin is finally discharged below its 150mV reset threshold both the housekeeping supply and forward converter are shut down. used to pull down the UVLO_VSEC pin below 1.25V but not below the micropower shutdown threshold of 0.6V(max). Typical VIN quiescent current after soft-stop is 165µA. Micropower Shutdown If a micropower shutdown is required using an external control signal, an open-drain transistor can be directly connected to the UVLO_VSEC pin. The LT3752/LT3752-1 haveamicropowershutdownthresholdoftypically0.4Vat the UVLO_VSEC pin. VIN quiescent current in micropower shutdown is 20µA. Programming System Input Overvoltage Lockout (OVLO) Threshold The LT3752/LT3752-1 have an accurate 1.25V overvoltage shutdown threshold at the OVLO pin. This threshold can be used in conjunction with an external resistor divider to define the rising overvoltage lockout threshold (OVLO(+)) for the converter’s system input voltage (VS) (Figure 6). When OVLO(+) is reached, the part stops switching im- mediately and a hard stop discharges the SS1 and SS2 pins. The falling threshold OVLO(–) is fixed internally at 1.215V and allows the part to restart in soft-start mode. A single resistor divider can be used from system input supply (VS) to define both the undervoltage and overvolt- age thresholds for the system. Minimum value for R3 is 1k. If OVLO is unused, place a 10k resistor from OVLO pin to ground. VS OVLO(+) [stop switching; HARD STOP] = 1.25 1+ R1+ R2 R3 ⎛ ⎝⎜ ⎞ ⎠⎟ ⎡ ⎣ ⎢ ⎤ ⎦ ⎥ VS OVLO(–) [begin SOFT-START] = VS OVLO + ( ) • 1.215 1.25 Soft-Stop Shutdown Soft-stop shutdown (similar to system undervoltage) can be commanded by an external control signal. A MOSFET with a diode (or diodes) in series with the drain should be |
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