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LTC7813 датащи(PDF) 21 Page - Linear Technology |
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LTC7813 датащи(HTML) 21 Page - Linear Technology |
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21 / 38 page ![]() LTC3895 21 3895fa For more information www.linear.com/LTC3895 applicaTions inForMaTion Figure 5. Adjustable UV and OV Lockout RUN Pin and Overvoltage/Undervoltage Lockout The LTC3895 is enabled using the RUN pin. It has a rising threshold of 1.2V with 80mV of hysteresis. Pulling the RUN pin below 1.12V shuts down the main control loop. Pull- ing it below 0.7V disables the controller and most internal circuits, including the DRVCC and INTVCC LDOs. In this state the LTC3895 draws only 10μA of quiescent current. The RUN pin is high impedance below 3V and must be externally pulled up/down or driven directly by logic. The RUN pin can tolerate up to 150V (absolute maximum), so it can be conveniently tied to VIN in always-on applications where the controller is enabled continuously and never shut down. Above 3V, the RUN pin has approximately a 15MΩ impedance to an internal 3V clamp. The RUN and OVLO pins can alternatively be configured as undervoltage(UVLO)andovervoltage(OVLO)lockoutson the VIN supply with a resistor divider from VIN to ground. A simple resistor divider can be used as shown in Figure 5 to meet specific VIN voltage requirements. RUN 3895 F05 R3 VIN LTC3895 R4 R5 OVLO The individual values of R3, R4 and R5 can be calculated from the following equations: R5 = RTOTAL • 1.20V RISING VIN OVLO THRESHOLD R4 = RTOTAL • 1.20V RISING VIN OVLO THRESHOLD −R5 R3 = RTOTAL −R5−R4 For applications that do not require a precise OVLO, the OVLO pin can be tied directly to ground. The RUN pin in this type of application can be used as an external UVLO using the previous equations with R5 = 0Ω. Similarly, for applications that do not require a precise UVLO, the RUN pin can be tied to VIN. In this configura- tion, the UVLO threshold is limited to the internal DRVCC UVLOthresholdsasshownintheElectricalCharacteristics table. The resistor values for the OVLO can be computed using the previous equations with R3 = 0Ω. Soft-Start (SS) Pin The start-up of VOUT is controlled by the voltage on the SS pin. When the voltage on the SS pin is less than the internal 0.8V reference, the LTC3895 regulates the VFB pin voltage to the voltage on the SS pin instead of the internal reference. The SS pin can be used to program an external soft-start function. Soft-startisenabledbysimplyconnectingacapacitorfrom the SS pin to ground, as shown in Figure 6. An internal 10μA current source charges the capacitor, providing a linear ramping voltage at the SS pin. The LTC3895 will regulate its feedback voltage (and hence VOUT) according tothevoltageontheSSpin,allowingVOUTtorisesmoothly from 0V to its final regulated value. The total soft-start time will be approximately: tSS = CSS • 0.8V 10µA The current that flows through the R3-R4-R5 divider will directly add to the shutdown, sleep, and active current of the LTC3895, and care should be taken to minimize the impact of this current on the overall efficiency of the ap- plication circuit. Resistor values in the megaohm range mayberequiredtokeeptheimpactonquiescentshutdown and sleep currents low. To pick resistor values, the sum total of R3 + R3+ R5 (RTOTAL)shouldbechosenfirstbased on the allowable DC current that can be drawn from VIN. |
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