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LP3852 データシート(PDF) 12 Page - Texas Instruments |
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LP3852 データシート(HTML) 12 Page - Texas Instruments |
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12 / 32 page ![]() LP3852, LP3855 SNVS174I – FEBRUARY 2003 – REVISED FEBRUARY 2015 www.ti.com 9.3 Feature Description 9.3.1 SENSE Pin In applications where the regulator output is not very close to the load, LP3855 can provide better remote load regulation using the SENSE pin. Figure 16 depicts the advantage of the SENSE option. The LP3852 regulates the voltage at the OUT pin. Hence, the voltage at the remote load will be the regulator output voltage minus the drop across the trace resistance. For example, in the case of a 3.3-V output, if the trace resistance is 100 m Ω, the voltage at the remote load will be 3.15 V with 1.5 A of load current, ILOAD. The LP3855 regulates the voltage at the SENSE pin. Connecting the SENSE pin to the remote load will provide regulation at the remote load, as shown in Figure 16. If the SENSE pin is not required, the SENSE pin must be connected to the OUT pin. Figure 16. Improving Remote Load Regulation Using LP3855 9.3.2 SHUTDOWN (SD) Operation A CMOS Logic low level signal at the SD pin will turn off the regulator. SD must be actively terminated through a 10-k Ω pullup resistor for a proper operation. If this pin is driven from a source that actively pulls high and low (such as a CMOS rail-to-rail comparator), the pullup resistor is not required. This pin must be tied to VIN if not used. The SD pin threshold has no voltage hysteresis. If the SD pin is actively driven, the voltage transition must rise and fall cleanly and promptly. 9.3.3 Dropout Voltage The dropout voltage of a regulator is defined as the minimum input-to-output differential required to stay within 2% of the nominal output voltage. For CMOS LDOs, the dropout voltage is the product of the load current and the Rds(on) of the internal MOSFET. 9.3.4 Reverse Current Path The internal MOSFET in LP3852 and LP3855 has an inherent parasitic diode. During normal operation, the input voltage is higher than the output voltage and the parasitic diode is reverse biased. However, if the output is pulled above the input in an application, then current flows from the output to the input as the parasitic diode gets forward biased. The output can be pulled above the input as long as the current in the parasitic diode is limited to 200-mA continuous and 1-A peak. 9.3.5 Short-Circuit Protection The LP3852 and LP3855 are short-circuit protected and in the event of a peak overcurrent condition, the short- circuit control loop will rapidly drive the output PMOS pass element off. Once the power pass element shuts down, the control loop will rapidly cycle the output on and off until the average power dissipation causes the thermal shutdown circuit to respond to servo the on/off cycling to a lower frequency. Please refer to for power dissipation calculations. 12 Submit Documentation Feedback Copyright © 2003–2015, Texas Instruments Incorporated Product Folder Links: LP3852 LP3855 |
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